This application claims priority to Chinese Patent Application No. 20080114883.9, filed May 22, 2008, the contents of which are hereby incorporated by reference in its entirety.
The present invention relates to a data transfer device, in particular, to a data card.
At present, a typical data card mainly includes wireless network card, wireless access-internet card, and other such wireless network devices. The wireless network card is a signal transceiver, which is similar to a typical computer network card in role and function. The connection of a computer to the Internet can be achieved when the wireless network card plugged into the computer finds out an access to the Internet. The wireless access-internet card is equivalent to a wired modem in role and function. In any region covered by radiophone signals, the connection of appliances to the internet can be achieved by the wireless access-internet card with a SIM Card (Subscriber Identity Model Card) in the wireless access-internet card.
With the developing of the technology of wireless communication terminal and data card, the data card is enhanced and integrated in function, and reduced continuously in volume. For example, the volume of existing Universal Serial BUS (USB) data card shown in
The data card configured as the wireless access-internet card is substantially similar to the data card configured as the wireless network card in structure, with the difference in that the larger side of the casing of the wireless access-internet card is further provided with a card slot electrically connected with the circuit board. The circuit board has the function of reading and identifying the data information of the SIM card. In order to go online, the SIM card provided with network service is inserted into the card slot, and the plug is plugged into a jack of computer. Then, the circuit board reads the data information of the SIM Card through the card slot and connects to the wireless network, and thereby the computer becomes able to go online.
During implementation of the present invention, the designer finds that the existing data card at least has the following problems:
Although the hollow shell-like antenna increases the surface area of the antenna, the volume of the data card is also remarkably increased, which causes the problems of inconvenient to carry, more material consume, and the like.
An embodiment of the invention provides a data card, by which the technical problem that existing data card has larger volume can be solved.
To achieve the above purpose, the data card of the embodiment of the invention employs the following solution.
The data card includes a casing provided with a circuit board therein, one end of the casing is provided with a plug electrically connected with the circuit board, and the data card further includes a connecting part and a cap part.
One end of the connecting part is connected with the casing, while the other end is connected with the cap part. The cap part can cover the plug. The connecting part and/or the cap part are/is provided with an antenna electrically connected with the circuit board.
Differing from the conventional art, in the embodiment of the invention, the antenna is provided on the connecting part and/or the cap part. Because the portion of the cap part which can cover the plug is hollow shell-like and the connecting part is connected with both the casing and the cap part, the surface area of the cap part and the connecting part is larger. Therefore, not only that the cap part may function as providing protection of the plug as done in the prior cap, but also that either the cap part or the connecting part can ensure a sufficiently large surface area for the antenna and the signal which can be received by the antenna has a wider frequency range, thereby saving the space occupied by the prior hollow shell-like antenna.
A data card according to an embodiment of the invention solves the technical problem that the conventional data card has a larger volume.
Next, embodiments of the invention are described in detail in connection with the drawings.
As shown in
One end of the connecting part 4 is connected with the casing 1, while the other end is connected with the cap part 3. The cap part 3 can cover the plug 2. An antenna which is electrically connected with the circuit board is provided on the connecting part 4 and/or the cap part 3.
In the embodiment of the invention, the antenna may be electrically connected to the circuit board in various manners, for example, through the connecting part 4 and/or the cap part 3, or through the combination of the cap part 3 and a wire. It is understood that the connecting part 4 may employ a wire. The cap part 3 can cover the plug 2 by insertion, socket, or slide connection, or the like manner.
In this embodiment, the antenna is provided on the connecting part 4 and the cap part 3. It is understood that the antenna may be provided on one of the connecting part 4 and the cap part 3 only. Since the portion of the cap part 3 which covers the plug 2 is hollow shell-like, the connecting part 4 can be configured to have a larger surface area. Therefore, not only that the cap part 3 can function as providing a protection of the plug 2 as done in the prior cap and the connecting part 4 can function as providing a connection of the casing 1 with the cap part 3, but also that the antenna can have a sufficiently large surface area and the signal which can be received by the antenna can have a wider frequency range, thereby saving the space occupied by the prior hollow shell-like antenna.
In the embodiment of the invention, the casing 1 has a rectangular parallel-piped shape, the plug 2 is a USB plug 2, and the USB plug 2 is arranged at a smaller side of the casing 1. The connecting part 4 includes a guide rod 40 and a guide rail 41. One end of the guide rail 41 is movably connected with the casing 1, the other end of the guide rail 41 is connected with one end of the guide rod 40 in insertion, socket, or slide connection manner, and the other end of the guide rod 40 is connected with the cap part 3. The other end of the guide rod 40 may be connected to the cap part 3 in various forms. The other end of the guide rod 40 may be fixedly connected to the cap part 3, or may be connected to the cap part 3 in insertion, socket, or slide connection manner. In this embodiment, the guide rod 40 is inserted into the guide rail 41, and the guide rail 41 can slide along the guide rod 40. As shown in
As shown in
As a further modification of the embodiment of the invention, both the guide rod 40 and the guide rail 41 includes two guide rod elements parallelly and symmetrically arranged on both sides of the casing 1, respectively. Each of the symmetrically arranged guide rod 40 and the guide rail 41 has a more uniform stress and a higher reliability, and also has a better appearance.
As a further modification of the embodiment of the invention, the antenna of the data card includes main antenna and diversity antenna. Wireless data signal is received or transmitted mainly through the main antenna, and the diversity antenna functions as an auxiliary receiver. In the embodiment, the main antenna and the diversity antenna may be arranged in the following alternative arrangements: (1) The main antenna is arranged on the cap part 3, and the diversity antenna is arranged on the connecting part 4, in which the diversity antenna may be arranged on any one element of the guide rod 40 or any one element of the guide rail 41; (2) The main antenna is arranged on one element of the guide rod 40 or one element of the guide rail 41, and the diversity antenna is arranged on the other element of the guide rod 40 or the other element of the guide rail 41; or (3) The main antenna and the diversity antenna may also be arranged on any one element of the guide rod 40 or any one element of the guide rail 41, respectively, and the diversity antenna may also be directly arranged on the circuit board. The main antenna and the diversity antenna can be electrically connected with the circuit board located within the casing 1 through the guide rod 40 or the guide rail 41. The circuit board can rectify the signal received by the main antenna by use of the signal received by the diversity antenna, so as to enhance the sharpness of the signal received.
As a further modification of the embodiment of the invention, the casing 1 is provided with a rope structure. In the embodiment, the rope structure is arranged at an end of the casing 1 distal to the plug 2, specifically, in a hole 5 or a hook provided to the casing 1 or a groove defined in the end of the casing 1 distal to the plug 2. The rope can be socketed or banded to the hole 5, the hook or the groove so as to make the carry of the data card safer. The data card will not be lost, even if the cap part 3 is dropped off or damaged.
As a further modification of the embodiment of the invention, for the data card which can achieve network connection only if the SIM Card has been used, in the embodiment of the invention, a card slot for receiving the SIM is defined in the casing 1 at a joint of the casing 1 and the plug 2, as shown in
Shown in
In this embodiment, the position of the guide rail 41 and the guide rod 40 can be adjusted by sliding the cap part 3 along the guide rod 40 or by means of the guide rod 40 and the movable joint, thereby the antenna can be adjusted to the orientation and position at which the antenna gain is higher and the signal receiving effect is better.
As shown in
The above description has illustrated the embodiments of the invention, but does not intend to limit the scope of the invention, all the variations and substitutions which can be easily conceived by those skilled in the art within the disclosure of the invention should be covered by the scope of the invention. Therefore, the scope of the invention is defined by the claims and its equivalent.
Number | Date | Country | Kind |
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200820114883.9 | May 2008 | CN | national |