1. Field of the Invention
The present invention relates to a connector assembly, and more particularly to a signal transmitting structure of the connector assembly.
2. Description of Related Arts
It is known for a SAS (Serial Attached SCSI) External cable assembly to have a wiring arrangement that data signals are transmitted between a first cable end connector and a second cable end connector. In particular, the first connector comprises a first (upper) printed circuit board (PCB) and a second (lower) PCB, and the second connector comprises a third (upper) PCB and a fourth (lower) PCB. Data signals are transmitted straightforwardly between the second and the fourth PCBs and between the first and the third PCBs. Therefore, cable wires are soldered accordingly without cross-soldering, e.g., cable wires soldered to the second PCB of the first connector and to both the fourth and the third PCBs of the second connector.
The specification of SAS-3, revision of Apr. 23, 2012, showed a SAS Internal cable connector assembly comprising a first connector, a second connector, and a cable connecting the first connector to the second connector. The first connector comprises a first (upper) printed circuit board and a second (lower) printed circuit board. The second connector comprises a third (upper) printed circuit board and a fourth (lower) printed circuit board. The cable includes a plurality of signal wires for transmitting data signals and several control wires. The control wires between the first and the fourth printed circuit board are crossed from upper to lower; the control wires between the second and the third printed circuit board are crossed from lower to upper. The manufacturing process of soldering the crossed control wires is complicated.
U.S. Pat. No. 8,287,290, issued on Oct. 16, 2012, discloses an interface connector for electrically connecting a first circuit board to a second circuit board. The interface connector provides a bridge for electrical circuits associated with electrical components on the first board to connect with electrical circuits associated with electrical components on the second board.
An improved connector assembly is desired to offer advantages over the related art.
An object of the present invention is to provide a cable connector assembly easy for soldering cable wires thereof.
To achieve the above-mentioned object, a cable connector assembly comprises: a first connector comprising a first printed circuit board (PCB), a second PCB below the first PCB, and a connecting member disposed between and electrically connecting the first PCB and the second PCB; a second connector comprising a third PCB and a fourth PCB below the third PCB; a cable connecting the first connector to the second connector, the cable comprising a plurality of signal wires for transmitting data signals and a plurality of control wires for transmitting control signals, the control wires comprising a plurality of first control wires connecting the first and the third PCBs and a plurality of second control wires connecting the second and the fourth PCBs.
According to the present invention, the connector assembly avoids the crossed soldering to simplify the manufacture procedure. It is more convenient because of using a flat cable instead of the core wires which are soldered separately.
Other objects, advantages and novel features of the invention will become more apparent from the following detailed description when taken in conjunction with the accompanying drawings.
Reference will now be made in detail to a preferred embodiment of the present invention.
Referring to
Referring to
The first printed circuit board 10 comprises a first upper signal terminal 101 on an upper surface and a first lower signal terminal 102 on a lower surface of the first printed circuit board 10. A plurality of first terminal holes 103 are formed by passing through the upper surface and the lower surface of the first printed circuit board 10. A plurality of first conductive pads 104 are disposed behind the first terminal holes 103 on the first upper signal terminal 101. The second printed circuit board 11 comprises a second upper signal terminal 111 on the upper surface and a second lower signal terminal 112 on the lower surface of the second printed circuit board 11. A plurality of second terminal holes 113 are formed by passing through the upper surface and the lower surface of the second printed circuit board 11. A plurality of second conductive pads 114 are disposed behind the second terminal holes 113 on the second lower signal terminal 112.
The connecting member 12 comprises a body portion 120, a plurality of contacts 4 held in the body portion 120. The contact 4 comprises a head portion 40 extending upwardly beyond a top of the body portion 120, a tail portion 41 extending downwardly beyond a bottom of the body portion 120, and a middle portion (not shown) connecting the head portion 40 and the tail portion 41. Referring to
The second connector 2 comprises a third printed circuit board 20 and a fourth printed circuit board 21 spaced apart from and disposed below the third printed circuit board 20. The third printed circuit board 20 comprises a third upper signal terminal 201 on the upper surface and a third lower signal terminal 202 on the lower surface of the third printed circuit board 20. A plurality of third conductive pads 203 are disposed on the third upper signal terminal 201. The fourth printed circuit board 21 comprises a fourth upper signal terminal 211 on the upper surface and a fourth lower signal terminal 212 on the lower surface of the fourth printed circuit board 21. A plurality of fourth conductive pads 213 are disposed on the fourth lower signal terminal 213.
The cable 3 comprises a plurality of signal wires 30 for transmitting the data signals and a plurality of control wires 31 for transmitting the control signals. Referring to
Referring to
The second upper signal terminal 111 electrically connects with the third lower signal terminal 202 through the first control wires 311 and the connecting member 12. The second lower signal terminal 112 electrically connects with the third upper signal terminal 201 through the first control wires 311 and the connecting member 12. The first upper signal terminal 101 electrically connects with the fourth lower signal terminal 212 through the second control wires 312 and the connecting member 12. The first lower signal terminal 102 electrically connects with the fourth upper signal terminal 211 through the second control wires 312 and the connecting member 12.
More specifically, the second upper signal terminal 111 connects with the third lower signal terminal 202 through the connecting member 12, the first printed circuit board 10, the first control wire 311 and the third printed circuit board 20. The control signal from the second upper signal terminal 111 goes through the connecting member 12, the first printed circuit board 10, the first control wire 311, the third printed circuit board 20 in turn and finally arriving in the third lower signal terminal 202. The control signal from the third lower signal terminal 202 goes through the third printed circuit board 20, the first control wire 311, the first printed circuit board 10, the connecting member 12 in turn and finally arriving in the second upper signal terminal 111.
The second lower signal terminal 112 connects with the third upper signal terminal 201 through the second printed circuit board 11, the connecting member 12, the first printed circuit board 10 and the first control wire 311. The control signal from the second lower signal terminal 112 goes through the second printed circuit board 11, the connecting member 12, the first printed circuit board 10, the first control wire 311 in turn and finally arriving in the third upper signal terminal 201. The control signal from the third upper signal terminal 201 goes through the first control wire 311, the first printed circuit board 10, the connecting member 12, the second printed circuit board 11 in turn and finally arriving in the second lower signal terminal 112.
The first upper signal terminal 101 connects with the fourth lower signal terminal 212 through the first printed circuit board 10, the connecting member 12, the second printed circuit board 11 and the second control wire 312. The control signal from the first upper signal terminal 101 goes through the first printed circuit board 10, the connecting member 12, the second printed circuit board 11, and the second control wire 312 in turn and finally arriving in the fourth lower signal terminal 212. The control signal from the fourth lower signal terminal 212 goes through the second control wire 312, the second printed circuit board 11, the connecting member 12, and the first printed circuit board 10 in turn and finally arriving in the first upper signal terminal 101.
The first lower signal terminal 102 connects with the fourth upper signal terminal 211 through the connecting member 12, the second printed circuit board 11, the second control wire 312 and the fourth printed circuit board 21. The control signal from the first lower signal terminal 102 goes through the connecting member 12, the second printed circuit board 11, the second control wire 312, and the fourth printed circuit board 21 in turn and finally arriving in the fourth upper signal terminal 211. The control signal from the fourth upper signal terminal 211 goes through the fourth printed circuit board 21, the second control wire 312, the second printed circuit board 11, and the connecting member 12 in turn and finally arriving in the first lower signal terminal 102.
when assembling the connector assembly, firstly, fix the connecting member 12 between the first and the second printed circuit board 10,11. The head portion 40 is inserted into the first terminal holes 103 of the first printed circuit board 10 and the tail portion 41 is inserted into the second terminal holes 113 of the second printed circuit board 11. Secondly, solder one side of the first signal wires 301 to the upper surface of the first printed circuit board 10 and another side to the lower surface of the third printed circuit board 20. Solder one side of the second signal wires 302 to the lower surface of the first printed circuit board 10 and another side to the upper surface of the third printed circuit board 21. The signal wires 30 between the second and the fourth printed circuit board are the same. Then solder the one side of the first control wires 311 to the first conductive pads 104 of the first printed circuit board 10, and another side to the third conductive pads 203 of the third printed circuit board 20. Solder one side of the second control wires 312 to the second conductive pads 114 of the second printed circuit board 11, and another side to the fourth conductive pads 213 of the fourth printed circuit board 21.
It is to be understood, however, that even though numerous characteristics and advantages of the present invention have been set forth in the foregoing description, together with details of the structure and function of the invention, the disclosure is illustrative only, and changes may be made in detail, especially in matters of shape, size, and arrangement of parts within the principles of the invention to the full extent indicated by the broad general meaning of the terms in which the appended claims are expressed.
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