H01H9/042

Encapsulation of components and a low energy circuit for hazardous locations

Embodiments of the disclosure provide an encapsulated compressor overload, an encapsulated compressor relay start, an encapsulated head pressure control switch and a wiring diagram for a circuit for air conditioning units which prevent gases from being ignited by means of encapsulating sparking components, use of solid-state switching devices, and/or wiring circuits in such a way that open contacts do not contain enough energy to produce a spark capable of igniting the atmosphere.

Explosion management display and methods thereof

Devices, systems, and methods for explosion resistance include an explosion-resistant enclosure and a lid assembly. The lid assembly includes a lid for enclosing an opening of the explosion-resistant enclosure, and a graphical display assembly for presenting visual information regarding the analysis equipment.

HAZARDOUS LOCATION COMPLIANT CIRCUIT PROTECTION DEVICES HAVING ENHANCED SAFETY INTELLIGENCE, SYSTEMS AND METHODS

Compliant electrical circuit protection devices are described for use in hazardous environments without presenting ignition risks for potentially explosive environmental conditions. Sensing features and systems may evaluate wiring limits and user selected settings for compatibility, detect loose connections and operating parameters to ensure safe operation of the device, and to intelligently diagnose and manage issues of concern for the circuit protection devices as well as the larger electrical power system.

Connector and power apparatus case shell

A connector for a case shell of a power apparatus includes a main body member. Two ends of the main body member are respectively connected to different members of the case shell, and the main body member is deformable; and the main body member is used to deform when an explosion occurs inside the case shell and the different members of the case shell connected by means of the main body member are disengaged from each other. The main body member of the connector can deform when devices inside the case shell explode and the different members of the case shell connected by means of the main body member are disengaged from each other, such that two members of the case shell connected by means of the main body member are slightly disengaged from each other to form a gap.