








Fuji Electric BW32SAG 3-Pole Hydraulic Magnetic Circuit Breaker 30 A
This is a factory-new Fuji Electric BW32SAG hydraulic magnetic molded case circuit breaker, rated for 30 A, 3-Pole, and up to 690 VAC / 250 VDC. Designed for panel mounting, it’s built with screw terminals and offers reliable overload protection via its hydraulic-magnetic trip mechanism—ideal for industrial and automation control panels. 
Key Features
• Brand: Fuji Electric
• Model: BW32SAG, 3-Pole, 30 A
• Type: Hydraulic-Magnetic Molded Case Circuit Breaker (G-TWIN series)
• Voltage Rating: Up to 690 VAC / 250 VDC  
• Mounting: Panel mount with screw terminals 
• Frame Size: 32AF (compact form factor)  
• Condition: New (unused, original condition)
Applications
• Industrial power panels
• Motor starters and control circuits
• Automation cabinets and distribution boards
• Retrofit or OEM replacement parts
Why Hydraulic-Magnetic?
Hydraulic-magnetic breakers are known for precise tripping, resistance to nuisance trips, and consistency across voltage fluctuations, making them ideal for industrial environments.
This is a factory-new Fuji Electric BW32SAG hydraulic magnetic molded case circuit breaker, rated for 30 A, 3-Pole, and up to 690 VAC / 250 VDC. Designed for panel mounting, it’s built with screw terminals and offers reliable overload protection via its hydraulic-magnetic trip mechanism—ideal for industrial and automation control panels. 
Key Features
• Brand: Fuji Electric
• Model: BW32SAG, 3-Pole, 30 A
• Type: Hydraulic-Magnetic Molded Case Circuit Breaker (G-TWIN series)
• Voltage Rating: Up to 690 VAC / 250 VDC  
• Mounting: Panel mount with screw terminals 
• Frame Size: 32AF (compact form factor)  
• Condition: New (unused, original condition)
Applications
• Industrial power panels
• Motor starters and control circuits
• Automation cabinets and distribution boards
• Retrofit or OEM replacement parts
Why Hydraulic-Magnetic?
Hydraulic-magnetic breakers are known for precise tripping, resistance to nuisance trips, and consistency across voltage fluctuations, making them ideal for industrial environments.