1. Field of the Invention
The present invention relates to a securing device for a portable device, especially to a securing device that secures the portable device at a specific position.
2. Description of the Prior Art(s)
A computer cable lock device comprises a lock and a cable connected to the lock. The lock is for being fastened to a portable device, such as a laptop. With the cable looping around a post, such as a leg of a table, the portable device cannot be taken away from the post, thereby facilitating theft prevention.
A lock of a conventional computer cable lock device has a lock pin. The lock pin is T-shaped and has a cross-rod formed on a distal end of the lock pin. A housing of the portable device has an elongated lock hole transversely formed on the housing. The lock hole corresponds in shape and size to the cross-rod. When in use, the cross-rod is inserted into the housing through the elongated lock hole. Then a key for the lock drives the lock pin to turn by 90 degrees. Thus, the cross-rod is perpendicular to the elongated lock hole and abuts an inner surface of the housing. Accordingly, the lock of the conventional computer cable lock device is fastened to the portable device.
However, in order to allow the cross-rod of the lock pin to be inserted into the housing, a length of the elongated lock hole should be longer or equal to a length of the cross-rod. Moreover, interior space in the housing of the portable device and above and under the lock hole should be reserved for the cross-rod to be turned and abut the inner surface of the housing. As the portable device, such as the laptop, is developed toward the trend of getting thinner and thinner, the portable device would be too thin to allow the conventional computer cable lock device to be fastened to the portable device.
To overcome the shortcomings, the present invention provides a securing device for a portable device to mitigate or obviate the aforementioned problems.
The main objective of the present invention is to provide a securing device for a portable device. The securing device has a lock assembly and a cable connected to the lock assembly. The lock assembly has a housing and two locking pins, two resilient elements, a slider, and a lock mounted in the housing.
When the lock is rotated by a key, the lock drives the slider and the slider pushes the locking pins to slide laterally. Thus, the lock assembly can be fastened to a casing with a lock hole and with interior space laterally reserved beside the lock hole. The securing device secures the portable device regardless of thickness of the portable device.
Other objectives, advantages and novel features of the invention will become more apparent from the following detailed description when taken in conjunction with the accompanying drawings.
With reference to
With further reference to
With further reference to
The mounting recess 111 is formed in the housing 11 and through the front end of the housing 11. The inner sidewalls of the housing 11 are oppositely defined in the mounting recess 111. The engaging recesses 112 are respectively formed in the inner sidewalls of the housing 11 and correspond in position to each other. The receiving recesses 113 are respectively formed in the inner sidewalls of the housing 11 and correspond in position to each other.
The sliding recess 114 is formed in the housing 11 and is disposed between the mounting recess 111 and the rear end of the housing 11. The at least one guiding recess 115 is formed in the housing 11. Each of the at least one guiding recess 115 is elongated and has two opposite ends. The two ends of the guiding recess 115 are respectively positioned toward the front end of the housing 11 and the rear end of the housing 11. The keyhole 116 is formed through the top of the housing 11.
In the preferred embodiment, the housing 11 is formed by attaching a base 11A and a cover 11B. The base 11A has an inner surface, a front end, and a rear end. The mounting recess 111 is formed in the inner surface of the base 11A and through the front end of the base 11A. The inner sidewalls of the housing 11 are formed in the base 11A. The sliding recess 114 is formed in the inner surface of the base 11A and is disposed between the mounting recess 111 and the rear end of the base 11A. The cover 11B has a top, an inner surface, a front end, and a rear end. The inner surface of the cover 11B is opposite to the top of the cover 11B and faces the inner surface of the base 11A. The at least one guiding recess 115 is formed in the inner surface of the cover 11B. The two ends of each of the at least one guiding recess 115 are respectively positioned toward the front end of the cover 11B and the rear end of the cover 11B. The keyhole 116 is formed through the top of the cover 11B.
Preferably, the base 11A further has two insertion slots 117. The insertion slots 117 are respectively formed in the inner sidewalls of the housing 11 and are disposed by the front end of the base 11A. The cover 11B further has two tabs 118. The tabs 118 are formed on the inner surface of the cover 11B and are respectively inserted in the insertion slots 117 of the base 11A. Two fastening bars are mounted through the front end of the base 11A and are respectively mounted through the tabs 118, such that the base 11A and the cover 11B are securely connected with each other.
With further reference to
The resilient elements 13 are respectively mounted in the receiving recesses 113 of the housing 11. Each of the resilient elements 13 has two ends respectively abutting the housing 11 and a corresponding one of the locking pins 12. Thus, the resilient elements 13 push the locking pins 12 to move toward each other. Specifically, each of the resilient elements 13 is a compression spring.
The slider 14 is mounted in the housing 11, is mounted between the base 11A and the cover 11B, and is slidable along the line that extends through the front end of the housing 11 and the rear end of the housing 11. The slider 14 has a head portion 141, a driving slot 142, and an extending panel 143.
The head portion 141 is mounted in the sliding recess 114 of the housing 11 and is slidable along the line that extends through the front end of the housing 11 and the rear end of the housing 11. The driving slot 142 is formed in the head portion 141.
The extending panel 143 protrudes from the head portion 141, extends toward the front end of the housing 11, and is mounted on the locking pins 12. The extending panel 143 has a rear end, a front end, a lower surface, an upper surface, at least one pushing protrusion 144, and at least one guiding protrusion 145. The rear end of the extending panel 143 is attached to the head portion 141. The front end of the extending panel 143 protrudes out of the housing 11 from the front end of the housing 11. The lower surface of the extending panel 143 faces the locking pins 12. The upper surface of the extending panel 143 faces the at least one guiding recess 115 of the housing 11. The at least one pushing protrusion 144 is formed on the lower surface of the extending panel 143 and protrudes between the locking pins 12. Each of the at least one pushing protrusion 144 selectively engages in a corresponding one of the at least one pair of corresponding positioning recesses 121 of the locking pins 12. The at least one guiding protrusion 145 is formed on the upper surface of the extending panel 143 and is slidably mounted in the at least one guiding recess 115 of the housing 11, such that the slider 14 can slide relative to the housing 11 along the at least one guiding recess 115.
In the preferred embodiment, the housing 11 has two guiding recesses 115. The guiding recesses 115 are separately formed in the inner surface of the cover 11B and are parallel to each other. Each of the locking pins 12 has two positioning recesses 121. The positioning recesses 121 are separately formed in the inner side of the locking pin 12. Accordingly, two pairs of corresponding positioning recesses 121 are formed. The extending panel 143 of the slider 14 has two pushing protrusions 144 and two guiding protrusions 145 The pushing protrusions 144 are separately formed on the lower surface of the extending panel 143 and selectively engage in the two pairs of corresponding positioning recesses 121 of the locking pins 12 respectively. The guiding protrusions 145 are separately formed on the upper surface of the extending panel 143. The guiding protrusions 145 are respectively mounted in the guiding recesses 115.
With further reference to
In the preferred embodiment, the lock 15 includes a lower seat 151 and a lock core 153. The lower seat 151 is securely mounted in the cover 11B of the housing 11, and has a lower end surface and a limiting protrusion 152. The lower end surface of the lower seat 151 faces the head portion 141 of the slider 14. The limiting protrusion 152 protrudes from the lower end surface of the lower seat 151. The lock core 153 is rotatably mounted through the lower seat 151 and has an outer end and an inner end. The outer end of the lock core 153 protrudes in the keyhole 116 of the housing 11. The driving rod 154 of the lock 15 protrudes from the inner end of the lock core 153 and is positioned eccentric to the lock core 153. When a key drives the lock core 153 to rotate, the driving rod 154 drives the slider 14 to slide along the line that extends through the front end of the housing 11 and the rear end of the housing 11.
The limit ring 16 is mounted between the head portion 141 of the slider 14 and the lower seat 151, and is mounted around and securely attached to the inner end of the lock core 153. The limit ring 16 has a limiting recess 161. The limiting recess 161 is arced, is formed in an outer peripheral edge of the limit ring 16, and receives the limiting protrusion 152 of the lower seat 151. Thus, a rotating range of the lock core 153 is limited.
The cushion pad 17 is attached to the front end of the housing 11. The front ends of the locking pins 12 and the front end of the extending panel 143 of the slider 14 protrude through the cushion pad 17. Specifically, the cushion pad 17 may be made of foam materials.
The cable 20 is connected to the housing 11 and has a distal end, a proximal end, and a lasso 21. The proximal end of the cable 20 is connected to the rear end of the housing 11. The lasso 21 is formed on the distal end of the cable 20.
With reference to
With further reference to
The lock assembly 10 can be fastened to the casing 321 with a lock hole 322 and with interior space laterally reserved beside the lock hole 321. The securing device secures the portable device 32 regardless of thickness of the portable device
Even though numerous characteristics and advantages of the present invention have been set forth in the foregoing description, together with details of the structure and features of the invention, the disclosure is illustrative only. Changes may be made in the details, especially in matters of shape, size, and arrangement of parts within the principles of the invention to the full extent indicated by the broad general meaning of the terms in which the appended claims are expressed.
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