The invention relates to a retractable cable device, and particularly to a retractable cable device for a wireless communication device.
Nowadays, wireless communication devices are widely used, and an antenna is an indispensable part of the wireless communication device. Many wireless communication devices, such as wireless access points employ several external antennas for polarization. Typically, when the wireless communication device is in an environment where surrounding impediments directly affect signal reception, a user may choose to dispose an antenna apart from the wireless communication device. At this point, a cable with a length of several meters is needed which is usually found in a space within the device. However, when the user finishes using the wireless communication device, it is difficult for him/her to return the cable to its space. Moreover, the cable is prone to becoming entangled with other things.
A retractable cable device for retracting a cable connected to an antenna is provided. The retractable cable device includes a base, a rotary portion, a spring, a cover, and at least two metal plates. The rotary portion cooperates with the base to form a cavity, and the cable is disposed on the rotary portion. The spring is disposed in the cavity for driving the rotary portion to rotate. The cover is coupled to the base. The metal plates are connected to the rotary portion for maintaining an electrical connection between the antenna and the cable when the rotary portion rotates.
Other advantages and novel features will become more apparent from the following detailed description when taken in conjunction with the accompanying drawings, in which:
The retractable cable device 10 is used for retracting a cable 30, which connects an antenna 20 to a wireless communication device (not shown) via an antenna adapter 40. In this embodiment, the retractable cable device 10 includes an anti-slip pad 11, a base 12, a spring 13, a rotary portion 14, a metal plate 16, and a cover 18.
In this embodiment, the anti-slip pad 11 and the base 12 are integrated to support the retractable cable device 10 and prevent the retractable cable device 10 from sliding. The spring 13 includes a first fixed end 131, a spring body 132, and a second fixed end 133 bending upwards. The metal plate 16 includes a first metal plate 161, a second metal plate 162, a third metal plate 163, and a fourth metal plate 164. The antenna 20 is arranged on the cover 18, and is electrically connected to the cable antenna adapter 40 via the cable 30. The cable 30 includes two contact ends 31, a spring body 33, and a cable pulling end 35.
In this embodiment, the base 12 includes a first ring 121, three connecting rods 122, a bottom plate 123, a columnar protrusion 124, and a positioning groove 125. The first ring 121 depends from the edge of the bottom plate 123. The connecting rods 122 are defined on the first ring 121, and are generally centrosymmetric about a central axis of the first ring 121. The columnar protrusion 124 is generally disposed at the center of the base 12, and depends from the center of the bottom plate 123. The positioning groove 125 is defined on the columnar protrusion 124. It should be noted that the number of the connecting rods 122 is not limited to three, and other amounts of the connecting rods 122 is also possible in other embodiments.
Now referring to
In this embodiment, the rotary portion 14 includes a first rotary plate 141, a rotary axis 142, and a second rotary plate 143. The first rotary plate 141 includes two contact through holes 141a. An axis hole 142a is defined at the center of the rotary axis 142. The axis hole 142a is disposed at the center of the second rotary plate 143. The second rotary plate 143 includes a second ring 143a, a positioning hole 143b adjacent to the second ring 143a, and a first sleeve 143c. The second ring 143a depends from the edge of the second rotary plate 143, the positioning hole 143b is generally disposed adjacent to the edge of the second rotary plate 143. and the first sleeve 143c depends from the center of the second rotary plate 143. An inner diameter of the first sleeve 143c is the same as a diameter of the axis hole 142a and the columnar protrusion 124. The second rotary plate 143 cooperates with the base 12 to form a cavity 144. The spring 13 is disposed in the cavity 144.
In this embodiment, the first fixed end 131 is fixed in the positioning groove 125, and the second fixed end 132 is fixed in the positioning hole 143b, thereby the spring 13 is fixed by the positioning groove 125 and the positioning hole 143b. The cable 30 wraps around the rotary axis 142, and is secured by the first rotary plate 141 and the second rotary plate 143. The spring 13 may also be fixed in other ways. In another embodiment, the positioning groove 125 may be a positioning hole, and the first fixed end 131 bends downwards to assist the positioning hole in fixing the spring 13.
In this embodiment, each of the contact ends 31 passes through the one of the contact holes 141a, and then sequentially contacts with one of the first metal plate 161 and the second metal plate 162. The cable pulling end 35 is connected to the wireless communication device via the antenna adapter 40. When the cable pulling end 35 is pulled out, the cable pulling end 35 urges the rotary portion 14 to rotate, and the spring 13 is forced to deform elastically. After the external force is withdrawn, the spring 13 rebounds and drives the rotary portion 14 to rotate in an opposite direction, and the cable is retracted. When the rotary portion 14 is integrated with the base 12, the first sleeve 143c is rotatably received in the positioning groove 125 for coupling the rotary portion 14 to the base 12. In this embodiment, the outer diameter of the second ring 143b is approximately equal to the inner-diameter of the first ring 121.
Number | Date | Country | Kind |
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200510036751.X | Aug 2005 | CN | national |
Number | Name | Date | Kind |
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4190839 | Liautaud | Feb 1980 | A |
6230860 | Wu | May 2001 | B1 |
6658130 | Huang | Dec 2003 | B2 |
6942079 | Chang | Sep 2005 | B2 |
Number | Date | Country |
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2406977 | Nov 2000 | CN |
2435862 | Jun 2001 | CN |
Number | Date | Country | |
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20070040753 A1 | Feb 2007 | US |