Touch ultrasonic equipment
By building cables and misaligning electrical connectors in touch-controlled ultrasonic devices, the problem of external power cords resulting in large equipment size is solved, and the compactness and aesthetics of the equipment are improved.
Patent Information
- Application Number
- CN202422043061.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-21
- Publication Date
- 2025-08-29
- Estimated Expiration
- 2034-08-21
AI Technical Summary
The existing touch-controlled ultrasonic equipment has a large size due to the overall external power cord, which affects the integration and portability of the equipment.
By setting up built-in cables in the host housing, dislocating the main control board with the external cables, using the built-in cables to place some cables in the host housing, reducing the length of the external cables, and designing the electrical connectors perpendicular to the host thickness direction to reduce the device volume.
The compact design of touch-controlled ultrasonic equipment is realized, reducing the length of external cables, reducing the overall volume of the equipment, and improving the aesthetics and space utilization of the equipment.
Smart Images

Figure CN223275456U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of medical devices, and in particular to a touch-controlled ultrasonic device. Background Art
[0002] Traditional ultrasound equipment includes a body and an ultrasound host installed on the body, a display support arm, a display, a probe cup holder, etc. The ultrasound host and display are usually two independent devices. The entire ultrasound equipment is not highly integrated and is heavy, making it difficult for medical staff to move the ultrasound equipment.
[0003] To address these issues, touch-screen ultrasound devices, integrating an ultrasound main unit and a display screen, have emerged. These devices primarily consist of a body, a support arm, and a touch-screen ultrasound main unit. The support arm is mounted above the body, and the touch-screen ultrasound main unit is floatingly connected to the main unit via the support arm. The touch-screen ultrasound main unit comprises a main unit housing and a main control board housed within the housing. The housing is composed of a front and rear housing, with the front housing housing a touchscreen for touch display functionality. One end of the support arm is connected to the center of the rear housing.
[0004] In existing touch-screen ultrasound systems, to facilitate the proper layout of the various electronic components within the system and the connections between the various functional modules and corresponding electronic components on the main control board, the power supply interface is typically located only at one end of the system, near the top of the system housing. Accordingly, a socket is provided at the top of the rear housing, directly opposite the power supply interface. One end of the power cord passes through the socket on the rear housing and plugs into the power supply interface, while the other end of the power cord connects to the power outlet on the system housing. The entire power cord is located outside the system housing. Due to the relatively high rigidity of medical power cords, touch-screen ultrasound systems with an exposed power cord require a relatively long power cord, requiring ample space between the system housing and the body for routing the power cord, resulting in a larger touch-screen device. Utility Model Content
[0005] Therefore, the technical problem to be solved by the present invention is to overcome the defect of the touch-controlled ultrasonic device in the prior art that the device is larger in size due to the overall external placement of the power cord, thereby providing a touch-controlled ultrasonic device.
[0006] In order to solve the above technical problems, the technical solutions of the present utility model are as follows:
[0007] A touch-controlled ultrasonic device includes a touch-controlled ultrasonic host, the touch-controlled ultrasonic host including a host housing, a main control board arranged inside the host housing, and a built-in cable; the host housing is provided with a first jack, the main control board is provided with an external interface, and the first jack and the external interface are staggered; one end of the built-in cable is plugged into and connected to the external interface, and the other end extends to the first jack, and the other end of the built-in cable is used to be plugged into and connected to an external cable located outside the host housing.
[0008] Furthermore, when the touch-controlled ultrasonic host is in an upright position, the height of the location of the external interface is higher than the height of the location of the first jack.
[0009] Furthermore, the built-in cable includes a cable body, a first electrical connector connected to one end of the cable body, and a second electrical connector connected to the other end of the cable body; the first electrical connector is plugged into the external interface, and the second electrical connector is arranged corresponding to the position of the first jack, and the second electrical connector is used to be plugged into an external cable located outside the host housing.
[0010] Furthermore, one end of the external cable is plugged into the second electrical connector via a third electrical connector, and a plugging direction of the third electrical connector and the second electrical connector is perpendicular to a thickness direction of the host housing.
[0011] Furthermore, the external interface includes a power supply interface and a communication interface; the first electrical connector includes a power supply plug connected to the power supply interface and a communication plug connected to the communication interface.
[0012] Furthermore, a shielding cover assembly is provided in the host shell, the main control board is located in the space covered by the shielding cover assembly, the shielding cover assembly is provided with a first through hole corresponding to the position of the external interface, the first electrical connector is passed through the first through hole, and the cable body is fixed on the shielding cover assembly and is located outside the space covered by the shielding cover assembly.
[0013] Furthermore, the host housing includes a front shell and a rear shell that are connected to each other and enclose a mounting cavity, the shielding cover assembly is connected to the front shell, and the first jack is provided on the rear shell.
[0014] Furthermore, a socket mounting plate is connected to the shielding cover assembly near the first socket, a second through hole is provided on the socket mounting plate, and the second electrical connector is fixed to the second through hole of the socket mounting plate.
[0015] Furthermore, the shielding cover assembly is provided with a wiring channel, and the cable body is embedded in the wiring channel.
[0016] Furthermore, a mainboard mounting plate is fixed in the front shell, and the main control board is fixed on the mainboard mounting plate; the shielding cover assembly includes a first shielding cover connected to the mainboard mounting plate and covering the outer periphery of the main control board, and a second shielding cover connected to the side of the first shielding cover facing away from the mainboard mounting plate; the second shielding cover includes a second shielding cover body surrounded on four sides, and a connecting edge connected to the side wall of the second shielding cover body and fitted with the first shielding cover, and a limiting structure is provided on the connecting edge, and the channel formed between the limiting structure and the second shielding cover body is the routing channel.
[0017] Furthermore, the shielding cover assembly is provided with a bridge hole, and the cable body is fixed to the shielding cover assembly by a strap passing through the bridge hole.
[0018] Furthermore, a groove is provided on the side of the rear shell facing away from the front shell, the first jack is formed on the side wall of the groove, and a cover plate covering the groove is connected to the rear shell, and an opening is provided on the cover plate for the external cable to pass through.
[0019] Furthermore, it includes a body and a support arm; the support arm is connected to the top of the body, the touch-controlled ultrasonic host is connected to the support arm, and a power socket is provided on the body or the support arm; the distance between the first jack and the power socket is smaller than the distance between the external interface and the power socket.
[0020] The technical solution of the present utility model has the following advantages: by staggering the first jack on the main body shell of the touch-controlled ultrasonic main body and the external interface on the main control board, the main control board and the external cable are connected by using the built-in cable arranged in the main body shell, and a part of the cable that originally needs to be arranged outside the main body shell is placed in the main body shell in the form of a built-in cable, which not only makes full use of the internal space of the main body shell, but also reduces the length of the external cable outside the main body shell, which is conducive to realizing the compact design of the touch-controlled ultrasonic device and reducing the overall volume of the device; and the overall aesthetics of the device are improved. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] In order to more clearly illustrate the specific implementation methods of the utility model or the technical solutions in the prior art, the drawings required for use in the specific implementation methods or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are some implementation methods of the utility model. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.
[0022] Figure 1A schematic diagram of the overall structure of a touch-controlled ultrasonic device provided by an embodiment of the present utility model;
[0023] Figure 2 A schematic diagram of the overall structure of a touch-controlled ultrasonic host provided by an embodiment of the present utility model;
[0024] Figure 3 An exploded view of a touch-controlled ultrasonic host provided by an embodiment of the present utility model;
[0025] Figure 4 This is a schematic diagram of the overall structure of the front shell of the touch-controlled ultrasonic host in an embodiment of the present utility model;
[0026] Figure 5 This is a schematic structural diagram of the outer surface of the rear shell in an embodiment of the present utility model;
[0027] Figure 6 This is a schematic structural diagram of the outer surface of the rear shell in an embodiment of the present utility model;
[0028] Figure 7 This is a schematic diagram of the routing of built-in cables on the shielding cover assembly in an embodiment of the present utility model;
[0029] Figure 8 Schematic diagram of the connection relationship between the mainboard mounting plate and the shielding cover assembly in the embodiment of the utility model
[0030] Figure 9 This is a schematic diagram of the overall structure of the built-in cable in an embodiment of the present utility model;
[0031] Figure 10 This is a schematic diagram of the partial structure of the external cable in the embodiment of the present utility model;
[0032] Figure 11 This is a schematic structural diagram of the second shielding cover in an embodiment of the present utility model;
[0033] Figure 12 This is a schematic structural diagram of the rear housing in an embodiment of the present utility model;
[0034] Figure 13 Schematic diagram of the structure of the cover plate in the embodiment of the present utility model.
[0035] Explanation of reference numerals: 1. Touch-controlled ultrasonic host; 11. Front shell; 12. Rear shell; 121. Groove; 122. First jack; 123. HDMI interface hole; 13. Main control board; 131a. Power supply interface; 131b. Communication interface; 132. HDMI interface; 14. Built-in cable; 141. Cable body; 142. Power supply plug; 143. Communication plug; 144. Power supply socket; 145. Communication socket; 15. External cable; 16. Shielding cover assembly ;161. First shielding cover;1611. First through hole A;1612. First through hole B;162. Second shielding cover;1621. Second shielding cover body;1622. Connecting edge;1623. Limiting structure;1624. Bridge hole;17. Socket mounting plate;171. Second through hole A;172. Second through hole B;18. Mainboard mounting plate;19. Cover plate;191. Opening;192. Connecting hole;2. Body;21. Base;22. Column;3. Support arm. DETAILED DESCRIPTION
[0036] The following is a clear and complete description of the technical solution of the present invention in conjunction with the accompanying drawings. Obviously, the embodiments described are only some of the embodiments of the present invention, not all of them. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making any creative efforts are within the scope of protection of the present invention.
[0037] In the description of this utility model, it should be noted that the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer," etc., indicating positions or relationships, are based on the positions or relationships shown in the accompanying drawings and are intended solely to facilitate the description of this utility model and simplify the description. They do not indicate or imply that the devices or components referred to must have a specific orientation, be constructed, or operate in a specific orientation. Therefore, they should not be construed as limitations on this utility model. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.
[0038] In the description of this utility model, it should be noted that, unless otherwise expressly specified or limited, the terms "mounted," "connected," and "connected" should be understood in a broad sense. For example, they can refer to fixed connections, detachable connections, or integral connections; mechanical connections, electrical connections; direct connections, indirect connections through an intermediate medium, and internal communication between two components. Those skilled in the art will understand the specific meanings of the above terms in this utility model based on the specific circumstances.
[0039] like Figure 1The illustrated touch-controlled ultrasound device includes a touch-controlled ultrasound main unit 1, a main unit 2, and a support arm 3. The main unit 2 includes a base 21 supported on the ground and a column 22 fixed above the base 21. The support arm 2 is connected to the end of the column 22 facing away from the base 21. The support arm 3 is connected to the upper portion of the column 22, and the touch-controlled ultrasound main unit 1 is connected to the support arm 3. The touch-controlled ultrasound main unit 1 can move up and down and translate relative to the main unit 2 through the movement of the support arm 3. The touch-controlled ultrasound main unit 1 can also move in pitch relative to the support arm 3. The touch-controlled ultrasound main unit 1 can maintain its position and posture after movement.
[0040] like Figure 2 and Figure 3 As shown, the touch-controlled ultrasound host 1 includes components such as a host shell, a mainboard mounting plate 18, a main control board 13, a shielding cover assembly 16, a touch screen, a heat sink and a built-in cable 14. The host shell is flat as a whole, and includes a front shell 11 and a rear shell 12 that are interconnected and enclosed to form a mounting cavity; wherein the front shell 11 refers to the shell on the side of the host shell facing the user, and the rear shell 12 refers to the shell on the side of the host shell facing away from the user. The touch screen is embedded in the front of the front shell 11. The touch screen can display ultrasound images and virtual buttons. The user can input corresponding control instructions by clicking the virtual buttons on the touch screen. A fixing seat is fixed to the middle position of the rear shell 12 facing away from the front shell 11 (see Figure 1 ), the fixing seat is connected to one end of the support arm 3 and rotates with damping around a horizontally set rotating shaft to achieve the pitch movement of the touch-controlled ultrasonic host 1.
[0041] like Figure 3 As shown, the motherboard mounting plate 18, main control board 13, and shielding cover assembly 16 are all disposed within the mounting cavity of the main housing. The motherboard mounting plate 18 is mounted on the front housing 11, the main control board 13 is fixed to the motherboard mounting plate 18, and the shielding cover assembly 16 is fixed to the motherboard mounting plate 18 and covers the outer periphery of the main control board 13. The shielding cover assembly 16 is made of metal and is used to shield the main control board 13 from interference from external components. The shielding cover assembly 16 is provided with heat dissipation holes for heat dissipation.
[0042] like Figure 3 、 Figure 5 and Figure 6 As shown, the rear shell 12 is provided with a first jack 122 connecting the installation cavity and the external space. The rear shell 12 is provided with a groove 121 on the side facing away from the front shell 11. The groove 121 is located in the middle position below the rear shell 12. The first jack 122 is formed on the side wall of the groove 121. Figure 4As shown, one end of the internal cable 14 is threaded through the first jack 122. A power socket is provided on the body 2 or the support arm 3. One end of the external cable 15 is connected to the power socket, and the other end is connected to the internal cable 14. The main control board 13 is provided with an external interface, specifically an interface used by the main control board 13 to connect to an external power supply and / or external communication device. The external interface and the first jack 122 are staggered. It should be noted that, with the touch screen on the front housing 11 as a reference, the thickness of the touch screen is the thickness of the rear housing 12, the length of the touch screen is the length of the rear housing 12, and the width of the touch screen is the width of the rear housing 12. The thickness of the rear housing 12 is less than its length and width. The side of the rear housing 12 facing away from the front housing 11 is the rear side of the rear housing 12. The staggered arrangement of the external interface and the first jack 122 specifically means that the external interface and the first jack 122 are projected at different positions on the rear side of the rear housing 12 along the thickness of the rear housing 12.
[0043] In some embodiments, the distance between the first jack 122 and the power socket is smaller than the distance between the external interface and the power socket. Figure 2 For example, when the mid-touch ultrasound system is in an upright position, the mounting base is installed in the middle of the back of the rear housing 12. The external interface is located at a higher level than the mounting base, while the first jack 122 is located at a lower level. Simply put, the external interface is located above the mounting base, while the first jack 122 is located below the mounting base. The upper end of the internal cable 14 is connected to the external interface, and the lower end is threaded through the first jack 122. The external cable 15 extends outside the rear housing 12 at the lower end. By staggering the first jack 122 on the rear shell 12 and the external interface on the main control board 13, the main control board 13 and the external cable 15 are connected by the built-in cable 14 set in the host shell, and a part of the cable that originally needed to be set outside the host shell is placed inside the host shell in the form of the built-in cable 14. This not only makes full use of the internal space of the host shell, but also reduces the length of the external cable 15 outside the host shell, which is conducive to realizing the compact design of the touch-controlled ultrasonic device, reducing the size requirement for the space between the touch-controlled ultrasonic host 1 and the body 3, and helping to reduce the overall volume of the device; and the overall aesthetics of the device are better.
[0044] like Figure 3 、 Figure 4 and Figure 6 As shown, a socket mounting plate 17 is fixed on the shielding cover assembly 16, and the socket mounting plate 17 and the first jack 122 on the rear shell 12 are arranged opposite each other, and the built-in cable 14 extends from the position of the external interface to the position of the socket mounting plate 17. Figure 9As shown, the internal cable 14 includes a cable body 141, a first electrical connector, and a second electrical connector, respectively connected to opposite ends of the cable body 141. The cable body 141 is located within the mounting cavity of the host housing, extending from the location of the external interface to the location of the socket mounting plate 17. The first electrical connector plugs into the external interface. The socket mounting plate 17 defines a second through-hole, into which the second electrical connector is embedded and mounted. The second electrical connector plugs into and connects with the third electrical connector at one end of the external cable 15. The conduction direction of the second through-hole and the first receptacle 122 are both perpendicular to the thickness of the host housing. Accordingly, the connection direction of the third and second electrical connectors is perpendicular to the thickness of the host housing. Both the third and second electrical connectors are butt-jointed connectors. Because the third and second electrical connectors are relatively long along their connection direction after connection, aligning the connection direction perpendicular to the thickness of the host housing reduces the thickness requirement for the host housing, facilitating a flatter design.
[0045] like Figure 7 and Figure 8 As shown, the external interface on the main control board 13 includes a power supply interface 131a and a communication interface 131b. Figure 9 As shown, the first electrical connector includes a power supply plug 142 plugged into the power supply interface 131a and a communication plug 143 plugged into the communication interface 131b; the second electrical connector includes a power supply socket 144 and a communication socket 145. Figure 10 As shown, the third electrical connector includes a power supply mating plug 151 pluggably connected to the power supply socket 144 and a communication mating plug 152 pluggably connected to the communication socket 145. In an alternative embodiment, the external interface includes only the power supply interface 131a, the first electrical connector includes only the power supply plug 142 pluggably connected to the power supply interface, the second electrical connector includes only the power supply socket 144, and the third electrical connector includes only the power supply mating plug 151 pluggably connected to the power supply socket 144. The second through-holes on the socket mounting plate 17 include a second through-hole A171 and a second through-hole B171. The power supply socket 144 is embedded in the second through-hole A171, and the communication socket 145 is embedded in the second through-hole B171.
[0046] like Figure 5 、 Figure 6 and Figure 8 As shown, the main control board 13 is also provided with an HDMI interface 132. The power supply interface 131a, the communication interface 131b and the HDMI interface 132 are arranged in a straight line along the width direction of the main control board 13. The rear housing 12 is provided with an HDMI interface hole 123 corresponding to the position of the HDMI interface 132.
[0047] like Figure 4 、 Figure 7 、 Figure 8 and Figure 11 As shown, the shielding cover assembly 16 includes a first shielding cover 161 and a second shielding cover 162. The first shielding cover 161 is fixed to the mainboard mounting plate 18 and covers the outer periphery of the main control board 13. The second shielding cover 162 is fixed to the side of the first shielding cover 161 facing away from the mainboard mounting plate 18. The second shielding cover 162 protrudes toward the rear housing 12 relative to the first shielding cover 161. The first shielding cover 161 is provided with a first through-hole A1611 corresponding to the position of the power supply interface 131a, and a first through-hole B1612 corresponding to the position of the communication interface 131b. The power plug 142 of the first electrical connector passes through the first through-hole A1611 and plugs into the power supply interface 131a. The communication plug 143 of the first electrical connector passes through the first through-hole B1612 and plugs into the communication interface 131b. A wiring channel is defined on the outer side of the second shielding cover 162, and the cable body 141 is routed along the wiring channel. The second shielding cover 162 includes a second shielding cover body 1621 surrounded on all sides, and a connecting edge 1622 connected to the side wall of the second shielding cover body 1621 and in contact with the first shielding cover 161. The connecting edge 1622 is provided with a plurality of spaced limiting structures 1623. The channel formed between the plurality of limiting structures 1623 and the second shielding cover 162 body is a routing channel. The plurality of limiting structures 1623 can constrain the wiring direction of the cable body 141 on one side of the second shielding cover 162. Specifically, the limiting structures 1623 and the connecting edge 1622 are an integrally formed structure, and the limiting structure 1623 is formed by a protrusion of the connecting edge 1622 to one side. Furthermore, a bridge hole 1624 is provided on the limiting structure 1623, and the cable body 141 is fixed to the second shielding cover 162 by a strap passing through the bridge hole 1624.
[0048] like Figure 2 、 Figure 12 and Figure 13 As shown, the rear housing 12 is connected to a cover plate 19 that covers the groove 121. The cover plate 19 is provided with an opening 191 for the external cable 15 to pass through and a connection hole 192 for connecting to the rear housing 12. The structural design of the groove 121 and the cover plate 19 on the rear housing 12 allows the third electrical connector and the second electrical connector to be plugged into the groove 121. The plug-in parts of the third electrical connector and the second electrical connector are covered by the cover plate 19, realizing a hidden plug-in design. There is no protruding structure on the outer surface of the housing, which improves the overall aesthetics.
[0049] In summary, the touch-controlled ultrasound device provided by the present invention staggers the first jack 122 on the rear housing 12 of the touch-controlled ultrasound host 1 and the external interface on the main control board 13, so that the distance between the first jack 122 on the rear housing 12 and the power socket is less than the distance between the external interface on the main control board 13 and the power socket. Furthermore, a built-in cable 14 disposed within the host housing connects the main control board 13 and the external cable 15, allowing a portion of the cable, which would otherwise be located entirely outside the host housing, to be placed within the host housing in the form of the built-in cable 14. This not only fully utilizes the internal space of the host housing but also reduces the length of the external cable 15 located outside the host housing, achieving a compact design for the touch-controlled ultrasound device and requiring less space between the touch-controlled ultrasound host 1 and the body 2, thereby facilitating a miniaturized design of the touch-controlled ultrasound device and enhancing its overall aesthetics. Furthermore, by designing the third electrical connector and the second electrical connector to be perpendicular to the thickness of the touch-controlled ultrasound host 1, the thickness requirement for the touch-controlled ultrasound host 1 can be further reduced, facilitating a flat design for the touch-controlled ultrasound host 1. In addition, the smaller space between the touch-controlled ultrasonic main unit 1 and the body 2 also reduces the size requirement for the support arm 3, which is beneficial to reducing the production cost of the entire machine.
[0050] Obviously, the above embodiments are merely examples for clarity of explanation and are not intended to limit the implementation methods. Those skilled in the art will readily appreciate that other variations or modifications based on the above descriptions are possible. It is not necessary and impossible to enumerate all implementation methods here. Obvious variations or modifications arising therefrom remain within the scope of protection of the present invention.
Claims
1. A touch-controlled ultrasonic device, characterized in that: The invention comprises a touch-controlled ultrasonic host (1), wherein the touch-controlled ultrasonic host (1) comprises a host housing, a main control board (13) and a built-in cable (14) arranged inside the host housing; the host housing is provided with a first jack (122), the main control board (13) is provided with an external interface, and the first jack (122) and the external interface are arranged in a staggered manner; one end of the built-in cable (14) is plug-connected to the external interface and the other end extends to the first jack (122); the other end of the built-in cable (14) is plug-connected to the external cable (15) at the position of the first jack (122).
2. The touch-controlled ultrasonic device according to claim 1, wherein: The other end of the external cable (15) is connected to a power supply socket, and the distance between the first socket (122) and the power supply socket is smaller than the distance between the external connection interface and the power supply socket.
3. The touch-controlled ultrasonic device according to claim 1, wherein: The built-in cable (14) comprises a cable body (141), a first electrical connector connected to one end of the cable body (141), and a second electrical connector connected to the other end of the cable body (141); the first electrical connector is plug-connected to the external interface, the second electrical connector is arranged at a position corresponding to the first jack (122), and the second electrical connector is used to be plug-connected to the external cable (15).
4. The touch-controlled ultrasonic device according to claim 3, wherein: One end of the external cable (15) is plugged and connected to the second electrical connector via a third electrical connector, and the plugging direction of the third electrical connector and the second electrical connector is perpendicular to the thickness direction of the host housing.
5. The touch-controlled ultrasonic device according to claim 3, wherein: The external connection interface includes a power supply interface and a communication interface; the first electrical connector includes a power supply plug (142) plug-connected to the power supply interface and a communication plug (143) plug-connected to the communication interface.
6. The touch-controlled ultrasonic device according to claim 3, wherein: A shielding cover assembly (16) is further provided in the host housing, the main control board (13) is located in the space covered by the shielding cover assembly (16), a first through hole corresponding to the position of the external interface is provided on the shielding cover assembly (16), the first electrical connector is passed through the first through hole, and the cable body (141) is fixed on the shielding cover assembly (16) and is located outside the space covered by the shielding cover assembly (16).
7. The touch-controlled ultrasonic device according to claim 6, wherein: The host housing comprises a front shell (11) and a rear shell (12) which are connected to each other and enclose a mounting cavity, the shielding cover assembly (16) is connected to the front shell (11), and the first jack (122) is provided on the rear shell (12).
8. The touch-controlled ultrasonic device according to claim 6, wherein: The shielding cover assembly (16) is connected to a socket mounting plate (17) near the first jack (122), the socket mounting plate (17) is provided with a second through hole, and the second electrical connector is fixed to the second through hole of the socket mounting plate (17).
9. The touch-controlled ultrasonic device according to claim 7, wherein: The shielding cover assembly (16) is provided with a wiring channel, and the cable body (141) is embedded in the wiring channel.
10. The touch-controlled ultrasonic device according to claim 9, wherein: The front shell (11) is connected to a mainboard mounting plate (18), and the main control board (13) is fixed on the mainboard mounting plate (18); the shielding cover assembly (16) includes a first shielding cover (161) connected to the mainboard mounting plate (18) and covering the outer periphery of the main control board (13), and a second shielding cover (162) connected to the side of the first shielding cover (161) facing away from the mainboard mounting plate (18); the second shielding cover (162) includes a second shielding cover body (1621) surrounded on four sides, and a connecting edge (1622) connected to the side wall of the second shielding cover body (1621) and in contact with the first shielding cover (161), a limiting structure (1623) is provided on the connecting edge (1622), and a channel formed between the limiting structure (1623) and the second shielding cover body (1621) is the wiring channel.
11. The touch-controlled ultrasonic device according to claim 6, wherein: The shielding cover assembly (16) is provided with a bridge hole (1624), and the cable body (141) is fixed to the shielding cover assembly (16) by a strap passing through the bridge hole (1624).
12. The touch-controlled ultrasonic device according to claim 7, wherein: A groove (121) is provided on a side of the rear shell (12) facing away from the front shell (11); the first insertion hole (122) is arranged on a side wall of the groove (121); a cover plate (19) covering the groove (121) is connected to the rear shell (12); and an opening (191) for the external cable (15) to pass through is provided on the cover plate (19).
13. The touch-controlled ultrasonic device according to claim 1, wherein: The device further comprises a body (2) and a support arm (3); the support arm (3) is connected to the upper portion of the body (2); the touch-controlled ultrasonic host (1) is connected to the support arm (3); a power supply socket is provided on the body (2) or the support arm (3); and the distance between the first socket (122) and the power supply socket is smaller than the distance between the external interface and the power supply socket.