Connectors and accessories
Substation equipment
About us Sicame Group is one of the key players in the electrical equipment business worldwide. It has been able to adapt and develop to support the continuous evolution of electricity infrastructure in France and around the world, and become the largest independent entity in its sector. A true player in the energy transition, it offers its customers new products and services to improve energy efficiency, deal with environmental risks and support the development of electric vehicle and solar power plant markets.
70 years of worldwide success
Transmission
600 M€
3,600
2024 turnover
employees
Sicame Group is a recognized world leader specialized in the definition and manufacturing of components, accessories, equipment’s & services for building Transmission and Distribution electrical networks. With decades of background and recognized expertise, Sicame Transmission business unit is specialized in designing, manufacturing and producing comprehensive ranges of Transmission lines and systems connectors, dampening systems, hardware and most advanced substation fitting solutions, adapted to the most technical configurations such as 8-bundle Spacer dampers, UHV HVDC connectors or innovative high temperature conductor accessories. Sicame Transmission relies on world class brands - renowned and trustworthy in the Transmission realm thanks to unique know-how - giving our customers the best in class solutions. Sicame Transmission is specialized in designing, manufacturing and testing products for High and Extra High Voltage Overhead Transmission Lines. A century of Engineering Leadership Our Transmission & Substation set of companies carry an unmatched combined know how heritage. Widest range of tested high voltage components. The combination of our ranges and testing facilities allows for a completely tested thorough HV, EHV and UHV line and system accessories.
Distribution
Our fields of activity Electromobility
Renewables
Sicame Group is specialised in products and services related to transmission and distribution of electrical energy, renewables, electro-mobility, safety equipment and industrial applications.
Commercial & Industrial
OEM
Services
5 continents 26 countries 50 companies around the world Products distributed in 157 countries
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V
3
Summary
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01
04
Technical introduction
Special solutions
02
05
HV Aluminum connectors
Wildlife mitigation
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06
EHV Aluminum connectors
Grounding and shortcircuiting equipment
5 5
01 Technical introduction
R&D expertise
08
Technical specifications
10
• T echnical information • T ype test reports • T echnical information standards
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Installation manual
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Projects in North America
22
Other reference projects worldwide
27 7
Technical introduction
Technical introduction R&D Expertise
Developing the new generation of 1200 kV AC and 800 kV DC SICAME’s engineering team has acquired internationally recognized expertise in customized substation configuration design, enabling us to provide full technical evaluation for: • 3D designs • Laboratory testing • Thermal simulations • Antivibration studies • Corona simulations Personalized solutions (LSS connectors line for the disconnection in effect. Lighter corona protections, device line to damper vibrations in the substation tubes,...)
High and Ultra High Voltage Research and Development Center
Our Research and Development Engineering Teams focus on:
Sicame and the MCIA center (Motion Control and Industrial Applications) collaborate in the creation of the high and ultra high voltage Research and Development center. It is a unique center in Europe because of its characteristics, equipment and facilities. MCIA is an affiliated center of the Polytechnic University of Catalonia, which focuses on research, innovation and product development.
• Identification of UHV performance factors • Investigation of new materials • Exploration of new designs
The state-of-the-art center provides the Sicame R&D team with the opportunity to constantly expand its knowledge by conducting several types of tests and simulations, with the aim of offering its customers the most efficient and innovative solutions.
Approvals Our products meet and are approved by the main international standards IEC, NEMA, ASTM, UL, VDE, AENOR and DIN.
In addition, the company collaborates with the MCIA center and the Polytechnic University of Catalonia, funding several theses to ensure continuous research in HV system applications.
Corona in the base of the support, as expected from corona simulation.
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Technical introduction
Technical introduction
All new developments are tested and validated at the Investigation center and high voltage test through: Electrical tests, Mechanical tests, Chemical and metallographic tests and controls, Outside tests for Corona / RIV, Corrosion tests in salt fog chamber.
No corona detected, as expected from corona simulation.
Substation equipment - NAM catalog | ©Sicame Group 2025
Substation equipment - NAM catalog | ©Sicame Group 2025
9
Technical introduction
Technical introduction
Corona & riv test - IEC 62271-1 §6.9.1 & IEC 61284
Technical specifications
• According IEC 62271-1 neither Positive Corona spark nor light are observed on the surface of the products with naked eyes at the nominal voltage equal to Un=1.1xUr/√3 where Un: Phase-ground voltage, Ur: Phase-to-Phase Voltage
Technical information Pullout strength test ANSI/NEMA CC1 §2.7-3.2 • The connectors for stranding conductors(s) are designed to withstand the mechanical loads which can be applied on the conductor(s) • The minimum pullout strength of the connector is a tensile load of 8896 N applied. • No failure to be observed during the test
Cantilever strength test - ANSI/NEMA CC1 §2.8-3.4 • Support devices are designed to withstand the mechanical loads which can be applied to the supports fixed in structures or post insulators • The minimum cantilever strength of support is a transverse load of 8896 N is applied • This mechanical value is representative of the forces applied to the connections in case of short-circuit and external loads, like wind, applied to the bus bar and beard for whole structure system
• The maximum Radio Interference Voltage (R.I.V.) level is less than 2500 μV (68 dB) at 1.1 xUr/√ 3 with a 300 Ω test circuit impedance. According IEC 61284 the corona extinction (corrected values according to IEC 60060-1) shall exceed the specified minimum corona extinction. The RIV recorded at the specified test voltage shall not exceed the specified maximum RIV • The curve indicating the RIV against the test voltage shall not present any sudden change between the specified test voltage or conductor voltage gradient and 110 % of the specified test voltage or conductor voltage gradient
Salt spray corrosion test – IEC 60068-2-11 • The connector tested is assembled with the conductor(s) and/or palm required and the whole object is exposed to 500 hours of salt mist in a chamber • The resistance shall not increase more than 20% between the first and final measurement
• No failure to be observed during the test
Type test reports
Torque strength test - ANSI/NEMA CC1 §3.5
Type test applicable standards and specifications:
• The conductor(s) are assembled in the connector and the bolts are tightened uniformly and alternatively in accordance with their instruction manual (document reference: IICS01), increments until 50% over the nominal torque value is achieved
• SICAME has over 50 years’ experience in design and manufacture of HV and EHV substation connectors
• No failure to be observed during the test
• The Company designs its HV connectors in line with best practice and to internationally recognized industry standards. The standard we adhere to, where appropriate, and that are internationally recognized are: ANSI/NEMA CC1 Standard:
Temp. Rise test - ANSI/NEMA CC1 §2.6 §3.1 • Connectors must not provoke any temperature rise in a substation circuit and should not transfer any additional heating to other component or equipment of the substation layout • NEMA CC1 standard criteria’s are as follows: The connectors tested have a temperature rise less than or equal to the hottest connected conductor for the same current • No damage or failure to be observed during the test
Electric Power Connection for Substation from American National Standard and National Electrical Manufacturers Association. IEC Standards: International standard from the International Electrotechnical Commission. BS EN Standards: British Standard European Standard.
• Included resistance test in the according to IEC 62271-1
* The type test required can be studied
Short-circuit test – IEC 62271-1 §6.6 • The connectors are designed to carry-out the short-circuit current that may flow through the conductors on which it is installed • This short-circuit current must not cause any damage to the connector and neither burn on the contact surfaces nor welding between the parts must occur during the short-circuit • Included resistance test according IEC 62271-1
Resistance test - IEC 62271-1 §6.4 Technical introduction
Technical introduction
• This test shows the difference between the electrical resistances of the connector, before and after testing should be less than 20% • This test can be done in Temperature Rise Test, Short Circuit test and Salt Spay Corrosion Test described in this document
Heat cycle test - ANSI C119.4 • This test consists of checking the stability of the electrical resistance after performing a number of cycles, which depends on the class of the connector • This stability is achieved if all resistance measurement does not vary by more than ±5% from the average of all the measurements at specified intervals during the course of the test 10
Substation equipment - NAM catalog | ©Sicame Group 2025
Substation equipment - NAM catalog | ©Sicame Group 2025
11
Technical introduction
Technical introduction
Technical information Standards
Copper:
Hardware:
EN 1982 Copper and Copper alloys. EN ISO 6892-1 Metallic materials. Tensile test. Part 1: Test method (at room temperature). ISO 8062 Dimensional tolerances for castings.
We recommend A2-70 or A4-80 in accordance with EN ISO 3506-1 standard.
Alloy and chemical properties and castings:
Characteristics of A2-70 and A4-80 steel in accordance with ISO 3506-1 Chemical composition
Tensile resistance
Conventional elastic limit
Mass fraction (%)
Rm / [MPa] / min.
Rp0.2 / [MPa] / min.
Numeric designation Chemical composition expressed in % of mass Element
EN 1982-CC491K
EN 1982-CC330G
EN 1982-CC754S
450
Cu
83.0-87.0
88.0-92.0
58.0-63.0
600
Zn
4.0-6.0
0.5
residual
Sn
4.0-6.0
0.3
1
Pb
4.0-6.0
0.3
0.5-2.5
Description:
Ni
2
1
1
This special treatment is a suspension of high-molecular polymers in water. To optimize the lubrication properties this special treatment contains specially selected PTFE. The treatment is used as a coating agent and develops this a well adhering, touch-proof lubricating film after drying. It has been developed to achieve define low friction coefficients with a minimum variation range.
P
0.1
-
0.02
Fe
0.3
1.2
0.7
Sb
0.25
-
-
Field of application:
S
0.1
-
-
This special treatment is used for mass part lubrication. A typical application example is the coating of stainless-steel screws/bolts and nuts, self-tapping or self-forming screws, rivets, sheet-metal screws, and chipboard screws.
Al
0.01
8.0-10.5
0.8
Si
0.01
0.2
0.05
Mn
-
0.5
0.5
-
C
Si
Mn
P
S
Cr
Ni
Cu
-
-
A2-70
0,1
1
2
0,05
0,03
15-20
8-19
4
700
A4-80
0,08
1
2
0,045
0,03
16-18
10-15
4
800
Our nuts are coated with an anti-seize special treatment.
Aluminium: EN 1706 Aluminium and aluminium alloys. Castings. Chemical composition and mechanical characteristics. EN ISO 6892-1 Metallic materials. Tensile test. Part 1: Test method (at room temperature). ISO 8062 Dimensional tolerances for castings. Aluminium alloy EN 1706 AC-42100
Mechanical properties of sand casted alloy Numeric designation
Chemical composition mass fraction (%)
Conventional elastic limit
Tensile resistance
Elongation
Rp0.2 [MPa] min.
Rm [MPa] min.
A50mm / [%] / min.
Si
Fe
Cu
Mn
Mg
Zn
Ti
Al
EN 1982- CC491K
90
200
13
6,5÷7,5
0,19
0,05
0,10
0,25÷0,45
0,07
0,25
Remainder
EN 1982- CC330G
180
500
20
EN 1982- CS754S
80
220
15
Tensile resistance
Conventional elastic limit
Elongation
Rm / [MPa] / min.
Rp0.2 / [MPa] / min.
A50mm / [%] / min.
F
140
80
2
Correlation studies on various existing connector lines, as well as mechanical and electrical engineering considerations in the early seventies, resulted in the establishing of a few simple design rules. Basic idea for all our connectors range is that the connector, at full load, has to run cooler as the conductor(s) to be connected. In order to guarantee this, these rules were applied to shape the connectors lines. Hereafter we will set these basic design rules and describe in more detail the various peculiarities of the designs.
T6
230
190
2
Contact force:
Mechanical properties of the alloy casted in sand for separately cast test bar Heat treatment
1N/mm = 1MPa 2
It is well established that the contact resistance of a mechanical connection depends upon the contact force between the surfaces in contact (and not upon contact pressure). As a result of various correlation studies, as well as from laboratory tests it was decided to link the contact force to the amperage of the connection. aluminium alloy EN 1706 AC-42100
A simple rule was set: F=k*I F : Contact Force ( N ) - I : Current ( A ) - K : constant ( N/A)
conductivity properties of the alloy casted in sand for separately cast test bar Material
Electrical conductivity measured at 20ºC [MS/m] [1/μΩm]
Thermal conductivity [W/mK]
EN 1706 AC-42100
20÷27
160-180
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Substation equipment - NAM catalog | ©Sicame Group 2025
For the constant k, a minimum value of 40 Newton Ampere is chosen
Substation equipment - NAM catalog | ©Sicame Group 2025
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Technical introduction
1N/mm2 = 1MPa
Aluminium alloy EN 1706 AC-42100
Technical introduction
Alloy and mechanical properties:
Technical introduction
Technical introduction
Contact surface
Installation manual
Studies during the many years of experience, as well taking physical properties in consideration, has led to the definition for the maximum contact force (N/mm). At every specific temperature, there exists a threshold pressure, which is such that up to this limit, there is practically no cold flow. At 110°C, this limit is in the vicinity of 27 N/mm. This is the maximum limit contact pressure adopted for the design of this connector line, which was chosen as the highest steady-state temperature of an Aluminium connection. A short period of overheating during fault currents do not adversely affect a well-designed connection. Exceeding the maximum force or temperature for a long period of time it will lead to cold flow and loss of the connection quality.
Amperage Studies during the many years of experience , as well taking physical properties in consideration, has lead to the definition for the allowed maximum Amperage per mm2 is < 0,4 to 1 A / mm2 depending on the type of connector. The dimensioning of the connectors is based on the above mentioned definitions with, as a result, for all product lines a “ run cooler as conductor ” performance as result. This philosophy is established in all variations of our substation connectors.
Connector design The objective here is to engineer a connector device following the basic rules of adequate force, contact surface and amperage, as given by the rules established previously. A good design should be compact in size. As the force generating mechanism was of major importance, and should be under control, we decided to go for a bolt-nut-washer configuration (no threaded holes). In order to minimize the possible malfunction of the bolt-nut-washer mechanism, it was also decided to apply the bolting torque to the nut (and not to the bolt head). This is important when tightening on a cylindrical conductor, as there is always a resulting wedge effect, when the components are put under stress. When tightening on the bolt head, the wedge effect would impart to the bolt shaft an alternating bending stress, which is detrimental to the assembly. Connector grooves to accommodate cables or buses are cast to size of the nominal diameter of the conductor. This diameter is marked on the clamping element. At the end of the groove a cavity is provided for the cutting burs of the conductor ending.
Basic multi-cap design The connector design is based on the multi-cap principle. The body of the connector carries the current, and caps are used to transmit the contact force to the conductor and the body. A cap carries 2 bolts (and not more). The choice of the “2 bolts per cap” is for mechanical and reliability considerations. Mechanically, each cap transmits its force to a well defined part of the conductor, and guarantees a contact pressure between the conductor and the current carrying body, at the location of the cap. In a single-cap design, when 6 bolts are used, it may happen that only the extremities of the cap transmit pressure to the conductor (deformed cap). This would result in too high pressure on the extremities, and low pressure at all at the centre of the cap.
Compactness of design Compactness was achieved by placing the bolt shafts as close as possible to the conductor. Doing so also decreased the bending moment at the centre - line of Cap and Body, giving a second-effect lowering of the bulkiness of the connector.
Preparation of surfaces Copper (Cu) Copper conductors do not require any special preparation. Copper oxide is generally broken down by a reasonably low value of contact pressure. Unless the copper is badly oxidized, a good contact can be achieved with very little cleaning (see accessories). Aluminum (Al) Oxidation of Aluminum conductors is inevitable. Aluminum oxide is hard, tenacious, and forms a high resistant film. The oxide film forms very rapidly on surfaces exposed to air. Failure to remove this oxide can produce a high electrical resistance and ultimately, a failure of the connection. The steps are: • Clean the contact surface with a dry stainless steel wire brush (see accessories), until it is bright and clean • Contact grease should then be applied immediately after cleaning, using another stainless steel wire brush and the surface scraped again through the contact grease. For cables, ensure that the contact grease penetrates between the wires as deeply as possible • Mark an area 1/4” wider than the connector to brush and coat thoroughly with the contact grease to ensure the contact area is exceeded. Generous application of the contact grease is required If the connector includes a tinned surface, usually for bimetallic connections, it should not be brushed even if the conductor to connect is copper made. Only Aluminum conductors should be brushed and contact grease applied.
Preparation of bolted connectors copper (Cu) Copper bolted connectors do not require any special preparation, except where there is excessive dirt or dust. This can be removed with a clean dry cloth or brush (see accessories). Aluminum (Al) For all Aluminum bolted connectors, irrespective of the conductor material, it is essential that contact grease be applied to both surfaces that are in contact. Where both surfaces are Aluminum: • Surfaces must be cleaned using a dry stainless steel wire brush (see accessories) to remove dirt and dust • Contact grease should then be applied immediately after cleaning, using another stainless steel wire brush and the surface scraped again through the contact grease
Technical introduction
The Aluminum material has the propensity to undergo plastic (permanent) deformation when submitted to stress (pressure or traction). This permanent deformation is called “cold flow” and it depends upon pressure, temperature and time.
Technical introduction
Technical introduction
• Ample contact grease must be applied so that it squeezes out of the sides as the final torque to the bolts is applied If the connector includes a tinned surface, usually for bimetallic connections, it should not be brushed even if the conductor to connect is copper made. Only Aluminum conductors should be brushed and contact grease applied.
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Substation equipment - NAM catalog | ©Sicame Group 2025
Substation equipment - NAM catalog | ©Sicame Group 2025
15
Technical introduction
Technical introduction
Installation for substation connectors
Tightening Sequence
Handing of connectors
• Initially the screws should be tightened to 60% of the total torque, in the sequence described below
• Connectors should be handled with care. Even slight damage to the outer surface of a connector can create corona
• Subsequently, tighten in the same sequence to the total recommended tightening torque. Always starting at the “end of the conductor” side of the connector and working to the other side of the connector
• Be particularly careful with cables of expansion connectors, damage of the cable can cause cable breakage as well as local corona.
• We recommend you use the correct torque wrench and sockets
• Avoid dropping or placing the connector on sandy soil. Soil particles can lodge in the threading and damage the bolt. In such cases, the connector should be cleaned with a soft brush.
Recommended tightening
• Check that the conductor diameter is in the correct range of diameters for the connector being used.
Equipment hardware (Nm)
Installation
Torque M8
M10
M12
M14
M16
• Ensure that the conductor is fully inserted into the connector, ensuring it goes to the end of the cavity.
Aluminum and Aluminum alloys
10
20
40
60
90
• When assembling make sure the cap is the same distance from both sides. Introduce the screw or nut into the hex hole, depending on the connector and layout, and apply the appropriate torque.
Silicon bronze 12 24 55 75 115
12
24
55
75
115
Stainless steel A2
15
35
60
90
140
Stainless steel A4
22
44
72
-
187
Necessary key (mm)
13
17
19
22
24
Mechanical joints Placing the elements
Equivalent units: 10 NM = 10J = 10 WS ≈ 1 KGM ≈ 1KPM
• For mechanical assemblies there are different provisions for securing the various elements
Expansion connectors installation
• The basic elements of the assembly are: bolts, washers, washers and nuts
• Expansion connectors allow for expansion and contraction of the conductors as the temperature varies
• The following shows the four configurations used
• The Ideal temperature when mounting connectors is 20˚C, for other temperatures, different spacing will be required, these spacing can be determined by following the chart below
• We do not recommend any change in the standard hardware and installing a hardware not delivered by our company or under our authorization
• These changes without the authorization of our engineers, installing external hardware or using greases, can modify the behavior of the assembly, upsetting the resultant torque and the forces applied
Technical introduction
• If in any case is required to use a different hardware and/or a grease in the hardware union, contact us with the technical datasheet of the hardware and/or grease used and will be the technician and engineers of SICAME who warranty the correct installation of the connector
• The dimension (L) is the total possible movement of the connector • At room temperature, 20˚C, P1 = L / 2 (see graph), while P2 is always the difference in length between L and P1 A. Screw - Washer - bodies unite - washer - nut. B. Screw - Washer - bodies unite - washer - washer lock in place - nut. C. Recessed screw - body unite - washer - nut. D. Screw - Washer - body unite - unite body with threaded hole.
P2 = L - P1
Note: F or standard orders, hardware is supplied with surface treatment to avoid gripping problems in these union elements.
T˚ ambient 50˚C L = 60 mm
Technical introduction
• In the same way, we do not recommend to install any type of grease for the bolts and nuts assembled in the connectors, since the standard hardware delivered has surface treatment to avoid the gripping in the mechanical union
Look up the graph attached P1 = 47 mm P2 = L - P1 P1 = 47 mm P2= 13 mm
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Substation equipment - NAM catalog | ©Sicame Group 2025
Substation equipment - NAM catalog | ©Sicame Group 2025
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Technical introduction
Technical introduction
Cupal sheets
Welded connectors
Cupal sheets are used when bimetallic connections are required, the following installation procedure should be adopted.
The welding methods recommended are the tungsten inert gas (TIG) and metallic inert gas (MIG), as set out in NEMA CC1 - 2009.
• Prepare the surfaces of the conductor and the surface of the sheet of cupal as described previously by treating the surfaces of the foil as that of a connector
Aluminum 4043 alloy rod shall be used as filler material for Aluminum welded connections between sand castings, extruded Aluminum shapes or cables. Alternating current shall be used for TIG welding, whereas reversed polarity direct current shall be used for MIG welding. Argon or helium, or a mixture of the two shall be used as shielding gases.
• Install the cupal sheet, in the cavity of the connector • It is important when installing the bimetallic sheets that the copper component is placed at the bottom of the connection, so that the app rent salts corrosion does not affect the conductor / Aluminum connector which could result in accelerated degradation of the contact
It is highly recommended that the welding operation would be performed by personnel with high skill level in Aluminum welding, because of the difficulty of this process. Before the welding, it is necessary to: • Remove oil, oxides, soiling and moisture from the surfaces to be welded. The conductor and power connector welding areas have to be cleaned with a degreasing agent (solvent)
Compression connectors
• Sufficient time must be allowed for evaporation of the solvent before welding. Moreover, after solvent cleaning, the oxides shall be removed by brushing with a stainless steel wire brush
The connectors can be assembled for compression with different forms depending on the requirement, for example, circumferential, hexagonal..
• Test the welding machine settings by making a test bead on an Aluminum casting • Visually inspect the connection to determine proper edge preparation and alignment into the joint
There are two methodologies when crimping:
All the melt shall be made with clean metal. During the weld, a smooth and continuous flow of metal with parent metal should be maintained. When several passes are to be made, check the previous pass before laying down the next one, to detect the presence of poor fusion or cracks.
• Space compression • Overlap compression (normally 1/3, 1/4, 1/5) In the first instance, a number of compressions may be applied which are spaced a short distance apart. In the second case, the compressions will overlap by a fraction (see below) of the overall width from the edge of the previous compression.
The completed weld must have a smooth finish and indicate good fusion. After the welding it is recommended to accurately clean the weld, to ensure a smooth surface and avoid the corona appearance.
To affect correct compression the following steps should be taken.
Bimetallic connectors
• Banding the cable end before cutting (prevents fraying) • Thoroughly clean the cable to be connected
• For the bimetallic mechanical connectors special care must be taken when handling to ensure that the layer of varnish on the joint between the Aluminum and copper is not damaged
• Apply the contact grease (see accessories) to both the conductor and the connector
• This varnish is an environmental protection to ensure no corrosion takes place. If for any reason this layer is damaged the bimetallic connector should be replaced
• Insert the cable into the connector. Remember to remove the ring (band) from the cable end
Maintenance
• Selection and preparation of the tool to perform the compression
• Connectors delivered by SICAME require no special maintenance
• For multiple compressions begin the compression from the cable end of the assembly and ensure you withdraw towards the end of connector for subsequent compressions
• All products shown in this manual are used in substations and have not been designed for a reinstallation or reopening. In case it is required, please do not hesitate to contact us • For each connection to be done, it is highly recommended to perform a previous visual inspection prior to installation to ensure products have not been damaged during transportation nor loose pieces are lost, thus requiring an eventual replacement
Technical introduction
Technical introduction
• Do not hesitate to contact us if you have any queries in this regard. In any case, store your connectors in a dry and clean location before installation
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Substation equipment - NAM catalog | ©Sicame Group 2025
Substation equipment - NAM catalog | ©Sicame Group 2025
19
Manitoba hydro
National grid
Hitachi
Canadá
Reino unido
BC Hydro
Scottish Power
Canadá
Escócia
Hydro Quebec
She
Enel
Canadá
Escócia
Itália
Suécia
Energinet Dinamarca
ESB
Statnett
Irlanda
Noruega
Facebook Irlanda
Fingrid
Ukenergo
Finlândia
Ucrânia
Ge grid
Energa
Finlândia
Polônia
Tauron Polônia
PGE Polônia
Bonneville Power Administration
Hyundai
US
Coréia
Hapam
NTDC
Os Países Baixos
Paquistão
Tennet
PLN
Os Países Baixos
Indonésia
RTE
SECO
França
Camboja
ELIA
PGCIL
Bélgica
Índia
Iberdrola
REE
ARAMCO
EFACEC
Arábia Saudita
REN
Technical introduction
Chile
Engie energia Chile
ENEL Chile
Portugal
EDP
EDM Moçambique
STEG
Portugal
Tunísia
EDA
GECOL
Açores
EEM Madeira
Eolicas do velao Portugal
20
Arábia Saudita
Espanha
Portugal
Transelec
SEC
Substation equipment - NAM catalog | ©Sicame Group 2025
Technical introduction
Espanha
Líbia
Sonelgaz Argélia
EDEL Angola
Substation equipment - NAM catalog | ©Sicame Group 2025
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Projects in North America
Projects in North America Maritime link HVDC station converters
Celilo converter station is located near the Columbia river, is the northern station of the Pacific DC Intertie, a 1,360 - kilometer HVDC link that connects to the Sylmar converter station in Los Angeles. It transmits electricity from the Pacific Northwest to as many as three million households in the greater Los Angeles area. The upgraded Celilo station is owned by Bonneville Power Administration.
Projects in North America
Sicame designed and manufactured all corona spheres protection as well adjustable connectors for 560 kV DC and 500 kV AC.
Product
HVDC converter transformers
Power rating
770 MVA, 560 kV DC, 500/230 kV AC
Location
U.S California
Maritime link project is the first electricity link between the island of Newfoundland and North America. The maritime link project is a 500 MW high-voltage direct current (HVDC) connection that enables clean, renewable electricity generated in Newfoundland and Labrador to be transmitted to the North American grid in Nova Scotia. Integration of additional renewables is contributing to Canada’s emission-reduction efforts. In addition to the two converter stations for the ±200 kV HVDC link, the project scope also included two 230 kV AC substations in Newfoundland, one 345 kV AC substation in Nova Scotia, and two cable transition stations.
Power transmitted:
500 MW
Direct voltage:
±200 kV
Projects in North America
Celilo station converter
Sicame has successfully delivered high voltage connectors and corona protection in several projects in North America
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Substation equipment - NAM catalog | ©Sicame Group 2025
Substation equipment - NAM catalog | ©Sicame Group 2025
23
Projects in North America
Projects in North America
Bipole III riel station converter
Chibougamau SVC Sicame provided ultra high voltage connectors for SVC (Static Var Compesator) substation. SVC to stabilize a large 735 kV transmission system in Canada. In Canada, Hydro-Québec is operating several Static Var Compensators (SVC) in its 735 kV transmission system. The 735 kV grid transmits a total of 15000 MVA of environmentally friendly hydro power over six lines from the generating stations along La Grande Rivière at James Bay down to the Montréal area some 1000 km to the south. Purpose of SVC is: • Regulate and control the 735 kV voltage under normal steady-state as well as contingency conditions; • Provide dynamic, fast response reactive power following system contingencies such as network short circuits and line and generator disconnections; • Enhance the first swing stability by maintaining system voltages during large disturbances
Controlled voltage
735 kV
SVC rating
-300/+300 Mvar
Ambient temperature range
-40°C to +40°
These HVDC converter stations are part of the Manitoba Hydro Bipole III transmission project. The entire transmission line is acting as an “electricity highway,” bolstering the reliability of Manitoba’s electricity supply by reducing dependence on existing HVDC transmission lines and converter stations while also ensuring low-loss transport of renewable hydropower from northern generating stations to meet growing energy requirements. HVDC converter stations are specialized substations that support the conversion of electric power from high voltage alternating current (AC) to high-voltage direct current (HVDC), or vice versa, a critical component to interconnecting separate power systems. The HVDC project consists of two stations: Keewatinohk and Riel. The Keewatinohk Station is located in the far north of Manitoba, about 45 km north of Gillam, MB. The Riel station is located outside of Winnipeg. Voltage: 1000 V DC (+/-500 V DC)
Un = 150 kV In = 2.665 A Icc = 29 kA/s
Projects in North America
Un = 150 kV In = 4.533 A Icc = 40.3 kA/s 80 kA / 2 pipes
Projects in North America
Current: 2000 A
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Substation equipment - NAM catalog | ©Sicame Group 2025
Substation equipment - NAM catalog | ©Sicame Group 2025
25
Projects in North America
Other reference projects worldwide
Necec HVDC station converter
Project
Installation country
Voltage
Meftah Substation
Algeria
63/225 kV
Mamba and Rilima substations
Angola
230 kV
Lagoa Substation
Azores
60/30 kV
Karnafuli substation
Bangladesh
63/230 kV
Gramme substation
Belgium
380 kV
Bipole III Riel and Keewatinhok substations
Canada
345 kV
Cumbre and Changos substations
Chile
500 kV
Odense wind farm substation
Denmark
220 KV
Assiut substation
Egypt
34,5 kV
Busbar vibration dampers installed in several substations in Finland
Finland
400 kV
Techiman and Akosombo substations
Ghana
161 kV
Seoni substation
India
765/400/220 kV
Penawaran substation
Indonesia
150 kV
Ghom substation
Iran
63/230 kV
Clonee data center substation
Ireland
220 kV
Poggio a Caiano substation
Italy
380 kV
Daugavpils and Grobina substations
Latvia
380 kV
Pedra Mole Substation
Madeira
60 kV
Matola Substation
Mozambique
66 kV
Jhimipr wind farm and Quaid-e-Azam solar farm substations
Pakistan
150/220/500 kV
GPZ Makow substation
Poland
110 kV
Tavira substation
Portugal
400/150/60 kV
Ras Abu Fontas substation
Qatar
63/230 kV
Abqaig substation
Saudi Arabia
380 kV
CMS (Caithness-Moray HVDC link) Blackhillock and spittal station converters
Scotland
450 kV
Sicame has provided high voltage connectors to be installed on the station converters.
Kaolack substation
Senegal
245 kV
All connectors are designed and tested by our R&D experts to ensure the high level of performance required to work at this voltage level.
Cartelle substation
Spain
400 kV
Hemsjo substation
Sweden
380 kV
Bukoba substation
Tanzania
132 kV
Metlaoui and Kasserine Sud Substations
Tunisia
220 kV
Borssele substation
The Netherlands
380 kV
Birecik substation
Turkey
400 kV
Al Taweelah and Al Ain substations
UAE-Abu Dhabi
400 kV
Krakovskaya ssuubbssttaattioionn
Ukraine
330 kV
Nemo HVDC link - Richborough, Bolney and Ninfield substations
United Kingdom
400 kV
Celilo HVDC converter
USA
570 kV
El Furrial and Palital substations
Venezuela
230/400 kV
It is the first large-scale multi-terminal HVDC transmission in the world. The project consists of building a transmission line extending approximately 100 km between Appalaches substation in Saint Adrien d’Irlande (near Thetford Mines in the Chaudière Appalaches region) and a connection point on the Québec–Maine border. The project’s overall aim is to increase the exchange capacity between Québec and New England. The new 320 kV direct-current line will connect to the future New England Clean Energy Connect (NECEC) line, slated for construction in Maine.
Projects in North America
In tandem with this project, a new AC-to-DC converter will be installed at Appalaches substation to supply the planned transmission line.
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27
Reference project list
Other reference projects worldwide
02 HV Aluminum connectors Single connectors • S traight connector
30
• T-Connector
33
• Straight terminal
39
• T-Terminal
41
• Angle terminal
43
Bundle connectors • S traight connector
44
• Straight terminal
46
Supports • S upport for cable
47
• S upport for tube
49
Expansion connectors • S traight expansion terminal
50
• S traight expansion support
51
Earthing connectors • E arthing stirrups for tube
55
Accessories
28
• S pacers
56
• End cap
57
• C orona end cap
59 29
Straight connector
Straight connector SS (tube-cable)
SS (tube-cable)
Fig. 1
345 kV
Fig. 2
Up To
A2 - 70
345 kV
Part number
Fig No
Pipe size IPS inch (mm)
Cable inch (mm)
Bolts (tube) inch
Bolts (cable) inch
Part number
Fig No
Pipe size IPS inch (mm)
Cable inch (mm)
B D inch (mm) inch (mm)
Bolts (tube) inch
Bolts (cable) inch
S6M03S100-240NSIX
1
2 (60,3 mm)
1/0 (9,36 mm) - 650MCM (23,58 mm)
3,93 (100)
3,23 (82)
1/2 (M12)
3/8 (M10)
S10M16S330-420NSIX
1
3 1/2 (101,6 mm)
1300MCM (33,4 mm) - 2000MCM (41,40 mm)
3,93 (100) 3,93 (100)
1/2 (M12)
1/2 (M12)
S6M03S240-330NSIX
1
2 (60,3 mm)
700MCM (24,48 mm) - 1250MCM (32,7 mm)
3,93 (100) 3,93 (100)
1/2 (M12)
1/2 (M12)
S10M16S420-550NSIX
2
3 1/2 (101,6 mm)
2250MCM (43,92 mm) - 3500MCM (54,81 mm)
3,93 (100) 5,90 (150)
1/2 (M12)
1/2 (M12)
S6M03S330-420NSIX
1
2 (60,3 mm)
1300MCM (33,4 mm) - 2000MCM (41,40 mm)
3,93 (100) 3,93 (100)
1/2 (M12)
1/2 (M12)
S11M43S100-240NSIX
1
4 (114,3 mm)
1/0 (9,36 mm) - 650MCM (23,58 mm)
4,57 (116)
3,23 (82)
5/8 (M16)
3/8 (M10)
S6M03S420-550NSIX
2
2 (60,3 mm)
2250MCM (43,92 mm) - 3500MCM (54,81 mm)
3,93 (100) 5,90 (150)
1/2 (M12)
1/2 (M12)
S11M43S240-330NSIX
1
4 (114,3 mm)
700MCM (24,48 mm) - 1250MCM (32,7 mm)
4,57 (116)
3,93 (100)
5/8 (M16)
1/2 (M12)
S7M3S100-240NSIX
1
2 1/2 (73 mm)
1/0 (9,36 mm) - 650MCM (23,58 mm)
3,93 (100)
3,23 (82)
1/2 (M12)
3/8 (M10)
S11M43S330-420NSIX
1
4 (114,3 mm)
1300MCM (33,4 mm) - 2000MCM (41,40 mm)
4,57 (116)
3,93 (100)
5/8 (M16)
1/2 (M12)
S7M3S240-330NSIX
1
2 1/2 (73 mm)
700MCM (24,48 mm) - 1250MCM (32,7 mm)
3,93 (100) 3,93 (100)
1/2 (M12)
1/2 (M12)
S11M43S420-550NSIX
2
4 (114,3 mm)
2250MCM (43,92 mm) - 3500MCM (54,81 mm)
4,57 (116)
5,90 (150)
5/8 (M16)
1/2 (M12)
S7M3S330-420NSIX
1
2 1/2 (73 mm)
1300MCM (33,4 mm) - 2000MCM (41,40 mm)
3,93 (100) 3,93 (100)
1/2 (M12)
1/2 (M12)
S14M13S100-240NSIX
1
5 (141,3 mm)
1/0 (9,36 mm) - 650MCM (23,58 mm)
4,57 (116)
3,23 (82)
5/8 (M16)
3/8 (M10)
S7M3S420-550NSIX
2
2 1/2 (73 mm)
2250MCM (43,92 mm) - 3500MCM (54,81 mm)
3,93 (100) 5,90 (150)
1/2 (M12)
1/2 (M12)
S14M13S240-330NSIX
1
5 (141,3 mm)
700MCM (24,48 mm) - 1250MCM (32,7 mm)
4,57 (116)
3,93 (100)
5/8 (M16)
1/2 (M12)
S8M9S100-240NSIX
1
3 (88,9 mm)
1/0 (9,36 mm) - 650MCM (23,58 mm)
3,93 (100)
3,23 (82)
1/2 (M12)
3/8 (M10)
S14M13S330-420NSIX
1
5 (141,3 mm)
1300MCM (33,4 mm) - 2000MCM (41,40 mm)
4,57 (116)
3,93 (100)
5/8 (M16)
1/2 (M12)
S8M9S240-330NSIX
1
3 (88,9 mm)
700MCM (24,48 mm) - 1250MCM (32,7 mm)
3,93 (100) 3,93 (100)
1/2 (M12)
1/2 (M12)
S14M13S420-550NSIX
2
5 (141,3 mm)
2250MCM (43,92 mm) - 3500MCM (54,81 mm)
4,57 (116)
5,90 (150)
5/8 (M16)
1/2 (M12)
S8M9S330-420NSIX
1
3 (88,9 mm)
1300MCM (33,4 mm) - 2000MCM (41,40 mm)
3,93 (100) 3,93 (100)
1/2 (M12)
1/2 (M12)
S16M82S100-240NSIX
1
6 (168,2 mm)
1/0 (9,36 mm) - 650MCM (23,58 mm)
4,57 (116)
3,23 (82)
5/8 (M16)
3/8 (M10)
S8M9S420-550NSIX
2
3 (88,9 mm)
2250MCM (43,92 mm) - 3500MCM (54,81 mm)
3,93 (100) 5,90 (150)
1/2 (M12)
1/2 (M12)
S16M82S240-330NSIX
1
6 (168,2 mm)
700MCM (24,48 mm) - 1250MCM (32,7 mm)
4,57 (116)
3,93 (100)
5/8 (M16)
1/2 (M12)
S10M16S100-240NSIX
1
3 1/2 (101,6 mm)
1/0 (9,36 mm) - 650MCM (23,58 mm)
3,93 (100)
3,23 (82)
1/2 (M12)
3/8 (M10)
S16M82S330-420NSIX
1
6 (168,2 mm)
1300MCM (33,4 mm) - 2000MCM (41,40 mm)
4,57 (116)
3,93 (100)
5/8 (M16)
1/2 (M12)
S10M16S240-330NSIX
1
3 1/2 (101,6 mm)
700MCM (24,48 mm) - 1250MCM (32,7 mm)
3,93 (100) 3,93 (100)
1/2 (M12)
1/2 (M12)
S16M82S420-550NSIX
2
6 (168,2 mm)
2250MCM (43,92 mm) - 3500MCM (54,81 mm)
4,57 (116)
5,90 (150)
5/8 (M16)
1/2 (M12)
30
B D inch (mm) inch (mm)
A2 - 70
Substation equipment - NAM catalog | ©Sicame Group 2025
Substation equipment - NAM catalog | ©Sicame Group 2025
31
Single connectors
Fig. 2
Up To
Single connectors
Fig. 1
Straight connector
T-Connector
SS (tube-tube)
ST (tube-cable)
Fig. 1
Up To
A2 - 70
345 kV
Pipe size IPS inch (mm)
B inch (mm)
Bolts inch
S6M03SZ2NSIX
2 (60,3 mm)
3,93 (100)
1/2 (M12)
S7M3SZ2NSIX
2 1/2 (73 mm)
3,93 (100)
1/2 (M12)
S8M9SZ2NSIX
3 (88,9 mm)
3,93 (100)
1/2 (M12)
S10M16SZ2NSIX
3 1/2 (101,6 mm)
3,93 (100)
1/2 (M12)
S11M43SZ2NSIX
4 (114,3 mm)
4,56 (116)
5/8 (M16)
S14M13SZ2NSIX
5 (141,3 mm)
4,56 (116)
5/8 (M16)
S16M8SZ2NSIX
6 (168,2 mm)
4,56 (116)
5/8 (M16)
Single connectors
Part number
32
Substation equipment - NAM catalog | ©Sicame Group 2025
Fig. 2
A2 - 70
Part number
Fig No
Pipe size IPS inch (mm)
Cable inch (mm)
B inch (mm)
D inch (mm)
Bolts (cable) inch (mm)
Bolts (tube) inch (mm)
S100-240T6M03NSIX
1
2 (60,3 mm)
1/0 (9,36 mm) - 650MCM (23,58 mm)
3,23 (82)
3,93 (100)
3/8 (M10)
1/2 (M12)
S240-330T6M03NSIX
1
2 (60,3 mm)
700MCM (24,48 mm) - 1250MCM (32,7 mm)
3,93 (100)
3,93 (100)
1/2 (M12)
1/2 (M12)
S330-420T6M03NSIX
1
2 (60,3 mm)
1300MCM (33,4 mm) - 2000MCM (41,40 mm)
3,93 (100)
3,93 (100)
1/2 (M12)
1/2 (M12)
S420-550T6M03NSIX
2
2 (60,3 mm)
2250MCM (43,92 mm) - 3500MCM (54,81 mm)
5,90 (150)
3,93 (100)
1/2 (M12)
1/2 (M12)
S100-240T7M3NSIX
1
2 1/2 (73 mm)
1/0 (9,36 mm) - 650MCM (23,58 mm)
3,23 (82)
3,93 (100)
3/8 (M10)
1/2 (M12)
S240-330T7M3NSIX
1
2 1/2 (73 mm)
700MCM (24,48 mm) - 1250MCM (32,7 mm)
3,93 (100)
3,93 (100)
1/2 (M12)
1/2 (M12)
S330-420T7M3NSIX
1
2 1/2 (73 mm)
1300MCM (33,4 mm) - 2000MCM (41,40 mm)
3,93 (100)
3,93 (100)
1/2 (M12)
1/2 (M12)
S420-550T7M3NSIX
2
2 1/2 (73 mm)
2250MCM (43,92 mm) - 3500MCM (54,81 mm)
5,90 (150)
3,93 (100)
1/2 (M12)
1/2 (M12)
S100-240T8M9NSIX
1
3 (88,9 mm)
1/0 (9,36 mm) - 650MCM (23,58 mm)
3,23 (82)
3,93 (100)
3/8 (M10)
1/2 (M12)
S240-330T8M9NSIX
1
3 (88,9 mm)
700MCM (24,48 mm) - 1250MCM (32,7 mm)
3,93 (100)
3,93 (100)
1/2 (M12)
1/2 (M12)
S330-420T8M9NSIX
1
3 (88,9 mm)
1300MCM (33,4 mm) - 2000MCM (41,40 mm)
3,93 (100)
3,93 (100)
1/2 (M12)
1/2 (M12)
S420-550T8M9NSIX
2
3 (88,9 mm)
2250MCM (43,92 mm) - 3500MCM (54,81 mm)
5,90 (150)
3,93 (100)
1/2 (M12)
1/2 (M12)
S100-240T10M16NSIX
1
3 1/2 (101,6 mm)
1/0 (9,36 mm) - 650MCM (23,58 mm)
3,23 (82)
3,93 (100)
3/8 (M10)
1/2 (M12)
S240-330T10M16NSIX
1
3 1/2 (101,6 mm)
700MCM (24,48 mm) - 1250MCM (32,7 mm)
3,93 (100)
3,93 (100)
1/2 (M12)
1/2 (M12)
Substation equipment - NAM catalog | ©Sicame Group 2025
33
Single connectors
Up To
500 kV
T-Connector
T-Connector
ST (tube-cable)
ST (tube-tube)
Fig. 1
Single connectors
Up To
Fig. 2
A2 - 70
500 kV
Part number
Fig No
Pipe size IPS inch (mm)
Cable inch (mm)
B inch (mm)
D inch (mm)
Bolts (cable) inch (mm)
Bolts (tube) inch (mm)
S330-420T10M16NSIX
1
3 1/2 (101,6 mm)
1300MCM (33,4 mm) 2000MCM (41,40 mm)
3,93 (100)
3,93 (100)
1/2 (M12)
1/2 (M12)
5,90 (150)
3,93 (100)
1/2 (M12)
1/2 (M12)
S420-550T10M16NSIX
2
3 1/2 (101,6 mm)
2250MCM (43,92 mm) 3500MCM (54,81 mm)
S100-240T11M43NSIX
1
4 (114,3 mm)
1/0 (9,36 mm) 650MCM (23,58 mm)
3,23 (82)
4,57 (116)
3/8 (M10)
5/8 (M16)
S240-330T11M43NSIX
1
4 (114,3 mm)
700MCM (24,48 mm) 1250MCM (32,7 mm)
3,93 (100)
4,57 (116)
1/2 (M12)
5/8 (M16)
3,93 (100)
4,57 (116)
1/2 (M12)
5/8 (M16)
S330-420T11M43NSIX
1
4 (114,3 mm)
1300MCM (33,4 mm) 2000MCM (41,40 mm)
S420-550T11M43NSIX
2
4 (114,3 mm)
2250MCM (43,92 mm) 3500MCM (54,81 mm)
5,90 (150)
4,57 (116)
1/2 (M12)
5/8 (M16)
S100-240T14M13NSIX
1
5 (141,3 mm)
1/0 (9,36 mm) 650MCM (23,58 mm)
3,23 (82)
4,57 (116)
3/8 (M10)
5/8 (M16)
S240-330T14M13NSIX
1
5 (141,3 mm)
700MCM (24,48 mm) 1250MCM (32,7 mm)
3,93 (100)
4,57 (116)
1/2 (M12)
5/8 (M16)
S330-420T14M13NSIX
1
5 (141,3 mm)
1300MCM (33,4 mm) 2000MCM (41,40 mm)
3,93 (100)
4,57 (116)
1/2 (M12)
5/8 (M16)
S420-550T14M13NSIX
2
5 (141,3 mm)
2250MCM (43,92 mm) 3500MCM (54,81 mm)
5,90 (150)
4,57 (116)
1/2 (M12)
5/8 (M16)
S100-240T16M8NSIX
1
6 (168,2 mm)
1/0 (9,36 mm) 650MCM (23,58 mm)
3,23 (82)
4,57 (116)
3/8 (M10)
5/8 (M16)
S240-330T16M8NSIX
1
6 (168,2 mm)
700MCM (24,48 mm) 1250MCM (32,7 mm)
3,93 (100)
4,57 (116)
1/2 (M12)
5/8 (M16)
S330-420T16M8NSIX
1
6 (168,2 mm)
1300MCM (33,4 mm) 2000MCM (41,40 mm)
3,93 (100)
4,57 (116)
1/2 (M12)
5/8 (M16)
S420-550T16M8NSIX
2
6 (168,2 mm)
2250MCM (43,92 mm) 3500MCM (54,81 mm)
5,90 (150)
4,57 (116)
1/2 (M12)
5/8 (M16)
34
Substation equipment - NAM catalog | ©Sicame Group 2025
A2 - 70
Part number
Pipe main IPS inch (mm)
Pipe tap IPS inch (mm)
B inch (mm)
C inch (mm)
D inch (mm)
Bolts inch
S6M03TNSIX
2 (60,3 mm)
2 (60,3 mm)
3,93 (100)
3,93 (100)
3,94 (100)
1/2 (M12)
S7M3TNSIX
2 1/2 (73 mm)
2 1/2 (73 mm)
3,93 (100)
3,93 (100)
3,94 (100)
1/2 (M12)
S8M9TNSIX
3 (88,9 mm)
3 (88,9 mm)
3,93 (100)
3,93 (100)
3,94 (100)
1/2 (M12)
S10M16TNSIX
3 1/2 (101,6 mm)
3 1/2 (101,6 mm)
3,93 (100)
3,93 (100)
3,94 (100)
1/2 (M12)
S11M43TNSIX
4 (114,3 mm)
4 (114,3 mm)
4,57 (116)
4,57 (116)
4,57 (116)
5/8 (M16)
S14M13TNSIX
5 (141,3 mm)
5 (141,3 mm)
4,57 (116)
4,57 (116)
4,57 (116)
5/8 (M16)
S16M8TNSIX
6 (168,2 mm)
6 (168,2 mm)
4,57 (116)
4,57 (116)
4,57 (116)
5/8 (M16)
Single connectors
Up To
345 kV
Substation equipment - NAM catalog | ©Sicame Group 2025
35
T-Connector
T-Connector
ST (cable-cable)
STK
Fig. 1
Up To
345 kV
Fig. 2
A2 - 70
Cable tap inch (mm)
Cable main inch (mm)
B D inch (mm) inch (mm)
Bolts (tap) inch
Bolts (main) inch
S110-240T100-240NSIX
1
1/0 (9,36 mm) 650MCM (23,58 mm)
1/0 (9,36 mm) 650MCM (23,58 mm)
3,23 (82)
3/8 (M10)
3/8 (M10)
1
1/0 (9,36 mm) 650MCM (23,58 mm)
700MCM (24,48 mm) 1250MCM (32,7 mm)
S110-240T240-330NSIX
3,23 (82)
3,93 (100)
3/8 (M10)
1/2 (M12)
S110-240T330-420NSIX
1
1/0 (9,36 mm) 650MCM (23,58 mm)
1300MCM (33,4 mm) 2000MCM (41,40 mm)
3,23 (82)
3,93 (100)
3/8 (M10)
1/2 (M12)
S110-240T420-550NSIX
1
1/0 (9,36 mm) 2250MCM (43,92 mm) 3,23 (82) 650MCM (23,58 mm) 3500MCM (54,81 mm)
3,93 (100)
3/8 (M10)
1/2 (M12)
S240-330T240-330NSIX
1
700MCM (24,48 mm) - 700MCM (24,48 mm) 3,93 (100) 3,93 (100) 1250MCM (32,7 mm) 1250MCM (32,7 mm)
1/2 (M12)
1/2 (M12)
S240-330T330-420NSIX
1
700MCM (24,48 mm) - 1300MCM (33,4 mm) 3,93 (100) 3,93 (100) 1250MCM (32,7 mm) 2000MCM (41,40 mm)
1/2 (M12)
1/2 (M12)
S240-330T420-550NSIX
1
700MCM (24,48 mm) - 2250MCM (43,92 mm) 3,93 (100) 3,93 (100) 1250MCM (32,7 mm) 3500MCM (54,81 mm)
1/2 (M12)
1/2 (M12)
S330-420T330-420NSIX
1
1300MCM (33,4 mm) - 1300MCM (33,4 mm) 3,93 (100) 3,93 (100) 2000MCM (41,40 mm) 2000MCM (41,40 mm)
1/2 (M12)
1/2 (M12)
S330-420T420-550NSIX
1
1300MCM (33,4 mm) - 2250MCM (43,92 mm) 3,93 (100) 3,93 (100) 2000MCM (41,40 mm) 3500MCM (54,81 mm)
1/2 (M12)
1/2 (M12)
S420-550T420-550NSIX
2
2250MCM (43,92 mm) - 2250MCM (43,92 mm) 5,90 (150) 5,90 (150) 3500MCM (54,81 mm) 3500MCM (54,81 mm)
1/2 (M12)
1/2 (M12)
3,23 (82)
Part number
Pipe main IPS inch (mm)
Pipe tap IPS inch (mm)
B inch (mm)
D inch (mm)
inch
Bolts (main) inch
α
S6M03THNSIX
2 (60,3 mm)
2 (60,3 mm)
3,93 (100)
3,93 (100)
1/2 (M12)
1/2 (M12)
10
S6M03TH7M3NSIX
2 1/2 (73 mm)
2 (60,3 mm)
3,93 (100)
3,93 (100)
1/2 (M12)
1/2 (M12)
10
S7M3THNSIX
2 1/2 (73 mm)
2 1/2 (73 mm)
3,93 (100)
3,93 (100)
1/2 (M12)
1/2 (M12)
10
S6M03TH8M9NSIX
3 (88,9 mm)
2 (60,3 mm)
3,93 (100)
3,93 (100)
1/2 (M12)
1/2 (M12)
10
S7M3TH8M9NSIX
3 (88,9 mm)
2 1/2 (73 mm)
3,93 (100)
3,93 (100)
1/2 (M12)
1/2 (M12)
10
S8M9THNSIX
3 (88,9 mm)
3 (88,9 mm)
3,93 (100)
3,93 (100)
1/2 (M12)
1/2 (M12)
10
S6M03TH10M16NSIX
3 1/2 (101,6 mm)
2 (60,3 mm)
3,93 (100)
3,93 (100)
1/2 (M12)
1/2 (M12)
10
S7M3TH10M16NSIX
3 1/2 (101,6 mm)
2 1/2 (73 mm)
3,93 (100)
3,93 (100)
1/2 (M12)
1/2 (M12)
10
S8M9TH10M16NSIX
3 1/2 (101,6 mm)
3 (88,9 mm)
3,93 (100)
3,93 (100)
1/2 (M12)
1/2 (M12)
10
S6M03TH11M43NSIX
4 (114,3 mm)
2 (60,3 mm)
3,93 (100)
4,56 (116)
1/2 (M12)
5/8 (M16)
10
S7M3TH11M43NSIX
4 (114,3 mm)
2 1/2 (73 mm)
3,93 (100)
4,56 (116)
1/2 (M12)
5/8 (M16)
10
S8M9TH11M43NSIX
4 (114,3 mm)
3 (88,9 mm)
3,93 (100)
4,56 (116)
1/2 (M12)
5/8 (M16)
10
S11M43THNSIX
4 (114,3 mm)
4 (114,3 mm)
4,56 (116)
4,56 (116)
5/8 (M16)
5/8 (M16)
10
Single connectors
Fig No
A2 - 70
Single connectors
Part number
Up To
500 kV
36
Substation equipment - NAM catalog | ©Sicame Group 2025
Substation equipment - NAM catalog | ©Sicame Group 2025
37
T-Connector
Straight terminal
SATJ
SA (tube) Ф
Up To
500 kV
Up To
A2 - 70
500 kV
A2 - 70
Pipe tap IPS inch (mm)
C inch (mm)
D inch (mm)
Bolts (main) inch
Bolts (tap) inch
α
Part number
Pad type
Pipe size IPS inch (mm)
B inch (mm)
L inch (mm)
W inch (mm)
T inch (mm)
Bolts inch
Current A
S6M03ATJNSIX
2 (60,3 mm)
2 (60,3 mm)
3,93 (100)
3,93 (100)
1/2 (M12)
1/2 (M12)
30
S6M03AC2NSIX
1
2 (60,3 mm)
3,93 (100)
3 (76)
2 (50,8)
0,79 (20)
1/2 (M12)
1520
S6M03ATJ7M3NSIX
2 (60,3 mm)
2 1/2 (73 mm)
3,93 (100)
3,93 (100)
1/2 (M12)
1/2 (M12)
30
S6M03AC3NSIX
2
2 (60,3 mm)
3,93 (100)
3 (76)
3 (76)
0,79 (20)
1/2 (M12)
2000
S6M03ATJ8M9NSIX
2 (60,3 mm)
3 (88,9 mm)
3,93 (100)
3,93 (100)
1/2 (M12)
1/2 (M12)
30
S6M03AC44NSIX
2
2 (60,3 mm)
3,93 (100)
4 (102)
4 (102)
0,79 (20)
1/2 (M12)
2000
S6M03ATJ10M16NSIX
2 (60,3 mm)
3 1/2 (101,6 mm)
3,93 (100)
3,93 (100)
1/2 (M12)
1/2 (M12)
30
S7M3AC2NSIX
1
2 1/2 (73 mm)
3,93 (100)
3 (76)
2 (50,8)
0,79 (20)
1/2 (M12)
2000
S7M3ATJ10M16NSIX
2 1/2 (73 mm)
3 1/2 (101,6 mm)
3,93 (100)
3,93 (100)
1/2 (M12)
1/2 (M12)
30
S7M3AC3NSIX
2
2 1/2 (73 mm)
3,93 (100)
3 (76)
3 (76)
0,79 (20)
1/2 (M12)
2000
S8M9ATJ10M16NSIX
3 (88,9 mm)
3 1/2 (101,6 mm)
3,93 (100)
3,93 (100)
1/2 (M12)
1/2 (M12)
30
S7M3AC44NSIX
2
2 1/2 (73 mm)
3,93 (100)
4 (102)
4 (102)
0,79 (20)
1/2 (M12)
2000
S6M03ATJ11M43NSIX
2 (60,3 mm)
4 (114,3 mm)
3,93 (100)
4,56 (116)
1/2 (M12)
5/8 (M16)
30
S8M9AC2NSIX
1
3 (88,9 mm)
3,93 (100)
3 (76)
2 (50,8)
0,79 (20)
1/2 (M12)
2000
S7M3ATJ11M43NSIX
2 1/2 (73 mm)
4 (114,3 mm)
3,93 (100)
4,56 (116)
1/2 (M12)
5/8 (M16)
30
S8M9AC3NSIX
2
3 (88,9 mm)
3,93 (100)
3 (76)
3 (76)
0,79 (20)
1/2 (M12)
2000
S8M9ATJ11M43NSIX
3 (88,9 mm)
4 (114,3 mm)
3,93 (100)
4,56 (116)
1/2 (M12)
5/8 (M16)
30
S8M9AC44NSIX
2
3 (88,9 mm)
3,93 (100)
4 (102)
4 (102)
0,79 (20)
1/2 (M12)
2000
S10M16AC2NSIX
1
3 1/2 (101,6 mm)
3,93 (100)
3 (76)
2 (50,8)
0,98 (25)
1/2 (M12)
2500
S10M16AC3NSIX
2
3 1/2 (101,6 mm)
3,93 (100)
3 (76)
3 (76)
0,98 (25)
1/2 (M12)
2500
S10M16AC44NSIX
2
3 1/2 (101,6 mm)
3,93 (100)
4 (102)
4 (102)
0,98 (25)
1/2 (M12)
2500
S11M43AC3NSIX
2
4 (114,3 mm)
4,56 (116)
3 (76)
3 (76)
0,98 (25)
5/8 (M16)
2500
S11M43AC44NSIX
2
4 (114,3 mm)
4,56 (116)
4 (102)
4 (102)
0,98 (25)
5/8 (M16)
2500
S14M13AC3NSIX
2
5 (141,3 mm)
4,56 (116)
3 (76)
3 (76)
0,98 (25)
5/8 (M16)
2500
S14M13AC44NSIX
2
5 (141,3 mm)
4,56 (116)
4 (102)
4 (102)
0,98 (25)
5/8 (M16)
2500
S16M8AC3NSIX
2
6 (168,2 mm)
4,56 (116)
3 (76)
3 (76)
0,98 (25)
5/8 (M16)
2500
S16M8AC44NSIX
2
6 (168,2 mm)
4,56 (116)
4 (102)
4 (102)
0,98 (25)
5/8 (M16)
2500
Single connectors
Pipe main IPS inch (mm)
Single connectors
Part number
38
Substation equipment - NAM catalog | ©Sicame Group 2025
Substation equipment - NAM catalog | ©Sicame Group 2025
39
Straight terminal
T-Terminal
SA (cable)
SF (tube)
Fig. 1
Up To
345 kV
Up To
A2 - 70
500 kV
Fig. 2
Part number
Fig No
Pad type
Cable inch (mm)
B L W inch (mm) inch (mm) inch (mm)
T inch (mm)
Bolts inch
Current A
S100-240A2NSIX
1
1
1/0 (9,36 mm) 650MCM (23,58 mm)
3,23 (82)
0,63 (16)
3/8 (M10)
816
3,23 (82)
3 (76)
3 (76)
0,63 (16)
3/8 (M10)
1216
3 (76)
2 (50,8)
S100-240A3NSIX
1
2
1/0 (9,36 mm) 650MCM (23,58 mm)
S100-240A44NSIX
1
2
1/0 (9,36 mm) 650MCM (23,58 mm)
3,23 (82)
4 (102)
4 (102)
0,63 (16)
3/8 (M10)
1632
S240-330A2NSIX
1
1
700MCM (24,48 mm) 1250MCM (32,7 mm)
3,93 (100)
3 (76)
2 (50,8)
0,63 (16)
1/2 (M12)
800
3,93 (100)
3 (76)
3 (76)
0,63 (16)
1/2 (M12)
1200
S240-330A3NSIX
1
2
700MCM (24,48 mm) 1250MCM (32,7 mm)
S240-330A44NSIX
1
2
700MCM (24,48 mm) 1250MCM (32,7 mm)
3,93 (100)
4 (102)
4 (102)
0,63 (16)
1/2 (M12)
1632
S330-420A2NSIX
1
1
1300MCM (33,4 mm) 2000MCM (41,40 mm)
3,93 (100)
3 (76)
2 (50,8)
0,63 (16)
1/2 (M12)
800
3,93 (100)
3 (76)
3 (76)
0,63 (16)
1/2 (M12)
1200
S330-420A3NSIX
1
2
1300MCM (33,4 mm) 2000MCM (41,40 mm)
S330-420A44NSIX
1
2
1300MCM (33,4 mm) 2000MCM (41,40 mm)
3,93 (100)
4 (102)
4 (102)
0,63 (16)
1/2 (M12)
1632
S420-550A3NSIX
2
2
2250MCM (43,92 mm) 3500MCM (54,81 mm)
5,88 (150)
3 (76)
3 (76)
0,79 (20)
1/2 (M12)
1520
2
2250MCM (43,92 mm) 3500MCM (54,81 mm)
5,88 (150)
4 (102)
4 (102)
0,79 (20)
1/2 (M12)
Pad type
Pipe size IPS inch (mm)
B inch (mm)
L inch (mm)
W inch (mm)
T inch (mm)
Bolts inch
Current A
S6M03FC2NSIX
1
2 (60,3 mm)
3,93 (100)
3 (76)
2 (50,8)
0,79 (20)
1/2 (M12)
2000
S6M03FC3NSIX
2
2 (60,3 mm)
3,93 (100)
3 (76)
3 (76)
0,79 (20)
1/2 (M12)
2000
S6M03FC44NSIX
2
2 (60,3 mm)
3,93 (100)
4 (102)
4 (102)
0,79 (20)
1/2 (M12)
2000
S7M3FC2NSIX
1
2 1/2 (73 mm)
3,93 (100)
3 (76)
2 (50,8)
0,79 (20)
1/2 (M12)
2000
S7M3FC3NSIX
2
2 1/2 (73 mm)
3,93 (100)
3 (76)
3 (76)
0,79 (20)
1/2 (M12)
2000
S7M3FC44NSIX
2
2 1/2 (73 mm)
3,93 (100)
4 (102)
4 (102)
0,79 (20)
1/2 (M12)
2000
S8M9FC2NSIX
1
3 (88,9 mm)
3,93 (100)
3 (76)
2 (50,8)
0,79 (20)
1/2 (M12)
2000
S8M9FC3NSIX
2
3 (88,9 mm)
3,93 (100)
3 (76)
3 (76)
0,79 (20)
1/2 (M12)
2000
S8M9FC44NSIX
2
3 (88,9 mm)
3,93 (100)
4 (102)
4 (102)
0,79 (20)
1/2 (M12)
2000
S10M16FC3NSIX
2
3 1/2 (101,6 mm)
3,93 (100)
3 (76)
3 (76)
0,98 (25)
1/2 (M12)
2500
S10M16FC44NSIX
2
3 1/2 (101,6 mm)
3,93 (100)
4 (102)
4 (102)
0,98 (25)
1/2 (M12)
2500
S11M43FC3NSIX
2
4 (114,3 mm)
4,56 (116)
3 (76)
3 (76)
0,98 (25)
5/8 (M16)
2500
S11M43FC44NSIX
2
4 (114,3 mm)
4,56 (116)
4 (102)
4 (102)
0,98 (25)
5/8 (M16)
2500
S14M13FC3NSIX
2
5 (141,3 mm)
4,56 (116)
3 (76)
3 (76)
0,98 (25)
5/8 (M16)
2500
S14M13FC44NSIX
2
5 (141,3 mm)
4,56 (116)
4 (102)
4 (102)
0,98 (25)
5/8 (M16)
2500
S16M8FC3NSIX
2
6 (168,2 mm)
4,56 (116)
3 (76)
3 (76)
0,98 (25)
5/8 (M16)
2500
S16M8FC44NSIX
2
6 (168,2 mm)
4,56 (116)
4 (102)
4 (102)
1,18 (30)
5/8 (M16)
3000
2040
Single connectors
2
Part number
Single connectors
S420-550A44NSIX
A2 - 70
40
Substation equipment - NAM catalog | ©Sicame Group 2025
Substation equipment - NAM catalog | ©Sicame Group 2025
41
T-Terminal
Angle terminal
SF (cable)
SAK (cable) Fig. 1
Fig. 1
Fig. 2 Up To
345 kV
Up To
Fig. 2
A2 - 70
Pad type
Cable inch (mm)
B L W inch (mm) inch (mm) inch (mm)
T inch (mm)
Bolts inch
Current A
Part number
Fig No
Pad type
Cable inch (mm)
S100-240FC2NSIX
1
1
S100-240FC3NSIX
1
S100-240FC44NSIX
B L W inch (mm) inch (mm) inch (mm)
T inch (mm)
Bolts inch
Current A
1/0 (9,36 mm) 650MCM (23,58 mm)
3,23 (82)
3 (76)
2 (50,8)
0,63 (16)
3/8 (M10)
816
S100-240AL2NSIX
1
1
1/0 (9,36 mm) 650MCM (23,58 mm)
3,23 (82)
3 (76)
2 (50,8)
0,63 (16)
3/8 (M10)
816
2
1/0 (9,36 mm) 650MCM (23,58 mm)
3,23 (82)
3 (76)
3 (76)
0,63 (16)
3/8 (M10)
1216
S100-240AL3NSIX
1
2
1/0 (9,36 mm) 650MCM (23,58 mm)
3,23 (82)
3 (76)
3 (76)
0,63 (16)
3/8 (M10)
1216
1
2
1/0 (9,36 mm) 650MCM (23,58 mm)
3,23 (82)
4 (102)
4 (102)
0,63 (16)
3/8 (M10)
1632
S100-240AL44NSIX
1
2
1/0 (9,36 mm) 650MCM (23,58 mm)
3,23 (82)
4 (102)
4 (102)
0,63 (16)
3/8 (M10)
1632
S240-330FC2NSIX
1
1
700MCM (24,48 mm) 1250MCM (32,7 mm)
3,93 (100)
3 (76)
2 (50,8)
0,63 (16)
1/2 (M12)
800
S240-330AL2NSIX
1
1
700MCM (24,48 mm) 1250MCM (32,7 mm)
3,93 (100)
3 (76)
2 (50,8)
0,63 (16)
1/2 (M12)
800
S240-330FC3NSIX
1
2
700MCM (24,48 mm) 1250MCM (32,7 mm)
3,93 (100)
3 (76)
3 (76)
0,63 (16)
1/2 (M12)
1200
S240-330AL3NSIX
1
2
700MCM (24,48 mm) 1250MCM (32,7 mm)
3,93 (100)
3 (76)
3 (76)
0,63 (16)
1/2 (M12)
1200
S240-330FC44NSIX
1
2
700MCM (24,48 mm) 1250MCM (32,7 mm)
3,93 (100)
4 (102)
4 (102)
0,63 (16)
1/2 (M12)
1632
S240-330AL44NSIX
1
2
700MCM (24,48 mm) 1250MCM (32,7 mm)
3,93 (100)
4 (102)
4 (102)
0,63 (16)
1/2 (M12)
1632
S330-420FC2NSIX
1
1
1300MCM (33,4 mm) 2000MCM (41,40 mm)
3,93 (100)
3 (76)
2 (50,8)
0,63 (16)
1/2 (M12)
800
S330-420AL2NSIX
1
1
1300MCM (33,4 mm) 2000MCM (41,40 mm)
3,93 (100)
3 (76)
2 (50,8)
0,63 (16)
1/2 (M12)
800
S330-420FC3NSIX
1
2
1300MCM (33,4 mm) 2000MCM (41,40 mm)
3,93 (100)
3 (76)
3 (76)
0,63 (16)
1/2 (M12)
1200
S330-420AL3NSIX
1
2
1300MCM (33,4 mm) 2000MCM (41,40 mm)
3,93 (100)
3 (76)
3 (76)
0,63 (16)
1/2 (M12)
1200
S330-420FC44NSIX
1
2
1300MCM (33,4 mm) 2000MCM (41,40 mm)
3,93 (100)
4 (102)
4 (102)
0,63 (16)
1/2 (M12)
1632
S330-420AL44NSIX
1
2
1300MCM (33,4 mm) 2000MCM (41,40 mm)
3,93 (100)
4 (102)
4 (102)
0,63 (16)
1/2 (M12)
1632
S420-550FC3NSIX
2
2
2250MCM (43,92 mm) 3500MCM (54,81 mm)
5,88 (150)
3 (76)
3 (76)
0,79 (20)
1/2 (M12)
1520
S420-550AL3NSIX
2
2
2250MCM (43,92 mm) 3500MCM (54,81 mm)
5,88 (150)
3 (76)
3 (76)
0,79 (20)
1/2 (M12)
1520
S420-550FC44NSIX
2
2
2250MCM (43,92 mm) 3500MCM (54,81 mm)
5,88 (150)
4 (102)
4 (102)
0,79 (20)
1/2 (M12)
2040
S420-550AL44NSIX
2
2
2250MCM (43,92 mm) 3500MCM (54,81 mm)
5,88 (150)
4 (102)
4 (102)
0,79 (20)
1/2 (M12)
2040
Single connectors
Fig No
A2 - 70
Single connectors
Part number
345 kV
42
Substation equipment - NAM catalog | ©Sicame Group 2025
Substation equipment - NAM catalog | ©Sicame Group 2025
43
Straight connector
Straight connector SSD (stud/tube-cable)
SSD (stud/tube-cable)
Fig. 1
Bundle connectors
Up To
A2 - 70
345 kV
Fig. 2
Fig. 2
D inch (mm)
Bolts (tube) inch
Bolts (cable) inch
Part number
Fig No
Pipe size IPS inch (mm)
Cable inch (mm)
B C D inch (mm) inch (mm) inch (mm)
Bolts (tube) inch
Bolts (cable) inch
3,93 (100) 3,93 (100)
3,23 (82)
1/2 (M12)
3/8 (M10)
S10M16S330-420D2NSIX
1
3 1/2 (101,6 mm)
1250MCM (32,7 mm) 2000MCM (41,40 mm)
3,93 (100) 4,72 (120) 3,93 (100)
1/2 (M12)
1/2 (M12)
650MCM (23,58 mm) 1250MCM (32,7 mm)
3,93 (100)
4,33 (110)
3,93 (100)
1/2 (M12)
1/2 (M12)
S10M16S420-550D2NSIX
2
3 1/2 (101,6 mm)
2000MCM (41,40 mm) 3,93 (100) 3500MCM (54,81 mm)
2 (60,3 mm)
1250MCM (32,7 mm) 2000MCM (41,40 mm)
3,93 (100) 4,72 (120)
3,93 (100)
1/2 (M12)
1/2 (M12)
S11M43S100-240D2NSIX
1
4 (114,3 mm)
2
2 (60,3 mm)
2000MCM (41,40 mm) 3,93 (100) 3500MCM (54,81 mm)
5,31 (135)
5,90 (150)
1/2 (M12)
1/2 (M12)
S11M43S240-330D2NSIX
1
S7M3S100-240D2NSIX
1
2 1/2 (73 mm)
1/0 (9,36 mm) 650MCM (23,58 mm)
3,93 (100) 3,93 (100)
3,23 (82)
1/2 (M12)
3/8 (M10)
S11M43S330-420D2NSIX
S7M3S240-330D2NSIX
1
2 1/2 (73 mm)
650MCM (23,58 mm) 1250MCM (32,7 mm)
3,93 (100)
4,33 (110)
3,93 (100)
1/2 (M12)
1/2 (M12)
S7M3S330-420D2NSIX
1
2 1/2 (73 mm)
1250MCM (32,7 mm) 2000MCM (41,40 mm)
3,93 (100) 4,72 (120)
3,93 (100)
1/2 (M12)
S7M3S420-550D2NSIX
2
2 1/2 (73 mm)
2000MCM (41,40 mm) 3,93 (100) 3500MCM (54,81 mm)
5,31 (135)
5,90 (150)
S8M9S100-240D2NSIX
1
3 (88,9 mm)
1/0 (9,36 mm) 650MCM (23,58 mm)
3,93 (100) 3,93 (100)
S8M9S240-330D2NSIX
1
3 (88,9 mm)
650MCM (23,58 mm) 1250MCM (32,7 mm)
3,93 (100)
S8M9S330-420D2NSIX
1
3 (88,9 mm)
1250MCM (32,7 mm) 2000MCM (41,40 mm)
S8M9S420-550D2NSIX
2
3 (88,9 mm)
2000MCM (41,40 mm) 3,93 (100) 3500MCM (54,81 mm)
S10M16S100-240D2NSIX
1
3 1/2 (101,6 mm)
S10M16S240-330D2NSIX
1
3 1/2 (101,6 mm)
Part number
Fig No
Pipe size IPS inch (mm)
Cable inch (mm)
S6M03S100-240D2NSIX
1
2 (60,3 mm)
1/0 (9,36 mm) 650MCM (23,58 mm)
S6M03S240-330D2NSIX
1
2 (60,3 mm)
S6M03S330-420D2NSIX
1
S6M03S420-550D2NSIX
44
B inch (mm)
C inch (mm)
A2 - 70
5,31 (135)
5,90 (150)
1/2 (M12)
1/2 (M12)
1/0 (9,36 mm) 650MCM (23,58 mm)
3,93 (100) 3,93 (100)
3,23 (82)
1/2 (M12)
3/8 (M10)
4 (114,3 mm)
650MCM (23,58 mm) 1250MCM (32,7 mm)
3,93 (100)
3,93 (100)
1/2 (M12)
1/2 (M12)
1
4 (114,3 mm)
1250MCM (32,7 mm) 2000MCM (41,40 mm)
3,93 (100) 4,72 (120) 3,93 (100)
1/2 (M12)
1/2 (M12)
S11M43S420-550D2NSIX
2
4 (114,3 mm)
2000MCM (41,40 mm) 3,93 (100) 3500MCM (54,81 mm)
5,31 (135)
5,90 (150)
1/2 (M12)
1/2 (M12)
1/2 (M12)
S14M13S100-240D2NSIX
1
5 (141,3 mm)
1/0 (9,36 mm) 650MCM (23,58 mm)
4,57 (116)
3,93 (100)
3,23 (82)
1/2 (M12)
3/8 (M10)
1/2 (M12)
1/2 (M12)
S14M13S240-330D2NSIX
1
5 (141,3 mm)
650MCM (23,58 mm) 1250MCM (32,7 mm)
4,57 (116)
4,33 (110)
3,93 (100)
1/2 (M12)
1/2 (M12)
3,23 (82)
1/2 (M12)
3/8 (M10)
S14M13S330-420D2NSIX
1
5 (141,3 mm)
1250MCM (32,7 mm) 2000MCM (41,40 mm)
4,57 (116)
4,72 (120) 3,93 (100)
1/2 (M12)
1/2 (M12)
4,33 (110)
3,93 (100)
1/2 (M12)
1/2 (M12)
S14M13S420-550D2NSIX
2
5 (141,3 mm)
2000MCM (41,40 mm) 3500MCM (54,81 mm)
4,57 (116)
5,31 (135)
5,90 (150)
1/2 (M12)
1/2 (M12)
3,93 (100) 4,72 (120)
3,93 (100)
1/2 (M12)
1/2 (M12)
S16M82S100-240D2NSIX
1
6 (168,2 mm)
1/0 (9,36 mm) 650MCM (23,58 mm)
4,57 (116)
3,93 (100)
3,23 (82)
1/2 (M12)
3/8 (M10)
5,31 (135)
5,90 (150)
1/2 (M12)
1/2 (M12)
S16M82S240-330D2NSIX
1
6 (168,2 mm)
650MCM (23,58 mm) 1250MCM (32,7 mm)
4,57 (116)
4,33 (110)
3,93 (100)
1/2 (M12)
1/2 (M12)
1/0 (9,36 mm) 650MCM (23,58 mm)
3,93 (100) 3,93 (100)
3,23 (82)
1/2 (M12)
3/8 (M10)
S16M82S330-420D2NSIX
1
6 (168,2 mm)
1250MCM (32,7 mm) 2000MCM (41,40 mm)
4,57 (116)
4,72 (120) 3,93 (100)
1/2 (M12)
1/2 (M12)
650MCM (23,58 mm) 1250MCM (32,7 mm)
3,93 (100)
3,93 (100)
1/2 (M12)
1/2 (M12)
S16M82S420-550D2NSIX
2
6 (168,2 mm)
2000MCM (41,40 mm) 3500MCM (54,81 mm)
4,57 (116)
5,31 (135)
1/2 (M12)
1/2 (M12)
4,33 (110)
Substation equipment - NAM catalog | ©Sicame Group 2025
Substation equipment - NAM catalog | ©Sicame Group 2025
4,33 (110)
5,90 (150)
45
Bundle connectors
Up To
345 kV
Fig. 1
Straight terminal
Support for cable
SDA (cable)
SLHB (cable)
Fig. 1
Up To
345 kV
Up To
A2 - 70
345 kV
Fig. 2 L inch (mm)
W inch (mm)
3,23 (82) 3,93 (100)
3 (76)
2 (50,8)
1/0 (9,36 mm) 650MCM (23,58 mm)
3,23 (82) 3,93 (100)
3 (76)
2
1/0 (9,36 mm) 650MCM (23,58 mm)
1
1
S240-330D2A3NSIX
1
S240-330D2A44NSIX
Fig No
Pad type
Cable inch (mm)
S100-240D2A2NSIX
1
1
1/0 (9,36 mm) 650MCM (23,58 mm)
S100-240D2A3NSIX
1
2
S100-240D2A44NSIX
1
S240-330D2A2NSIX
B inch (mm)
C inch (mm)
T inch (mm)
Bolts inch
Current A
Part number
Cable inch (mm)
B H BCD inch (mm) inch (mm) inch (mm)
D E T inch (mm) inch (mm) inch (mm)
0,79 (20) 3/8 (M10)
1520
SLH100-240B3NSIX
3 (76)
0,79 (20) 3/8 (M10)
1520
3,23 (82) 3,93 (100) 4 (102)
4 (102)
0,79 (20) 1/2 (M12)
650MCM (23,58 mm) 1250MCM (32,7 mm)
3,9 (100)
4,33 (110)
3 (76)
2 (50,8)
2
650MCM (23,58 mm) 1250MCM (32,7 mm)
3,9 (100)
4,33 (110)
3 (76)
1
2
650MCM (23,58 mm) 1250MCM (32,7 mm)
3,9 (100)
4,33 (110)
S330-420D2A2NSIX
1
1
1250MCM (32,7 mm) 2000MCM (41,40 mm)
S330-420D2A3NSIX
1
2
S330-420D2A44NSIX
1
S420-550D2A3NSIX S420-550D2A44NSIX
Bolts inch
1/0 (9,36 mm) 650MCM (23,58 mm)
1,97 (50)
3,54 (90)
3 (76)
4,33 (110)
0,55 (14)
0,5 (12)
3/8 (M10)
SLH100-240B5NSIX
1/0 (9,36 mm) 650MCM (23,58 mm)
1,97 (50)
3,54 (90)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
3/8 (M10)
2000
SLH240-330B3NSIX
700MCM (24,48 mm) 1250MCM (32,7 mm)
1,97 (50)
3,54 (90)
3 (76)
4,33 (110)
0,55 (14)
0,5 (12)
1/2 (M12)
0,79 (20) 1/2 (M12)
1520
SLH240-330B5NSIX
700MCM (24,48 mm) 1250MCM (32,7 mm)
1,97 (50)
3,54 (90)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
1/2 (M12)
3 (76)
0,79 (20) 1/2 (M12)
1520
SLH330-4200B3NSIX
1300MCM (33,4 mm) 2000MCM (41,40 mm)
1,97 (50)
3,54 (90)
3 (76)
4,33 (110)
0,55 (14)
0,5 (12)
1/2 (M12)
4 (102)
4 (102)
0,79 (20) 1/2 (M12)
2000
SLH330-4200B5NSIX
1300MCM (33,4 mm) 2000MCM (41,40 mm)
1,97 (50)
3,54 (90)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
1/2 (M12)
3,9 (100) 4,72 (120)
3 (76)
2 (50,8)
0,98 (25) 1/2 (M12)
1520
SLH420-550B3NSIX
2250MCM (43,92 mm) 1,97 (50) 3500MCM (54,81 mm)
3,54 (90)
3 (76)
4,33 (110)
0,55 (14)
0,5 (12)
1/2 (M12)
1250MCM (32,7 mm) 2000MCM (41,40 mm)
3,9 (100) 4,72 (120)
3 (76)
3 (76)
0,98 (25) 1/2 (M12)
1520
SLH420-550B5NSIX
2250MCM (43,92 mm) 1,97 (50) 3500MCM (54,81 mm)
3,54 (90)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
1/2 (M12)
2
1250MCM (32,7 mm) 2000MCM (41,40 mm)
3,9 (100) 4,72 (120)
4 (102)
4 (102)
0,98 (25) 1/2 (M12)
2000
2
2
2000MCM (41,40 mm) 5,88 (150) 5,31 (135) 3500MCM (54,81 mm)
3 (76)
3 (76)
0,98 (25) 1/2 (M12)
2000
2
2
2000MCM (41,40 mm) 5,88 (150) 5,31 (135) 3500MCM (54,81 mm)
4 (102)
4 (102)
0,98 (25) 1/2 (M12)
2000
Supports
Bundle connectors
Part number
A2 - 70
46
Substation equipment - NAM catalog | ©Sicame Group 2025
Substation equipment - NAM catalog | ©Sicame Group 2025
47
Support for cable
Support for tube
SLHDB (cable)
Up To
345 kV
SXHB
Up To
A2 - 70
500 kV
Part number
Cable inch (mm)
B inch (mm)
C inch (mm)
H inch (mm)
BCD inch (mm)
SLH100-240D2B3NSIX
1/0 (9,36 mm) 650MCM (23,58 mm)
1,61 (41)
3,93 (100)
3,54 (90)
3 (76)
SLH100-240D2B5NSIX
1/0 (9,36 mm) 650MCM (23,58 mm)
1,61 (41)
3,93 (100)
3,54 (90)
5 (127)
6,3 (160)
SLH240-330D2B3NSIX
700MCM (24,48 mm) 1250MCM (32,7 mm)
1,97 (50)
4,33 (110) 3,54 (90)
3 (76)
4,33 (110) 0,55 (14) 0,5 (12)
1/2 (M12)
SLH240-330D2B5NSIX
700MCM (24,48 mm) 1250MCM (32,7 mm)
1,97 (50)
4,33 (110) 3,54 (90)
5 (127)
6,3 (160)
1/2 (M12)
SLH330-420D2B3NSIX
1300MCM (33,4 mm) 2000MCM (41,40 mm)
1,97 (50) 4,92 (125) 3,54 (90)
3 (76)
4,33 (110) 0,55 (14) 0,5 (12)
1/2 (M12)
SLH330-420D2B5NSIX
1300MCM (33,4 mm) 2000MCM (41,40 mm)
1,97 (50) 4,92 (125) 3,54 (90)
5 (127)
6,3 (160)
0,5 (12)
1/2 (M12)
SLH420-550D2B3NSIX
2250MCM (43,92 mm) 3500MCM (54,81 mm)
1,97 (50) 4,92 (125) 3,54 (90)
3 (76)
4,33 (110) 0,55 (14) 0,5 (12)
1/2 (M12)
2250MCM (43,92 mm) SLH420-550D2B5NSIX 3500MCM (54,81 mm)
1,97 (50) 4,92 (125) 3,54 (90)
E inch (mm)
T inch (mm)
Bolts inch
4,33 (110) 0,55 (14) 0,5 (12) 3/8 (M10)
0,7 (18)
0,7 (18)
0,7 (18)
0,5 (12) 3/8 (M10)
0,5 (12)
0,5 (12)
1/2 (M12)
Pipe size IPS inch (mm)
B H BCD D E T Bolts inch (mm) inch (mm) inch (mm) inch (mm) inch (mm) inch (mm) inch (mm)
SXH6M03B3G70NSIX
2 (60,3 mm)
1,97 (50)
2,75 (70)
3 (76)
4,33 (110)
0,55 (14)
0,5 (12)
1/2 (M12)
SXH6M03B5G70NSIX
2 (60,3 mm)
1,97 (50)
2,75 (70)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
1/2 (M12)
SXH6M03B7G70NSIX
2 (60,3 mm)
1,97 (50)
2,75 (70)
7 (178)
8,35 (212)
0,7 (18)
0,5 (12)
1/2 (M12)
SXH7M3B3G80NSIX
2 1/2 (73 mm)
1,97 (50)
3,125 (80)
3 (76)
4,33 (110)
0,55 (14)
0,5 (12)
1/2 (M12)
SXH7M3B5G80NSIX
2 1/2 (73 mm)
1,97 (50)
3,125 (80)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
1/2 (M12)
SXH7M3B7G80NSIX
2 1/2 (73 mm)
1,97 (50)
3,125 (80)
7 (178)
8,35 (212)
0,7 (18)
0,5 (12)
1/2 (M12)
SXH8M9B3G92NSIX
3 (88,9 mm)
1,97 (50)
3,62 (92)
3 (76)
4,33 (110)
0,55 (14)
0,5 (12)
1/2 (M12)
SXH8M9B5G92NSIX
3 (88,9 mm)
1,97 (50)
3,62 (92)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
1/2 (M12)
SXH8M9B7G92NSIX
3 (88,9 mm)
1,97 (50)
3,62 (92)
7 (178)
8,35 (212)
0,7 (18)
0,5 (12)
1/2 (M12)
SXH10M16B3G102NSIX
3 1/2 (101,6 mm)
1,97 (50)
4 (102)
3 (76)
4,33 (110)
0,55 (14)
0,5 (12)
1/2 (M12)
SXH10M16B5G102NSIX
3 1/2 (101,6 mm)
1,97 (50)
4 (102)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
1/2 (M12)
SXH10M16B7G102NSIX
3 1/2 (101,6 mm)
1,97 (50)
4 (102)
7 (178)
8,35 (212)
0,7 (18)
0,6 (15)
1/2 (M12)
SXH11M43B3G114NSIX
4 (114,3 mm)
2,28 (58)
4,48 (114)
3 (76)
4,33 (110)
0,55 (14)
0,5 (12)
5/8 (M16)
SXH11M43B5G114NSIX
4 (114,3 mm)
2,28 (58)
4,48 (114)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
5/8 (M16)
SXH11M43B7G114NSIX
4 (114,3 mm)
2,28 (58)
4,48 (114)
7 (178)
8,35 (212)
0,7 (18)
0,5 (12)
5/8 (M16)
SXH14M13B3G127NSIX
5 (141,3 mm)
2,28 (58)
5 (127)
3 (76)
4,33 (110)
0,55 (14)
0,5 (12)
5/8 (M16)
SXH14M13B5G127NSIX
5 (141,3 mm)
2,28 (58)
5 (127)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
5/8 (M16)
SXH14M13B7G127NSIX
5 (141,3 mm)
2,28 (58)
5 (127)
7 (178)
8,35 (212)
0,7 (18)
0,5 (12)
5/8 (M16)
SXH16M8B3G140NSIX
6 (168,2 mm)
2,28 (58)
5,51 (140)
3 (76)
4,33 (110)
0,55 (14)
0,5 (12)
5/8 (M16)
SXH16M8B5G140NSIX
6 (168,2 mm)
2,28 (58)
5,51 (140)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
5/8 (M16)
SXH16M8B7G140NSIX
6 (168,2 mm)
2,28 (58)
5,51 (140)
7 (178)
8,35 (212)
0,7 (18)
0,5 (12)
5/8 (M16)
Supports
6,3 (160)
0,7 (18)
Part number
Supports
5 (127)
D inch (mm)
A2 - 70
48
Substation equipment - NAM catalog | ©Sicame Group 2025
Substation equipment - NAM catalog | ©Sicame Group 2025
49
Straight expansion terminal
Straight expansion support
SXA
SXHSB
Fig. 2
Up To
A2 - 70
500 kV
Part number
Pad type
Pipe size IPS inch (mm)
B inch (mm)
L inch (mm)
W inch (mm)
T inch (mm)
Bolts inch (mm)
Current A
S6M03XA3NC2NSIX
1
2 (60,3 mm)
1,97 (50)
3 (76)
3 (76)
1 (25)
2
1,24 (31,7)
1/2 (M12)
2000
S6M03XA44NC2NSIX
2
2 (60,3 mm)
1,97 (50)
4 (102)
4 (102)
0,78 (20)
2
1,24 (31,7)
1/2 (M12)
2000
S7M3XA3NC2NSIX
1
2 1/2 (73 mm)
1,97 (50)
3 (76)
3 (76)
1 (25)
2
1,24 (31,7)
1/2 (M12)
2000
S7M3XA44NC2NSIX
2
2 1/2 (73 mm)
1,97 (50)
4 (102)
4 (102)
0,78 (20)
2
1,24 (31,7)
1/2 (M12)
2000
S8M9XA3ND2NSIX
1
3 (88,9 mm)
1,97 (50)
3 (76)
3 (76)
1 (25)
2
1,54 (39,2) 1/2 (M12)
2500
S8M9XA44ND2NSIX
2
3 (88,9 mm)
1,97 (50)
4 (102)
4 (102)
1 (25)
2
1,54 (39,2) 1/2 (M12)
2500
S10M16XA3ND2NSIX
1
3 1/2 (101,6 mm)
1,97 (50)
3 (76)
3 (76)
1 (25)
2
1,54 (39,2) 1/2 (M12)
2500
S10M16XA44ND2NSIX
2
3 1/2 (101,6 mm)
1,97 (50)
4 (102)
4 (102)
1 (25)
2
1,54 (39,2) 1/2 (M12)
2500
S10M16XA6ND2NSIX
3
3 1/2 (101,6 mm)
1,97 (50)
4 (102)
6 (152)
1 (25)
2
1,54 (39,2) 1/2 (M12)
2500
S11M43XA3ND2NSIX
1
4 (114,3 mm)
4,57 (116)
3 (76)
3 (76)
1 (25)
2
1,54 (39,2) 5/8 (M16)
2500
S11M43XA44ND2NSIX
2
4 (114,3 mm)
4,57 (116)
4 (102)
4 (102)
1 (25)
2
1,54 (39,2) 5/8 (M16)
2500
S11M43XA6ND3NSIX
3
4 (114,3 mm)
4,57 (116)
4 (102)
6 (152)
1 (25)
3
1,54 (39,2) 5/8 (M16)
3800
S14M13XA3ND2NSIX
1
5 (141,3 mm)
4,57 (116)
3 (76)
3 (76)
1 (25)
2
1,54 (39,2) 5/8 (M16)
2500
S14M13XA44ND2NSIX
2
5 (141,3 mm)
4,57 (116)
4 (102)
4 (102)
1 (25)
2
1,54 (39,2) 5/8 (M16)
2500
S14M13XA6ND3NSIX
3
5 (141,3 mm)
4,57 (116)
4 (102)
6 (152)
1 (25)
3
1,54 (39,2) 5/8 (M16)
3800
S16M8XA3ND2NSIX
1
6 (168,2 mm)
4,57 (116)
3 (76)
3 (76)
1 (25)
2
1,54 (39,2) 5/8 (M16)
2500
S16M8XA44ND2NSIX
2
6 (168,2 mm)
4,57 (116)
4 (102)
4 (102)
1 (25)
2
1,54 (39,2) 5/8 (M16)
2500
S16M8XA6ND3NSIX
3
6 (168,2 mm)
4,57 (116)
4 (102)
6 (152)
1 (25)
3
1,54 (39,2) 5/8 (M16)
3800
Expansion connectors
Nº Ø cables inch (mm)
50
Substation equipment - NAM catalog | ©Sicame Group 2025
Fig. 1
A2 - 70
Part number
Pipe size IPS inch (mm)
B inch (mm)
Fig No
H inch (mm)
BCD inch (mm)
D inch (mm)
E inch (mm)
T inch (mm)
Nº cables
Ø inch (mm)
Bolts inch (mm)
Current A
SXH6M03SB3C2G70NSIX
2 (60,3 mm)
1,97 (50)
1
2,75 (70)
3 (76)
4,33 (110)
0,55 (14)
0,5 (12)
2
1,24 (31,7)
1/2 (M12)
2000
SXH6M03SB5C2G70NSIX
2 (60,3 mm)
1,97 (50)
1
2,75 (70)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
2
1,24 (31,7)
1/2 (M12)
2000
SXH6M03SB7C2G70NSIX
2 (60,3 mm)
1,97 (50)
1
2,75 (70)
7 (178)
8,35 (212)
0,7 (18)
0,5 (12)
2
1,24 (31,7)
1/2 (M12)
2000
SXH7M3SB3D2G80NSIX
2 1/2 (73 mm)
1,97 (50)
1
3,125 (80)
3 (76)
4,33 (110)
0,55 (14)
0,5 (12)
2
1,54 (39,2)
1/2 (M12)
2400
SXH7M3SB5D2G80NSIX
2 1/2 (73 mm)
1,97 (50)
1
3,125 (80)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
2
1,54 (39,2)
1/2 (M12)
2400
SXH7M3SB7D2G80NSIX
2 1/2 (73 mm)
1,97 (50)
1
3,125 (80)
7 (178)
8,35 (212)
0,7 (18)
0,5 (12)
2
1,54 (39,2)
1/2 (M12)
2400
SXH8M9SB5D2G92NSIX
3 (88,9 mm)
3,93 (100)
1
3,62 (92)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
2
1,54 (39,2)
1/2 (M12)
2400
SXH8M9SB5E2G92NSIX
3 (88,9 mm)
3,93 (100)
1
3,62 (92)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
2
1,76 (44,8)
1/2 (M12)
3200
SXH8M9SB7D2G92NSIX
3 (88,9 mm)
3,93 (100)
1
3,62 (92)
7 (178)
8,35 (212)
0,7 (18)
0,6 (15)
2
1,54 (39,2)
1/2 (M12)
2400
SXH8M9SB7E2G92NSIX
3 (88,9 mm)
3,93 (100)
1
3,62 (92)
7 (178)
8,35 (212)
0,7 (18)
0,6 (15)
2
1,76 (44,8)
1/2 (M12)
3200
SXH10M16SB5D2G102NSIX
3,5 (101,6 mm)
3,93 (100)
1
4 (102)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
2
1,54 (39,2)
1/2 (M12)
2400
SXH10M16SB5E2G102NSIX
3,5 (101,6 mm)
3,93 (100)
1
4 (102)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
2
1,76 (44,8)
1/2 (M12)
3200
SXH10M16SB7D2G102NSIX
3,5 (101,6 mm)
3,93 (100)
1
4 (102)
7 (178)
8,35 (212)
0,7 (18)
0,6 (15)
2
1,54 (39,2)
1/2 (M12)
2400
Substation equipment - NAM catalog | ©Sicame Group 2025
51
Expansion connectors
Up To
500 kV
Straight expansion support
Straight expansion support
SXHSB
WSXHSB
Fig. 2
Fig. 2
Expansion connectors
Up To
Fig. 1
A2 - 70
500 kV
Fig. 1
A2 - 70
Part number
Pipe size IPS inch (mm)
B inch (mm)
Fig No
H inch (mm)
BCD inch (mm)
D inch (mm)
E inch (mm)
T inch (mm)
Nº cables
Ø inch (mm)
Bolts inch (mm)
Current A
Part number
Pipe size IPS inch (mm)
B inch (mm)
Fig No
H inch (mm)
BCD inch (mm)
D inch (mm)
E inch (mm)
T inch (mm)
Nº cables
Ø inch (mm)
Bolts inch (mm)
Current A
SXH10M16SB7E2G102NSIX
3,5 (101,6 mm)
3,93 (100)
1
4 (102)
7 (178)
8,35 (212)
0,7 (18)
0,6 (15)
2
1,76 (44,8)
1/2 (M12)
3200
WSXH6M03SB3C2G70NSIX
2 (60,3 mm)
1,97 (50)
1
2,75 (70)
3 (76)
4,33 (110)
0,55 (14)
0,5 (12)
2
1,24 (31,7)
1/2 (M12)
2000
SXH11M43SB5D2G114NSIX
4 (114,3 mm)
4,57 (116)
1
4,48 (114)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
2
1,76 (44,8)
5/8 (M16)
3200
WSXH6M03SB5C2G70NSIX
2 (60,3 mm)
1,97 (50)
1
2,75 (70)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
2
1,24 (31,7)
1/2 (M12)
2000
SXH11M43SB5C4DG114NSIX
4 (114,3 mm)
4,57 (116)
2
4,48 (114)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
4
1,24 (31,7)
5/8 (M16)
3600
WSXH6M03SB7C2G70NSIX
2 (60,3 mm)
1,97 (50)
1
2,75 (70)
7 (178)
8,35 (212)
0,7 (18)
0,5 (12)
2
1,24 (31,7)
1/2 (M12)
2000
SXH11M43SB7D2G114NSIX
4 (114,3 mm)
4,57 (116)
1
4,48 (114)
7 (178)
8,35 (212)
0,7 (18)
0,6 (15)
2
1,76 (44,8)
5/8 (M16)
3200
WSXH7M3SB3D2G80NSIX
2 1/2 (73 mm)
1,97 (50)
1
3,125 (80)
3 (76)
4,33 (110)
0,55 (14)
0,5 (12)
2
1,54 (39,2)
1/2 (M12)
2400
SXH11M43SB7C4DG114NSIX
4 (114,3 mm)
4,57 (116)
2
4,48 (114)
7 (178)
8,35 (212)
0,7 (18)
0,6 (15)
4
1,24 (31,7)
5/8 (M16)
3600
WSXH7M3SB5D2G80NSIX
2 1/2 (73 mm)
1,97 (50)
1
3,125 (80)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
2
1,54 (39,2)
1/2 (M12)
2400
SXH14M13SB5C4DG127NSIX
5 (141,3 mm)
4,57 (116)
2
5 (127)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
4
1,24 (31,7)
5/8 (M16)
3600
WSXH7M3SB7D2G80NSIX
2 1/2 (73 mm)
1,97 (50)
1
3,125 (80)
7 (178)
8,35 (212)
0,7 (18)
0,5 (12)
2
1,54 (39,2)
1/2 (M12)
2400
SXH14M13SB5D4DG127NSIX
5 (141,3 mm)
4,57 (116)
2
5 (127)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
4
1,54 (39,2)
5/8 (M16)
4500
WSXH8M9SB5D2G92NSIX
3 (88,9 mm)
3,93 (100)
1
3,62 (92)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
2
1,54 (39,2)
1/2 (M12)
2400
SXH14M13SB7C4DG127NSIX
5 (141,3 mm)
4,57 (116)
2
5 (127)
7 (178)
8,35 (212)
0,7 (18)
0,6 (15)
4
1,24 (31,7)
5/8 (M16)
3600
WSXH8M9SB5E2G92NSIX
3 (88,9 mm)
3,93 (100)
1
3,62 (92)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
2
1,76 (44,8)
1/2 (M12)
3200
SXH14M13SB7D4DG127NSIX
5 (141,3 mm)
4,57 (116)
2
5 (127)
7 (178)
8,35 (212)
0,7 (18)
0,6 (15)
4
1,54 (39,2)
5/8 (M16)
4500
WSXH8M9SB7D2G92NSIX
3 (88,9 mm)
3,93 (100)
1
3,62 (92)
7 (178)
8,35 (212)
0,7 (18)
0,6 (15)
2
1,54 (39,2)
1/2 (M12)
2400
SXH16M8SB5D4DG140NSIX
6 (168,2 mm)
4,57 (116)
2
5,51 (140)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
4
1,54 (39,2)
5/8 (M16)
4500
WSXH8M9SB7E2G92NSIX
3 (88,9 mm)
3,93 (100)
1
3,62 (92)
7 (178)
8,35 (212)
0,7 (18)
0,6 (15)
2
1,76 (44,8)
1/2 (M12)
3200
SXH16M8SB5E4DG140NSIX
6 (168,2 mm)
6,85 (174)
2
5,51 (140)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
4
1,76 (44,8)
5/8 (M16)
6000
WSXH10M16SB5D2G102NSIX 3,5 (101,6 mm)
3,93 (100)
1
4 (102)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
2
1,54 (39,2)
1/2 (M12)
2400
SXH16M8SB7D4DG140NSIX
6 (168,2 mm)
4,57 (116)
2
5,51 (140)
7 (178)
8,35 (212)
0,7 (18)
0,6 (15)
4
1,54 (39,2)
5/8 (M16)
4500
WSXH10M16SB5E2G102NSIX 3,5 (101,6 mm)
3,93 (100)
1
4 (102)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
2
1,76 (44,8)
1/2 (M12)
3200
SXH16M8SB7E4DG140NSIX
6 (168,2 mm)
6,85 (174)
2
5,51 (140)
7 (178)
8,35 (212)
0,7 (18)
0,6 (15)
4
1,76 (44,8)
5/8 (M16)
6000
WSXH10M16SB7D2G102NSIX 3,5 (101,6 mm)
3,93 (100)
1
4 (102)
7 (178)
8,35 (212)
0,7 (18)
0,6 (15)
2
1,54 (39,2)
1/2 (M12)
2400
52
Substation equipment - NAM catalog | ©Sicame Group 2025
Substation equipment - NAM catalog | ©Sicame Group 2025
53
Expansion connectors
Up To
500 kV
Straight expansion support
Earthing stirrups for tube
WSXHSB
SGP (tube)
Fig. 2
Fig. 2
Fig. 1 500 kV
A2 - 70
345 kV
B Fig inch No (mm)
H inch (mm)
BCD inch (mm)
D inch (mm)
E inch (mm)
T inch (mm)
Nº cables
Ø inch (mm)
Bolts inch (mm)
Current A
WSXH10M16SB7E2G102NSIX 3,5 (101,6 mm)
3,93 (100)
1
4 (102)
7 (178)
8,35 (212)
0,7 (18)
0,6 (15)
2
1,76 (44,8)
1/2 (M12)
3200
WSXH11M43SB5D2G114NSIX
4 (114,3 mm)
4,57 (116)
1
4,48 (114)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
2
1,76 (44,8)
5/8 (M16)
3200
WSXH11M43SB5C4DG114NSIX
4 (114,3 mm)
4,57 (116)
2
4,48 (114)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
4
1,24 (31,7)
5/8 (M16)
3600
WSXH11M43SB7D2G114NSIX
4 (114,3 mm)
4,57 (116)
1
4,48 (114)
7 (178)
8,35 (212)
0,7 (18)
0,6 (15)
2
1,76 (44,8)
5/8 (M16)
3200
WSXH11M43SB7C4DG114NSIX
4 (114,3 mm)
4,57 (116)
2
4,48 (114)
7 (178)
8,35 (212)
0,7 (18)
0,6 (15)
4
1,24 (31,7)
5/8 (M16)
3600
WSXH14M13SB5C4DG127NSIX
5 (141,3 mm)
4,57 (116)
2
5 (127)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
4
1,24 (31,7)
5/8 (M16)
3600
WSXH14M13SB5D4DG127NSIX
5 (141,3 mm)
4,57 (116)
2
5 (127)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
4
1,54 (39,2)
5/8 (M16)
4500
WSXH14M13SB7C4DG127NSIX
5 (141,3 mm)
4,57 (116)
2
5 (127)
7 (178)
8,35 (212)
0,7 (18)
0,6 (15)
4
1,24 (31,7)
5/8 (M16)
3600
WSXH14M13SB7D4DG127NSIX
5 (141,3 mm)
4,57 (116)
2
5 (127)
7 (178)
8,35 (212)
0,7 (18)
0,6 (15)
4
1,54 (39,2)
5/8 (M16)
4500
WSXH16M8SB5D4DG140NSIX
6 (168,2 mm)
4,57 (116)
2
5,51 (140)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
4
1,54 (39,2)
5/8 (M16)
4500
WSXH16M8SB5E4DG140NSIX
6 (168,2 mm)
6,85 (174)
2
5,51 (140)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
4
1,76 (44,8)
5/8 (M16)
6000
WSXH16M8SB7D4DG140NSIX
6 (168,2 mm)
4,57 (116)
2
5,51 (140)
7 (178)
8,35 (212)
0,7 (18)
0,6 (15)
4
1,54 (39,2)
5/8 (M16)
4500
WSXH16M8SB7E4DG140NSIX
6 (168,2 mm)
6,85 (174)
2
5,51 (140)
7 (178)
8,35 (212)
0,7 (18)
0,6 (15)
4
1,76 (44,8)
5/8 (M16)
6000
Part number
Expansion connectors
Up To
Fig. 1
54
Pipe size IPS inch (mm)
Substation equipment - NAM catalog | ©Sicame Group 2025
A2 - 70
Part number
Pipe size IPS inch (mm)
Fig No
B inch (mm)
C inch (mm)
D inch (mm)
E inch (mm)
Bolts inch
SG8M9P3L20Z1NSIX
3 (88,9 mm)
1
1,97 (50)
7,87 (200)
1,18 (30)
4,92 (125)
1/2 (M12)
SG10M16P3L20Z1NSIX
3 1/2 (101,6 mm)
1
1,97 (50)
7,87 (200)
1,18 (30)
4,92 (125)
1/2 (M12)
SG11M43P3L20Z1NSIX
4 (114,3 mm)
1
2,28 (58)
7,87 (200)
1,18 (30)
4,92 (125)
5/8 (M16)
SG14M13P3L20Z1NSIX
5 (141,3 mm)
1
2,28 (58)
7,87 (200)
1,18 (30)
4,33 (110)
5/8 (M16)
SG16M8P3L20Z1NSIX
6 (168,2 mm)
1
2,28 (58)
7,87 (200)
1,18 (30)
3,93 (100)
5/8 (M16)
SG6M03PL3L10NSIX
2 (60,3 mm)
2
1,97 (50)
3,93 (100)
1,18 (30)
2,75 (70)
1/2 (M12)
SG7M3PL3L10NSIX
2 1/2 (73 mm)
2
1,97 (50)
3,93 (100)
1,18 (30)
2,75 (70)
1/2 (M12)
SG8M9PL3L10NSIX
3 (88,9 mm)
2
1,97 (50)
3,93 (100)
1,18 (30)
4,92 (125)
1/2 (M12)
SG10M16PL3L10NSIX
3 1/2 (101,6 mm)
2
1,97 (50)
3,93 (100)
1,18 (30)
4,92 (125)
1/2 (M12)
SG11M43PL3L10NSIX
4 (114,3 mm)
2
2,28 (58)
3,93 (100)
1,18 (30)
3,93 (100)
5/8 (M16)
SG14M13PL3L10NSIX
5 (141,3 mm)
2
2,28 (58)
7,87 (200)
1,18 (30)
3,74 (95)
5/8 (M16)
SG16M8PL3L10NSIX
6 (168,2 mm)
2
2,28 (58)
7,87 (200)
1,18 (30)
3,74 (95)
5/8 (M16)
Earthing connectors
Up To
Substation equipment - NAM catalog | ©Sicame Group 2025
55
Spacers
End cap
SD
LB
Up To
Up To
A2 - 70
345 kV
A2 - 70
345 kV
B inch (mm)
C inch (mm)
Bolts inch
Part number
OD inch (mm)
ID min inch (mm)
ID max inch (mm)
C inch (mm)
Damping Cable inch (mm)
S100-240D2NSIX
1/0 (9,36 mm) - 650MCM (23,58 mm)
1,61 (41)
3,93 (100)
1/2 (M12)
LB6X4M6GE10
2 (60,3 mm)
1,49 (38)
1,81 (46)
1,57 (40)
-
S240-330D2NSIX
650MCM (23,58 mm) - 1250MCM (32,7 mm)
2,16 (55)
4,33 (110)
1/2 (M12)
LB6X5M5GE10
2 (60,3 mm)
1,85 (47)
2,2 (56)
1,57 (40)
-
S330-420D2DNSIX
1250MCM (32,7 mm) - 2000MCM (41,40 mm)
2,16 (55)
4,92 (125)
1/2 (M12)
LB7M3X6M5GE10
2,5 (73 mm)
2,24 (57)
2,55 (65)
1,57 (40)
-
S420-550D2DNSIX
2000MCM (41,40 mm) - 3500MCM (54,81 mm)
2,16 (55)
4,92 (125)
1/2 (M12)
LB8M9X7M5GE10
3 (88,9 mm)
2,63 (67)
2,95 (75)
1,57 (40)
-
LB8M9X8M5GE10
3 (88,9 mm)
2,63 (67)
3,34 (85)
1,57 (40)
-
LB10M16X9M5GE10
3,5 (101,6 mm)
3,42 (87)
3,74 (95)
1,57 (40)
-
LB11M4X10GE10
4 (114,3 mm)
3,62 (92)
3,93 (100)
1,57 (40)
-
LB11M4X10M2GE10
4 (114,3 mm)
3,62 (92)
4,01 (102)
1,57 (40)
-
LB11M4X10M9GE10
4 (114,3 mm)
3,97 (101)
4,29 (109)
1,57 (40)
-
LB14M13X12M6GE10
5 (141,3 mm)
4,64 (118)
4,96 (126)
1,57 (40)
-
LB14M13X13M5GE10
5 (141,3 mm)
5 (127)
5,31 (135)
1,57 (40)
-
LB14M13X13M6GE10
5 (141,3 mm)
5,03 (128)
5,35 (136)
1,57 (40)
-
LB16M8X14M6GE10
6 (168,2 mm)
5,43 (138)
5,78 (147)
1,57 (40)
-
LB16M8X15M6GE10
6 (168,2 mm)
5,82 (148)
6,14 (156)
1,57 (40)
-
LB6X4M6DC1525
2 (60,3 mm)
1,49 (38)
1,81 (46)
1,57 (40)
0,59-0,98 (15-25)
LB6X5M5DC1525
2 (60,3 mm)
1,85 (47)
2,2 (56)
1,57 (40)
0,59-0,98 (15-25)
LB7M3X6M5DC1525
2,5 (73 mm)
2,24 (57)
2,55 (65)
1,57 (40)
0,59-0,98 (15-25)
LB8M9X7M5DC1525
3 (88,9 mm)
2,63 (67)
2,95 (75)
1,57 (40)
0,59-0,98 (15-25)
LB8M9X8M5DC1525
3 (88,9 mm)
2,63 (67)
3,34 (85)
1,57 (40)
0,59-0,98 (15-25)
LB10M16X9M5DC1525
3,5 (101,6 mm)
3,42 (87)
3,74 (95)
1,57 (40)
0,59-0,98 (15-25)
LB11M4X10DC1525
4 (114,3 mm)
3,62 (92)
3,93 (100)
1,57 (40)
0,59-0,98 (15-25)
Accessories
Cable inch (mm)
Accessories
Part number
56
Substation equipment - NAM catalog | ©Sicame Group 2025
Substation equipment - NAM catalog | ©Sicame Group 2025
57
End cap
Corona end cap
LB
SCBB
Up To
345 kV
Up To
A2 - 70
345 kV
A2 - 70
ID min inch (mm)
ID max inch (mm)
C inch (mm)
Damping Cable inch (mm)
Part number
Pipe size IPS inch (mm)
B inch (mm)
C inch (mm)
D inch (mm)
LB11M4X10M2DC1525
4 (114,3 mm)
3,62 (92)
4,01 (102)
1,57 (40)
0,59-0,98 (15-25)
SCBB18A5
2 (60,3 mm)
110
55
75
LB11M4X10M9DC1525
4 (114,3 mm)
3,97 (101)
4,29 (109)
1,57 (40)
0,59-0,98 (15-25)
SCBB19A5
2 1/2 (73 mm)
150
80
100
LB14M13X12M6DC1525
5 (141,3 mm)
4,64 (118)
4,96 (126)
1,57 (40)
0,59-0,98 (15-25)
SCBB20A5
3 (88,9 mm)
135
65
93
LB14M13X13M5DC1525
5 (141,3 mm)
5 (127)
5,31 (135)
1,57 (40)
0,59-0,98 (15-25)
SCBB21A5
3,5 (101,6 mm)
148
65
98
LB14M13X13M6DC1525
5 (141,3 mm)
5,03 (128)
5,35 (136)
1,57 (40)
0,59-0,98 (15-25)
SCBB22A5
4 (114,3 mm)
200
70
120
LB16M8X14M6DC1525
6 (168,2 mm)
5,43 (138)
5,78 (147)
1,57 (40)
0,59-0,98 (15-25)
SCBB24A5
5 (141,3 mm)
210
75
125
LB16M8X15M6DC1525
6 (168,2 mm)
5,82 (148)
6,14 (156)
1,57 (40)
0,59-0,98 (15-25)
SCBB86A5
6 (168,2 mm)
225
70
118
LB6X4M6DC2545
2 (60,3 mm)
1,49 (38)
1,81 (46)
1,57 (40)
0,98-1,77 (25-45)
LB6X5M5DC2545
2 (60,3 mm)
1,85 (47)
2,2 (56)
1,57 (40)
0,98-1,77 (25-45)
LB7M3X6M5DC2545
2,5 (73 mm)
2,24 (57)
2,55 (65)
1,57 (40)
0,98-1,77 (25-45)
LB8M9X7M5DC2545
3 (88,9 mm)
2,63 (67)
2,95 (75)
1,57 (40)
0,98-1,77 (25-45)
LB8M9X8M5DC2545
3 (88,9 mm)
2,63 (67)
3,34 (85)
1,57 (40)
0,98-1,77 (25-45)
LB10M16X9M5DC2545
3,5 (101,6 mm)
3,42 (87)
3,74 (95)
1,57 (40)
0,98-1,77 (25-45)
LB11M4X10DC2545
4 (114,3 mm)
3,62 (92)
3,93 (100)
1,57 (40)
0,98-1,77 (25-45)
LB11M4X10M2DC2545
4 (114,3 mm)
3,62 (92)
4,01 (102)
1,57 (40)
0,98-1,77 (25-45)
LB11M4X10M9DC2545
4 (114,3 mm)
3,97 (101)
4,29 (109)
1,57 (40)
0,98-1,77 (25-45)
LB14M13X12M6DC2545
5 (141,3 mm)
4,64 (118)
4,96 (126)
1,57 (40)
0,98-1,77 (25-45)
LB14M13X13M5DC2545
5 (141,3 mm)
5 (127)
5,31 (135)
1,57 (40)
0,98-1,77 (25-45)
LB14M13X13M6DC2545
5 (141,3 mm)
5,03 (128)
5,35 (136)
1,57 (40)
0,98-1,77 (25-45)
LB16M8X14M6DC2545
6 (168,2 mm)
5,43 (138)
5,78 (147)
1,57 (40)
0,98-1,77 (25-45)
LB16M8X15M6DC2545
6 (168,2 mm)
5,82 (148)
6,14 (156)
1,57 (40)
0,98-1,77 (25-45)
Accessories
OD inch (mm)
Accessories
Part number
58
Substation equipment - NAM catalog | ©Sicame Group 2025
Substation equipment - NAM catalog | ©Sicame Group 2025
59
03 EHV Aluminum connectors
v
Single connectors • S traight connector
62
• T-Connector
63
• T-Terminal
67
Bundle connectors • S traight connector
68
• T-Connector
69
• Straight terminal
70
Supports • S upport for cable
71
• S upport for tube
72
Expansion Connectors • S traight expansion terminal
73
• S traight expansion support
74
Accessories
60
• S pacers
78
• C orona end cap
79
• Hardware shield
80 61
Straight connector
T-Connector
ZS (tube-cable)
Up To
500 kV
Up To
A2 - 70
500 kV
A2 - 70
Pipe size IPS inch (mm)
Cable inch (mm)
B inch (mm)
D inch (mm)
Bolts (tube) inch
Bolts (cable) inch
Part number
Pipe main IPS inch (mm)
Pipe tap IPS inch (mm)
B inch (mm)
C inch (mm)
D inch (mm)
Bolts inch
Z6M03S250-330NSIX
2 (60,3 mm)
700MCM (24,48 mm) 1250MCM (32,7 mm)
3,93 (100)
5,90 (150)
1/2 (M12)
1/2 (M12)
S6M03TNSIX
2 (60,3 mm)
2 (60,3 mm)
3,93 (100)
3,93 (100)
3,94 (100)
1/2 (M12)
Z6M03S330-420NSIX
2 (60,3 mm)
1250MCM (32,7 mm) 2000MCM (41,40 mm)
3,93 (100)
5,90 (150)
1/2 (M12)
1/2 (M12)
S7M3TNSIX
2 1/2 (73 mm)
2 1/2 (73 mm)
3,93 (100)
3,93 (100)
3,94 (100)
1/2 (M12)
S8M9TNSIX
3 (88,9 mm)
3 (88,9 mm)
3,93 (100)
3,93 (100)
3,94 (100)
1/2 (M12)
2 (60,3 mm)
2000MCM (41,40 mm) 3500MCM (54,81 mm)
3,93 (100)
5,90 (150)
1/2 (M12)
1/2 (M12)
S10M16TNSIX
3 1/2 (101,6 mm)
3 1/2 (101,6 mm)
3,93 (100)
3,93 (100)
3,94 (100)
1/2 (M12)
Z7M3S250-330NSIX
2 1/2 (73 mm)
700MCM (24,48 mm) 1250MCM (32,7 mm)
3,93 (100)
5,90 (150)
1/2 (M12)
1/2 (M12)
S11M43TNSIX
4 (114,3 mm)
4 (114,3 mm)
4,57 (116)
4,57 (116)
4,57 (116)
5/8 (M16)
Z7M3S330-420NSIX
2 1/2 (73 mm)
1250MCM (32,7 mm) 2000MCM (41,40 mm)
3,93 (100)
5,90 (150)
1/2 (M12)
1/2 (M12)
S14M13TNSIX
5 (141,3 mm)
5 (141,3 mm)
4,57 (116)
4,57 (116)
4,57 (116)
5/8 (M16)
6 (168,2 mm)
6 (168,2 mm)
4,57 (116)
4,57 (116)
4,57 (116)
5/8 (M16)
2 1/2 (73 mm)
2000MCM (41,40 mm) 3500MCM (54,81 mm)
S16M8TNSIX
Z7M3S420-550NSIX
3,93 (100)
5,90 (150)
1/2 (M12)
1/2 (M12)
Z8M9S250-330NSIX
3 (88,9 mm)
700MCM (24,48 mm) 1250MCM (32,7 mm)
3,93 (100)
5,90 (150)
1/2 (M12)
1/2 (M12)
Z8M9S330-420NSIX
3 (88,9 mm)
1250MCM (32,7 mm) 2000MCM (41,40 mm)
3,93 (100)
5,90 (150)
1/2 (M12)
1/2 (M12)
Z8M9S420-550NSIX
3 (88,9 mm)
2000MCM (41,40 mm) 3500MCM (54,81 mm)
3,93 (100)
5,90 (150)
1/2 (M12)
1/2 (M12)
Z10M16S250-330NSIX
3 1/2 (101,6 mm)
700MCM (24,48 mm) 1250MCM (32,7 mm)
3,93 (100)
5,90 (150)
1/2 (M12)
1/2 (M12)
Z10M16S330-420NSIX
3 1/2 (101,6 mm)
1250MCM (32,7 mm) 2000MCM (41,40 mm)
3,93 (100)
5,90 (150)
1/2 (M12)
1/2 (M12)
Z10M16S420-550NSIX
3 1/2 (101,6 mm)
2000MCM (41,40 mm) 3500MCM (54,81 mm)
3,93 (100)
5,90 (150)
1/2 (M12)
1/2 (M12)
Z11M43S250-330NSIX
4 (114,3 mm)
700MCM (24,48 mm) 1250MCM (32,7 mm)
4,57 (116)
5,90 (150)
5/8 (M16)
1/2 (M12)
Z11M43S330-420NSIX
4 (114,3 mm)
1250MCM (32,7 mm) 2000MCM (41,40 mm)
4,57 (116)
5,90 (150)
5/8 (M16)
1/2 (M12)
Z11M43S420-550NSIX
4 (114,3 mm)
2000MCM (41,40 mm) 3500MCM (54,81 mm)
4,57 (116)
5,90 (150)
5/8 (M16)
1/2 (M12)
Z14M13S250-330NSIX
5 (141,3 mm)
700MCM (24,48 mm) 1250MCM (32,7 mm)
4,57 (116)
5,90 (150)
5/8 (M16)
1/2 (M12)
Z14M13S330-420NSIX
5 (141,3 mm)
1250MCM (32,7 mm) 2000MCM (41,40 mm)
4,57 (116)
5,90 (150)
5/8 (M16)
1/2 (M12)
Z14M13S420-550NSIX
5 (141,3 mm)
2000MCM (41,40 mm) 3500MCM (54,81 mm)
4,57 (116)
5,90 (150)
5/8 (M16)
1/2 (M12)
Z16M82S250-330NSIX
6 (168,2 mm)
700MCM (24,48 mm) 1250MCM (32,7 mm)
4,57 (116)
5,90 (150)
5/8 (M16)
1/2 (M12)
Z16M82S330-420NSIX
6 (168,2 mm)
1250MCM (32,7 mm) 2000MCM (41,40 mm)
4,57 (116)
5,90 (150)
5/8 (M16)
1/2 (M12)
Z16M82S420-550NSIX
6 (168,2 mm)
2000MCM (41,40 mm) 3500MCM (54,81 mm)
4,57 (116)
5,90 (150)
5/8 (M16)
1/2 (M12)
62
Substation equipment - NAM catalog | ©Sicame Group 2025
Single connectors
Part number
Z6M03S420-550NSIX
Single connectors
ST (tube-tube)
Substation equipment - NAM catalog | ©Sicame Group 2025
63
T-Connector
T-Connector
STK
Up To
500 kV
SATJ
Up To
A2 - 70
500 kV
A2 - 70
Pipe tap IPS inch (mm)
B inch (mm)
D inch (mm)
inch
Bolts (main) inch
α
Part number
Pipe main IPS inch (mm)
Pipe tap IPS inch (mm)
C inch (mm)
D inch (mm)
Bolts (main) inch
Bolts (tap) inch
α
S6M03THNSIX
2 (60,3 mm)
2 (60,3 mm)
3,93 (100)
3,93 (100)
1/2 (M12)
1/2 (M12)
10
S6M03ATJNSIX
2 (60,3 mm)
2 (60,3 mm)
3,93 (100)
3,93 (100)
1/2 (M12)
1/2 (M12)
30
S6M03TH7M3NSIX
2 1/2 (73 mm)
2 (60,3 mm)
3,93 (100)
3,93 (100)
1/2 (M12)
1/2 (M12)
10
S6M03ATJ7M3NSIX
2 (60,3 mm)
2 1/2 (73 mm)
3,93 (100)
3,93 (100)
1/2 (M12)
1/2 (M12)
30
S7M3THNSIX
2 1/2 (73 mm)
2 1/2 (73 mm)
3,93 (100)
3,93 (100)
1/2 (M12)
1/2 (M12)
10
S6M03ATJ8M9NSIX
2 (60,3 mm)
3 (88,9 mm)
3,93 (100)
3,93 (100)
1/2 (M12)
1/2 (M12)
30
S6M03TH8M9NSIX
3 (88,9 mm)
2 (60,3 mm)
3,93 (100)
3,93 (100)
1/2 (M12)
1/2 (M12)
10
S6M03ATJ10M16NSIX
2 (60,3 mm)
3 1/2 (101,6 mm)
3,93 (100)
3,93 (100)
1/2 (M12)
1/2 (M12)
30
S7M3TH8M9NSIX
3 (88,9 mm)
2 1/2 (73 mm)
3,93 (100)
3,93 (100)
1/2 (M12)
1/2 (M12)
10
S7M3ATJ10M16NSIX
2 1/2 (73 mm)
3 1/2 (101,6 mm)
3,93 (100)
3,93 (100)
1/2 (M12)
1/2 (M12)
30
S8M9THNSIX
3 (88,9 mm)
3 (88,9 mm)
3,93 (100)
3,93 (100)
1/2 (M12)
1/2 (M12)
10
S8M9ATJ10M16NSIX
3 (88,9 mm)
3 1/2 (101,6 mm)
3,93 (100)
3,93 (100)
1/2 (M12)
1/2 (M12)
30
S6M03TH10M16NSIX
3 1/2 (101,6 mm)
2 (60,3 mm)
3,93 (100)
3,93 (100)
1/2 (M12)
1/2 (M12)
10
S6M03ATJ11M43NSIX
2 (60,3 mm)
4 (114,3 mm)
3,93 (100)
4,56 (116)
1/2 (M12)
5/8 (M16)
30
S7M3TH10M16NSIX
3 1/2 (101,6 mm)
2 1/2 (73 mm)
3,93 (100)
3,93 (100)
1/2 (M12)
1/2 (M12)
10
S7M3ATJ11M43NSIX
2 1/2 (73 mm)
4 (114,3 mm)
3,93 (100)
4,56 (116)
1/2 (M12)
5/8 (M16)
30
S8M9TH10M16NSIX
3 1/2 (101,6 mm)
3 (88,9 mm)
3,93 (100)
3,93 (100)
1/2 (M12)
1/2 (M12)
10
S8M9ATJ11M43NSIX
3 (88,9 mm)
4 (114,3 mm)
3,93 (100)
4,56 (116)
1/2 (M12)
5/8 (M16)
30
S6M03TH11M43NSIX
4 (114,3 mm)
2 (60,3 mm)
3,93 (100)
4,56 (116)
1/2 (M12)
5/8 (M16)
10
S7M3TH11M43NSIX
4 (114,3 mm)
2 1/2 (73 mm)
3,93 (100)
4,56 (116)
1/2 (M12)
5/8 (M16)
10
S8M9TH11M43NSIX
4 (114,3 mm)
3 (88,9 mm)
3,93 (100)
4,56 (116)
1/2 (M12)
5/8 (M16)
10
S11M43THNSIX
4 (114,3 mm)
4 (114,3 mm)
4,56 (116)
4,56 (116)
5/8 (M16)
5/8 (M16)
10
Single connectors
Pipe main IPS inch (mm)
Single connectors
Part number
64
Substation equipment - NAM catalog | ©Sicame Group 2025
Substation equipment - NAM catalog | ©Sicame Group 2025
65
T-Connector
T-Terminal
ZT (cable)
Up To
500 kV
ZF (cable)
Up To
A2 - 70
500 kV
A2 - 70
Cable main inch (mm)
B inch (mm)
D inch (mm)
Bolts inch
Part number
Pad type
Cable inch (mm)
B inch (mm)
L inch (mm)
W inch (mm)
T inch (mm)
Bolts inch
Current A
Z250-330TNSIX
700MCM (24,48 mm) 1250MCM (32,7 mm)
700MCM (24,48 mm) 1250MCM (32,7 mm)
5,90 (150)
5,90 (150)
1/2 (M12)
Z250-330FC3NSIX
2
700MCM (24,48 mm) 1250MCM (32,7 mm)
3,93 (100)
3 (76)
3 (76)
0,79 (20)
1/2 (M12)
1520
Z250-330T330-420NSIX
700MCM (24,48 mm) 1250MCM (32,7 mm)
1250MCM (32,7 mm) 2000MCM (41,40 mm)
5,90 (150)
5,90 (150)
1/2 (M12)
Z250-330FC44NSIX
2
700MCM (24,48 mm) 1250MCM (32,7 mm)
3,93 (100)
4 (102)
4 (102)
0,79 (20)
1/2 (M12)
2000
Z250-330T420-550NSIX
700MCM (24,48 mm) 1250MCM (32,7 mm)
2000MCM (41,40 mm) 3500MCM (54,81 mm)
5,90 (150)
5,90 (150)
1/2 (M12)
Z330-420FC3NSIX
2
1250MCM (32,7 mm) 2000MCM (41,40 mm)
5,88 (150)
3 (76)
3 (76)
0,79 (20)
1/2 (M12)
1520
Z330-420T250-330NSIX
1250MCM (32,7 mm) 2000MCM (41,40 mm)
700MCM (24,48 mm) 1250MCM (32,7 mm)
5,90 (150)
5,90 (150)
1/2 (M12)
Z330-420FC44NSIX
2
1250MCM (32,7 mm) 2000MCM (41,40 mm)
5,88 (150)
4 (102)
4 (102)
0,79 (20)
1/2 (M12)
2000
Z330-420TNSIX
1250MCM (32,7 mm) 2000MCM (41,40 mm)
1250MCM (32,7 mm) 2000MCM (41,40 mm)
5,90 (150)
5,90 (150)
1/2 (M12)
Z420-550FC3NSIX
2
2000MCM (41,40 mm) 3500MCM (54,81 mm)
5,88 (150)
3 (76)
3 (76)
1 (25)
1/2 (M12)
1900
Z330-420T420-550NSIX
1250MCM (32,7 mm) 2000MCM (41,40 mm)
2000MCM (41,40 mm) 3500MCM (54,81 mm)
5,90 (150)
5,90 (150)
1/2 (M12)
Z420-550FC44NSIX
2
2000MCM (41,40 mm) 3500MCM (54,81 mm)
5,88 (150)
4 (102)
4 (102)
1 (25)
1/2 (M12)
2500
Z420-550T250-330NSIX
2000MCM (41,40 mm) 3500MCM (54,81 mm)
700MCM (24,48 mm) 1250MCM (32,7 mm)
5,90 (150)
5,90 (150)
1/2 (M12)
Z420-550T330-420NSIX
2000MCM (41,40 mm) 3500MCM (54,81 mm)
1250MCM (32,7 mm) 2000MCM (41,40 mm)
5,90 (150)
5,90 (150)
1/2 (M12)
Z420-550TNSIX
2000MCM (41,40 mm) 3500MCM (54,81 mm)
2000MCM (41,40 mm) 3500MCM (54,81 mm)
5,90 (150)
5,90 (150)
1/2 (M12)
Single connectors
Cable tap inch (mm)
Single connectors
Part number
66
Substation equipment - NAM catalog | ©Sicame Group 2025
Substation equipment - NAM catalog | ©Sicame Group 2025
67
Straight connector
T-Connector
Up To
Bundle connectors
500 kV
ZDT01 (tube-cable)
Up To
A2 - 70
500 kV
Bolts (tube) inch
Bolts (cable) inch
Part number
Pipe size IPS inch (mm)
Cable inch (mm)
13 (330) 3,93 (100) 5,90 (150)
1/2 (M12)
1/2 (M12)
Z250-330D6M6T6M03DNSIX
2 (60,3 mm)
700MCM (24,48 mm) 1250MCM (32,7 mm)
13 (330) 3,93 (100) 5,90 (150)
1/2 (M12)
1/2 (M12)
1250MCM (32,7 mm) 2000MCM (41,40 mm)
13 (330) 3,93 (100) 5,90 (150)
1/2 (M12)
1/2 (M12)
Z330-420D6M6T6M03DNSIX
2 (60,3 mm)
1250MCM (32,7 mm) 2000MCM (41,40 mm)
13 (330) 3,93 (100) 5,90 (150)
1/2 (M12)
1/2 (M12)
2 (60,3 mm)
2000MCM (41,40 mm) 3500MCM (54,81 mm)
13 (330) 3,93 (100) 5,90 (150)
1/2 (M12)
1/2 (M12)
Z420-550D6M6T6M03DNSIX
2 (60,3 mm)
2000MCM (41,40 mm) 3500MCM (54,81 mm)
13 (330) 3,93 (100) 5,90 (150)
1/2 (M12)
1/2 (M12)
Z7M3S250-330D6M6DNSIX
2 1/2 (73 mm)
700MCM (24,48 mm) 1250MCM (32,7 mm)
13 (330) 3,93 (100) 5,90 (150)
1/2 (M12)
1/2 (M12)
Z250-330D6M6T7M3DNSIX
2 1/2 (73 mm)
700MCM (24,48 mm) 1250MCM (32,7 mm)
13 (330) 3,93 (100) 5,90 (150)
1/2 (M12)
1/2 (M12)
Z7M3S330-420D6M6DNSIX
2 1/2 (73 mm)
1250MCM (32,7 mm) 2000MCM (41,40 mm)
13 (330) 3,93 (100) 5,90 (150)
1/2 (M12)
1/2 (M12)
Z330-420D6M6T7M3DNSIX
2 1/2 (73 mm)
1250MCM (32,7 mm) 2000MCM (41,40 mm)
13 (330) 3,93 (100) 5,90 (150)
1/2 (M12)
1/2 (M12)
Z7M3S420-550D6M6DNSIX
2 1/2 (73 mm)
2000MCM (41,40 mm) 3500MCM (54,81 mm)
13 (330) 3,93 (100) 5,90 (150)
1/2 (M12)
1/2 (M12)
Z420-550D6M6T7M3DNSIX
2 1/2 (73 mm)
2000MCM (41,40 mm) 3500MCM (54,81 mm)
13 (330) 3,93 (100) 5,90 (150)
1/2 (M12)
1/2 (M12)
Z8M9S250-330D6M6DNSIX
3 (88,9 mm)
700MCM (24,48 mm) 1250MCM (32,7 mm)
13 (330) 3,93 (100) 5,90 (150)
1/2 (M12)
1/2 (M12)
Z250-330D6M6T8M9DNSIX
3 (88,9 mm)
700MCM (24,48 mm) 1250MCM (32,7 mm)
13 (330) 3,93 (100) 5,90 (150)
1/2 (M12)
1/2 (M12)
Z8M9S330-420D6M6DNSIX
3 (88,9 mm)
1250MCM (32,7 mm) 2000MCM (41,40 mm)
13 (330) 3,93 (100) 5,90 (150)
1/2 (M12)
1/2 (M12)
Z330-420D6M6T8M9DNSIX
3 (88,9 mm)
1250MCM (32,7 mm) 2000MCM (41,40 mm)
13 (330) 3,93 (100) 5,90 (150)
1/2 (M12)
1/2 (M12)
Z8M9S420-550D6M6DNSIX
3 (88,9 mm)
2000MCM (41,40 mm) 3500MCM (54,81 mm)
13 (330) 3,93 (100) 5,90 (150)
1/2 (M12)
1/2 (M12)
Z420-550D6M6T8M9DNSIX
3 (88,9 mm)
2000MCM (41,40 mm) 3500MCM (54,81 mm)
13 (330) 3,93 (100) 5,90 (150)
1/2 (M12)
1/2 (M12)
Z10M16S250-330D6M6DNSIX
3 1/2 (101,6 mm)
700MCM (24,48 mm) 1250MCM (32,7 mm)
13 (330) 3,93 (100) 5,90 (150)
1/2 (M12)
1/2 (M12)
Z250-330D6M6T10M16DNSIX
3 1/2 (101,6 mm)
700MCM (24,48 mm) 1250MCM (32,7 mm)
13 (330) 3,93 (100) 5,90 (150)
1/2 (M12)
1/2 (M12)
Z10M16S330-420D6M6DNSIX 3 1/2 (101,6 mm)
1250MCM (32,7 mm) 2000MCM (41,40 mm)
13 (330) 3,93 (100) 5,90 (150)
1/2 (M12)
1/2 (M12)
Z330-420D6M6T10M16DNSIX 3 1/2 (101,6 mm)
1250MCM (32,7 mm) 2000MCM (41,40 mm)
13 (330) 3,93 (100) 5,90 (150)
1/2 (M12)
1/2 (M12)
Z10M16S420-550D6M6DNSIX 3 1/2 (101,6 mm)
2000MCM (41,40 mm) 3500MCM (54,81 mm)
13 (330) 3,93 (100) 5,90 (150)
1/2 (M12)
1/2 (M12)
Z420-550D6M6T10M16DNSIX 3 1/2 (101,6 mm)
2000MCM (41,40 mm) 3500MCM (54,81 mm)
13 (330) 3,93 (100) 5,90 (150)
1/2 (M12)
1/2 (M12)
Z11M43S250-330D6M6DNSIX
4 (114,3 mm)
700MCM (24,48 mm) 1250MCM (32,7 mm)
13 (330)
4,57 (116) 5,90 (150)
5/8 (M16)
1/2 (M12)
Z250-330D6M6T11M43DNSIX
4 (114,3 mm)
700MCM (24,48 mm) 1250MCM (32,7 mm)
13 (330)
4,57 (116) 5,90 (150) 5/8 (M16)
1/2 (M12)
Z11M43S330-420D6M6DNSIX
4 (114,3 mm)
1250MCM (32,7 mm) 2000MCM (41,40 mm)
13 (330)
4,57 (116) 5,90 (150)
5/8 (M16)
1/2 (M12)
Z330-420D6M6T11M43DNSIX
4 (114,3 mm)
1250MCM (32,7 mm) 2000MCM (41,40 mm)
13 (330)
4,57 (116) 5,90 (150) 5/8 (M16)
1/2 (M12)
Z11M43S420-550D6M6DNSIX
4 (114,3 mm)
2000MCM (41,40 mm) 3500MCM (54,81 mm)
13 (330)
4,57 (116) 5,90 (150)
5/8 (M16)
1/2 (M12)
Z420-550D6M6T11M43DNSIX
4 (114,3 mm)
2000MCM (41,40 mm) 3500MCM (54,81 mm)
13 (330)
4,57 (116) 5,90 (150) 5/8 (M16)
1/2 (M12)
Z14M13S250-330D6M6DNSIX
5 (141,3 mm)
700MCM (24,48 mm) 1250MCM (32,7 mm)
13 (330)
4,57 (116) 5,90 (150)
5/8 (M16)
1/2 (M12)
Z250-330D6M6T14M13DNSIX
5 (141,3 mm)
700MCM (24,48 mm) 1250MCM (32,7 mm)
13 (330)
4,57 (116) 5,90 (150) 5/8 (M16)
1/2 (M12)
Z14M13S330-420D6M6DNSIX
5 (141,3 mm)
1250MCM (32,7 mm) 2000MCM (41,40 mm)
13 (330)
4,57 (116) 5,90 (150)
5/8 (M16)
1/2 (M12)
Z330-420D6M6T14M13DNSIX
5 (141,3 mm)
1250MCM (32,7 mm) 2000MCM (41,40 mm)
13 (330)
4,57 (116) 5,90 (150) 5/8 (M16)
1/2 (M12)
Z14M13S420-550D6M6DNSIX
5 (141,3 mm)
2000MCM (41,40 mm) 3500MCM (54,81 mm)
13 (330)
4,57 (116) 5,90 (150)
5/8 (M16)
1/2 (M12)
Z420-550D6M6T14M13DNSIX
5 (141,3 mm)
2000MCM (41,40 mm) 3500MCM (54,81 mm)
13 (330)
4,57 (116) 5,90 (150) 5/8 (M16)
1/2 (M12)
Z16M82S250-330D6M6DNSIX
6 (168,2 mm)
700MCM (24,48 mm) 1250MCM (32,7 mm)
13 (330)
4,57 (116) 5,90 (150)
5/8 (M16)
1/2 (M12)
Z250-330D6M6T16M82DNSIX
6 (168,2 mm)
700MCM (24,48 mm) 1250MCM (32,7 mm)
13 (330)
4,57 (116) 5,90 (150) 5/8 (M16)
1/2 (M12)
Z16M82S330-420D6M6DNSIX
6 (168,2 mm)
1250MCM (32,7 mm) 2000MCM (41,40 mm)
13 (330)
4,57 (116) 5,90 (150)
5/8 (M16)
1/2 (M12)
Z330-420D6M6T16M82DNSIX
6 (168,2 mm)
1250MCM (32,7 mm) 2000MCM (41,40 mm)
13 (330)
4,57 (116) 5,90 (150) 5/8 (M16)
1/2 (M12)
Z16M82S420-550D6M6DNSIX
6 (168,2 mm)
2000MCM (41,40 mm) 3500MCM (54,81 mm)
13 (330)
4,57 (116) 5,90 (150)
5/8 (M16)
1/2 (M12)
Z420-550D6M6T16M82DNSIX
6 (168,2 mm)
2000MCM (41,40 mm) 3500MCM (54,81 mm)
13 (330)
4,57 (116) 5,90 (150) 5/8 (M16)
1/2 (M12)
Part number
Pipe size IPS inch (mm)
Cable inch (mm)
Z6M03S250-330D6M6DNSIX
2 (60,3 mm)
700MCM (24,48 mm) 1250MCM (32,7 mm)
Z6M03S330-420D6M6DNSIX
2 (60,3 mm)
Z6M03S420-550D6M6DNSIX
68
C inch (mm)
B inch (mm)
D inch (mm)
A2 - 70
Substation equipment - NAM catalog | ©Sicame Group 2025
Substation equipment - NAM catalog | ©Sicame Group 2025
C inch (mm)
B inch (mm)
D inch (mm)
Bolts Bolts (tube) (cable) inch (mm) inch (mm)
69
Bundle connectors
ZSD (tube-cable)
Straight terminal
Support for cable
ZDA (cable)
Up To
500 kV
ZLHDB
Up To
A2 - 70
345 kV
B inch (mm)
C inch (mm)
L inch (mm)
W inch (mm)
700MCM (24,48 mm) 1250MCM (32,7 mm)
5,88 (150) 13 (330)
3 (76)
3 (76)
2
700MCM (24,48 mm) 1250MCM (32,7 mm)
5,88 (150) 13 (330)
4 1/2 (115)
Z250-330D6M6A6NSIX
3
700MCM (24,48 mm) 1250MCM (32,7 mm)
5,88 (150) 13 (330)
Z330-420D6M6A3NSIX
2
1250MCM (32,7 mm) 2000MCM (41,40 mm)
Z330-420D6M6A44NSIX
2
Z330-420D6M6A6NSIX
T inch (mm)
A2 - 70
Current A
Part number
Cable inch (mm)
B inch (mm)
BCD inch (mm)
D inch (mm)
E inch (mm)
T inch (mm)
0,79 (20) 1/2 (M12)
2,000
ZLH100-240D6M6B5NSIX
1/0 (9,36 mm) 650MCM (23,58 mm)
1,97 (50)
13 (330) 3,54 (90)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12) 3/8 (M10)
4 (102)
0,79 (20) 1/2 (M12)
2,000
ZLH100-240D6M6B7NSIX
1/0 (9,36 mm) 650MCM (23,58 mm)
1,97 (50)
13 (330) 3,54 (90)
7 (178)
8,3 (212)
0,7 (18)
0,6 (15) 3/8 (M10)
4 1/2 (115)
6 (152)
0,79 (20) 1/2 (M12)
2,000
ZLH240-330D6M6B5NSIX
700MCM (24,48 mm) 1,97 (50) 1250MCM (32,7 mm)
13 (330) 3,54 (90)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
1/2 (M12)
5,88 (150) 13 (330)
3 (76)
3 (76)
0,79 (20) 1/2 (M12)
2,000
ZLH240-330D6M6B7NSIX
700MCM (24,48 mm) 1,97 (50) 1250MCM (32,7 mm)
13 (330) 3,54 (90)
7 (178)
8,3 (212)
0,7 (18)
0,6 (15)
1/2 (M12)
1250MCM (32,7 mm) 2000MCM (41,40 mm)
5,88 (150) 13 (330)
4 1/2 (115)
4 (102)
0,79 (20) 1/2 (M12)
2,000
ZLH330-420D6M6B5NSIX
1300MCM (33,4 mm) 1,97 (50) 2000MCM (41,40 mm)
13 (330) 3,54 (90)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
1/2 (M12)
3
1250MCM (32,7 mm) 2000MCM (41,40 mm)
5,88 (150) 13 (330)
4 1/2 (115)
6 (152)
0,79 (20) 1/2 (M12)
2,000
ZLH330-420D6M6B7NSIX
1300MCM (33,4 mm) 1,97 (50) 2000MCM (41,40 mm)
13 (330) 3,54 (90)
7 (178)
8,3 (212)
0,7 (18)
0,6 (15)
1/2 (M12)
Z420-550D6M6A3NSIX
2
2000MCM (41,40 mm) 5,88 (150) 13 (330) 3500MCM (54,81 mm)
3 (76)
3 (76)
0,79 (20) 1/2 (M12)
2,000
ZLH420-550D6M6B5NSIX
2250MCM (43,92 mm) 2,55 (65) 13 (330) 3,54 (90) 3500MCM (54,81 mm)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12) 5/8 (M16)
Z420-550D6M6A44NSIX
2
2000MCM (41,40 mm) 5,88 (150) 13 (330) 3500MCM (54,81 mm)
4 1/2 (115)
4 (102)
0,79 (20) 1/2 (M12)
2,000
ZLH420-550D6M6B7NSIX
2250MCM (43,92 mm) 2,55 (65) 13 (330) 3,54 (90) 3500MCM (54,81 mm)
7 (178)
8,3 (212)
0,7 (18)
0,6 (15) 5/8 (M16)
Z420-550D6M6A6NSIX
3
2000MCM (41,40 mm) 5,88 (150) 13 (330) 3500MCM (54,81 mm)
4 1/2 (115)
6 (152)
0,79 (20) 1/2 (M12)
2,000
Pad type
Cable inch (mm)
Z250-330D6M6A3NSIX
2
Z250-330D6M6A44NSIX
Bolts inch
C inch (mm)
H inch (mm)
Bolts inch
Supports
Bundle connectors
Part number
70
Substation equipment - NAM catalog | ©Sicame Group 2025
Substation equipment - NAM catalog | ©Sicame Group 2025
71
Support for tube
Straight expansion terminal
SXHB
Up To
500 kV
SXA
Up To
A2 - 70
500 kV
A2 - 70
Part number
Pad type
Pipe size IPS inch (mm)
B inch (mm)
L inch (mm)
W inch (mm)
T inch (mm)
Bolts inch (mm)
Current A
1/2 (M12)
S6M03XA3NC2NSIX
1
2 (60,3 mm)
1,97 (50)
3 (76)
3 (76)
1 (25)
2
1,24 (31,7)
1/2 (M12)
2000
0,5 (12)
1/2 (M12)
S6M03XA44NC2NSIX
2
2 (60,3 mm)
1,97 (50)
4 (102)
4 (102)
0,78 (20)
2
1,24 (31,7)
1/2 (M12)
2000
0,7 (18)
0,5 (12)
1/2 (M12)
S7M3XA3NC2NSIX
1
2 1/2 (73 mm)
1,97 (50)
3 (76)
3 (76)
1 (25)
2
1,24 (31,7)
1/2 (M12)
2000
4,33 (110)
0,55 (14)
0,5 (12)
1/2 (M12)
S7M3XA44NC2NSIX
2
2 1/2 (73 mm)
1,97 (50)
4 (102)
4 (102)
0,78 (20)
2
1,24 (31,7)
1/2 (M12)
2000
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
1/2 (M12)
S8M9XA3ND2NSIX
1
3 (88,9 mm)
1,97 (50)
3 (76)
3 (76)
1 (25)
2
1,54 (39,2) 1/2 (M12)
2500
3,125 (80)
7 (178)
8,35 (212)
0,7 (18)
0,5 (12)
1/2 (M12)
S8M9XA44ND2NSIX
2
3 (88,9 mm)
1,97 (50)
4 (102)
4 (102)
1 (25)
2
1,54 (39,2) 1/2 (M12)
2500
1,97 (50)
3,62 (92)
3 (76)
4,33 (110)
0,55 (14)
0,5 (12)
1/2 (M12)
S10M16XA3ND2NSIX
1
3 1/2 (101,6 mm)
1,97 (50)
3 (76)
3 (76)
1 (25)
2
1,54 (39,2) 1/2 (M12)
2500
3 (88,9 mm)
1,97 (50)
3,62 (92)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
1/2 (M12)
S10M16XA44ND2NSIX
2
3 1/2 (101,6 mm)
1,97 (50)
4 (102)
4 (102)
1 (25)
2
1,54 (39,2) 1/2 (M12)
2500
SXH8M9B7G92NSIX
3 (88,9 mm)
1,97 (50)
3,62 (92)
7 (178)
8,35 (212)
0,7 (18)
0,5 (12)
1/2 (M12)
S10M16XA6ND2NSIX
3
3 1/2 (101,6 mm)
1,97 (50)
4 (102)
6 (152)
1 (25)
2
1,54 (39,2) 1/2 (M12)
2500
SXH10M16B3G102NSIX
3 1/2 (101,6 mm)
1,97 (50)
4 (102)
3 (76)
4,33 (110)
0,55 (14)
0,5 (12)
1/2 (M12)
S11M43XA3ND2NSIX
1
4 (114,3 mm)
4,57 (116)
3 (76)
3 (76)
1 (25)
2
1,54 (39,2) 5/8 (M16)
2500
SXH10M16B5G102NSIX
3 1/2 (101,6 mm)
1,97 (50)
4 (102)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
1/2 (M12)
S11M43XA44ND2NSIX
2
4 (114,3 mm)
4,57 (116)
4 (102)
4 (102)
1 (25)
2
1,54 (39,2) 5/8 (M16)
2500
SXH10M16B7G102NSIX
3 1/2 (101,6 mm)
1,97 (50)
4 (102)
7 (178)
8,35 (212)
0,7 (18)
0,6 (15)
1/2 (M12)
S11M43XA6ND3NSIX
3
4 (114,3 mm)
4,57 (116)
4 (102)
6 (152)
1 (25)
3
1,54 (39,2) 5/8 (M16)
3800
SXH11M43B3G114NSIX
4 (114,3 mm)
2,28 (58)
4,48 (114)
3 (76)
4,33 (110)
0,55 (14)
0,5 (12)
5/8 (M16)
S14M13XA3ND2NSIX
1
5 (141,3 mm)
4,57 (116)
3 (76)
3 (76)
1 (25)
2
1,54 (39,2) 5/8 (M16)
2500
SXH11M43B5G114NSIX
4 (114,3 mm)
2,28 (58)
4,48 (114)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
5/8 (M16)
S14M13XA44ND2NSIX
2
5 (141,3 mm)
4,57 (116)
4 (102)
4 (102)
1 (25)
2
1,54 (39,2) 5/8 (M16)
2500
SXH11M43B7G114NSIX
4 (114,3 mm)
2,28 (58)
4,48 (114)
7 (178)
8,35 (212)
0,7 (18)
0,5 (12)
5/8 (M16)
S14M13XA6ND3NSIX
3
5 (141,3 mm)
4,57 (116)
4 (102)
6 (152)
1 (25)
3
1,54 (39,2) 5/8 (M16)
3800
SXH14M13B3G127NSIX
5 (141,3 mm)
2,28 (58)
5 (127)
3 (76)
4,33 (110)
0,55 (14)
0,5 (12)
5/8 (M16)
S16M8XA3ND2NSIX
1
6 (168,2 mm)
4,57 (116)
3 (76)
3 (76)
1 (25)
2
1,54 (39,2) 5/8 (M16)
2500
SXH14M13B5G127NSIX
5 (141,3 mm)
2,28 (58)
5 (127)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
5/8 (M16)
S16M8XA44ND2NSIX
2
6 (168,2 mm)
4,57 (116)
4 (102)
4 (102)
1 (25)
2
1,54 (39,2) 5/8 (M16)
2500
SXH14M13B7G127NSIX
5 (141,3 mm)
2,28 (58)
5 (127)
7 (178)
8,35 (212)
0,7 (18)
0,5 (12)
5/8 (M16)
S16M8XA6ND3NSIX
3
6 (168,2 mm)
4,57 (116)
4 (102)
6 (152)
1 (25)
3
1,54 (39,2) 5/8 (M16)
3800
SXH16M8B3G140NSIX
6 (168,2 mm)
2,28 (58)
5,51 (140)
3 (76)
4,33 (110)
0,55 (14)
0,5 (12)
5/8 (M16)
SXH16M8B5G140NSIX
6 (168,2 mm)
2,28 (58)
5,51 (140)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
5/8 (M16)
SXH16M8B7G140NSIX
6 (168,2 mm)
2,28 (58)
5,51 (140)
7 (178)
8,35 (212)
0,7 (18)
0,5 (12)
5/8 (M16)
Pipe size IPS inch (mm)
B H BCD D E T Bolts inch (mm) inch (mm) inch (mm) inch (mm) inch (mm) inch (mm) inch (mm)
SXH6M03B3G70NSIX
2 (60,3 mm)
1,97 (50)
2,75 (70)
3 (76)
4,33 (110)
0,55 (14)
0,5 (12)
SXH6M03B5G70NSIX
2 (60,3 mm)
1,97 (50)
2,75 (70)
5 (127)
6,3 (160)
0,7 (18)
SXH6M03B7G70NSIX
2 (60,3 mm)
1,97 (50)
2,75 (70)
7 (178)
8,35 (212)
SXH7M3B3G80NSIX
2 1/2 (73 mm)
1,97 (50)
3,125 (80)
3 (76)
SXH7M3B5G80NSIX
2 1/2 (73 mm)
1,97 (50)
3,125 (80)
SXH7M3B7G80NSIX
2 1/2 (73 mm)
1,97 (50)
SXH8M9B3G92NSIX
3 (88,9 mm)
SXH8M9B5G92NSIX
Nº Ø cables inch (mm)
Supports
Expansion connectors
Part number
72
Substation equipment - NAM catalog | ©Sicame Group 2025
Substation equipment - NAM catalog | ©Sicame Group 2025
73
Straight expansion support
Straight expansion support SXHSB
SXHSB
Fig. 2
Expansion connectors
Up To
Fig. 1
A2 - 70
500 kV
Fig. 1
A2 - 70
Part number
Pipe size IPS inch (mm)
B inch (mm)
Fig No
H inch (mm)
BCD inch (mm)
D inch (mm)
E inch (mm)
T inch (mm)
Nº cables
Ø inch (mm)
Bolts inch (mm)
Current A
Part number
Pipe size IPS inch (mm)
B inch (mm)
Fig No
H inch (mm)
BCD inch (mm)
D inch (mm)
E inch (mm)
T inch (mm)
Nº cables
Ø inch (mm)
Bolts inch (mm)
Current A
SXH6M03SB3C2G70NSIX
2 (60,3 mm)
1,97 (50)
1
2,75 (70)
3 (76)
4,33 (110)
0,55 (14)
0,5 (12)
2
1,24 (31,7)
1/2 (M12)
2000
SXH10M16SB7E2G102NSIX
3,5 (101,6 mm)
3,93 (100)
1
4 (102)
7 (178)
8,35 (212)
0,7 (18)
0,6 (15)
2
1,76 (44,8)
1/2 (M12)
3200
SXH6M03SB5C2G70NSIX
2 (60,3 mm)
1,97 (50)
1
2,75 (70)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
2
1,24 (31,7)
1/2 (M12)
2000
SXH11M43SB5D2G114NSIX
4 (114,3 mm)
4,57 (116)
1
4,48 (114)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
2
1,76 (44,8)
5/8 (M16)
3200
SXH6M03SB7C2G70NSIX
2 (60,3 mm)
1,97 (50)
1
2,75 (70)
7 (178)
8,35 (212)
0,7 (18)
0,5 (12)
2
1,24 (31,7)
1/2 (M12)
2000
SXH11M43SB5C4DG114NSIX
4 (114,3 mm)
4,57 (116)
2
4,48 (114)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
4
1,24 (31,7)
5/8 (M16)
3600
SXH7M3SB3D2G80NSIX
2 1/2 (73 mm)
1,97 (50)
1
3,125 (80)
3 (76)
4,33 (110)
0,55 (14)
0,5 (12)
2
1,54 (39,2)
1/2 (M12)
2400
SXH11M43SB7D2G114NSIX
4 (114,3 mm)
4,57 (116)
1
4,48 (114)
7 (178)
8,35 (212)
0,7 (18)
0,6 (15)
2
1,76 (44,8)
5/8 (M16)
3200
SXH7M3SB5D2G80NSIX
2 1/2 (73 mm)
1,97 (50)
1
3,125 (80)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
2
1,54 (39,2)
1/2 (M12)
2400
SXH11M43SB7C4DG114NSIX
4 (114,3 mm)
4,57 (116)
2
4,48 (114)
7 (178)
8,35 (212)
0,7 (18)
0,6 (15)
4
1,24 (31,7)
5/8 (M16)
3600
SXH7M3SB7D2G80NSIX
2 1/2 (73 mm)
1,97 (50)
1
3,125 (80)
7 (178)
8,35 (212)
0,7 (18)
0,5 (12)
2
1,54 (39,2)
1/2 (M12)
2400
SXH14M13SB5C4DG127NSIX
5 (141,3 mm)
4,57 (116)
2
5 (127)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
4
1,24 (31,7)
5/8 (M16)
3600
SXH8M9SB5D2G92NSIX
3 (88,9 mm)
3,93 (100)
1
3,62 (92)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
2
1,54 (39,2)
1/2 (M12)
2400
SXH14M13SB5D4DG127NSIX
5 (141,3 mm)
4,57 (116)
2
5 (127)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
4
1,54 (39,2)
5/8 (M16)
4500
SXH8M9SB5E2G92NSIX
3 (88,9 mm)
3,93 (100)
1
3,62 (92)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
2
1,76 (44,8)
1/2 (M12)
3200
SXH14M13SB7C4DG127NSIX
5 (141,3 mm)
4,57 (116)
2
5 (127)
7 (178)
8,35 (212)
0,7 (18)
0,6 (15)
4
1,24 (31,7)
5/8 (M16)
3600
SXH8M9SB7D2G92NSIX
3 (88,9 mm)
3,93 (100)
1
3,62 (92)
7 (178)
8,35 (212)
0,7 (18)
0,6 (15)
2
1,54 (39,2)
1/2 (M12)
2400
SXH14M13SB7D4DG127NSIX
5 (141,3 mm)
4,57 (116)
2
5 (127)
7 (178)
8,35 (212)
0,7 (18)
0,6 (15)
4
1,54 (39,2)
5/8 (M16)
4500
SXH8M9SB7E2G92NSIX
3 (88,9 mm)
3,93 (100)
1
3,62 (92)
7 (178)
8,35 (212)
0,7 (18)
0,6 (15)
2
1,76 (44,8)
1/2 (M12)
3200
SXH16M8SB5D4DG140NSIX
6 (168,2 mm)
4,57 (116)
2
5,51 (140)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
4
1,54 (39,2)
5/8 (M16)
4500
SXH10M16SB5D2G102NSIX
3,5 (101,6 mm)
3,93 (100)
1
4 (102)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
2
1,54 (39,2)
1/2 (M12)
2400
SXH16M8SB5E4DG140NSIX
6 (168,2 mm)
6,85 (174)
2
5,51 (140)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
4
1,76 (44,8)
5/8 (M16)
6000
SXH10M16SB5E2G102NSIX
3,5 (101,6 mm)
3,93 (100)
1
4 (102)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
2
1,76 (44,8)
1/2 (M12)
3200
SXH16M8SB7D4DG140NSIX
6 (168,2 mm)
4,57 (116)
2
5,51 (140)
7 (178)
8,35 (212)
0,7 (18)
0,6 (15)
4
1,54 (39,2)
5/8 (M16)
4500
SXH10M16SB7D2G102NSIX
3,5 (101,6 mm)
3,93 (100)
1
4 (102)
7 (178)
8,35 (212)
0,7 (18)
0,6 (15)
2
1,54 (39,2)
1/2 (M12)
2400
SXH16M8SB7E4DG140NSIX
6 (168,2 mm)
6,85 (174)
2
5,51 (140)
7 (178)
8,35 (212)
0,7 (18)
0,6 (15)
4
1,76 (44,8)
5/8 (M16)
6000
74
Substation equipment - NAM catalog | ©Sicame Group 2025
Substation equipment - NAM catalog | ©Sicame Group 2025
75
Expansion connectors
Up To
500 kV
Fig. 2
Straight expansion support
Straight expansion support
WSXHSB
WSXHSB
Fig. 2
Expansion connectors
Up To
Fig. 1
A2 - 70
500 kV
Part number
Pipe size IPS inch (mm)
B inch (mm)
Fig No
H inch (mm)
BCD inch (mm)
D inch (mm)
E inch (mm)
T inch (mm)
Nº cables
Ø inch (mm)
Bolts inch (mm)
Current A
WSXH6M03SB3C2G70NSIX
2 (60,3 mm)
1,97 (50)
1
2,75 (70)
3 (76)
4,33 (110)
0,55 (14)
0,5 (12)
2
1,24 (31,7)
1/2 (M12)
WSXH6M03SB5C2G70NSIX
2 (60,3 mm)
1,97 (50)
1
2,75 (70)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
2
1,24 (31,7)
WSXH6M03SB7C2G70NSIX
2 (60,3 mm)
1,97 (50)
1
2,75 (70)
7 (178)
8,35 (212)
0,7 (18)
0,5 (12)
2
WSXH7M3SB3D2G80NSIX
2 1/2 (73 mm)
1,97 (50)
1
3,125 (80)
3 (76)
4,33 (110)
0,55 (14)
0,5 (12)
WSXH7M3SB5D2G80NSIX
2 1/2 (73 mm)
1,97 (50)
1
3,125 (80)
5 (127)
6,3 (160)
0,7 (18)
WSXH7M3SB7D2G80NSIX
2 1/2 (73 mm)
1,97 (50)
1
3,125 (80)
7 (178)
8,35 (212)
WSXH8M9SB5D2G92NSIX
3 (88,9 mm)
3,93 (100)
1
3,62 (92)
5 (127)
WSXH8M9SB5E2G92NSIX
3 (88,9 mm)
3,93 (100)
1
3,62 (92)
WSXH8M9SB7D2G92NSIX
3 (88,9 mm)
3,93 (100)
1
WSXH8M9SB7E2G92NSIX
3 (88,9 mm)
3,93 (100)
WSXH10M16SB5D2G102NSIX 3,5 (101,6 mm)
Fig. 1
A2 - 70
Pipe size IPS inch (mm)
B inch (mm)
Fig No
H inch (mm)
BCD inch (mm)
D inch (mm)
E inch (mm)
T inch (mm)
Nº cables
Ø inch (mm)
Bolts inch (mm)
Current A
2000
WSXH10M16SB7E2G102NSIX 3,5 (101,6 mm)
3,93 (100)
1
4 (102)
7 (178)
8,35 (212)
0,7 (18)
0,6 (15)
2
1,76 (44,8)
1/2 (M12)
3200
1/2 (M12)
2000
WSXH11M43SB5D2G114NSIX
4 (114,3 mm)
4,57 (116)
1
4,48 (114)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
2
1,76 (44,8)
5/8 (M16)
3200
1,24 (31,7)
1/2 (M12)
2000
WSXH11M43SB5C4DG114NSIX
4 (114,3 mm)
4,57 (116)
2
4,48 (114)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
4
1,24 (31,7)
5/8 (M16)
3600
2
1,54 (39,2)
1/2 (M12)
2400
WSXH11M43SB7D2G114NSIX
4 (114,3 mm)
4,57 (116)
1
4,48 (114)
7 (178)
8,35 (212)
0,7 (18)
0,6 (15)
2
1,76 (44,8)
5/8 (M16)
3200
0,5 (12)
2
1,54 (39,2)
1/2 (M12)
2400
WSXH11M43SB7C4DG114NSIX
4 (114,3 mm)
4,57 (116)
2
4,48 (114)
7 (178)
8,35 (212)
0,7 (18)
0,6 (15)
4
1,24 (31,7)
5/8 (M16)
3600
0,7 (18)
0,5 (12)
2
1,54 (39,2)
1/2 (M12)
2400
WSXH14M13SB5C4DG127NSIX
5 (141,3 mm)
4,57 (116)
2
5 (127)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
4
1,24 (31,7)
5/8 (M16)
3600
6,3 (160)
0,7 (18)
0,5 (12)
2
1,54 (39,2)
1/2 (M12)
2400
WSXH14M13SB5D4DG127NSIX
5 (141,3 mm)
4,57 (116)
2
5 (127)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
4
1,54 (39,2)
5/8 (M16)
4500
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
2
1,76 (44,8)
1/2 (M12)
3200
WSXH14M13SB7C4DG127NSIX
5 (141,3 mm)
4,57 (116)
2
5 (127)
7 (178)
8,35 (212)
0,7 (18)
0,6 (15)
4
1,24 (31,7)
5/8 (M16)
3600
3,62 (92)
7 (178)
8,35 (212)
0,7 (18)
0,6 (15)
2
1,54 (39,2)
1/2 (M12)
2400
WSXH14M13SB7D4DG127NSIX
5 (141,3 mm)
4,57 (116)
2
5 (127)
7 (178)
8,35 (212)
0,7 (18)
0,6 (15)
4
1,54 (39,2)
5/8 (M16)
4500
1
3,62 (92)
7 (178)
8,35 (212)
0,7 (18)
0,6 (15)
2
1,76 (44,8)
1/2 (M12)
3200
WSXH16M8SB5D4DG140NSIX
6 (168,2 mm)
4,57 (116)
2
5,51 (140)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
4
1,54 (39,2)
5/8 (M16)
4500
3,93 (100)
1
4 (102)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
2
1,54 (39,2)
1/2 (M12)
2400
WSXH16M8SB5E4DG140NSIX
6 (168,2 mm)
6,85 (174)
2
5,51 (140)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
4
1,76 (44,8)
5/8 (M16)
6000
WSXH10M16SB5E2G102NSIX 3,5 (101,6 mm)
3,93 (100)
1
4 (102)
5 (127)
6,3 (160)
0,7 (18)
0,5 (12)
2
1,76 (44,8)
1/2 (M12)
3200
WSXH16M8SB7D4DG140NSIX
6 (168,2 mm)
4,57 (116)
2
5,51 (140)
7 (178)
8,35 (212)
0,7 (18)
0,6 (15)
4
1,54 (39,2)
5/8 (M16)
4500
WSXH10M16SB7D2G102NSIX 3,5 (101,6 mm)
3,93 (100)
1
4 (102)
7 (178)
8,35 (212)
0,7 (18)
0,6 (15)
2
1,54 (39,2)
1/2 (M12)
2400
WSXH16M8SB7E4DG140NSIX
6 (168,2 mm)
6,85 (174)
2
5,51 (140)
7 (178)
8,35 (212)
0,7 (18)
0,6 (15)
4
1,76 (44,8)
5/8 (M16)
6000
76
Substation equipment - NAM catalog | ©Sicame Group 2025
Part number
Substation equipment - NAM catalog | ©Sicame Group 2025
77
Expansion connectors
Up To
500 kV
Fig. 2
Spacers
Corona end cap
ZCD
ZCBB °
Up To
500 kV
Up To
A2 - 70
500 kV
A2 - 70
B inch (mm)
C inch (mm)
Bolts inch
Part number
Pipe size IPS inch (mm)
B inch (mm)
C inch (mm)
D inch (mm)
ZCD250-330D3NSIX
700MCM (24,48 mm) - 1250MCM (32,7 mm)
2,16 (55)
5,9 (150)
1/2 (M12)
ZCBB18A
2 (60,3 mm)
230
175
195
ZCD330-420D3NSIX
1250MCM (32,7 mm) - 2000MCM (41,40 mm)
2,16 (55)
5,9 (150)
1/2 (M12)
ZCBB19A
2,5 (73 mm)
230
175
195
ZCD420-550D3NSIX
2000MCM (41,40 mm) - 3500MCM (54,81 mm)
2,55 (65)
5,9 (150)
5/8 (M16)
ZCBB20A
3 (88,9 mm)
260
190
210
ZCD250-330D6M6NSIX
700MCM (24,48 mm) - 1250MCM (32,7 mm)
2,16 (55)
13 (330)
1/2 (M12)
ZCBB21A
3,5 (101,6 mm)
280
200
220
ZCD330-420D6M6NSIX
1250MCM (32,7 mm) - 2000MCM (41,40 mm)
2,16 (55)
13 (330)
1/2 (M12)
ZCBB22A
4 (114,3 mm)
280
200
220
ZCD420-550D6M6NSIX
2000MCM (41,40 mm) - 3500MCM (54,81 mm)
2,55 (65)
13 (330)
5/8 (M16)
ZCBB24A
5 (141,3 mm)
305
200
230
ZCBB86A
6 (168,2 mm)
400
280
310
Accessories
Cable inch (mm)
Accessories
Part number
78
Substation equipment - NAM catalog | ©Sicame Group 2025
Substation equipment - NAM catalog | ©Sicame Group 2025
79
Hardware shield STS
Fig. 1
Up To
A2 - 70
Fig. 2 Part number
Figure
STS44N
1
STS6N
2
Accessories
500 kV
80
Substation equipment - NAM catalog | ©Sicame Group 2025
Substation equipment - NAM catalog | ©Sicame Group 2025
81
04 Special solutions
82
Busbar vibration damper
84
Busbar adjustable connector
88
Solution for HVDC converters
90 83
Special solutions
Special solutions Table dimensions: Damper model
High voltage (HV) and ultra high voltage (UHV) substations are, depending on their geographical location, exposed to climatic conditions: special wind. The wind causes sinusoidal turbulence to the substation busbars that in return causes variations in the carrying capacity with the fluid (air) moving in the same way as on an airplane’s wing.
Fig
L
G
H
1
1140
92
330
2
565
47
110
2
695
47
110
3
780
47
100
1
1140
92
330
2
565
47
105
SDAM73ENS
2
695
47
105
SDAM89BNS
1
1140
92
330
2
565
47
115
2
695
47
115
SDAM89FNS
3
780
47
115
SDAM101BNS
1
1140
92
330
2
565
47
125
2
695
47
125
SDAM101FNS
3
780
47
125
SDAM114ANS
1
1300
106
440
1
1140
106
330
2
565
47
135
SDAM114ENS
2
695
47
135
SDAM114FNS
3
780
47
135
SDAM143ANS
1
1300
106
440
SDAM143BNS
1
1140
106
330
1
1550
106
670
2
565
57
150
SDAM143ENS
2
695
57
150
SDAM143FNS
3
780
57
150
SDAM168ANS
1
1300
106
440
SDAM168BNS
1
1140
106
330
1
1550
106
670
2
565
57
160
SDAM168ENS
2
695
57
160
SDAM168FNS
3
780
57
160
SDAM219ANS
1
1300
120
440
SDAM219BNS
1
1140
120
330
1
1550
120
670
2
565
57
190
SDAM219ENS
2
695
57
190
SDAM219FNS
3
780
57
190
SDAM60BNS SDAM60DNS SDAM60ENS
Damper A, B & C
SDAM73BNS SDAM73DNS
SDAM89DNS SDAM89ENS
Fig. 1
SDAM101DNS SDAM101ENS
The most common solution to date is to place a cable inside the tube. But this cheap method is not satisfactory as the cable subjected to the vibrations may come out of the tube if the end caps are not properly tightened or welded they could be loose, creating a short circuit when they touch the ground.
Being aware that the various current solutions are neither technically nor economically satisfactory, SBI Connectors in consultation with SALVI requested the participation of Milan (Italy) and Stellenbosh (South Africa) Polytechnic Universities in researching a new generation of dampers: the busbar damper.
Damper D & E
SDAM143CNS SDAM143DNS
Fig. 2
This new generation is suitable for the majority of situations and is highly efficient. Following positive results from the experimental tests, the new damper offers the following advantages:
SDAM168CNS SDAM168DNS
• Protects and lengthens the lifetime station equipment • N o maintenance is required because the counterpoise’s initial fixed setting • Provides almost total dissipation of vibrations caused by wind
Damper F
• Can be adapted to all existing stations Special solutions
"2-1/2"" IPS (73 mm)"
W"3"" IPS (88,9 mm)"
3-1/2" IPS
SDAM114BNS SDAM114DNS
Furthermore, if the cable within the conductor starts to vibrate, it may produce a noise that would be registered as a false-positive for a malfunction.
"2"" IPS (60,3 mm)"
SDAM60FNS
In certain frequency conditions, busbars that are exposed to the wind can reach its natural resonance frequency (low frequency) that creates severe vibrations that can damage the installation. To solve this problem, a means of shock-absorption must be fitted to the tube that opposes and dissipates the vibration, taking into account the tube’s natural resonance frequency.
O.D
SDAM219CNS
• Simple, quick configuration
SDAM219DNS
• Cost effective
"4"" IPS (114,3 mm)"
"5"" IPS (141,3 m)"
"6"" IPS (168,3 m)"
"8"" IPS (219,1 m)"
Fig. 3
84
Substation equipment - NAM catalog | ©Sicame Group 2025
Substation equipment - NAM catalog | ©Sicame Group 2025
Bolts
M12
M12
M12
M12
M12
M14
M14
M16
Special solutions
Busbar vibration damper
85
Special solutions
Special solutions
Table selection: Damper model
Tube length O.D.
5
SDAM60BNS SDAM60DNS SDAM60ENS
Fig
"2"" IPS (60,3 mm)"
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
2
SDAM73BNS
1 "2-1/2"" IPS (73 mm)"
2
SDAM73ENS
2
SDAM89BNS
1
SDAM89ENS
8
2
3
SDAM89DNS
7
1
SDAM60FNS
SDAM73DNS
6
"3"" IPS (88,9 mm)"
2 2
SDAM89FNS
3
SDAM101BNS
1
SDAM101DNS
2 3-1/2" IPS
SDAM101ENS
2
SDAM101FNS
3
SDAM114ANS
1
SDAM114BNS
1 2
SDAM114ENS
2
SDAM114FNS
3
SDAM143ANS
1
SDAM143BNS
1
SDAM143CNS SDAM143DNS
"5"" IPS (141,3 m)"
1 2
SDAM143ENS
2
SDAM143FNS
3
SDAM168ANS
1
SDAM168BNS
1
SDAM168CNS SDAM168DNS
Special solutions
"4"" IPS (114,3 mm)"
"6"" IPS (168,3 m)"
1 2
SDAM168ENS
2
SDAM168FNS
3
SDAM219ANS
1
SDAM219BNS
1
SDAM219CNS SDAM219DNS
"8"" IPS (219,1 m)"
1 2
SDAM219ENS
2
SDAM219FNS
3
86
Special solutions
SDAM114DNS
Substation equipment - NAM catalog | ©Sicame Group 2025
Substation equipment - NAM catalog | ©Sicame Group 2025
87
Special solutions
Special solutions
Busbar adjustable connector current solution: Disadvantages of the current solution Angled busbar connections in most of the substations are obtained either by bending the tube or by welding an Aluminum sphere to join the tubes. Welding operation must be made on site, difficult to perform due to the precision required, the weather conditions and construction site constraints.
Easy installation Adjustable on site
Bending busbar operation must be done at the manufacturing plant using a special Aluminum alloy and heat treatment. This special manufacturing process increase the product cost. Special transport for bending busbars is also an additional expense. Adjustable connector that allows angular connections between Aluminum busbars from 60˚ to 180˚. Adjustable connector solution avoids bending or welding busbars in the substation and makes installation work faster, easier and more cost effective.
New Sicame solution: Elbow connector for busbar from 60˚ to 180˚. • Adjustable on site • Easy and fast installation • Cost effective
Ø 80 to 180 mm
Design type for busbars from Ø 80 to 180 mm and Ø 200 to 400 mm
Most usual angle configurations:
Special adjustable system with 5 bolts that assure a right contact surface performance and allow different angle configurations from 60˚ to 180˚ depends on the tube diameter. Angle adjustment is possible by keeping the central bolt fixed without connection disassembly.
Screw, washer and hexagonal nut A2 stainless steel. Available under requirement in A4 stainless steel.
Caps in gravity casting silicon aluminium alloy primary fusion.
Adjustable connector that allows angular connections between Aluminum busbars from 60˚ to 180˚. Ø 200 to 400 mm
Special solutions
Body in sand casting silicon aluminium alloy primary fusion.
60˚ connection
88
90˚ connection
Corona simulation Simulation parameters
120˚ connection
Substation equipment - NAM catalog | ©Sicame Group 2025
Possibility to connect different busbar diameters using the same adjustable system.
Special solutions
Adjustable connector solution avoids bending or welding busbars in the substation and makes installation work faster, easier and more cost effective.
Substation equipment - NAM catalog | ©Sicame Group 2025
89
Special solutions
Special solutions
Solution for HVDC converters
AC to DC converter station
Renewable Energy
HVDC (High Voltage Direct Current) Solutions
AC Transmission Line
DC to AC converter station
AC Transmission Line
Distribution Line
HVDC technology involves the transmission of electricity using direct current (DC) instead of alternating current (AC). In an HVDC system, electrical power is converted from AC to DC at a converter station, transmitted over long distances through DC transmission lines, and then converted back to AC at another converter station for distribution. The primary advantage of HVDC over traditional AC systems is its efficiency in long-distance transmission. AC power loses energy due to resistance and inductance in the transmission lines, especially over long distances. In contrast, HVDC transmission reduces these losses significantly, making it more efficient for distances exceeding 600 kilometers (approximately 373 miles). HVDC systems also offer improved stability and control. DC transmission allows for precise control of power flow, enabling grid operators to manage power distribution more effectively. This is particularly beneficial for integrating renewable energy sources, which can be intermittent and variable. Additionally, HVDC systems can connect asynchronous power grids, allowing for the interconnection of different regions with varying electrical standards.
These advancements in HVDC converter technology have had a significant impact on grid performance. They have enabled the construction of more efficient and reliable HVDC substations, capable of handling higher power capacities and supporting the integration of renewable energy sources. The improved efficiency and control provided by these technologies are essential for modernizing the power grid and meeting the growing demand for clean and reliable energy.
Special solutions
Special solutions
Recent advancements in HVDC technology have focused on enhancing the performance and reliability of converter stations, which are critical components of HVDC systems. Innovations in power electronics, such as voltage-sourced converters (VSCs), have played a significant role in this regard.
Sicame has extensive experience in the design and manufacture of connectors for HVDC station converters, and its products have been installed in several HVDC converter worldwide. Find here some examples of customized designs for HVDC converters applications.
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Substation equipment - NAM catalog | ©Sicame Group 2025
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05 Wildlife mitigation
92
Rip-stopTM insulating line hose
94
Fusing tape
96
Squirrel and woodpecker deterring pole wrap
98
Universal cutout and loadbreak cutout covers
100
Universal bushing + equipment covers
102
Raptor GuardTM spikes perching excluders
104 93
Wildlife mitigation
Wildlife mitigation Rip-stopTM insulating line hose
Length
I.D.
kV rating
ACSR range
Conductor range
Min qty
LH-038-50
50’/15.24 m
3/8”/.95 cm
<25 kV
#6-2/0 ACSR
0.175”-5”/44 cm- 1.27 cm
-
LH-038-50-KT *
50’/15.24 m
3/8”/.95 cm
<25 kV
#6-2/0 ACSR
0.175”-5”/44 cm- 1.27 cm
-
V-O
LH-063-50
50’/15.24 m
5/8”/1.59 cm
<34.5 kV
1/0-336 ACSR
.375”-.7”/.95 cm-1.78 cm
-
flame retardant
LH-063-50 KT *
50’/15.24 m
5/8”/1.59 cm
<34.5 kV
1/0-366 ACSR
.375”-.7”/ 95 cm-1.78 cm
-
LH-075-50
50’/15.24 m
3/4”/1.91 cm
<34.5 kV
266-477 ACSR
.6”-.9”/1.52 cm- 2.29 cm
-
LH-075-50-KT *
50’/15.24 m
3/4”/1.91 cm
<34.5 kV
266-477 ACSR
.6 -.9”/1.52 cm- 2.29 cm
-
LH-100-25
25’/7.62 m
1”/2.54 cm
<44 kV
397-715 ACSR
.74” - 1.1” / 1.88 cm - 2.8 cm
-
LH-100-25-KT *
25’/7.62 m
1” / 2.54 cm
<44 kV
397-715 ACSR
.74”-1.1”/1.88 cm-2.8 cm
-
LH-125-25
25’/7.62 m
1 1/4”/3.18 cm
<44 kV
715-1192 ACSR
1”-1.35”/2.54 cm- 3.43 cm
-
LH-125-25-KT *
25’/7.62 m
1 1/4”/3.18 cm
<44 kV
715-1192 ACSR
1”-1.35”/2.54 cm- 3.43 cm
-
LH-150-25
25’/7.62 m
1 1/2”/3.81 cm
<69 kV
1193-1780 ACSR
1.3” - 1.6” / 3.3 cm -4.06 cm
-
Part number
Line hose prevents electrocutions by insulating dangerous energized areas. It can be used on any bare or non-insulated area or wire to add insulating protection. Only tear resistant line hose in the industry • Best in class silicone Rip-stop deteriorate/get hard/brittle
TM
line hose does not tear/
• Protects lines from contact-caused outages and adverse environmental conditions including vegetation, wildlife, weather, etc • Available in gray and hi-viz orange or yellow
Very hotstick friendly
• 50% overlap provides superior coverage • 35 kV insulation rating
Color
• V-0 flame retardant material • Easy hot stick or glove install
Rated for systems up to 345 kV
Ø1.2 Ø.75
0.16 Maximum Thickness
Wildlife mitigation
50' Length Roll
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Substation equipment - NAM catalog | ©Sicame Group 2025
LHT-038
Hotstick compatible installation tool for LH-038
LHT-038-R
Hotstick compatible installation tool set for full span installation of LH-038 rolls
LHT-063-075
Hotstick compatible installation tool for LH-063 and LH-075
LHT-100-125
Hotstick compatible installation tool for LH-100 and LH-125
LHT-150
Hotstick compatible installation tool for LH-150
Tests
Results
IEEE 1656/5.2 wet withstand
>20 kV
Tear strength
46.5 KN/M
ASTM D257-14 volume resistivity
5.20X10^16 OHMS/cm
ASTM D257-14 surface resistance
1.61X10^12 OHMS
ASTM D257-14 insulation resistance
2.94X10^12 OHMS
ISO 37:2017 elongation at break
414%
ISO 7619-1:2010 shore hardness
62 SHORE A
ASTM D573-04 heat resistance
200°C/72 hrs 414% elongation, 65 shore A
IEEE 1656/5.6 ULtraviolet aging / ASTM G-155
1,000 hrs
UL 94 flammability of plastic materials
V-0
ASTM D149 dielectric strength
287 V/MIL (11.3 kV/mm)
ASTM D 3638 comparative tracking index
526 V
ASTM D150-18 dielectric constant and dissipation factor
2.96 // 0.004
ISO 812 brittleness temperature
>-94°F (-70°C)
Substation equipment - NAM catalog | ©Sicame Group 2025
Wildlife mitigation
Tools
95
Wildlife mitigation
Wildlife mitigation
Fusing tape Fusing tape provides an irreversible bond that is resistant to moisture, oxygen, ozone, UV, and corona over a wide temperature range
• Will not tear once sealed
Length
Width
kV rating
Min qty
Conductor diameter
FTP-200
36’/10.97 m
2” / .05 cm
<15 kV per layer with proper installation
5
10 sets (30 total)
Tests
Results
ASTM D142 elongation at break
500%
V-O
ASTM D149 dielectric strength
684 V/MIL (26.9 kV/mm)
flame retardant
ASTM D142 tensile strength
1458 PSI (10053 kV/mm)
Temperature range
-60°F to -400°F (-51°C to -204°C)
• Self fuses to seal • Provides irreversible bond, but bonds only to itself
Part number
• Protects over a wide temperature range • Insulation barrier is resistant to moisture, oxygen, ozone, UV, and corona • >15 kV phase-to-ground insulation rating per layer when installed with 2/3 overlap and 10% stretch • >69 kV insulation available with additional layers ackaged in 2” x 36’ roll - trim as needed •P
Rated for <69 kV insulation
• V-0 flame retardant material
Wildlife mitigation
Wildlife mitigation
• Easy to use > install video
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Substation equipment - NAM catalog | ©Sicame Group 2025
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Wildlife mitigation
Wildlife mitigation
Squirrel and woodpecker deterring pole wrap Pole wrap is a cost effective solution for deterring climbing animals from interference with energized connections and equipment.
Part number
Length
Height
Pkg
PW-040-1-G
100’ / 2.54 m
30”/76.2 cm
PW-040-1-3-G
36” / .91 m
30”/76.2 cm
Color
kV rating
Min qty
1 Roll
< 30
5
20 Sheets
< 30
-
Widest coverage in the industry • Smooth, glossy exterior deters climbing animals on poles and substation fencing
V-O
• Prevents woodpeckers from landing/attaching to the surface and causing structural damage to the pole
flame retardant
• Textured interior helps prevent accelerated pole rot - only one of its kind in the industry
Tests
Results
ASTM D-149 Dielectric strength
>30 kV @ .040"
ASTM D1822 Tensile impact
>200 FT-LB/IN
ASTM D746 Low temperature brittleness
-79°C
ASTM D1693 Environmental stress crack resistance
>1,000 hrs
• 30” of coverage, can be overlapped for extended coverage • UV resistant polymer prevents accelerated weathering
Rated at <30 kV insulation
• V-0 flame retardant material available • Lineman climbable / affable • Non conductive - provides <30 kV insulation per layer
36
30
36
Wildlife mitigation
Wildlife mitigation
.04
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Substation equipment - NAM catalog | ©Sicame Group 2025
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Wildlife mitigation
Wildlife mitigation
Universal cutout and loadbreak cutout covers Cutout covers insulate exposed portions of cutout equipment to prevent electrocution events and power outages.
Part number
Fit
Shed diameter
kV rating
Min qty
CT-D02
most polymer and porcelain 100 and 200 amp cutouts
<3”/7.62 cm
<35
20
CT-D04
ABB, Hubbell-Chance, Aluma-Form and Maclean style loadbreak cutouts (shed widths up to 5”)
<5”/12.7 cm
<35
20
Adjusts to fit • Only adjustable cover in the industry
V-O flame retardant
• > Standard cover clips provide 2” (5 cm) height adjustment for universal secure fit on most polymer and porcelain 100 and 200 amp cutouts • > Loadbreak cover features Raptor ClawTM roto lock for adjustable internal diameter, providing a universal secure fit on ABB, Hubbell-Chance, Aluma-Form and Maclean style loadbreak cutouts (shed widths up to 5”)
Very hotstick friendly
• N eck adjusts to the size of the cutout for a tight and secure universal fit • Fully covers all energized portions • A llows insulator sheds to naturally clean • Open design allows for easy access during inspections • S tandard cover allows for load break tool access
Rated at <35 kV
• V -0 flame retardant material
insulation
• H ot stick friendly, snaps into position, no locking pins
Tests
Results
IEEE 1656 / 5.2 wet withstand
>18 kV
IEEE 1656 / 5.3 wet power frequency flashover
>95%
IEEE 1656 / 5.4 lightning impulse withstand
125 kV
IEEE 1656 / 5.5 cold temperature test
Passed/-25°C
IEEE 1656 / 5.6 ultraviolet aging
5,000 hrs
Wind retention
>90 MPH
UL 94 flammability of plastic materials
V-0
ASTM D149 dielectric strength
467 V/MIL (18.4 kV/mm)
ASTM D2303 inclined plane tracking and erosion: initial tracking (variable voltage)
4.0 kV
ASTM D638 tensile strength @ yield
2,400 PSI (17 MPA)
ASTM D790 flexural modulus
140,000 PSI (966 MPA)
Regulatory
Rohs compliant
1.5 7.5
Ø0.6 Ø0.6
Ø0.6 6.3
Wildlife mitigation
12
Wildlife mitigation
10
Hotstick Attachment Point
100
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Substation equipment - NAM catalog | ©Sicame Group 2025
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Wildlife mitigation
Wildlife mitigation
Universal bushing + equipment covers Equipment covers insulate connection points between the conductor and the equipment to prevent electrocution events and power outages. Adjusts to fit
V-O
• Only adjustable cover in the industry
flame retardant
• > Small cover fits sheds up to 4” (10.16 cm) wide x 6” (15.24 cm) tall to fit most transformer bushings • > Medium cover fits sheds up to 5.5” (13.97 cm x 20.32 cm) wide x 8” tall to fit most reclosers and regulators • Clam shell design adjusts to the size of the equipment for a tight and secure universal fit
Very hotstick friendly
• No-wear hinges provide superior durability (no tape needed!)
Part number
Shed diameter
Rod diameter
Height
kV rating
Min qty
BC-D01
< 4”/10.16 cm
< 2.5”/6.35 cm
< 6”/15.24 cm
< 35
20
BC-D02
< 5.5”/13.97 cm
< 3”/7.62 cm
< 8”/20.32 cm
< 35
20
Tests
Results
IEEE 1656 / 5.2 wet withstand
>18 kV
IEEE 1656 / 5.6 ultraviolet aging
5,000 hrs
UL 94 flammability of plastic materials
V-0
ASTM D149 dielectric strength
467 V/MIL (18.4 kV/mm)
ASTM D2303 inclined plane tracking and erosion: initial tracking (variable voltage)
4.0 kV
ASTM D638 tensile strength @ yield
2,400 PSI (17 MPA)"
ASTM D790 flexural modulus
140,000 PSI (966 MPA)
Regulatory
Rohs compliant
• Multiple entry/exit options • Full topside closure for superior salt, air pollution, ozone, dust, and other contaminate protection Rated at <35 kV
• Multiple hotstick attachment points
insulation
• V-0 flame retardant material • Easy hotstick install-no locking pins • Small cover is infrared friendly
7.6
9
10
Bolt and Snap-in Nut for Size Adjustment
7.6
Wildlife mitigation
Wildlife mitigation
7.5
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Substation equipment - NAM catalog | ©Sicame Group 2025
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Wildlife mitigation
Wildlife mitigation
Raptor GuardTM spikes perching excluders
Part number
Coverage
Mount type
Min qty
RGSP-12-EC *
12”/ 30.48 cm
Cross arm
10
RGSP-24
24” / 60.96 cm
Cross arm
20
RGSP-24-EC *
24” / 60.96 cm
Cross arm
10
V-O
RGSP-36
36” / 91.44 cm
Cross arm
10
flame retardant
RGSP-36-EC *
36” / 91.44 cm
Cross arm
10
RGSP-48
48” / 121.92 cm
Cross arm
10
RGSP-48-EC *
48” / 121.92 cm
Cross arm
10
Perching excluders on transmission structures isolate dangerous energized areas and deter birds of prey from using structures as hunting perches. Adjusts to fit • Blunt-tipped solid fiberglass spikes deter perching, as proven by live flight cage raptor tests conducted in collaboration with the Rocky Mountain Raptor program • Engineered to maintain structural integrity under extreme environmental conditions for decades • Durability and effectiveness have been highlighted in the pilot programs by the Washington State fish and wildlife and the bureau of land management
* Spikes with EC feature additional side spike extension to cover vertical insulators or ends of arm.
Very hotstick friendly
• Optional side extension covers vertical insulators or ends of cross arm Rated for all
• Modular design allows for custom lengths
Tests
Results
UL 746C outdoor weatherability
F1
UL-94 flammability
V-0 // 5VA @ .118"thickness
ASTM D-256 impact strength
23.0 FT-LB/IN
ASTM D695 flexural stress
3,810 PSI
voltages
• Magnetic hot stick install option is available • WW UL 94 V-0 flame retardant material
Spikes with extra coverage
Wildlife mitigation
Wildlife mitigation
Standard spikes
Base options - Flat
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Substation equipment - NAM catalog | ©Sicame Group 2025
Substation equipment - NAM catalog | ©Sicame Group 2025
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06 Grounding and short circuiting equipment
106
Earthing and short-circuiting clamps for busbars and line conductors
108
Earthing and short-circuiting clamp for bare overhead conductors
110
C type cooper connectors
111
Self-extending copper-steel rods
112
Connector heads for earthing rods
113
Improvement of earthing systems
114
Exothermic connection
115 107
Grounding and short circuiting equipment
Grounding and short circuiting equipment Earthing and short-circuiting clamps for busbars and line conductors
Use: • Grounding and shorting of bare rigid cylindrical conductors (Tubes and earth bars) • For medium and high voltage substations • Maximum short circuit current Isc: 40 kA / 1s
Characteristics: • 4 sizes of clamps for conductors from 4 to 225 mm • 3 drives available: bayonet, hexagonal, ring • 2 range levels: Pro and Expert
MT-736-065-PE
MT-736-085-XH Expert
Metric screw tightening:
ACME screw tightening:
Metric screw tightening involves applying a specific torque to a screw to ensure proper clamping force.
Quick tightening for more productivity.
Part number
Range tightening (mm)
MT-736-065-PE MT-736-065-PH
Drive Bayonet 15 mm
Hexagonal 26 mm
Ø 4 - 65
MT-736-085-P
x
MT-736-150-PH
Ø 40 - 150
MT-736-150-P
x
MT-736-225-PE MT-736-225-PH
Ø 110 -225
x x Ø 10 - 85
x Ø 40 - 150
MT-736-225-P
x
Example: MT-736-085-XH clamp type MT-736 for bare conductors from 10 to 85 mm with an ACME quick screw driven by a hexagonal fitting end.
MT-736-XXX-XX
x
MT-736-150-X
MT-736-225-XH
x
x x
x
MT-736-225-XE
x
Ring
x
MT-736-065-X
MT-736-150-XH
x
Hexagonal 26 mm
MT-736-065-X
MT-736-150-XE
x
Bayonet 15 mm
Ø 4 - 65
MT-736-085-XH
x
Drive
x
MT-736-085-XE
x
MT-736-150-PE
Range tightening (mm)
MT-736-065-XH
x
Ø 10 - 85
Part number MT-736-065-XE
x
MT-736-085-PE MT-736-085-PH
Ring
x
MT-736-065-P
Grounding and short circuiting equipment
MT-736-225-XH
x Ø 110 - 225
x
MT-736-225-X
x
Grounding and short circuiting equipment
Pro
MT-736-150-XE
Range taking
• 0 65”for conductors from 4 to 65 mm • 085”for conductors from 10 to 85 mm • 1 50”for conductors from 40 to 150 mm • 225”for conductors from 110 to 225 mm
The products
Screw operating fitting end
• 24 references to cover all applications
• “E” Bayonet 15 mm • “H” Hexagonal 26 mm • “” Ring
• Bayonet, hexagonal or ring drive • Maximum ICC of 40 kA / 1s
Set screw type
• “ P” ISO screws • “X” ACME screws 108
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Substation equipment - NAM catalog | ©Sicame Group 2025
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Grounding and short circuiting equipment
Grounding and short circuiting equipment
Earthing and short-circuiting clamp for bare overhead conductors
C type cooper connectors
B
• Easy removal: New oversized ring to facilitate gripping with the hook of the clamp holder
• Application Cu-Cu splices and shunts in overhead lines and ground connections. Pure electrolytic copper with a (C) shape
• Improved connectivity: For use with Ø ≥ 12 mm and ≤ 13 mm bolt for terminal tightening
• Without cutting the main cable
Use:
H
• Contact a specialist for details on the crimping tools
L
New range: Type
Isc
MT-613
Pre-Arming
23 kA / 1s (High power spring)
MT-613/1
Automatic
23 kA / 1s (High power spring)
MT-613/2
Automatic
8 kA / 1s (Low power spring)
MT-613/3
Pre-Arming
8 kA / 1s (Low power spring)
Grounding and short circuiting equipment
L
H
B
YC1O
8
9,8
YC8
12,7
C25PM
Principal conductor (mm2)
Secondary conductor (mm2)
Min
Max
Min
Max
6,4
2,5
6
1,5
6
12,6
8,4
10
10
1,5
10
19
21
11,9
25
25
10
16
C16
17
19
11,5
10
16
2 x 1,5
16
VC4C6
17,7
19,3
11,9
16
25
2,5
16
YC4
17,7
21
11,9
16
25
16
25
C25
20
24,3
15
25
29,3
10
29,3
C35
20
26,5
15
30
35
25
35
The products
YC2C2
21,2
26,5
15,6
35
40
35
40
● Design: Improved ergonomics
C50
20
26,5
17,2
50
50
16
50
● Better ISC: For more safety
YC26C2
28
33,1
20,4
50
70
10
35
● Improved connectivity: For all uses
YC26
28
34,1
21
50
70
40
70
C95-35
30
41
26
95
100
4
40
C75
30
41
26
70
95
35
70
YC28
29
39,6
25,1
95
100
95
100
YC29
30
44
27
100
125
25
125
YC31C28
27,2
44,1
27,2
150
185
25
100
YC240C120
22,4
68
34
150
240
95
120
C150
30
45
28
150
150
75
150
C185
35
54
33
150
185
60
150
YC120C070
18,5
50
23,5
95
120
10
70
YC12OC
21,8
52,5
24
95
120
95
120
YC240C070
22,4
61
31
150
240
10
70
YC240C
32
74
34
150
240
150
240
● Productivity: Even more competitive
Old design
Reference
New design
Compatible clamp holder trays: For automatic grippers: MT-613/1 & MT-613/2 • Tray for 3 clamps: MT-630-C / K / S; MT-635-C • Tray for 4 clamps: MT-634-C / K
For pre-cocking clamps: MT-613 & MT-613/3 • Tray for 3 clamps: MT-635/1-K; MT-633-C / K / S • Tray for 4 clamps: MT-634/1-C / K
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Substation equipment - NAM catalog | ©Sicame Group 2025
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Grounding and short circuiting equipment
Reference
Grounding and short circuiting equipment
Grounding and short circuiting equipment
Self-extending copper-steel rods
Connector heads for earthing rods
Self-extending copper-steel rods (round shape, module 19, ø 17.3 mm)
Connector heads for earthing rod.
Network type: LV
Network type: LV Ø 17,3 mm
Application:
Application:
• For the evacuation of fault currents to earth
• H ead/rod connection obtained by conical press-fitting with force
• S elf-extending rods: the lower end of each rod has a point intended both for driving in and connecting; the upper end is pierced, receiving, without any sleeve, the point of the previous rod
• H ead/cable connection made by striking a stainless steel peg located in the upper part of the head. This strike guarantees the connection head/posts and head/cable • F or earthing rods: Ø 17,3 mm copper-steel and Ø 16 mm stainless-steel
Features:
• R ight-angled running through copper cable 25-29 mm 2
• Steel with copper electroplating: minimum thickness 350 μm • Resistance: ≥70 daN/mm 2
A3MC-..-
Profile
Use EN
Diameter (mm)
Weight (kg)
A3MC-..-
Part number
Connector
A3MC-10Z
Cosses C2C-95Z, TO-2-19 and TO-3-16/19
Circular
Auto-extending
17.3
1,8
1 000
A3MC-15Z
Cosses C2C-95Z, TO-2-19 and TO-3-16/19
Circular
Auto-extending
17.3
2,75
1 500
Part number
Fitting
Mounting
Diameter (mm)
Capacity
Height (mm)
Weight (kg)
TFT-16/17
Copper steel stake D. 17.3 mm and steel
Copper steel stake D. 17.3 mm and stainless steel D. 16 mm
25
Cu 25 / 29 mm2
75
0,15
Length (mm)
Accessories: • Driving pins: CH-MZ, CH-LMZ and CH-MP • Connection terminals: C2C-95Z, TO-2-19 and TO-3-16/19
Grounding and short circuiting equipment
Grounding and short circuiting equipment
C2C-95Z
112
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Substation equipment - NAM catalog | ©Sicame Group 2025
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Grounding and short circuiting equipment
Grounding and short circuiting equipment
Improvement of earthing systems
Exothermic connection
The ultimate solution for safe and reliable exothermic connections
Improvement of earthing systems.
Cat’advanced weld consists of the following components:
Network type: LV | Standards: IEC 62561-7
Graphite mold
Application:
Ref. CEW-XXXXXXX
Cup of welding powder
• M aterial of very high conductivity which considerably improves the efficiency of earth circuits
Ref. CEW-WPWW
• S pread around the earth conductors at the bottom of the trench, it allows to locally reduce earth resistance and impedance
Handle clamp Ref. CEW-HC
• Can be used dry or mixed with water
Electronic ignitor
Physical and chemical features:
Lead interface
Ref. CEW-EI
• Solubility in water: not very important • Specific gravity (H 2O=1): 0.9 • Melting temperature: 3500°C • Appearance: grey powder
LED display screen: - battery level status - number of welds performed
Composition:
2 switch buttons
• Aluminum silicate hydroxide • Carbon • Hydraulic binders
Safety light
• Quartz crystals • Dust fixing oil
Gloveasy
Reference
Height (mm)
Width (mm)
Depth (mm)
Weight (kg)
TR-115
500
150
300
11,5
Product
Characteristics
Ref. to order separatly
Grounding and short circuiting equipment
Mechanical strength 4 rechargeable lithium batteries (18650 type)
High-quality electrical connection and high conductivity
114
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Substation equipment - NAM catalog | ©Sicame Group 2025
115
Grounding and short circuiting equipment
• Sulphur
Grounding and short circuiting equipment
Superior performance: • High-quality electrical connection: Achieves a molecular bond that ensures long-lasting durability
Connection type
Illustration
• Corrosion resistance: Designed to withstand harsh environments, ensuring reliability over time • High conductivity: Ensures optimal electrical performance • Mechanical strength: Exceptional resistance to mechanical stresses
User-friendly:
T connection
• Fast installation: No need to handle welding metal - simply “plug and play” • Easy to use: Simplified installation to reduce the risk of error
Secondary conductor in mm2
Mold reference
Welding powder Reference
25
25
CEW-025T025
CEW-WP65
35
25
CEW-035T025
CEW-WP65
35
35
CEW-035T035
CEW-WP65
50
35
CEW-050T035
CEW-WP65
50
50
CEW-050T050
CEW-WP90
70
50
CEW-070T050
CEW-WP90
70
70
CEW-070T070
CEW-WP90
95
70
CEW-095T070
CEW-WP90
• Quick setup: Achieve a permanent connection in 5 steps
95
95
CEW-095T095
CEW-WP115
• Easy to store and transport: No starting powder included in cup
120
95
CEW-120T095
CEW-WP150
120
120
CEW-120T120
CEW-WP150
25
25
CEW-025X025
CEW-WP65
35
25
CEW-035X025
CEW-WP65
35
35
CEW-035X035
CEW-WP65
50
35
CEW-050X035
CEW-WP90
50
50
CEW-050X050
CEW-WP90
70
50
CEW-070X050
CEW-WP115
70
70
CEW-070X070
CEW-WP115
95
70
CEW-095X070
CEW-WP150
95
95
CEW-095X095
CEW-WP150
120
95
CEW-120X095
CEW-WP200
120
120
CEW-120X120
CEW-WP200
25
25
CEW-025P025
CEW-WP65
35
25
CEW-035P025
CEW-WP65
35
35
CEW-035P035
CEW-WP65
50
35
CEW-050P035
CEW-WP90
50
50
CEW-050P050
CEW-WP90
70
50
CEW-070P050
CEW-WP115
70
70
CEW-070P070
CEW-WP115
95
70
CEW-095P070
CEW-WP150
95
95
CEW-095P095
CEW-WP150
120
95
CEW-120P095
CEW-WP200
120
120
CEW-120P120
CEW-WP200
25x3 mm
25x3 mm
CEW-253E253
CEW-WP90
30x2 mm
30x2 mm
CEW-302E302
CEW-WP65
25x3 mm
25x3 mm
CEW-253T253
CEW-WP90
30x2 mm
30x2 mm
CEW-302T302
CEW-WP90
25x3 mm
25x3 mm
CEW-253X253
CEW-WP150
30x2 mm
30x2 mm
CEW-302X302
CEW-WP115
Product
Characteristics
Ref. to order separately
Safety light and warning sound Ignition starts when pressing 2 keys simultaneously
Electronic ignitor
CEW-EI
Minimum of 5000 welds Delivered with 1.8 m lead and Type C charger
Cross connection
Used to close the mold Unique handle clamp for all configurations Handle clamps
CEW-HC
Gloveasy: user-friendly to operate with gloves Ergonomic Heat resistance Self contained welding material with copper oxide and aluminium Safer transportation and storage
Welding powder
Graphic mold
CEW-WPXXX
Available in 65 g, 90 g, 115 g, 150 g, 200 g ie : CEW-WP150 (welding powder 150 g) Delivered with metal plate indicating the quantity of powder required (from 65 to 200 g) Part number to be defined according to customer needs
CEW-XXXXXXX
ie : CEW-050T050 (T connection for 2 cables of 50 mm2) Parallel connection
Grounding and short circuiting equipment
Primary conductor in mm2
Extensive configurations to meet your needs CAT’ADVANCED WELD offers a range of configurations to suit multiple applications: Connection type
End to End connection
116
Illustration
Primary conductor in mm2
Secondary conductor in mm2
Mold reference
Welding powder Reference
25
25
CEW-025E025
CEW-WP65
35
35
CEW-035E035
CEW-WP65
50
50
CEW-050E050
CEW-WP65
70
70
CEW-070E070
CEW-WP65
95
95
CEW-095E095
CEW-WP90
120
120
CEW-120E120
CEW-WP115
Substation equipment - NAM catalog | ©Sicame Group 2025
End to End connection for tape conductors T connection for tape conductors
Cross connection for tape conductors
Substation equipment - NAM catalog | ©Sicame Group 2025
117
Grounding and short circuiting equipment
Grounding and short circuiting equipment
Sicame North America sicame-north-america.com +1 866-457-4830 info@sicamena.com 1674 Frontenac Rd, Naperville IL 60563, United States of America
APR 2025 - GBS24DIS0352_SubstationEquipment_Catalogue_001 : Photos : Sicame
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