Ruitai Type | IEC Type | Drawing Number | Dismeter D (mm) | Spacing H (mm) | Creepage Distance L (mm) | Size of Coupling (mm) | Mechanical Failing Load (KN) | Mechanical Routine Test (KN) | Power Frequency Withstand Voltage (DRY) (KV) | Power Frequency Withstand Voltage (WET) (KV) | Lighting lmpulse Withstand Voltage (KV) | lmpulse Withstand Voltage (p.u.) | Min Power Frequency Puncture Voltage (KV) | Radio Interference Voltage (10kV, 1MHz) (u V) | Corona Test (pin&cap)(KV) | Power Frequency Electric Arc Test | Net Weight Per Unit (KG) |
LXWP4-70 | U70BP/146 | 4 | 260 | 146 | 400 | 16 | 70 | 35 | 80 | 45 | 110 | 2.8 | 130 | ≤50 | 18/22 | 0.12s/20KA | 5 |
LXWP5-70 | U70BLP/146 | 4 | 280 | 146 | 450 | 16 | 70 | 35 | 85 | 50 | 125 | 2.8 | 130 | ≤50 | 18/22 | 0.12s/20KA | 5.5 |
LXWP6-70 | U7OBP/146 | 4 | 320 | 146 | 550 | 16 | 70 | 35 | 90 | 55 | 140 | 2.8 | 130 | ≤50 | 18/22 | 0.12s/20KA | 7.5 |
LXWP3-100 | U100BLP/146 | 4 | 260 | 146 | 400 | 16 | 100 | 50 | 80 | 45 | 110 | 2.8 | 130 | ≤50 | 18/22 | 0.12s/20KA | 5 |
LXWP4-100 | U10OBLP/146 | 4 | 280 | 146 | 450 | 16 | 100 | 50 | 85 | 50 | 125 | 2.8 | 130 | ≤50 | 18/22 | 0.12s/20KA | 5.5 |
LXWP6-100 | U100BP/146 | 4 | 320 | 146 | 550 | 16 | 100 | 50 | 90 | 55 | 140 | 2.8 | 130 | ≤50 | 18/22 | 0.12s/20KA | 7.5 |
LXWP3-120 | U120BLP/146 | 4 | 260 | 146 | 400 | 16 | 120 | 60 | 80 | 45 | 110 | 2.8 | 130 | ≤50 | 18/22 | 0.12s/20KA | 5 |
LXWP4-120 | U120BLP/146 | 4 | 280 | 146 | 450 | 16 | 120 | 60 | 85 | 50 | 125 | 2.8 | 130 | ≤50 | 18/22 | 0.12s/20KA | 5.5 |
LXWP6-120 | U120BP/146 | 4 | 320 | 146 | 550 | 16 | 120 | 60 | 90 | 55 | 140 | 2.8 | 130 | ≤50 | 18/22 | 0.12s/20KA | 7.5 |
LXWP3-160 | U160BSP/155 | 4 | 280 | 155 | 450 | 20 | 160 | 80 | 85 | 50 | 125 | 2.8 | 130 | ≤50 | 18/22 | 0.12s/20KA | 7 |
LXWP4-160 | U160BP/170 | 4 | 280 | 170 | 450 | 20 | 160 | 80 | 85 | 50 | 125 | 2.8 | 130 | ≤50 | 18/22 | 0.12s/20KA | 7.2 |
LXWP5-160 | U160BLP/170 | 4 | 320 | 170 | 550 | 20 | 160 | 80 | 90 | 55 | 140 | 2.8 | 130 | ≤50 | 18/22 | 0.12s/20KA | 9.2 |
LXWP6-160 | U160BP/155 | 4 | 320 | 155 | 550 | 20 | 160 | 80 | 90 | 55 | 140 | 2.8 | 130 | ≤50 | 18/22 | 0.12s/20KA | 9 |
LXWP7-160 | U160BSP/146 | 4 | 320 | 146 | 550 | 20 | 160 | 80 | 90 | 55 | 140 | 2.8 | 130 | ≤50 | 18/22 | 0.12s/20KA | 8.8 |
LXWP3-210 | U210BP/170 | 4 | 320 | 170 | 550 | 20 | 210 | 105 | 90 | 55 | 140 | 2.8 | 130 | ≤50 | 18/22 | 0.12s/20KA | 10 |
LXWP3-240 | U24OBP/170 | 5 | 320 | 170 | 550 | 24 | 240 | 120 | 90 | 55 | 140 | 2.8 | 130 | ≤50 | 18/22 | 0.12s/20KA | 10.5 |
LXWP4-240 | U240BP/170 | 5 | 320 | 170 | 550 | 20 | 240 | 120 | 90 | 55 | 140 | 2.8 | 130 | ≤50 | 18/22 | 0.12s/20KA | 10.5 |
LXWP-300 | U30OBP/195 | 6 | 390 | 195 | 710 | 24 | 300 | 150 | 95 | 60 | 150 | 2.8 | 130 | ≤50 | 18/22 | 0.12s/20KA | 14 |
LXWP3-300 | U300BP/195 | 6 | 380 | 195 | 635 | 24 | 300 | 150 | 95 | 60 | 150 | 2.8 | 130 | ≤50 | 18/22 | 0.12s/20KA | 14 |
LXWP-420 | U420BP/205 | 6 | 380 | 205 | 620 | 28 | 420 | 210 | 90 | 55 | 140 | 2.8 | 130 | ≤50 | 18/22 | 0.12s/20KA | 16.5 |
LXWP-550 | U550BP/240 | 6 | 380 | 240 | 650 | 32 | 550 | 275 | 95 | 55 | 145 | 2.8 | 130 | ≤50 | 18/22 | 0.12s/20KA | 20.5 |
LXWP1-550 | U550BP/240 | 6 | 380 | 240 | 710 | 32 | 550 | 275 | 95 | 60 | 145 | 2.8 | 130 | ≤50 | 18/22 | 0.12s/20KA | 20.5 |
LXWP-760 | U760BP/280 | 6 | 420 | 280 | 700 | 36 | 760 | 380 | 90 | 55 | 140 | 2.8 | 130 | ≤50 | 18/22 | 0.12s/20KA | 22 |
LXWP-840 | U840BP/300 | 6 | 420 | 300 | 710 | 40 | 840 | 420 | 95 | 60 | 145 | 2.8 | 130 | ≤50 | 18/22 | 0.12s/20KA | 24.5 |
Glass Suspension Disc Insulators offer several advantages:
1.Exceptional Dielectric Strength: They have high resistance to electric breakdown, making them ideal for high-voltage power transmission.
2.High Electrical Resistivity: They resist the flow of electric current, which is crucial for an insulator.
3.Low Thermal Expansion: They can withstand temperature changes without significant expansion or contraction.
4.Superior Tensile Strength: They can withstand high mechanical stresses, making them durable and reliable.
5.Transparency: The transparency of glass aids in quality control as any internal defects can be easily spotted.
6.Resistance to Sunlight: Unlike some materials, they do not heat up in sunlight, which helps maintain their performance.
7.Versatility: The number of discs can be adjusted based on the desired voltage, making them versatile for different voltage levels.