Abstract:
A system for managing heat generated by electronic equipment in an electronic equipment enclosure is provided. The system includes a duct adapted to receive a first portion of the electronic equipment. The first portion of the electronic equipment includes an air intake opening. The duct forms a barrier between the first portion of the electronic equipment and a second portion of the electronic equipment. The second portion of the electronic equipment includes an air exhaust opening. The barrier separates cooled air entering the air intake opening and heated air exiting the air exhaust opening.
Abstract:
An industrial control panel is provided that comprises a zone enclosure unit and an equipment segregation unit. The zone enclosure unit has a back panel, a plurality of side panels, a top panel, a bottom panel, and a door to access the interior of the zone enclosure unit. The zone enclosure unit is adapted to contain a first set of electrical equipment. The equipment segregation unit may be mounted to the zone enclosure unit. The equipment segregation unit has a back panel, a plurality of side panels, a bottom panel, and a door to access the interior of the equipment segregation unit. The equipment segregation unit is adapted to contain a second set of electrical equipment. The first set of electrical equipment is capable of being electrically connected to the second set of electrical equipment.
Abstract:
Various implementations of insulation piercing connectors are disclosed. The insulation piercing connectors include a simple and efficient design for providing electrical tap connections to a power cable for voltage detection purposes. The insulation piercing connector includes at least a top housing and a bottom housing that come together to receive the power cable. Terminal contacts are housed internally within the insulation piercing connector, and the terminal contacts are positioned to pierce the power cable when the insulation piercing connector is assembled into an operational state.
Abstract:
A system for managing heat generated by electronic equipment in an electronic equipment enclosure is provided. The system includes a duct adapted to receive a first portion of the electronic equipment. The first portion of the electronic equipment includes an air intake opening. The duct forms a barrier between the first portion of the electronic equipment and a second portion of the electronic equipment. The second portion of the electronic equipment includes an air exhaust opening. The barrier separates cooled air entering the air intake opening and heated air exiting the air exhaust opening.
Abstract:
Various implementations of insulation piercing connectors are disclosed. The insulation piercing connectors include a simple and efficient design for providing electrical tap connections to a power cable for voltage detection purposes. The insulation piercing connector includes at least a top housing and a bottom housing that come together to receive the power cable. Terminal contacts are housed internally within the insulation piercing connector, and the terminal contacts are positioned to pierce the power cable when the insulation piercing connector is assembled into an operational state.
Abstract:
An industrial control panel is provided that comprises a zone enclosure unit and an equipment segregation unit. The zone enclosure unit has a back panel, a plurality of side panels, a top panel, a bottom panel, and a door to access the interior of the zone enclosure unit. The zone enclosure unit is adapted to contain a first set of electrical equipment. The equipment segregation unit may be mounted to the zone enclosure unit. The equipment segregation unit has a back panel, a plurality of side panels, a bottom panel, and a door to access the interior of the equipment segregation unit. The equipment segregation unit is adapted to contain a second set of electrical equipment. The first set of electrical equipment is capable of being electrically connected to the second set of electrical equipment.
Abstract:
Various implementations of insulation piercing connectors are disclosed. The insulation piercing connectors include a simple and efficient design for providing electrical tap connections to a power cable for voltage detection purposes. The insulation piercing connector includes at least a top housing and a bottom housing that come together to receive the power cable. Terminal contacts are housed internally within the insulation piercing connector, and the terminal contacts are positioned to pierce the power cable when the insulation piercing connector is assembled into an operational state.
Abstract:
Various implementations of insulation piercing connectors are disclosed. The insulation piercing connectors include a simple and efficient design for providing electrical tap connections to a power cable for voltage detection purposes. The insulation piercing connector includes at least a top housing and a bottom housing that come together to receive the power cable. Terminal contacts are housed internally within the insulation piercing connector, and the terminal contacts are positioned to pierce the power cable when the insulation piercing connector is assembled into an operational state.