Shooting and displaying all-in-one machine

By designing the shooting and display all-in-one machine, the housing has a narrow upper and wide upper structure, and integrating the shooting and display components, the problem of large computer size in the prior art is not conducive to patients' use, and miniaturization and convenient patient operation are achieved.

CN223168363UActive Publication Date: 2025-07-29DONGGUAN JIARUIKANG MEDICAL TECH CO LTD
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Patent Information

Application Number
CN202422134887.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-30
Publication Date
2025-07-29
Estimated Expiration
2034-08-30

AI Technical Summary

Technical Problem

In the prior art, the computer is large in size, which is not conducive to the flexible use of patients and has a high cost of use.

Method used

A shooting and display integrated machine is designed, including a housing, a shooting component, a display component and a power supply component. The housing has a narrow upper and wide upper structure. The shooting component is located on the top of the rear case, the display component is located on the front case, the power component is located in the housing cavity, and the components are electrically connected to achieve overall integration improvement, reducing volume, and the display component is consistent with the shooting direction of the shooting component.

Benefits of technology

The overall integration of the shooting and display all-in-one machine is improved, the volume is reduced, and it has strong stability. Patients can move flexibly, which improves the convenience of use.

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Abstract

The utility model relates to the technical field of medical instruments, in particular to a shooting and displaying all-in-one machine. Comprising a shell, a shooting assembly, a display assembly and a power supply assembly, the shell is of a structure with a narrow upper part and a wide lower part, the shell comprises a front shell and a rear shell which are buckled with each other, and an accommodating cavity is formed between the front shell and the rear shell; the shooting assembly is arranged at the top of the rear shell, and the shooting assembly is used for shooting body data of a patient; the display assembly is arranged on the front shell, the shooting direction of the display assembly is consistent with that of the shooting assembly, and the display assembly is electrically connected with the shooting assembly and used for displaying the body data; the power supply assembly is arranged in the accommodating cavity, and the power supply assembly is electrically connected with the shooting assembly and the display assembly. The shooting and displaying all-in-one machine is simple in structure and small in occupied space, a patient can flexibly move the position of the shell according to requirements at any time in the using process, and the using convenience of the patient is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of medical equipment, in particular to a shooting and display integrated machine. Background Art

[0002] With the development of intelligent medical equipment, in order to improve the convenience of patients' medical treatment, online medical consultations are becoming more and more popular, providing a convenient interaction method for patients and doctors, enabling patients to remotely conduct medical consultations and diagnoses.

[0003] The current remote interaction can be achieved by connecting a camera to a computer. The computer performs face recognition on the patient through the camera, or takes pictures of the patient's body to obtain the patient's body data, etc. However, the computer is relatively large in size and not easy to move, which is not conducive to the flexible use of patients. Summary of the Utility Model

[0004] The technical problem to be solved by the embodiments of the utility model is to provide a shooting and display integrated machine to solve the problems in the prior art that the computer is relatively large in size, not conducive to the flexible use of patients, and has a relatively high use cost.

[0005] The utility model discloses a shooting and display integrated machine, including: a housing, a shooting component, a display component and a power supply component. The housing has a structure with a narrow upper part and a wide lower part. The housing includes a front shell and a rear shell that are buckled with each other, and a receiving cavity is formed between the front shell and the rear shell; the shooting component is arranged on the top of the rear shell and is used for shooting the body data of the patient; the display component is arranged on the front shell and has the same shooting direction as the shooting component. The display component is electrically connected to the shooting component and is used for displaying the body data shot by the shooting component; the power supply component is arranged in the receiving cavity and is electrically connected to the shooting component and the display component.

[0006] Optionally, the front shell includes a first shell body and a first arc-shaped shell that are connected to each other. The rear shell includes a second shell body, a second arc-shaped shell and a base that are sequentially connected. An installation groove is formed on the rear shell, and the receiving cavity is formed after being buckled with the front shell; the convex parts of the first arc-shaped shell and the second arc-shaped shell both face the base. The top end of the first shell body is connected to the top end of the second shell body, and the bottom end of the first arc-shaped shell is connected to the base; an installation card slot is formed on the first shell body, the display component is arranged on the installation card slot, and the power supply component is arranged on the base.

[0007] Optionally, the display component includes: an annular installation plate, an annular light strip and a display panel that are sequentially connected from outside to inside. The annular installation plate is arranged on the installation card slot, and the display panel is electrically connected to the power supply component and is used for displaying the body data.

[0008] Optionally, on the side of the rear housing close to the front housing, there are connecting posts. Connection holes are formed on the mounting card slots, and connecting pieces are arranged on the connection holes. The connecting pieces are threadedly connected to the connecting posts.

[0009] Optionally, openings and annular card slots are formed on the mounting card slots. The openings are located within the annular card slots. First avoidance openings and second avoidance openings are formed on the side walls of the annular card slots. Both the first avoidance opening and the second avoidance opening communicate with the opening. The connection holes are arranged within the annular card slots. A first connecting wire is arranged on the annular light strip. The first connecting wire passes through the first avoidance opening to reach the opening and is electrically connected to the power supply assembly. A second connecting wire is arranged on the display panel. The second connecting wire passes through the second avoidance opening to reach the opening and is electrically connected to the power supply assembly.

[0010] Optionally, the photographing assembly includes: a camera, a rotating assembly, and a mounting base that are connected in sequence. A first socket is formed on the camera. The rotating assembly includes a rotating member and a mounting member. A receiving groove is formed on the mounting member. The rotating member is rotatably arranged within the receiving groove. One end of the rotating member away from the mounting member is inserted into the first socket. The mounting base is arranged on the rear housing. A second socket is formed on the mounting base. One end of the mounting member close to the mounting base is inserted into the second socket. The camera is electrically connected to both the display panel and the power supply assembly.

[0011] Optionally, the rotating member includes a first plugging portion and a rotating shaft that are connected to each other. The mounting member includes a mounting body and a second plugging portion that are connected to each other. The receiving groove is formed on the mounting body. The rotating shaft is arranged within the receiving groove. The first plugging portion is inserted into the first socket. The second plugging portion is inserted into the second socket.

[0012] Optionally, the power supply assembly includes: a battery, a power management circuit board, and a button circuit board. The battery is arranged on the base through a battery fixing bracket. First positioning posts and second positioning posts are respectively arranged at opposite ends of the battery fixing bracket. The first positioning post is connected to the base through a first fastening member. The second positioning post is connected to the base through a second fastening member. The power management circuit board is electrically connected to the battery, the display panel, and the annular light strip. A third positioning post is formed on one side of the power management circuit board close to the bottom of the base. The third positioning post is arranged on the bottom surface of the base, and the third positioning post is connected to the outer shell through a third fastening member. The button circuit board is electrically connected to the power management circuit board. A positioning hole is formed on the button circuit board. A fourth positioning post is formed on the front housing. The fourth positioning post can be inserted into the positioning hole to fix the button circuit board.

[0013] Optionally, the battery fixing bracket includes a first fixing portion, a second fixing portion, and a third fixing portion that are connected in sequence. The first positioning post and the second positioning post are correspondingly arranged on the first fixing portion and the second fixing portion. The second fixing portion matches and contacts the outer periphery of the battery and is disposed on the surface of the battery along the length or width direction of the battery.

[0014] Optionally, a power-on button and a lighting button are provided on the first arc-shaped shell. A first induction spring, a first induction button, a second induction spring, and a second induction button are provided on the button circuit board. The first induction button is located inside the first induction spring, and the second induction button is located inside the second induction spring. The first induction spring is connected to the power-on button, and the first induction spring is connected to the lighting button.

[0015] Compared with the prior art, the beneficial effects of the shooting display all-in-one machine provided by the embodiments of the present invention are as follows: The housing includes a front shell and a rear shell that are buckled with each other, and a receiving cavity is formed between the front shell and the rear shell. The power supply assembly is disposed in the receiving cavity, which is used to improve the overall integration of the shooting display all-in-one machine and reduce the overall volume. The shooting assembly is disposed on the top of the rear shell and is electrically connected to the power supply assembly, which is used to shoot the body data of the patient. By providing a display assembly on the front shell, the display assembly is electrically connected to the power supply assembly and the shooting assembly, which is used to display the body data shot by the shooting assembly. Among them, the housing has an upper-narrow and lower-wide structure, which has strong stability during use. In the actual use process, the shooting directions of the display assembly and the shooting assembly are the same, and the patient can see his own body data. The shooting display all-in-one machine provided by this embodiment has a simple structure, occupies a small space, and the patient can flexibly move the position of the housing according to needs at any time during use, improving the convenience of use for the patient. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] The technical solutions of the present invention will be further described in detail below with reference to the drawings and embodiments. In the drawings:

[0017] Figure 1 is a schematic diagram of the overall structure of the shooting display all-in-one machine provided by the embodiment of the present invention;

[0018] Figure 2 is an exploded view of the housing provided by the embodiment of the present invention;

[0019] Figure 3 is a schematic diagram of the structure of the rear shell provided by the embodiment of the present invention;

[0020] Figure 4 is one of the schematic diagrams of the structure of the front shell provided by the embodiment of the present invention;

[0021] Figure 5It is the second structural schematic diagram of the front shell provided by the embodiment of the present utility model;

[0022] Figure 6 It is the structural schematic diagram of the shooting component provided by the embodiment of the present utility model;

[0023] Figure 7 It is the structural schematic diagram of the display component provided by the embodiment of the present utility model;

[0024] Figure 8 It is the structural schematic diagram of the power supply component provided by the embodiment of the present utility model;

[0025] Figure 9 It is the structural schematic diagram of the camera provided by the embodiment of the present utility model;

[0026] Figure 10 It is the structural schematic diagram of the rotating component provided by the embodiment of the present utility model;

[0027] Figure 11 It is the structural schematic diagram of the mounting base provided by the embodiment of the present utility model;

[0028] Figure 12 It is the structural schematic diagram of the power management circuit board provided by the embodiment of the present utility model;

[0029] Figure 13 is Figure 5 The enlarged view of part A of

[0030] The reference numerals in the figure are as follows:

[0031] 10. Housing; 110. Front housing; 111. First housing; 11101. Installation card slot; 11102. Opening; 11103. Annular card slot; 11104. First avoidance opening; 11105. Second avoidance opening; 11106. Connection hole; 1111. Fourth positioning post; 11107. Fourth threaded hole; 112. First arc-shaped housing; 1121. Power-on button; 1122. Lighting button; 120. Rear housing; 121. Second housing; 122. Second arc-shaped housing; 123. Base; 1201. Installation groove; 1202. Connection post; 20. Shooting component; 210. Camera; 2101. First socket; 220. Rotating component; 221. Rotating part; 2211. First plugging part; 2212. Rotating shaft; 222. Mounting part; 2221. Mounting body; 2222. Second plugging part; 22201. Accommodation groove; 230. Mounting seat; 231. Second socket; 30. Display component; 310. Annular mounting plate; 320. Annular light strip; 330. Display panel; 40. Power supply component; 410. Battery; 420. Power management circuit board; 421. Third positioning post; 4201. Third threaded hole; 430. Button circuit board; 431. First induction spring; 432. Second induction spring; 4301. Positioning hole; 50. Battery fixing bracket; 510. First fixing part; 511. First positioning post; 5101. First threaded hole; 520. Second fixing part; 530. Third fixing part; 531. Second positioning post; 5301. Second threaded hole. Detailed implementation manners

[0032] It should be noted that, without conflict, the embodiments in the present application and the features in the embodiments may be combined with each other. Now, in conjunction with the accompanying drawings, the preferred embodiments of the present utility model will be described in detail.

[0033] An embodiment of the present utility model provides a shooting and display integrated machine, as Figures 1 to 3 shown, including a housing 10, a shooting component 20, a display component 30 and a power supply component 40. The housing 10 has a structure that is narrow at the top and wide at the bottom. The housing 10 includes a front housing 110 and a rear housing 120 that are buckled with each other, and an accommodation cavity is formed between the front housing 110 and the rear housing 120. The shooting component 20 is arranged at the top of the rear housing 120, and the shooting component 20 is used for shooting the body data of a patient. The display component 30 is arranged on the front housing 110 and has the same shooting direction as the shooting component 20. The display component 30 is electrically connected to the shooting component 20 and is used for displaying the body data. The power supply component 40 is arranged in the accommodation cavity, and the power supply component 40 is electrically connected to the shooting component 20 and the display component 30.

[0034] The housing 10 includes a front housing 110 and a rear housing 120 that interlock, with a housing cavity formed between the front and rear housings 110 and 120. A power supply assembly 40 is disposed within the housing cavity, enhancing the overall integration of the integrated imaging and display device and reducing its overall size. The imaging assembly 20 is disposed on top of the rear housing 120 and electrically connected to the power supply assembly 40, for capturing the patient's anatomy data. A display assembly 30 is disposed on the front housing 110 and electrically connected to the power supply assembly 40 and the imaging assembly 20, for displaying the anatomy data captured by the imaging assembly 20. The housing 10 has a narrow top and wide bottom structure, providing greater stability during use. In practical applications, the display assembly 30 and the imaging assembly 20 face the same direction of capture, enabling the patient to view their own anatomy data. The integrated imaging and display device provided in this embodiment has a simple structure, occupies a small space, and allows the patient to flexibly move the housing 10 as needed during use, enhancing user convenience.

[0035] As a preferred solution of this embodiment, Figures 3 to 5 As shown, the front shell 110 includes a first shell 111 and a first curved shell 112 connected to each other, and the rear shell 120 includes a second shell 121, a second curved shell 122 and a base 123 connected in sequence. A mounting groove 1201 is formed on the rear shell 120, which forms a accommodating cavity after being snapped together with the front shell 110; the convex portions of the first curved shell 112 and the second curved shell 122 are both arranged toward the base 123, the top of the first shell 111 is connected to the top of the second shell 121, and the bottom end of the first curved shell 112 is connected to the base 123; a mounting slot 11101 is formed on the first shell 111, the display component 30 is arranged on the mounting slot 11101, and the power supply component 40 is arranged on the base 123.

[0036] Among them, a structural example of the front shell 110 and the rear shell 120 is given here. Specifically, the front shell 110 includes a first shell 111 and a first arc shell 112 that are connected to each other. The rear shell 120 includes a second shell 121, a second arc shell 122, and a base 123 that are connected in sequence. Among them, an installation groove 1201 is formed on the rear shell 120. After the front shell 110 and the rear shell 120 are buckled, the above-mentioned accommodation cavity is formed to provide a stable installation environment for the power supply assembly 40. By setting the convex parts of the first arc shell 112 and the second arc shell 122 towards the base 123, the structure of the upper part being narrow and the lower part being wide of the outer shell 10 is realized, for the purpose of improving the setting stability of the shooting and display integrated machine. The above-mentioned front shell 110 and rear shell 120 can be formed by mold injection. During the assembly process of the front shell 110 and the rear shell, the top end of the first shell 111 is connected to the top end of the second shell 121, and the bottom end of the first arc shell 112 is connected to the base 123, which is convenient for assembly and use. An installation card slot 11101 is formed on the first shell 111, and the display assembly 30 is arranged on the installation card slot 11101 to improve the setting stability of the display assembly 30 on the outer shell 10, so as to improve the user experience of the patient. The power supply assembly 40 is arranged on the base 123, and the base 123 can provide a large installation space for the power supply assembly 40 to ensure the setting stability of the battery 410 assembly.

[0037] As a preferred solution of this embodiment, as Figure 7 shown, the display assembly 30 includes: a circular installation plate 310, a circular light strip 320, and a display panel 330 that are connected in sequence from outside to inside. The circular installation plate 310 is arranged on the installation card slot 11101, and the display panel 330 is electrically connected to the power supply assembly 40 for displaying body data.

[0038] Among them, a structural example of the display assembly 30 is given here. Specifically, the display assembly 30 includes a circular installation plate 310, a circular light strip 320, and a display panel 330 that are connected in sequence from outside to inside, and the overall connection stability of the display assembly 30 is strong. The circular installation plate 310 is used to be arranged on the installation card slot 11101 to fix the display assembly 30. The function of setting the circular light strip 320 is: when the lighting effect of the environment where the patient is located is poor, in order not to affect the shooting effect of the shooting assembly 20, the circular light strip 320 is set to supplement light and illuminate the patient to ensure the normal shooting and shooting effect of the shooting assembly 20, and thus ensure the consultation effect of the patient. The display panel 330 is electrically connected to the power supply assembly 40 for displaying body data.

[0039] As a preferred solution of this embodiment, as Figure 3 and Figure 4As shown in the figure, on the side of the rear shell 120 close to the front shell 110, there is a connecting post 1202. A connecting hole 11106 is formed on the installation card slot 11101. A connecting member (not shown in the figure) is provided on the connecting hole 11106, and the connecting member is threadedly connected to the connecting post 1202.

[0040] On the side of the rear shell 120 close to the front shell 110, there is a connecting post 1202. A connecting hole 11106 is formed on the installation card slot 11101. During the process of snap - fitting and connecting the front shell 110 and the rear shell 120, the connecting post 1202 cooperates with the connecting hole 11106. A connecting member (not shown in the figure) is provided on the connecting hole 11106. The connecting member passes through the connecting hole 11106 and is threadedly connected to the connecting post 1202 to strengthen the connection strength between the rear shell 120 and the front shell 110. In the actual setting process, in order to ensure the connection stability between the rear shell 120 and the front shell 110, a plurality of connecting holes 11106 can be evenly arranged on the installation card slot 11101. Similarly, a plurality of connecting posts 1202 are provided and are arranged in one - to - one correspondence with the connecting holes 11106. The number of the connecting posts 1202 and the connecting holes 11106 is not specifically limited here. Since the outer shell 10 has an upper - narrow - lower - wide structure, the length of the connecting post 1202 above the rear shell 120 is greater than the length of the connecting post 1202 below the rear shell 120. The above - mentioned connecting member can be a screw.

[0041] As a preferred solution of this embodiment, as Figure 4 shown, an opening 11102 and an annular card slot 11103 are formed on the installation card slot 11101. The opening 11102 is located within the annular card slot 11103. On the side wall of the annular card slot 11103, there are a first avoidance opening 11104 and a second avoidance opening 11105. Both the first avoidance opening 11104 and the second avoidance opening 11105 communicate with the opening 11102. The connecting hole 11106 is arranged within the annular card slot 11103. A first connecting wire (not shown in the figure) is provided on the annular light strip 320. The first connecting wire passes through the first avoidance opening 11104 to reach the opening 11102 and is electrically connected to the power supply assembly 40. A second connecting wire (not shown in the figure) is provided on the display panel 330. The second connecting wire passes through the second avoidance opening 11105 to reach the opening 11102 and is electrically connected to the power supply assembly 40.

[0042] Among them, an opening 11102 and an annular card slot 11103 are formed on the installation card slot 11101. The opening 11102 is located within the annular card slot 11103 so that the opening 11102 communicates with the accommodation cavity. A first avoidance opening 11104 and a second avoidance opening 11105 are formed on the side wall of the annular card slot 11103. At the same time, both the first avoidance opening 11104 and the second avoidance opening 11105 communicate with the opening 11102. During the process of realizing the electrical connection between the annular light strip 320, the display panel 330 and the power supply component 40, the first connecting wire provided on the annular light strip 320 passes through the first avoidance opening 11104 to reach the opening 11102 and is electrically connected to the power supply component 40 within the accommodation cavity. Similarly, the second connecting wire provided on the display panel 330 passes through the second avoidance opening 11105 to reach the opening 11102 and is electrically connected to the power supply component 40 within the accommodation cavity. The above-mentioned first avoidance opening 11104 and second avoidance opening 11105 both provide an installation environment for the wiring of the first connecting wire and the second connecting wire, ensuring the electrical requirements of the display panel 330 and the annular light strip 320. The connection hole 11106 is provided within the annular card slot 11103, facilitating the operation and setting of the connecting piece.

[0043] As a preferred solution of this embodiment, as Figure 6 , Figures 9 to 11 shown, the photographing component 20 includes: a camera 210, a rotating component 220, and a mounting base 230 that are connected in sequence. A first socket 2101 is formed on the camera 210. The rotating component 220 includes a rotating piece 221 and a mounting piece 222. A receiving groove 22201 is formed on the mounting piece 222. The rotating piece 221 is rotatably disposed within the receiving groove 22201. One end of the rotating piece 221 away from the mounting piece 222 is inserted into the first socket 2101; the mounting base 230 is disposed on the rear shell 120. A second socket 231 is formed on the mounting base 230. One end of the mounting piece 222 close to the mounting base 230 is inserted into the second socket 231; the camera 210 is electrically connected to the display panel 330 and the power supply component 40 respectively.

[0044] Among them, a structural example of the photographing component 20 is given here. Specifically, the photographing component 20 includes a camera 210, a rotating component 220, and a mounting base 230. The camera 210 is used to photograph the body data of the patient. The camera 210 here can use existing devices, so the specific structural composition of the camera 210 is not limited. At the same time, the body data photographed by the camera 210 can be transmitted to the doctor's end through the network, realizing the interaction between the doctor and the patient. The doctor conducts a consultation on the patient based on the above-mentioned body data.

[0045] The rotating assembly 220 includes a rotating member 221 and a mounting member 222. The rotating member 221 is rotatably disposed in a receiving groove 22201 formed on the mounting member 222 to achieve the rotational setting of the rotating member 221 on the mounting member 222. The first socket 2101 through which the camera 210 passes is inserted at one end of the rotating member 221 away from the mounting member 222, so as to achieve the rotational setting of the camera 210 on the mounting base 230, thereby adjusting the shooting direction and angle of the camera 210, enhancing the shooting range of the camera 210, and thus improving the shooting effect of the camera 210.

[0046] The mounting base 230 is arranged on the rear shell 120, and one end of the mounting member 222 close to the mounting base 230 is inserted into a second socket 231 formed on the mounting base 230, thereby completing the fixation of the rotating assembly 220 on the mounting base 230. The settings of the above-mentioned first socket 2101 and second socket 231 enable detachable connection between the camera 210, the rotating assembly 220, and the mounting base 230 of the rotating assembly 220. Therefore, the camera 210 can be detached alone, or the camera 210 and the rotating assembly 220 can be detached from the mounting base 230, so that the camera 210 has the ability to move freely, which facilitates the patient's use of the camera 210. The patient can control the position, angle, distance, etc. between the camera 210 and himself according to his actual situation, improving the mobility of the camera 210, thus improving the shooting effect of the camera 210. The patient can flexibly adjust the camera 210 according to actual needs, enhancing the patient's usage experience.

[0047] As a preferred solution of this embodiment, as Figure 10 shown, the rotating member 221 includes a first plug-in part 2211 and a rotating shaft 2212 which are connected to each other. The mounting member 222 includes a mounting body 2221 and a second plug-in part 2222 which are connected to each other. A receiving groove 22201 is formed on the mounting body 2221, the rotating shaft 2212 is disposed in the receiving groove 22201, the first plug-in part 2211 is inserted into the first socket 2101, and the second plug-in part 2222 is inserted into the second socket 231.

[0048] Among them, a structural example of the rotating member 221 and the mounting member 222 is given here. The rotating member 221 includes a first insertion portion 2211 and a rotating shaft 2212 that are connected to each other. The mounting member 222 includes a mounting body 2221 and a second insertion portion 2222 that are connected to each other. By forming a receiving groove 22201 on the mounting body 2221 and disposing the rotating shaft 2212 in the receiving groove 22201, the rotating setting of the rotating member 221 on the mounting member 222 is realized. The rotation of the rotating member 221 is smooth, which is convenient for the user's operation and use. At the same time, the detachable connection between the rotating member 221 and the camera 210 is realized by inserting the first insertion portion 2211 into the first socket 2101, and the detachable connection between the mounting member 222 and the mounting base 230 is realized by inserting the second insertion portion 2222 into the second socket 231. The above detachable structure also has the advantages of convenient operation and use.

[0049] As a preferred solution of this embodiment, as Figure 3 and Figure 8 shown, the power supply assembly 40 includes: a battery 410, a power management circuit board 420, and a button circuit board 430; the battery 410 is disposed on the base 123 through a battery fixing bracket 50. Opposite ends of the battery fixing bracket 50 are respectively provided with a first positioning post 511 and a second positioning post 531. The first positioning post 511 is connected to the base 123 through a first fastener, and the second positioning post 531 is connected to the base 123 through a second fastener; the power management circuit board 420 is electrically connected to the battery 410, the display panel 330, and the annular light strip 320. A third positioning post 421 is formed on one side of the power management circuit board 420 close to the bottom of the base 123. The third positioning post 421 is disposed on the bottom surface of the base 123, and the third positioning post 421 is connected to the housing 10 through a third fastener; the button circuit board 430 is electrically connected to the power management circuit board 420. A positioning hole 4301 is formed on the button circuit board 430, and a fourth positioning post 1111 is formed on the front housing 110. The fourth positioning post 1111 can be inserted into the positioning hole 4301 to fix the button circuit board 430.

[0050] Among them, a structural example of the power supply assembly 40 is given here. Specifically, the power supply assembly 40 includes a battery 410, a power management circuit board 420, and a button circuit board 430. The battery 410 and the power management circuit are used to meet the electrical requirements of the entire shooting and display integrated machine; the button circuit board 430 is used to realize the interaction between the patient and the shooting and display integrated machine, control the power on or off of the shooting and display integrated machine, and the opening and closing of the annular light strip 320.

[0051] The battery 410 is fixedly connected to the housing 10 by setting the battery fixing bracket 50. Specifically, the opposite ends of the battery fixing bracket 50 are respectively provided with a first positioning post 511 and a second positioning post 531. The first positioning post 511 is connected to the rear case 120 through a first fastener, and the second positioning post 531 is connected to the rear case 120 through a second fastener, so as to fix the battery 410 on the housing 10 through the battery fixing bracket 50. A third positioning post 421 is formed on one side of the power management circuit board 420 close to the bottom of the installation groove 1201. The third positioning post 421 is arranged on the base 123 to support the power management circuit board 420, and the third positioning post 421 is connected to the base 123 through a third fastener (not shown in the figure), so as to fix the power management circuit board 420 on the rear case 120 through the third positioning post 421. A positioning hole 4301 is formed on the button circuit board 430. By inserting the fourth positioning post 1111 formed on the front case 110 into the positioning hole 4301, the button circuit board 430 is connected to the front case 110, achieving the purpose of fixing the button circuit board 430 on the front case 110.

[0052] As a preferred solution of this embodiment, as Figure 8 shown, the battery fixing bracket 50 includes a first fixing portion 510, a second fixing portion 520 and a third fixing portion 530 connected in sequence. The first fixing portion 510 and the second fixing portion 520 are correspondingly provided with a first positioning post 511 and a second positioning post 531. The second fixing portion 520 matches and contacts the outer periphery of the battery 410 and is arranged on the surface of the battery 410 along the length or width direction of the battery 410.

[0053] Among them, a structural example of the battery fixing bracket 50 is given here. Specifically, the battery fixing bracket 50 includes a first fixing portion 510, a second fixing portion 520 and a third fixing portion 530 connected in sequence. By respectively arranging the above-mentioned first positioning post 511 and second positioning post 531 on the first fixing portion 510 and the second fixing portion 520, connecting through the first positioning post 511 and a first fastener (not shown in the figure), and connecting through the second positioning post 531 and a second fastener (not shown in the figure), the two ends of the battery fixing bracket 50 are fixed on the rear case 120. At the same time, the second fixing portion 520 is used to bundle the battery 410 by being arranged on the surface of the battery 410 along the length or width direction of the battery 410, so as to achieve the purpose of fixing the battery 410 on the rear case 120 by the battery fixing bracket 50. The fixing stability of the battery fixing bracket 50 given above is strong, and the installation is convenient.

[0054] Refer to Figure 8 、 Figure 12 、and Figure 13, a first threaded hole 5101 is formed along the height direction of the first positioning post 511. At the same time, a first mounting hole (not shown in the figure) is formed at the bottom of the base 123. The first fastener can pass through the first mounting hole and be threadedly connected to the first threaded hole 5101, so as to firmly connect the first positioning post 511 to the housing 10 through the first fastener. A second threaded hole 5301 is formed along the height direction of the second positioning post 531. At the same time, a second mounting hole (not shown in the figure) is formed at the bottom of the base 123. The second fastener can pass through the second mounting hole and be threadedly connected to the second threaded hole 5301, so as to firmly connect the second positioning post 531 to the housing 10 through the second fastener. A third threaded hole 4201 is formed along the height direction of the third positioning post 421. At the same time, a third mounting hole (not shown in the figure) is formed at the bottom of the base 123. The third fastener (not shown in the figure) can pass through the third mounting hole and be threadedly connected to the third threaded hole 4201, so as to firmly connect the third positioning post 421 to the rear housing 120 through the third fastener. A fourth threaded hole 11107 is formed along the height direction of the fourth positioning post 1111. At the same time, a fourth mounting hole (not shown in the figure) is formed at the bottom of the base 123. The fourth fastener (not shown in the figure) can pass through the fourth mounting hole and be threadedly connected to the fourth threaded hole 11107, so as to firmly connect the fourth positioning post 1111 to the front housing 110 through the fourth fastener.

[0055] The above settings ensure that the battery fixing bracket 50 and the power management circuit board 420 are stably arranged on the rear housing 120, and the button circuit board 430 is stably arranged on the front housing 110, thereby improving the overall stability of the display integrated machine in this embodiment to ensure the use effect of patients.

[0056] As a preferred solution of this embodiment, as Figure 1 and Figure 8 , a power-on button 1121 and a lighting button 1122 are arranged on the first arc-shaped shell 112. A first induction spring 431, a first induction button, a second induction spring 432 and a second induction button are arranged on the button circuit board 430. The first induction button is located inside the first induction spring 431, and the second induction button is located inside the second induction spring 432. The first induction spring 431 is connected to the power-on button 1121, and the first induction spring 431 is connected to the lighting button 1122.

[0057] During actual use, the user presses the power button 1121, and the first sensing spring 431 provides a feel and feedback. At the same time, the first sensing button detects the pressing action of the power button 1121, and triggers the corresponding circuit operation of the power management circuit board 420 to control the power on or off of the shooting and display all-in-one machine; the user presses the light button 1122, and the second sensing spring 432 provides a feel and feedback. At the same time, the second sensing button detects the pressing action of the power button 1121, and triggers the corresponding circuit operation of the power management circuit board 420 to control the opening or closing of the ring light strip 320.

[0058] It should be understood that the above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it. Those skilled in the art may modify the technical solutions described in the above embodiments, or make equivalent replacements for some of the technical features therein; and all these modifications and replacements should fall within the scope of protection of the claims attached to the present invention.

Claims

1. An integrated shooting and display machine, characterized in that, Comprising: A housing, the housing having a structure that is narrower at the top and wider at the bottom, the housing including a front shell and a rear shell that are snap-fitted together, and an accommodation cavity is formed between the front shell and the rear shell; A shooting assembly, provided at the top of the rear shell, the shooting assembly being used for shooting the physical data of a patient; A display assembly, provided on the front shell and having the same shooting direction as the shooting assembly, the display assembly being electrically connected to the shooting assembly and used for displaying the physical data; A power supply assembly, provided in the accommodation cavity, the power supply assembly being electrically connected to the shooting assembly and the display assembly.

2. The shooting display all-in-one machine according to claim 1, characterized in that The front shell includes a first shell body and a first arc-shaped shell that are connected to each other, the rear shell includes a second shell body, a second arc-shaped shell and a base that are connected in sequence, and an installation groove is formed on the rear shell, and the accommodation cavity is formed after being snap-fitted with the front shell; The convex portions of the first arc-shaped shell and the second arc-shaped shell both face the base, the top end of the first shell body is connected to the top end of the second shell body, and the bottom end of the first arc-shaped shell is connected to the base; An installation card slot is formed on the first shell body, the display assembly is provided on the installation card slot, and the power supply assembly is provided on the base.

3. The shooting and display all-in-one machine according to claim 2, wherein The display assembly includes: A circular installation plate, a circular light strip and a display panel that are connected in sequence from outside to inside, the circular installation plate is provided on the installation card slot, and the display panel is electrically connected to the power supply assembly and used for displaying the physical data.

4. The shooting and display all-in-one machine according to claim 3, wherein On one side of the rear shell close to the front shell, a connecting column is provided, a connecting hole is formed on the installation card slot, a connecting piece is provided on the connecting hole, and the connecting piece is threadedly connected to the connecting column.

5. The shooting display integrated machine according to claim 4, characterized in that An opening and a circular card slot are formed on the installation card slot, the opening is located inside the circular card slot, a first avoidance opening and a second avoidance opening are formed on the side wall of the circular card slot, both the first avoidance opening and the second avoidance opening are communicated with the opening, the connecting hole is provided inside the circular card slot, a first connecting wire is provided on the circular light strip, and the first connecting wire passes through the first avoidance opening to reach the opening and is electrically connected to the power supply assembly, a second connecting wire is provided on the display panel, and the second connecting wire passes through the second avoidance opening to reach the opening and is electrically connected to the power supply assembly.

6. The shooting display integrated machine according to claim 3, characterized in that, The shooting assembly includes: A camera, a rotating assembly and a mounting seat that are connected in sequence, a first socket is formed on the camera, the rotating assembly includes a rotating member and a mounting member, a receiving groove is formed on the mounting member, the rotating member is rotatably provided in the receiving groove, and one end of the rotating member away from the mounting member is inserted into the first socket; The mounting seat is provided on the rear shell, a second socket is formed on the mounting seat, and one end of the mounting member close to the mounting seat is inserted into the second socket; The camera is electrically connected to the display panel and the power supply assembly respectively.

7. The shooting and display all-in-one machine according to claim 6, characterized in that, The rotating member includes a first insertion portion and a rotating shaft that are connected to each other. The mounting member includes a mounting body and a second insertion portion that are connected to each other. The receiving groove is formed on the mounting body. The rotating shaft is disposed in the receiving groove. The first insertion portion is inserted into the first socket, and the second insertion portion is inserted into the second socket.

8. The shooting and display integrated machine according to claim 3, characterized in that The power supply assembly includes: a battery, a power management circuit board, and a button circuit board; The battery is disposed on the base through a battery fixing bracket. First positioning posts and second positioning posts are respectively disposed at opposite ends of the battery fixing bracket. The first positioning post is connected to the base through a first fastener, and the second positioning post is connected to the base through a second fastener; The power management circuit board is electrically connected to the battery, the display panel, and the annular lamp strip. A third positioning post is formed on a side of the power management circuit board close to the bottom of the base. The third positioning post is disposed on the bottom surface of the base, and the third positioning post is connected to the housing through a third fastener; The button circuit board is electrically connected to the power management circuit board. A positioning hole is formed on the button circuit board, and a fourth positioning post is formed on the front housing. The fourth positioning post can be inserted into the positioning hole to fix the button circuit board.

9. The shooting display all-in-one machine according to claim 8, characterized in that, The battery fixing bracket includes a first fixing portion, a second fixing portion, and a third fixing portion that are sequentially connected. The first positioning post and the second positioning post are correspondingly disposed on the first fixing portion and the second fixing portion. The second fixing portion matches and contacts the outer periphery of the battery and is disposed on the surface of the battery along the length or width direction of the battery.

10. The shooting and display all-in-one machine according to claim 9, characterized in that, A power-on button and a lighting button are disposed on the first arc-shaped housing. A first induction spring, a first induction button, a second induction spring, and a second induction button are disposed on the button circuit board. The first induction button is located inside the first induction spring, and the second induction button is located inside the second induction spring. The first induction spring is connected to the power-on button, and the first induction spring is connected to the lighting button.