The present invention relates to a cable connector assembly having an internal printed circuit board carrying a thermistor and a protective cover mounted on the printed circuit board and enclosing the thermistor.
U.S. Patent Application Publication No. 2016/0197500, published on Jul. 7, 2016, discloses a mobile terminal charger comprising a thermistor and a charger output protection circuit. Specifically shown is a cable connector assembly comprising: a mating unit; a cable; a printed circuit board (PCB) interconnected between the mating unit and the cable, the PCB carrying a thermistor; a metal shell enclosing the PCB, a rear of the mating unit, and a front of the cable; an insulative inner mold; and an insulative outer mold. The thermistor may adopt a positive temperature coefficient (PTC) resistor in series with another resistor in the charger.
China Patent No. 202632919, issued on Dec. 26, 2012, discloses a precision thermistor mounted on a PCB, comprising a resistor, a heat-conducting plate spaced from the resistor, and a packing cover. The resistor includes a heat-sensing part and a pair of electrodes. The packing cover encloses the heat-sensing part of the resistor and respective parts of the heat-conducting plate and the electrodes.
A cable connector assembly comprises: a mating unit; a cable; a printed circuit board (PCB) interconnected between the mating unit and the cable, the PCB carrying a thermistor; a protective cover mounted on the PCB and enclosing the thermistor; a metal shell enclosing the PCB, a rear of the mating unit, and a front of the cable; an insulative inner cover over-molding the PCB, the metal shell, the rear of the mating unit, and the front of the cable; and an insulative outer cover over-molding the inner cover.
Referring to
Referring to
The mating unit 2 or plug connector is of a reverse-symmetrical type capable of mating in two orientations. The mating unit 2 or plug connector includes two rows of rear soldering tails 21 and a pair of securing legs 22.
The protective cover 4 includes a fence and a top wall 43. The cover 4 may be rectangular or cylindrical. The fence has a pair of first side walls 41 and a pair of second side walls 42, which together with the top wall 43, enclose a receiving space 40. Each of the pair of second side walls 42 has an opening 421. A lateral dimension of the first side wall 41 is greater than a left-and-right width of the thermistor 11 and a longitudinal dimension of the second side wall 41 is greater than a front-and-back length of the thermistor 11. The first and second side walls 41 and 42 are each taller than a height of the thermistor 11.
The metal shell includes a first shell part 5 and a second shell part 6. The first shell part 5 includes an upper and lower main portions 51 having features 511, 512, and 513, a side portion 52 between the two main portions, a fastening portion 53 having a feature 531, and a linking portion 54. The second shell part 6 is similarly designed to include main portions 61 having features 611 and 612, curved side portion 62, fastening portion 63, and linking portion 64.
The insulative inner cover 7 has a first covering portion 71 and a second covering portion 72. The insulative outer cover 8 is tubular.
The cable connector assembly 100 is manufactured in a generally known way as to the mating unit 2, the cable 3, interconnecting the PCB 1 between the mating unit 2 and the cable 3, enclosing the metal shell, and over-molding the insulative inner and outer covers. As for mounting the thermistor 11 and the protective cover 4 to the PCB 1, it is generally straightforward except for otherwise indicated. Basically, the protective cover 4 so encloses the thermistor 11 in the receiving space 40 as to leave a gap for accommodating any expansion of the thermistor 11. Such gap does not exist if the thermistor 11 is buried by or embedded in the insulative inner cover 7.
The openings 421 on the pair of second side walls 42 in cooperation with the capacitor 12 enable a time-saving assembling operation during mounting the protective cover 4 to the PCB 1. The insulative outer cover 8 reinforces the insulative inner cover 7. In this embodiment, the protective cover 4 is specifically mounted upon the PCB 1 to enclose the thermistor 11. Anyhow, in an alternate design, if the metal shell can fully enclose the PCB 1 ideally, the inner cover 7 may not invade the gap between the metal shell and the PCB 1. Under such a situation, the protective cover 4 may be eliminated and the metal shell (5, 6) may provide the function of the protective cover 4 for the thermistor 11. In other words, a rigid structure which may cooperate with the PCB 1 to fully circumferentially surround the thermistor 11 for prevent the inner cover 7 from contacting the terminstor 11, is either a combination of the metal shell (5, 6) and the protective cover 4, or even a single metal shell in an ideal situation.
Referring to
Number | Date | Country | Kind |
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2016 1 1005348 | Nov 2016 | CN | national |
Number | Name | Date | Kind |
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9716350 | Taniguchi | Jul 2017 | B2 |
20080096429 | Mikolajczak | Apr 2008 | A1 |
20160197500 | Liang | Jul 2016 | A1 |
Number | Date | Country |
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202632919 | Dec 2012 | CN |
203491732 | Mar 2014 | CN |
205960251 | Feb 2017 | CN |
201717504 | May 2017 | TW |
Number | Date | Country | |
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20180138643 A1 | May 2018 | US |