1. Field of the Invention
The present invention relates to a holder for electronic devices, and more particularly to an adjustable holder for electronic devices.
2. Description of the Prior Art
With the popularity of the flat-panel type electronic devices, most of consumers would like to have a conventional electronic device holder 10, as shown in
The present invention has arisen to mitigate and/or obviate the afore-described disadvantages.
The primary objective of the present invention is to provide an adjustable holder capable of holding different sized electronic devices.
To achieve the above objective, an adjustable holder for electronic devices in accordance with the present invention comprises: a base, two holding plates, an adjustable plate, and a limiting unit.
The two holding plates each have two opposite holding portions for holding the electronic device, one of the holding plates is formed with a button, the holding plates are disposed at one side of the base.
The adjustable plate is formed on one side thereof with at least one spiral channel, the adjustable plate is disposed at one side of each of the holding plates, and the button of the holding plates is received in the spiral channel of the adjustable plate.
The limiting unit has a first limiting portion disposed on the base and a second limiting portion disposed on the holding plates, the first and second limiting portions cooperate with each other to limit the holding plates to move linearly, and rotating the adjustable plate can drive the holding plates to move by the cooperation of the spiral channel and the button, and via the limiting unit.
The adjustable holder for electronic devices in accordance with the present invention can be easily adjusted to fit different sized electronic devices simply by rotating the adjustable plate to adjust the distance between the two holding plates.
The present invention will be clearer from the following description when viewed together with the accompanying drawings, which show, for purpose of illustrations only, the preferred embodiment in accordance with the present invention.
Referring to
The base 20 is formed on one side thereof with an extending flange 21 and two inserting holes 24 in the flange 21.
Each of the holding plates 30 includes a semicircle edge 31 and two opposite holding portions 33. One of the holding plates 30 is formed with a window 36. The holding plates 30 are disposed at one side of the base 20 in such a manner that the semicircle edges 31 are pressed against the flange 21 of the base 20, and the holding portions 33 of the holding plates 30 are used to hold the corners of an electronic device A. The logo of the electronic device A can be exposed via the space defined by the two semicircle edges 31 of the two holding plates 30, and the model number of the electronic device A can be seen via the window 36.
The adjustable plate 40 includes a central hole 41 and a plurality of engaging teeth 411 formed on an inner surface of the central hole 41. One side of the adjustable plate 40 is formed two symmetrically arranged spiral channels 42, each of the spiral channels 42 includes a first end 421 and a second end 422, and the second end 422 is located further away from the periphery of the central hole 41 than the first end 421, as shown in
The locking disc 60 is fastened to the base 20 by the locking member 50.
The locking member 50 includes two wing portions 51, each respectively formed on two ends of the locking member 50, a plurality of locking teeth 52 and a plurality of flexible hook portions 53. At the end of each of the hook portions 53 is formed a hook 531. The locking member 50 is formed with an engaging groove 54.
The locking disc 60 includes an annular body 61 and an annular press flange 62 extending out of the annular body 61. The annular press flange 62 is formed with an engaging portion 63 which extends to the annular body 61 to form a limiting surface 631. The engaging portion 63 is formed with an engaging slot 611 for receiving the wing portions of the locking member 50. The locking member 50 is inserted through the engaging portion 63 and into the base 20 in such a manner that the locking member 50 is abutted against the limiting surface 631 with the wing portions 51 received in the engaging slot 611, the engaging portion 63 is engaged in the engaging groove 54 of the locking member 50, the hook portions 53 of the locking member 50 are inserted through the two inserting holes 24 of the base 20 and have the hooks 531 hooked to the base 20, as shown in
The limiting unit 70 includes a first limiting portion 71 disposed on the base 20 and a second limiting portion 72 disposed on the holding plates 30. The first and second limiting portions 71, 72 cooperate with each other to limit the holding plates 30 to move linearly. Rotating the adjustable plate 40 can drive the holding plates 30 to move linearly via the cooperation of the spiral channels 42 and the buttons 34, and then the holding plates 30 are restricted by the limiting unit 70 to perform linear movement on the base 20.
The first limiting portion 71 in this preferred embodiment takes the form of four protrusions 71A arranged in pairs in a matrix manner around the periphery of the base 20. The second limiting portion 72 takes the form of apertures 72A formed in the holding plates 30. In this embodiment, two apertures 72A are respectively located at both sides of the button 34 of each of the holding plates 30, the apertures 72A on one of the holding plates 30 are elongated apertures, and the apertures 72A on another one of the holding plates 30 are elongated or round apertures.
The first limiting portion 71 can also take the form of two opposed guiding surfaces 71B disposed on the base 20, the second limiting portion 72 can also take the form of two opposed edges 72B respectively on each of the holding plates 30 for abutting against the guiding surfaces 71B, and the semicircle edge 31 of each of the holding plates 30 have two ends connected to the opposed edges 72B.
When the apertures 72A of the holding plates 30 are engaged with the protrusions 71A of the base 20, the opposed edges 72B on each of the holding plates 30 will rest against the guiding surfaces 71B to restrict the two holding plates 30 to perform linear movement on the base 20.
When in use, as shown in
In order to adjust the distance between the two holding plates 30 to fit different sized electronic devices, the locking member 50 must be switched from the previous locked position to an unlocking position by applying pulling force to the engaging groove 54 of the locking member 50 to push the locking member 50 to move outward from the inner surface of the locking disc 60. When the locking member 50 moves outward, the hook portions 53 of the locking member 50 will be disengaged from the base 20 to make the locking teeth 52 disengage from the engaging teeth 411 of the adjustable plate 40, so that the adjustable plate 40 can be switched.
Since the adjustable plate 40 is now rotatable, as shown in
Referring then to
In general, the adjustable holder for electronic devices in accordance with the present invention can be easily adjusted to fit different sized electronic devices simply by rotating the adjustable plate 40 to adjust the distance between the two holding plates 30.
While we have shown and described various embodiments in accordance with the present invention, it is clear to those skilled in the art that further embodiments may be made without departing from the scope of the present invention.