Portable Electronic Device and Movable Lens Occlusion Module
The activity-based camera cover mechanism for portable devices uses magnetic interactions to align or conceal the camera lens, addressing privacy concerns by allowing selective exposure or concealment.
Patent Information
- Application Number
- CN202010419481.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2020-05-18
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2040-05-18
AI Technical Summary
Existing laptop lenses cannot be blocked, causing users’ personal privacy to be exposed to danger.
The movable lens occlusion module is adopted, including a magnetic field generator, a rotary drive assembly and a mobile occlusion assembly, to control the movement of the occlusion to expose or obstruct the lens by magnetic force.
It realizes controllable nudity and occlusion of the lens, protects personal privacy and avoids unnecessary exposure.
Smart Images

Figure CN113688441B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to a portable electronic device and a movable lens shielding module thereof, and more particularly to a portable electronic device and a movable lens shielding module thereof for selectively exposing or shielding a lens. Background Art
[0002] In the prior art, the lens equipped on a laptop computer is continuously exposed and cannot be shielded, resulting in the user's personal privacy being exposed to danger for a long time. Summary of the Invention
[0003] The technical problem to be solved by the present invention is to provide a portable electronic device and a movable lens shielding module thereof in view of the deficiencies of the prior art.
[0004] To solve the above technical problem, one of the technical solutions adopted by the present invention is to provide a movable lens shielding module, which includes: a magnetic field generator, a rotary driving assembly, and a movable shielding assembly. The rotary driving assembly includes a rotatable magnetic member adjacent to the magnetic field generator and a rotatable driving member fixed on the rotatable magnetic member, and the rotatable driving member includes a first driving rod and a second driving rod. The movable shielding assembly includes a first shielding member and a second shielding member which are overlapped with each other. The first shielding member includes a first lens opening corresponding to a lens and a first accommodating groove for accommodating the first driving rod, and the second shielding member includes a second lens opening corresponding to the first lens opening and a second accommodating groove for accommodating the second driving rod. Wherein, when the rotatable magnetic member and the rotatable driving member move synchronously by a magnetic force generated by the magnetic field generator, the first shielding member and the second shielding member move in two opposite directions respectively driven by the first driving rod and the second driving rod, so that the first lens opening and the second lens opening coincide with each other to expose the lens, or the first lens opening and the second lens opening do not coincide with each other so that the lens is shielded by the movable shielding assembly.
[0005] Further, when a magnetic repulsive force generated by the magnetic field generator pushes the rotatable magnetic member to move, the rotatable driving member is driven by the rotatable magnetic member to rotate counterclockwise by a predetermined angle, and the first shielding member and the second shielding member respectively perform two opposite linear movements driven by the first driving rod and the second driving rod until the first lens opening of the first shielding member coincides with the second lens opening of the second shielding member to expose the lens; wherein, when a magnetic attractive force generated by the magnetic field generator attracts the rotatable magnetic member to move, the rotatable driving member is driven by the rotatable magnetic member to rotate clockwise by the predetermined angle, and the first shielding member and the second shielding member respectively perform two opposite linear movements driven by the first driving rod and the second driving rod until the first lens opening of the first shielding member does not coincide with the second lens opening of the second shielding member, so that the lens is shielded by the first shielding member and the second shielding member.
[0006] Further, the movable lens shielding module further includes: a housing structure, an elastic stopper, and an electrode assembly. The housing structure includes a base body, a bottom cover detachably disposed on a bottom end of the base body, and a top cover detachably disposed on a top end of the base body. The base body includes a base opening corresponding to the lens, and the top cover includes a cover opening corresponding to the base opening. The elastic stopper is disposed inside the base body to limit the rotation angle of the rotatable driving member. The electrode assembly is disposed on the base body and partially covered by the top cover. The electrode assembly includes a first conductive pin electrically connected to the magnetic field generator and a second conductive pin electrically connected to the magnetic field generator. Wherein, an image extraction module including the lens is disposed on a circuit board, and the base body includes two fixing portions disposed on the circuit board and a connecting portion connecting between the two fixing portions and spanning the image extraction module. Wherein, the magnetic field generator and the rotary driving assembly are both disposed inside the base body and completely covered by the bottom cover, and the movable shielding assembly is disposed on the top of the base body and partially covered by the top cover. Wherein, the base body includes a plurality of guiding columns disposed on the top. The first shielding member has a plurality of first linear guiding grooves, the second shielding member has a plurality of second linear guiding grooves, and each of the guiding columns passes through both the first linear guiding groove and the second linear guiding groove, or passes through one of the first linear guiding groove and the second linear guiding groove. Wherein, the base body includes a first arc-shaped guiding groove corresponding to the first accommodating groove and a second arc-shaped guiding groove corresponding to the second accommodating groove. The first arc-shaped guiding groove and the second arc-shaped guiding groove are symmetrically arranged, and the first driving rod and the second driving rod are respectively movably disposed in the first arc-shaped guiding groove and the second arc-shaped guiding groove.
[0007] Further, the rotary driving assembly includes a fixed shaft disposed between the base body and the bottom cover, and the fixed shaft passes through the rotatable magnetic member and the rotatable driving member, so that the rotatable magnetic member and the rotatable driving member rotate a predetermined angle relative to the fixed shaft; wherein, the rotatable driving member includes a mating portion disposed inside the rotatable magnetic member and cooperating with the rotatable magnetic member, and a limiting portion disposed on the mating portion, and the first driving rod and the second driving rod are both disposed on the limiting portion; wherein, the limiting portion has an arc-shaped limiting groove which movably accommodates the elastic stopper, so that the rotation angle of the rotatable driving member is limited by the elastic stopper.
[0008] To solve the above technical problems, another technical solution adopted by the present invention is to provide a movable lens shielding module, which includes: a magnetic field generator, a rotary driving component, and a movable shielding component. The rotary driving component includes a rotatable magnetic member adjacent to the magnetic field generator and a rotatable driving member fixed on the rotatable magnetic member, and the rotatable driving member includes at least one driving rod. The movable shielding component includes at least one shielding member, and the at least one shielding member includes a lens opening corresponding to a lens and a receiving groove for receiving the at least one driving rod. Wherein, when the rotatable magnetic member and the rotatable driving member move synchronously by a magnetic force generated by the magnetic field generator, the at least one shielding member moves in a straight line direction driven by the at least one driving rod, so that the lens is exposed by the lens opening or shielded by the at least one shielding member.
[0009] Further, when a magnetic repulsive force generated by the magnetic field generator pushes the rotatable magnetic member to move, the rotatable driving member rotates a predetermined angle counterclockwise driven by the rotatable magnetic member, and the at least one shielding member moves linearly driven by the at least one driving rod until the lens is exposed by the lens opening of the at least one shielding member; wherein, when a magnetic attractive force generated by the magnetic field generator attracts the rotatable magnetic member to move, the rotatable driving member rotates the predetermined angle clockwise driven by the rotatable magnetic member, and the at least one shielding member moves linearly driven by the at least one driving rod until the lens is shielded by the at least one shielding member.
[0010] To solve the above technical problems, another technical solution adopted by the present invention is to provide a portable electronic device, which includes an image extraction component. The image extraction component includes an image extraction module and a movable lens shielding module, and the image extraction module includes a lens that cooperates with the movable lens shielding module. The movable lens shielding module includes: a magnetic field generator, a rotary driving component, and a movable shielding component. The rotary driving component includes a rotatable magnetic member adjacent to the magnetic field generator and a rotatable driving member fixed on the rotatable magnetic member, and the rotatable driving member includes a first driving rod and a second driving rod. The movable shielding component includes a first shielding member and a second shielding member that are overlapped with each other. The first shielding member includes a first lens opening corresponding to a lens and a first accommodating groove for accommodating the first driving rod, and the second shielding member includes a second lens opening corresponding to the first lens opening and a second accommodating groove for accommodating the second driving rod. Wherein, when the rotatable magnetic member and the rotatable driving member move synchronously by a magnetic force generated by the magnetic field generator, the first shielding member and the second shielding member move in two opposite directions respectively through the driving of the first driving rod and the second driving rod, so that the first lens opening and the second lens opening coincide with each other to expose the lens, or the first lens opening and the second lens opening do not coincide with each other so that the lens is shielded by the movable shielding component.
[0011] Further, when a magnetic repulsive force generated by the magnetic field generator pushes the rotatable magnetic member to move, the rotatable driving member rotates counterclockwise by a predetermined angle through the driving of the rotatable magnetic member, and the first shielding member and the second shielding member perform two opposite linear movements respectively through the driving of the first driving rod and the second driving rod until the first lens opening of the first shielding member coincides with the second lens opening of the second shielding member to expose the lens; wherein, when a magnetic attractive force generated by the magnetic field generator attracts the rotatable magnetic member to move, the rotatable driving member rotates clockwise by the predetermined angle through the driving of the rotatable magnetic member, and the first shielding member and the second shielding member perform two opposite linear movements respectively through the driving of the first driving rod and the second driving rod until the first lens opening of the first shielding member and the second lens opening of the second shielding member do not coincide with each other, and the lens is shielded by the first shielding member and the second shielding member.
[0012] Further, the movable lens shielding module further includes: a housing structure, an elastic stop member, and an electrode assembly. The housing structure includes a base body, a bottom cover detachably disposed on a bottom end of the base body, and a top cover detachably disposed on a top end of the base body. The base body includes a base opening corresponding to the lens, and the top cover includes a cover opening corresponding to the base opening. The elastic stop member is disposed inside the base body to limit the rotation angle of the rotatable driving member. The electrode assembly is disposed on the base body and partially covered by the top cover. The electrode assembly includes a first conductive pin electrically connected to the magnetic field generator and a second conductive pin electrically connected to the magnetic field generator. Wherein, the image extraction module is disposed on a circuit board, and the base body includes two fixing portions disposed on the circuit board and a connecting portion connecting between the two fixing portions and spanning the image extraction module. Wherein, the magnetic field generator and the rotary driving assembly are both disposed inside the base body and completely covered by the bottom cover, and the movable shielding assembly is disposed on the top end of the base body and partially covered by the top cover. Wherein, the base body includes a plurality of guiding columns disposed on the top end. The first shielding member has a plurality of first linear guiding grooves, the second shielding member has a plurality of second linear guiding grooves, and each of the guiding columns passes through both the first linear guiding groove and the second linear guiding groove, or passes through one of the first linear guiding groove and the second linear guiding groove. Wherein, the base body includes a first arc-shaped guiding groove corresponding to the first accommodating groove and a second arc-shaped guiding groove corresponding to the second accommodating groove. The first arc-shaped guiding groove and the second arc-shaped guiding groove are symmetrically arranged, and the first driving rod and the second driving rod are respectively movably disposed in the first arc-shaped guiding groove and the second arc-shaped guiding groove.
[0013] Further, the rotary driving assembly includes a fixed shaft disposed between the base body and the bottom cover, and the fixed shaft passes through the rotatable magnetic member and the rotatable driving member, so that the rotatable magnetic member and the rotatable driving member rotate a predetermined angle relative to the fixed shaft; wherein, the rotatable driving member includes a mating portion disposed inside the rotatable magnetic member and cooperating with the rotatable magnetic member and a limiting portion disposed on the mating portion, and the first driving rod and the second driving rod are both disposed on the limiting portion; wherein, the limiting portion has an arc-shaped limiting groove, and the arc-shaped limiting groove movably accommodates the elastic stop member, so that the rotation angle of the rotatable driving member is limited by the elastic stop member.
[0014] One of the beneficial effects of the present invention is that for the portable electronic device and the movable lens shielding module provided by the present invention, through the technical solutions of "the rotary driving assembly includes a rotatable magnetic member adjacent to the magnetic field generator and a rotatable driving member fixed on the rotatable magnetic member, and the rotatable driving member includes at least one driving rod (for example, including a first driving rod and a second driving rod)" and "the movable shielding assembly includes at least one shielding member (for example, including a first shielding member and a second shielding member arranged overlapping each other), and the at least one shielding member includes a lens opening corresponding to a lens and a receiving groove for receiving the at least one driving rod (for example, the first shielding member includes a first lens opening corresponding to a lens and a first receiving groove for receiving the first driving rod, and the second shielding member includes a second lens opening corresponding to the first lens opening and a second receiving groove for receiving the second driving rod)", the rotatable magnetic member and the rotatable driving member can move synchronously by a magnetic force generated by the magnetic field generator, and the at least one shielding member can move in a straight line direction driven by the at least one driving rod, thereby enabling the lens to be exposed by the lens opening or shielded by the at least one shielding member (for example, the first shielding member and the second shielding member move in two opposite directions respectively driven by the first driving rod and the second driving rod, so that the first lens opening and the second lens opening coincide with each other to expose the lens, or the first lens opening and the second lens opening do not coincide with each other so that the lens is shielded by the movable shielding assembly).
[0015] To further understand the features and technical content of the present invention, please refer to the following detailed description and drawings of the present invention. However, the provided drawings are only for reference and illustration, and are not used to limit the present invention. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 is an exploded view of the movable lens shielding module provided by the present invention.
[0017] Figure 2 is a partial exploded view of the movable lens shielding module provided by the present invention.
[0018] Figure 3 is an assembled view of the movable lens shielding module provided by the present invention.
[0019] Figure 4 is another exploded view of the movable lens shielding module provided by the present invention.
[0020] Figure 5Another exploded view of the movable lens shielding module provided by the present invention.
[0021] Figure 6 Another combined view of the movable lens shielding module provided by the present invention.
[0022] Figure 7 A top view (the top cover is temporarily removed) of the movable lens shielding module provided by the present invention before the rotatable driving member rotates a predetermined angle counterclockwise driven by the rotatable magnetic member (or after the rotatable driving member rotates a predetermined angle clockwise driven by the rotatable magnetic member).
[0023] Figure 8 A top view (the top cover is temporarily removed) of the movable lens shielding module provided by the present invention when the rotatable driving member rotates a predetermined angle counterclockwise driven by the rotatable magnetic member (or when the rotatable driving member rotates a predetermined angle clockwise driven by the rotatable magnetic member).
[0024] Figure 9 A top view (the top cover is temporarily removed) of the movable lens shielding module provided by the present invention after the rotatable driving member rotates a predetermined angle counterclockwise driven by the rotatable magnetic member (or before the rotatable driving member rotates a second predetermined angle clockwise driven by the rotatable magnetic member).
[0025] Figure 10 A side view of the image extraction component provided by the present invention.
[0026] Figure 11 A three-dimensional view of the portable electronic device using the image extraction component provided by the present invention. Detailed implementation manners
[0027] The following are specific embodiments to illustrate the implementation manners of the present invention regarding "portable electronic device and its movable lens shielding module". Those skilled in the art can understand the advantages and effects of the present invention from the content disclosed in this specification. The present invention can be implemented or applied through other different specific embodiments, and various details in this specification can also be modified and changed based on different viewpoints and applications without departing from the concept of the present invention. Additionally, the drawings of the present invention are only simple schematic illustrations and are not drawn according to actual dimensions, hereby declared in advance. The following implementation manners will further elaborate on the related technical content of the present invention, but the disclosed content is not intended to limit the protection scope of the present invention. In addition, the term "or" used herein should, depending on the actual situation, possibly include any one or a combination of more of the associated listed items.
[0028] Refer to Figures 1 to 10 As shown, the present invention provides a movable lens shielding module S, which at least includes: a magnetic field generator S1, a rotary driving component S2, and a movable shielding component S3.
[0029] First, in cooperation with Figure 1 , Figure 2 , Figure 4 and Figure 5 As shown, the rotary driving component S2 includes a rotatable magnetic member 1 adjacent to the magnetic field generator S1 and a rotatable driving member 2 fixed on the rotatable magnetic member 1, and the rotatable driving member 2 includes a first driving rod 21 and a second driving rod 22. For example, the rotatable driving member 2 includes a mating portion 23 disposed within and cooperating with the rotatable magnetic member 1 and a limiting portion 24 disposed on the mating portion 23, and both the first driving rod 21 and the second driving rod 22 are disposed on the limiting portion 24. It should be noted that an arc-shaped limiting groove 2400 is provided on the outer periphery of the limiting portion 24. However, the above examples are only one feasible embodiment and are not intended to limit the present invention.
[0030] Furthermore, in cooperation with Figure 1 , Figure 2 , Figure 4 , Figure 5 , Figure 7 and Figure 10 As shown, the movable shielding component S3 includes a first shielding member 3 and a second shielding member 4 which are overlapped and arranged. Further, the first shielding member 3 includes a first lens opening 3001 corresponding to a lens L and a first receiving groove 3002 for receiving the first driving rod 21, and the second shielding member 4 includes a second lens opening 4001 corresponding to the first lens opening 3001 and a second receiving groove 4002 for receiving the second driving rod 22. For example, the first receiving groove 3002 has a long strip-shaped space, so the first driving rod 21 can move within the first receiving groove 3002, and the second receiving groove 4002 has a long strip-shaped space, so the second driving rod 22 can move within the second receiving groove 4002. In addition, the first shielding member 3 has a plurality of first linear guiding grooves 3003, and the second shielding member 4 has a plurality of second linear guiding grooves 4003. It should be noted that the first shielding member 3 is in a long strip shape and has an upper notch for avoiding the first driving rod 21 and not colliding with the first driving rod 21. The second shielding member 4 is in a long strip shape and has a lower notch for avoiding the second driving rod 22 and not colliding with the second driving rod 22. However, the above examples are only one feasible embodiment and are not intended to limit the present invention.
[0031] For example, in cooperation with Figures 1 to 6 andFigure 10 As shown, the movable lens shielding module S of the present invention further includes a housing structure 5. Further, the housing structure 5 includes a base body 51, a bottom cover 52 detachably disposed on a bottom end of the base body 51, and a top cover 53 detachably disposed on a top end of the base body 51. Additionally, the base body 51 includes a base opening 5100 corresponding to the lens L, and the top cover 53 includes a cover opening 5300 corresponding to the base opening 5100. However, the above examples are only one possible embodiment and are not intended to limit the present invention.
[0032] For example, in coordination with Figures 1 to 6 As shown, the magnetic field generator S1 and the rotary driving assembly S2 are both disposed within the base body 51 and completely covered by the bottom cover 52, and the movable shielding assembly S3 is disposed on the top end of the base body 51 and partially covered by the top cover 53. Furthermore, the base body 51 includes a plurality of guiding columns 511 disposed on the top end, and each guiding column 511 passes through both the first linear guiding groove 3003 and the second linear guiding groove 4003, or passes through one of the first linear guiding groove 3003 and the second linear guiding groove 4003, so that the moving spaces of the first shielding member 3 and the second shielding member 4 are restricted by the plurality of guiding columns 511. Additionally, the base body 51 includes a first arc-shaped guiding groove 5101 corresponding to the first accommodating groove 3002 and a second arc-shaped guiding groove 5102 corresponding to the second accommodating groove 4002. The first arc-shaped guiding groove 5101 and the second arc-shaped guiding groove 5102 are symmetrically arranged, and the first driving rod 21 and the second driving rod 22 are respectively movably disposed within the first arc-shaped guiding groove 5101 and the second arc-shaped guiding groove 5102, so that the moving spaces of the first driving rod 21 and the second driving rod 22 are respectively restricted by the first arc-shaped guiding groove 5101 and the second arc-shaped guiding groove 5102. However, the above examples are only one possible embodiment and are not intended to limit the present invention.
[0033] For example, in coordination with Figure 1 、 Figure 2 、 Figure 4 and Figure 5 As shown, the rotary driving assembly S2 further includes a fixed shaft 8 disposed between the base body 51 and the bottom cover 52, and two opposite end portions of the fixed shaft 8 are respectively fixed to the base body 51 and the bottom cover 52. Additionally, the fixed shaft 8 passes through the rotatable magnetic member 1 and the rotatable driving member 2, so that the rotatable magnetic member 1 and the rotatable driving member 2 can rotate a predetermined angle (for example, between 35 and 55 degrees) relative to the fixed shaft 8. However, the above examples are only one possible embodiment and are not intended to limit the present invention.
[0034] For example, in conjunction with Figures 1 to 6 as shown, the movable lens shielding module S of the present invention further includes an elastic stopper 6 and an electrode assembly 7. Further, the elastic stopper 6 is disposed inside the base body 51 for restricting the rotation angle of the rotatable driving member 2 (that is, the arc-shaped limiting groove 2400 movably accommodates the elastic stopper 6 so that the rotation angle of the rotatable driving member 2 is restricted by the elastic stopper 6). In addition, the electrode assembly 7 is disposed on the base body 51 and is partially covered by the top cover 53. The electrode assembly 7 includes a first conductive pin 71 electrically connected to the magnetic field generator S1 and a second conductive pin 72 electrically connected to the magnetic field generator S1, and the first conductive pin 71 and the second conductive pin 72 are respectively electrically connected to two opposite ends of the coil. Additionally, the magnetic field generator S1 can be an electromagnet, and the magnetic field generator S1 includes a bracket, an iron core passing through the bracket, and a coil disposed around the bracket. However, the above examples are only one feasible embodiment and are not intended to limit the present invention.
[0035] Thereby, in conjunction with Figures 7 to 10 as shown, when the rotatable magnetic member 1 and the rotatable driving member 2 move synchronously by a magnetic force generated after the magnetic field generator S1 is energized, the first shielding member 3 and the second shielding member 4 can be respectively driven by the first driving rod 21 and the second driving rod 22 to move in two opposite directions, so that the first lens opening 3001 and the second lens opening 4001 coincide with each other to expose the lens L (as Figure 9 shown), or the first lens opening 3001 and the second lens opening 4001 do not coincide with each other so that the lens L is shielded by the movable shielding assembly S3 (as Figure 7 shown).
[0036] For example, in sequence in conjunction with Figure 7 、 Figure 8 and Figure 9 as shown, when a magnetic repulsive force generated by the magnetic field generator S1 pushes the rotatable magnetic member 1 to move, the rotatable driving member 2 can be driven by the rotatable magnetic member 1 to rotate counterclockwise by a predetermined angle (in the direction of the counterclockwise solid arrow as Figures 7 to 9 shown), and the first shielding member 3 and the second shielding member 4 can be respectively driven by the first driving rod 21 and the second driving rod 22 to perform two opposite linear movements (in the directions of the right and left solid arrows as Figures 7 to 9 shown), until the first lens opening 3001 of the first shielding member 3 coincides with the second lens opening 4001 of the second shielding member 4 to expose the lens L (as Figure 9 and Figure 10 shown). It should be noted that as Figure 9As shown, the rotatable driving member 2 will be blocked by the elastic stopper 6 and cannot rotate counterclockwise any further, so that the counterclockwise rotation angle of the rotatable driving member 2 is limited by the elastic stopper 6. However, the above example is only one possible embodiment and is not intended to limit the present invention.
[0037] For example, in sequential cooperation Figure 9 , Figure 8 and Figure 7 As shown, when a magnetic attraction force generated by the magnetic field generator S1 attracts the rotatable magnetic member 1 to move, the rotatable driving member 2 can be driven by the rotatable magnetic member 1 to rotate clockwise by a predetermined angle (such as Figures 7 to 9 the direction of the clockwise dashed arrow shown), and the first shielding member 3 and the second shielding member 4 can respectively perform two opposite linear movements driven by the first driving rod 21 and the second driving rod 22 (such as Figures 7 to 9 the directions of the rightward and leftward dashed arrows shown), until the first lens opening 3001 of the first shielding member 3 and the second lens opening 4001 of the second shielding member 4 do not overlap with each other, and the lens L is blocked by the first shielding member 3 and the second shielding member 4 (such as Figure 7 and Figure 10 shown). It should be noted that, as Figure 7 shown, the rotatable driving member 2 will be blocked by the elastic stopper 6 and cannot rotate clockwise any further, so that the clockwise rotation angle of the rotatable driving member 2 is limited by the elastic stopper 6. However, the above example is only one possible embodiment and is not intended to limit the present invention.
[0038] It should be noted that the movable lens shielding module S provided by the present invention includes: a magnetic field generator S1, a rotary driving component S2, and a movable shielding component S3. The rotary driving component S2 includes a rotatable magnetic member 1 adjacent to the magnetic field generator S1 and a rotatable driving member 2 fixed on the rotatable magnetic member 1, and the rotatable driving member 2 includes at least one driving rod (the number is not limited, for example, a first driving rod 21 and a second driving rod 22 are used in cooperation, or only one of the first driving rod 21 and the second driving rod 22 is used). Furthermore, the movable shielding component S3 includes at least one shielding member (the number is not limited, for example, a first shielding member 3 and a second shielding member 4 are used in cooperation, or only one of the first shielding member 3 and the second shielding member 4 is used), and at least one shielding member includes a lens opening corresponding to a lens L and a receiving groove for receiving at least one driving rod. Thus, the rotatable magnetic member 1 and the rotatable driving member 2 can move synchronously by a magnetic force generated by the magnetic field generator S1, and move in a straight line direction by the driving of at least one driving rod, so that the lens L is exposed or shielded by the lens opening. However, the above examples are only one feasible embodiment and are not intended to limit the present invention.
[0039] For example, when a magnetic repulsive force generated by the magnetic field generator S1 pushes the rotatable magnetic member 1 to move, the rotatable driving member 2 can be driven by the rotatable magnetic member 1 to rotate counterclockwise by a predetermined angle, and at least one shielding member can move in a straight line by the driving of at least one driving rod until the lens L is exposed by the lens opening. In addition, when a magnetic attractive force generated by the magnetic field generator S1 attracts the rotatable magnetic member 1 to move, the rotatable driving member 2 can be driven by the rotatable magnetic member 1 to rotate clockwise by a predetermined angle, and at least one shielding member can move in a straight line by the driving of at least one driving rod until the lens L is shielded. However, the above examples are only one feasible embodiment and are not intended to limit the present invention.
[0040] It should be noted that in cooperation with Figure 3 、 Figure 6 and Figure 10As shown, the present invention further provides an image extraction component Z, which includes an image extraction module M and a movable lens shielding module S. Additionally, the image extraction module M includes a lens L that can cooperate with the movable lens shielding module S, and the movable lens shielding module S at least includes a magnetic field generator S1, a rotary driving component S2, and a movable shielding component S3. For example, both the image extraction module M and the movable lens shielding module S are disposed on a circuit board P, and the base body 51 includes two fixing portions 512 disposed on the circuit board P and a connecting portion 513 connecting the two fixing portions 512 and spanning the image extraction module M. However, the above examples are only one feasible embodiment and are not intended to limit the present invention.
[0041] It is worth noting that in cooperation with Figure 10 and Figure 11 As shown, the present invention further provides a portable electronic device, which includes an image extraction component Z disposed on a circuit board P, and the image extraction component Z includes an image extraction module M and a movable lens shielding module S. Additionally, the image extraction module M includes a lens L that can cooperate with the movable lens shielding module S, and the movable lens shielding module S at least includes a magnetic field generator S1, a rotary driving component S2, and a movable shielding component S3. For example, the portable electronic device can be a desktop computer, a laptop computer, or a tablet computer. However, the above examples are only one feasible embodiment and are not intended to limit the present invention.
[0042] [Advantages of the Embodiment]
[0043] One beneficial effect of the present invention is that the portable electronic device and the movable lens shielding module S provided by the present invention can, through the technical solution of "the rotary driving component S2 includes a rotatable magnetic member 1 adjacent to the magnetic field generator S1 and a rotatable driving member 2 fixed on the rotatable magnetic member 1, and the rotatable driving member 2 includes at least one driving rod (for example, includes a first driving rod 21 and a second driving rod 22)" and "the movable shielding component S3 includes at least one shielding member (for example, includes a first shielding member 3 and a second shielding member 4 which are overlapped with each other), and at least one shielding member includes a lens opening corresponding to a lens L and a receiving groove for receiving at least one driving rod (for example, the first shielding member 3 includes a first lens opening 3001 corresponding to a lens L and a first receiving groove 3002 for receiving the first driving rod 21, and the second shielding member 4 includes a second lens opening 4001 corresponding to the first lens opening 3001 and a second receiving groove 4002 for receiving the second driving rod 22)", enable the rotatable magnetic member 1 and the rotatable driving member 2 to move synchronously by a magnetic force generated by the magnetic field generator S1, and enable at least one shielding member to move in a straight line direction driven by at least one driving rod, thereby enabling the lens L to be exposed by the lens opening or blocked by at least one shielding member (for example, the first shielding member 3 and the second shielding member 4 move in opposite directions respectively driven by the first driving rod 21 and the second driving rod 22, so that the first lens opening 3001 and the second lens opening 4001 coincide with each other to expose the lens L, or the first lens opening 3001 and the second lens opening 4001 do not coincide with each other so that the lens L is blocked by the movable shielding component S3).
[0044] The content disclosed above is only the preferred feasible embodiment of the present invention, and does not limit the protection scope of the claims of the present invention. Therefore, all equivalent technical changes made by using the content of the specification and drawings of the present invention are included in the protection scope of the claims of the present invention.
Claims
1. An active lens shielding module, characterized in that The movable lens shielding module includes: A magnetic field generator; A rotary driving assembly, the rotary driving assembly includes a rotatable magnetic member adjacent to the magnetic field generator and a rotatable driving member fixed on the rotatable magnetic member, and the rotatable driving member includes a first driving rod and a second driving rod; A movable shielding assembly, the movable shielding assembly includes a first shielding member and a second shielding member which are overlapped with each other, the first shielding member includes a first lens opening corresponding to a lens and a first accommodating groove for accommodating the first driving rod, and the second shielding member includes a second lens opening corresponding to the first lens opening and a second accommodating groove for accommodating the second driving rod; A housing structure, the housing structure includes a base body, a bottom cover detachably disposed on a bottom end of the base body, and a top cover detachably disposed on a top end of the base body, the base body includes a base opening corresponding to the lens, and the top cover includes a cover opening corresponding to the base opening; An elastic stop member, the elastic stop member is disposed inside the base body to limit the rotation angle of the rotatable driving member; and An electrode assembly, the electrode assembly is disposed on the base body and partially covered by the top cover, the electrode assembly includes a first conductive pin electrically connected to the magnetic field generator and a second conductive pin electrically connected to the magnetic field generator; Wherein, when the rotatable magnetic member and the rotatable driving member move synchronously by a magnetic force generated by the magnetic field generator, the first shielding member and the second shielding member move in two opposite directions respectively driven by the first driving rod and the second driving rod, so that the first lens opening and the second lens opening coincide with each other to expose the lens, or the first lens opening and the second lens opening do not coincide with each other so that the lens is shielded by the movable shielding assembly.
2. The movable lens shielding module according to claim 1, wherein When a magnetic repulsive force generated by the magnetic field generator pushes the rotatable magnetic member to move, the rotatable driving member rotates counterclockwise by a predetermined angle driven by the rotatable magnetic member, and the first shielding member and the second shielding member respectively perform two opposite linear movements driven by the first driving rod and the second driving rod until the first lens opening of the first shielding member coincides with the second lens opening of the second shielding member to expose the lens; wherein, when a magnetic attractive force generated by the magnetic field generator attracts the rotatable magnetic member to move, the rotatable driving member rotates clockwise by the predetermined angle driven by the rotatable magnetic member, and the first shielding member and the second shielding member respectively perform two opposite linear movements driven by the first driving rod and the second driving rod until the first lens opening of the first shielding member does not coincide with the second lens opening of the second shielding member, and the lens is shielded by the first shielding member and the second shielding member.
3. The movable lens shielding module according to claim 1, wherein, The movable lens shielding module further comprises: Wherein, an image extraction module including the lens is disposed on a circuit board, and the base body includes two fixing portions disposed on the circuit board and a connecting portion connecting between the two fixing portions and straddling the image extraction module; Wherein, the magnetic field generator and the rotary driving assembly are both disposed in the base body and completely covered by the bottom cover body, and the movable shielding assembly is disposed on the top end of the base body and partially covered by the top cover body; Wherein, the base body includes a plurality of guiding columns disposed on the top end, the first shielding member has a plurality of first linear guiding grooves, the second shielding member has a plurality of second linear guiding grooves, and each guiding column passes through both the first linear guiding groove and the second linear guiding groove, or passes through one of the first linear guiding groove and the second linear guiding groove; Wherein, the base body includes a first arc-shaped guiding groove corresponding to the first accommodating groove and a second arc-shaped guiding groove corresponding to the second accommodating groove, the first arc-shaped guiding groove and the second arc-shaped guiding groove are symmetrically arranged, and the first driving rod and the second driving rod are respectively movably disposed in the first arc-shaped guiding groove and the second arc-shaped guiding groove.
4. The movable lens shielding module according to claim 3, wherein The rotary driving assembly includes a fixed shaft disposed between the base body and the bottom cover body, and the fixed shaft passes through the rotatable magnetic member and the rotatable driving member, so that the rotatable magnetic member and the rotatable driving member rotate a predetermined angle relative to the fixed shaft; wherein, the rotatable driving member includes a mating portion disposed within the rotatable magnetic member and cooperating with the rotatable magnetic member, and a limiting portion disposed on the mating portion, and the first driving rod and the second driving rod are both disposed on the limiting portion; wherein, the limiting portion has an arc-shaped limiting groove, and the arc-shaped limiting groove movably accommodates the elastic stop member, so that the rotation angle of the rotatable driving member is limited by the elastic stop member.
5. An active lens shielding module, characterized in that, The movable lens shielding module includes: A magnetic field generator; A rotary driving assembly, the rotary driving assembly includes a rotatable magnetic member adjacent to the magnetic field generator and a rotatable driving member fixed to the rotatable magnetic member, the rotatable driving member includes at least one driving rod; A movable shielding assembly, the movable shielding assembly includes at least one shielding member, the at least one shielding member includes a lens opening corresponding to a lens and a receiving groove for receiving the at least one driving rod; A housing structure, the housing structure includes a base body, a bottom cover body detachably disposed on a bottom end of the base body, and a top cover body detachably disposed on a top end of the base body, the base body includes a base opening corresponding to the lens, and the top cover body includes a cover opening corresponding to the base opening; An elastic stop member, the elastic stop member is disposed inside the base body to limit the rotation angle of the rotatable driving member; and An electrode assembly, the electrode assembly is disposed on the base body and partially covered by the top cover body, the electrode assembly includes a first conductive pin electrically connected to the magnetic field generator and a second conductive pin electrically connected to the magnetic field generator; Wherein, when the rotatable magnetic member and the rotatable driving member move synchronously by a magnetic force generated by the magnetic field generator, the at least one shielding member moves in a linear direction driven by the at least one driving rod, so that the lens is exposed by the lens opening or shielded by the at least one shielding member.
6. The movable lens shielding module according to claim 5, characterized in that, When a magnetic repulsive force generated by the magnetic field generator pushes the rotatable magnetic member to move, the rotatable driving member is driven by the rotatable magnetic member to rotate counterclockwise by a predetermined angle, and the at least one shielding member is driven by the at least one driving rod to perform a linear movement until the lens is exposed by the lens opening of the at least one shielding member; wherein, when a magnetic attractive force generated by the magnetic field generator attracts the rotatable magnetic member to move, the rotatable driving member is driven by the rotatable magnetic member to rotate clockwise by the predetermined angle, and the at least one shielding member is driven by the at least one driving rod to perform a linear movement until the lens is shielded by the at least one shielding member.
7. A portable electronic device, which includes an image extraction component. The image extraction component includes an image extraction module and a movable lens shielding module. The image extraction module includes a lens that cooperates with the movable lens shielding module. It is characterized in that, The movable lens shielding module includes: A magnetic field generator; A rotary driving assembly, the rotary driving assembly includes a rotatable magnetic member adjacent to the magnetic field generator and a rotatable driving member fixed on the rotatable magnetic member, the rotatable driving member includes a first driving rod and a second driving rod; A movable shielding assembly, the movable shielding assembly includes a first shielding member and a second shielding member which are overlapped with each other, the first shielding member includes a first lens opening corresponding to a lens and a first accommodating groove for accommodating the first driving rod, the second shielding member includes a second lens opening corresponding to the first lens opening and a second accommodating groove for accommodating the second driving rod; A housing structure, the housing structure includes a base body, a bottom cover detachably disposed on a bottom end of the base body, and a top cover detachably disposed on a top end of the base body, the base body includes a base opening corresponding to the lens, and the top cover includes a cover opening corresponding to the base opening; An elastic stop member disposed inside the base body for limiting the rotation angle of the rotatable driving member; and An electrode assembly disposed on the base body and partially covered by the top cover, the electrode assembly includes a first conductive pin electrically connected to the magnetic field generator and a second conductive pin electrically connected to the magnetic field generator; Wherein, when the rotatable magnetic member and the rotatable driving member move synchronously by a magnetic force generated by the magnetic field generator, the first shielding member and the second shielding member move in opposite directions respectively driven by the first driving rod and the second driving rod, so that the first lens opening and the second lens opening coincide with each other to expose the lens, or the first lens opening and the second lens opening do not coincide with each other so that the lens is shielded by the movable shielding assembly.
8. The portable electronic device according to claim 7, wherein, When a magnetic repulsive force generated by the magnetic field generator pushes the rotatable magnetic member to move, the rotatable driving member is driven by the rotatable magnetic member to rotate counterclockwise by a predetermined angle, and the first shielding member and the second shielding member respectively perform two opposite linear movements driven by the first driving rod and the second driving rod until the first lens opening of the first shielding member coincides with the second lens opening of the second shielding member to expose the lens; wherein, when a magnetic attractive force generated by the magnetic field generator attracts the rotatable magnetic member to move, the rotatable driving member is driven by the rotatable magnetic member to rotate clockwise by the predetermined angle, and the first shielding member and the second shielding member respectively perform two opposite linear movements driven by the first driving rod and the second driving rod until the first lens opening of the first shielding member does not coincide with the second lens opening of the second shielding member, and the lens is shielded by the first shielding member and the second shielding member.
9. The portable electronic device according to claim 7, wherein The movable lens shielding module further comprises: Wherein, the image extraction module is disposed on a circuit board, and the base body includes two fixing portions disposed on the circuit board and a connecting portion connecting between the two fixing portions and straddling the image extraction module; Wherein, the magnetic field generator and the rotary driving assembly are both disposed in the base body and completely covered by the bottom cover body, and the movable shielding assembly is disposed on the top of the base body and partially covered by the top cover body; Wherein, the base body includes a plurality of guiding columns disposed on the top, the first shielding member has a plurality of first linear guiding grooves, the second shielding member has a plurality of second linear guiding grooves, and each guiding column passes through both the first linear guiding groove and the second linear guiding groove, or passes through one of the first linear guiding groove and the second linear guiding groove; Wherein, the base body includes a first arc-shaped guiding groove corresponding to the first accommodating groove and a second arc-shaped guiding groove corresponding to the second accommodating groove, the first arc-shaped guiding groove and the second arc-shaped guiding groove are symmetrically arranged, and the first driving rod and the second driving rod are respectively movably disposed in the first arc-shaped guiding groove and the second arc-shaped guiding groove.
10. The portable electronic device according to claim 9, wherein, The rotary driving assembly includes a fixed shaft disposed between the base body and the bottom cover body, and the fixed shaft passes through the rotatable magnetic member and the rotatable driving member, so that the rotatable magnetic member and the rotatable driving member rotate a predetermined angle relative to the fixed shaft; wherein, the rotatable driving member includes a mating portion disposed within the rotatable magnetic member and cooperating with the rotatable magnetic member, and a limiting portion disposed on the mating portion, and the first driving rod and the second driving rod are both disposed on the limiting portion; wherein, the limiting portion has an arc-shaped limiting groove, and the arc-shaped limiting groove movably accommodates the elastic stopper, so that the rotation angle of the rotatable driving member is limited by the elastic stopper.
Citation Information
Patent Citations
Portable electronic device and movable lens shielding module thereof
CN212112474U
Image apparatus and drive motor
US20050174009A1