Abstract:
An electrical device and electrical compressor. The electrical device (102) comprises an electrical circuit (104) comprising a metal substrate (202), a layer of dielectric material (206) extending over the metal substrate (202), and a metal strip (208) extending over the layer of dielectric material (206). It further comprises a linking conductive part (218) intended to be connected to an electrical ground (106) and having a first contact end (220) intended to be pressed against the metal strip (208), and a pushing device (224) intended to take a first position, called the closed position, in which the pushing device (224) presses against a support portion (226) of the linking conductive part (218) so as to press the first contact end (220) against the metal strip (208), the support portion (226) being located away from the first contact end (220), and a second position, called the open position, in which the pushing device (224) allows the first contact end (220) to be separated from the metal strip (208).
Abstract:
There is provided a stacked-type multilayer ceramic electronic component including: a ceramic body, a plurality of first and second internal, and first and second external electrodes formed on both surfaces of the ceramic element opposing one another; and first and second metal frames disposed to face one another and allowing the first and second external electrodes of the ceramic body to be attached thereto, respectively, wherein two or more ceramic bodies are attached between the first and second metal frames in a length direction of the first and second metal frames with an interval therebetween, and the respective ceramic bodies have different levels of capacitance.
Abstract:
Electronic devices may be provided with electronic components and electrical connectors coupled between the electronic components. A connector may be formed in a small gap between the electronic components. The connector may be a thin sheet of flexible conductive material with a conductive adhesive on one surface. The connector may be installed between the components using an applicator that is attached to the connector. The applicator may be a pull-tab liner having a first surface that is tacky and a second opposing surface that is non-stick. The applicator may have an extended portion that can be held by a technician while installing the connector. The connector may be installed by inserting the connector and applicator between the components, pinching the components against the connector and applicator, and removing the applicator by pulling the extended portion to peel the applicator from the connector.
Abstract:
The present invention is a conductive isolator including a damping structure, a conductive bridge component positioned within the damping structure, axial contact points between the damping structure and the conductive bridge component and radial contact points between the damping structure and the conductive bridge component.
Abstract:
A battery pack including a battery cell having an electrode assembly of a cathode/separator/anode structure mounted in a battery case together with an electrolyte in a sealed state, and a protection circuit module (PCM) electrically connected to the battery cell. The PCM includes a protection circuit board (PCB) electrically connected to the battery cell, the PCB being provided on a region where a circuit is connected with a conductive pattern including a fusing part, having relatively high resistance, configured to fuse itself for interrupting the flow of current when a large amount of current is conducted.
Abstract:
According to one embodiment, an electronic apparatus includes a substrate with a plurality of conductors, a component with a plurality of first terminals, and a deformation suppressing member attached to the substrate. The first terminals of the component are arranged in a first direction and connected to the conductors. When a certain bending deformation occurs in the substrate, the deformation suppressing member is configured to convert the certain bending deformation into a bending deformation in a direction perpendicular with the first direction.
Abstract:
A power chain consisting of a chain comprising links that are electrically conductive elements mounted on a circuit board in at least two layers and in such a way that the elements included in the power chain are assembled shifted and overlapping and in electrical contact with each other.
Abstract:
Buffer structures are provided that can be used to reduce a strain in a conformable electronic system that includes compliant components in electrical communication with more rigid device components. The buffer structures are disposed on, or at least partially embedded in, the conformable electronic system such that the buffer structures overlap with at least a portion of a junction region between a compliant component and a more rigid device component. The buffer structure can have a higher value of Young's modulus than an encapsulant of the conformable electronic system.
Abstract:
There is provided a stacked-type multilayer ceramic electronic component including: a ceramic body, a plurality of first and second internal, and first and second external electrodes formed on both surfaces of the ceramic element opposing one another; and first and second metal frames disposed to face one another and allowing the first and second external electrodes of the ceramic body to be attached thereto, respectively, wherein two or more ceramic bodies are attached between the first and second metal frames in a length direction of the first and second metal frames with an interval therebetween, and the respective ceramic bodies have different levels of capacitance.
Abstract:
A method for producing an electric contact sensor plate and for populating an electric or electronic module with the contact sensor plate in an automated manner is provided. An end piece of a metal foil strip is fed in a feeding step, in which the contact sensor plate is positioned on the electric or electronic module in a positioning step, and in which the contact sensor plate is fastened on the electric or electronic module in a fastening step. The method is characterized in that the contact sensor plate is produced by being severed from the foil strip in a severing step that follows the feeding step and precedes the positioning step.