Intelligent scanning pen
By designing the first cross beam and transparent support on the front end of the housing of the intelligent scanning pen, the problem of insufficient strength of the front end of the housing in the prior art is solved, which significantly improves the strength of the front end of the housing, reduces the risk of damage, and extends the service life of the equipment.
Patent Information
- Application Number
- CN202421971818.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-14
- Publication Date
- 2025-05-16
- Estimated Expiration
- 2034-08-14
AI Technical Summary
The front end structure of the existing smart scanning pen has a low strength and is easily damaged when bumped or dropped, resulting in damage to the triggering parts.
An intelligent scanning pen is designed, and the front end of the shell is equipped with a hole that penetrates in the upper and lower directions, and a first cross beam is formed on the front side of the opening, and a transparent support member is provided to abut the first cross beam to separate the observation window and the scanning window to enhance the structural strength of the front end of the shell.
By adding the first cross beam and transparent support, the structural strength of the front end of the housing is significantly improved, the possibility of damage is reduced, the service life is extended, and the risk of triggering component damage is reduced.
Smart Images

Figure CN222883083U_ABST
Abstract
Description
Technical Field
[0001] The embodiments of the present utility model relate to the field of intelligent scanning pens, and more specifically, the embodiments of the present utility model relate to an intelligent scanning pen. Background Art
[0002] This section is intended to provide a background or context to the embodiments of the invention as recited in the claims. No description herein is admitted to be prior art by inclusion in this section.
[0003] In the prior art, the scanning pen is based on optical character recognition technology and an embedded translation system, which replaces the traditional key input with an extremely fast scanning and searching method. To look up new words and sentences, you only need to scan lightly, and the explanation and pronunciation of the word will be displayed immediately.
[0004] In existing scanning pens, the trigger components are usually arranged on both sides of the end of the pen tip. Since the structural size of the trigger component is small, the front end size of the shell for mounting the contact structure is also small, resulting in low structural strength of the front end of the shell. When bumped, especially when the scanning pen falls to the ground, the shell is easily damaged, which can easily damage the contact at the same time. Utility Model Content
[0005] Therefore, an improved intelligent scanning pen is greatly needed to improve the structural strength of the front end of the shell.
[0006] In this context, embodiments of the present invention are intended to provide a smart scanning pen.
[0007] In an embodiment of the utility model, a smart scanning pen is provided, including a shell, a front end of the shell is provided with an opening which passes through in the up-down direction, the opening defines an observation window and a scanning window which are relatively arranged, a front side of the opening is provided with a first cross beam formed at the front end of the shell, a transparent support member is clamped in the opening, the support member is in contact with the first cross beam, and the support member separates the observation window and the scanning window.
[0008] In one embodiment of the utility model, the shell further includes a second cross beam located at the rear side of the opening and side beams located at both sides of the opening, the support member abuts against the second cross beam and the two side beams at the same time, and the support member is a transparent structure.
[0009] Optionally, the support member is a rectangular or cubic plate structure.
[0010] Optionally, the shell specifically includes a first sub-shell, a second sub-shell and a third sub-shell, and the first sub-shell, the second sub-shell and the third sub-shell are interlocked; the opening passes through the first sub-shell, the second sub-shell and the front end of the third sub-shell in the up and down directions; the opening at the front end of the third sub-shell defines the scanning window, and the first crossbeam is formed at the front end of the first sub-shell, or the front end of the second sub-shell, or the front end of the third sub-shell.
[0011] In yet another embodiment of the present invention, a first limiting groove is provided at the front opening edge of the second sub-shell, and the support member is clamped in the first limiting groove.
[0012] In another embodiment of the utility model, a fixing seat is provided on the front opening edge of the first sub-shell, lugs are provided on both sides of the support member, mounting holes are provided on the lugs, and the fixing seat is inserted into the mounting holes.
[0013] In another embodiment of the utility model, the fixing seat is provided with a first assembly hole configured as a blind hole, the first limiting groove defines a second assembly hole, and fasteners are inserted into the first assembly hole and the second assembly hole.
[0014] In another embodiment of the utility model, a first buckle is provided on the first sub-shell, a second buckle is provided on the second sub-shell, and the first buckle is buckled with the second buckle.
[0015] In another embodiment of the present invention, the first buckle and the second buckle both have a protruding portion and a recessed portion, and the protruding portion and the recessed portion correspond to the embedded buckles respectively.
[0016] In another embodiment of the utility model, the first sub-shell defines an observation window, and the first sub-shell and the second sub-shell jointly define a accommodating cavity, the support member is clamped in the accommodating cavity, one of the first sub-shell and the second sub-shell is provided with a first limiting portion, the first limiting portion and the observation window are arranged in parallel, and the other one is provided with a second limiting groove, and the first limiting portion is located in the second limiting groove.
[0017] In another embodiment of the present invention, a stopper is provided on the first sub-shell, and the stopper is located on a side of the second sub-shell close to the second crossbeam.
[0018] In another embodiment of the utility model, the third sub-shell is provided with a second limiting portion, the first sub-shell is provided with a third limiting groove, the outer contour of the second sub-shell avoids the second limiting portion, and the second limiting portion is embedded in the third limiting groove.
[0019] In another embodiment of the present invention, a baffle is disposed on the first sub-shell, and the baffle is respectively stopped at two sides of the second sub-shell.
[0020] In another embodiment of the present invention, a transparent first cover plate is provided in the observation window, and a transparent second cover plate is provided in the scanning window.
[0021] According to the smart scanning pen of the utility model implementation mode, the first cross beam can be used to increase the structural strength of the front end of the shell, and the supporting member can be used to increase the structural strength of the first cross beam, thereby improving the structural strength of the front end of the shell as a whole, thereby significantly reducing the possibility of damage to the front end of the shell, and reducing the possibility of damage to the trigger component, bringing a better experience to the user. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] By reading the detailed description below with reference to the accompanying drawings, the above and other objects, features and advantages of the exemplary embodiments of the present invention will become readily understood. In the accompanying drawings, several embodiments of the present invention are shown in an exemplary and non-limiting manner, wherein:
[0023] Figure 1 A three-dimensional schematic diagram of an exemplary smart scanning pen suitable for implementing the embodiments of the present utility model is schematically shown;
[0024] Figure 2 Schematically shows a three-dimensional diagram of a smart scanning pen according to another embodiment of the utility model;
[0025] Figure 3 Schematically shows a front view of a smart scanning pen according to another embodiment of the utility model;
[0026] Figure 4 Schematically shows Figure 3 Cross-sectional view at AA in the middle;
[0027] Figure 5 Schematically shows an exploded schematic diagram of a smart scanning pen according to another embodiment of the utility model;
[0028] Figure 6 Schematically shows an exploded schematic diagram of a smart scanning pen according to another embodiment of the utility model;
[0029] Figure 7 Schematically shows an exploded schematic diagram of a smart scanning pen according to another embodiment of the utility model;
[0030] Figure 8 A schematic diagram schematically shows a partial structure of a smart scanning pen according to another embodiment of the utility model;
[0031] Fig. 9 A perspective view schematically shows a first sub-housing of a smart scanning pen according to another embodiment of the utility model;
[0032] Fig.10 The figure schematically shows a three-dimensional view of the second sub-housing of the smart scanning pen according to another embodiment of the present utility model.
[0033] In the drawings, the same or corresponding reference numerals represent the same or corresponding parts.
[0034] Reference numerals:
[0035] Shell 10, opening 11, observation window 111, scanning window 112, support member 12, lug 121, mounting hole 1211, first sub-shell 13, fixing seat 131, first assembly hole 1311, first buckle 132, protrusion 1321, recessed portion 1322, stopper 133, first limiting portion 134, baffle 135, third limiting groove 136, second sub-shell 14, first crossbeam 141, second crossbeam 142, convex edge 143, second assembly hole 1431, second buckle 144, first limiting groove 145, second limiting groove 146, accommodating chamber 148, third sub-shell 15, second limiting portion 151, first cover plate 16, second cover plate 17, trigger member 20, deformable member 30, pressure sensing component 40, sealing member 50. DETAILED DESCRIPTION
[0036] The principle and spirit of the present invention will be described below with reference to several exemplary embodiments. It should be understood that these embodiments are provided only to enable those skilled in the art to better understand and implement the present invention, and are not intended to limit the scope of the present invention in any way. On the contrary, these embodiments are provided to make the present disclosure more thorough and complete, and to fully convey the scope of the present disclosure to those skilled in the art.
[0037] Utility Model Overview
[0038] According to an embodiment of the present utility model, a smart scanning pen is proposed.
[0039] Any number of elements in the drawings is for illustration and not limitation, and any naming is for distinction only and does not have any limiting meaning.
[0040] The principle and spirit of the present invention are explained in detail below with reference to several representative embodiments of the present invention.
[0041] First reference Figure 1 , showing a schematic diagram of an exemplary smart scanning pen suitable for implementing the embodiments of the present utility model.
[0042] In an embodiment of the utility model, a smart scanning pen is provided, including a shell 10. The front end of the shell 10 is provided with an opening 11 that passes through in the up-down direction. The opening 11 defines an observation window 111 and a scanning window 112 that are relatively arranged. The front side of the opening 11 is provided with a first cross beam 141 formed at the front end of the shell 10. A transparent support member 12 is clamped in the opening 11. The support member 12 abuts against the first cross beam 141. The support member 12 separates the observation window 111 and the scanning window 112.
[0043] In detail, the scanning window 112 is used to select the content that needs to be identified. On the one hand, the observation window 111 allows the user to observe the selected content in the scanning window 112 to ensure that the smart scanning pen identifies the content required by the user. On the other hand, the observation window 111 allows light to penetrate, thereby providing light for the image acquisition component of the smart scanning pen so that it can identify the file to be scanned.
[0044] A first cross beam 141 formed at the front end of the shell 10 is provided on the front side of the opening 11. The first cross beam 141 can be used to increase the structural strength of the front end of the shell 10. The support member 12 is fixed on the shell 10 and abuts against the first cross beam 141. The support member 12 is used to increase the structural strength of the first cross beam 141, thereby improving the structural strength of the front end of the shell 10 as a whole.
[0045] The support member 12 can be connected to the front portion, rear portion or side portion of the housing 10 located at the opening 11, and can be detachably connected or integrally formed, which is not limited in this application. In one embodiment of the present application, the support member 12 is detachably connected to the housing 10.
[0046] The shape of the support member 12 can be set as required, for example, it can be set to a three-dimensional structure with a cross section of a circle, an ellipse, a triangle, a pentagon, etc.
[0047] According to the smart scanning pen of the embodiment of the utility model, the support member 12 abuts against the first crossbeam 141, and the first crossbeam 141 can be used to increase the structural strength of the front end of the shell 10, and the support member 12 can be used to increase the structural strength of the first crossbeam 141, thereby improving the bearing capacity of the first crossbeam 141 when it is hit by force, and improving the structural strength of the front end of the shell 10 as a whole. When the user accidentally drops the smart scanning pen to the ground, the first crossbeam 141 can also be well protected, thereby significantly reducing the possibility of damage to the front end of the shell 10, and reducing the possibility of damage to the trigger component, extending the service life of the smart scanning pen, and bringing a better experience to the user.
[0048] In one embodiment of the utility model, the shell 10 further includes a second cross beam 142 located at the rear side of the opening 11 and side beams located on both sides of the opening 11. The support member 12 abuts against the second cross beam 142 and the two side beams at the same time, and the support member 12 is a transparent structure.
[0049] According to the smart scanning pen of the embodiment of the utility model, the first cross beam 141, the second cross beam 142 and the two side beams are used to ensure the structural strength of the front end of the shell 10 and to limit and position the support member 12, so as to assist the support member 12 to jointly enhance the structural strength of the first cross beam 141 and strengthen the structural strength of the front end of the shell 10.
[0050] In some embodiments, the support member 12 is a rectangular or cubic plate structure, which can simplify the structural setting of the support member 12. The thickness of the support member 12 can be set as needed to meet the structural strength requirements.
[0051] It should be noted that the thickness of the support member 12 can be set accordingly according to the thickness of the first beam 141. For example, the thickness of the support member 12 can be greater than the thickness of the first beam 141, or the thickness of the support member 12 is equal to the thickness of the first beam 141, or the thickness of the support member 12 is less than the thickness of the first beam 141. This application does not impose any restrictions as long as the structural strength requirements can be met.
[0052] In one embodiment of the utility model, the shell 10 specifically includes a first sub-shell 13, a second sub-shell 14 and a third sub-shell 15; the opening 11 passes through the first sub-shell 13, the second sub-shell 14 and the front end of the third sub-shell 15 in the up and down directions, the opening 11 at the front end of the third sub-shell 15 defines a scanning window 112, and the first cross beam 141 is formed at the front end of the first sub-shell 13, or the front end of the second sub-shell 14, or the front end 15 of the third sub-shell.
[0053] In detail, the first sub-shell 13, the second sub-shell 14 and the third sub-shell 15 jointly define the opening 11, which can simplify the overall processing technology of the shell 10 and reduce the processing difficulty. The third sub-shell 15 defines a scanning window 112. The first cross beam 141 is formed at the front end of the first sub-shell 13, or the front end of the second sub-shell 14, or the front end 15 of the third sub-shell. That is to say, in some embodiments, the front end of the first sub-shell 13 forms the first cross beam 141; in some embodiments, the front end of the second sub-shell 14 forms the first cross beam 141; in some embodiments, the front end of the third sub-shell 15 forms the first cross beam 141.
[0054] In some embodiments, the first sub-housing 13 includes a first cross beam 141 , a second cross beam 142 , and two side beams, and two ends of the two side beams are respectively connected to the first cross beam 141 and the second cross beam 142 .
[0055] In some embodiments, the second sub-housing 14 includes a first cross beam 141 , a second cross beam 142 , and two side beams, and two ends of the two side beams are respectively connected to the first cross beam 141 and the second cross beam 142 .
[0056] It should also be noted that the first sub-shell 13 and the third sub-shell 15 can be connected by snap-fitting, or they can be connected by fastener threads, or they can be combined by snap-fitting and fastener connections. The first sub-shell 13 and the second sub-shell 14 can be connected by snap-fitting, or they can be connected by fastener threads, or they can be combined by snap-fitting and fastener connections.
[0057] To this end, the support member 12 is set to a transparent structure, which allows light to penetrate into the scanning window 112, assists the image acquisition component in fill light, and facilitates the user to observe the content framed in the scanning window 112 through the support member 12.
[0058] The material of the support member 12 can be selected from a variety of different materials as needed, and the mechanical strength, transparency, durability, processing performance and other aspects of the material can be considered during selection. For example, glass can be selected, which has excellent optical transparency and scratch resistance, high hardness, and good chemical stability. Resin materials such as acrylic, polycarbonate (PC), polyurethane (TPU), and epoxy resin can also be selected.
[0059] In yet another embodiment of the present invention, a first limiting groove 145 is disposed at the front opening edge of the second sub-housing 14 , and the support member 12 is clamped in the first limiting groove 145 .
[0060] It is understandable that the first limiting groove 145 is used to limit and position the support member 12, further limiting the degree of freedom of the support member 12. When the smart scanning pen is hit, it is easier to ensure the position of the support member 12 and enhance the structural strength of the front end of the shell 10.
[0061] In another embodiment of the utility model, a fixing seat 131 is provided on the front opening edge of the first sub-shell 13 , lugs 121 are provided on both sides of the support member 12 , mounting holes 1211 are provided on the lugs 121 , and the fixing seat 131 is passed through the mounting holes 1211 .
[0062] Specifically, a fixing seat 131 is provided on the first sub-shell 13, and lugs 121 are provided on both sides of the support member 12. A fixing seat 131 is provided on the first sub-shell 13, and the fixing seat 131 is passed through the mounting hole 1211. By utilizing the snap-fitting between the fixing seat 131 and the mounting hole 1211, the first sub-shell 13 and the support member 12 can be fixed and limited, thereby reducing the difficulty of the overall installation and matching operation of the shell 10, and improving the assembly efficiency and reliability after assembly.
[0063] In another embodiment of the utility model, a first assembly hole 1311 configured as a blind hole is provided on the fixing seat 131 , a second assembly hole 1431 is defined in the first limiting groove 145 , and fasteners are inserted in the first assembly hole 1311 and the second assembly hole 1431 .
[0064] Specifically, a first assembly hole 1311 configured as a blind hole is provided on the fixing seat 131, and a second assembly hole 1431 is provided on the protruding edge 143. The fixing seat 131 and the second assembly hole 1431 are connected together by fasteners, so that the first sub-shell 13, the support member 12 and the second sub-shell 14 are connected together and fixed, thereby improving the stability and reliability of the shell 10 structure.
[0065] like Fig.10 As shown, in some specific embodiments, a protrusion 143 is provided on the second sub-shell 14, and together with the protrusion 143, a first limiting groove 145 is defined, and the protrusion 143 abuts against the bottom of the support member 12, and can support and limit the support member 12 on one side of the thickness direction of the support member 12, wherein the thickness of the protrusion 143 can be smaller than the thickness of the support member 12, thereby reducing the space occupied. In addition, the protrusion 143 and the second sub-shell 14 are integrally formed, which can simplify the structural molding and enhance the overall structural strength of the second sub-shell 14.
[0066] In some embodiments, a second assembly hole 1431 is defined on the protruding edge 143 .
[0067] In another embodiment of the present invention, a first buckle 132 is provided on the first sub-shell 13 , and a second buckle 144 is provided on the second sub-shell 14 , and the first buckle 132 and the second buckle 144 are buckled together.
[0068] In detail, the first clip 132 and the second clip 144 can be snapped together to limit, position and fix the first sub-shell 13 and the second sub-shell 14. While the first sub-shell 13 and the second sub-shell 14 are connected by fasteners, they are also snapped together by the first clip 132 and the second clip 144 to cooperate in limiting and fixing the first sub-shell 13 and the second sub-shell 14, thereby improving the overall stability of the shell 10 and reducing misalignment and shaking between components.
[0069] The structures of the first buckle 132 and the second buckle 144 can be set as needed. For example, one of the first buckle 132 and the second buckle 144 can be configured as a groove, and the other can be configured as a convex buckle.
[0070] In another embodiment of the present invention, the first buckle 132 and the second buckle 144 both have a protruding portion 1321 and a recessed portion 1322 , and the protruding portion 1321 and the recessed portion 1322 correspond to the embedded buckles respectively.
[0071] Specifically, the first buckle 132 and the second buckle 144 both have a protrusion 1321 and a recessed portion 1322, and the protrusion 1321 and the recessed portion 1322 correspond to the buckles respectively. That is, the first buckle 132 has a protrusion 1321 and a recessed portion 1322, and the second buckle 144 has a protrusion 1321 and a recessed portion 1322. The protrusion 1321 of the first buckle 132 is snapped into the recessed portion 1322 of the second buckle 144, and the recessed portion 1322 of the first buckle 132 is snapped into the protrusion 1321 of the second buckle 144.
[0072] In another embodiment of the utility model, the first sub-shell 13 defines an observation window 111, and the first sub-shell 13 and the second sub-shell 14 jointly define a accommodating cavity 148, and the support member 12 is clamped in the accommodating cavity 148. One of the first sub-shell 13 and the second sub-shell 14 is provided with a first limiting portion 134, and the first limiting portion 134 is arranged in parallel with the observation window 111, and the other one is provided with a second limiting groove 146, and the first limiting portion 134 is located in the second limiting groove 146.
[0073] Specifically, the first sub-shell 13 defines an observation window 111, and the first sub-shell 13 and the second sub-shell 14 jointly define a receiving cavity 148. The support member 12 is clamped in the receiving cavity 148. Through the cooperation of the first limiting portion 134 and the second limiting groove 146, it can play a role in positioning and limiting when the first sub-shell 13 and the second sub-shell 14 are assembled together, thereby simplifying the difficulty of assembly and playing a role in preventing mistakes.
[0074] In another embodiment of the present invention, a stopper 133 is disposed on the first sub-housing 13 , and the stopper 133 is located on a side of the second sub-housing 14 close to the second cross beam 142 .
[0075] Specifically, a stopper 133 is provided on the first sub-shell 13, and the stopper 133 is located on a side of the second sub-shell 14 close to the second cross beam 142, so that the stopper 133 is used to limit the degree of freedom from a side of the second sub-shell 14 close to the second cross beam 142, thereby reducing the difficulty of assembling the first sub-shell 13 and the second sub-shell 14.
[0076] In some embodiments, the first sub-shell 13 is provided with a first limiting portion 134 , and the second sub-shell 14 is provided with a second limiting groove 146 ; in some embodiments, the first sub-shell 13 is provided with a second limiting groove 146 , and the second sub-shell 14 is provided with a first limiting portion 134 .
[0077] In a specific embodiment, the first limiting portion 134 extends along the width direction of the shell 10 and has a long strip structure. In this way, while simplifying the structural setting of the first limiting portion 134, it can ensure that the first limiting portion 134 limits the freedom between the first sub-shell 13 and the second sub-shell 14 in the width direction of the shell 10, thereby improving the accuracy of the installation and alignment of the first sub-shell 13 and the second sub-shell 14, reducing the difficulty of alignment when the fasteners are connected, and thereby greatly improving the installation efficiency.
[0078] In a specific embodiment, the first limiting portion 134 may also be configured as two sub-limiting portions, and the two sub-limiting portions are respectively disposed at two ends of the first sub-shell 13 or the second sub-shell 14 in the width direction.
[0079] In another embodiment of the utility model, a second limiting portion 151 is provided on the third sub-shell 15, a third limiting groove 136 is provided on the first sub-shell 13, the outer contour of the second sub-shell 14 avoids the second limiting portion 151, and the second limiting portion 151 is embedded in the third limiting groove 136.
[0080] In detail, a second limiting portion 151 is provided on the third sub-shell 15, and a third limiting groove 136 is provided on the first sub-shell 13. The outer contour of the second sub-shell 14 avoids the second limiting portion 151, so that the second limiting portion 151 can be directly embedded in the third limiting groove 136. The second limiting portion 151 and the third limiting groove 136 cooperate to fix the third sub-shell 15 and the first sub-shell 13, which simplifies the difficulty of assembly and plays a fool-proof role.
[0081] Preferably, the third limiting groove 136 is disposed on one side of the end of the fixing seat 131 close to the front end of the housing 10 .
[0082] In one embodiment, in terms of the spatial relationship of assembly, the second limiting portion 151 and the first limiting portion 134 are respectively located on both sides of the fixing seat 131. In this way, the third sub-housing 15, the second sub-housing 14 and the first sub-housing 13 are fixed and limited from two directions, which further simplifies the assembly difficulty and improves the overall assembly efficiency of the smart scanning pen.
[0083] In one embodiment, one side of the end of the third sub-shell 15 close to the front end of the shell 10 is arc-shaped, so that the front end corners of the shell 10 are rounded and will not scratch the user, wherein the second limiting portion 151 is bent along the arc-shaped contour of the third sub-shell 15, so that a suitable length can be set to cooperate with the avoidance groove for positioning.
[0084] In another embodiment of the present invention, a baffle 135 is disposed on the first sub-housing 13 , and the baffle 135 is stopped at two sides of the second sub-housing 14 respectively.
[0085] It can be understood that by setting the baffle 135, the freedom of the second sub-shell 14 can be limited from both sides of the second sub-shell 14. As a result, the freedom of the front and rear ends and the left and right sides of the second sub-shell 14 is limited, which further simplifies the assembly difficulty and improves the overall assembly efficiency of the smart scanning pen.
[0086] In another embodiment of the present invention, a transparent first cover plate 16 is disposed in the observation window 111 , and a transparent second cover plate 17 is disposed in the scanning window 112 .
[0087] The transparent first cover plate 16 can facilitate the penetration of light, thereby providing light illumination for the image acquisition component of the smart scanning pen so as to identify the document to be scanned, and facilitating the user to observe the content framed in the scanning window 112 through the support block.
[0088] The first cover plate 16 can be made of glass, acrylic, polycarbonate (PC), polyurethane (TPU), epoxy resin or other resin materials.
[0089] The scanning window 112 is used to select the content to be identified, and the second cover 17 is provided to facilitate the sealing of the intelligent scanning device at the scanning window 112, which is dustproof and waterproof. The second cover 17 is provided as a transparent structure, which is conducive to the image acquisition component to obtain the content and cooperates with the observation window 111 to provide auxiliary lighting for the image acquisition component.
[0090] The second cover plate 17 can be made of resin materials such as glass, acrylic, polycarbonate (PC), polyurethane (TPU), and epoxy resin.
[0091] In another embodiment of the utility model, a trigger 20 is provided on the first crossbeam 141, and a pressure sensing component 40 is sandwiched between the second sub-shell 14 and the trigger 20. The trigger 20 is used to contact the object to be tested and feed back the force received to the pressure sensing component 40. The pressure sensing component 40 converts the received force into an electrical signal, which is then transmitted to the main control component to confirm whether the smart scanning pen needs to be started. Among them, the pressure sensing component 40 is electrically connected to the main control component, and the trigger 20 is mechanically connected to the pressure sensing component 40. The connection here refers to a broad connection. As long as direct contact can achieve force transmission, the trigger 20 and the pressure sensing component 40 do not have to be connected in a narrow sense.
[0092] In another embodiment of the utility model, the trigger member 20 also includes a deformable member 30, the opening defines an observation window, the observation window is connected to the scanning window, a first cover plate is provided in the observation window, a limit member is provided on the first cover plate, the limit member supports the pressure sensing component 40 and the deformable member 30, and the deformable member 30 respectively abuts against the trigger part and the pressure sensing component 40.
[0093] The deformable member 30 is sandwiched between the trigger part and the pressure sensing component 40. The deformable member 30 is used to transmit the force applied to the trigger member 20 to the pressure sensing component 40. While transmitting the force, the deformable member 30 can absorb the force by deformation, thereby buffering the effect of the trigger member 20 on the pressure sensing component 40, so that the pressure sensing component 40 can sense a larger force without being damaged.
[0094] In addition, the deformable member 30 also has the function of resetting the trigger member 20. After the force acting on the trigger member 20 disappears, the deformable member 30 is reset and drives the trigger member 20 to reset.
[0095] In another embodiment of the utility model, a sealing member 50 is also sleeved on the trigger member 20, and a through hole connected to the opening is provided on the first crossbeam, and the trigger member 20 is penetrated in the through hole, so that the through hole is used to guide the trigger member 20 during the pressing process and the resetting process, so that the trigger member 20 can only move along the inner wall of the through hole. Since there is mutual movement between the trigger member 20 and the through hole, there is a clearance fit between the trigger member 20 and the through hole, and a sealing member 50 is sandwiched between the trigger member 20 and the through hole. The sealing member 50 is elastic. When the trigger member 20 is pressed, the sealing member 50 can not only play a buffering role, but also block the gap between the trigger member 20 and the through hole to prevent dust and water, and prevent impurities and water from passing through the gap to damage components such as the pressure sensing component.
[0096] It should be noted that, although several devices or sub-devices of the device are mentioned in the above detailed description, such division is not mandatory. In fact, according to the embodiment of the utility model, the features and functions of two or more devices described above can be embodied in one device. Conversely, the features and functions of one device described above can be further divided into multiple devices to be embodied.
[0097] Although the operations of the method of the present invention are described in a specific order in the accompanying drawings, this does not require or imply that the operations must be performed in this specific order, or that all the operations shown must be performed to achieve the desired results. On the contrary, the steps depicted in the flowchart can change the order of execution. Additionally or alternatively, some steps can be omitted, multiple steps can be combined into one step, and / or one step can be decomposed into multiple steps.
[0098] It should be understood that each box in the flowchart and / or block diagram and the combination of boxes in the flowchart and / or block diagram can be implemented by computer program instructions. These computer program instructions can be provided to a processor of a general-purpose computer, a special-purpose computer or other programmable data processing device to produce a machine, and these computer program instructions are executed by a computer or other programmable data processing device to produce a device that implements the functions / operations specified in the boxes in the flowchart and / or block diagram.
[0099] These computer program instructions may also be stored in a computer-readable medium that enables a computer or other programmable data processing device to operate in a specific manner, so that the instructions stored in the computer-readable medium produce a product that includes an instruction device that implements the functions / operations specified in the blocks in the flowchart and / or block diagram.
[0100] Computer program instructions may also be loaded onto a computer, other programmable data processing apparatus, or other device so that a series of operational steps are performed on the computer, other programmable data processing apparatus, or other device to produce a computer-implemented process, thereby enabling the instructions executed on the computer or other programmable device to provide a process for implementing the functions / operations specified in the blocks in the flowchart and / or block diagram.
[0101] The use of the verbs "comprise", "include" and their conjugations mentioned in the application documents does not exclude the presence of elements or steps other than those recorded in the application documents. The article "a" or "an" before an element does not exclude the presence of a plurality of such elements.
[0102] Although the spirit and principle of the present invention have been described with reference to several specific embodiments, it should be understood that the present invention is not limited to the disclosed specific embodiments, and the division of various aspects does not mean that the features in these aspects cannot be combined to benefit, and such division is only for the convenience of expression. The present invention is intended to cover various modifications and equivalent arrangements included in the spirit and scope of the attached claims. The scope of the attached claims conforms to the broadest interpretation, thereby including all such modifications and equivalent structures and functions.
Claims
1. A smart scanning pen, characterized in that: It includes a shell, the front end of the shell is provided with an opening that passes through in the up-down direction, the opening defines an observation window and a scanning window that are relatively arranged, the front side of the opening is provided with a first crossbeam formed at the front end of the shell, a transparent support member is clamped in the opening, the support member abuts against the first crossbeam, and the support member separates the observation window and the scanning window.
2. The smart scanning pen according to claim 1, characterized in that: The shell also includes a second cross beam located at the rear side of the opening and side beams located at both sides of the opening. The support member abuts against the second cross beam and the two side beams at the same time, and the support member is a transparent structure.
3. The smart scanning pen according to claim 2, characterized in that: The support member is a rectangular parallelepiped or cube-shaped plate structure.
4. The smart scanning pen according to claim 2, characterized in that: The shell specifically includes a first sub-shell, a second sub-shell and a third sub-shell, and the first sub-shell, the second sub-shell and the third sub-shell are interlocked; the opening passes through the first sub-shell, the second sub-shell and the front end of the third sub-shell in the up and down directions; the opening at the front end of the third sub-shell defines the scanning window, and the first crossbeam is formed at the front end of the first sub-shell, or the front end of the second sub-shell, or the front end of the third sub-shell.
5. The smart scanning pen according to claim 4, characterized in that: A first limiting groove is disposed at the front opening edge of the second sub-shell, and the support member is clamped in the first limiting groove.
6. The smart scanning pen according to claim 5, characterized in that: A fixing seat is arranged on the front opening edge of the first sub-shell, lugs are arranged on both sides of the supporting member, mounting holes are arranged on the lugs, and the fixing seat is passed through the mounting holes.
7. The smart scanning pen according to claim 6, characterized in that: The fixing seat is provided with a first assembly hole configured as a blind hole, the first limiting groove defines a second assembly hole, and fasteners are inserted into the first assembly hole and the second assembly hole.
8. The smart scanning pen according to claim 4, characterized in that: The first sub-shell is provided with a first buckle, the second sub-shell is provided with a second buckle, and the first buckle is buckled with the second buckle.
9. The smart scanning pen according to claim 8, characterized in that: The first buckle and the second buckle both have a protruding portion and a recessed portion, and the protruding portion and the recessed portion correspond to the embedded buckles respectively.
10. The smart scanning pen according to claim 4, characterized in that: The first sub-shell defines an observation window, and the first sub-shell and the second sub-shell together define a accommodating cavity, and the support member is clamped in the accommodating cavity. A first limiting portion is provided on one of the first sub-shell and the second sub-shell, and the first limiting portion is arranged in parallel with the observation window. A second limiting groove is provided on the other one, and the first limiting portion is located in the second limiting groove.
11. The smart scanning pen according to claim 10, characterized in that: A stopper is provided on the first sub-shell, and the stopper is located on a side of the second sub-shell close to the second crossbeam.
12. The smart scanning pen according to claim 10, characterized in that: The third sub-shell is provided with a second limiting portion, the first sub-shell is provided with a third limiting groove, the outer contour of the second sub-shell avoids the second limiting portion, and the second limiting portion is embedded in the third limiting groove.
13. The smart scanning pen according to claim 10, characterized in that: The first sub-shell is provided with a baffle, and the baffle is stopped at two sides of the second sub-shell respectively.
14. The smart scanning pen according to any one of claims 1 to 13, characterized in that: A transparent first cover plate is provided in the observation window, and a transparent second cover plate is provided in the scanning window.