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公开(公告)号:US20180219310A1
公开(公告)日:2018-08-02
申请号:US15417772
申请日:2017-01-27
CPC分类号: H01R12/52 , H01B11/1808 , H01B11/203 , H01R9/0515 , H01R12/53 , H01R12/596 , H01R12/598 , H01R13/025 , H01R13/6471 , H01R24/50 , H01R2103/00 , H05K1/111 , H05K1/145
摘要: In an electronic device having a compact form factor, such as a head mounted display (HMD) device, a space-saving harness using bundled or ribbonized strands of micro-coaxial (micro-coax) cable may be utilized to provide signal and/or power interconnects between EMI-generating peripheral components and other components in the device such as those populated on circuit boards. Discrete wires are included in the harness to provide shielding to adjacent micro-coax conductors which may carry high speed signals such as MIPI (Mobile Industry Processor Interface) differential signal pairs and provide power and ground return paths. The discrete wires are subjected to fabrication processes during assembly of the micro-coax harness so that their outer diameters substantially match that of components in the micro-coax cable to thereby facilitate connectorization or termination to the circuit boards and/or other components in the device. The matching outer diameters can also provide a consistent pitch (i.e., spacing between adjacent micro-coax cables and discrete wires) that may facilitate space-saving geometries for the harness, connector, and/or terminations.
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公开(公告)号:US20180138617A1
公开(公告)日:2018-05-17
申请号:US15351237
申请日:2016-11-14
CPC分类号: H01R12/91 , H01R12/721 , H01R12/78 , H04N13/344 , H04N2213/001 , H04N2213/008 , H05K1/0221 , H05K1/0295 , H05K1/11 , H05K3/361 , H05K2201/09272 , H05K2201/09381 , H05K2201/0939
摘要: A universal coupling is disclosed for electrically and mechanically connecting flexible printed circuit (FPC) components within asymmetric FPC modules. The universal coupling allows a first FPC component to be connected to a second FPC component in two or more different orientations. This allows identical FPC components to be used in two or more asymmetric FPC modules. This in turn allows a reduction in the number of parts and tooling required to fabricate the two or more asymmetric FPC modules, and a simplification of the fabrication process.
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公开(公告)号:US10283883B2
公开(公告)日:2019-05-07
申请号:US15417772
申请日:2017-01-27
IPC分类号: H01R12/59 , H01R12/52 , H01R13/02 , H01B11/18 , H05K1/11 , H05K1/14 , H01R24/50 , H01R103/00 , H01R12/79 , H01R12/77 , B60R16/02 , H01B7/00 , H01B11/20 , H01R9/05 , H01R12/53 , H01R13/6471
摘要: In an electronic device having a compact form factor, a space-saving harness using bundled or ribbonized strands of micro-coaxial (micro-coax) cable may be utilized to provide signal and/or power interconnects between EMI-generating peripheral components and other components in the device such as those populated on circuit boards. Discrete wires are included in the harness to provide shielding to adjacent micro-coax conductors which may carry high speed signals such as MIPI (Mobile Industry Processor Interface) differential signal pairs and provide power and ground return paths. The discrete wires are subjected to fabrication processes during assembly of the micro-coax harness so that their outer diameters substantially match that of components in the micro-coax cable to thereby facilitate connectorization or termination to the circuit boards and/or other components in the device. The matching outer diameters can also provide a consistent pitch that may facilitate space-saving geometries for the harness, connector, and/or terminations.
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公开(公告)号:US10038264B2
公开(公告)日:2018-07-31
申请号:US15351237
申请日:2016-11-14
CPC分类号: H01R12/91 , H01R12/721 , H01R12/78 , H04N13/344 , H04N2213/001 , H04N2213/008 , H05K1/0221 , H05K1/0295 , H05K1/11 , H05K3/361 , H05K2201/09272 , H05K2201/09381 , H05K2201/0939
摘要: A universal coupling is disclosed for electrically and mechanically connecting flexible printed circuit (FPC) components within asymmetric FPC modules. The universal coupling allows a first FPC component to be connected to a second FPC component in two or more different orientations. This allows identical FPC components to be used in two or more asymmetric FPC modules. This in turn allows a reduction in the number of parts and tooling required to fabricate the two or more asymmetric FPC modules, and a simplification of the fabrication process.
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