1. Field of the Invention
This present invention relates to a memory card connector, and more particularly to a memory card connector capable of receiving two different types of memory cards.
2. The Related Art
Memory card such as Memory Stick Duo card, SD card, Mini SD card, MMC card, MMC 4.0 card, RS MMS 4.0 card, etc. is a kind of record medium used in the video camera, digital camera, mobile phone and other electronic devices. There are many different types of memory cards that differ in shape and size. In order to receive two different types of memory cards in an electronic device respectively, a memory card connector capable of receiving two types of memory cards is required.
Conventionally, a memory card connector receiving two types of memory cards includes a housing and a shell. Two groups of receiving slots are formed inside the housing. One group of the receiving slots is formed at the upper place of the housing, and the other group of the receiving slots is formed at the lower place of the housing. Two groups of terminals are located inside the two groups of the receiving slots respectively. Two memory cards that are different in type are received respectively in the two groups of the receiving slots.
However, the two groups of the receiving slots are superimposed inside the housing to receive two different types of memory cards. Therefore the height of the memory card connector is increased, and the memory card connector occupies a large space of the housing.
Accordingly, an object of the present invention is to provide a memory card connector for receiving two different types of memory cards. The memory card connector includes an insulating housing, an auxiliary member and an ejecting device. The insulating housing has a base, two sidewalls extending upwards from both sides of the base, and a rear wall extending upwards from the rear end of the base. The two sidewalls and the rear wall define a chamber therebetween. A plurality of terminal cavities are defined in the insulating housing for respectively receiving a plurality of electric terminals. A cover is coupled with the insulating housing. The left side of the insulating housing defines an accommodating cavity. A preventing member is formed at the inside of the accommodating cavity. The other side of the insulating housing defines a sliding recess. The auxiliary member is received in the accommodating cavity and slides between the sidewall and the preventing member. The auxiliary member includes at least one elastic member and a cooperative member. The inner surface of the cooperative member is used as a contacting portion. The elastic member is located between and against the sidewall and the cooperative member. Hence, the cooperative member is blocked by the preventing member. The ejecting device is received in the sliding recess and used for withdrawing the memory card from the memory card connector.
As described above, while the memory card is inserted in the memory card connector, the cooperative member of the auxiliary member presses one side of the memory card to make the other side of the memory card stay close to the ejecting device. Then the memory card can be inserted or extracted from the memory card connector steadily. So different types of memory cards can be inserted in the same memory card connector because of the auxiliary member. At the same time, the structure of the memory card connector with the auxiliary member is compact and the height of the memory card connector is reduced.
The present invention will be apparent to those skilled in the art by reading the following description of a preferred embodiment thereof, with reference to the attached drawings, in which:
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The insulating housing 10 includes a base 11. Two parallel sidewalls (12,13) extend upwards from the left and the right sides of the base 11. A rear wall 15 extends upwards from the rear end of the base 11. The two sidewalls (12,13) and the rear wall 15 define a chamber 14 therebetween for receiving an external memory card. A plurality of first terminal cavities 111 are defined longitudinally in the front of the base 11. The base 11 protrudes upward to form a first blocking portion 112 at the back. A plurality of second terminal cavities 151 are defined in the rear wall 15 and penetrate through the rear wall 15.
The insulating housing 10 defines an accommodating cavity 16 to receive the auxiliary member 20 at left side. The accommodating cavity 16 is surrounded by the left sidewall 12, the rear wall 15, a front wall 160, and a pair of preventing walls 161. The front wall 160 extends inward from the front of the left sidewall 12. The inner end of the front wall 160 extends backward to form one of the preventing walls 161. The other preventing wall 161 extends forward from the left of the rear wall 15 and faces to the preventing wall 161 at the front. A second blocking portion 113 is formed between the first blocking portion 112 and the preventing wall 161 at the back. A pair of guiding cavities 162 are defined transversely in the left of the base 11 and located at the front and rear respectively. One end of the guiding cavity 162 connects with the left sidewall 12. The left sidewall 12 protrudes inward at the places facing to the guiding cavities 162 to form a pair of locating rods 163.
The insulating housing 10 receives the ejecting device 30 at right side. The right sidewall 13 defines a longitudinal sliding recess 131. The sliding recess 131 communicates with the chamber 14. The rear wall of the sliding recess 131 protrudes forward to form a retaining rod 132 locating in the sliding recess 131. The front wall of the sliding recess 131 defines a stepped locating hole 133. Next to the sliding recess 131, the base 11 of the insulating housing 10 defines a longitudinal fixing cavity 114 parallel with the sliding recess 131.
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When the memory card is about to be taken out from the memory card connector 100, the memory card obtains a push force towards the back again until the memory card resists against the second blocking portion 113 or the first blocking portion 112. The back end of the connecting bar 33 removes out of the shoulder 314 and slips into the trace cavity 313. At the same time, the power stored in the spring 32 releases and the spring 32 stretches forwards. The spring 32 pushes the sliding body 31 moving forwards. The memory card is taken out of the memory card connector 100. Meanwhile, the cooperative member 22 slides inwards under the push of the elastic member 21 until the resisting portions 221 are against the preventing walls 161.
As described above, while a memory card is inserted in the memory card connector 100, the cooperative member 22 of the auxiliary member 20 presses one side of the memory card to make the other side of the memory card stay close to the ejecting device 30. Then the memory card can be inserted or extracted from the memory card connector 100 steadily. So the different types of memory cards can be inserted in the same memory card connector 100 because of the auxiliary member 20. At the same time, the structure of the memory card connector 100 with the auxiliary member 20 is compact and the height of the memory card connector 100 is reduced.
The foregoing description of the present invention has been presented for purposes of illustration and description. It is not intended to be exhaustive or to limit the invention to the precise form disclosed, and obviously many modifications and variations are possible in light of the above teaching. Such modifications and variations that may be apparent to those skilled in the art are intended to be included within the scope of this invention as defined by the accompanying claims.