Portable ultrasonic equipment and ultrasonic equipment
Patent Information
- Application Number
- CN202422310867.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-20
- Publication Date
- 2025-11-25
- Estimated Expiration
- 2034-09-20
AI Technical Summary
现有的便携超声设备配备特定的电源线,用户携带便携超声设备外出超声检测时,如果忘记携带电源线会导致携超声设备配备不能使用
[0012]从上述的技术方案可以看出,本实用新型第一方面提出的便携超声设备,通过设置主机的电源接口组件的输入接口包括Type-A接口、Type-B接口、Type-C接口、Mirco-USB接口、Lighting接口、Thunderbolt接口中的至少一种,如此,用户可以使用日常的电子设备(例如手机、平板)的电源线对便携超声设备进行充电,在一定程度上提高了便携超声设备的使用便利性。且由于可以使用电子设备的电源线对便携超声设备进行充电,便携超声设备在外带超声检测时即使忘记携带电源线,也不会导致超声设备不能使用。
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Figure CN223585955U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of medical apparatus and instruments, especially to portable ultrasonic equipment and ultrasonic equipment. BACKGROUND
[0002] The portable ultrasonic equipment has the advantages of small size and convenient carrying, and can meet the needs of ultrasonic detection outside. The existing portable ultrasonic equipment is equipped with a specific power line, and if the user forgets to carry the power line when carrying the portable ultrasonic equipment for ultrasonic detection outside, the portable ultrasonic equipment cannot be used. SUMMARY
[0003] Therefore, the utility model provides a portable ultrasonic equipment and ultrasonic equipment.
[0004] The portable ultrasonic equipment provided by the utility model has the advantages of small size, convenient carrying, and the like, and can meet the needs of ultrasonic detection outside.
[0005] The host computer shell;
[0006] The board card assembly is arranged in the interior of the host computer shell; and
[0007] The power interface assembly is arranged in the host computer shell and is electrically connected with the board card assembly, and the power interface assembly comprises at least one input interface, wherein the at least one input interface comprises at least one of a Type-A interface, a Type-B interface, a Type-C interface, a Mirco-USB interface, a Lighting interface and a Thunderbolt interface.
[0008] The ultrasonic equipment provided by the utility model has the advantages of small size, convenient carrying, and the like, and can meet the needs of ultrasonic detection outside.
[0009] The host computer shell;
[0010] The board card assembly is arranged in the interior of the host computer shell; and
[0011] The power interface assembly comprises host terminals arranged on the host shell and electrically connected with the board card assembly, wherein the host terminals are provided with an identification unit for identifying whether the power cord plugged with the host terminals is an authenticated power cord.
[0012] From the above technical solution, the portable ultrasonic equipment according to the first aspect of the present application can be charged by using the power cord of the daily electronic equipment (such as mobile phone and tablet computer), thereby improving the use convenience of the portable ultrasonic equipment to a certain extent. Moreover, the portable ultrasonic equipment can be charged by using the power cord of the electronic equipment, so that the ultrasonic equipment can be used even if the user forgets to carry the power cord when taking the ultrasonic equipment for ultrasonic detection.
[0013] The ultrasonic equipment according to the second aspect of the present application is provided with an identification unit on the host terminals or the board card assembly to identify whether the power cord plugged with the host terminals is an authenticated power cord, so that the situation that the ultrasonic equipment is damaged due to the power cord failing to meet the use requirement during the scanning diagnosis can be effectively avoided, and the safety performance of the equipment use is improved. BRIEF DESCRIPTION OF DRAWINGS
[0014] In order to more clearly illustrate the technical schemes of the embodiments of the present application, the drawings required in the embodiment description will be briefly introduced. Obviously, the drawings in the following description are some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor.
[0015] Figure 1 is a structural schematic view of the ultrasonic equipment according to an embodiment of the present application. DETAILED DESCRIPTION
[0016] The technical schemes in the embodiments of the present application will be described clearly and completely in combination with the drawings in the embodiments of the present application. Obviously, the described embodiments are some embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, other embodiments obtained by those skilled in the art without creative labor are within the protection scope of the present application.
[0017] As Figure 1As shown, an embodiment of this utility model proposes a portable ultrasound device 100. The portable ultrasound device 100 includes a main unit 10, a display 20, and a probe 30. The display 20 and the probe 30 are both electrically connected to the main unit 10. The probe 30 is used to send ultrasonic waves to the object being operated on and to receive ultrasonic echoes. The main unit 10 is used to process the ultrasonic echoes and generate ultrasonic images. The display 20 is used to display the ultrasonic images. The main unit 10 includes a main unit housing 11, a board assembly 12, and a power interface assembly 13. The board assembly 12 is disposed inside the main unit housing 11. The power interface assembly 13 is disposed in the main unit housing 11 and electrically connected to the board assembly 12. The power interface assembly 13 includes at least one input interface E, wherein the at least one input interface E includes at least one of a Type-A interface, a Type-B interface, a Type-C interface, a Micro-USB interface, a Lightning interface, and a Thunderbolt interface.
[0018] The portable ultrasound device 100 proposed in this embodiment features an input interface E on the power interface component 13 of the host 10, which includes at least one of the following: Type-A, Type-B, Type-C, Micro-USB, Lightning, and Thunderbolt. This allows users to charge the portable ultrasound device 100 using the power cord of an electronic device (e.g., a mobile phone or tablet) compatible with the input interface E, thus improving the ease of use of the portable ultrasound device 100. Furthermore, since the portable ultrasound device 100 can be charged using the power cord of an ordinary electronic device, it will not be unusable even if the power cord is forgotten during ultrasound examinations.
[0019] like Figure 1 As shown, in some embodiments, the portable ultrasound device 100 also includes a control panel 40, which is used to respond to user operations to input operating instructions to the host 10.
[0020] like Figure 1 As shown, in some embodiments, the power interface assembly 13 includes a host terminal 131, which is disposed on the host housing 11 and electrically connected to the board assembly 12. The host terminal 131 or the board assembly 12 is provided with an identification unit 50, which is used to identify whether the power cable 200 plugged into the host terminal 131 is an authenticated power cable 200.
[0021] It can be understood that the ultrasonic equipment is a medical product, and when performing a scan diagnosis, the external equipment needs to have very strict requirements to form a good protection effect on the equipment and the patient. In the embodiment, the identification unit 50 is arranged on the host terminal 131 or the board card assembly 12 to identify whether the power line 200 plugged with the host terminal 131 is the authenticated power line 200, so that the situation that the ultrasonic equipment is damaged due to the power line 200 failing to meet the use requirement when performing a specific operation can be effectively avoided, and the safety performance of the equipment use is improved.
[0022] As shown in Figure 1 In some embodiments, when the identification unit 50 of the host terminal 131 or the board card assembly 12 identifies that the power line 200 plugged with the host terminal 131 is the authenticated power line 200, the ultrasonic equipment can not only use the power line 200 to charge, but also can perform image scanning work. When the identification unit 50 of the host terminal 131 or the board card assembly 12 identifies that the power line 200 plugged with the host terminal 131 is not the authenticated power line 200, the ultrasonic equipment can only use the power line 200 to charge, but cannot perform image scanning work.
[0023] In some embodiments, the identification unit 50 includes a detection circuit, which identifies whether the power line 200 is the authenticated power line 200 by detecting whether the power line 200 outputs a specific electrical signal. Specifically, if the power line 200 is the authenticated power line 200, a specific output circuit is additionally arranged in the power line 200, and when the power line 200 is plugged with the host terminal 131, the detection circuit can detect the specific electrical signal output by the output circuit, so as to determine that the power line 200 is the authenticated power line 200. The electrical signal output by the output circuit can be, but is not limited to, a current signal, a voltage signal or a resistance signal, and correspondingly, the detection circuit can be a current detection circuit, a voltage detection circuit or a resistance detection circuit.
[0024] It should be noted that the identification unit 50 is not limited to the detection circuit, for example, in other embodiments, the identification unit 50 includes a single-chip microcomputer, which identifies whether the power line 200 is the authenticated power line 200 by detecting whether the power line 200 outputs a preset ID code. Specifically, if the power line 200 is the authenticated power line 200, a specific ID circuit is additionally arranged in the power line 200, and when the power line 200 is plugged with the host terminal 131, the single-chip microcomputer can detect the ID code output by the ID circuit, so as to determine that the power line 200 is the authenticated power line 200.
[0025] It should be noted that the identification unit 50 is not limited to the mode of the detection circuit and the single-chip microcomputer. For example, in some other embodiments, the identification unit 50 includes a first protocol circuit that identifies whether the power line 200 is an authenticated power line 200 by matching a protocol with the power line 200. Specifically, if the power line 200 is an authenticated power line 200, a specific second protocol circuit is additionally provided in the power line 200. When the power line 200 is plugged into the host terminal 131, the first protocol circuit matches the second protocol circuit, so that it is determined that the power line 200 is an authenticated power line 200.
[0026] As shown in FIG. 1, Figure 1 In some embodiments, the power interface assembly 13 includes an adapter terminal 132, which includes an input end 1321 and an output end 1322. The output end 1322 is magnetically connected to the host terminal 131, and the input end 1321 has an input interface E. When it is necessary to charge the portable ultrasonic device 100 using the power line 200 of a daily electronic device, the adapter terminal 132 is first connected to the host terminal 131, and then the power line 200 of the daily electronic device is plugged into the adapter terminal 132. Due to the magnetic connection between the output end 1322 of the adapter terminal 132 and the host terminal 131, the plugging and unplugging between the adapter terminal 132 and the host terminal 131 is simple, labor-saving, and less abrasive, which can effectively solve the problem of abrasion and unreliable contact of the host terminal 131 caused by long-term plugging and unplugging.
[0027] When the host 10 needs to be connected to a matching power line, the power line is directly plugged into the host terminal 131.
[0028] In some embodiments, the number of adapter terminals 132 is multiple, and the interface types of the input interfaces E of different adapter terminals 132 are different. For example, in one embodiment, the number of adapter terminals 132 is six. The output ends 1322 of the six adapter terminals 132 are consistent and can be magnetically connected to the host terminal 131. The interface types of the input interfaces E of the six adapter terminals 132 are different. One of them is a Type-A interface, one is a Type-B interface, one is a Type-C interface, one is a Micro-USB interface, one is a Lighting interface, and one is a Thunderbolt interface. When the operation site only has a power line 200 that can charge the Type-C interface, the adapter terminal 132 with the Type-C interface is connected to the host terminal 131.
[0029] In some embodiments, the number of adapter terminals 132 is one, and the adapter terminal 132 has a plurality of input interfaces E, and the interface types of different input interfaces E are different. For example, in one embodiment, the adapter terminal 132 has six input interfaces E, one of which is a Type-A interface, one of which is a Type-B interface, one of which is a Type-C interface, one of which is a Micro-USB interface, one of which is a Lighting interface, and one of which is a Thunderbolt interface. The power line 200 is inserted into the input interface E which is adapted to the above six input interfaces E.
[0030] As shown in Figure 1 some embodiments, the host shell 11 is provided with a receiving cavity 111 for receiving the adapter terminal 132. With this implementation, by providing the receiving cavity 111 in the host shell 11 to receive the adapter terminal 132, on the one hand, it can prevent the adapter terminal 132 from being lost, and on the other hand, it is convenient to take the adapter terminal 132.
[0031] As shown in Figure 1 some embodiments, the host 10 further includes a magnetic member 60, which is arranged in the receiving cavity 111, and the magnetic member 60 is used to adsorb the adapter terminal 132 received in the receiving cavity 111. With this implementation, by providing the magnetic member 60 in the receiving cavity 111 to adsorb the adapter terminal 132, it can avoid the adapter terminal 132 from falling off the receiving cavity 111 during the transportation of the ultrasonic device.
[0032] Of course, in order to avoid the adapter terminal 132 from falling off the receiving cavity 111, it is not limited to the above-mentioned magnetic adsorption method. For example, in other embodiments, a first clamping portion is provided in the receiving cavity 111, and the adapter terminal 132 is provided with a second clamping portion, and the adapter terminal 132 is clamped in the receiving cavity 111 by the cooperation of the first clamping portion and the second clamping portion. That is, in this embodiment, the adapter terminal 132 is firmly clamped in the receiving cavity 111 by clamping.
[0033] As shown in Figure 1 some embodiments, the host shell 11 is provided with a recess 112, the host terminal 131 is located in the recess 112, and the adapter terminal 132 is at least partially embedded in the recess 112 and magnetically connected with the host terminal 131. With this implementation, the recess 112 plays a certain receiving role for the adapter terminal 132. Since the adapter terminal 132 is at least partially embedded in the recess 112, when the ultrasonic device is transported or the adapter terminal 132 is impacted, the recess 112 can block the adapter terminal 132 to a certain extent by the side wall.
[0034] As shown in Figure 1As shown in the figure, in some embodiments, the board card assembly 12 is provided with a charging control circuit 70, which is used to control the disconnection of the power line 200 connected with the power interface assembly 13 from the power interface assembly 13 when the PIN pin short circuit of the host terminal 131 is detected. Since there may be iron filings in the operation site of the ultrasonic equipment, which may cause the PIN pin short circuit of the host terminal 131 if adsorbed on the host terminal 131, at this time, if the power line 200 is in conduction with the host terminal 131 and delivers current to the host terminal 131, it may cause damage to the equipment. In the embodiment, by providing the charging control circuit 70 in the board card assembly 12, the charging control circuit 70 controls the disconnection of the power line 200 connected with the power interface assembly 13 from the power interface assembly 13 when the PIN pin short circuit of the host terminal 131 is detected, which can to some extent avoid the damage of the equipment and improve the safety performance of the equipment.
[0035] As Figure 1 As shown in the figure, the embodiment of the utility model also proposes an ultrasonic equipment, which can be a portable ultrasonic equipment or a desktop ultrasonic equipment, the proposed ultrasonic equipment includes host 10, display 20 and probe 30, display 20 and probe 30 are electrically connected with host 10, probe 30 is used to send ultrasonic wave to operating object and receive ultrasonic echo, host 10 is used to process ultrasonic echo and generate ultrasonic image, display 20 is used to display ultrasonic image. Host 10 includes host shell 11, board card assembly 12 and power interface assembly 13, board card assembly 12 is arranged in the inside of host shell 11. Power interface assembly 13 includes host terminal 131, host terminal 131 is arranged in host shell 11 and is electrically connected with board card assembly 12, wherein, host terminal 131 is provided with identification unit 50, identification unit 50 is used to identify whether the power line 200 inserted with host terminal 131 is the authenticated power line 200.
[0036] In some embodiments, when the identification unit 50 of the host terminal 131 or the board card assembly 12 identifies that the power line 200 inserted with the host terminal 131 is the authenticated power line 200, the ultrasonic equipment can not only use the power line 200 for charging, but also can perform image scanning work. When the identification unit 50 of the host terminal 131 or the board card assembly 12 identifies that the power line 200 inserted with the host terminal 131 is not the authenticated power line 200, the ultrasonic equipment can only use the power line 200 for charging, but cannot perform image scanning work.
[0037] In the embodiment, the identification unit 50 is arranged on the host terminal 131 or the board assembly 12 to identify whether the power line 200 connected with the host terminal 131 is an authenticated power line 200, so that the situation that the power line 200 cannot meet the use requirement and causes damage to the equipment and the patient during the scanning diagnosis of the ultrasonic equipment can be effectively avoided, and the safety performance of the equipment is improved.
[0038] As shown in Figure 1 In some embodiments, the power interface assembly 13 includes an adapter terminal 132, the adapter terminal 132 includes an input end 1321 and an output end 1322, the output end 1322 is magnetically connected with the host terminal 131, and the input end 1321 has at least one input interface E. When the power line 200 of the daily electronic equipment is needed to charge the portable ultrasonic equipment 100, the adapter terminal 132 is first connected with the host terminal 131, and then the power line 200 of the daily electronic equipment is connected with the adapter terminal 132. Due to the magnetic connection between the output end 1322 of the adapter terminal 132 and the host terminal 131, the plugging between the adapter terminal 132 and the host terminal 131 is simple and labor-saving, and the wear is small, so that the wear and unreliable contact of the host terminal 131 caused by long-term plugging can be effectively solved.
[0039] In some embodiments, the at least one input interface E includes at least one of a Type-A interface, a Type-B interface, a Type-C interface, a Micro-USB interface, a Lighting interface and a Thunderbolt interface. In this way, the user can use the power line 200 of the daily electronic equipment (such as a mobile phone and a tablet computer) to charge the portable ultrasonic equipment 100, and the use convenience of the portable ultrasonic equipment 100 is improved to a certain extent. Moreover, since the power line 200 of the electronic equipment can be used to charge the portable ultrasonic equipment 100, the portable ultrasonic equipment 100 will not be unusable even if the user forgets to carry the power line 200 when taking the ultrasonic equipment out.
[0040] The structure, connection relationship, expansion description and beneficial effects of other components of the ultrasonic equipment according to the embodiment can be referred to the above-mentioned embodiments, and will not be described here.
[0041] The above describes only the specific embodiments of the present application, but the protection scope of the present application is not limited to this. Any person skilled in the art can easily think of various equivalent modifications or replacements within the technical range disclosed by the present application, and these modifications or replacements should be covered in the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.
Claims
1. A portable ultrasound apparatus, characterized by comprising: The application relates to an ultrasonic diagnostic apparatus, which comprises a host computer, a display and a probe, wherein the display and the probe are electrically connected to the host computer, the probe is used for sending ultrasonic waves to an operating object and receiving ultrasonic echoes, the host computer is used for processing the ultrasonic echoes and generating ultrasonic images, and the display is used for displaying the ultrasonic images. The host computer comprises: a host computer shell; a board card assembly arranged in the interior of the host computer shell; and 2. The portable ultrasound device of claim 1, wherein, a power supply interface assembly arranged in the host computer shell and electrically connected to the board card assembly, wherein the power supply interface assembly comprises at least one input interface, and the at least one input interface comprises at least one of a Type-A interface, a Type-B interface, a Type-C interface, a Micro-USB interface, a Lighting interface and a Thunderbolt interface. The power supply interface assembly comprises a host computer terminal arranged in the host computer shell and electrically connected to the board card assembly.
3. The portable ultrasound device of claim 2, wherein, The host computer terminal or the board card assembly is provided with an identification unit for identifying whether a power supply line plugged into the host computer terminal is an authenticated power supply line. The identification unit comprises a detection circuit for identifying whether the power supply line is an authenticated power supply line by detecting whether the power supply line outputs a specific electrical signal; or The identification unit comprises a single-chip microcomputer for identifying whether the power supply line is an authenticated power supply line by detecting whether the power supply line outputs a preset ID code; or 4. The portable ultrasound device of claim 2, wherein, The identification unit comprises a protocol circuit for identifying whether the power supply line is an authenticated power supply line by matching a protocol with the power supply line.
5. The portable ultrasound device of claim 1, wherein, The power supply interface assembly comprises an adapter terminal, the adapter terminal comprises an input end and an output end, the output end is magnetically connected to the host computer terminal, and the input end is provided with the input interface.
6. The portable ultrasound device of claim 5, wherein, The power supply interface assembly comprises a host computer terminal and an adapter terminal, the host computer terminal is arranged in the host computer shell and electrically connected to the board card assembly, the adapter terminal comprises an input end and an output end, the output end is magnetically connected to the host computer terminal, and the input end is provided with the input interface. The number of the adapter terminals is plural, and the input interfaces of different adapter terminals are different in interface type; or 7. The portable ultrasound device of claim 5, wherein, The number of the adapter terminals is one, and the adapter terminal is provided with plural input interfaces, and the input interfaces are different in interface type.
8. The portable ultrasound device of claim 7, wherein, The host computer shell is provided with a receiving cavity for receiving the adapter terminal. The host computer is further provided with a magnetic member arranged in the receiving cavity, and the magnetic member is used for adsorbing the adapter terminal received in the receiving cavity; or 9. The portable ultrasound device of claim 5, wherein, The receiving cavity is provided with a first clamping part, the adapter terminal is provided with a second clamping part, and the adapter terminal is arranged in the receiving cavity through cooperation of the first clamping part and the second clamping part. The host computer shell is provided with a groove, the host computer terminal is located in the groove, and the adapter terminal is at least partially embedded in the groove and magnetically connected to the host computer terminal.
10. The portable ultrasound device of claim 1, wherein, The board card assembly is provided with a charging control circuit, which is used for controlling the disconnection of the power line connected with the power interface assembly from the power interface assembly when detecting the PIN pin short circuit of the host terminal.
11. An ultrasound apparatus, characterized by The application relates to an ultrasonic diagnostic apparatus, which comprises a host, a display and a probe, wherein the display and the probe are electrically connected with the host, the probe is used for sending ultrasonic waves to an operating object and receiving ultrasonic echoes, the host is used for processing the ultrasonic echoes and generating an ultrasonic image, and the display is used for displaying the ultrasonic image. The host comprises: a host shell; a board card assembly arranged in the interior of the host shell; and 12. The ultrasonic device of claim 11, wherein, a power interface assembly comprising a host terminal arranged in the host shell and electrically connected with the board card assembly, wherein the host terminal is provided with an identification unit used for identifying whether a power line plugged with the host terminal is an authenticated power line.
13. The ultrasonic device of claim 12, wherein, The power interface assembly comprises a conversion terminal, the conversion terminal comprises an input end and an output end, the output end is magnetically connected with the host terminal, and the input end has at least one input interface. The at least one input interface comprises at least one of a Type-A interface, a Type-B interface, a Type-C interface, a Micro-USB interface, a Lighting interface and a Thunderbolt interface.