Abstract:
Il s'agit de blinder électromagnétiquement une extrémité d'un câble électrique multifilaire (1a,1b). Pour cela une enveloppe (13) pourvue de particules magnétisées est disposée autour du câble.
Abstract:
The present invention deals with the development of light weight carbon foam from coal tar pitch as electromagnetic interference (EMI) shielding and thermal interface material for aerospace and aircraft systems protection. The carbon foam developed from mixing the MWCNTs in starting material in different weight fraction and also MWCNTs decorated on the carbon foam by chemical vapor deposition technique gives improved electromagnetic interference (EMI) shielding.
Abstract:
A connector with a sheet has a housing mated with another connector, a terminal secured to the housing and contacting another terminal on the other connector, and a sheet affixed to the housing. The sheet has a laminate structure which includes a soft magnetic layer having real parts of complex relative permeability at 100 MHz of from 20 to 45, and a conductive/dielectric layer having an electrical resistance of from 0.5 to 20 Ω•cm.
Abstract:
A connector for electrical cables includes a tubular housing of electrically conductive material, an inner housing of electrically insulating material, and a plurality of electrical contacts positioned in the inner housing. The electrical contacts are configured to be connected to a conductor of an electrical cable and include two sides, each side having a discontinuous contact positioning feature. Optionally, the inner housing includes a substantially hollow center wall having a plurality of wall reinforcement ribs. A terminated cable assembly includes the connector for electrical cables and an electrical cable electrically connected to the connector.
Abstract:
A communication cabling includes a shielding separator having an elongated center member extending along a dimensional length, and a plurality of elongated dividing members each extending along the dimensional length and extending from the elongated center member. The dividing members may have at least a portion being of an electrically conductive material and others may have conductive material layers adjacent thereto.
Abstract:
A connector plug terminates a communication cable having a plurality of conductors therein. The plug includes a conductor organizing sled, which includes a plurality of channels for separating conductive wires. The sled is formed of at least two materials, including a first material being a conductive material and a second material being a dielectric material. The first material may be a metal and the second material may be a plastic. In one embodiment, the first material is impregnated within at least a portion of the second material. In another embodiment, the first material is formed as a layer on an outer surface of at least a portion of the second material.
Abstract:
Particular embodiments described herein provide for a connector shield that can include a main body, a shield portion to shield electromagnetic radiation from a connector, and a support portion. The main body can be removably secured to the connector. In an example, the shield portion includes lossy material and the shield portion is not grounded. The connector can include connection lines and the connection lines are at least partially inside a cavity of the shield portion.
Abstract:
In an example, a connector port assembly for use in an electronic device is disclosed. The connector port assembly may include a connector port, a fastener assembly and a flexible ring. The fastener assembly may fasten the connector port to a casing of the electronic device through at least one resilient member. The flexible ring may be disposed around an outer surface of the connector port. The fastener assembly and flexible ring may provide bend angle for the connector port.
Abstract:
There is shown a shielding element (1) for a connector for contacting a counter-element (13) made from aluminium, comprising a sheet-shaped section (2), wherein a through-opening (3) is formed in the sheet-shaped section (2) and at least one contacting tab (4) is provided at the through-opening (3), said contacting tab (4) protruding from the shielding element (1), wherein the contacting tab (4) has a protruding sharp cutting edge (6) at a free end (5).A housing assembly (12) comprises at least one shielding element (1) according to any one of Claims 1 to 7, a counter-element (13)and a mounting element (14) that pushes the shielding element (1) onto the contact element (13). With these embodiments, a penetration of aluminium oxide layers is possible with little exertion of force.
Abstract:
배치가 자유롭고 공간 활용성이 뛰어난 리셉터클 커넥터가 개시된다. 본 발명의 일 양상에 따른 안테나 기능을 갖는 리셉터클 커넥터는 플러그 커넥터와 회로 기판을 전기적으로 연결하는 리셉터클 커넥터로서, 메탈 하우징, 컨택트 어셈블리, 세라믹 쉘을 포함한다. 메탈 하우징은 전면이 개방되고 내부가 빈 형상으로 이루어진다. 컨택트 어셈블리는 메탈 하우징의 내부에 설치되며 전기 신호를 전달하는 복수의 컨택트들을 구비한다. 세라믹 쉘은 하우징을 감싸는 형태로 결합된다. 세라믹 쉘의 상면에는 안테나 패턴이 형성된다.