1. High-Quality Materials
Usually made of materials such as aluminum or copper, which have good electrical conductivity and corrosion resistance.
2. Reasonable Structural Design
It adopts a double-conductor compression structure, composed of a T-shaped base body, main line groove cover, T-shaped upper cover, etc. It can connect two conductors simultaneously. The hydraulic crimping ensures a tight connection between the conductors and the clamp, with a large contact area, low DC resistance, and excellent current-carrying performance.
3. Strong Grip Strength
It can meet a certain proportion of the stranded wire’s calculated breaking force, providing a large grip on the conductors to ensure connection stability and prevent conductor loosening during operation.
1. Reliable Connection
The hydraulic crimping method ensures a tight connection between the clamp and the conductor, effectively avoiding issues such as heating and arcing caused by looseness. This results in high operational reliability and reduces the failure rate caused by poor contact.
2. Stable Electrical Performance
With low and stable contact resistance, it maintains good electrical performance during long-term operation, reducing power loss and improving power transmission efficiency.
3. Low Maintenance Requirement
Due to its reliable connection and stable electrical performance, it is less prone to faults under normal operating conditions, thereby reducing the workload and cost of maintenance.
TYS type cable clamps are mainly used in overhead power lines or substations to lead down current branches in a "T" shape on the main line of busbars. They are suitable for connecting leads from main busbars or main circuits to electrical equipment and other circuits, especially in scenarios requiring connection of double conductors, and also for T-junctions when two overhead power lines intersect. By connecting two branch conductors to the main line in a T-shape, they achieve power distribution and transmission.
Model | Applicablewire models(mm) | All size unit are mm | ||||
ф | H | a | b | L | ||
TYS-2x150/120 | LGJ-150/25 | 18.4 | 125 | 100 | 12 | 120 |
TYS-2x185/120 | LGJ-185/45 | 21.0 | 125 | 100 | 12 | 120 |
TYS-2x240/120 | LGJ-240/30 | 23.0 | 125 | 100 | 12 | 120 |
TYS-2x300/120 | LGJ-300/40 | 25.5 | 125 | 100 | 12 | 120 |
TYS-2x400/120 | LGJ-400/50 | 29.0 | 145 | 125 | 12 | 120 |
TYS-2x500/120 | LGJ-500/45 | 32.0 | 145 | 125 | 16 | 120 |
TYS-2x240/200 | LGJ-240/30 | 23.0 | 125 | 100 | 12 | 200 |
TYS-2x300/200 | LGJ-300/40 | 25.5 | 125 | 100 | 12 | 200 |
TYS-2x400/200 | LGJ-400/50 | 29.0 | 145 | 125 | 12 | 200 |
TYS-2x500/200 | LGJ-500/45 | 32.0 | 145 | 125 | 16 | 200 |
TYS-2x630/200 | LGJ-630/45 | 36.0 | 175 | 150 | 16 | 200 |
TYS-2x240/400 | LGJ-240/30 | 23.0 | 125 | 100 | 12 | 400 |
TYS-2x300/400 | LGJ-300/40 | 25.5 | 125 | 100 | 12 | 400 |
TYS-2x400/400 | LGJ-400/50 | 29.0 | 145 | 125 | 12 | 400 |
TYS-2x500/400 | LGJ-500/45 | 32.0 | 145 | 125 | 16 | 400 |
TYS-2x630/400 | LGJ-630/45 | 36.0 | 175 | 150 | 16 | 400 |
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