Abstract:
A bracket is provided for supporting a current transformer on a printed circuit board including a first aperture and a second aperture. The bracket includes a base portion including first and second ends, the base portion extending therebetween; a first mounting portion extending laterally from the first end of the base portion to an end of the first mounting portion, the first mounting portion being structured to be coupled with the first aperture in the printed circuit board; and a second mounting portion extending laterally from the second end of the base portion to an end of the second mounting portion, the second mounting portion being structured to be coupled with the second aperture in the printed circuit board. The end of the first mounting portion forms a first tab and the end of the second mounting portion forms a second tab, which are structured to extend through and be coupled with the first and second apertures, respectively.
Abstract:
The invention has an object of providing a connector for connecting between a printed circuit board and a test device, capable of easily attaching and detaching the connector at low cost. The connector includes at least one conducting pin 28 that is protruded from a connector body, and at least one fixing pin 30 that is extended substantially in parallel with the conducting pin. The fixing pin 30 is longer than the conducting pin 28.
Abstract:
The present invention provides a down light include a thermally-conductive main body, and a substrate which is mounted on this main body through a plurality of screw, has slits which are formed on straight lines connecting the screw with each other in directions orthogonal to the straight lines, and has a plurality of LEDs arranged thereon.
Abstract:
A connector device for maintaining a desired spatial relationship for spatially and securely connecting to a platform, such as a circuit board, in an efficient manner. The connector device generally includes a body portion separated from the secondary device, a plurality of legs extending from the body portion for removably attaching the body portion to the secondary device, wherein the plurality of legs each include a foot member insertable within an opening of the secondary device for grasping the secondary device and at least one contact pin extending from the body portion to contact the secondary device on an opposite surface as the foot member. The contact pin maintains the separation between the body portion and the secondary device and includes a spring for providing a counter force against the secondary device with respect to the foot member.
Abstract:
A flexible circuit board with which positioning relative to a corresponding member is easy, a flexible circuit board positioning method for positioning the flexible circuit board at the corresponding member, a flexible circuit board positioning structure that positions the flexible circuit board at the corresponding member, a droplet ejection head that employs the flexible circuit board, and an image forming device that employs the droplet ejection head. A positioning hole in the flexible circuit board is configured with a broad portion at a leading end side with respect to a direction of movement at a time of positioning. Even if the positioning hole is offset in a lateral direction relative to a positioning pin, this offset is absorbed and the positioning pin can be accommodated in the positioning hole.
Abstract:
A method for making a supporting body (1) for the lock of a motor vehicle, including the steps of: forming an intermediate element (8) made of electrically insulating material provided with conductive paths (3); setting the intermediate element (8) inside a mold (23) for forming the supporting body (1); and injecting electrically insulating material in the mold (23) for carrying out co-molding of the supporting body (1). The intermediate element (8) and the conductive paths (3) are made independently, and the conductive paths (3) are fixed on opposite faces (9, 10) of the intermediate element (8) by constraint means (15, 16) of a mechanical type.
Abstract:
A bolster plate assembly for a printed circuit board includes a first structure member, a second structure member rotatably mounted to the first structure member, and a plurality of locking members. Two spaced, elongated sliding slots are defined in the first structure member. Two spaced, elongated sliding slots are defined in the second structure member. The locking members are slidably attached in the sliding slots of the first and second structure members.
Abstract:
According to one aspect of the invention, there is provided an electronic apparatus having a circuit board supporting structure, the circuit board supporting structure including: a casing including a first body and a second body, the first body having a first boss portion, the second body having a second boss portion; a jig including a cylindrical portion having, and a flange portion formed on an outer periphery, the cylindrical portion configured to slidably receive the first boss portion and the second boss portion in an inner peripheral wall; and a circuit board disposed in the casing. The first and second boss portions are configured to be fastened by a bolt member; the circuit board has a hole and a joining region provided around the hole, the hole configured to allow the cylindrical portion to penetrate therethrough; and the joining region is configured to be soldered to the flange portion.
Abstract:
The present disclosure relates to a sensor assembly, comprising a frame comprising structural supports, and housings configured to house an optical component; and a strut disposed between one of the structural supports and housings; wherein the struts are adapted to house conductors connecting the optical component to a circuit.
Abstract:
A flexible printed circuit board substrate includes an electrically conductive layer, an insulation layer, and a hook. The electrically conductive layer has a first surface and a second surface at an opposite side thereof to the first surface. The insulation layer having a third surface and a fourth surface at an opposite side thereof to the third surface. The third surface of the insulation layer combines with the second surface of the electrically conductive layer. A through hole is defined in the electrically conductive layer and the insulation layer extending from the first surface of the electrically conductive layer to the fourth surface of the insulation layer. The hook extends from the electrically conductive layer and passes through the through hole to protrude from the fourth surface of the insulation layer.