Abstract:
According to the configuration and the manufacturing method of forming a moisture proof agent on both surfaces of a circuit substrate after soldering a capacitor connection pin in a vertical direction to the circuit substrate, and electrically connecting the capacitor so as to be in a perpendicular direction to the length direction of the capacitor connection pin at the upper space of the circuit substrate, the possibility of the moisture proof agent attaching to the capacitor is eliminated, the productivity enhances since the moisture proof agent can be easily formed on both surfaces of the circuit substrate, and a capacitor unit of miniaturized and low height configuration is realized since the capacitor is mounted in the horizontal direction in the upper space with respect to the circuit substrate.
Abstract:
The invention relates to an exterior door handle, particularly for vehicles, and to a method for the production thereof. The exterior handle comprises a movable handle in the form of an at least regionally hollow housing, in which electronic components (31) can be accommodated. Furthermore, a printed circuit board (30) is provided, which is used to accommodate at least some of the electronic components (31). Furthermore, a Hall element (20), which is to be arranged in a predefined location in the handle, is provided in the handle. According to the invention, the printed circuit board (30) is constructed in a rigid and flat manner and a separate holder (10) is provided. Said holder (10) carries the Hall element (20) and holds it in the predefined position thereof in the interior of the handle. The position is spaced from the printed circuit board (30).
Abstract:
The invention relates to an electrical circuit assembly (1), particularly for a control device of a motor vehicle, having a first circuit board (2), at least one second circuit board (3) and at least one holder (4) for holding the second circuit board (3) on the first circuit board (2), producing an electrical contact (6) between the first (2) and the second (3) circuit boards. According to the invention, the second circuit board (3) is preassembled on the holder (4) and the preassembled unit (5), comprising the second circuit board (3) and holder (4), is connected to the first circuit board (2), wherein the holder (4) and the second circuit board (3) are arranged crosswise, particularly at a right angle, to the first circuit board (2). The invention furthermore relates to a control device and to a method for producing an electrical circuit assembly (1).
Abstract:
The invention relates to an arrangement for cooling at least one electrical and/or electronic component and/or group of electrical/electronic components by means of a cooling body. The cooling body demonstrates at least one recess into which the electrical/electronic component and/or the group of electrical/electronic components to be cooled can be inserted. Introduced into the recess of the cooling body is a medium, which nearly completely surrounds the at least one electrical/electronic component and/or the group of electrical/electronic components in their state of insertion into the recess.
Abstract:
This invention relates to a dewatering device for dewatering a material web (5), particularly a tissue web, in a paper machine where the dewatering device is placed after a forming unit (16) and before a thermal drying device (11). The dewatering device consists of a press roll (1) with a press belt (3) running round it. Here, the material web (5) is carried into the dewatering device either on a water-absorbing belt (4) or on a wire (10). The water-absorbing belt (4) is placed in the dewatering device between the material web (5) and the press belt (3). This invention also relates to a dewatering process performed with the dewatering device.
Abstract:
A junction structure and a joining method of substrates are provided that stably can join the substrates and achieve high workability during joining. A second substrate 2 to be joined with solder to a first substrate 1 is bent with elasticity generated by a bending portion 9, and first joints 5 on the first substrate 1 and second joints 6 on the second substrate 2 are joined with solder in a state in which the first substrate 1 is brought into contact with, in a direction that increases the bending angle of the bending portion 9, a part where the joints 6 are formed on the second substrate 2.
Abstract:
A brace for a circuit board vertically mounted on a motherboard includes a first attachment member capable of attaching to an edge of the circuit board distal from the motherboard; a second attachment member capable of attaching to a side edge of the motherboard; and a rigid support connecting the first attachment member and the second attachment member. The rigid support is shaped such that the circuit board is held substantially perpendicular to the motherboard when the brace is attached. An interference minimization device for minimizing the interference of a circuit board vertically mounted on a motherboard includes an attachment member capable of attaching to the circuit board at an end distal from the motherboard; a mating wall that is substantially parallel to the circuit board and abuts the circuit board when the interference minimization device is attached to the circuit board; and a tapered wall that widens from the distal end of the circuit board towards the motherboard.
Abstract:
An electronic device includes a housing, a circuit board, a plurality of flexible holders, and a plurality of microphones. The housing includes a plurality of wall portions, a plurality of storage spaces encircled by the wall portions, and a plurality of acoustic openings connected to the storage spaces. The flexible holders are disposed in the storage spaces. Each of the flexible holders comprises a plurality of surfaces and at least one rib provided on the surfaces. The microphones are mounted on the circuit board and disposed in the flexible holders.
Abstract:
An electronic apparatus has an electronic component and a pin mount. The electronic component has a working surface and two pins protruding from the working surface and each pin being bent to form an L-shape with a proximal part and a distal part. The pin mount has a flat bottom, a rear, two through holes and two communicating recesses. The through holes are defined through the pin mount in parallel, are formed from the front to the rear and receiving the proximal parts of the pins. The communicating recesses are formed in parallel in the front from the through holes toward the bottom of the pin mount, communicate respectively with the through holes and receiving the distal parts of the pins. The pin mount immobilizes the electronic component to prevent the pins from being detached from the electronic component or the PCB to retain the lifetime of the pins.
Abstract:
A cable routing device for installation on a post of a computing system board, includes a tube shaped main body having a hollow inner cavity. The main body includes a lower generally cylindrical portion having a first inner diameter sized to achieve a clearance fit over the post, and a flexible upper portion having a general shape of a truncated cone when in an unflexed condition, the flexible upper portion having slits arranged approximately opposite to each other thereby defining two sides to the flexible upper portion, the flexible upper portion having a second inner diameter proximate to a top of the flexible upper portion. When the flexible upper portion is in the unflexed condition, the second inner diameter is smaller than the first inner diameter and smaller than an effective diameter of the post, and when the two sides are flexed in an outward direction the device achieves a clearance fit over the post. The device further includes a cable clip molded to the main body, and configured to retain a plurality of cables.