Abstract:
An electrical connecting device for use with a multiple layered circuit-containing device wherein at least two layers of the multiple layered circuit-containing device each contain a circuit including a plurality of circuit contacts to be electrically connected by the electrical connecting device. The electrical connecting device includes an upper longitudinal peripheral surface joined to a lower longitudinal peripheral surface by an intermediate longitudinal surface to form an elongated member which has a Z-shaped configuration in cross section and is formed from a plurality of Z-shaped connectors shaped from each other in a predetermined amount to effect a moire pattern when superimposed relative to the circuit contacts of at least one of the layers.
Abstract:
A visual display mounting assembly is provided wherein a substantially rectangular parallelopiped central body 18 of a display module 17 is sandwiched between a planar surface 29 of a printed circuit board 23 and a substantially planar chassis wall 15 having a rectangular opening 16 therein for a front viewing surface 19 of the display module. The chassis wall opening 16 is formed with two opposing planar edge portions 32 of the chassis wall and two opposing nonplanar edge portions 33 of the wall comprising bent portions of the wall projecting towards the module. Peripheral portions 34 of the front surface 19 of the display module are positioned in pressure contact with the planar edge portions 32, and the front surface 19 is positioned between the non-planar edge portions 33 of the chassis wall. The display module 17 is held in place by retaining twist tabs 24 fixing the circuit board to the chassis wall and thereby having the circuit board press the display module body against the chassis wall.
Abstract:
A semiconductor storage device including a board, an electronic component, and a holder. The board has a region with an opening. The electronic component includes a component body disposed in the opening and a lead protruding from the component body and connected to the board. The holder is disposed in the opening and supports the component body. The region includes first and second edges on either side of the opening, the first and second edges extending along a first direction and separated from each other in a second direction crossing the first direction. The holder includes a holder body at least partially formed in an annular shape and into which the component body is inserted, a first groove extending along the first direction and engaged with the first edge, and a second groove extending along the first direction and engaged with the second edge.
Abstract:
Assembly workability of an electric compressor to which an inverter circuit section and a filter circuit section are attached is improved. The inverter circuit section (3) includes an inverter control board (17), a sleeve assembly (18), and a power module (14). The inverter control board, the sleeve assembly, and the power module are integrated. The filter circuit section (4) includes a filter circuit board (66) and a support member (67). The filter circuit board (66) and the support member (67) are integrated. The inverter circuit section and the filter circuit section are structured to be capable of being stored each individually within an inverter storing section (8) from the same direction and detachably attached to the housing (2).
Abstract:
A heat sink component can include a body including a thermally conductive material that is electrically non-conductive. At least one first terminal can be formed over a surface of the body. At least one second terminal can be formed over the surface of the body. A terminal spacing distance can be defined along the surface between the first terminal and the second terminal. A ratio of a length of the surface to the terminal spacing distance can be greater than about 10. Additionally or alternatively, a ratio of the area of the at least one body surface to the total terminal area can be less than 1.2. A component assembly can include a device having a plurality of terminals exposed on a top surface, and the heat source terminal and the heat sink terminal of the heat sink component can be connected with respective terminals of the device.
Abstract:
An altitude increasing connector and the method for manufacturing the same for an electrical connection of a sensor element and a circuit substrate inside a portable electronic device, such that the sensor element is altitude increased, thereby an appropriate disposition altitude of the sensor element is adjusted, in order to ensure normal function of the sensor element, so that the yield of the portable electronic device is increased. The altitude increasing connector has a plurality of conductive terminals, each of which has a first welding pad for welding the sensor element and a second welding pad for welding the circuit substrate, wherein a distance between welding surfaces of both the first, second welding pads of each conductive terminal is fixed, such that a relative distance between electrical joints of both the sensor element and the circuit substrate is fixed.