Abstract:
An insulating part for an electronic device includes a body having a metallized outer surface and a heat sink arranged within the body. The heat sink is thermally coupled to an electronic component and to the metallized outer surface, and may also be either electrically coupled or electrically isolated from the electronic component. The insulating part is preferably made of plastic by an injection-molding process, while the heat sink is preferably a metal block integrally formed within the insulating part.
Abstract:
An electrical circuit device having a ceramic substrate including a thick or thin film circuit on at least one surface thereof and an intersecting edge surface which may support termination leads anchored thereto and further retained by solder deposited upon an edge termination coating. The termination coating underlying the solder extends over the edge defined by the intersecting surfaces. The component resides in form of the substrate to include an indented area in the form of a notch or a groove which intersects both adjoining surfaces to provide a means of receiving edge termination material, so as to insure a continuous and non-interrupted deposit of the material to complete the electrical circuit between the leads and the respective circuit components of the circuit defined on the said one substrate surface.
Abstract:
An electrical building block incorporates an angular adapter in which the contact pins which extend on a side of the building block, which is vertical to the plane of installation, are connected by way of conductor elements with a connector tab which is vertical to the plane of installation. The conductor elements are designed to form, in one piece, also the connector tabs by means of metal strips which are attached in one plane to the contact side of the building block and surround, by means of solder eyelets, the corresponding contact pins of the building block. In particular, by means of bending at least a part of the metal strips alongside of the building block surface, at least along the side of two vertical side walls with regard to the installation plane, in a row of holes in the carrier plate which carries the building block there are connector tabs provided which can be anchored. A number of contact strips are stamped out from a metal strip in accordance with the number of contact pins of the building block and at their relative positions also solder eyelets are cut in such a way as to remain connected by way of interim bridges. The connected conductor strips are pushed onto the contact side of the building block simultaneously and the connector pins of the building block are soldered to the eyelets. The interim bridges are separated and the connector tabs are anchored in the openings of the carrier plate.
Abstract:
A sensor device includes a mounting member having fixation surfaces inside, and at least one electronic component directly or indirectly fixed to the fixation surfaces of the mounting member, and the mounting member constitutes a part of a casing for housing the electronic component. Further, the fixation surfaces are perpendicular to each other.
Abstract:
A base member that is a molded part on which pattern wiring is directly formed, includes a projection projecting from a base surface of the base member. The pattern wiring is laid over a top of the projection, and protrusions are molded on both sides of an area at the top of the projection where the pattern wiring passes.
Abstract:
Encapsulated PCB assembly (1) for electrical connection to a high- or medium-voltage power conductor in a power distribution network of a national grid, comprising a) a PCB (10), delimited by a peripheral edge (20) and comprising a high-tension pad (60, 62) on a voltage of at least one kilovolt, b) an electrically insulating encapsulation body (70) in surface contact with, and enveloping, the high-tension pad and at least a portion of the PCB edge adjacent to the high-tension pad, c) a shielding layer (80) on an external surface (90) of the encapsulation body and for being held on electrical ground or on a low voltage to shield at least a low-voltage portion of the PCB. The high-tension pad extends to the peripheral edge of the PCB.
Abstract:
The present disclosure relates an LCD display module and a mobile terminal, the LCD display module includes: a display screen and a flexible printed circuit led out from a top of the display screen, where the top of the display screen is provided with a recessed portion for accommodating a functional module of a mobile terminal, and the flexible printed circuit is provided with an opening at a position corresponding to the recessed portion.
Abstract:
The present invention relates to a substrate unit and a substrate assembly, and a camera module using the same. The present invention may comprise: a first substrate part having rigidity; a second substrate part stacked on one surface of the first substrate part and having flexibility; a third substrate part extending outwardly from the second substrate part and having flexibility; and a reinforcing part which is disposed at a portion where the edge portions of the first substrate part and the third substrate part meet, the reinforcing part having a recessed portion which is formed by recessing the first substrate part inwardly so as to prevent interference between the first substrate part and the third substrate part. The present invention is capable of resolving the interference between a rigid PCB and a flexible PCB and the tearing thereof by providing a reinforcing part in a connection portion of the rigid PCB and the flexible PCB.