The present invention relates generally to an electrical connector assembly and electrical connector system using the same, and more particularly to electrical connector assembly and electrical connector system with high speed signal connection structure.
An electrical connector system is disclosed in U.S. Pat. No. 9,011,177, issued on Apr. 21, 2015. The electrical connector system includes a printed circuit board mounted in the device, a chip mounted on the printed circuit board, a peripheral connector mounted around the device and an internal cable connector assembly connecting the peripheral connector with the chip. The cable connector assembly is electrically connected to the printed circuit board by means of perforation or extrusion mounting. However, the perforation installation requires further soldering to achieve electrical connection, and the extrusion installation requires a large installation space and a strong structural strength, so that the volume is large.
An improved electrical connector assembly is desired.
An object of the present invention is to provide an electrical connector assembly that is simple in structure, easy to install, and small in size.
To achieve the above-mentioned object, an electrical connector assembly used in an interior of an electronic device which includes an internal printed circuit board, a chip mounted on internal printed circuit board, internal conductive pads disposed close to the chip and electrically connected to the chip, and an interface connector away from the chip and electrically connected to the external electrical connector comprises a first connector electrically connected to the internal conductive pads and a cable connecting with the first connector, the cable being able to electrically connect to the interface connector, wherein the first connector includes first elastic terminals elastically contacting the internal conductive pads.
Another object of the present invention is to provide an electrical connector system that is simple in structure, easy to install, and small in size. To achieve this object, an electrical connector system includes an internal printed circuit board inside an electronic device, a chip mounted on internal printed circuit board, internal conductive pads disposed close to the chip and electrically connected to the chip, an interface connector away from the chip and electrically connected to the external electrical connector, and an electrical connector assembly electrically connecting with the internal conductive pads and the interface connector, the electrical connector assembly including a first connector electrically connecting to the internal conductive pads and a cable connecting with the first connector, the cable being able to electrically connect to the interface connector, wherein the first connector includes first elastic terminals elastically contacting the internal conductive pads.
Referring to
The electrical connector assembly 50 includes a first connector 51 electrically connected to the inner conductive pads 30 and a cable 52 connected at one end to the first connector 51. The cable 52 can be electrically connected to the interface connector 40. The first connector 51 includes first elastic terminals 510 that resiliently abuts the inner conductive pads 30. The first elastic terminals 510 are arranged in a row in the lateral direction. The first elastic terminals 510 include a first connecting portion 511 with a cable connector, a first connecting portion 512 extending obliquely downward from the first connecting portion 511 and a first contact portion 513 that is in contact with the inner conductive pads 30 and extends from the end of the first connecting portion 512. The cable 52 has a flat structure. The cable 52 includes a plurality of cores or wires 520 arranged in a row. The first elastic terminals 510 can be riveted or otherwise mechanically and electrically connected to the corresponding cores 520. The inner printed circuit board 10 is provided with an inner frame 31 disposed outside the inner conductive pads 30. The first connector 51 includes an inner holding member or holder 514 mating with the inner frame 31 to maintain the first elastic terminals 510 elastically against the inner conductive pads 30. The inner side of the inner holding member 514 is provided with a receiving groove 515 mating with the corresponding first elastic terminals 510. The height of the first connector 51 after being mounted on the internal printed circuit board 10 is less than or equal to the height of the chip 20. Therefore, it is not necessary to avoid the interior, such as the heat sink for the chip 20, and the chip 20 can be designed closer to further reducing the transmission distance of the high speed signal on the internal printed circuit board 10.
Referring to
Referring to
The electrical connector assembly 50 of the electrical connector system 100 of the present invention is electrically connected to the internal printed circuit board 10 by elastic abutment, thereby making the overall structure simple, convenient to connect, and small in size. In brief, the invention provides a connection system between two spaced pad areas on the main printed circuit board with a cable equipped with two connectors at two opposite ends wherein each connector includes resilient contacts mechanically and electrically connecting to the corresponding pads, respectively, in a detachable manner. Notably, the connector is essentially of a stationary and locked arrangement without necessity of frequent connecting/disconnecting. Therefore, the resilient latch 519, 539 of the first connector 51 and the second connector 53 are constantly retained in the corresponding locking holes 317, 617 of the inner frame 31 and the edge frame 61, respectively, without less possibility of withdrawal therefrom. Understandably, under rare situations, via assistance of a tool to deflect the resilient latch 519, 539, the resilient latch 519, 539 can be disengaged from the corresponding locking holes, 317, 617 so as to detach the first connector 51 and the second connector 53 from the corresponding inner frame 31 and the edge frame 61, respectively, for repairing consideration. In this embodiment, the inner frame 31 and the edge frame 61 have the corresponding deflectable board locks 319619 to lock into the corresponding through holes 109 in the printed circuit board 10 in a detachable or immovable manner. In an alternate embodiment, the inner frame 31 and the edge frame 61 may be eliminated so as to have the corresponding deflectable board lock directly formed on the first connector 51 and the second connector 53. In other words, the first connector and the second connector may be directly detachably attached upon the printed circuit board to have the corresponding resilient contacts electrically and mechanically connected to the corresponding pads, respectively, in a detachable manner, thus simplifying the corresponding structures. Therefore, the inner frame 31 may be deemed as a part of the first connector (unit) 51, and the edge frame 61 may be deemed as a part of the second connector (unit) 53 from a technical viewpoint, which may be eliminated, if the first connector 51 and the second connector 53 are modified with the increased height to compensate the height of the omitted inner/edge frame 31, 61 and with the corresponding board locks for locking to the printed circuit board while removing the resilient latches therefrom.
Number | Date | Country | Kind |
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201810839008.5 | Jul 2018 | CN | national |