Abstract:
An electronic assembly is provided, which includes a circuit board, in which a solder pad is disposed at a position close to an end edge on at least one surface of the circuit board, and a depression is disposed between the solder pad and the end edge; and, an electronic element, including an insulating body and a plurality of terminals fixed to the insulating body, in which each of the terminals has a protruding portion and a soldering portion respectively corresponding to the depression and the solder pad. A method for manufacturing the electronic assembly is also provided.
Abstract:
A temporarily fixing device includes a frame-shaped structure member having a hole in its central part and a stepped portion around the hole; a board mounted on the stepped portion of the frame-shaped structure member; a simultaneously-pressing member into which a base pressing the board to the stepped portion and a pressing portion pressing at least one or more circuit components onto the board are unitized in its connection part; a shaft provided on the frame-shaped structure member so as to rotatably and vertically movably support the base of the simultaneously-pressing member; and a pressure member normally pressing the simultaneously-pressing member to the surface of the frame-shaped structure member.
Abstract:
A method for electrically connecting conductive thread (40) at any number of termination locations of a textile material (5) with an termination element preferably formed in a circuit board with the following steps being provided: placing the circuit board in a respectively formed recess of a support plate of a tool with the termination locations (122) of the circuit board (12) facing upwardly; arranging the material (5) on the circuit board (12) such that in the area of the termination locations of the circuit board (12) a termination location of the material (5) which is to be connected is being placed. Fixedly mounting, preferably by clamping the material adjacent to and on a side of the termination locations of the circuit board, preferably stretching the material (5) in longitudinal direction wherein the direction of the extension of the conductive threads. Fixedly clamping the material in an area opposite to the first clamping area and adjacent to the desired termination location. Soldering the blank conductive threads (40) to the termination locations of the circuit board (12).
Abstract:
There are provided a protection circuit module for a secondary battery and a battery pack having the same. In one embodiment, a protection circuit module includes a mounting substrate and at least one connecting member positioned at one side of the mounting substrate. The connecting member is provided with a first layer having a first surface, a second layer having a second surface opposite to the first surface, and at least one spacer that allows the first and second surfaces to be spaced apart from each other.
Abstract:
The inventive shock damping system for vibration sensitive surface mounted devices consists of an elastomeric material having conductive fiber material disposed between a printed circuit board (PCB) and a surface mounted device. Once disposed between PCB and surface mounted device, the elastomeric material, the PCB and the surface mounted device are compressed together with a component restraining system, to provide a secure electrical connection between one or more interconnect pads conductively attached to surface mounted device and the PCB. The elastomeric material allows signals and current to flow between surface mounted device and PCB without the use of any attached wires or leads while at the same time providing a system for damping any shocks or vibrations that may be transferred to surface mounted device through the PCB or through the protective component restraining system that encloses the device and the elastomeric material.
Abstract:
An electrical cable connector assembly includes a printed circuit board, a wire organizer comprising a body portion defining a plurality of through holes and a retention slot recessed from an outer surface thereof, and a cable including a plurality of wires protruding through the through holes of the wire organizer for being soldered to the corresponding conductive pads of the printed circuit board, respectively. The printed circuit board has an outer side edge, and a plurality of conductive pads arranged at opposite front and rear ends thereof. The wires The outer side edge of the printed circuit board is retained into the retention slot of the wire organizer for preventing the printed circuit board from moving relative to the wires.
Abstract:
A circuit board assembly includes a printed circuit board having a board substrate, a transmission member having a flexible substrate, and an elastic clamping frame. The elastic clamping frame is in the form of a single piece and includes upper and lower walls and press protrusions protruding from one of the upper and lower walls. A stack of a connecting portion of the flexible substrate and a connecting portion of the board substrate is tightly disposed between the upper and lower walls such that each of the conductive fingers of the transmission member and a corresponding one of the conductive fingers of the printed circuit board are pressed against each other by the pressing action of the press protrusions.
Abstract:
The present invention provides a flat cable fixing structure that includes a flexible flat cable (FFC) and a positioning element. The flexible flat cable is connected to a printed circuit board, and the positioning element is provided for fixing the flexible flat cable to the printed circuit board to achieve the effect of securely fixing the flexible flat cable onto the printed circuit board. When the flat cable fixing structure is applied to various types of electronic products, the invention can overcome the shortcomings of the prior art that the flat cable and the printed circuit board may be separately from each other easily by an external force, and the difficulty of aligning soldering points.
Abstract:
An electronic apparatus has a board; a first connection section which is mounted on the board; a component which is selectively mounted on the board; a flexible board which includes a second connection section and a reinforcing plate attached at a position of the second connection section; and a housing cover which includes a projection section which abuts the reinforcing plate in a state in which the second connection section of the flexible board is connected to the first connection section. The reinforcing plate has a length that allows the reinforcing plate to extend on the selectively mounted component in a state in which the second connection section of the flexible board is connected to the first connection section.
Abstract:
An electronic assembly having a large or massive electronic component mounted to a circuit substrate is stabilized against movement due to shock and/or vibration by an elastic dampening member disposed between the large electronic component and a clamping member that compresses the dampening member between the clamping member and the electronic component and urges opposite end walls of the dampening member against opposite sidewalls of the electronic component to securely grip the electronic component between the opposite end walls of the dampening member. The arrangement is effective for reducing and/or eliminating damage and subsequent failure due to exposure of the electronic assembly to shock and/or vibration.