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蒙自U300BP/195D double-umbrella glass insulator

U300BP/170D is a double umbrella-shaped glass insulator for high-voltage transmission lines, suitable for areas with higher pollution levels and in compliance with IEC standards. Its mechanical failure load is 300kN, nominal diameter is 300mm, structural height is 195mm, and creepage distance is 450m.

类别:

蒙自Outerib Profile Glass Insulator

024-89550577

产品描述

IEC Type

Diameter

D(mm)

Spacing

H(mm)

Creepage

Distance

(mm)

Size of

Coupling

(mm)

Mechanical

Failing

Load(kN)

Mechanical

Routine

Test(kN)

Power Frequency

Withstand Voltage

(wet) (kV)

Lighting Impulse

Withstand

Voltage (kV)

Net Weight

Per Unit

(kg)

U70BP/146D280146450167035451206.3
U100BP/146D2801464501610050451206.3
U120BP/146D2801464501612060451206.3
U160BP/170D3001704502016080451308.4
U210BP/170D30017045020210105451309
U300BP/195D300195450243001505013013

Double-umbrella glass insulator is a high-performance insulation component designed for overhead power transmission systems, providing excellent electrical insulation, mechanical strength, and long-term operational stability. With its unique double-umbrella structure, it increases creepage distance and improves pollution resistance, making it suitable for high-voltage transmission lines in coastal areas, industrial environments, and regions with severe weather conditions.

Manufactured with high-quality glass materials and advanced production technology, the insulator offers strong resistance to electrical breakdown, aging, and environmental impacts. Its transparent structure allows easier visual inspection, helping maintenance teams quickly identify potential issues and improve power system reliability. The durable design also reduces replacement frequency and lowers long-term maintenance costs.

For power utilities and grid construction projects, double-umbrella glass insulator provides an effective solution to challenges such as insulation failure, contamination flashover, and unstable transmission performance. By ensuring safer and more efficient electricity delivery, it supports the development of modern energy infrastructure and reliable power networks.