This application claims the priority benefit of Taiwanese application serial no. 110117950, filed on May 18, 2021. The entirety of the above-mentioned patent application is hereby incorporated by reference herein and made a part of this specification.
The present disclosure relates to an electronic device, in particular to an electronic device with a camera anti-peeping structure.
In order to prevent hackers from peeping through the cameras disposed on the electronic devices such as notebook computers or mobile devices, a variety of anti-peeping structures that can be additionally assembled in front of the cameras of the electronic devices or disposed on the main bodies of the notebook computers have been developed. Some of the camera anti-peeping structures are actuated by being fixed to the back of the main bodies and manually pushed by the users to open and close, and the anti-peeping pieces for blocking are directly exposed outside the screen.
However, since the existing anti-peeping structure needs to be actuated by sliding, the size and sliding stroke of the anti-peeping piece need to be taken into account for the sliding space required inside, so a lot of internal space will be occupied, which will increase the design difficulty for electronic devices with limited space. Additionally, the anti-peeping structure needs to be fixed to the main body from the inside, so the area with the anti-peeping structure will have the problem of obvious wide bezel in appearance. Furthermore, it is difficult for the traditional anti-peeping piece to be waterproof. Since the camera and the screen structure are independent, in the waterproof structure design, it is necessary to make the waterproof structure separately for the periphery of the screen and the periphery of the camera at the same time. With the trend to make things smaller and functions diversified in the market, the difficulty of designing and manufacturing will be greatly increased if the whole device is small in size and has a high level of waterproof/dustproof (IP67 or above) and anti-peeping functions at the same time.
In view of the above, an embodiment of the present disclosure provides an electronic device with a camera anti-peeping structure, including a main body, a camera and an anti-peeping structure. The camera is disposed in the main body. The anti-peeping structure is disposed at a side of the camera and includes a mounting member, a sliding member and an anti-peeping piece. The mounting member is disposed on the main body and includes a groove. The sliding member is slidably disposed in the groove and movable between a first position and a second position. The sliding member includes a first magnet. The anti-peeping piece has a first end and a second end opposite to each other and includes a second magnet disposed at the first end. The first end is pivotally connected to the mounting member. The second end is pivotable based on the first end as an axis to cover or expose the camera. When the sliding member moves to the first position, the first magnet attracts the second magnet such that the second end of the anti-peeping piece pivots toward the sliding member to expose the camera. When the sliding member moves to the second position, the first magnet repels the second magnet such that the second end of the anti-peeping piece pivots away from the sliding member to cover the camera.
Based on the above, by disposing the anti-peeping piece actuated by rotation, the electronic device with a camera anti-peeping structure according to this embodiment of the present disclosure can effectively reduce the movement space required for the anti-peeping piece to move to cover the camera.
Various embodiments are described below in detail. However, the embodiments are merely used as examples for description and are not intended to narrow the protection scope of the present disclosure. In addition, some elements are omitted in the drawings in the embodiments to clearly show the technical features of the present disclosure. The same reference numerals are used to indicate the same or similar elements in all of the drawings.
In this embodiment, the electronic device 100 includes a main body 10, a camera 20 and an anti-peeping structure 30. The main body 10 includes a case 11 and a display panel 12. The display panel 12 is assembled and exposed on the case 11. In this embodiment, the display panel 12 is roughly distributed on a side surface of the case 11. The camera 20 is disposed in the main body 10, and the camera 20 is made visible through the display panel 12. As can be seen from
The sliding member 32 is slidably disposed in the groove 313 and movable between a first position (as shown in
The anti-peeping piece 33 includes a first end 331 and a second end 332 opposite to each other and a second magnet 333 disposed at the first end 331. The first end 331 is pivotally connected to the second surface 312 of the mounting member 31 and corresponds to an end of the groove 313. In this embodiment, a pivoting member 314 protrudes from the second surface 312, and the first end 331 of the anti-peeping piece 33 is pivotally disposed on the pivoting member 314, so that the anti-peeping piece 33 can pivot with the first end 331 as an axis.
As can be seen from
Thereby, by disposing the anti-peeping piece 33 actuated by rotation, the electronic device 100 with a camera anti-peeping structure according to this embodiment can effectively reduce the movement space required for the anti-peeping piece 33 to move to cover the camera 20. Since the anti-peeping piece 33 is disposed inside the main body 10 and not exposed on the front display surface, the display panel 12 can realize full-screen design, and the bezel can be effectively reduced, thereby realizing bezel-less design on the display surface.
As can be further seen from
For convenience of description, in this embodiment, a first direction is the X-axis direction, a second direction is the Y-axis direction perpendicular to the X-axis direction (first direction), and a third direction is the Z-axis direction perpendicular to the first direction and the second direction respectively. As can be seen from
As can be seen from
Similarly, the magnetic poles of the second magnet 333 are respectively located on an upper side 3331 and a lower side 3332 of the second magnet 333 along the first direction. For example, the upper side 3331 of the second magnet 333 is an S pole, and the lower side 3332 of the second magnet 333 is an N pole. In this embodiment, the magnetic pole of the first magnet 321 on the side (that is, the lower side 3212) adjacent to the camera 20 and the magnetic pole of the second magnet 333 on the side (that is, the lower side 3332) adjacent to the camera 20 are set as the same magnetic pole, for example, N pole.
In this configuration, it can be verified by actual operations that when the sliding member 32 moves to the first position, the N pole on the lower side 3212 of the first magnet 321 attracts the S pole on the upper side 3331 of the second magnet 333, so that the anti-peeping piece 33 can be attracted upward, which makes the second end 332 pivot toward the sliding member 32 to expose the camera 20. While the sliding member 32 is being pushed to the second position, the magnetic field generated by the first magnet 321 repels the magnetic field generated by the second magnet 333, so that the anti-peeping piece 33 is pushed against by the magnetic force, which makes the second end 332 pivot away from the sliding member 32 to cover the camera 20.
In other implementations, the upper side 3211 of the first magnet 321 may be set as the N pole and the lower side 3212 as the S pole, and the upper side 3331 of the second magnet 333 may be set as the N pole and the lower side 3332 as the S pole. As long as the magnetic pole on the side (that is, the lower side 3212) of the first magnet 321 and the magnetic pole on the side (that is, the lower side 3332) of the second magnet 333 adjacent to the camera 20 are set as the same magnetic poles.
Next, referring to
The magnetic poles of the first magnet 321a and the second magnet 333a are respectively located on two sides of the first magnet 321a and the second magnet 333a along the second direction. For example, a right side 3211a of the first magnet 321a is an N pole, and a left side 3212a of the first magnet 321a is an S pole. Similarly, the magnetic poles of the second magnet 333a are respectively located on a right side 3331a and a left side 3332a of the second magnet 333a along the second direction. For example, the right side 3331a of the second magnet 333a is an S pole, and the left side 3332a of the second magnet 333a is an N pole.
In this embodiment, the magnetic poles on the side (that is, the right side 3211a) of the first magnet 321a away from the operating portion 323 and on the side (that is, the right side 3331a) of the second magnet 333a facing the first end 331 of the anti-peeping piece 33 are set as opposite magnetic poles (one is the N pole and the other is the S pole). In this configuration, when the sliding member 32 moves to the first position, the N pole on the right side 3211a of the first magnet 321a attracts the S pole on the right side 3331a of the second magnet 333a, so that the anti-peeping piece 33 can be attracted to pivot upward, which makes the second end 332 pivot toward the sliding member 32 to expose the camera 20. While the sliding member 32 is being pushed to the second position, the N pole on the right side 3211a of the first magnet 321a gradually approaches the N pole on the left side 3332a of the second magnet 333a and then repels the second magnet 333a, so that the anti-peeping piece 33 is pushed against by the magnetic force, which makes the second end 332 move away from the sliding member 32 to cover the camera 20.
In other implementations, the right side 3211a of the first magnet 321a may be set as the S pole and the left side 3212a as the N pole, and the right side 3331a of the second magnet 333a may be set as the N pole and the left side 3332a as the S pole. As long as the magnetic poles on the side (that is, the right side 3211a) of the first magnet 321a away from the operating portion 323 and on the side (that is, the right side 3331a) of the second magnet 333a facing the first end 331 of the anti-peeping piece 33 are set as opposite magnetic poles.
Based on the above, by disposing the anti-peeping piece 33 actuated by rotation, the electronic device 100 with a camera anti-peeping structure according to the embodiments of the present disclosure can effectively reduce the movement space required for the anti-peeping piece 33 to move to cover the camera 20. Since the anti-peeping piece 33 is disposed inside the main body 10 and not exposed on the front display surface, the display panel 12 can realize full-screen design, and the bezel can be effectively reduced, thereby realizing bezel-less design on the display surface.
Number | Date | Country | Kind |
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110117950 | May 2021 | TW | national |