Scanning pen
By designing the positioning components and locking structure with the first and second states, the problem that the existing scanning pen cannot scan the complete page is solved, and a variety of recognition methods for specific areas and complete pages are realized, which enhances the applicability of the device.
Patent Information
- Application Number
- CN202420652141.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-03-29
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2034-03-29
AI Technical Summary
The shooting range of the existing scan pen camera is limited to specific areas of the positioning component, and it is impossible to scan and shoot the complete page, resulting in a relatively single recognition method and usage scenario.
A scanning pen is designed, with the positioning assembly having a first state and a second state, capable of retracting into the housing or protruding out of the housing, and in combination with the locking structure, scanning of a specific area and a complete page is achieved.
It realizes that the scanner can scan specific areas and complete pages, enhancing the various recognition methods and applicable scenarios of the device.
Smart Images

Figure CN223022702U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of intelligent learning devices, and particularly to a scanning pen. Background Art
[0002] With the rapid development of technology and the continuous improvement of the living standards of residents, for people who need to carry out reading and data sorting, such as teachers and students, they often need to obtain information from paper materials, so they need to use a scanning pen to photograph and identify the paper materials.
[0003] The camera of the existing scanning pen is usually arranged close to the positioning component of the scanning pen. During use, the shooting range of the camera is limited to a specific area located by the positioning component of the scanning pen, so that the scanning pen can only scan the text aligned by the positioning component and cannot realize the scanning and shooting of the entire page of the scanned page, resulting in a single recognition method and usage scenario of the scanning pen. Utility Model Content
[0004] This application discloses a scanning pen, which can realize multiple recognition methods and is applicable to multiple usage scenarios.
[0005] To achieve the above object, this application discloses a scanning pen, including:
[0006] A housing having an extending direction, and along the extending direction of the housing, the housing has a first end and a second end;
[0007] A positioning component including a first positioning member and a second positioning member, the positioning component is movably arranged at the first end, the positioning component has a first state and a second state, the first state is configured such that the positioning component retracts into the housing, and the second state is configured such that the positioning component extends out of the housing. When the positioning component is in the second state, the positioning component is used to locate the area to be scanned;
[0008] A camera arranged at the first end and between the first positioning member and the second positioning member;
[0009] A locking structure for locking the positioning component in the first state or the second state.
[0010] In a possible implementation manner, the scanning pen further includes a driving structure connected to the positioning component, and the driving structure is used to drive the positioning component to switch between the first state and the second state.
[0011] In a possible implementation manner, the driving structure includes an elastic member disposed between the housing and the positioning component, and the elastic member is configured to provide a force to the positioning component to drive the positioning component to switch between the first state and the second state.
[0012] In a possible implementation manner, the locking structure includes:
[0013] A first locking member disposed on the housing;
[0014] A second locking member movably disposed in the housing and connected to the positioning component. Along the extending direction of the housing, a first locking groove and a second locking groove are spacedly arranged on the second locking member. When the positioning component is in the first state, the first locking member is engaged with the first locking groove, and when the positioning component is in the second state, the first locking member is engaged with the second locking groove.
[0015] In a possible implementation manner, the first locking member includes a locking button movably disposed on the housing and a locking portion connected to the locking button. The locking portion is disposed in the housing, and at least a part of the locking button is located outside the housing;
[0016] When the locking button moves toward the inside of the housing, the locking portion is separated from the second locking member to unlock the locking structure. When the locking button moves toward the outside of the housing, the locking portion is engaged with the second locking member to lock the locking structure; or,
[0017] When the locking button moves toward the inside of the housing, the locking portion is engaged with the second locking member to lock the locking structure. When the locking button moves toward the outside of the housing, the locking portion is separated from the second locking member to unlock the locking structure.
[0018] In a possible implementation manner, the locking button is slidably connected to the housing along the thickness direction of the housing.
[0019] In a possible implementation manner, an elastic reset member is disposed between the locking button and the housing, and the elastic reset member is configured to provide an elastic force to the locking button to drive the locking button to reset.
[0020] In a possible implementation manner, the second locking member is slidably connected to the housing along the extending direction of the housing;
[0021] There are a plurality of the second locking grooves, and the plurality of second locking grooves are spacedly arranged along the extending direction of the housing.
[0022] In a possible implementation manner, the locking portion includes:
[0023] A connecting frame. Along the extending direction of the housing, the connecting frame is provided with a through hole, and the second locking member is disposed through the through hole.
[0024] At least one engaging tooth. Along the extending direction of the housing, the engaging tooth is disposed on at least one side of the connecting frame.
[0025] In a possible implementation manner, the positioning assembly further includes a connecting portion. Both the first positioning member and the second positioning member are disposed on the connecting portion, and the connecting portion is connected to the second locking member.
[0026] In a possible implementation manner, a guiding structure is further disposed in the housing. The guiding direction of the guiding structure is parallel to the extending direction of the housing, and the positioning assembly is slidably connected to the housing through the guiding structure.
[0027] In a possible implementation manner, the guiding structure includes a first guiding structure. The first guiding structure includes a guiding rod fixedly connected to the housing. The extending direction of the guiding rod is parallel to the extending direction of the housing, and the connecting portion of the positioning assembly is slidably connected to the guiding rod.
[0028] In a possible implementation manner, the elastic member is sleeved on the guiding rod.
[0029] In a possible implementation manner, the first guiding structure includes a first guiding rod and a second guiding rod. Along the width direction of the housing, the first guiding rod and the second guiding rod are arranged at intervals.
[0030] The driving structure includes a first elastic member and a second elastic member. The first elastic member is sleeved on the first guiding rod, and the second elastic member is sleeved on the second guiding rod.
[0031] In a possible implementation manner, the guiding structure includes a second guiding structure. The second guiding structure includes a guiding slide rail fixedly connected to the housing. The extending direction of the guiding slide rail is parallel to the extending direction of the housing, and the guiding slide rail is slidably matched with the second locking member.
[0032] In a possible implementation manner, the scanning pen further includes a control module disposed in the housing and an induction device electrically connected to the control module. The induction device is used to sense that the positioning component is in the first state or the second state. When the positioning component is in the first state, the control module is used to control the camera to turn off according to the signal sensed by the induction device. When the positioning component is in the second state, the control module is used to control the camera to turn on according to the signal sensed by the induction device;
[0033] A control button is further disposed on the housing, and the control button is used to control the camera to turn on or off.
[0034] In a possible implementation manner, the induction device includes a magnetic inductor disposed in the housing and fixedly connected to the housing and a magnetic member fixedly connected to the positioning component. The magnetic inductor is also electrically connected to the control module. When the positioning component is in the first state, the magnetic member is within the sensing range of the magnetic inductor. When the positioning component is in the second state, the magnetic member is outside the sensing range of the magnetic inductor.
[0035] In a possible implementation manner, the camera is rotatably connected to the housing.
[0036] In a possible implementation manner, the camera has a first shooting form and a second shooting form. The first shooting form is configured such that the camera faces outside the housing along the extending direction of the housing, and the second shooting form is configured such that the camera faces outside the housing along the thickness direction of the housing.
[0037] In a possible implementation manner, the camera is rotatably connected to the housing through a rotating shaft, and the extending direction of the rotating shaft is parallel to the width direction of the housing.
[0038] In a possible implementation manner, the rotating shaft is a damping rotating shaft, and the damping rotating shaft is configured to enable the camera to hover at any rotation angle.
[0039] In a possible implementation manner, along the width direction of the housing, the scanning pen further includes flashlights disposed on opposite sides of the camera.
[0040] In a possible implementation manner, a display screen is further disposed on the housing.
[0041] In a possible implementation manner, the display screen is a touch screen, and the control button on the housing is a virtual button.
[0042] Compared with the prior art, the beneficial effects of the present application are as follows:
[0043] Since the positioning component is movably arranged at the first end of the housing in its extending direction, in the first state, the positioning component retracts into the housing, and in the second state, the positioning component extends out of the housing, and the locking structure can lock the positioning component in the first state or the second state. Therefore, when the user needs to use the scanning pen to scan a specific area of the scanned page, the positioning component can be made to be in the second state, and the locking structure is used to lock the positioning component in the second state, so that the first positioning member and the second positioning member can position the area to be scanned, and the camera is used to scan the text or image on the positioned specific area, so as to realize the scanning of a specific area of the scanned page. When the user needs to use the scanning pen to scan the entire page of the scanned page, the positioning component can be retracted into the housing to make the positioning component in the first state, and the locking structure is used to lock the positioning component in the first state, so that the shooting range of the camera is no longer blocked by the first positioning member and the second positioning member, so that the shooting range of the camera is increased to shoot the text or image on the entire page, and then the scanning of the entire page is realized. Compared with the related art in which the scanning pen can only scan a specific area of the scanned page, the scanning pen of this embodiment can not only make the positioning component extend out of the housing, and use the first positioning member and the second positioning member to position a specific area on the scanned page, so that the scanning pen realizes the scanning of the specific area, but also make the positioning component retract into the housing, so that the first positioning component and the second positioning component no longer block the shooting range of the camera, so that the scanning pen realizes the shooting of the entire page. Therefore, the scanning pen of this embodiment can realize both the scanning of a specific area and the scanning of the entire page, so that the scanning pen has multiple recognition methods and can meet different usage scenarios of users. Description of the Drawings
[0044] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following will briefly introduce the drawings required to be used in the embodiments. Obviously, the drawings in the following description are only some embodiments of the present application. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.
[0045] Figure 1 It is a schematic diagram when the scanning component of the scanning pen in the embodiment of the present application is in the first state;
[0046] Figure 2 It is a schematic diagram when the scanning component of the scanning pen in the embodiment of the present application is in the second state;
[0047] Figure 3 It is a schematic diagram of the internal structure of the scanning pen in the embodiment of the present application;
[0048] Figure 4It is an exploded view of the scanning pen according to an embodiment of the present application;
[0049] Figure 5 It is an exploded view of the locking structure provided by an embodiment of the present application;
[0050] Figure 6 It is a schematic structural diagram of the first locking member provided by an embodiment of the present application;
[0051] Figure 7 It is Figure 3 The sectional view at S-S in
[0052] Figure 8 It is Figure 7 The enlarged view at A in
[0053] Figure 9 It is an exploded view of the guiding structure provided by an embodiment of the present application;
[0054] Figure 10 It is Figure 3 The sectional view at P-P in
[0055] Figure 11 It is Figure 10 The enlarged view at B in
[0056] Figure 12 It is a schematic diagram of the camera of the scanning pen according to an embodiment of the present application in the second shooting form;
[0057] Figure 13 It is an exploded view of the camera and the housing.
[0058] Main reference numeral description
[0059] 1 - Scanning pen;
[0060] 100 - Housing; 110 - Display screen;
[0061] 200 Positioning assembly; 201 - First positioning member; 202 - Second positioning member; 203 - Connecting portion;
[0062] 300 - Camera; 310 - Flashlight;
[0063] 400 - Locking structure; 401 - First locking member; 4011 - Locking button; 4012 - Locking portion; 4013 - Connecting frame; 4014 - Through hole; 4015 - Clamping teeth; 402 - Second locking member; 4021 - First locking groove; 4022 - Second locking groove; 403 - Elastic reset member;
[0064] 500 - Driving structure; 501 - First elastic member; 502 - Second elastic member;
[0065] 600 - Guide structure; 610 - First guide structure; 6101 - First guide rod; 6102 - Second guide rod; 620 - Second guide structure; 621 - Guide slide rail;
[0066] 700 - Control module; 7101 - Magnetic inductor; 7102 - Magnetic part;
[0067] 800 - Rotating shaft;
[0068] 900 - Flexible circuit board. Detailed implementation manner
[0069] Next, the technical solutions in the embodiments of the present application will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present application.
[0070] In the present application, the orientation or positional relationship indicated by terms such as "upper", "lower", "left", "right", "front", "rear", "top", "bottom", "inner", "outer", "middle", "vertical", "horizontal", "lateral", "longitudinal", etc. is the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. These terms are mainly used to better describe the present application and its embodiments, and are not used to limit that the indicated device, element or component must have a specific orientation, or be constructed and operated in a specific orientation.
[0071] Moreover, in addition to being able to represent the orientation or positional relationship, some of the above terms may also be used to represent other meanings. For example, the term "upper" may also be used to represent a certain attachment relationship or connection relationship in some cases. For those of ordinary skill in the art, the specific meanings of these terms in the present application can be understood according to specific circumstances.
[0072] In addition, the terms "installed", "set", "provided with", "connected", "connected to" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral structure; it can be a mechanical connection or an electrical connection; it can be directly connected, or indirectly connected through an intermediate medium, or there is an internal connection between two devices, elements or components. For those of ordinary skill in the art, the specific meanings of the above terms in the present application can be understood according to specific circumstances.
[0073] In addition, terms such as "first", "second", etc. are mainly used to distinguish different devices, components or parts (the specific types and structures may be the same or different), and are not used to indicate or imply the relative importance and quantity of the indicated devices, components or parts. Unless otherwise specified, the meaning of "a plurality" is two or more.
[0074] As mentioned in the background art, during the use of the existing scanning pen, the shooting range of the camera is limited to the text on the paper surface in the middle area of the positioning component of the scanning pen, so that the scanning pen can only scan the text aligned with the positioning component, and cannot realize the scanning and shooting of the entire page of a book, resulting in a relatively single recognition method and usage scenario of the scanning pen.
[0075] To solve the above problems, the present application provides a scanning pen. The positioning component of the scanning pen has a first state and a second state. When the positioning component is in the first state, the positioning component is located inside the housing of the scanning pen, so that the positioning component no longer blocks the camera, thereby enabling the camera to capture the entire page to achieve the scanning of the entire page. When the positioning component is in the second state, the positioning component extends out of the housing, so that the positioning component can position a specific area, thereby realizing the scanning of the specific area, and further enabling the scanning pen to have multiple recognition methods and meeting different usage scenarios of users.
[0076] The technical solution of the present application will be further described below in conjunction with specific embodiments and drawings.
[0077] See Figures 1 to 4 , this embodiment provides a scanning pen 1. The scanning pen 1 includes a housing 100, a positioning component 200, a camera 300, and a locking structure 400. The housing 100 has an extending direction. Along the extending direction of the housing 100, the housing 100 has a first end and a second end; the positioning component 200 includes a first positioning member 201 and a second positioning member 202. The positioning component 200 is movably arranged at the first end. The positioning component 200 has a first state and a second state. The first state is configured such that the positioning component 200 retracts into the housing 100, and the second state is configured such that the positioning component 200 extends out of the housing 100. When the positioning component 200 is in the second state, the positioning component 200 is used to position the area to be scanned; the camera 300 is arranged at the first end and between the first positioning member 201 and the second positioning member 202; the locking structure 400 is used to lock the positioning component 200 in the first state or the second state.
[0078] Among them, the extending direction of the housing 100 is Figure 3 the direction indicated by the arrow X in
[0079] It should be noted that the above-mentioned positioning component 200 is movably arranged at the first end. It should be understood that the positioning component 200 is rotatably connected to the first end, or the positioning component 200 is slidably connected to the first end, etc., which are not limited herein.
[0080] It should be noted that the first positioning member 201 and the second positioning member 202 of the above-mentioned positioning component 200 are used to accurately position a specific area on the page to be scanned, so as to determine the starting point and direction of the scanning pen 1 for scanning, and ensure the accuracy of the scanned content.
[0081] Since the positioning component 200 is movably arranged at the first end of the housing 100 in its extending direction, in the first state, the positioning component 200 retracts into the housing 100, and in the second state, the positioning component 200 extends out of the housing 100, and the locking structure 400 can lock the positioning component 200 in the first state or the second state. Therefore, when the user needs to use the scanning pen 1 to scan a specific area of the page to be scanned, the positioning component 200 can be made to be in the second state, and the locking structure 400 is used to lock the positioning component 200 in the second state, so that the first positioning member 201 and the second positioning member 202 can position the area to be scanned. And when the user needs to use the scanning pen 1 to scan the entire page of the page to be scanned, the positioning component 200 can be retracted into the housing 100 to make the positioning component 200 in the first state, and the locking structure 400 is used to lock the positioning component 200 in the first state, so that the shooting range of the camera 300 is no longer blocked by the first positioning member 201 and the second positioning member 202, so that the shooting range of the camera 300 is increased to shoot the text or image on the entire page, and then the scanning of the entire page is realized. Compared with the related art in which the scanning pen 1 can only scan a specific area of the page to be scanned, the scanning pen 1 of this embodiment can not only make the positioning component 200 extend out of the housing 100, and use the first positioning member 201 and the second positioning member 202 to position a specific area on the page to be scanned, so that the scanning pen 1 realizes the scanning of the specific area, but also make the positioning component 200 retract into the housing 100, so that the first positioning component 200 and the second positioning component 200 no longer block the shooting range of the camera 300, so that the scanning pen 1 realizes the shooting of the entire page. Therefore, the scanning pen 1 of this embodiment can not only realize the scanning of a specific area, but also realize the scanning of the entire page, so that the scanning pen 1 has multiple recognition methods and can meet different usage scenarios of users.
[0082] In addition, locking the positioning component 200 in the first state so that the positioning component 200 can be received inside the housing 100 can not only prevent the positioning component 200 of the scanning pen 1 from being easily knocked and damaged when not in use, but also make the scanning pen 1 more portable.
[0083] In some possible embodiments, refer to Figure 3 and Figure 4 , the scanning pen 1 further includes a driving structure 500. The driving structure 500 is connected to the positioning component 200, and the driving structure 500 is configured to drive the positioning component 200 to switch between a first state and a second state.
[0084] Wherein, the driving mode of the driving structure 500 can be manual driving or automatic driving, which is not limited herein.
[0085] Since the driving structure 500 is connected to the positioning component 200, when the user needs to use the scanning pen 1 to scan a specific area of the scanned page, the driving structure 500 can drive the positioning component 200 to extend out of the housing 100, so that the positioning component 200 is in the second state. When the user needs to use the scanning pen 1 to scan the entire page of the scanned page, the driving structure 500 can drive the positioning component 200 to retract into the housing 100, so that the positioning component 200 is in the first state, thereby enabling the positioning component 200 to switch between the first state and the second state under the drive of the driving structure 500. Compared with the related art where the driving structure 500 is not provided and the positioning component 200 is manually pulled out or pushed back, in this embodiment, by providing the driving structure 500 to drive the positioning component 200 to extend or retract the housing 100, the operation of the user to switch the positioning component 200 between the first state and the second state is more convenient, and the experience of the user using the scanning pen 1 can be improved.
[0086] In some possible embodiments, refer to Figure 3 and Figure 4 , the driving structure 500 includes an elastic member. The elastic member is disposed between the housing 100 and the positioning component 200, and the elastic member is configured to provide a force to the positioning component 200 to drive the positioning component 200 to switch between a first state and a second state.
[0087] Wherein, it should be understood that the driving structure 500 includes an elastic member, and the driving structure 500 includes a spring, an elastic rope, etc., which is not limited herein.
[0088] It should be noted that the elastic member is disposed between the housing 100 and the positioning assembly 200. The elastic member is used to provide a driving force to the positioning assembly 200 to drive the positioning assembly 200 to switch between a first state and a second state. It should be understood that when the positioning assembly 200 is in the first state, the elastic member is compressed or stretched between the positioning assembly 200 and the housing 100, so that the elastic member has elastic potential energy. When it is necessary to switch the positioning assembly 200 from the first state to the second state, the elastic member resets to release the elastic potential energy, so as to provide a driving force for the positioning assembly 200 to drive the positioning assembly 200 to switch from the first state to the second state. Or, when the positioning assembly 200 is in the second state, the elastic member is compressed or stretched between the positioning assembly 200 and the housing 100, so that the elastic member has elastic potential energy. When it is necessary to switch the positioning assembly 200 from the second state to the first state, the elastic member releases the elastic potential energy, so as to provide a driving force for the positioning assembly 200 to drive the positioning member to switch from the second state to the first state.
[0089] In this embodiment, the elastic member is disposed between the positioning assembly 200 and the housing 100, so as to use the elastic member to provide a driving force for the positioning assembly 200 to drive the positioning assembly 200 to switch between a first state and a second state. In addition, the elastic member can absorb or reduce the impact or vibration generated during the movement when the positioning assembly 200 switches between the first state and the second state, so as to play a role in shock absorption and buffering. Moreover, the volume of the elastic member is small, and it can provide a driving force within the limited space in the housing 100 of the scanning pen 1, saving the internal space of the housing 100. And, the structure of the elastic member is simple and reliable, the manufacturing cost is low, and it is easy to manufacture and maintain.
[0090] Of course, the driving structure 500 is not limited to the elastic member disposed between the positioning assembly 200 and the housing 100. The driving structure 500 can also be a driving motor or a linear motor connected to the positioning assembly 200, etc.
[0091] In some possible embodiments, referring to Figures 5 to 8 , the locking structure 400 includes: a first locking member 401 and a second locking member 402. The first locking member 401 is disposed on the housing 100; the second locking member 402 is movably disposed in the housing 100 and connected to the positioning assembly 200. Along the extending direction of the housing 100, a first locking groove 4021 and a second locking groove 4022 are spaced apart on the second locking member 402. When the positioning assembly 200 is in the first state, the first locking member 401 is in snap-fit with the first locking groove 4021. When the positioning assembly 200 is in the second state, the first locking member 401 is in snap-fit with the second locking groove 4022.
[0092] By arranging the first locking member 401 on the housing 100, and movably arranging the second locking member 402 inside the housing 100 and connecting it to the positioning assembly 200. Along the extending direction of the housing 100, a first locking groove 4021 and a second locking groove 4022 are spacedly arranged on the second locking member 402. When the housing 100 is in the first state, the first locking member 401 is engaged with the first locking groove 4021 to lock the positioning assembly 200 in the first state. When it is necessary to switch the positioning assembly 200 from the first state to the second state, first separate the first locking member 401 from the first locking groove 4021, and then make the positioning assembly 200 extend out of the housing 100 along the extending direction of the housing 100. At this time, the positioning assembly 200 drives the second locking member 402 to move along the extending direction of the housing 100. When the positioning assembly 200 extends out of the housing 100 and reaches the preset position, the second locking groove 4022 of the second locking member 402 moves to the position where the first locking member 401 is located, so that the first locking member 401 is engaged with the second locking groove 4022 to lock the positioning assembly 200 in the second state. In this embodiment, by arranging the first locking member 401 on the housing 100, and movably arranging the second locking member 402 inside the housing 100 and connecting it to the positioning assembly 200, the first locking groove 4021 and the second locking groove 4022 on the second locking member 402 are cooperated with the first locking member 401 to lock the positioning assembly 200 in the first state or the second state. The structure is simple and easy to implement.
[0093] In a possible embodiment, referring to Figure 3 and Figure 5 , the first locking member 401 includes a locking button 4011 movably arranged on the housing 100 and a locking portion 4012 connected to the locking button 4011. The locking portion 4012 is arranged inside the housing 100, and at least a part of the locking button 4011 is located outside the housing 100. When the locking button 4011 moves towards the inside of the housing 100, the locking portion 4012 is separated from the second locking member 402 to unlock the locking structure 400. When the locking button 4011 moves towards the outside of the housing 100, the locking portion 4012 is engaged with the second locking member 402 to lock the locking structure 400.
[0094] Therefore, when the user needs to extend the positioning component 200 out of the housing 100, that is, when the positioning component 200 needs to be switched from the first state to the second state, first manually press the locking button 4011 so that the locking button 4011 moves towards the inside of the housing 100, thereby separating the locking portion 4012 from the first locking groove 4021 on the second locking member 402 to release the clamping connection between the locking portion 4012 and the first locking groove 4021, enabling the positioning component 200 to move in the extending direction and extend out of the housing 100. When the positioning component 200 extends out of the housing 100 to reach the second state, the second locking groove 4022 on the second locking member 402 moves to the position where the locking portion 4012 is located. At this time, move the locking button 4011 towards the outside of the housing 100 so that the locking portion 4012 is clamped and matched with the second locking groove 4022, thereby locking the positioning component 200 in the second state. Compared with the related art in which a driving member for driving the first locking member 401 to move is provided inside the housing 100, the first locking member 401 in this embodiment includes a locking button 4011 movably provided on the housing 100 and a locking portion 4012 connected to the locking button 4011. The locking portion 4012 is provided inside the housing 100, and at least part of the locking button 4011 is located outside the housing 100, so as to manually drive the first locking member 401 to move by using the locking button 4011 to realize the unlocking and locking of the locking structure 400. The structure is relatively simple and does not occupy too much internal space of the housing 100.
[0095] Among them, moving the locking button 4011 towards the outside of the housing 100 can be manually pulling the locking button 4011 outwards towards the outside of the housing 100, or the locking button 4011 automatically moving towards the outside of the housing 100 after being free of external force, which is not limited herein.
[0096] In another possible embodiment, when the locking button 4011 moves towards the inside of the housing 100, the locking portion 4012 is clamped and matched with the second locking member 402 to lock the locking structure 400. When the locking button 4011 moves towards the outside of the housing 100, the locking portion 4012 is separated from the second locking member 402 to unlock the locking structure 400.
[0097] In some possible embodiments, refer to Figure 7 and Figure 8 , along the thickness direction of the housing 100, the locking button 4011 is slidably connected to the housing 100.
[0098] Among them, the thickness direction of the housing 100 is Figure 8 the direction indicated by the arrow Z in
[0099] By making the locking button 4011 slidably connected to the housing 100 in the thickness direction of the housing 100, the locking button 4011 can be arranged on two sides of the housing 100 in the thickness direction, so as to avoid the user accidentally touching the locking button 4011 when holding the scanning pen 1 for scanning as much as possible, thereby improving the user experience.
[0100] In some possible embodiments, referring to Figure 3 , Figure 5 and Figure 8 , an elastic reset member 403 is provided between the locking button 4011 and the housing 100, and the elastic reset member 403 is used to provide an elastic acting force to the locking button 4011 to drive the locking button 4011 to reset.
[0101] In this embodiment, the locking button 4011 moves into the housing 100 and the locking portion 4012 is separated from the second locking member 402 to unlock the locking structure 400, and the locking button moves out of the housing 100 and the locking portion 4012 is engaged with the second locking member 402 to lock the locking structure 400 as an example. When it is necessary to switch the positioning assembly 200 from the first state to the second state, manually press the locking button 4011 to make the locking button 4011 move towards the inside of the housing 100, so that the locking structure 400 is unlocked. During this process, the elastic reset member 403 between the locking button 4011 and the housing 100 is compressed. After the positioning assembly 200 extends out of the housing 100, the finger is released, and the locking button 4011 is no longer subjected to an external force. At this time, the locking button 4011 will move towards the outside of the housing 100 under the driving of the elastic acting force of the elastic reset member 403 until the locking portion 4012 is engaged with the second locking groove 4022, so that the locking structure 400 is locked to lock the positioning assembly 200 in the second state. In this way, only by manually pressing the locking button 4011 when unlocking is required, the unlocking of the locking structure 400 can be realized. After the positioning assembly 200 moves in place and the finger is released, the locking button 4011 automatically resets, and the locking of the positioning assembly 200 can be realized. The operation is convenient and the structure is simple.
[0102] Of course, the locking structure 400 is not limited to the above structure. The locking structure 400 can also be a magnetic adsorption type locking structure that realizes locking or unlocking by using the attraction or repulsion between magnetic materials, or an electronic lock, etc.
[0103] In some possible embodiments, referring to Figure 5 , along the extending direction of the housing 100, the second locking member 402 is slidably connected to the housing 100; there are a plurality of second locking grooves 4022, and along the extending direction of the housing 100, the plurality of second locking grooves 4022 are arranged at intervals.
[0104] Among them, there are multiple second locking grooves 4022, which should be understood that the number of the second locking grooves 4022 is two or more.
[0105] Since the second locking member 402 is slidably connected to the housing 100, during the process of the second locking member 402 driving the second locking member 402 to move relative to the housing 100 along the extending direction of the housing 100, not only can the friction between the second locking member 402 and the housing 100 be reduced to make the movement of the second locking member 402 smoother, but also a certain connection and restraint are maintained between the second locking member 402 and the housing 100, so that the movement of the second locking member 402 is more stable. And there are multiple second locking grooves 4022, and the multiple second locking grooves 4022 are arranged at intervals along the extending direction of the housing 100. Thus, after the positioning assembly 200 extends along the extending direction of the housing 100, it can be locked at different positions according to the needs of the user to adjust the length of the positioning assembly 200 extending out of the housing 100, thereby improving the applicability of the scanning pen 1.
[0106] In some possible embodiments, referring to Figure 6 , the locking portion 4012 includes a connecting frame 4013 and at least one engaging tooth 4015. Along the extending direction of the housing 100, the connecting frame 4013 is provided with a through hole 4014, and the second locking member 402 is disposed through the through hole 4014; along the extending direction of the housing 100, the engaging tooth 4015 is disposed on at least one side of the connecting frame 4013.
[0107] Among them, the above at least one engaging tooth 4015 should be understood that the number of the engaging teeth 4015 can be one or multiple. The above engaging tooth 4015 is disposed on at least one side of the connecting frame 4013 should be understood that the engaging tooth 4015 can be disposed only on one side of the connecting frame 4013 or on both sides of the connecting frame 4013.
[0108] By making the locking portion 4012 include a connecting frame 4013 and at least one engaging tooth 4015, and the connecting frame 4013 is provided with a through hole 4014 along the extension direction of the housing 100, so that when the second locking member 402 moves along the extension direction of the housing 100, the through hole 4014 can avoid the second locking member 402. After the positioning assembly 200 moves to the right position, the engaging tooth 4015 cooperates with the first locking groove 4021 or the second locking groove 4022 on the second locking member 402. In order to lock the positioning assembly 200 in the first state or the second state, on the one hand, the second locking member 402 can be constrained by the connecting frame 4013 in the extension direction of the shell 100 when moving, thereby avoiding the second locking member 402 from swinging as much as possible. On the other hand, by setting the connecting frame 4013, the connection between the locking part 4012 and the locking button 4011 is more stable, thereby reducing the possibility of damage to the first locking member 401, thereby ensuring the reliability of the locking structure 400.
[0109] In some possible embodiments, see Figure 3 and Figure 5 The positioning assembly 200 also includes a connecting portion 203 , on which the first positioning member 201 and the second positioning member 202 are both disposed, and the connecting portion 203 is connected to the second locking member 402 .
[0110] It should be noted that the first positioning member 201 and the second positioning member 202 are both arranged on the connecting part 203. It should be understood that the first positioning member 201, the second positioning member 202 and the connecting part 203 can be integrally formed, or the first positioning member 201 and the second positioning member 202 can be fixedly connected to the connecting part 203, which is not limited here.
[0111] By arranging the first positioning member 201 and the second positioning member 202 on the connecting portion 203 and connecting the connecting portion 203 with the second locking member 402, the second locking member 402 is connected to the first positioning member 201 and the second positioning member 202 at the same time through the connecting portion 203, so that the second locking member 402 can guide the first positioning member 201 and the second positioning member 202 at the same time when cooperating with the guide rail 621, and only one second locking member 402 is needed to simultaneously lock the first guide member and the second guide member, thereby maintaining the consistency of the movement and locking of the first positioning member 201 and the second positioning member 202. In addition, the first positioning member 201 and the second positioning member 202 are arranged on the connecting portion 203, and the connection between the first positioning member 201 and the second positioning member 202 and the second locking member 402 is realized through the connecting portion 203. There are fewer components and a simple structure, which can adapt to the limited space inside the housing 100 of the scanning pen 1.
[0112] In some possible embodiments, see Figure 3 ,Figure 4 and Figure 9 A guiding structure 600 is further provided in the housing 100. The guiding direction of the guiding structure 600 is parallel to the extending direction of the housing 100. The positioning assembly 200 is slidably connected to the housing 100 through the guiding structure 600.
[0113] By providing the guiding structure 600, and the guiding direction of the guiding structure 600 is parallel to the extending direction of the housing 100, and the positioning assembly 200 is slidably connected to the housing 100 through the guiding structure 600, during the movement of the positioning assembly 200 extending out of or retracting into the housing 100, the guiding structure 600 can guide the movement of the positioning assembly 200, so that the positioning assembly 200 moves along the extending direction of the housing 100 under the guiding action of the guiding structure 600, and as much as possible to avoid the deviation of the movement direction of the positioning assembly 200, so that the positioning assembly 200 can smoothly extend out of or retract into the housing 100. Moreover, the positioning assembly 200 is slidably connected to the housing 100 through the guiding structure 600, which can make the friction between the positioning assembly 200 and the housing 100 smaller when the positioning assembly 200 moves relative to the housing 100, thus ensuring the smoothness of the movement of the positioning assembly 200.
[0114] In some possible embodiments, referring to Figure 9 , the guiding structure 600 includes a first guiding structure 610. The first guiding structure 610 includes a guiding rod fixedly connected to the housing 100. The extending direction of the guiding rod is parallel to the extending direction of the housing 100. The connecting portion 203 of the positioning assembly 200 is slidably connected to the guiding rod.
[0115] Thus, when the positioning assembly 200 moves in the extending direction of the housing 100, the connecting portion 203 of the positioning assembly 200 can slide relative to the guiding rod under the guiding action of the guiding rod, so as to guide the connecting portion 203 in the extending direction of the housing 100 by using the guiding rod, that is, to guide the positioning assembly 200. In addition, the guiding rod is fixedly connected to the housing 100, and the connecting portion 203 of the positioning assembly 200 is slidably connected to the guiding rod to realize the guiding function of the positioning assembly 200, which not only has high reliability, but also has a simple structure and is convenient for installation.
[0116] In some possible embodiments, referring to Figure 3 and Figure 9 , an elastic member is sleeved on the guiding rod.
[0117] Therefore, in the process of the elastic member providing a force to the positioning assembly 200 to drive the positioning assembly 200 to switch between the first state and the second state, that is, in the process of the elastic member being compressed or stretched, and rebounding, it can make a linear motion under the guidance of the guide rod, so that the elastic member can provide a linear force along the extension direction of the shell 100 to drive the positioning assembly 200 to move along the extension direction of the shell 100, so that the movement of the positioning assembly 200 is smoother, and the vibration of the positioning assembly 200 during the movement is avoided as much as possible, thereby improving the positioning accuracy of the positioning assembly 200.
[0118] In some possible embodiments, see Figure 9 The first guide structure 610 includes a first guide rod 6101 and a second guide rod 6102, and the first guide rod 6101 and the second guide rod 6102 are arranged at intervals along the width direction of the shell 100; the driving structure 500 includes a first elastic member 501 and a second elastic member 502, the first elastic member 501 is sleeved on the first guide rod 6101, and the second elastic member 502 is sleeved on the second guide rod 6102.
[0119] The width direction of the housing 100 is Figure 3 The direction indicated by the arrow Z.
[0120] By providing the first guide rod 6101 and the second guide rod 6102 arranged at intervals along the width direction of the shell 100, and making the first elastic member 501 and the second elastic member 502 of the driving structure 500 respectively sleeved on the first guide rod 6101 and the second guide rod 6102, the first guide rod 6101 and the second guide rod 6102 can guide the positioning assembly 200 in the extension direction of the shell 100, so as to ensure that the first elastic member 501 and the second elastic member 502 can provide a linear effect along the extension direction of the shell 100. The force drives the positioning assembly 200 to move along the extension direction of the shell 100, and the first guide rod 6101 and the second guide rod 6102 are arranged at intervals along the width direction of the shell 100, so that the positioning assembly 200 has two force points in the width direction of the shell 100. It can be guided by the first guide rod 6101 and the second guide rod 6102 at the same time, and can also be driven by the first elastic member 501 and the second driving member at the same time, so that the force on the positioning assembly 200 is more uniform, and the stability of the positioning assembly 200 during movement is improved.
[0121] In some possible embodiments, see Figures 9 to 11, the guiding structure 600 includes a second guiding structure 620. The second guiding structure 620 includes a guiding slide rail 621 fixedly connected to the housing 100. The extending direction of the guiding slide rail 621 is parallel to the extending direction of the housing 100. The guiding slide rail 621 is slidably engaged with the second locking member 402.
[0122] When the positioning assembly 200 drives the second locking member 402 to move in the extending direction of the housing 100, the second locking member 402 can cooperate with the guiding slide rail 621 provided on and fixedly connected to the housing 100, so that the second locking member 402 moves in the extending direction of the housing 100 under the guiding action of the guiding slide rail 621. Furthermore, the cooperation between the second locking member 402 and the guiding slide rail 621 is utilized to guide the positioning assembly 200, and the movement direction of the positioning assembly 200 is preferably prevented from deviating, so that the positioning assembly 200 can smoothly extend out of or retract into the housing 100. In addition, the guiding slide rail 621 is slidably engaged with the second locking member 402, which can make the friction force between the second locking member 402 and the guiding slide rail 621 relatively small when the second locking member 402 moves relative to the guiding slide rail 621, thus ensuring the smoothness of the positioning assembly 200 during the movement process.
[0123] In some possible embodiments, refer to Figure 3 and Figure 4 , the scanning pen 1 further includes a control module 700 disposed in the housing 100 and a sensing device electrically connected to the control module 700. The sensing device is used to sense that the positioning assembly 200 is in the first state or the second state. When the positioning assembly 200 is in the first state, the control module 700 is used to control the camera 300 to close according to the signal sensed by the sensing device. When the positioning assembly 200 is in the second state, the control module 700 is used to control the camera 300 to turn on according to the signal sensed by the sensing device; a control button is further provided on the housing 100, and the control button is used to control the camera 300 to turn on or off.
[0124] When the user needs to use the scanning pen 1 to scan a specific area on the scanned page, the positioning component 200 is extended out of the housing 100 so that the positioning component 200 is in the second state. At this time, the sensing device senses that the positioning component 200 is in the first state and transmits the sensed signal to the control module 700. The control module 700 controls the camera 300 to turn on according to the signal sensed by the sensing device, so that the camera 300 can capture the area positioned by the positioning component 200. After use, the positioning component 200 is retracted into the housing 100 so that the positioning component 200 is in the first state. At this time, the sensing device senses that the positioning component 200 is in the second state and transmits the sensed signal to the control module 700. The control module 700 controls the camera 300 to turn off according to the signal sensed by the sensing device, thereby turning off the scanning function. Thus, the camera 300 in this embodiment can be automatically turned off when the positioning component 200 is in the first state and automatically turned on when the positioning component 200 is in the second state, which is more convenient to use.
[0125] In addition, a button for controlling the opening or closing of the camera 300 is also provided on the housing 100. When the positioning component 200 is in the first state, the user can use the button on the housing 100 to control the camera 300 to turn on, so that the scanning pen 1 can perform a full-page scan of the scanned page. After the scan is completed, the user can use the control button on the housing 100 to control the camera 300 to turn off.
[0126] In some possible embodiments, refer to Figure 4 and Figure 7 , the sensing device includes a magnetic sensor 7101 disposed in the housing 100 and fixedly connected to the housing 100 and a magnetic member 7102 fixedly connected to the positioning component 200. The magnetic sensor 7101 is also electrically connected to the control module 700. When the positioning component 200 is in the first state, the magnetic member 7102 is within the sensing range of the magnetic sensor 7101. When the positioning component 200 is in the second state, the magnetic member 7102 is outside the sensing range of the magnetic sensor 7101.
[0127] During the process of the positioning component 200 extending out of the housing 100, the positioning component 200 drives the movement of the component associated with the positioning component 200. When the positioning component 200 extends out of the housing 100 and is in the second state, the magnetic member 7102 moves outside the sensing range of the magnetic inductor 7101. At this time, the magnetic inductor 7101 transmits the signal that the magnetic member 7102 is outside the sensing range to the control module 700. The control module 700 controls the camera 300 to turn on according to this signal. During the process of the positioning component 200 retracting into the housing 100, the positioning component 200 drives the magnetic member 7102 to move. When the positioning component 200 extends out of the housing 100 and is in the second state, the magnetic member 7102 moves into the sensing range of the magnetic inductor 7101. At this time, the magnetic inductor 7101 transmits the signal that the magnetic member 7102 is within the sensing range to the control module 700. The control module 700 controls the camera 300 to turn off according to this signal. In this embodiment, by providing the magnetic member 7102 fixedly connected to the positioning component 200 and the magnetic inductor 7101 fixedly connected to the housing 100, during the movement of the magnetic member 7102 along with the positioning component 200, the magnetic inductor 7101 senses the change in the magnetic field between it and the magnetic member 7102 to determine whether the positioning component 200 is in the first state or the second state. There is no physical connection between the magnetic inductor 7101 and the magnetic member 7102, so that the movement of the magnetic member 7102 is not restricted, and further the movement of the positioning component 200 is not restricted, and the arrangement of the magnetic member 7102 and the magnetic inductor 7101 is more flexible and convenient for installation.
[0128] Exemplarily, referring to Figure 4 and Figure 7 , the camera 300 is electrically connected to the control module 700 through a circuit board. The magnetic inductor is assembled on the circuit board of the camera 300. The magnetic member 7102 is arranged on the second locking member 402, so that the magnetic inductor can be electrically connected to the control module 700 through the circuit board of the camera 300 without the need to additionally set up a circuit, which simplifies the structure. Moreover, by arranging the magnetic member 7102 on the second locking member 402, the magnetic member 7102 can be always located inside the housing 100 during the movement of the positioning component 200, thus avoiding the situation that the magnetic member 7102 falls off or its magnetism decreases due to the exposure of the magnetic member 7102 outside the housing 100, so as to ensure the sensing accuracy of the sensing device.
[0129] Of course, the above example of assembling the magnetic inductor on the circuit board of the camera 300 and arranging the magnetic member 7102 on the second locking member 402 is only an illustration of the setting positions of the magnetic inductor and the magnetic member 7102, rather than a limitation on the setting positions of the magnetic inductor and the magnetic member 7102. Those skilled in the art should be aware of this.
[0130] Among them, the magnetic inductor 7101 can be any magnetic inductor 7101 such as a Hall sensor, a magnetic induction sensor, an electromagnetic inductor 7101, etc., and the magnetic member 7102 can be a magnetic member 7102 made of any magnetic material such as iron, nickel, cobalt, etc., which is not limited herein.
[0131] In some possible embodiments, the magnetic inductor 7101 is a Hall sensor, and the magnetic member 7102 is a magnet. The Hall sensor is sensitive to changes in the magnetic field and can accurately detect and measure. Therefore, it can improve the detection accuracy of the induction device to accurately determine whether the positioning component 200 is in the first state or the second state, and the structure of the Hall sensor is simple, thus reducing the difficulty of integrating it into the housing 100 of the scanning pen 1. Moreover, the cost of the magnet is low and it will not cause environmental pollution.
[0132] In some possible embodiments, the camera 300 is rotatably connected to the housing 100.
[0133] By rotatably connecting the camera 300 to the housing 100, the user can adjust the shooting angle of the camera 300 according to the usage requirements, so that the user can adjust the shooting angle of the camera 300 without changing the holding posture of the scanning pen 1, which is convenient for the user to use.
[0134] It should be noted that the camera 300 and the housing 100 can be connected by a rotating shaft 800, or can be connected by a hinge or a bearing or any other form of rotational connection, as long as the rotational connection between the camera 300 and the housing 100 is achieved, which is not limited herein.
[0135] In some possible embodiments, refer to Figure 1 and Figure 12 , the camera 300 has a first shooting form and a second shooting form. The first shooting form is configured such that the camera 300 faces outside the housing 100 along the extending direction of the housing 100, and the second shooting form is configured such that the camera 300 faces outside the housing 100 along the thickness direction of the housing 100.
[0136] When the user needs to scan a specific area, the positioning component 200 is switched to the second state. At this time, the camera 300 is rotated to the first shooting form, so that the camera 300 faces outside the housing 100 along the extension direction of the housing 100. That is to say, the shooting direction of the camera 300 faces outside the housing 100 along the extension direction of the housing 100, so that the camera 300 can shoot the area between the first positioning member 201 and the second positioning member 202. When the user needs to scan a complete page, the positioning component 200 is switched to the first state. At this time, the camera 300 is rotated to the second shooting form, so that the camera 300 faces outside the housing 100 along the thickness direction of the housing 100. That is to say, the shooting direction of the camera 300 faces outside the housing 100 along the thickness direction of the housing 100, so that the camera 300 faces the page to be scanned to shoot the complete page of the page to be scanned. For example, when it is necessary to scan the complete page of the page to be scanned, the camera 300 can be rotated towards the direction where the page to be scanned is located, so that the user can scan the complete page without changing the holding posture of the scanning pen 1, which is convenient for the user to use and improves the user experience.
[0137] In some possible embodiments, refer to Figure 13 , the camera 300 is rotatably connected to the housing 100 through a rotating shaft 800, and the extension direction of the rotating shaft 800 is parallel to the width direction of the housing 100.
[0138] Since the camera 300 is rotatably connected to the housing 100 through the rotating shaft 800, and the extension direction of the rotating shaft 800 is parallel to the width direction of the housing 100, therefore, the camera 300 can rotate in the width direction of the housing 100 through the rotating shaft 800, and the contact area between the rotating shaft 800 and the camera 300 is relatively large, which can not only ensure the stability of the camera 300 during the rotation process as much as possible, but also be more convenient for controlling the rotation angle so that the camera 300 rotates to the angle required by the user, and can also ensure the connection stability between the camera 300 and the housing 100. In addition, using the rotating shaft 800 to realize the rotational connection between the housing 100 and the camera 300, the connection method is simple, and it is easy to disassemble and maintain the camera 300.
[0139] In one possible embodiment, the rotating shaft 800 is a damping rotating shaft 800, and the damping rotating shaft 800 is configured to enable the camera 300 to hover at any rotation angle.
[0140] Among them, the damping rotating shaft 800 is configured to enable the camera 300 to hover at any rotation angle, which should be understood as that when the camera 300 is not subject to external forces, the damping rotating shaft 800 can provide sufficient friction force to prevent the camera 300 from rotating relative to the housing 100, so that the camera 300 can hover at any angle.
[0141] By providing a damping rotating shaft 800, the camera 300 can hover at any angle, so that there is no need to additionally provide an angle locking structure 400 on the housing 100 or the camera 300, and the fixation of the angle of the camera 300 can be achieved, simplifying the structure of the scanning pen 1 and the production difficulty.
[0142] In some possible embodiments, referring to Figure 13 , the camera 300 is electrically connected to the control module 700 through a flexible circuit board 900. When the camera 300 rotates relative to the housing 100, the flexible circuit board 900 rotates with the camera 300, thereby ensuring the reliability of the electrical connection between the camera 300 and the control module 700 during the rotation of the camera 300.
[0143] In some possible embodiments, referring to Figure 12 , along the width direction of the housing 100, the scanning pen 1 further includes flashlights 310 provided on opposite sides of the camera 300.
[0144] When the user needs to scan a specific area on the scanned page, it is necessary to use the first positioning member 201 and the second positioning member 202 to position the specific area. At this time, due to the obstruction of the first positioning member 201 and the second positioning member 202, part of the light source cannot enter the area where the camera 300 is located, resulting in a lower brightness of the shooting area of the camera 300. Therefore, in this embodiment, flashlights 310 are provided on opposite sides of the camera 300 along the width direction of the housing 100, so that when the camera 300 shoots the area positioned by the first positioning member 201 and the second positioning member 202, the flashlights 310 are used to fill light for this area to increase the brightness of this area, thereby improving the shooting effect of the camera 300. In addition, when the user uses the scanner in a relatively dim environment, the flashlights 310 can also play a role in adjusting the brightness of the shooting environment of the camera 300, thereby improving the shooting effect of the camera 300 and improving the applicability of the scanning pen 1.
[0145] In some possible embodiments, referring to Figure 4 , a display screen 110 is further provided on the housing 100.
[0146] By providing a display screen 110 on the housing 100, when the positioning component 200 of the scanning pen 1 is in the first state, the display screen 110 of the scanning pen 1 can be used by the user for viewing. At this time, the scanning pen 1 can be used as electronic devices such as a tablet, a reader, an MP4, etc., which makes the scanning pen 1 have more usage scenarios and improves the practicality of the scanning pen 1. When the positioning component 200 of the scanning pen 1 is in the second state, the display screen 110 can display the images captured by the camera 300 of the scanning pen 1, so that the user can adjust the positioning area according to the content displayed on the display screen 110, thereby improving the accuracy of the positioning component 200 during positioning.
[0147] In some possible embodiments, the display screen 110 is a touch screen, and the control buttons on the housing 100 are virtual buttons.
[0148] Setting the display screen 110 as a touch screen and the control buttons as virtual buttons enables the elimination of the need to additionally provide physical buttons on the housing 100, allowing the size of the display screen 110 to be as large as possible and improving the user viewing experience.
[0149] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present application and are not intended to limit them; although the present application has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that they can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements for some or all of the technical features; and these modifications or replacements do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of the present application.
Claims
1. A scanning pen, characterized in that: include: A shell, wherein the shell has an extension direction, and along the extension direction of the shell, the shell has a first end and a second end; A positioning assembly, the positioning assembly includes a first positioning member and a second positioning member, the positioning assembly is movably disposed at the first end, the positioning assembly has a first state and a second state, the first state is configured as the positioning assembly retracted into the housing, the second state is configured as the positioning assembly extending out of the housing, when the positioning assembly is in the second state, the positioning assembly is used to locate an area to be scanned; A camera, the camera being disposed at the first end and between the first positioning member and the second positioning member; A locking structure is used to lock the positioning assembly in the first state or the second state.
2. The scanning pen according to claim 1, characterized in that: The scanning pen further includes a driving structure, wherein the driving structure is connected to the positioning component, and the driving structure is used to drive the positioning component to switch between the first state and the second state.
3. The scanning pen according to claim 2, characterized in that: The driving structure includes an elastic member, which is disposed between the housing and the positioning assembly. The elastic member is used to provide a force to the positioning assembly to drive the positioning assembly to switch between the first state and the second state.
4. The scanning pen according to claim 3, characterized in that: The locking structure comprises: A first locking member, wherein the first locking member is disposed on the housing; A second locking member, the second locking member is movably arranged in the shell and connected to the positioning assembly, and along the extension direction of the shell, a first locking groove and a second locking groove are arranged at intervals on the second locking member, when the positioning assembly is in the first state, the first locking member is snap-fitted with the first locking groove, and when the positioning assembly is in the second state, the first locking member is snap-fitted with the second locking groove.
5. The scanning pen according to claim 4, characterized in that: The first locking member comprises a locking button movably arranged on the housing and a locking portion connected to the locking button, wherein the locking portion is arranged inside the housing, and at least a portion of the locking button is located outside the housing; When the locking button moves into the shell, the locking portion separates from the second locking member to unlock the locking structure, and when the locking button moves out of the shell, the locking portion engages with the second locking member to lock the locking structure; or, When the locking button moves into the shell, the locking portion and the second locking piece are engaged to lock the locking structure. When the locking button moves out of the shell, the locking portion and the second locking piece are separated to unlock the locking structure.
6. The scanning pen according to claim 5, characterized in that: The locking button is slidably connected to the shell along the thickness direction of the shell.
7. The scanning pen according to claim 5, characterized in that: An elastic reset member is arranged between the locking button and the housing, and the elastic reset member is used to provide an elastic force to the locking button to drive the locking button to reset.
8. The scanning pen according to claim 5, characterized in that: The second locking member is slidably connected to the shell along the extension direction of the shell; There are a plurality of the second locking grooves, and the plurality of the second locking grooves are arranged at intervals along the extension direction of the shell.
9. The scanning pen according to claim 5, characterized in that: The locking portion comprises: A connecting frame, wherein the connecting frame is provided with a through hole along the extension direction of the shell, and the second locking member is provided through the through hole; At least one engaging tooth is provided on at least one side of the connecting frame along the extending direction of the shell.
10. The scanning pen according to claim 4, characterized in that: The positioning assembly also includes a connecting portion, the first positioning member and the second positioning member are both arranged on the connecting portion, and the connecting portion is connected to the second locking member.
11. The scanning pen according to claim 4, characterized in that: A guide structure is also provided in the shell, and the guide direction of the guide structure is parallel to the extension direction of the shell. The positioning assembly is slidably connected to the shell through the guide structure.
12. The scanning pen according to claim 11, characterized in that: The guide structure comprises a first guide structure, the first guide structure comprises a guide rod fixedly connected to the shell, the extension direction of the guide rod is parallel to the extension direction of the shell, and the connection part of the positioning assembly is slidably connected to the guide rod.
13. The scanning pen according to claim 12, characterized in that: The elastic member is sleeved on the guide rod.
14. The scanning pen according to claim 13, characterized in that: The first guide structure comprises a first guide rod and a second guide rod, and the first guide rod and the second guide rod are arranged at intervals along the width direction of the housing; The driving structure includes a first elastic member and a second elastic member, wherein the first elastic member is sleeved on the first guide rod, and the second elastic member is sleeved on the second guide rod.
15. The scanning pen according to claim 11, characterized in that: The guide structure includes a second guide structure, the second guide structure includes a guide rail fixedly connected to the shell, the extension direction of the guide rail is parallel to the extension direction of the shell, and the guide rail is slidably matched with the second locking member.
16. The scanning pen according to claim 1, characterized in that: The scanning pen further comprises a control module disposed in the housing and a sensing device electrically connected to the control module, wherein the sensing device is used to sense whether the positioning component is in a first state or a second state, and when the positioning component is in the first state, the control module is used to control the camera to be turned off according to the signal sensed by the sensing device, and when the positioning component is in the second state, the control module is used to control the camera to be turned on according to the signal sensed by the sensing device; The housing is also provided with a control button, and the control button is used to control the camera to be turned on or off.
17. The scanning pen according to claim 16, characterized in that: The sensing device includes a magnetic sensor disposed in the shell and fixedly connected to the shell, and a magnetic component fixedly connected to the positioning assembly. The magnetic sensor is also electrically connected to the control module. When the positioning assembly is in the first state, the magnetic component is located within the sensing range of the magnetic sensor. When the positioning assembly is in the second state, the magnetic component is located outside the sensing range of the magnetic sensor.
18. The scanning pen according to claim 1, characterized in that: The camera is rotatably connected to the shell.
19. The scanning pen according to claim 18, characterized in that: The camera has a first shooting form and a second shooting form. The first shooting form is configured such that the camera faces outside the shell along an extension direction of the shell, and the second shooting form is configured such that the camera faces outside the shell along a thickness direction of the shell.
20. The scanning pen according to claim 19, characterized in that: The camera is rotatably connected to the shell via a rotating shaft, and an extending direction of the rotating shaft is parallel to a width direction of the shell.
21. The scanning pen according to claim 20, characterized in that: The rotating shaft is a damping rotating shaft, and the damping rotating shaft is configured to enable the camera to hover at any rotation angle.
22. The scanning pen according to claim 1, characterized in that: Along the width direction of the housing, the scanning pen further includes flash lamps arranged on opposite sides of the camera.
23. The scanning pen according to claim 1, characterized in that: The housing is also provided with a display screen.
24. The scanning pen according to claim 23, characterized in that: The display screen is a touch screen, and the control buttons on the shell are virtual buttons.