Eaton 160A Fuse Holder, 3P-Pole for 135 x 715 mm, 690V

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₩297,277.50

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  • 2026년 8월 11일 부터 배송 준비 완료
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RS 제품 번호:
261-888
제조사 부품 번호:
EBV0033SV0
제조업체:
Eaton
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모두 선택

브랜드

Eaton

Product Type

Fuse Holder

Current Rating

160A

Voltage

690V

Number of Poles

3

Compatible Fuse Size

135 x 715 mm

Standards/Approvals

IEC/EN 60947-1 IEC 60947-3

Series

Bussmann

제외

COO (Country of Origin):
PL

Eaton Fuse Holder, 160A Current Rating, 690V Voltage - EBV0033SV0


This fuse holder is a three-pole device designed to accommodate NH-format fuses for use in industrial electrical systems. It provides a secure base for high-current protective elements and is intended for installation where three-phase protection and disconnection are required. The product is suitable for environments operating at elevated voltages and is constructed to conform with recognised switchgear standards.

Features & Benefits


• Rated for 160A continuous current handling
• Supports system voltages up to 690V enabling high-voltage use
• Accepts 135 x 715 mm NH fuse elements for high-current protection
• Three-pole configuration allows simultaneous phase switching
• Complies with IEC/EN 60947-1 and IEC 60947-3 for switchgear integration

**Applications**


• Suitable for three-phase distribution boards in industrial plants
• Ideal for coordination with NH fuses in motor control centres
• Used with high-current feeders in automation panels
• Can be used for protection in electrical distribution switchgear

What fuse format does it accept and how does that affect selection?


It is compatible with NH fuses sized 135 x 715 mm, so selection should match that physical form factor and the intended breaking capacity of the circuit.

How should it be specified for a 160A circuit installation?


Specify the base for 160A continuous current and ensure mating fuse and upstream protection are coordinated for thermal and short-circuit performance.

What is the pole configuration and why does that matter for three-phase systems?


The unit uses a three-pole arrangement, allowing all three phases to be isolated or switched simultaneously for safer maintenance and clearer fault segregation.

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