The present disclosure is related to a connecting cable assembly, an electrical connector assembly and a paddle card thereof. In particular, the present disclosure relates to an electrical connector assembly for transmitting data at high speed, and has an electrical connector and a paddle card being able to connect the electrical connector with a cable.
Cables are needed for electronic devices or electronic products to connect with each other for signal transmission. Because of the development of electronic technology, the speed of signal transmission is required faster and faster. The two ends of the cable usually have an electrical connector, respectively, to be inserted into the electronic devices or the electronic products. To conveniently connect the electrical connectors to the cable therebetween, a transmitting circuit board, which is also called a paddle card, is usually provided. The structure of the cable usually is constructed to form an impendence profile, and includes a shielding metallic braided layer. Wires of the cable are spread and arranged to solder with contacting pads, which are formed on a rear end of the paddle card. After the shielding metallic braided layer between the paddle card and the wires of the cable is removed, interference during high-speed signal transmission is likely to occur. Thus, the abovementioned drawbacks of the interference leave room for improvement in the art. In addition, the number of terminals of the electrical connector is increasing, thus a better design is proposed to easily and stably for assembling the paddle card.
One of the objectives of the present disclosure is to provide an electrical connector assembly and a paddle card thereof to solve the abovementioned problems.
In order to achieve the above objectives, according to one exemplary embodiment of the present disclosure, an electrical connector assembly includes an electrical connector and a paddle card is provided. The electrical connector has a terminal assembly configured as a plurality of first terminals and a plurality of second terminals. The terminal assembly is extended to a rear end of the electrical connector. The paddle card has a main body, a plurality of contacting pads, a plurality of first-group soldering pads, a plurality of second-group soldering pads and a grounding strip pad. The main body has a first surface, a second surface, a front edge, and a rear edge. The second surface and the first surface are opposite. The contacting pads are disposed on the main body and close to the front edge. The contacting pads are correspondingly connected to the terminal assembly. The first-group soldering pads are disposed on the first surface. The second-group soldering pads are disposed on the second surface. A pair of positioning concaved-portions is respectively formed at two sides of the paddle card and close to the rear edge. The grounding strip pad is formed across the paddle card. The grounding strip pad has two ends respectively extending to a surface of the pair of the positioning concaved-portions.
In order to achieve the above objectives, the present disclosure also provides a paddle card. The paddle card includes a main body, a plurality of contacting pads, a plurality of first-group soldering pads, a plurality of second-group soldering pads and a grounding strip pad. The main body has a first surface, a second surface, a front edge, and a rear edge. The second surface and the first surface are opposite. The contacting pads are disposed on the main body and close to the front edge. The first-group soldering pads are disposed on the first surface. The second-group soldering pads are disposed on the second surface. A pair of positioning concaved-portions is respectively formed on two sides of the paddle card and close to the rear edge. The grounding strip pad is formed across the paddle card. The grounding strip pad having two ends respectively extended to surfaces of the pair of positioning concaved-portions.
Another one of the objectives of the present disclosure is to provide a connecting cable assembly, which can save time of wire routing of the connecting cable assembly.
In order to achieve the above objectives, according to one exemplary embodiment of the present disclosure, a connecting cable assembly is provided, which includes a pair of electrical connectors, a first paddle card, a second paddle card, and a cable. The pair of electrical connectors respectively has a terminal assembly. The first paddle card is soldered to one of the pair of electrical connectors. The first paddle card has a first surface, and a second surface. The first paddle card has a plurality of first-group soldering pads, and a plurality of second-group soldering pads. The first-group soldering pads are disposed on the first surface of the first paddle card. The second-group soldering pads are disposed on the second surface of the first paddle card. The second paddle card is soldered to the other of the pair of electrical connectors. The second paddle card has a first surface, and a second surface. The second paddle card has a plurality of first-group soldering pads, and a plurality of second-group soldering pads. The first-group soldering pads are disposed on the first surface of the second paddle card. The second-group soldering pads are disposed on the second surface of the second paddle card. The cable has a first wire group and a second wire group. The first wire group has two ends respectively soldered to the first-group soldering pads of the first paddle card and the first-group soldering pads of the second paddle card. The second wire group has two ends respectively soldered to the second-group soldering pads of the first paddle card and the second-group soldering pads of the second paddle card. Pin positions and functions of the first-group soldering pads of the first paddle card are symmetrical to pin positions and functions of the first-group soldering pads of the second paddle card. Pin positions and functions of the second-group soldering pads of the first paddle card are symmetrical to pin positions and functions of the second-group soldering pads of the second paddle card.
Thus, the present disclosure has advantages as follows. The electrical connector assembly and the paddle card can help the electrical connector assembly to be stably assembled with the paddle card, and the design of the paddle card helps the electrical connector assembly for conveniently and accurately achieves grounding and shielding. The connecting cable assembly is able to arrange the wires of the cable according to color and pin functions, to distribute in order as the first wire group and the second wire group. Since there is symmetrical and mapping relationship, it can save time for wire routing.
For further understanding of the present disclosure, reference is made to the following detailed description illustrating the embodiments and examples of the present disclosure. The description is for illustrative purpose only and is not intended to limit the scope of the claim.
The aforementioned illustrations and following detailed descriptions are exemplary for the purpose of further explaining the scope of the present disclosure. Other objectives and advantages related to the present disclosure will be illustrated in the subsequent descriptions and appended drawings.
Reference is made to
The electrical connector 10 has a terminal assembly 12 which is configured as a plurality of first terminals 12a and second terminals 12b. The terminal assembly 12 is extended to a rear end of the electrical connector 10. The electrical connector 10 in this embodiment is illustrated with a TYPE-C USB as an example, but it is not limited thereto.
Reference is made to
The first wire group 21 of the cable 20 is correspondingly connected to the first-group soldering pads 35. The second wire group 22 of the cable 20 is correspondingly connected to the second-group soldering pads 36. The terminal assembly 12 is correspondingly connected to the contacting pads 33.
One characteristic of this embodiment is that, the electrical connector 10 adapts SMT Surface-mount technology. Ends of the first terminal 12a and end of the second terminals 12b are arranged in the same plane, that is, coplanar. The contacting pads 33 are formed on the first surface 31 of the paddle card 30. Comparing with the splint soldering manner, this embodiment is beneficial to increase the yield rate and improve the productivity.
In this embodiment, the contacting pads 33 are configured as a first-row contacting pads 33a and a second-row contacting pads 33a. Pins of the first terminal 12a are correspondingly connected to the first-row contacting pads 33a. Pins of the second terminal 12b are correspondingly connected to the second-row contacting pads 33b. The first-row contacting pads 33a and the second-row contacting pads 33b are staggered to each other, not aligned. In this embodiment, the pins of the terminal assembly 12 are arranged in two rows and staggered, which are beneficial to check the soldering condition of terminals.
The paddle card 30 further has a pair of position holes 39. The electrical connector 10 has a pair of fixing legs 14. The pair of fixing legs 14 is correspondingly inserted into the pair of position holes 39. The position holes 39 are respectively disposed at two sides of the second-row contacting pads 33b. The fixing legs 14 can make the electrical connector 10 to be stably fixed to the paddle card 30.
Another characteristic of this embodiment is that the grounding strip pad 38 is formed across the second surface 32 of the paddle card 30 in a direction parallel to the rear edge 302. In addition, two ends of the grounding strip pad 38 respectively extend to the surface of the pair of positioning concaved-portions 303, and partially extend to the first surface 31 of the paddle card 30. In this embodiment, the positioning concaved-portion 303 is U-shaped, and is concaved from a side edge of the paddle card 30. A width of the grounding strip pad 38 is substantially equal to a maximum width of the positioning concaved-portion 303. The grounding strip pad 38 of this embodiment is not only convenient for the wires of the cable 20 being grounded, but also capable of connecting to a shielding element (not shown) on a periphery of the cable 20 for providing a shielding function. The positioning concaved-portion 303 can be used to receive a hot bar for positioning the paddle card 30. The paddle card 30 of this embodiment can be applied in automatic soldering compatibly with a flat-type or round-type cable 20.
A supplementary noted is that, the first-group soldering pads 35 are formed on the first surface 31 of the paddle card 30, and arranged between the pair of positioning concaved-portions 303. The second-group soldering pads 36 are formed on the second surface 32 of the paddle card 30. The first-group soldering pads 35 include a ground soldering pad 35g. The ground soldering pad 35g is close to one of the positioning concaved-portions 303 and is connected to the grounding strip pad 38. As shown in
As shown in
Reference is made to
Reference is made to
Reference is made to
Reference is made to
In this embodiment, the electrical connector assembly at the right side is similar to the electrical connector assembly at the left side, and it includes the electrical connector 10 and the second paddle card 30′. The second paddle card 30′ has the first-group soldering pads 35, and the second-group soldering pads 36. The first-group soldering pads 35 are formed on the first surface 31 of the second paddle card 30′. The second-group soldering pads 36 are formed on the second surface 32 of the second paddle card 30′.
Reference is made to
One characteristic of the present disclosure is that the circuit layout of the first paddle card 30 is symmetrical to the circuit layout of the second paddle card 30′. To be more specific, the pads of the first paddle card 30 and the second paddle card 30′ and connecting with the cable 20 are symmetrical to each other along a direction perpendicular to the plugging direction of the electrical connector 10, and have a one by one mapping relationships. The pin locations and functions of the first-group soldering pads 35 of the first paddle card 30 are symmetrical to signal pins with positions of the first-group soldering pads 35 of the second paddle card 30′. The pin locations and functions of the second-group soldering pads 36 of the first paddle card 30 are symmetrical to signal pins with positions of the second-group soldering pads 36 of the second paddle card 30′.
Reference is made to
The effects of the present disclosure are that the electrical connector assembly and the paddle card can help the electrical connector assembly 10 to be stably assembled with the paddle card 30, and the design of the paddle card 30 helps the electrical connector assembly for conveniently and accurately achieve grounding and shielding.
Since the pin locations and functions of the first-group soldering pads 35 of the first paddle card 30 are symmetrical to the pin locations and functions of the first-group soldering pads 35 of the second paddle card 30′. In addition, the pin locations and functions of the second-group soldering pads 36 of the first paddle card 30 are symmetrical to the pin locations and functions of the second-group soldering pads 36 of the second paddle card 30′. The wires (21, 22) of the cable 20 are arranged according to color and pin functions in the present disclosure, to be distributed in order as the first wire group 21 and the second wire group 22. Due to the symmetrical and mapping relationship, extra time for wire routing can be saved.
Reference is made to
As shown in
Reference is made to
It is worth noting that, concerning the electrical connector 10 of present disclosure, the sleeve portion 131 of the housing assembly 13 can be integrated into one piece to form a seamless sleeve with higher structural strength, so as to increase the supporting characteristic and protective function of the electrical connector 10.
More specifically, as shown in
Reference is made to
The electrical connector 10 of the present disclosure further has two fixing legs 14, which are extended vertically from two sides of the shielding portion 132 of the housing assembly 13. In other words, the two fixing legs 14 are extended toward the paddle card 30. The paddle card 30 is formed with a pair of position holes 39 corresponding to positions of the fixing legs 14. When the first soldering portion 121a and the second soldering portion 121b of the electrical connector 10 are disposed on the paddle card 30 for soldering, the fixing legs 14 are inserted into the position holes 39, so as to help to fix the electrical connector 10 being stably connected to the paddle card 30.
The terminal assembly 12 of the electrical connector 10 has soldering parts and electrical connecting parts, the soldering parts and electrical connecting parts are respectively exposed at two opposite outer sides of the insulated module 15. In addition, the housing assembly 13 has at least one inspect window 130, which can used to observe the soldering conditions of the soldering parts and the paddle card 30, so as to review the soldering condition of the electrical connector 10 and the paddle card 30 to increase the soldering yield rate.
The descriptions illustrated supra set forth simply the preferred embodiments of the present disclosure; however, the characteristics of the present disclosure are by no means restricted thereto. All changes, alterations, or modifications conveniently considered by those skilled in the art are deemed to be encompassed within the scope of the present disclosure delineated by the following claims.
Number | Date | Country | Kind |
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106208601 | Jun 2017 | TW | national |
106208602 | Jun 2017 | TW | national |
106208603 | Jun 2017 | TW | national |