Urine volume ultrasonic image detection module and urine volume ultrasonic image detection equipment based on Zigbee ad hoc network technology
By integrating the ultrasonic probe with the image display module and using Zigbee ad hoc networking technology, the existing urine capacity ultrasonic image detection equipment is not portable, the observation image is greatly affected by the environment, and the operation is complicated, and the equipment is conveniently operated, flexible charging and fast data exchange are achieved.
Patent Information
- Application Number
- CN202421091032.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-05-20
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2034-05-20
AI Technical Summary
The existing urine capacity ultrasonic image detection equipment has a mode where the probe is separated from the host and is not portable, the observation image is greatly affected by the environment, the operation is complicated, the charging method is single, and there is no automatic networking function, resulting in insufficient measurement accuracy and operation convenience.
The ultrasonic probe and image display module are integrated into a single structure, combined with Zigbee's ad hoc networking technology, realizes automatic networking and multiple image display methods of the device. It is equipped with a USB data exchange module and a variety of charging methods, which enhances the environmental adaptability and operation convenience of the device.
It improves the portability and environmental adaptability of the equipment, simplifies the operation process, reduces the failure rate, provides a flexible charging method, and realizes fast data exchange and automatic networking between the equipment.
Smart Images

Figure CN223009157U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the field of ultrasonic imaging detection, and relates to a urine volume ultrasonic imaging detection module and device based on Zigbee self-organizing network technology. Background Technique
[0002] The urine volume ultrasonic imaging detection device is a professional medical device, mainly used to detect the urine volume in the human body, so as to help doctors make accurate diagnoses. Most of the existing urine volume ultrasonic imaging detection devices adopt the mode of separating the probe from the host. When doctors detect the urine volume of patients, it is inconvenient to carry, which is not conducive to doctors quickly and conveniently detecting patients; observing images can only be viewed through the liquid crystal display screen. When the light intensity is not ideal, it is inconvenient to adjust the screen direction at will, affecting the measurement accuracy; there is no multiplexing interface. When realizing functions such as data storage, software upgrade, and device charging, there are many interfaces, the operation is complex, and faults are likely to occur; only the charging method of the adapter can be used, and the charging method is single; there is no automatic networking function, and fast data exchange cannot be realized with other acquisition devices. The ultrasonic probe and the image display module of the urine volume ultrasonic imaging detection device based on Zigbee self-organizing network technology are of an integrated structure, reducing the connecting wires, improving the anti-interference performance of the device, reducing the size of the device, and being convenient for carrying and transportation; the image can be viewed by using both the display screen and the mobile terminal image display module at the same time, improving the environmental adaptability of the device and enhancing the measurement accuracy; the USB data exchange module has a multiplexing function and can realize functions such as data storage, software upgrade, and device charging; when charging with an adapter, a large current is used for charging, and when charging with a USB interface, a small current is used for charging. The adapter can be selected at will, and the charging method is flexible; the Zigbee wireless module can be set with an independent address code, has an independent identity identifier, and can automatically form a network with nearby Zigbee acquisition modules with the same communication protocol for data transmission. Content of the Utility Model
[0003] In order to overcome the above deficiencies, the utility model provides a urine volume ultrasonic imaging detection module and device based on Zigbee self-organizing network technology. The ultrasonic probe and the image display module are of an integrated structure, which is convenient to carry; has a variety of image display methods, and the observation of images is less affected by the environment; has a multiplexing interface, is convenient to operate, and has a low failure rate; has a variety of charging methods, and the charging is flexible; can be set with an independent address code and has a self-organizing network function.
[0004] To achieve the above object, the utility model adopts the following technical solutions:
[0005] A urine volume ultrasonic image detection module based on Zigbee self-organizing network technology, comprising an ultrasonic image detection module, an FPGA data image generation / control module, a Zigbee wireless module, a wireless Wifi module, a USB data exchange module, an image display module, and a battery charge and discharge management module;
[0006] The FPGA image generation / control module has image processing functions; the ultrasonic image detection module, the wireless Wifi module, the USB data exchange module, the image display module, the battery charge and discharge management module, and the Zigbee wireless module are respectively electrically connected to the FPGA image generation / control module.
[0007] Furthermore, the battery charge and discharge management module provides three power supply methods: power adapter power supply, USB interface power supply, and battery power supply.
[0008] Furthermore, the USB data exchange module has a data inter-transfer function.
[0009] Furthermore, the Zigbee wireless module has an independent address code and an independent identity identifier, and has the function of data transmission through the Zigbee communication protocol.
[0010] Furthermore, a urine volume ultrasonic image detection device based on Zigbee self-organizing network technology, comprising a power adapter interface, a USB interface, a control main board, a battery, a keypad, and a probe;
[0011] The control main board includes the ultrasonic image detection module, the FPGA data image generation / control module, the Zigbee wireless module, the wireless Wifi module, the USB data exchange module, the image display module, and the battery charge and discharge management module of the above ultrasonic image detection module;
[0012] The power adapter interface and the USB interface are respectively electrically connected to the battery charge and discharge management module, and the battery charge and discharge management module is connected to the battery;
[0013] The keypad and the probe are respectively electrically connected to the FPGA data image generation / control module;
[0014] The image display module and the probe form an integrated structure.
[0015] Furthermore, the power adapter interface and the USB interface are installed at the upper end of the detection device housing, the image display module is installed at the upper part of the housing, the keypad is installed in the middle of the housing, the probe is installed at the lower end of the housing, the control main board and the battery are installed inside the housing, and the components form an integrated structure through connection with the housing.
[0016] Further, the above ultrasonic imaging detection device further includes a mobile terminal imaging display module.
[0017] The ultrasonic probe and the imaging display module of the present utility model are of an integrated structure, which is convenient to carry; it has a variety of display modes, and the observation of images is less affected by the environment; it has a multiplexing interface, is convenient to operate, and has a low failure rate; it has a variety of charging methods, and the charging is flexible; it can set an independent address code and has a self-networking function. Description of the Drawings
[0018] Figure 1 is the structural block diagram of the ultrasonic imaging detection module of the present utility model;
[0019] Figure 2 is the structural diagram of the ultrasonic imaging detection device of the present utility model. Detailed Embodiments
[0020] The present utility model will be further described below with reference to the drawings and embodiments.
[0021] As Figure 1 shown, the connection manner between specific modules is given. Now Figure 1 shown will be described in detail;
[0022] A urine volume ultrasonic imaging detection module based on Zigbee self-networking technology includes an ultrasonic imaging detection module, an FPGA data imaging generation / control module, a Zigbee wireless module, a wireless Wifi module, a USB data exchange module, an imaging display module, and a battery charge and discharge management module.
[0023] The battery charge and discharge management module is electrically connected to the module through the battery and supplies power to the module according to the collected power supply method. When the power adapter supplies power, a large current is used to charge the battery, and then the battery supplies power to the module; when it is collected that the USB interface supplies power, a small current is used to charge the battery, and then the battery supplies power to the module; the battery charge and discharge management module can also directly supply power to the module through the power adapter and the USB interface. The power supply methods of the module include power adapter power supply, USB interface power supply, and battery power supply.
[0024] The ultrasonic probe has the ability to send and receive ultrasonic signals. After applying ultrasonic coupling agent, it emits ultrasonic signals to the human tissue module, and at the same time receives the echoes, and transmits the echo electrical signals to the ultrasonic imaging detection module. The ultrasonic imaging detection module performs digital signal processing such as noise reduction and amplification on the echo electrical signals and then transmits them to the FPGA imaging generation / control module of the ultrasonic imaging detection module to generate image data. Finally, the image data is displayed through the imaging display module, or transmitted to the mobile terminal imaging display module through the wireless Wifi module for display.
[0025] The USB data exchange module has an open USB interface. When an external USB flash drive is connected, it can realize data storage and access functions, software upgrade, and device charging functions. When connected to a PC through a data cable, it can realize data transfer functions.
[0026] The Zigbee wireless module can set an independent address code, has an independent identity identifier, and can automatically form a network with nearby Zigbee acquisition modules with the same communication protocol for data transmission. After the Zigbee acquisition module analyzes the collected data, it can perform processing such as display, storage, query, and printing.
[0027] The FPGA image generation / control module has image processing functions and controls the ultrasonic image detection module, wireless Wifi module, USB data exchange module, image display module, battery charge and discharge management module, Zigbee wireless module, and ultrasonic probe. The ultrasonic image detection module, wireless Wifi module, USB data exchange module, image display module, battery charge and discharge management module, Zigbee wireless module, and ultrasonic probe are respectively electrically connected to the FPGA image generation / control module.
[0028] As Figure 2 shown, the present utility model also provides a urine volume ultrasonic image detection device based on Zigbee self-organizing network technology, including a power adapter interface 1, a USB interface 2, a control main board 5, a battery 6, a keypad 7, and a probe 9. The control main board 5 includes the ultrasonic image detection module, the FPGA data image generation / control module, the Zigbee wireless module, the wireless Wifi module, the USB data exchange module, the image display module, and the battery charge and discharge management module of the above ultrasonic image detection module group. The power adapter interface 1 and the USB interface 2 are respectively electrically connected to the battery charge and discharge management module of the control main board 5. The battery charge and discharge management module is connected to the battery 6 through a battery connection cable 4 to realize charging the battery 6 by the power adapter interface 1 and the USB interface 2; at the same time, the power adapter interface 1 and the USB interface 2 can also directly supply power to the control main board 5. The USB interface 2 is electrically connected to the USB data exchange module. When an external USB flash drive is connected, it can realize data storage and access functions, and when connected to a PC through a data cable, it can realize data transfer functions. The image display module of the control main board 5 selects a display screen 3 in this embodiment for ultrasonic image display. The keypad 7 and the probe 9 are respectively electrically connected to the FPGA data image generation / control module of the control main board 5. The keypad 7 realizes operation functions such as turning on and off the device, starting and stopping the probe, charging indication, and power indication.
[0029] The power adapter interface 1 and USB interface 2 of the ultrasonic imaging detection device are installed at the upper end of the detection device housing 8, the display screen 3 is installed at the upper part of the housing 8, the keypad 7 is installed in the middle of the housing 8, the probe 9 is installed at the lower end of the housing 8, the control main board 5 and the battery 6 are installed inside the housing 8, and all components are connected to the housing 8 to form an integrated structure.
[0030] The ultrasonic imaging detection device in this embodiment further includes a mobile terminal image display module. The mobile terminal image display module is connected to the wireless Wifi module of the control main board 5 through a wifi signal to achieve data transmission.
[0031] The ultrasonic probe and the image display module of the urine volume ultrasonic imaging detection device based on Zigbee self-organizing network technology are of an integrated structure, reducing the connecting wires, improving the anti-interference performance of the device, reducing the size of the device, and facilitating carrying and transportation; at the same time, using a liquid crystal screen and a mobile terminal image display module to view images, improving the environmental adaptability of the device and enhancing the measurement accuracy; the USB data exchange module has a multiplexing function and can realize functions such as data storage, software upgrade, and device charging; when charging with an adapter, a large current is used for charging, and when charging with a USB interface, a small current is used for charging, and the adapter can be randomly selected, and the charging method is flexible; the Zigbee wireless module can be set with an independent address code, has an independent identity identifier, and can automatically form a network with nearby Zigbee acquisition modules with the same communication protocol for data transmission.
Claims
1. A urine volume ultrasonic imaging detection module based on Zigbee self-organizing network technology, characterized by: It includes ultrasonic image detection module, FPGA data image generation / control module, Zigbee wireless module, wireless Wifi module, USB data exchange module, image display module, and battery charge and discharge management module; The FPGA image generation / control module has an image processing function; the ultrasonic image detection module, wireless Wifi module, USB data exchange module, image display module, battery charge and discharge management module, and Zigbee wireless module are electrically connected to the FPGA image generation / control module respectively.
2. According to claim 1, a urine volume ultrasonic imaging detection module based on Zigbee ad hoc network technology is characterized by: The battery charge and discharge management module provides three power supply modes: power supply by power adapter, power supply by USB interface and power supply by battery.
3. The urine volume ultrasonic imaging detection module based on Zigbee ad hoc network technology according to claim 1, characterized in that: The USB data exchange module has a data transmission function.
4. The urine volume ultrasonic imaging detection module based on Zigbee ad hoc network technology according to claim 1, characterized in that: The Zigbee wireless module has an independent address code, an independent identity, and a function of transmitting data through the Zigbee communication protocol.
5. A urine volume ultrasonic imaging detection device based on Zigbee self-organizing network technology, characterized in that: It includes a power adapter interface (1), a USB interface (2), a control mainboard (5), a battery (6), a keypad (7), and a probe (9); The control mainboard (5) comprises an ultrasonic image detection module of the ultrasonic image detection module according to any one of claims 1 to 4, an FPGA data image generation / control module, a Zigbee wireless module, a wireless Wifi module, a USB data exchange module, an image display module, and a battery charge and discharge management module; The power adapter interface (1) and the USB interface (2) are respectively electrically connected to the battery charge and discharge management module, and the battery charge and discharge management module is connected to the battery (6); The keypad (7) and the probe (9) are electrically connected to the FPGA data image generation / control module respectively; The image display module and the probe (9) form an integrated structure.
6. The urine volume ultrasonic imaging detection device based on Zigbee ad hoc network technology according to claim 5 is characterized by: The power adapter interface (1) and the USB interface (2) are mounted on the upper end of the detection device housing (8), the image display module is mounted on the upper part of the housing (8), the keypad (7) is mounted on the middle part of the housing (8), the probe (9) is mounted on the lower end of the housing (8), the control mainboard (5) and the battery (6) are mounted inside the housing (8), and the power adapter interface (1), the USB interface (2), the control mainboard (5), the battery (6), the keypad (7), and the probe (9) are connected to the housing (8) to form an integrated structure.
7. The urine volume ultrasonic imaging detection device based on Zigbee ad hoc network technology according to claim 6 is characterized by: It also includes a mobile terminal image display module.