Image acquisition device and bearing frame group

By designing a detachable support frame and image acquisition unit, the problem of existing devices being unable to be disassembled was solved, enabling a single device to meet multiple functional needs while saving costs and space.

CN223859182UActive Publication Date: 2026-01-30CHICONY ELECTRONICS CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202520248191.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-17
Publication Date
2026-01-30
Estimated Expiration
2035-02-17

AI Technical Summary

Technical Problem

Existing network cameras and display stands are fixed and cannot be disassembled, forcing users to purchase multiple devices to meet different usage needs, increasing costs and taking up space.

Method used

Design an image acquisition device, including a detachable support frame and an image acquisition unit. The support frame can be selectively used as a clamp or a stand. The image acquisition unit is detachably mounted on the support frame and is stably connected by magnetic connection and detachable wire.

Benefits of technology

It enables a single image acquisition device to meet the functional requirements of network cameras and display stands, saving purchase costs and storage space, and meets diverse application needs through three-axis adjustment.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223859182U_ABST
    Figure CN223859182U_ABST
Patent Text Reader

Abstract

An image acquisition device comprises a first bearing frame, a second bearing frame and an image acquisition unit. The first bearing frame comprises a first bearing part and a clamping part which are connected with each other; the second bearing frame comprises a second bearing part and a foot stool part which are connected with each other; the image acquisition unit is suitable for being detachably arranged on the first bearing part and is suitable for being detachably arranged on the second bearing part.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to an image device and a bearing frame set, and particularly to an image acquisition device and a bearing frame set thereof. BACKGROUND

[0002] A web-CAM and a document-CAM are common desktop image acquisition devices. After using a document-CAM for online presentation or class, a user often uses a web-CAM for online meeting. Since the existing web-CAM and document-CAM have fixed frame bodies and image acquisition devices and cannot be disassembled, it is difficult to meet the above different use requirements by using a single device, so the user needs to prepare a separate web-CAM and document-CAM, which not only consumes more cost to purchase different image acquisition devices, but also occupies storage space. SUMMARY

[0003] The utility model provides a kind of image acquisition device, which can save device cost and storage space.

[0004] The image acquisition device of the utility model includes first bearing frame, second bearing frame and image acquisition unit. The first bearing frame includes the first bearing part and the clamping part connected. The second bearing frame includes the second bearing part and the foot stand part connected. The image acquisition unit is suitable for being detachably installed on the first bearing part, and is suitable for being detachably installed on the second bearing part.

[0005] The image acquisition device of the utility model includes bearing frame and image acquisition unit. The bearing frame includes the bearing part and the support part connected. The image acquisition unit is suitable for being detachably installed on the bearing part and supported by the support part.

[0006] The bearing frame set of the utility model is suitable for bearing image acquisition unit. The bearing frame set includes first bearing frame and second bearing frame. The first bearing frame includes the first bearing part and the clamping part connected. The second bearing frame includes the second bearing part and the foot stand part connected. The first bearing frame and the second bearing frame are selectively connected with the image acquisition unit.

[0007] Based on the above, the image acquisition unit of the utility model can be selectively installed on the first bearing frame for clamping on the display or the second bearing frame for use as a foot stand. Accordingly, by using a single image acquisition unit with the first bearing frame and the second bearing frame, the functional requirements of two products for users can be met, so as to save device cost and storage space. BRIEF DESCRIPTION OF DRAWINGS

[0008] Figure 1 and Figure 2 is the exploded view of part components of the image acquisition device of an embodiment of the utility model.

[0009] Figure 3 is Figure 1 The image acquisition unit of the image acquisition device of claim 1 is installed on the first bearing part and the clamping part is clamped on the side view of the display.

[0010] Figure 4 is Figure 2 The image acquisition unit of the image acquisition device of claim 1 is installed on the second bearing part on the side view.

[0011] Figure 5A is Figure 3 The partial structure of the image acquisition device of claim 1 is shown in perspective view.

[0012] Figure 5B is Figure 5A The image acquisition unit of the image acquisition device of claim 1 is shown in perspective view.

[0013] Figure 6 Part of the image acquisition device of claim 1 is shown. Figure 3

[0014] is Figure 7 The partial structure of the image acquisition device of claim 1 is shown in perspective view. Figure 4

[0015] Part of the image acquisition device of claim 1 is shown. Figure 8 Figure 4 is

[0016] The frame body of claim 1 is folded into a storage state in top view. Figure 9 Figure 2 is

[0017] The partial enlarged view of the image acquisition device of claim 1 is shown. Figure 10 Figure 4 is

[0018] The partial structure of the image acquisition device of claim 1 is shown in perspective view. Figure 11 Figure 4 is

[0019] The partial structure of the image acquisition device of claim 1 is shown in perspective view. Figure 12 Figure 4 and

[0020] Part of the second bearing part of claim 1 is shown. Figure 13 Figure 14 Figure 4

[0021] Figure 15 is Figure 1 The schematic view of the partial structure of the image acquisition device of claim 1 is shown.

[0022] The reference signs are explained as follows:

[0023] 50: display ​​​

[0024] 52: front surface

[0025] 54: rear surface

[0026] 56: top surface

[0027] 60: surface

[0028] 70: wire

[0029] 100: image acquisition device

[0030] 110: first carrier frame

[0031] 112: first carrier portion

[0032] 112a, 122a: aperture

[0033] 114: clamping portion

[0034] 1141: first clamping member

[0035] 1141a: body portion

[0036] 1141b: extension portion

[0037] 1142: second clamping member

[0038] 1142a: tip

[0039] 1142b: recess

[0040] 1142c: non-slip pad

[0041] 120: second carrier frame

[0042] 122: second carrier portion

[0043] 124: stand portion

[0044] 1241, 1242, 1243: frame body

[0045] 1241a, 1242a, 1243a: opening

[0046] 1244: first pivot member

[0047] 1245: second pivot member

[0048] 130: image acquisition unit

[0049] 130a: back surface

[0050] 140, 150, 160: magnetic member

[0051] 170: dynamic sensor

[0052] 180: processing unit

[0053] A1, A2, A31, A32, A33, A4, A5: axis

[0054] H: connection port

[0055] OA: optical axis

[0056] S1, S2: joint surface

[0057] T: boss

[0058] X, Y, Z: axial direction DETAILED DESCRIPTION

[0059] Figure 1 and Figure 2 is an exploded view of partial components of the image acquisition device 100 of an embodiment of the present application. Please refer to Figure 1 and Figure 2 , the image acquisition device 100 of the present embodiment comprises a carrier frame set and an image acquisition unit 130. The carrier frame set comprises two carrier frames (illustrated as Figure 1 a first carrier frame 110 and Figure 2 a second carrier frame 120). The first carrier frame 110 comprises a first carrier portion 112 and a support portion (illustrated as Figure 1 a clamping portion 114) connected thereto. The second carrier frame 120 comprises a second carrier portion 122 and a support portion (illustrated as Figure 2 a stand portion 124) connected thereto.

[0060] Figure 3 is a side view of the image acquisition unit 130 of Figure 1 mounted on the first carrier portion 112 and the clamping portion 114 clamped on the display 50. Figure 4 is a side view of the image acquisition unit 130 of Figure 2 mounted on the second carrier portion 122. The image acquisition unit 130 is adapted to be detachably mounted on the first carrier portion 112 of the first carrier frame 110 as shown in Figure 3 , and the first carrier frame 110 is adapted to be clamped on the display 50 by the clamping portion 114 as shown in Figure 3 , the image acquisition unit 130 is supported by the first carrier portion 112 and the clamping portion 114. Specifically, the image acquisition unit 130 is disposed on the first carrier portion 112, and the clamping portion 114 clamps the display 50 by the clamping force to make the first carrier portion 112 stably disposed on the display 50, so as to stably support the image acquisition unit 130. At this time, the image acquisition unit 130 in combination with the first carrier frame 110 can be used as a web-CAM, and can be used for online conference by the user.

[0061] Furthermore, the image acquisition unit 130 is adapted as follows: Figure 4 The second support portion 122 is shown to be detachably mounted on the second support frame 120, and the second support frame 120 is adapted to be supported by the leg portion 124. Figure 4 As shown, the image acquisition unit 130 is supported by a tripod 124 on a surface 60 (such as a desktop). Specifically, the image acquisition unit 130 is mounted on a second support 122, which is supported by the tripod 124 and can stand stably on the surface 60. The center of gravity of the second support 120 and the image acquisition unit 130 is located on the tripod 124, thus stably supporting the image acquisition unit 130. In this case, the image acquisition unit 130, together with the second support 120, can be used as a document-CAM (document-CAM) platform, allowing users to conduct online presentations or classes.

[0062] As described above, the image acquisition unit 130 of this embodiment can be selectively mounted on the first support frame 110, which provides a clamping function, or on the second support frame 120, which serves as a vertical stand. Accordingly, by using a single image acquisition unit 130 in conjunction with either the first support frame 110 or the second support frame 120, users can flexibly adjust the image acquisition device 100 according to their needs, thereby meeting their functional and usage requirements for different image acquisition products, while saving the cost of purchasing multiple image acquisition products and equipment storage space.

[0063] The first support frame 110 of this embodiment will be described in detail below. It should be noted that the user can clamp the first support frame 110 onto various objects as needed. The above and below use the clamping part 114 clamping onto the display 50 as an example, but the application scenarios of this utility model are not limited to this.

[0064] Please refer to Figure 1 In this embodiment, the first support portion 112 of the first support frame 110 is, for example, a plate-shaped member whose shape roughly corresponds to that of the image acquisition unit 130 and has a mating surface S1. When the image acquisition unit 130 is mounted on the first support portion 112, the back surface 130a of the image acquisition unit 130 is mated to the mating surface S1 of the first support portion 112. Preferably, the outer contour of the image acquisition unit 130 roughly corresponds to the outer contour of the first support portion 112.

[0065] Figure 5A yes Figure 3 A three-dimensional view of a partial structure of the image acquisition device 100. Figure 5B yes Figure 5A A stereoscopic view of the image acquisition unit 130. Please refer to... Figure 1 , Figure 3 , Figure 5A and Figure 5BIn the present embodiment, the image acquisition device 100 comprises a detachable wire 70, the back surface 130a of the image acquisition unit 130 is adapted to connect the wire 70, and the first bearing part 112 of the first bearing frame 110 has an opening 112a. When the image acquisition unit 130 is installed on the first bearing part 112, the back surface 130a of the image acquisition unit 130 faces the opening 112a, and the opening 112a is adapted to pass the wire 70. Accordingly, the wire 70 can be connected between the image acquisition unit 130 and a corresponding electronic device (such as a computer) smoothly, so that the image acquisition unit 130 can transmit power and signals with the electronic device through the wire 70.

[0066] Since the wire 70 of the present embodiment is a detachable wire, it is helpful to improve the convenience when disassembling or installing the image acquisition unit 130 on the first bearing frame 110. Moreover, the user can set up the first bearing frame 110 and complete the combination of the first bearing frame 110 and the image acquisition unit 130 before setting the wire 70, so as to avoid the interference of the wire 70 when setting the first bearing frame 110 and the image acquisition unit 130. In a preferred embodiment, the detachable wire 70 can be a magnetic wire and be connected to the connection port H on the back surface 130a of the image acquisition unit 130 on the first bearing part 112 through magnetic adsorption. When the image acquisition unit 130 is installed on the first bearing part 112, the position of the connection port H corresponds to the opening 112a, so that the connection port H is exposed in the opening 112a, and the wire 70 can be connected to the connection port H from the opening 112a. In more detail, the connection port H is located on the boss T (shown in Figure 5A and Figure 5B ) of the back surface 130a of the image acquisition unit 130, the shape of the boss T is roughly corresponding to the shape of the opening 112a and can be embedded in the opening 112a as shown in Figure 5A , so that the image acquisition unit 130 and the first bearing part 112 can be accurately combined with each other.

[0067] Figure 6 The partial components of the image acquisition device 100 are shown in Figure 3 . Please refer to Figure 6 , the image acquisition device 100 (indicated in Figure 1 and Figure 2 ) of the present embodiment further comprises two magnetic members 140, 150, for example, magnets. The magnetic members 140, 150 are respectively arranged on the image acquisition unit 130 and the first bearing part 112 and correspond to each other, and the image acquisition unit 130 is adapted to be fixed on the first bearing part 112 through the magnetism of the magnetic members 140, 150. Preferably, the magnetic members on the image acquisition unit 130 can be embedded in the boss T as shown in Figure 6The magnetic members 140, 150 are disposed close to the back surface 130a so that they can be stably attracted to each other. In other embodiments, one of the magnetic members 140, 150 can be a magnet and the other can be a metal member adapted to be attracted by a magnet. Alternatively, the magnetic member 140 is a magnet and the material of the first support portion 112 includes a metal adapted to be attracted by a magnet. Alternatively, the magnetic member 150 is a magnet and the material of the image acquisition unit 130 includes a metal adapted to be attracted by a magnet. Furthermore, in other embodiments, the image acquisition unit 130 and the first support portion 112 can each be provided with a plurality of magnetic members corresponding to each other, but Figure 6 The illustrated embodiment is an example in which the image acquisition unit 130 and the first support portion 112 are each provided with one magnetic member.

[0068] Please refer to Figure 1 and Figure 3 In the present embodiment, the clamping portion 114 includes a first clamping member 1141 and a second clamping member 1142 that are pivotally connected to each other along the axis Al. The first support portion 112 is pivotally connected to the first clamping member 1141 along an axis A2 that is parallel to the axis Al. The first clamping member 1141 can abut the front surface 52 and / or the top surface 56 of the display 50, and the second clamping member 1142 can abut the back surface 54 of the display 50 with its end 1142a so that the clamping portion 114 is clamped to the display 50. The pivotally connected portions of the first clamping member 1141 and the second clamping member 1142 can have a suitable torsion so as to provide the clamping portion 114 with sufficient clamping force.

[0069] In other embodiments, the first clamping member 1141 need not abut both the front surface 52 and the top surface 56 of the display 50. Specifically, the clamping portion 114 can abut only one of the front surface 52 and the top surface 56 of the display 50 with its first clamping member 1141 and abut the back surface 54 of the display 50 with its second clamping member 1142 so that the clamping portion 114 is clamped to the display 50.

[0070] Further, the first clamping member 1141 comprises a body portion 1141a and an extension portion 1141b extending downwardly from the body portion 1141a. The body portion 1141a is adapted to abut against the top surface 56 of the display 50, and the second clamping member 1142 is pivotally connected to one end of the body portion 1141a. The extension portion 1141b is connected to the other end of the body portion 1141a and is adapted to abut against the front surface 52 of the display 50, so that the clamping portion 114 is stably clamped to the display 50. The distance between the end 1142a of the second clamping member 1142 and the extension portion 1141b can be changed by pivoting the second clamping member 1142 relative to the body portion 1141a along the axis A1. The opening of the clamping portion 114 for clamping an object corresponds to the distance between the second clamping member 1142 and the extension portion 1141b. The clamping portion 114 can be clamped to objects of different thicknesses by adjusting the pivoting angle of the second clamping member 1142 relative to the body portion 1141a. The extension portion 1141b can abut against the front edge of the object, preventing the first carrier 110 from falling off. When the clamping portion 114 is clamped to the display 50, the user can pivot the first carrier 112 relative to the body portion 1141a along the axis A2 to adjust the inclination angle of the image acquisition unit 130 as needed. When the user applies a force to the first carrier 112, the clamping force between the extension portion 1141b and the second clamping member 1142 can limit the movement of the clamping portion 114 relative to the display 50, preventing the first carrier 110 from shaking or falling off the display 50 when the user adjusts the first carrier 112.

[0071] In a preferred embodiment, a non-slip pad 1142c can be attached to the inner side of the second clamping member 1142 to increase the friction between the second clamping member 1142 and the rear surface 54 of the display 50 when the second clamping member 1142 abuts against the rear surface 54, so that the clamping portion 114 is stably clamped to the display 50. The material of the non-slip pad 1142c can be rubber or other non-slip materials, which are not limited in the present application. Preferably, the inner side of the second clamping member 1142 can have a groove 1142b, and the non-slip pad 1142c is arranged in the groove 1142b.

[0072] The second carrier 120 of the present embodiment will be described in detail below.

[0073] Please refer to Figure 4 The second carrier 120 of the present embodiment has a second carrier 122, for example, a plate-shaped member having a shape substantially corresponding to the image acquisition unit 130 and having an engaging surface S2. When the image acquisition unit 130 is arranged on the second carrier 122, the back surface 130a of the image acquisition unit 130 engages the engaging surface S2 of the second carrier 122. Preferably, the peripheral contour of the image acquisition unit 130 substantially corresponds to the peripheral contour of the second carrier 122.

[0074] Figure 7 is Figure 4 a partial structure of the image acquisition device 100. Please refer to Figure 2 , Figure 4 and Figure 7 In the present embodiment, the second bearing portion 122 of the second bearing frame 120 has an opening 122a. When the image acquisition unit 130 is mounted on the second bearing portion 122, the back surface 130a of the image acquisition unit 130 faces the opening 122a and the opening 122a is adapted for the wire 70 to pass through. Accordingly, the wire 70 can be connected between the image acquisition unit 130 and a corresponding electronic device (such as a computer) smoothly, so that the image acquisition unit 130 can perform power and signal transmission with the electronic device through the wire 70.

[0075] Since the wire 70 of the present embodiment is a detachable wire, it helps to improve the convenience when dismounting or mounting the image acquisition unit 130 on the second bearing frame 120. Moreover, the user can set up the second bearing frame 120 and complete the combination of the second bearing frame 120 and the image acquisition unit 130 first, and then set the wire 70, so as to avoid the interference of the wire 70 when setting the second bearing frame 120 and the image acquisition unit 130. In a preferred embodiment, the detachable wire 70 can be a magnetic wire and is connected to the connection port H on the back surface 130a of the image acquisition unit 130 on the second bearing portion 122 through magnetic adsorption. When the image acquisition unit 130 is mounted on the second bearing portion 122, the position of the connection port H corresponds to the opening 122a so that the connection port H is exposed in the opening 122a, and the wire 70 can be connected to the connection port H from the opening 122a. In more detail, the shape of the boss T (shown in Figure 5B and Figure 7 ) on the back surface 130a of the image acquisition unit 130 substantially corresponds to the shape of the opening 122a and can be embedded in the opening 122a as shown in Figure 7 , so that the image acquisition unit 130 and the second bearing portion 122 can be accurately combined with each other.

[0076] Figure 8 illustrates Figure 4 part of the image acquisition device 100. Please refer to Figure 8 The image acquisition device 100 (indicated in Figure 1 and Figure 2 ) of the present embodiment further comprises a magnetic member 160, which is for example a magnet. The magnetic member 160 is arranged on the second bearing portion 122 and corresponds to the magnetic member 140 in the image acquisition unit 130, and the image acquisition unit 130 is adapted to be fixed on the second bearing portion 122 through the magnetism of the magnetic members 140, 160. Preferably, the magnetic member 160 on the image acquisition unit 130 can be embedded in the boss T on the back surface 130a of the image acquisition unit 130 as shown in Figure 8The magnetic members 140, 160 are arranged close to the back surface 130a so that they can be stably attracted to each other. In other embodiments, one of the magnetic members 140, 160 can be a magnet and the other can be a metal member adapted to be attracted to the magnet. Alternatively, the magnetic member 140 can be a magnet and the material of the second support portion 122 can include a metal adapted to be attracted to the magnet. Alternatively, the magnetic member 160 can be a magnet and the material of the image acquisition unit 130 can include a metal adapted to be attracted to the magnet. In addition, in other embodiments, the image acquisition unit 130 and the second support portion 122 can each be provided with a plurality of magnetic members corresponding to each other, but Figure 8 The illustrated embodiment is an example in which the image acquisition unit 130 and the second support portion 122 are each provided with one magnetic member.

[0077] Please refer to Figure 2 and Figure 4 In the present embodiment, the leg portion 124 of the second support frame 120 includes a plurality of frame bodies 1241, 1242, 1243 that are sequentially pivotally connected and adapted to be unfolded into a standing state as shown to provide a leg function. In addition, the frame bodies 1241, 1242, 1243 are adapted to be folded into a storage state to facilitate storage. It should be noted that the above and below examples in which the leg portion 124 includes three frame bodies 1241, 1242, 1243, but the leg portion 124 can include at least two frame bodies that are sequentially pivotally connected, without being limited to the number of frame bodies in the present embodiment. Figure 2 Figure 4 The illustrated embodiment is an example in which the image acquisition unit 130 and the second support portion 122 are each provided with one magnetic member.

[0078] Figure 9 is Figure 2 a top view of the plurality of frame bodies folded into a storage state. Please refer to Figure 9 Preferably, the plurality of frame bodies 1241, 1242, 1243 are sequentially pivotally connected in order of the size of the volume of each frame body, and among the two frame bodies at the head and tail, one is pivotally connected to the second support portion 122, and the other serves as a base for the leg portion 124 and can be placed on the surface 60. Preferably, each frame body 1241, 1242, 1243 has an opening 1241a, 1242a, 1243a, which can be used to accommodate another frame body pivotally connected thereto, or the second support portion 122 pivotally connected thereto. Specifically, the volume of the frame body 1241 is greater than that of the frame body 1242, the volume of the frame body 1242 is greater than that of the frame body 1243, and the volume of the frame body 1243 is greater than that of the second support portion 122, and the opening 1241a of the frame body 1241 can accommodate the frame body 1242, the opening 1242a of the frame body 1242 can accommodate the frame body 1243, and the opening 1243a of the frame body 1243 can accommodate the second support portion 122.

[0079] ​In other embodiments, the shape of the opening 1241a of the frame 1241 corresponds to the shape of the frame 1242, the shape of the opening 1242a of the frame 1242 corresponds to the shape of the frame 1243, and the shape of the opening 1243a of the frame 1243 corresponds to the shape of the second carrier 122. When the frames 1241, 1242, 1243 and the second carrier 122 are in the storage state as shown, the opening 1243a of the frame 1243 accommodates the second carrier 122, the opening 1242a of the frame 1242 accommodates the frame 1243, and the opening 1241a of the frame 1241 accommodates the frames 1242, 1243, so that the second carrier 122 and the frames 1241, 1242, 1243 can be in a flat state when stored, thereby minimizing the volume of the stand 124 in the storage state. Figure 7 As shown in the storage state, the opening 1243a of the frame 1243 accommodates the second carrier 122, the opening 1242a of the frame 1242 accommodates the frame 1243, and the opening 1241a of the frame 1241 accommodates the frames 1242, 1243, so that the second carrier 122 and the frames 1241, 1242, 1243 can be in a flat state when stored, thereby minimizing the volume of the stand 124 in the storage state.

[0080] In a preferred embodiment, the second carrier 122 is, for example, a plate-shaped member whose shape corresponds to that of the image acquisition unit 130, so that when the image acquisition unit 130 is disposed on the second carrier 122, the image acquisition unit 130 can be accommodated in the opening 1243a of the frame 1243 together with the second carrier 122 without affecting the storage of the second carrier 120.

[0081] In a preferred embodiment, the frame 1241 is, for example, an M-shaped structure defining the opening 1241a, the frame 1242 is, for example, an M-shaped structure whose shape substantially corresponds to that of the opening 1241a and can be fitted into the opening 1241a, the frame 1243 is, for example, an M-shaped structure whose shape substantially corresponds to that of the opening 1242a and can be fitted into the opening 1242a, and the second carrier 122 has a shape substantially corresponding to that of the opening 1243a and can be fitted into the opening 1243a. Thus, the frames 1241, 1242, 1243 and the second carrier 122 can be compactly folded and stored in the state as shown. Figure 9

[0082] Please refer to Figure 2 and Figure 4 In the present embodiment, each of the frames 1241, 1242, 1243 is pivotally connected to the other adjacent frame along an axis in the same direction, i.e., the axis between any two adjacent frames 1241, 1242, 1243 is parallel to the axis between the other two adjacent frames 1241, 1242, 1243. Specifically, one end of the frame 1242 is pivotally connected to the frame 1241 along an axis A31, and the other end of the frame 1242 is pivotally connected to the frame 1243 along an axis A32 parallel to the axis A31. In addition, the second carrier 122 can rotate along an axis A33 parallel to the axes A31, A32, and can rotate along an axis A4 perpendicular to the axes A31, A32, A33, and can rotate along an axis A5 perpendicular to the axes A31, A32, A33, A4.​

[0083] Figure 10 is a partial enlarged view of the image acquisition device 100 of Figure 4 Figure 11 is a perspective view of the partial components of the image acquisition device 100 of Figure 4 Figure 12 is a lower view of the partial components of the image acquisition device 100 of Figure 4 Please refer to Figure 10 to Figure 12 In more detail, the stand portion 124 of the present embodiment further comprises a first pivot member 1244 and a second pivot member 1245, the frame body 1243 is pivoted to the first pivot member 1244 along an axis A33, the second pivot member 1245 is pivoted to the first pivot member 1244 along an axis A4, and the second bearing portion 122 is pivoted to the second pivot member 1245 along an axis A5.

[0084] Figure 13 and Figure 14 illustrates various rotating modes of the second bearing portion 122 of Figure 4 Through the above configuration, the user can not only adjust the inclination angle and height of the image acquisition unit 130 by the relative pivoting of the frame bodies 1241, 1242, 1243 along the axes A31, A32 parallel to the axial direction X and the relative pivoting of the first pivot member 1244 and the frame body 1243 along the axis A33 parallel to the axial direction X, but also adjust the position of the image acquisition unit 130 by the pivoting of the second pivot member 1245 relative to the first pivot member 1244 along the axis A4 parallel to the axial direction Z (as shown by the dashed line of Figure 13 ) and the pivoting of the second bearing portion 122 relative to the second pivot member 1245 along the axis A5 parallel to the axial direction Y (as shown by the dashed line of Figure 14 ). Accordingly, the image acquisition unit 130 can be adjusted in a full range of angles in three axial directions (axial directions X, Y, Z).

[0085] Figure 15 is a schematic view of the partial components of the image acquisition device 100 of Figure 1 Please refer to Figure 15 The image acquisition device 100 of the present embodiment further comprises a dynamic sensor 170 and a processing unit 180. The dynamic sensor 170 is, for example, a gravity sensor (Gsensor), which is arranged in the image acquisition unit 130 and is adapted to sense the orientation of the image acquisition unit 130, so as to infer the optical axis OA (illustrated in Figure 3 and Figure 4 ​​) and the angle between the optical axis OA and the vertical plane. The processing unit 180 is, for example, a digital signal processor (DSP) and is coupled to the dynamic sensor 170. The processing unit 180 is adapted to determine the usage situation of the image acquisition unit 130 according to the orientation of the image acquisition unit 130. The processing unit 180 can determine the usage situation of the image acquisition device 100 according to whether the angle between the optical axis OA and the horizontal plane P1 is less than a threshold value or whether the angle between the optical axis OA and the vertical plane P2 is less than another threshold value, and different usage situations can correspond to different threshold values.

[0086] For example, as shown in FIG. 1A, when the angle between the optical axis OA of the image acquisition unit 130 and the horizontal plane P1 is less than 15 degrees (illustrated as the optical axis OA being parallel to the horizontal plane P1), the processing unit 180 determines that the usage situation of the image acquisition unit 130 is a webcam situation. The processing unit 180 accordingly transmits a corresponding signal to the electronic device, and the electronic device can accordingly set a display resolution suitable for the webcam situation and / or enable a software function suitable for the webcam situation for the user to operate. Figure 3 Figure 3 For example, as shown in FIG. 1A, when the angle between the optical axis OA of the image acquisition unit 130 and the horizontal plane P1 is less than 15 degrees (illustrated as the optical axis OA being parallel to the horizontal plane P1), the processing unit 180 determines that the usage situation of the image acquisition unit 130 is a webcam situation. The processing unit 180 accordingly transmits a corresponding signal to the electronic device, and the electronic device can accordingly set a display resolution suitable for the webcam situation and / or enable a software function suitable for the webcam situation for the user to operate.

[0087] On the other hand, as shown in FIG. 1B, when the angle between the optical axis OA of the image acquisition unit 130 and the vertical plane P2 is less than 15 degrees (illustrated as the optical axis OA being parallel to the vertical plane P2), the processing unit 180 determines that the usage situation of the image acquisition unit 130 is a document situation. The processing unit 180 accordingly transmits a corresponding signal to the electronic device, and the electronic device can accordingly set a display resolution suitable for the document situation and / or enable a software function suitable for the document situation for the user to operate. Figure 4 Figure 4 On the other hand, as shown in FIG. 1B, when the angle between the optical axis OA of the image acquisition unit 130 and the vertical plane P2 is less than 15 degrees (illustrated as the optical axis OA being parallel to the vertical plane P2), the processing unit 180 determines that the usage situation of the image acquisition unit 130 is a document situation. The processing unit 180 accordingly transmits a corresponding signal to the electronic device, and the electronic device can accordingly set a display resolution suitable for the document situation and / or enable a software function suitable for the document situation for the user to operate.

[0088] In summary, the image acquisition unit of the present application can be selectively installed in the first carrier frame for providing a clamping function or the second carrier frame for serving as a vertical stand, so that the user does not need to purchase independent web-CAMs and document-CAMs, and can freely disassemble the first carrier frame or the second carrier frame to meet the functional requirements of the two products, thereby saving the cost of purchasing multiple image acquisition products. After the image acquisition unit, the first carrier frame and the second carrier frame are disassembled, they can be stored separately, and the first carrier frame and the second carrier frame can be further folded to reduce the storage volume, thereby reducing the space burden of the user for storing the equipment. ​​

[0089] On the other hand, no matter whether the first bearing frame or the second bearing frame is matched, the image acquisition unit of the utility model can judge the current use situation according to the orientation of itself, and adjust the output image signal corresponding to the use situation, so as to more detailedly satisfy the diversified application requirements of the user.

Claims

1. An image acquisition device, characterized in that, The image acquisition unit is adapted to be detachably mounted on the first bearing part and is adapted to be detachably mounted on the second bearing part. The dynamic sensor is configured on the image acquisition unit and is adapted to sense the orientation of the image acquisition unit. The processing unit is configured on the image acquisition unit and is coupled to the dynamic sensor, the processing unit being adapted to determine the usage situation of the image acquisition unit according to the orientation of the image acquisition unit. The back surface of the image acquisition unit has a connecting port, the first bearing part has an opening, when the image acquisition unit is mounted on the first bearing part, the opening corresponds to the connecting port, and a detachable wire is adapted to pass through the opening to be connected to the connecting port. The back surface of the image acquisition unit has a boss, when the image acquisition unit is mounted on the first bearing part, the boss is embedded in the opening. At least one magnetic member is configured on at least one of the image acquisition unit and the first bearing part, the image acquisition unit being adapted to be fixed to the first bearing part by the magnetism of the at least one magnetic member. The clamping part includes a first clamping member and a second clamping member, the first clamping member being connected to the bearing part, and the second clamping member being pivoted to the first clamping member.

2. The image acquisition apparatus of claim 1, wherein The first clamping member includes a body part and an extension part, the second clamping member being pivoted to one end of the body part, and the extension part being connected to the other end of the body part.

3. The image acquisition apparatus of claim 2, wherein The back surface of the image acquisition unit has a connecting port, the second bearing part has an opening, when the image acquisition unit is mounted on the second bearing part, the opening corresponds to the connecting port, and a detachable wire is adapted to pass through the opening to be connected to the connecting port.

4. The image acquisition apparatus of claim 1, wherein The back surface of the image acquisition unit has a boss, when the image acquisition unit is mounted on the second bearing part, the boss is embedded in the opening.

5. The image acquisition apparatus of claim 1, wherein At least one magnetic member is configured on at least one of the image acquisition unit and the second bearing part, the image acquisition unit being adapted to be fixed to the second bearing part by the magnetism of the at least one magnetic member.

6. The image acquisition apparatus of claim 5, wherein The leg part includes a plurality of frame bodies which are sequentially pivoted, the plurality of frame bodies being adapted to be folded into a storage state and unfolded into an erected state.

7. The image acquisition apparatus of claim 1, wherein At least one of the frame bodies has an opening, the opening of at least one of the frame bodies accommodating at least another one of the frame bodies, the bearing part, or at least another one of the frame bodies and the bearing part.

8. The image acquisition apparatus of claim 7, wherein Each of the frame bodies is pivoted to an adjacent other one of the frame bodies along an axis, the axis between any two adjacent ones of the plurality of frame bodies being parallel to the axis between another two adjacent ones of the plurality of frame bodies.

9. The image acquisition apparatus of claim 1, wherein ​ 10. The image acquisition apparatus of claim 1, wherein ​ 11. The image acquisition apparatus of claim 10, wherein ​ 12. The image acquisition apparatus of claim 10, wherein ​ 13. The image acquisition apparatus of claim 10, wherein The support portion is a stand portion, the stand portion comprising a plurality of bodies connected in sequence, the plurality of bodies being adapted to be folded into a storage state and unfolded into an erected state.

14. An image acquisition device, characterized by Comprising: a support frame comprising a support portion and a bearing portion connected in sequence; and an image acquisition unit adapted to be detachably mounted on the bearing portion; a dynamic sensor, wherein the dynamic sensor is disposed on the image acquisition unit and is adapted to sense an orientation of the image acquisition unit; a processing unit, wherein the processing unit is disposed on the image acquisition unit and is coupled to the dynamic sensor, the processing unit being adapted to determine a use situation of the image acquisition unit according to the orientation of the image acquisition unit.

15. The image acquisition apparatus of claim 14, wherein, Further comprising a detachable wire, wherein a back surface of the image acquisition unit has a connecting port, the bearing portion has an opening corresponding to the connecting port when the image acquisition unit is mounted on the bearing portion, and the wire is adapted to pass through the opening to be connected to the connecting port.

16. The image acquisition apparatus of claim 15, wherein The back surface of the image acquisition unit has a boss, and the boss is embedded in the opening when the image acquisition unit is mounted on the bearing portion.

17. The image acquisition apparatus of claim 14, wherein Further comprising at least one magnetic member, wherein the magnetic member is disposed on at least one of the image acquisition unit and the bearing portion, and the image acquisition unit is adapted to be fixed to the bearing portion by magnetism of the at least one magnetic member.

18. The image acquisition apparatus of claim 14, wherein, The support portion is a clamping portion, the clamping portion comprising a first clamping member and a second clamping member, the first clamping member being connected to the bearing portion, and the second clamping member being pivoted to the first clamping member.

19. The image acquisition apparatus of claim 18, wherein The first clamping member comprises a body portion and an extension portion, the second clamping member being pivoted to one end of the body portion, and the extension portion being connected to the other end of the body portion.

20. The image acquisition apparatus of claim 14, wherein The support portion is a stand portion, the stand portion comprising a plurality of bodies connected in sequence, the plurality of bodies being adapted to be folded into a storage state and unfolded into an erected state.

21. The image acquisition apparatus of claim 20, wherein, At least one of the bodies has an opening, the opening of the at least one body accommodating at least another one of the bodies, the bearing portion, or both the at least another one of the bodies and the bearing portion.

22. The image acquisition apparatus of claim 20, wherein, Each of the bodies is pivoted to an adjacent one of the bodies along an axis, the axis between any two adjacent ones of the plurality of bodies being parallel to the axis between another two adjacent ones of the plurality of bodies.

23. The image acquisition apparatus of claim 20, wherein, The support portion is a stand portion, the stand portion comprising a plurality of bodies connected in sequence, the plurality of bodies being adapted to be folded into a storage state and unfolded into an erected state.

24. A cradle set adapted to carry an image acquisition unit, characterized by: Comprising: The first carrier frame comprises a first carrier portion and a clamping portion connected to each other; and The second carrier frame comprises a second carrier portion and a leg portion connected to each other; The first carrier frame and the second carrier frame are selectively connected to the image acquisition unit; The dynamic sensor is configured on the image acquisition unit and is adapted to sense the orientation of the image acquisition unit. The processing unit is configured on the image acquisition unit and is coupled to the dynamic sensor, and is adapted to determine the use situation of the image acquisition unit according to the orientation of the image acquisition unit.

25. The set of carriers of claim 24, wherein, The clamping portion comprises a first clamping member and a second clamping member, the first clamping member is connected to the carrier portion, and the second clamping member is pivotally connected to the first clamping member.

26. The set of carriers of claim 25, wherein, The first clamping member comprises a body portion and an extension portion, the second clamping member is pivotally connected to one end of the body portion, and the extension portion is connected to the other end of the body portion.

27. The carrier group of claim 24, wherein, The leg portion comprises a plurality of frame bodies pivotally connected in sequence, and the plurality of frame bodies are adapted to be folded into a storage state and unfolded into an erected state.

28. The set of carriers of claim 27, wherein, At least one of the frame bodies has an opening, and when the plurality of frame bodies are in the storage state, the opening of the at least one frame body accommodates at least another frame body, the carrier portion, or at least another frame body and the carrier portion.

29. The set of carriers of claim 27, wherein, Each of the frame bodies is pivotally connected to an adjacent other frame body along an axis, and the axis between any two adjacent frame bodies in the plurality of frame bodies is parallel to the axis between another two adjacent frame bodies in the plurality of frame bodies.

30. The carrier group of claim 27, wherein, The leg portion further comprises a first pivot member and a second pivot member, the first pivot member is pivotally connected to one of the plurality of frame bodies along a first axis, the second pivot member is pivotally connected to the first pivot member along a second axis perpendicular to the first axis, and the second carrier portion is pivotally connected to the second pivot member along a third axis perpendicular to the first axis and the second axis; the second carrier portion is adapted to be pivoted along the first axis, the second axis, or the third axis relative to the leg portion.