Abstract:
An apparatus for grounding a chip may be provided. The apparatus may comprise a ground lid, a ground trace, a first substance, and a second substance. The first substance may be configured adhere the ground lid to the ground trace. The second substance may be configured to provide electrical conduction between the ground lid and the ground trace.
Abstract:
It is an object of the invention to provide a terminal box for a solar cell module in which a positive terminal and a negative terminal are electrically isolated from each other, an occurrence of a short circuit is reduced, and reliability is enhanced, and a solar cell module including the same. In order to achieve this object, a terminal box for a solar cell module contains terminals configured to derive an output from a solar cell panel to the outside, and includes a container and a lid body covering an aperture of the container. The container includes a first region in which a first terminal configured to connect a first output conductor of the solar cell panel is disposed, a second region in which a second terminal configured to connect a second output conductor of the solar cell panel is disposed, and a partitioning portion provided so as to partition the first region and the second region and including a groove on an aperture surface of the container. The lid body includes a projection contained in the groove.
Abstract:
A box includes a first cover and a second cover have engaging mechanisms which engage the one end of the first cover to the one end of the second cover, and have retaining mechanisms which retain the other end of the first cover to the other end of the second cover. The first cover and the second cover are fit to each other in a normal state when the engaging mechanisms are engaged with each other and the retaining mechanisms are retained normally. When an engagement between the engaging mechanisms is in an abnormal state, a projection abuts against at least the other of the one end of the first cover and the one end of the second cover so that a gap is formed and the interior component housed in the internal space can be seen through the gap.
Abstract:
An electric junction box 1 includes: a case 4; a tubular guide portion 5 projected from the case 4, and guiding a harness 6 out of the case 4. The guide portion 5 is divided to a pair of gutter-shaped portions 51, 52. Each of the gutter-shaped portions 51, 52 is composed of a bottom wall 53, 54 and a pair of vertical walls 55, 56 extended from both sides of the bottom wall 53, 54 in a circumferential direction Y2. An elastically deformable hinge 57 is provided between the gutter-shaped portion 52 and the case 4 and configured to allow the gutter-shaped portion 52 to be moved away from or close to the gutter-shaped portion 51. The vertical walls 55, 56 of the pair of gutter-shaped portions 51, 52 are overlapped with each other in a radial direction.
Abstract:
To minimize thermal influence when integrally forming the sealing member on a flexible wiring board, a sealing structure includes a housing, a flexible wiring board inserted therethrough, and a sealing member integrally formed with the flexible wiring board to airtightly seal a gap between the housing and the flexible wiring board, the flexible wiring board includes a base substrate made of an elastic material, an electrically conductive printed wiring layer formed on a surface of the base substrate, and a cover film covering a surface of the printed wiring layer, and the printed wiring layer which crosses the sealing member is formed as a plurality of divided print wiring layers at only a crossing region with the sealing member and its vicinity.
Abstract:
The disclosure herein provides for an electrical device housing that includes a protrusion, or bump, for securing a electrical ground wire to the housing. The housing may include a plurality of walls defining an interior space for housing the electrical device, including at least one side wall and a back wall orthogonal to the at least one side wall. The back wall may include an opening configured to allow access to the interior space of the housing. A protrusion may extend forward from the back wall into the interior space of the housing, and may include a mounting surface offset from the back wall in a direction toward the interior space of the housing, and a hole formed in the mounting surface for receiving a fastener to secure a ground wire to the housing.
Abstract:
Modular bucket assemblies enable selective configuration of switchgear compartments for conformance with selective levels of personnel accessibility to energized switchgear. The bucket assemblies can be configured to enable personnel access to energized compartments while service doors are open, such as for instrumentation compartments. Interiors and the front face of instrumentation compartment bucket assemblies are isolated from potential infiltration of hot arc gasses in the switchgear cabinet. Other compartments can be configured to enable personnel access to the front face of a fully closed door energized circuit breaker compartment by isolating the compartment door exterior and venting any hot arc gasses out of the compartment interior in a direction away from the front and other peripheral sides of the switchgear cabinet.
Abstract:
An emergency power supply for an electrical device that provides power sufficient to operate the emergency flotation system for a predetermined period of time after a malfunction of a primary power source. The emergency power supply includes at least one capacitor and a control circuit that are disposed in a housing that is sealed to prevent ingress of liquids. The emergency power supply remains functional even when it is partially submerged.
Abstract:
A signal adapter comprising an explosion proof housing, a circuit member disposed on an inside of the explosion proof housing, a signal input connector electrically connected to the circuit member, a signal output connector electrically connected to the circuit member, and a seal disposed on the inside of the explosion proof housing and around the circuit member, creating an explosion proof seal between the signal input connector and the signal output connector.
Abstract:
An exemplary system and method for providing differential adjustment of the height of a multilayer substrate in localized areas for improved Q-factor performance of RF devices is disclosed as comprising inter alia: a multilayer substrate (200); an RF component (210) embedded in the substrate (200); a surface mounted component (220); and an RF shield (260) disposed next to the surface mounted component (220), wherein the height of the shield (260) does not extend substantially beyond the height of the surface mounted component (220). Disclosed features and specifications may be variously controlled, configured, adapted or otherwise optionally modified to further improve or otherwise optimize Q, RF performance and/or material characteristics. Exemplary embodiments of the present invention representatively provide for high-performance, high-quality RF devices that may be readily incorporated with existing technologies for the improvement of frequency response, device package form factors, weights and/or other manufacturing, device or material performance metrics.