Card connector and contact with buckling prevention
09559450 ยท 2017-01-31
Assignee
Inventors
Cpc classification
G06K7/0013
PHYSICS
International classification
H01R24/00
ELECTRICITY
G06K7/00
PHYSICS
Abstract
A card connector is provided having a housing and a contact. The housing includes a card receiving space. The contact is supported by the housing and includes a contact arm and an extended portion. The contact arm includes a free end and the extended portion includes a first end positioned below the contact arm on which the free end of the contact arm slides.
Claims
1. A card connector comprising: a housing having a card receiving space; and a contact supported by the housing and having: a contact arm having a free end; and a rigid extended portion having a first end positioned below the contact arm on which the free end of the contact arm slides.
2. The card connector according to claim 1, wherein the extended portion includes a second end positioned above the first end and having a fixed end extending away from the contact arm.
3. The card connector according to claim 2, wherein the extended portion bends backward toward the contact arm.
4. The card connector according to claim 1, wherein the free end is elastic.
5. The card connector according to claim 1, wherein the contact arm includes a fixed end opposite the free end.
6. The card connector according to claim 5, wherein the contact arm includes a bend positioned between the fixed end and the free end.
7. The card connector according to claim 6, wherein the bend is positioned above the free end.
8. The card connector according to claim 7, wherein the bend is positioned above the fixed end.
9. The card connector according to claim 1, wherein the contact arm has an inverted-V shape.
10. A contact, comprising: a frame having a first side, a second side, and a contact arm receiving passageway positioned between the first side and the second side; a contact arm attached at an obtuse angle with respect to the first side and having a free end extending toward the second side of the frame; and an extended portion attached to the second side and having a first end positioned below the contact arm on which the free end of the contact arm slides.
11. The contact according to claim 10, wherein the extended portion includes a second end positioned above the first end and having a fixed end extending away from the contact arm.
12. The contact according to claim 11, wherein the extended portion bends backward toward the contact arm.
13. The contact according to claim 10, wherein the free end is elastic.
14. The contact according to claim 10, wherein the contact arm includes a fixed end opposite the free end.
15. The contact according to claim 14, wherein the contact arm includes a bend positioned between the fixed end and the free end.
16. The contact according to claim 15, wherein the bend is positioned above the free end.
17. The contact according to claim 16, wherein the bend is positioned above the fixed end.
18. The contact according to claim 10, wherein the contact arm has an inverted-V shape.
19. A contact, comprising: a frame having a first side, a second side, and a contact arm receiving passageway positioned between the first side and the second side; a contact arm attached at a fixed end to the first side and having an opposite free end extending toward the second side of the frame, the free end and the fixed end positioned at a same height with respect to the frame; and an extended portion attached to the second side and having a first end positioned below the contact arm on which the free end of the contact arm slides.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The invention will now be described by way of example with reference to the accompanying figures, of which:
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DETAILED DESCRIPTION OF THE EMBODIMENT(S)
(10) The invention will be described below by way of examples with reference to the accompanying drawings.
(11) With reference to
(12) As shown in
(13) As shown in
(14) As shown in
(15) The first switch contact 23, as well as the plurality of contacts 22 relaying the circuit board and the micro SIM card to each other, is insert-molded to the body 21. In order to insert-mold the switch contact 23 or the plurality of contacts 22, a lead frame having a form in which the switch contact 23 and the plurality of contacts 22 are connected is produced by stamping and forming sheet metal. Then, the lead frame is insert-molded. Then, after the forming, appropriate portions of the lead frame are cut so that the switch contact 23 and the plurality of contacts 22 are each formed as independent circuits. The detail of these contacts 22 will be described later.
(16) The second switch contact 27 of the two switch contacts 23 and 27 provided in the housing 20 is fixed to the housing by press fitting.
(17) The housing 20 is further provided with a slider 24, a cam bar 25, and a coil spring 26. The slider 24 is a member sliding on the body 21 in an insertion direction (the direction of an arrow A) and an ejection direction (the direction of an arrow B). This slider 24 is biased in the ejection direction (the direction of the arrow B) by the coil spring 26. This slider 24 has a card receiving portion 241 pushed by the inserted micro SIM card, and a so-called heart cam groove 242. A cam pin 251, positioned at a distal end of the cam bar 25, enters the heart cam groove 242.
(18) When the micro SIM card is inserted, the micro SIM card abuts on the card receiving portion 241. When the micro SIM card is further inserted, the slider 24 is pushed by the micro SIM card, and the slider 24 is slid in the insertion direction (the direction of the arrow A) against the biasing force of the coil spring 26. When the slider 24 is slid to the final position in the insertion direction, the cam pin 251 enters a locking position 242a of the heart cam groove 242 to be locked in a final position. When the micro SIM card is pushed again in the insertion direction with a finger, the cam pin 251 is unlocked from the locking position 242a of the heart cam groove 242. Thereafter, when the finger is taken away from the micro SIM card, the slider 24 is pushed by the soil spring 26 to be slid in the ejection direction (the direction of the arrow B). In this manner, the micro SIM card is pushed by the slider 24 and moved in the ejection direction (the direction of the arrow B) until a part of the micro SIM card projects from the card insertion passageway 11 (see
(19) The switch contact 31 provided in the shell 30, which constitutes the first switch, is pushed by the micro SIM card when the micro SIM card is inserted to a predetermined position in the middle of insertion. Then, the switch contact 31 pushed by the micro SIM card comes into contact with the switch contact 23 provided in the housing 20. Thereby, the fact that the micro SIM card has been inserted to the predetermined position is detected. That is, this first switch is a switch detecting the fact that the micro SIM card has been inserted to the predetermined position in the middle of insertion.
(20) As shown in
(21) The second switch contact 27 is pushed by the micro SIM card when the micro SIM card is inserted to the back side in the insertion direction, and is brought into contact with the switch contact 32 provided in the shell 30. Thereby, the fact that the operation for ejecting the micro SIM card has been started is detected. That is, the second switch 27 detects the fact that the micro SIM card has been inserted to the back side in the insertion direction, thereby signaling the card ejection to a device at the start of the operation for ejecting the micro SIM card so that the power supply is turned off promptly.
(22) It should be noted that the description herein assumes that the micro SIM card is inserted into the card connector 10 described with reference to
(23) Next, the structure of a contact for the card connector according to the invention will be described with reference to
(24) The frame 222 is fixed to the body 21 (see
(25) In addition, the contact arm 223 extends toward the back side in the insertion direction (the direction of the arrow A) from a first side 222a of the frame 222 on the front side in the insertion direction, and has a free end 223a on the back side in the insertion direction. As shown in
(26) Further, the extended portion 224 of the contact 22 is formed as a rigid member with the frame 222, folded back from its second side 222b (see
(27) When the micro SIM card is ejected from the card connector 10, the contact arm 223 is restored from its deformation, and returns to the inverted-V shape shown in
(28) As mentioned before, not only the micro SIM card but also a nano SIM card with an adapter may be inserted into the card connector 10.
(29) Now with to
(30) The size of the adapter 51 does not match the size of the nano SIM card, and a step 51a is formed in the adapter 51. Therefore, as shown in
(31) In contrast, in the case of the contact arm 223 having a shape shown in
(32) It should be noted that the invention has been described herein taking the card connector for a micro SIM card as an example, but the invention is not limited to the card connector for a micro SIM card, and is widely applicable to overall card connectors into which a card is inserted.
(33) In addition, in the embodiment, the contact arm 223 of the contact 22 extends toward the back side in the insertion direction, but may extend toward the front side in the insertion direction. In that case, the extended portion 224 of the contact 22 extends from the second side on the front side in the insertion direction to the first side.
(34) Further, the extended portion 224 is folded back and then extends under the second side toward the first side, but it may extend over the second side.
(35) The foregoing illustrates some of the possibilities for practicing the invention. Many other embodiments and fields of use for are possible and within the scope and spirit of the invention. It is, therefore, intended that the foregoing description be regarded as illustrative rather than limiting, and that the scope of the invention is given by the appended claims together with their full range of equivalents.