A relay layout with stronger heatsink paths near discharging relays cuts temperature rise and DC resistance in a compact disconnect assembly.
Latching means secure a movable supply module in the trip housing, allowing safe disconnection during electrical tests to prevent dielectric damage.
A ceramic isolating composite material protects electronic switch components from electrical discharge damage.
A cutout portion on the hanging wall expands clearance at the rotation tip end to enable full lid rotation.
Accessible terminals and LED indicators enable in-situ testing of sealed relays, eliminating removal-based diagnosis and reducing repair time.
A modular relay sub-assembly uses a split conductor design to enable interchangeable functionality modules within a shared housing.
A partition wall moves synchronously with the movable shaft to block debris from entering the contactor aperture.
Replacing corroding mechanical contacts with a Hall effect sensor and FET prevents unintended brake activation in conductive liquids.
A housing member guides a main body section to align terminal portions with spring-loaded fittings, preventing collision damage during assembly.
An insulative substrate integrates control elements and connection members on a battery module surface to simplify electrical assembly.
Coupling a permanent magnet to the actuator armature reduces magnetic flux, enabling smaller components while preventing saturation.
Zigzag fastening portions in a relay housing provide tool clearance without protruding, reducing size while maintaining current capacity.
Segmented lock pieces on a protective wall engage side wall slits during rotational fitting, preventing water ingress into cable connections.