1. Materials and Craftsmanship
Made from specially designed copper-aluminum composite materials, formed in one piece through stamping technology. Copper and aluminum components are connected via brazing, which offers high bonding strength and minimal thermal impact on the base materials, avoiding performance degradation caused by overheating.
2. Structural Design
The outlet part features a semi-circular arc structure, ensuring large-area contact and tight grip with the conductor to prevent creep. During installation, it automatically aligns the center position of the bare conductor, avoiding offset or twisting. The integrated component design eliminates the risk of part loss during installation.
1. Good Electrical Performance
The brazed joint exhibits excellent electrical and thermal conductivity, reducing contact resistance, minimizing power loss and heat generation, and ensuring reliable electrical contact performance, making it suitable for permanent connections.
2. Reliable Mechanical Strength
Formed by forging extruded aluminum rods, it has a dense texture and high strength, capable of withstanding certain tensile forces and mechanical stresses, enduring various harsh environments, and ensuring the safe operation of the power grid.
1. Electrical Connection
Mainly used to connect the outgoing terminals of substation busbar down-leads with electrical equipment (such as transformers, circuit breakers, instrument transformers, disconnectors, wall bushing insulators, etc.), achieving reliable electrical connections between equipment and ensuring the continuity and safety of power transmission.
2. Adaptability to High-Current Transmission
With the construction of large-capacity substations, the cross-section of main conductors continues to increase. The SSYG double-conductor brazed compression-type equipment clamp is suitable for connecting double conductors composed of two ordinary steel-core aluminum stranded wires with large cross-sections, which can increase transmission capacity and meet the requirements of high-current transmission.
Model | Applicablewire models | All size unit are mm | ||||||
d | D | L1 | L | L2 | A | B | ||
SSY(G)-185/30-120 | LGJ-185/25~30 | 20.5 | 32 | 100 | 120 | 85 | 80 | 12 |
SSY(G)-185/30-200 | 20.5 | 32 | 200 | 85 | 80 | 12 | ||
SSY(G)-185/30-400 | 20.5 | 32 | 400 | 85 | 80 | 12 | ||
SSY(G)-240/40-120 | LGJ-240/30~40 | 23 | 36 | 120 | 120 | 85 | 80 | 14 |
SSY(G)-240/40-200 | 23 | 36 | 200 | 85 | 80 | 14 | ||
SSY(G)-240/40-400 | 23 | 36 | 400 | 85 | 80 | 14 | ||
SSY(G)-300/40-120 | LGJ-300/25-40 | 25.5 | 40 | 120 | 105 | 100 | 16 | |
SSY(G)-300/40-200 | 25.5 | 40 | 200 | 105 | 100 | 16 | ||
SSY-300/40-400 | 25.5 | 40 | 400 | 105 | 100 | 16 | ||
SSY-400/35-120 | LGJ-400/20~35 | 28.5 | 45 | 130 | 120 | 105 | 100 | 16 |
SSY-400/35-200 | 28.5 | 45 | 200 | 105 | 100 | 16 | ||
SSY-400/35-400 | 28.5 | 45 | 400 | 105 | 100 | 16 | ||
SSY-500/45-120 | LGJ-500/35~45 | 31.5 | 52 | 140 | 120 | 130 | 125 | 20 |
SSY-500/45-200 | 31.5 | 52 | 200 | 130 | 125 | 20 | ||
SSY-500/45-400 | 31.5 | 52 | 400 | 130 | 125 | 20 | ||
SSY-630/80-120 | LGJ-630/55~80 | 36.5 | 60 | 160 | 120 | 130 | 125 | 20 |
SSY-630/80-200 | 36.5 | 60 | 200 | 130 | 125 | 20 | ||
SSY-630/80--400 | 36.5 | 60 | 400 | 130 | 125 | 20 | ||
SSY-800/100-200 | LGJ-800/55~100 | 40.5 | 65 | 180 | 200 | 155 | 150 | 22 |
SSY-800/100-400 | 40.5 | 65 | 400 | 155 | 150 | 22 | ||
All measurements provided are manually obtained and may contain slight tolerances. Final dimensions shall be subject to the physical product. |
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