Ultrasonic host

By placing the communication antenna in the handle cavity of the portable ultrasound host and connecting it to the main body cavity, combined with the design of insulating materials, the problems of difficult wiring and signal interference are solved, achieving a simple structure and stable signal.

CN224140833UActive Publication Date: 2026-04-21SONOSCAPE MEDICAL CORP
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SONOSCAPE MEDICAL CORP
Filing Date
2024-12-27
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

In portable ultrasound hosts, the wiring between the communication antenna and the communication module is difficult and easily interfered with by signals from other components within the host, resulting in complex structure and unstable signal transmission.

Method used

The communication antenna is placed in the handle's housing cavity, and the communication module is placed in the main body's storage cavity. They are connected through a connection port. The handle is designed with insulating material to meet clearance and anti-interference requirements. The connecting wire is run through the connection port to simplify the wiring process.

Benefits of technology

This facilitates easy wiring, reduces signal interference, simplifies the overall structure, makes it easier to disassemble and maintain communication antennas and modules, and improves the stability of signal transmission and equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an ultrasonic host which comprises a main body and a handle, the handle is connected to the main body, a connecting port is formed at the joint of the handle and the main body, an accommodating cavity is formed in the handle, a communication antenna is arranged in the accommodating cavity, a storage cavity is formed in the main body, and a communication module is arranged in the storage cavity, the ultrasonic host further comprises a connecting line penetrating through the connecting port, one part of the connecting line is located in the containing cavity, the other part of the connecting line is located in the containing cavity, and the communication antenna is connected to the communication module through the connecting line. The communication antenna is arranged in the accommodating cavity in the handle, the communication module is arranged in the storage cavity in the main body, the accommodating cavity is communicated with the storage cavity through the connecting port, and the connecting line connected between the communication antenna and the communication module penetrates through the connecting port, so that the wiring of the connecting line is easier to arrange, and the overall structure is simpler; and the connecting wire is arranged in the accommodating cavity and the storage cavity, so that interference can be effectively reduced.
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Description

Technical Field

[0001] This utility model relates to the field of medical device technology, specifically to an ultrasound host. Background Technology

[0002] With the development of technology, medical devices are gradually becoming smaller and more portable. Compared with desktop ultrasound units, portable ultrasound units are more compact and easier to use, and therefore are increasingly used in ultrasound diagnosis and treatment.

[0003] Portable ultrasound machines typically communicate with the outside world via a communication antenna. In existing portable ultrasound machines, the display needs to be able to rotate relative to the main body of the machine. The display is usually connected to the main body via a hinge, while the communication antenna is located inside the display and the communication module is located inside the main body. This means that the connection cable between the communication antenna and the communication module needs to pass through the hinge, making the routing of the connection cable very difficult. Utility Model Content

[0004] To at least partially address the problems existing in the prior art, this application provides an ultrasound host. The ultrasound host includes a main body and a handle. The handle is connected to the main body and a connection port is formed at the connection between the handle and the main body. A receiving cavity is formed inside the handle, and a communication antenna is disposed within the receiving cavity. A storage cavity is formed inside the main body, and a communication module is disposed within the storage cavity. The receiving cavity and the storage cavity are connected through the connection port. The ultrasound host also includes a connecting wire passing through the connection port, with a portion of the connecting wire located inside the receiving cavity and another portion located inside the storage cavity. The communication antenna is connected to the communication module through the connecting wire.

[0005] The ultrasound host provided in this application has a communication antenna housed in a receiving cavity within the handle, and a communication module housed in a storage cavity within the main body. The receiving cavity and the storage cavity are connected by a connection port, through which the connecting cable between the communication antenna and the communication module passes. This simplifies the cable routing, simplifies the overall structure, and makes implementation easier. Furthermore, placing the connecting cable within the receiving cavity and the storage cavity effectively reduces interference. The communication antenna housed within the receiving cavity is spaced apart from components within the storage cavity, thus preventing signal interference from these components. Moreover, by designing at least a portion of the handle to be made of insulating material, the clearance and anti-interference requirements for the communication antenna are more easily met. Additionally, in this ultrasound host, the communication antenna can be maintained or replaced by removing the handle, and the communication module can be maintained or replaced by removing the main body's panel, making both the communication antenna and the communication module easier to assemble and disassemble.

[0006] For example, the body includes a housing, a storage cavity is formed by the housing, the handle includes an upper handle shell and a lower handle shell, the upper handle shell is connected to the lower handle shell, and a receiving cavity is formed by the upper handle shell and the lower handle shell, wherein the lower handle shell is connected to the housing, and the upper handle shell includes a portion made of insulating material.

[0007] For example, an antenna bracket is disposed within the receiving cavity. The antenna bracket includes a portion made of insulating material and has a mounting surface facing the upper housing of the handle. The communication antenna is attached to the mounting surface. In this way, the clearance requirements for the communication antenna are met.

[0008] For example, the antenna bracket is provided with a connecting portion, and the lower housing of the handle is provided with a first threaded connecting portion. Fasteners are inserted through the connecting portion and the first threaded connecting portion to connect the antenna bracket to the lower housing of the handle.

[0009] For example, the antenna bracket is provided with a connecting part, the lower handle shell is provided with a first threaded connecting part, the upper handle shell is provided with a second threaded connecting part, and a fastener passes through the first threaded connecting part and the second threaded connecting part so that the upper handle shell is connected to the lower handle shell, wherein the fastener also passes through the connecting part and the connecting part is sandwiched between the first threaded connecting part and the second threaded connecting part.

[0010] For example, the communication antenna is attached to the mounting surface by adhesive.

[0011] For example, the upper shell of the hand surrounds the communication antenna.

[0012] For example, the communication antenna includes a 5G / WIFI antenna, the communication module includes a 5G module and a WIFI module, and the ultrasound host includes multiple connecting lines, with the 5G / WIFI antenna connected to the 5G module and the WIFI module respectively via the connecting lines.

[0013] For example, the communication antenna also includes a Bluetooth antenna, the communication module includes a Bluetooth module, and the Bluetooth antenna is connected to the Bluetooth module via a connecting cable.

[0014] For example, the WIFI module and the Bluetooth module are integrated into a WIFI / Bluetooth module, and the 5G / WIFI antenna and the Bluetooth antenna are respectively connected to the WIFI / Bluetooth module via connecting cables. The 5G / WIFI antenna is also connected to the 5G module via connecting cables.

[0015] This utility model description introduces a series of simplified concepts, which will be further explained in detail in the detailed description section. This utility model description is not intended to limit the key features and essential technical features of the claimed technical solution, nor is it intended to determine the scope of protection of the claimed technical solution.

[0016] The advantages and features of this utility model will be described in detail below with reference to the accompanying drawings. Attached Figure Description

[0017] The following drawings, which are incorporated herein by reference as part of this invention, are provided for understanding the invention. The drawings illustrate embodiments of the invention and their descriptions, serving to explain the principles of the invention. In the drawings,

[0018] Figure 1 This is a partial structural schematic diagram of an ultrasound host according to an exemplary embodiment of the present invention;

[0019] Figure 2 This is an exploded view of a portion of the structure of an ultrasonic host according to an exemplary embodiment of the present invention;

[0020] Figure 3 This is an exploded view of a portion of the structure of an ultrasonic host according to an exemplary embodiment of the present invention;

[0021] Figure 4 This is a partial structural schematic diagram of an ultrasound host according to an exemplary embodiment of the present invention, showing a 5G / WIFI antenna and an antenna bracket; and

[0022] Figure 5 This is a partial structural diagram of an ultrasound host according to an exemplary embodiment of the present invention, showing a Bluetooth antenna and an antenna bracket.

[0023] The above figures include the following reference numerals:

[0024] 100. Main body; 110. Storage cavity; 120. Communication module; 121. 5G module; 122. WIFI / Bluetooth module; 130. Outer shell; 200. Handle; 210. Receiving cavity; 220. Communication antenna; 221. 5G / WIFI antenna; 222. Bluetooth antenna; 230. Upper shell of handle; 240. Lower shell of handle; 241. First threaded connection part; 250. Antenna bracket; 251. Mounting surface; 252. Connection part; 300. Connection port; 400. Connection wire. Detailed Implementation

[0025] In the following description, numerous details are provided to enable a thorough understanding of the present invention. However, those skilled in the art will appreciate that the following description merely illustrates preferred embodiments of the present invention, which may be practiced without one or more of these details. Furthermore, to avoid confusion with the present invention, some technical features well-known in the art have not been described in detail.

[0026] According to one aspect of this utility model, an ultrasonic main unit is provided. See also Figure 1The ultrasound unit may include a main body 100 and a handle 200. The ultrasound unit typically includes a display connected to the main body 100, which may be hinged to the main body 100 and may be rotatable relative to the main body 100. The main body 100 typically includes a panel that can protect the internal structure of the main body 100, and the panel may have operation buttons. Figure 1 The ultrasound host shown is a portable ultrasound host, with the main panel of the body 100 concealed to showcase its internal structure. A handle 200 can be connected to the body 100, and a connection port 300 can be formed at the connection between the handle 200 and the body 100. The user can move the entire ultrasound host by gripping the handle 200. The handle 200 can be connected to the body 100 by welding, threaded connection, or any other suitable method. This connection of the handle 200 to the body 100 can mean that at least a portion of the handle 200's housing is connected to the housing of the body 100, ensuring that a connection port 300 is formed at the connection between the handle 200 and the body 100, allowing communication between the interior of the handle 200 and the interior of the body 100. For example... Figure 2In the illustrated embodiment, the handle 200 may include an upper handle shell 230 and a lower handle shell 240. The upper handle shell 230 can be connected to the lower handle shell 240, and the lower handle shell 240 can be connected to the outer shell 130 of the main body 100. The connection port 300 may be a through hole formed by the edge of the connection between the handle 200 and the main body 100. A receiving cavity 210 may be formed inside the handle 200, and a communication antenna 220 may be disposed inside the receiving cavity 210. The receiving cavity 210 may be a cavity formed inside the handle 200. For example, in the embodiment where the handle 200 includes an upper handle shell 230 and a lower handle shell 240, the receiving cavity 210 may be formed by the upper handle shell 230 and the lower handle shell 240. The communication antenna 220 may be a flexible circuit board or any other suitable form, and the communication antenna 220 can be regarded as a signal transceiver device. Exemplarily, the communication antenna 220 may include any suitable signal transceiver antenna such as a 3G antenna, a 4G antenna, a 5G antenna, a WIFI antenna, and a Bluetooth antenna. A storage cavity 110 may be formed within the main body 100, and a communication module 120 may be disposed within the storage cavity 110. The storage cavity 110 may be a cavity formed within the main body 100; for example, in an embodiment where the main body 100 includes a shell 130, the storage cavity 110 may be formed by the shell 130. The communication module 120 may be compatible with a communication antenna 220; for example, for a 5G antenna-type communication antenna 220, the communication module 120 may be a 5G module. When a panel is provided on the main body 100, the panel may cover the storage cavity 110. The receiving cavity 210 and the storage cavity 110 may be connected through a connection port 300. The ultrasound host may also include a connecting cable 400 passing through the connection port 300, and the connecting cable 400 may be connected between the communication antenna 220 and the communication module 120. A portion of the connecting line 400 may be located within the receiving cavity 210, and another portion may be located within the storage cavity 110. The communication antenna 220 may be connected to the communication module 120 via the connecting line 400.

[0027] In some existing portable ultrasound machines, the communication antenna is located within the main body. This makes the antenna susceptible to signal interference from other components within the main body, and also hinders signal transmission from the communication module, thus affecting its functionality. Other existing portable ultrasound machines place the communication antenna within the display. Since the display is typically connected to the main body via a hinge, routing the connection between the antenna and the communication module becomes very difficult. Furthermore, to meet the clearance and anti-interference requirements of the communication antenna, the display structure needs to be designed accordingly, and a portion of the display needs to be made of insulating material. Considering that the display must at least meet imaging requirements, this results in a very complex structure and poor shape consistency. In this application, the connection line 400 between the communication antenna 220 and the communication module 120 is routed through a connection port 300. The connection port 300 can be considered as a through-hole connecting the handle 200 and the main body 100. Using a through-hole-like connection port 300 for routing the connection line 400 makes the routing easier, simplifying the overall structure and making it easier to implement. Furthermore, the communication antenna 220 is located inside the handle 200, and will not be affected by signal interference from other components within the main body 100. This ensures more stable signal transmission between the communication antenna 220 and the communication module 120. In addition, compared to placing the communication antenna inside the display, the structure and materials of the handle 200 can be designed as needed, making it easier to meet the clearance requirements and anti-interference requirements of the communication antenna 220.

[0028] The ultrasonic host provided in this application has a communication antenna 220 housed in a receiving cavity 210 within a handle 200, and a communication module 120 housed in a storage cavity 110 within a main body 100. The receiving cavity 210 and the storage cavity 110 are connected via a connection port 300. A connecting line 400 connecting the communication antenna 220 and the communication module 120 passes through the connection port 300. This makes the routing of the connecting line 400 easier, the overall structure simpler, and easier to implement. Furthermore, placing the connecting line 400 within the receiving cavity 210 and the storage cavity 110 effectively reduces interference. The communication antenna 220 housed within the receiving cavity 210 can be spaced apart from the components within the storage cavity 110, thereby preventing the communication antenna 220 from being interfered with by signals from the components within the storage cavity 110. Moreover, by designing at least a portion of the handle 200 to be made of insulating material, the clearance requirements and anti-interference requirements for the communication antenna 220 can be more easily met. In addition, in such an ultrasound host, the communication antenna 220 can be maintained or replaced by removing the handle 200; the communication module 120 can be maintained or replaced by removing the panel of the main body 100, so that the communication antenna 220 and the communication module 120 can be more easily disassembled and assembled.

[0029] In one embodiment of this utility model, see Figure 1 and Figure 2 The main body 100 may include a housing 130, and a storage cavity 110 may be formed by the housing 130. The handle 200 may include an upper handle shell 230 and a lower handle shell 240, the upper handle shell 230 being connected to the lower handle shell 240, and a receiving cavity 210 being formed by the upper handle shell 230 and the lower handle shell 240. The lower handle shell 240 may be connected to the housing 130, and the upper handle shell 230 may include a portion made of insulating material. The lower handle shell 240 may be connected to the housing 130 by snap-fit, welding, threaded connection, or other various methods. Exemplarily, the lower handle shell 240 may be integrally formed with the housing 130, in which case the lower handle shell 240 and the housing 130 may be made of the same material. For example, in some embodiments, to ensure the stability of the main body 100, the housing 130 may be made of a metal material, and the lower handle shell 240 integrally formed with the housing 130 may also be made of a metal material. Exemplarily, the outer shell 130 can be made of magnesium alloy, and the lower handle shell 240 integrally formed with the outer shell 130 can also be made of magnesium alloy. The upper handle shell 230 may include a portion made of insulating material, which may correspond to the position of the communication antenna 220. The communication antenna 220 disposed within the receiving cavity 210 may be relatively close to the upper handle shell 230, and the position of the communication antenna 220 may correspond to the position of the portion made of insulating material on the upper handle shell 230. Exemplarily, the upper handle shell 230 may be made of insulating material. Since metallic materials may interfere with the signal transmission of the communication antenna 220, in such an ultrasonic host, the upper handle shell 230 may include a portion made of insulating material, so that the position of the communication antenna 220 in the receiving cavity 210 may correspond to the position of the portion made of insulating material on the upper handle shell 230. This strengthens the anti-interference capability of the communication antenna 220 and makes the overall device more stable during use. When the handle housing 230 is made entirely of insulating material, interference to the communication antenna 220 can be further reduced, and the overall shape consistency can be better. Such a handle housing 230 is also easier to produce and process.

[0030] In one embodiment of this utility model, see Figure 1 , Figure 2 and Figure 4An antenna bracket 250 can be disposed within the receiving cavity 210. The antenna bracket 250 may include a portion made of insulating material and may have a mounting surface 251 facing the upper handle housing 230. The communication antenna 220 can be attached to the mounting surface 251. This satisfies the clearance requirements of the communication antenna 220. In embodiments where the handle 200 includes an upper handle housing 230 and a lower handle housing 240, the antenna bracket 250 can be connected to either the upper handle housing 230 or the lower handle housing 240, or simultaneously to both. The antenna bracket 250 can be disposed within the receiving cavity 210 using various suitable methods such as snap-fit, magnetic connection, or inlay connection. The mounting surface 251 of the antenna bracket 250 facing the upper handle housing 230 can have any suitable form. The extension trend of the mounting surface 251 can be the same as the extension trend of the handle housing 230. For example, to facilitate user gripping of the handle 200, the handle housing 230 can have an arcuate cross-section, and correspondingly, the mounting surface 251 can also be an arcuate surface. The antenna bracket 250 may include a portion made of insulating material, wherein the portion of the antenna bracket 250 corresponding to the position of the communication antenna 220 can be made of insulating material. The antenna bracket 250 can also be entirely made of insulating material, which facilitates the production and processing of the antenna bracket 250. The communication antenna 220 can be attached to the mounting surface 251 by adhesive bonding, welding, threaded connection, or any other suitable method. "The communication antenna 220 is attached to the mounting surface" means that the communication antenna 220 is abutted against and connected to the mounting surface 251. By providing the antenna bracket 250 within the receiving cavity 210, the communication antenna 220 can be more stably positioned within the receiving cavity 210, and the antenna bracket 250 can ensure that the clearance requirements of the communication antenna 220 are met, thereby making the overall signal transmission more stable.

[0031] For example, the antenna bracket 250 may be provided with a connecting portion 252, and the handle lower housing 240 may be provided with a first threaded connecting portion 241. Fasteners may pass through the connecting portion 252 and the first threaded connecting portion 241, so that the antenna bracket 250 can be connected to the handle lower housing 240. Connecting the antenna bracket 250 to the handle lower housing 240 through a threaded connection simplifies the overall structure and makes it easier to implement. Moreover, such a connection between the antenna bracket 250 and the handle lower housing 240 is easy to assemble and disassemble, thus making the maintenance or replacement of the communication antenna 220 attached to the antenna bracket 250 simpler and more convenient.

[0032] For example, the antenna bracket 250 may be provided with a connecting portion 252, the lower handle housing 240 may be provided with a first threaded connecting portion 241, and the upper handle housing 230 may be provided with a second threaded connecting portion (not shown in the figure). Fasteners may pass through the first threaded connecting portion 241 and the second threaded connecting portion, so that the upper handle housing 230 can be connected to the lower handle housing 240. The fasteners may also pass through the connecting portion 252, and the connecting portion 252 may be sandwiched between the first threaded connecting portion 241 and the second threaded connecting portion. By connecting the upper handle housing 230 to the lower handle housing 240 through a threaded connection, the connection between the upper handle housing 230 and the lower handle housing 240 is easy to assemble and disassemble, making the handle 200 easier to assemble and disassemble and convenient for maintenance. The antenna bracket 250 is positioned in the receiving cavity 210 by clamping the connecting part 252 between the first threaded connecting part 241 and the second threaded connecting part. After disassembling the connection between the upper handle shell 230 and the lower handle shell 240, the antenna bracket 250 can be removed, making it easier to disassemble and remove the communication antenna 220 attached to the antenna bracket 250. This also makes the maintenance of the overall device simpler and more convenient.

[0033] The communication antenna 220 is attached to the mounting surface 251. The communication antenna 220 can have the same extension trend as the mounting surface 251, which saves internal space in the housing cavity 210, resulting in a more compact overall structure and more portable device. For example, the communication antenna 220 can be glued to the mounting surface 251. For communication antennas in the form of flexible circuit boards, the back of the flexible circuit board is usually provided with adhesive, allowing the communication antenna 220 to be glued to the mounting surface 251, making the connection between the communication antenna 220 and the mounting surface 251 simpler and easier to implement. Of course, for other types of communication antennas 220, gluing them to the mounting surface 251 can also be a simpler connection method, resulting in a simpler overall structure and easier implementation.

[0034] For example, the handle housing 230 can surround the communication antenna 220. In a direction perpendicular to the communication antenna 220, the communication antenna 220 can have opposing first and second sides. The first side can be the side of the communication antenna 220 facing the antenna bracket 250, and the second side can be the side of the communication antenna 220 away from the antenna bracket 250. The first side of the communication antenna 220 can be attached to the mounting surface 251, so that the clearance requirement of the communication antenna 220 on the first side can be met by the antenna bracket 250. When the handle housing 230 surrounds the communication antenna 220, the second side of the communication antenna 220 can be entirely facing the handle housing 230; that is, there may be no portion on the second side of the communication antenna 220 directly facing the handle lower housing 240. In other words, it can be considered that the connection point between the handle housing 230 and the handle lower housing 240 is not higher than the lowest point of the communication antenna 220. Since the upper handle housing 230 may include a part made of insulating material, while the lower handle housing 240 is usually integrally formed with the outer housing 130, that is, the lower handle housing 240 is usually made of metal material, this can avoid the lower handle housing 240 interfering with the signal transmission and reception of the communication antenna 220, thus further improving the overall stability of the device.

[0035] In one embodiment of this utility model, see Figure 3 The communication antenna 220 may include a 5G / WIFI antenna 221, and the communication module 120 may include a 5G module 121 and a WIFI module (not shown in the figure). The ultrasound host may include multiple connecting cables 400, and the 5G / WIFI antenna 221 can be connected to the 5G module 121 and the WIFI module through the connecting cables 400 respectively. The communication antenna 220 may include a 5G / WIFI antenna 221 integrating 5G signal transceiver and WIFI signal transceiver functions. Correspondingly, the communication module 120 may include a 5G module 121 and a WIFI module respectively connected to the 5G / WIFI antenna 221. The 5G module 121 and the WIFI module can be placed at any suitable location within the storage cavity 110. It is understood that for other suitable forms of signal transceiver antennas such as 3G antennas, 4G antennas, and Bluetooth antennas, a corresponding signal transceiver module can be provided within the storage cavity 110. In such an ultrasound host, the signal transmission and reception of the 5G / WIFI antenna 221 are not easily affected by interference, and the 5G / WIFI antenna 221 can be disassembled simply by removing the upper shell 230 of the handle. The 5G / WIFI antenna 221 in such an ultrasound host is easy to disassemble and install, making it convenient to maintain or replace the 5G / WIFI antenna 221, and improving the user experience.

[0036] For example, see see Figure 3 and Figure 5The communication antenna 220 may also include a Bluetooth antenna 222, and the communication module 120 may include a Bluetooth module. The Bluetooth antenna 222 can be connected to the Bluetooth module via a connecting cable 400. In such an ultrasound host, the signal transmission and reception of the Bluetooth antenna 222 is not easily affected by interference, and the Bluetooth antenna 222 can be disassembled simply by removing the handle cover 230. This makes the Bluetooth antenna 222 easy to install and remove, facilitating maintenance or replacement and improving the user experience.

[0037] Since the frequency bands of Wi-Fi and Bluetooth signals are quite similar, the Wi-Fi module and Bluetooth module can be integrated into a Wi-Fi / Bluetooth module 122, for example. The 5G / Wi-Fi antenna 221 and Bluetooth antenna 222 can be connected to the Wi-Fi / Bluetooth module 122 via a connecting cable 400, and the 5G / Wi-Fi antenna 221 can also be connected to the 5G module 121 via a connecting cable 400. This allows for more complete communication functions for the ultrasound host and a better user experience. Integrating the Wi-Fi and Bluetooth modules into the Wi-Fi / Bluetooth module 122 saves internal space in the storage cavity 110, resulting in a more compact overall structure.

[0038] In the description of this utility model, it should be understood that the directional terms such as "front", "rear", "up", "down", "left", "right", "horizontal", "vertical", "horizontal", "top", and "bottom" indicate the orientation or positional relationship, which are usually based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description. Unless otherwise stated, these directional terms do not indicate or imply that the device or element referred to must have a specific orientation or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation on the scope of protection of this utility model. The directional terms "inner" and "outer" refer to the inner and outer contours of each component itself.

[0039] For ease of description, relative terms such as "above," "over," "on the upper surface of," and "above" are used here to describe the regional positional relationship of one or more components or features shown in the figures to other components or features. It should be understood that relative terms include not only the orientation of the component as depicted in the figure but also different orientations during use or operation. For example, if the components in the figures are inverted as a whole, "above" or "above other components or features" will include cases where the component is "below" or "under" other components or features. Thus, the exemplary term "above" can include both "above" and "below." Furthermore, these components or features may also be positioned at other different angles (e.g., rotated 90 degrees or other angles), and this document intends to include all such cases.

[0040] It should be noted that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to limit the exemplary embodiments according to the present invention. As used herein, the singular form is intended to include the plural form as well, unless the context clearly indicates otherwise. Furthermore, it should be understood that when the terms "comprising" and / or "including" are used in this specification, they indicate the presence of features, steps, operations, parts, components, and / or combinations thereof.

[0041] It should be noted that the terms "first," "second," etc., in the specification, claims, and accompanying drawings of this utility model are used to distinguish similar objects and are not necessarily used to describe a specific order or sequence. It should be understood that such data can be interchanged where appropriate so that the embodiments of this utility model described herein can be implemented in sequences other than those illustrated or described herein.

[0042] This utility model has been described through the above embodiments. However, it should be understood that the above embodiments are for illustrative purposes only and are not intended to limit the utility model to the described embodiments. Furthermore, those skilled in the art will understand that this utility model is not limited to the above embodiments, and many more variations and modifications can be made based on the teachings of this utility model, all of which fall within the scope of protection claimed by this utility model. The scope of protection of this utility model is defined by the appended claims and their equivalents.

Claims

1. An ultrasound host machine, characterized by, The device includes a main body and a handle. The handle is connected to the main body and a connection port is formed at the connection between the handle and the main body. A receiving cavity is formed inside the handle, and a communication antenna is disposed inside the receiving cavity. A storage cavity is formed inside the main body, and a communication module is disposed inside the storage cavity. The receiving cavity and the storage cavity are connected through the connection port. The ultrasound host also includes a connecting wire passing through the connection port. A portion of the connecting wire is located inside the receiving cavity, and another portion is located inside the storage cavity. The communication antenna is connected to the communication module through the connecting wire.

2. The ultrasound host unit of claim 1, wherein, The main body includes an outer shell, the storage cavity is formed by the outer shell, the handle includes an upper handle shell and a lower handle shell, the upper handle shell is connected to the lower handle shell, the receiving cavity is formed by the upper handle shell and the lower handle shell, wherein the lower handle shell is connected to the outer shell, and the upper handle shell includes a portion made of insulating material.

3. The ultrasound host unit of claim 2, wherein, An antenna bracket is provided inside the receiving cavity. The antenna bracket includes a portion made of insulating material and has a mounting surface facing the upper shell of the handle. The communication antenna is attached to the mounting surface.

4. The ultrasound host unit of claim 3, wherein, The antenna bracket is provided with a connecting part, and the lower shell of the handle is provided with a first threaded connecting part. Fasteners are inserted through the connecting part and the first threaded connecting part so that the antenna bracket is connected to the lower shell of the handle.

5. The ultrasound host unit of claim 3, wherein, The antenna bracket is provided with a connecting part, the lower handle shell is provided with a first threaded connecting part, the upper handle shell is provided with a second threaded connecting part, and a fastener passes through the first threaded connecting part and the second threaded connecting part to connect the upper handle shell to the lower handle shell. The fastener also passes through the connecting part, and the connecting part is sandwiched between the first threaded connecting part and the second threaded connecting part.

6. The ultrasound host unit of claim 3, wherein, The communication antenna is attached to the mounting surface with adhesive.

7. The ultrasound host unit of claim 2, wherein, The upper casing of the handle surrounds the communication antenna.

8. The ultrasound host unit of claim 1, wherein, The communication antenna includes a 5G / WIFI antenna, the communication module includes a 5G module and a WIFI module, the ultrasound host includes multiple connecting lines, and the 5G / WIFI antenna is connected to the 5G module and the WIFI module respectively through the connecting lines.

9. The ultrasound host unit of claim 8, wherein, The communication antenna further includes a Bluetooth antenna, and the communication module includes a Bluetooth module. The Bluetooth antenna is connected to the Bluetooth module via the connecting cable.

10. The ultrasound host unit of claim 9, wherein, The WIFI module and the Bluetooth module are integrated into a WIFI / Bluetooth module. The 5G / WIFI antenna and the Bluetooth antenna are respectively connected to the WIFI / Bluetooth module through the connecting line. The 5G / WIFI antenna is also connected to the 5G module through the connecting line.