1. Field of the Invention
The invention relates to a card reader module, and in particular, to a card reader module having a housing, and a control chip within the housing.
2. Description of the Related Art
Because the pins 30 are connected to the PCB 20 within the housing 10 near the rear side 12 and the flash card A1 is inserted into the housing 10 from the front side 11, there is no extra space in the housing 10 for the control chip 40. Therefore, the control chip 40 must be mounted on the PCB 20 outside of the housing 10, increasing the size of the PCB 20.
The plug 50 is mounted on the PCB 20 outside of the housing 10. The plug 50 is connected to a receptacle B1 of the motherboard B2, and the card reader module 1 can be connected to the motherboard B1. Therefore, the size of the PCB 20 is increased because the plug 50 is mounted on the PCB 20.
In view of the above, the size of the card reader module 1 cannot be further reduced because of the size of the PCB 20. Thus, the conventional card reader module 1 is too large for a miniaturized computer.
Accordingly, the invention provides a card reader module for a flash card. The card reader module is installed on a motherboard of a computer. The card reader module includes a substrate, an insulating body, a housing, a plurality of pins, and a control chip. The housing covers the insulating body and the substrate. The housing has a front side and a rear side. The pins are connected to the substrate near the front side of the housing and fixed on the insulating body. The control chip is disposed within the housing and mounted on the substrate near the rear side of the housing.
Accordingly, because the pins are connected to the substrate near the front side of the housing, the control chip can be disposed between the housing and the substrate. The size of the substrate can be reduced, and the size of the card reader module can be further reduced.
The invention can be more fully understood by reading the subsequent detailed description and examples with references made to the accompanying drawings, wherein:
Please refer to
The card reader module 2 includes a substrate 100, a control chip 200, an electronic component 300, an insulating body 400, a housing 500, a plurality of pins 600, a cover element 700, and two anchor elements 800.
The substrate 100 can be a printed circuit board. The substrate 100 has a plurality of pads 110, a plurality of connecting portions 120, and a plurality of connecting pins 130. The pads 110 are disposed at a front edge 101 of the substrate 100. The connecting portion 120 can be a groove disposed on a rear edge 102 of the substrate 100. The connecting pins 130 are connected to the control chip 200 and disposed in the connecting portions 120, respectively.
The control chip 200 and the electronic component 300 are mounted on the substrate 100. The control chip 200 controls a flash card A1 (shown in
The insulating body 400 is disposed on the substrate 100. The insulating body 400 includes a retaining portion 410, a plurality of terminal holes 420, two support portions 430, and a frame portion 440. The retaining portion 410 is located near the front edge 101 of the substrate 100. The terminal holes 420 are disposed on the retaining portion 410.
The support portions 430 are extended along an inserting direction D1. The support portions 430 are disposed on opposite sides of the retaining portion 410, and the opposite sides of the substrate 100 are covered by the support portions 430. Namely, the substrate 100 is located between the support portions 430, and the substrate 100 is under the retaining portion 410. The control chip 200 and the electronic component 300 are located between the support portions 430. Each of the support portions 430 has a receiving groove 431, a locking part 432, and a latching part 433. The latching part 433 is located near the front side 510.
The frame portion 440 is connected to both of the support portions 430, and is separated from the substrate 100 by a distance. The control chip 200 and the electronic component 300 can be located between the frame portion 440 and the substrate 100. The strength of the card reader module 2 can be improved by the frame portion 440.
The housing 500 is made of a metal plate. The housing 500 is substantially in a U shape. The housing 500 has a front side 510 and a rear side 520. The front side 510 is opposite to the rear side 520. The front side 510 has an inserting opening 511. The pads 110 are located near the front side 510 and the inserting opening 511. The control chip 200 and the electronic component 300 are located near the rear side 520 and within the housing 500.
The housing 500 includes a cover portion 530 and two side walls 540. The side walls 540 are extended from the cover portion 530 along an extension direction D2. The extension direction D2 is perpendicular to the inserting direction D1. The cover portion 530 and the side walls 540 of the housing 500 cover the substrate 100 and the insulating body 400. Each of the side walls 540 has a locking hole 541. The locking part 432 corresponds to the locking hole 541. When the housing 500 is disposed on the insulating body 400, the locking part 432 is held in the locking hole 541. Therefore, the support portions 430 can be clamped by the side walls 540, respectively.
The pins 600 are substantially extended toward the rear side 520 of the housing 500 along the inserting direction D1. Each of the pins 600 has a fixing portion 610, a welding portion 620, and a contact portion 630. The fixing portion 610 and the welding portion 620 are located near the front side 510 and the inserting opening 511. The fixing portion 610 is connected to the welding portion 620 and the contact portion 630. The fixing portion 610 is fixed by the insulating body 400.
In this embodiment, the fixing portion 610 is embedded in the retaining portion 410 by injection molding. Therefore, the pins 600 of this embodiment can be welded on the substrate 100 more easily and more accurately. The welding portion 620 is welded on the pads 110 of the substrate 100 near the front side 510 and the inserting opening 511. The contact portion 630 is movably received in the terminal holes 420, respectively. The contact portion 630 is connected to the flash card A1, when the flash card A1 is inserted into the card reader module 2. By the above structure, the pins 600 of the embodiment can be tightly fixed in the card reader module 2.
Moreover, because the welding portion 620 is welded on the substrate 100 near the front side 510 and the pins 600 are substantially extended toward the rear side 520, an extra space between the substrate 100 and the housing 500 is available for the control chip 200 and the electronic component 300. Therefore, the control chip 200 and the electronic component 300 can be disposed in the housing 500 and the insulating body 400, and the size of the substrate 100 can be reduced.
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The anchor elements 800 are made of a metal plate. The anchor elements 800 are received and fixed in the receiving grooves 431, respectively. Each of the anchor elements 800 includes a flexible arm 810, a fixed part 820 and a latching part 830. The flexible arm 810 is connected to the fixed part 820 and the latching part 830. The fixed part 820 is fixed in the receiving groove 431. The flexible arm 810 and the latching part 830 are moveably received in the receiving groove 431. The latching part 830 is a bended structure. When the flash card A1 is inserted in the card reader module 2, the flexible arm 810 is bended by the flash card A1 and the latching part 830 provides an elastic force to the flash card A1. Then, the flash card A1 is clamped by the anchor elements 800.
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In conclusion, because the pins are connected to the substrate near the front side of the housing, and extended toward the rear side of the housing, the control chip and the electronic component can be disposed between the housing and the substrate. The size of the substrate can be reduced, and the size of the card reader module can be further reduced.
While the invention has been described by way of example and in terms of preferred embodiment, it is to be understood that the invention is not limited thereto. To the contrary, it is intended to cover various modifications and similar arrangements (as would be apparent to those skilled in the art). Therefore, the scope of the appended claims should be accorded the broadest interpretation so as to encompass all such modifications and similar arrangements.
This application claims the benefit of U.S. Provisional Application No. 61/406,008, filed on Oct. 22, 2010, the contents of which are incorporated herein for reference.
Number | Date | Country | |
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61406008 | Oct 2010 | US |