Portable remote video consultation equipment suitable for emergency first aid

The portable remote video consultation equipment with integrated design and optimized layout solves the problems of large equipment size and poor environmental adaptability, achieves compact portability and stable operation, and is suitable for emergency first aid scenarios.

CN223390277UActive Publication Date: 2025-09-26南昌大学第一附属医院 +2
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Patent Information

Application Number
CN202422099452.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-28
Publication Date
2025-09-26
Estimated Expiration
2034-08-28

AI Technical Summary

Technical Problem

Existing remote consultation equipment occupies a large area, is not easy to move and carry, and has poor adaptability to different harsh environments, especially it cannot operate stably under low or high temperature conditions.

Method used

A portable remote video consultation device is designed. The central control computer, core data acquisition codec motherboard, audio and video acquisition module, audio amplifier board and power supply components are integrated into the box. The interfaces are concentrated on one side. It is equipped with a large-capacity battery and an external UPS power supply module. It adopts a multi-layer structure design and heat dissipation optimization, combined with a detachable heat dissipation reinforcement plate and insulation plate to adapt to different environments.

Benefits of technology

The device has a compact design, is easy to carry and connect, ensures stable operation in complex environments, provides long-term power support, and improves the adaptability and reliability of the device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of remote consultation equipment, and particularly discloses portable remote video consultation equipment suitable for emergency first aid, the portable remote video consultation equipment comprises a box body and a display, the display is pivotally connected to one side of the box body, and one side, facing the display, of the box body is provided with a man-machine interaction assembly; a central control computer and a core data acquisition coding and decoding mainboard in data connection with the central control computer are arranged in the box body, the central control computer is electrically connected with the man-machine interaction assembly, an audio and video acquisition module and an audio power amplifier board are further arranged in the box body, and meanwhile, the core data acquisition coding and decoding mainboard is in data connection with the audio and video acquisition module and the audio power amplifier board. In addition, the power supply assembly used for supplying power is further arranged in the box body, all the modules are integrated in the box body, the space layout is optimized, the more compact structure is achieved, and the equipment is more convenient to carry or transfer. The device has the advantages of being compact in structure, easy to carry and comprehensive in function.
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Description

Technical Field

[0001] The present application relates to the field of remote consultation equipment, and in particular to a portable remote video consultation equipment suitable for emergency first aid. Background Art

[0002] Telemedicine refers to the remote transmission and interaction of medical services through wireless communication technologies, the internet, and smart devices. As the first link in the pre-hospital emergency system, it monitors and obtains the patient's vital signs, such as electrocardiograms, ultrasound images, blood pressure, heart rate, and other data, in real time. It then transmits comprehensive medical data and images to the hospital's emergency center in real time and losslessly. Hospital experts and on-site emergency doctors can interact and collaborate closely in real time to provide remote diagnosis and emergency guidance based on the patient's condition, while also preparing for surgery. This seamless integration between pre-hospital and in-hospital services significantly shortens emergency response times, giving patients a greater chance of survival and enabling on-site emergency rescue and remote consultation and guidance.

[0003] In the related art, Chinese patent application number 202121590777.X proposes an integrated remote consultation device, including a main body, a sliding member, a blocking member, and a circuit board. The main body is provided with a sliding groove, a first receiving groove, a first avoidance groove, and a second receiving groove. The first receiving groove is connected to the first avoidance groove. The sliding member is provided with a sliding rod, a seat, and a shielding plate. The sliding rod is slidably connected to the main body and partially received in the sliding groove. The blocking member is fixedly connected to the main body and partially blocks the sliding rod. When the sliding member is pushed so that the seat is received in the first receiving groove, the shielding plate is received in the first avoidance groove and is flush with the main body. The circuit board is received in the second receiving groove and is electrically connected to the main body. This device can realize remote medical diagnosis, but the device occupies a large area, which is not conducive to mobility and carrying. In addition, the video consultation device used for first aid also needs to take into account the adaptability to different harsh environments, such as the low temperature conditions outdoors in the northern winter or the high temperature conditions outdoors in the summer. Utility Model Content

[0004] In order to improve the portability of remote consultation equipment, the present application provides a portable remote video consultation equipment suitable for emergency first aid, which has the advantages of compact structure, easy portability and comprehensive functions.

[0005] The present application provides a portable remote video consultation device suitable for emergency first aid, which adopts the following technical solutions:

[0006] A portable remote video consultation device suitable for emergency first aid comprises a housing, a display rotatably mounted on one side of the housing, a human-computer interaction component disposed on the housing, a central control computer and a core data acquisition and decoding motherboard connected thereto, the central control computer being electrically connected to the human-computer interaction component;

[0007] The box is also equipped with an audio and video acquisition module and an audio power amplifier board, and an audio interface, a video input interface and a video output interface are formed on the side wall of the box. The core data acquisition and coding main board is data-connected to the audio and video acquisition module for collecting multi-channel video data and performing real-time coding and decoding processing. The audio power amplifier board is used to output audio;

[0008] The box is also equipped with:

[0009] 5G / WIFI communication module for high-speed and efficient external data transmission;

[0010] The power supply assembly, including the battery assembly, forms a power interface on the side wall of the box to provide reliable energy support for mobile use of the equipment;

[0011] Among them, the central control computer is embedded in the box, and an assembly space is formed between the box and the central control computer. The core data acquisition codec mainboard, audio and video acquisition module, audio amplifier board and power supply component are all configured in the assembly space, and the audio interface, video input interface, video output interface and power supply interface are all configured on the back side of the box.

[0012] By adopting the above technical solution, by integrating the central control computer, core data acquisition codec motherboard, audio and video acquisition module, audio amplifier board and power supply components into the box, multiple functions can be realized by a single device, reducing the volume of conventional remote medical video consultation equipment, and the functions are comprehensive, which can meet the complex needs of first aid. At the same time, by concentrating the various interfaces on the same side of the box, the space layout is optimized, providing a more compact overall design, which is more adaptable to the complex environment of emergency first aid, and is also easier to connect various cables, thereby improving the assembly efficiency of the equipment.

[0013] Optionally, the video input interface and the video output interface are configured as HDMI interfaces, and there are at least three video input interfaces.

[0014] By adopting the above technical solution, multiple video sources can be connected at the same time, ensuring that medical personnel can monitor multiple video sources at the same time, collect, process and encode video signals from different sources, and provide more comprehensive information for medical consultation and monitoring.

[0015] Optionally, the power supply assembly further includes an external UPS power supply module, which is used to power the device in the event of a power supply interruption or battery depletion.

[0016] By adopting the above technical solution, the external UPS power supply module provides backup power support for the equipment, which can provide the equipment with an additional two hours of battery life, and can keep the equipment running even in the event of power outages or battery depletion; ensuring that the equipment can continue to operate during short power outages or battery charging, thereby ensuring the continued reliability and stability of medical equipment at critical moments.

[0017] Optionally, the side wall of the box body used to set the interface is set as a concave structure.

[0018] By adopting the above technical solution, the side wall is recessed into the box body, which can prevent the interface from protruding from the side wall and causing wear, effectively protect the interface, and increase the service life of the interface.

[0019] Optionally, a waterproof sealing plate is movably embedded in the concave structure of the box.

[0020] By adopting the above technical solution, when the equipment is idle or transferred, the waterproof sealing plate can protect the interface, avoid dust or liquid splashing, and further improve the service life of the interface.

[0021] Optionally, pads are provided at the four corners of the box away from the display and at the four corners of the display.

[0022] By adopting the above technical solution, the protective pads are installed at the corners, which can reduce the bumps suffered by the equipment during transportation, and at the same time have a shock-absorbing effect to protect the circuit modules in the box.

[0023] Optionally, the assembly space includes a mainboard assembly area, the mainboard assembly area is close to the side wall of the box for setting the interface, the core data acquisition codec mainboard is set in the mainboard assembly area, and the core data acquisition codec mainboard adopts a multi-layer structure design.

[0024] By adopting the above technical solution, by placing the core data acquisition codec motherboard close to the back panel of the box, it is easier to centrally configure various interfaces to the back panel; at the same time, the core data acquisition codec motherboard with a multi-layer structure design can effectively save occupied space, improve space utilization efficiency, and achieve a more compact structure.

[0025] Optionally, the battery assembly includes a power management module and a DC power supply unit, the DC power supply unit is embedded in the bottom of the box, a battery installation space is formed between the power management module and the box, the DC power supply unit is arranged in the battery installation space, and a gap is formed with the power management module; the side walls of the box on both sides facing the display are provided with a plurality of heat dissipation holes, the plurality of heat dissipation holes are evenly distributed on the side walls of the box, and the box is provided with a cooling fan at the heat dissipation holes.

[0026] By adopting the above technical solution, a gap is formed between the DC power supply unit and the power management module, which can optimize the heat dissipation of the battery and achieve more efficient heat dissipation; the cooling fan further improves the heat dissipation effect of the box, ensuring that the circuit components in the box can operate stably.

[0027] Optionally, both side walls of the box with heat dissipation holes are provided with dust covers, one end of the dust cover is fixed to the box, and the other end is slidably provided on the side wall of the box, and the movable ends of the two dust covers are connected to elastic connecting parts, and the end of the elastic connecting part away from the dust cover is slidably provided on the side wall of the display.

[0028] By adopting the above technical solution, the dust cover can prevent dust from entering the box when the equipment is idle or in transit, thereby protecting the circuit modules in the box.

[0029] Optionally, the side walls of the box located on both sides of the display are detachably installed with removable side panels, and the detachable side panels include a heat dissipation reinforcement plate and a thermal insulation plate. The heat dissipation reinforcement plate is integrally provided with a cooling module, and the cooling module is used to cool the box body. The thermal insulation plate is integrally provided with a heating module, and the heating module is used to keep the box body warm.

[0030] By adopting the above technical solution, the two heat dissipation reinforcement plates cooperate to form a circulating air duct inside and outside the box, thereby improving the heat dissipation effect of the box and the electronic components inside the box; when the video consultation equipment is in a low-temperature working condition, the electric heating wire generates heat after being energized to ensure the normal temperature inside the box, preventing the internal components from stopping working due to excessively low temperatures, meeting the use needs of low-temperature conditions, and further improving the adaptability of the video consultation equipment to harsh environments.

[0031] In summary, this application includes at least one of the following beneficial technical effects:

[0032] 1. By integrating the central control computer, core data acquisition codec motherboard, audio and video acquisition module, audio amplifier board, and power supply components into the box, a single device can realize multiple functions, reducing the size of conventional telemedicine video consultation equipment. While providing comprehensive functions, it can meet the complex needs of emergency response. At the same time, by centrally configuring various interfaces on the same side of the box, the space layout is optimized, providing a more compact overall design that is more adaptable to the complex environment of emergency response, and making it easier to connect various cables, thereby improving equipment assembly efficiency.

[0033] 2. The large-capacity battery pack and external UPS power supply module provide a long-lasting power supply guarantee for the equipment. Even in the event of power outage or battery depletion, the equipment can keep running, ensuring the continued reliability and stability of medical equipment at critical moments;

[0034] 3. By placing the core data acquisition and coding motherboard close to the back panel of the box, it is easier to centrally configure various interfaces on the back panel; at the same time, the core data acquisition and coding motherboard with a multi-layer structure design can effectively save space, improve space utilization efficiency, and achieve a more compact structure. BRIEF DESCRIPTION OF THE DRAWINGS

[0035] Figure 1 This is a schematic diagram of the overall structure of Example 1 of the present application;

[0036] Figure 2 This is a schematic diagram showing a human-computer interaction component according to Example 1 of the present application;

[0037] Figure 3 This is a schematic diagram showing the interior of a box in Example 1 of the present application;

[0038] Figure 4 This is a schematic diagram showing the core data acquisition and encoding and decoding motherboard of Example 1 of the present application;

[0039] Figure 5 This is a schematic diagram showing a waterproof sealing plate according to Example 1 of the present application;

[0040] Figure 6 is a side view of Example 2 of the present application;

[0041] Figure 7 This is a schematic diagram showing a heat dissipation reinforcement plate according to Example 3 of the present application;

[0042] Figure 8 This is a schematic diagram showing the insulation board in Example 3 of the present application.

[0043] Figure numerals: 1. Box; 2. Display; 3. Human-computer interaction component; 31. Keyboard; 32. Touchpad; 4. Central control computer; 5. Core data acquisition and encoding motherboard; 6. Audio amplifier board; 7. Battery assembly; 71. Power management module; 72. DC power supply unit; 8. Waterproof sealing plate; 9. Protective pad; 10. Motherboard assembly area; 11. Heat dissipation hole; 12. Dust cover; 13. Elastic connector; 14. Slide rail; 15. Slider; 16. Mounting column; 17. Battery installation space; 18. Removable side panel; 181. Heat dissipation reinforcement plate; 182. Insulation plate; 19. Electric heating wire. DETAILED DESCRIPTION

[0044] The following is combined with Figure 1-8 This application is described in further detail.

[0045] Example 1:

[0046] The present application discloses a portable remote video consultation device suitable for emergency first aid. Figure 1 and Figure 2The device comprises a housing 1 and a display 2. The display 2 is pivotally connected to one side of the housing 1. A human-computer interaction component 3 is provided on the side of the housing 1 facing the display 2. When in use, the display 2 is flipped open and the device can be operated through the human-computer interaction component 3. After use, the display 2 is flipped over and placed against the housing 1, and the display 2 can be stored, making it easier to move the device.

[0047] Specifically, refer to Figure 3 and Figure 4 The cabinet 1 is internally provided with a control computer and a core data acquisition and coding motherboard 5 connected to the control computer. The central control computer 4 is electrically connected to the human-machine interaction component 3, and the central control computer 4 can be controlled through the human-machine interaction component 3. The central control computer 4 is responsible for setting codec parameters and configuring device functions in the device. By setting codec parameters, it optimizes the data processing and transmission process, plays a core management and control role, and ensures the effective operation of device functions and the efficiency of data management. The core data acquisition and coding motherboard 5 is used to collect multi-channel video or multi-channel medical device data in emergency scenarios, and performs real-time codec processing, merges the multi-channel images, optimizes the transmission process, thereby saving communication traffic, helping to improve data transmission efficiency, reduce data volume, and ensure that the multi-channel images maintain high definition during transmission, so that remote medical consultations or video surveillance can obtain high-quality image information even under limited bandwidth conditions.

[0048] In this embodiment, the box body 1 is made of magnesium-aluminum alloy, which has the characteristics of light weight, high strength, corrosion resistance, excellent heat dissipation and easy processing, which improves the portability of the device and can ensure the stable operation of the device in harsh environments. The good heat dissipation performance also helps to maintain the stable working state of the device.

[0049] Reference Figure 2 The human-computer interaction component 3 includes a keyboard 31 and a touchpad 32, and the keyboard 31 and the touchpad 32 are designed as an integrated structure and are arranged on the side of the box 1 facing the display 2. The integrated structural design further reduces the occupied space and improves the compactness of the overall structure.

[0050] Further, refer to Figure 3 and Figure 4The enclosure 1 also houses an audio and video capture module and an audio amplifier board 6. Audio, video input, and video output interfaces are formed on the sidewalls of the enclosure 1. The core data acquisition and codec motherboard 5 is connected to the audio and video capture module and audio amplifier board 6. The audio capture module utilizes special noise suppression technology and features such as a directional microphone to reduce the impact of murmurs and noise generated in emergency situations on audio capture, improving voice clarity and intelligibility. The audio amplifier board 6 is responsible for outputting clear, high-quality audio, ensuring the accuracy and clarity of audio information transmission in noisy environments, thereby improving the communication efficiency and accuracy of information transmitted by medical equipment.

[0051] Furthermore, the box 1 is also equipped with a 5G / WIFI communication module, which is integrated inside the device. The 5G module is used for high-speed and high-efficiency external data transmission, supporting the rapid transmission of large-capacity data; the WiFi module provides hotspot services for internal devices, enabling mobile medical equipment to automatically connect when entering the emergency range; the dual-mode communication design enables the device to flexibly meet the needs of external communication and internal device connection, thereby improving the efficiency and convenience of data transmission.

[0052] Further, refer to Figure 3 and Figure 4 The housing 1 also houses a power supply assembly, including a battery pack 7, with a power port formed on the sidewall of the housing 1. The battery pack 7 provides reliable energy for mobile use, supporting up to eight hours of continuous use, enabling medical staff to perform long-term data collection, remote consultations, or other medical operations, meeting the daily needs of emergency medical environments.

[0053] Reference Figure 3 and Figure 4 The central control computer 4 is embedded in the cabinet 1, forming an assembly space between the central control computer 4 and the side wall of the cabinet 1. The core data acquisition and decoding motherboard 5, audio and video acquisition module, audio amplifier board 6, and power supply components are all arranged in the assembly space. At the same time, the audio interface, video input interface, video output interface, and power interface are all arranged on the back side of the cabinet 1. By concentrating these interfaces on the same side of the cabinet 1, the device can be more compact and more convenient to connect various cables.

[0054] Further, refer to Figure 3 and Figure 4The assembly space includes a motherboard assembly area 10, which is located near the side wall of the housing 1 for arranging interfaces. The core data acquisition and codec motherboard 5 is disposed within this area. The core data acquisition and codec motherboard 5 has a multi-layer structure, and in this embodiment, it has four layers. By placing the core data acquisition and codec motherboard 5 near the backplane of the housing 1, it is easier to centrally configure the various interfaces on the backplane. At the same time, the multi-layer design of the core data acquisition and codec motherboard 5 effectively saves space, improves space utilization efficiency, and achieves a more compact structure.

[0055] Further, refer to Figure 3 and Figure 4 The battery assembly 7 includes a power management module 71 and a DC power supply unit 72. The power management module 71 is provided with mounting posts 16 at each of its four corners. The other ends of the mounting posts 16 are fixed to the housing 1. A battery mounting space 17 is formed between the power management module 71 and the sidewall of the housing 1. The DC power supply unit 72 is disposed within the battery mounting space 17, with a gap formed between the DC power supply unit 72 and the power management module 71. The gap between the DC power supply unit 72 and the power management module 71 optimizes heat dissipation from the battery, achieving more efficient heat dissipation.

[0056] To further improve the heat dissipation effect of the equipment, refer to Figure 1 The side walls of the box 1 on both sides facing the display 2 are provided with multiple heat dissipation holes 11, and the multiple heat dissipation holes 11 are evenly distributed on the side walls of the box 1. The box 1 is also equipped with a cooling fan at each heat dissipation hole 11 to further improve the overall heat dissipation effect of the box 1 and meet the needs of long-term operation of the equipment.

[0057] Reference Figure 1 The side wall of the box body 1 used to set the interface is set as a concave structure, that is, the side wall is recessed into the box body 1 to avoid the interface protruding from the side wall and causing wear, which can effectively protect the interface and increase the service life of the interface.

[0058] Further, refer to Figure 5 The box body 1 is movably embedded with a waterproof sealing plate 8 in the concave structure, and the side of the waterproof sealing plate 8 away from the interface is flush with the outer side of the box body 1. When the device is idle or moved, the waterproof sealing plate 8 can protect the interface from dust or liquid splashing, further extending the service life of the interface.

[0059] In this embodiment, the video input and output interfaces are configured as HDMI interfaces, and at least three HDMI interfaces are configured as video input interfaces to accommodate the simultaneous connection of multiple video sources. This ensures that medical personnel can monitor multiple video sources simultaneously, collect, process, and encode video signals from different sources, and provide more comprehensive information for medical consultation and monitoring.

[0060] Furthermore, the power supply component also includes an external UPS power module. This provides backup power for the device, providing an additional two hours of battery life, allowing it to operate even in the event of a power outage or battery depletion. This ensures continued operation during brief power outages or battery charging periods, guaranteeing the continued reliability and stability of medical equipment during critical moments.

[0061] Reference Figure 1 , protective pads 9 are provided at the four corners of the box 1 away from the display 2 and the four corners of the display 2. The protective pads 9 are set at the corners, which can reduce the bumps suffered by the equipment during transportation, and at the same time have a shock-absorbing effect to protect the circuit module in the box 1.

[0062] The implementation principle of Example 1 of the present application is: by centrally configuring the interfaces and configuring the core data acquisition and coding mainboard 5 in layers, the spatial layout is optimized, a more compact overall design is provided, the device size is reduced, and the portability of the device is improved to adapt to the complex environment of emergency first aid; at the same time, the battery assembly 7 can meet the needs of long-term use in first aid scenarios, and is matched with an external UPS power supply module to ensure the continuous operation of the equipment in the event of a sudden power outage, providing reliable power guarantee for medical care; in addition, the rich interface configuration improves the compatibility of the equipment, making it easy to connect various audio and video acquisition equipment and medical equipment, etc.

[0063] Example 2:

[0064] The difference between this embodiment and embodiment 1 is that:

[0065] Reference Figure 6 Dust covers 12 are installed on both sides of the housing 1 where the heat dissipation holes 11 are formed. Two slide rails 14 are provided on each of the two side walls. One end of the dust cover 12 is fixed to the side wall, and the other end is fixed to two sliders 15. The two sliders 15 are respectively slidably arranged within the two slide rails 14. The sliders 15 slide within the slide rails 14 to drive the dust cover 12 to fold to expose the heat dissipation holes 11, or to unfold the dust cover 12 to cover the heat dissipation holes 11. The dust cover 12 can prevent dust from entering the housing 1 when the equipment is idle or in transit, thereby protecting the various circuit modules within the housing 1.

[0066] Furthermore, slide rails 14 are provided on both sides of the display 2 near the heat dissipation holes 11. Slide blocks 15 slide within these rails, with elastic connectors 13 attached to one end of each. The other end of these connectors is fixed to the movable end of the dust cover 12. When the display 2 is opened, as the sliders 15 slide within the rails 14, the dust cover 12 gradually folds, exposing the heat dissipation holes 11 and facilitating heat dissipation during operation. When the display 2 is closed, the sliders 15 are retracted to cover the heat dissipation holes 11. In this embodiment, the elastic connectors 13 are elastic cords.

[0067] The implementation principle of Example 2 of the present application is: when the display 2 is opened, the slider 15 can be pulled to slide in the slide rail 14 through the elastic connecting part 13, so that the dust cover 12 is folded and the heat dissipation hole 11 is exposed. After the display 2 is closed, the dust cover 12 is reset to prevent dust from entering the box 1 when the device is idle or in transit, thereby protecting the various circuit modules in the box 1.

[0068] Example 3:

[0069] The difference between this embodiment and embodiment 1 is that:

[0070] Reference Figure 7 The cabinet 1 has removable side panels 18 mounted on the side walls on either side of the display 2. These panels include heat dissipation reinforcement plates 181, integrally provided with a cooling module. The cooling module includes multiple cooling fans. In this embodiment, three are provided, evenly distributed on the heat dissipation reinforcement plates 181. Heat dissipation holes 11 are formed on the heat dissipation reinforcement plates 181, located at the locations of the cooling fans. The heat dissipation reinforcement plates 181 on either side of the cabinet 1 direct airflow out of the cabinet 1 and into the cabinet 1, respectively. The two heat dissipation reinforcement plates 181 cooperate to form a circulating air duct between the interior and exterior of the cabinet 1, improving the heat dissipation of the cabinet 1 and its electronic components, thereby enhancing the suitability of the video consultation equipment for high-temperature operating conditions.

[0071] In addition, refer to Figure 8 The removable side panel 18 also includes a heat-insulating plate 182, which is integrally mounted with a heating module comprising multiple electric heating wires 19. When the video conferencing device is operating at low temperatures, the electric heating wires 19 generate heat upon powering on, ensuring a normal temperature within the housing 1 and preventing internal components from malfunctioning due to excessively low temperatures. This meets the requirements for low-temperature operation and further enhances the device's adaptability to harsh environments.

[0072] Preferably, the detachable side panels 18 are embedded in the side walls of the box body 1 to improve the flatness of the outer side of the box body 1 .

[0073] In this embodiment, the removable side panels 18 are electrically connected to the battery assembly 7 within the housing 1. A power supply interface is formed on the removable side panels 18, and a corresponding interface is provided on the housing 1. Once the removable side panels 18 are mounted on the housing 1, the electrical connection is established. The battery assembly 7 provides power to the cooling module or heating module, eliminating the need for an external power supply structure and further enhancing the modularity of the overall device.

[0074] The implementation principle of Example 3 of this application is:

[0075] The cooling module dissipates heat from the enclosure 1, allowing it to maintain a suitable operating temperature in high-temperature environments. The heating module insulates the enclosure 1, allowing it to maintain a suitable operating temperature in low-temperature environments. The combination of these two significantly improves the video consultation equipment's adaptability to ambient temperatures, and the modular design facilitates installation and disassembly.

[0076] The above are all preferred embodiments of the present application, and are not intended to limit the scope of protection of the present application. Therefore, any equivalent changes made based on the structure, shape, and principle of the present application should be included in the scope of protection of the present application.

Claims

1. A portable remote video consultation device suitable for emergency first aid, comprising a box (1), a display (2) rotatably provided on one side of the box (1), and a human-computer interaction component (3) configured on the box (1), characterized in that: The box (1) is internally provided with a central control computer (4) and a core data acquisition and decoding mainboard (5) connected to the central control computer (4), and the central control computer (4) is electrically connected to the human-computer interaction component (3); The box (1) is further provided with an audio and video acquisition module and an audio power amplifier board (6), and an audio interface, a video input interface and a video output interface are formed on the side wall of the box (1). The core data acquisition and coding main board (5) is data-connected to the audio and video acquisition module for acquiring multi-channel video data and performing real-time coding and decoding processing. The audio power amplifier board (6) is used for outputting audio. The box (1) is also equipped with: 5G / WIFI communication module for high-speed and efficient external data transmission; A power supply assembly, including a battery assembly (7), and a power supply interface formed on the side wall of the box (1), for providing reliable energy support for mobile use of the device; The central control computer (4) is embedded in the box (1), and an assembly space is formed between the box (1) and the central control computer (4). The core data acquisition codec mainboard (5), the audio and video acquisition module, the audio power amplifier board (6) and the power supply component are all arranged in the assembly space, and the audio interface, the video input interface, the video output interface and the power supply interface are all arranged on the back side of the box (1); The side walls of the box (1) located on both sides of the display (2) are detachably mounted with detachable side panels (18), the detachable side panels (18) comprising a heat dissipation reinforcement plate (181) and a heat preservation plate (182), the heat dissipation reinforcement plate (181) being integrally provided with a cooling module, the cooling module being used to cool the inside of the box (1), the heat preservation plate (182) being integrally provided with a heating module, the heating module being used to keep the box (1) warm.

2. The portable remote video consultation device suitable for emergency first aid according to claim 1, characterized in that: The video input interface and the video output interface are configured as HDMI interfaces, and there are at least three video input interfaces.

3. The portable remote video consultation device suitable for emergency first aid according to claim 1, characterized in that: The power supply assembly also includes an external UPS power supply module, which is used to power the device in the event of power supply interruption or battery depletion.

4. The portable remote video consultation device suitable for emergency first aid according to claim 1, characterized in that: The side wall of the box (1) used for arranging the interface is arranged as a concave structure.

5. The portable remote video consultation device suitable for emergency first aid according to claim 4, characterized in that: A waterproof sealing plate (8) is movably embedded in the concave structure of the box body (1).

6. The portable remote video consultation device suitable for emergency first aid according to claim 1, characterized in that: The four corners of the box (1) away from the display (2) and the four corners of the display (2) are all provided with protective pads (9).

7. The portable remote video consultation device suitable for emergency first aid according to claim 1, characterized in that: The assembly space includes a mainboard assembly area (10), the mainboard assembly area (10) is close to the side wall of the box (1) for setting the interface, the core data acquisition codec mainboard (5) is set in the mainboard assembly area (10), and the core data acquisition codec mainboard (5) adopts a multi-layer structure design.

8. The portable remote video consultation device suitable for emergency first aid according to claim 1, characterized in that: The battery assembly (7) includes a power management module (71) and a DC power supply unit (72), wherein the DC power supply unit (72) is embedded in the bottom of the box (1), and a battery installation space (17) is formed between the power management module (71) and the box (1), and the DC power supply unit (72) is arranged in the battery installation space (17) and forms a gap with the power management module (71); the side walls of the box (1) on both sides facing the display (2) are provided with a plurality of heat dissipation holes (11), and the plurality of heat dissipation holes (11) are evenly distributed on the side walls of the box (1), and the box (1) is provided with a heat dissipation fan at the heat dissipation holes (11).

9. The portable remote video consultation device suitable for emergency first aid according to claim 8, characterized in that: Dust covers (12) are provided on both side walls of the box (1) where the heat dissipation holes (11) are provided. One end of the dust cover (12) is fixed to the box (1), and the other end is slidably provided on the side wall of the box (1). The movable ends of the two dust covers (12) are connected to elastic connectors (13). The end of the elastic connector (13) away from the dust cover (12) is slidably provided on the side wall of the display (2).

Citation Information

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