Heat-Shrinkable Breakout CYG-RSI

Heat Shrinkable Breakouts are designed for insulation and sealing protection to the crotch section of cable phases. They are used for the voltage rated up to 36kV.

 

Specifications
Main technical performance

Item Unit Specifications Test method
Tensile strength MPa ≥11 ASTM D2671
elongation at break % ≥300 ASTM D2671
Aging at  120℃  168h   K1>0.8
K2>0.7
ASTM D2671
Volume resistance Ω · cm ≥10¹⁴ ASTM D2671
Water absorption   ≤0.5% ASTM D570

 

Size

Size As supplied (mm) After shrink(mm) Cable range(mm2)
Branch Boot Branch Boot
ID wall±30% Length ID wall±30% Length ID wall±30% Length ID wall±30% Length XLPE cable
RSI2-25/13 ≥12 1.3 41 ≥26 2 90 ≤3.5 2 43 ≤13 2.5 103 10-16
RSI2-35/18 ≥18 1.5 55 ≥36 2.3 125 ≤5 2.5 56 ≤16.5 3.2 133 25-50
RSI2-50/26 ≥26 1.5 50 ≥48 2.7 110 ≤6.5 3 60 ≤21 3.2 130 70-120
RSI2-60/38 ≥37 1.6 50 ≥60 2.6 115 ≤8.5 3 57 ≤27 3.2 130 150-240
RSI3-20/12 ≥12 1.2 63 ≥21 2.8 118 ≤4 2.2 64 ≤17 3.1 128 10-16
RSI3-30/18 ≥18 1.5 56 ≥30 2.5 136 ≤5.5 2.5 60 ≤20 3.1 148 25-50
RSI3-44/24 ≥24 1.5 65 ≥44 2.6 134 ≤7.5 2.5 68 ≤26.5 3.1 149 70-120
RSI3-70/32 ≥32 1.5 67 ≥71 2.3 140 ≤9.5 2.6 68 ≤33 3.4 158 150-240
RSI4-25/12 ≥12 1.3 48 ≥26 2 92 ≤3.5 1.8 50 ≤17 2.7 107 10-16
RSI4-45/18 ≥18 1 51 ≥47 2.2 108 ≤5.4 2 52 ≤21 3.0 120 25-50
RSI4-65/26 ≥26.5 1.1 50 ≥66 2 113 ≤8.4 2 57 ≤29 3.1 125 70-120
RSI4-80/32 ≥32.5 1.5 55 ≥81 2.5 125 ≤11 2.4 55 ≤37 3.5 136 150-240
RSI4-130/44 ≥44 1.5 57 ≥132 2.5 135 ≤13.5 2.6 61 ≤46 4 146 300-500
RSI5-35/13 ≥12 1.3 55 ≥35 2.6 115 ≤4 2.1 58.5 ≤21 3.2 128 10-16
RSI5-55/20 ≥18.5 1.3 66 ≥55 2.2 120 ≤4.5 2.2 66 ≤25 3.1 123 25-50
RSI5-75/25 ≥26 1.4 70 ≥80 2.5 120 ≤6.5 2.5 70 ≤32.5 3 140 70-120
RSI5-95/32 ≥32 1.7 75 ≥95 2.7 145 ≤9.5 2.9 75 ≤42.5 4 150 150-240
RSI5-120/45 ≥43 1.8 80 ≥126 2.7 140 ≤14.5 3 80 ≤56 3.7 152 300-500

frequently asked questions

All You Need to Know About Our Products and Solutions

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Cold shrink tubing is a type of tubing that expands when removed from its packaging and contracts to form a tight, secure seal around cables or connectors without the need for heat. It offers a quicker and safer installation process compared to traditional heat shrink tubing, which requires a heat source. Cold shrink tubing is ideal for high-voltage cable applications and is widely used in outdoor environments, such as in power cable terminations and splices, due to its ease of installation and reliable sealing properties.

Heat shrink tubing shrinks when heated, forming a tight, protective layer over wires and components. Non-shrink tubing, such as PVC and PTFE, does not shrink but offers similar protection against mechanical damage and environmental factors. Non-shrink tubing is often used in applications where no shrinkage is required, providing insulation and protection for cables, wires, and components in a variety of industries, including electrical, automotive, and industrial sectors.

Splice protection sleeves are designed to protect cable splices from environmental damage and mechanical stress. These sleeves provide a durable, insulated covering for the cable joint, preventing moisture, dust, and physical wear from affecting the splice. Splice protection is essential in industries like telecommunications, electrical power distribution, and automotive, where reliable cable connections are necessary to maintain system integrity and performance.

In the power cable industry, heat shrink tubing is critical for protecting high-voltage cables and ensuring safe terminations. It provides excellent insulation against electrical faults, moisture, and extreme temperatures. Dual wall and heavy-duty heat shrink tubing are often used to seal power cable joints and terminations, offering both mechanical strength and environmental protection. This ensures the integrity of the power supply system, reducing the risk of downtime and system failure.

Heat shrink tubing in general electronics provides insulation and protection for wires and cables, preventing short circuits, moisture damage, and abrasion. It is commonly used in the assembly of circuit boards, power supplies, and consumer electronics, offering a cost-effective solution for cable management. The tubing's ability to shrink tightly around components ensures a secure fit, providing longevity and reducing the risk of electrical failures due to external environmental factors.

In the automotive industry, heat shrink tubing is primarily used for electrical insulation, protecting wiring and cables from moisture, dirt, and mechanical wear. These tubes are designed to withstand high temperatures and harsh environments, ensuring a secure and long-lasting connection in vehicles. Automotive applications often require heat shrink tubing that offers flame retardancy and resistance to chemicals, making them an essential component for vehicle wiring, battery cables, and connectors.

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