Outdoor dual-power-taking power supply and communication transmission device

By combining outdoor dual power sources and communication transmission devices, and using a combination of photovoltaic power generation and hand-cranked generators, the problem of communication interruption for outdoor signal receiving devices in the absence of power was solved, thus achieving reliable power supply and flexible signal reception.

CN223872078UActive Publication Date: 2026-02-03SIPING POWER SUPPLY COMPANY OF STATE GRID JILINSHENG ELECTRIC POWER SUPPLY
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Patent Information

Application Number
CN202520372113.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Priority Date
2024-12-31
Filing Date
2025-03-05
Publication Date
2026-02-03
Estimated Expiration
2035-03-05

AI Technical Summary

Technical Problem

Existing outdoor signal receiving devices cannot function without power, leading to communication interruptions.

Method used

An outdoor dual-power supply and communication transmission device was designed, comprising a photovoltaic panel, a hand-cranked generator, an inverter, a battery, and a controller. It provides two power generation methods: photovoltaic power generation and hand-cranked power generation. Combined with a control panel and a lifting pole mechanism, it ensures the reliability of power supply and the flexibility of signal reception.

Benefits of technology

The device is charged using photovoltaic panels when there is sufficient sunlight and a hand-cranked generator when there is insufficient sunlight or at night, ensuring the stability of the power supply. It also receives signals flexibly through a lifting pole mechanism to protect the device from external damage.

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Abstract

The utility model relates to an outdoor double-power-taking power supply and communication transmission device, which belongs to the technical field of communication devices and comprises a main body, a photovoltaic power generation panel, a control panel, a signal receiving mechanism, an inverter, a storage battery, a hand generator and a controller. According to the outdoor double-power-taking power supply and the communication transmission device, two power supply modes can be provided, the power supply guarantee is more reliable, photovoltaic power generation is adopted under the conditions of good weather and sufficient illumination, and a hand generator is adopted to charge a storage battery in bad weather and at night, so that the use of communication transmission equipment is guaranteed; by arranging the control panel, the electric quantity of the storage battery can be observed in real time, and by arranging the multiple sets of power sockets, when an operator needs an external power source, power can be supplied through the device; according to the invention, a mode of hiding the communication transmission device is adopted, the signal receiving contact extends out through the lifting rod to receive a signal, and when the device does not work, the signal receiving contact is retracted into the device to prevent external damage and play a role of a protection cover.
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Description

Technical Field

[0001] This utility model belongs to the field of communication device technology, and specifically relates to an outdoor dual-power supply and communication transmission device. Background Technology

[0002] In the event of sudden natural or man-made emergencies, including major holidays and important meetings when communication demands surge, a temporary, specialized communication mechanism is established to comprehensively utilize various communication resources to ensure the communication means and methods needed for rescue, emergency relief, and essential communications. Mobile emergency communication equipment is diverse, each with its specific application scenarios and advantages. These devices play a crucial role in responding to natural disasters, emergencies, and other emergencies, ensuring the smooth operation of communication networks and the timely transmission of information. Existing signal receiving devices lack a power source and require external power; however, in outdoor environments, the lack of power often renders these devices inoperable.

[0003] Therefore, there is an urgent need for a technology to solve the above problems. Utility Model Content

[0004] The technical problem to be solved by this utility model is to provide a device that addresses the problems existing in the background art.

[0005] An outdoor dual-power supply and communication transmission device, characterized in that it includes a main body, a photovoltaic power generation panel, a control panel, a signal receiving mechanism, an inverter, a storage battery, a hand-cranked generator, and a controller.

[0006] The main body is a box with a top cover, and a side cover is provided on the side of the main body. The main body contains a photovoltaic power generation panel, a signal receiving mechanism, an inverter, a storage battery, a hand-cranked generator and a controller.

[0007] The number of photovoltaic panels is two or more, one of which is installed on the inner wall of the top cover and is connected to the controller;

[0008] The outer wall of the main body is provided with a rotating rod socket for cooperating with a hand-cranked generator. The hand-cranked generator is equipped with a rotating rod, which is mounted on the outer wall of the main body by a rotating rod placement clamp.

[0009] A control panel is provided on the outer wall of the main body. The control panel is electrically connected to the signal receiving mechanism, inverter, battery and controller. The control panel is provided with a display, power socket and control buttons.

[0010] The signal receiving mechanism is connected to the inverter and the battery, and the battery is connected to the inverter, the hand-cranked generator and the controller.

[0011] The signal receiving mechanism is provided with a lifting rod mechanism, which is a multi-stage lifting rod. A receiving contact connecting rod is hinged to the lifting mechanism. The end of the receiving contact connecting rod is provided with a connecting rod head main contact, and the receiving contact connecting rod body is provided with an auxiliary contact.

[0012] The position of the lifting rod mechanism is coordinated with the position of the side cover, and the lifting rod mechanism extends out of the main body from the side cover when it is in the extended state.

[0013] The side cover is mounted on the main body via a hinge, and a connecting handle is provided on the side cover.

[0014] The control buttons include a signal receiving mechanism control button, a controller control button, and a lifting rod mechanism control button.

[0015] The outer wall of the main body is provided with hooks.

[0016] The lifting pole mechanism includes a vertical pole, a first lifting pole, a second lifting pole, and a third lifting pole. The third lifting pole, the second lifting pole, the first lifting pole, and the vertical pole are connected in sequence. The vertical pole is hinged to a receiving contact connecting rod via a movable pivot.

[0017] The power outlets on the control panel include: a 220V power outlet, a USB charging outlet, a Type-C charging outlet, and an I / O charging outlet.

[0018] The above design provides an outdoor dual-power supply and communication transmission device that offers two power supply methods, making power supply more reliable. In good weather with sufficient sunlight, photovoltaic power generation is used to charge the battery; in bad weather or at night, a hand-cranked generator is used to charge the battery, thus ensuring the operation of the communication transmission equipment. The invention features a control panel that allows real-time monitoring of the battery level to determine whether the power generation scheme needs to be activated. Multiple power outlets are provided to meet external power needs, allowing operators to connect to external power sources. The invention also incorporates a built-in communication transmission device. When needed, the device cover is opened, and a lifting rod extends the signal receiving contacts to receive signals. When not in use, the signal receiving contacts are retracted into the device, preventing external damage and acting as a protective cover. Attached Figure Description

[0019] The present invention will be further described below with reference to the accompanying drawings and specific embodiments:

[0020] Figure 1 This is a schematic diagram of the overall three-dimensional structure of the front of the present invention;

[0021] Figure 2This is a schematic diagram of the overall three-dimensional structure of the front cover of the present invention when opened;

[0022] Figure 3 This is a schematic diagram of the overall three-dimensional structure of the back of the present invention;

[0023] Figure 4 This is a top view of the internal cross-sectional structure of the present invention;

[0024] Figure 5 This is a schematic diagram of the signal receiving contact and lifting rod structure of the present invention;

[0025] In the diagram: 33-Main body, 1-Top cover, 2-Connecting handle, 3-Side cover, 4-Hinge, 5-Rotator placement clip, 6-Rotator insertion port, 7-Rotator, 8-Hook, 9-Photovoltaic power generation panel, 10-Display, 11-Control panel, 16-Receiver contact connecting rod, 17-Auxiliary contact, 18-Upright pole, 19-No. 1 lifting rod, 20-Connecting rod head main contact, 21-No. 2 lifting rod, 22-No. 3 lifting rod, 23-Signal receiving mechanism, 24-Inverter, 27-Battery, 30-Hand-cranked generator, 31-Controller, 32-Rotating shaft. Detailed Implementation

[0026] This application will be further described in conjunction with the accompanying drawings, wherein... Figure 4 Schematic diagram of the internal sectional structure of the main body 33 in its upright state:

[0027] An outdoor dual-power supply and communication transmission device, characterized in that it includes a main body 33, a photovoltaic power generation panel 9, a control panel 11, a signal receiving mechanism 23, an inverter 24, a storage battery 27, a hand-cranked generator 30, and a controller 31.

[0028] The main body 33 is a box with a top cover 1, and a side cover 3 is provided on the side of the main body 33. The main body 33 contains a photovoltaic power generation panel 9, a signal receiving mechanism 23, an inverter 24, a storage battery 27, a hand-cranked generator 30 and a controller 31.

[0029] The number of photovoltaic panels 9 is two or more, one of which is installed on the inner wall of the top cover 1 and is connected to the controller 31;

[0030] The outer wall of the main body 33 is provided with a rotating rod insertion port 6 that cooperates with the hand-cranked generator 30. The hand-cranked generator 30 is equipped with a rotating rod 7, which is mounted on the outer wall of the main body 33 by a rotating rod placement clip 5.

[0031] A control panel 11 is provided on the outer wall of the main body 33. The control panel 11 is electrically connected to the signal receiving mechanism 23, inverter 24, battery 27 and controller 31. The control panel 11 is provided with a display 10, a power socket and control buttons.

[0032] The signal receiving mechanism 23 is connected to the inverter 24 and the battery 27, and the battery 27 is connected to the inverter 24, the hand-cranked generator 30 and the controller 31.

[0033] The signal receiving mechanism 23 is provided with a lifting rod mechanism, which is a multi-stage lifting rod, and a receiving contact connecting rod 16 is hinged on the lifting mechanism. The receiving contact connecting rod 16 is provided with a connecting rod head main contact 20 at its end, and an auxiliary contact 17 is provided on the rod body of the receiving contact connecting rod 16.

[0034] The position of the lifting rod mechanism is matched with the position of the side cover 3. When the lifting rod mechanism is in the extended state, it extends out of the main body 33 from the side cover 3.

[0035] The side cover 3 is mounted on the main body 33 via a hinge 4, and the side cover 3 is provided with a connecting handle 2.

[0036] The control buttons include a signal receiving mechanism control button, a controller control button, and a lifting rod mechanism control button.

[0037] The outer wall of the main body 33 is provided with a hook 8.

[0038] The lifting rod mechanism includes a vertical rod 18, a first lifting rod 19, a second lifting rod 21, and a third lifting rod 22. The third lifting rod 22, the second lifting rod 21, the first lifting rod 19, and the vertical rod 18 are connected in sequence. The vertical rod 18 is hinged to a receiving contact connecting rod 16 via a movable pivot 32.

[0039] The power outlets on the control panel 11 include: a 220V power outlet, a USB charging outlet, a Type-C charging outlet, and an I / O charging outlet.

[0040] The battery 27 converts direct current into alternating current through the inverter 24;

[0041] The above technical solution includes two power generation methods: the first is photovoltaic power generation, and the second is power generation through a hand-cranked generator.

[0042] A further improvement of the technical solution of the present invention is that: the upper part of the main body 33 is connected to two photovoltaic power generation panels 9 to increase the power generation. One photovoltaic power generation panel 9 is fixedly connected to the main body 33, and the other photovoltaic power generation panel 9 is fixedly connected to the top cover 1 of the box 33. When the photovoltaic power generation panel 9 is not in use, the cover 1 can be closed to prevent damage to the photovoltaic power generation panel 9.

[0043] The main body 33 has two sets of hooks 8 fixed on both sides, which can be used to attach shoulder straps and carry the main body device for convenient travel.

[0044] A rotating rod placement clip 5 is fixedly provided on one side of the main body 33. When the rotating rod 7 is not in use, it can be placed in the rotating rod placement clip 5 to prevent it from being lost.

[0045] The main body 33 has a control panel 11 on one side. The control panel 11 has a display 10, which can monitor the power level of the battery 27 in real time. The control panel 11 has several power sockets to meet different power needs. The control panel 11 has two buttons. The upper button controls the start of the communication transmission device component, and the lower button controls the extension and retraction of the lifting rod mechanism.

[0046] The main body 33 contains a hand-cranked generator assembly 30, which provides power. When there is no obvious sunlight due to weather conditions or at night, the hand-cranked generator 30 can generate electricity to store power in the battery 27, and the battery 27 can supply power to the communication transmission device assembly to ensure power reliability.

[0047] The main body 33 contains a controller 31, which is a device that can automatically prevent the battery 27 from overcharging and over-discharging. Since the number of charge-discharge cycles and the depth of discharge of the battery 27 are important factors that determine the service life of the battery 27, the charge-discharge controller 31 that can control the overcharging or over-discharging of the battery 27 is an essential device.

[0048] The main body 33 contains an inverter 24, which is a device that converts direct current (DC) to alternating current (AC). Since solar cells (such as photovoltaic panels 9) and batteries 27 are DC power sources, the inverter 24 is essential when the load is an AC load, as it is necessary to convert DC power to AC power.

[0049] The main body 33 contains a communication transmission device assembly, which includes a signal receiving mechanism 23 and a lifting rod mechanism including a first lifting rod 19, a second lifting rod 21, a third lifting rod 22, and four sets of receiving contact connecting rods 16. The lifting rod mechanism can raise the four sets of receiving contact connecting rods 16 and extend them through the cover after the side cover 3 is opened to increase the signal receiving capability.

[0050] Based on the above embodiments, the working principle of the present invention is as follows:

[0051] Two power generation schemes can be used when using this invention. The first scheme: When the weather is good and there is sufficient sunlight, open the cover 1 to generate electricity through the photovoltaic panel 9. The photovoltaic panel 9 transmits electricity to the battery 27 via the controller 31. The controller 31 automatically prevents the battery 27 from overcharging and over-discharging. During the charging process, the battery 27 can be viewed through the power display 10 on the control panel 11. The second scheme: During the day but in bad weather with insufficient sunlight, or at night, insert the rotating rod 7 into the rotating rod socket 6. Rotating the rotating rod 7 generates electricity through the hand-cranked generator 30, which charges the battery 27 through the electrical connection part 29. After the battery 27 is charged, it can supply power to the outside through the power sockets 12 and 13 on the control panel 11. Press the start button 14 of the communication transmission device to start the signal receiving mechanism 23. Stand the main body 33 upright with the side cover 3 on top. Open the cover 3 through the handle 2. Press the lifting rod operation button 15 to raise the three sets of lifting rods and send the upright 18 out of the main body 33. By rotating the four sets of receiving contact connecting rods 16, it can be fully opened to receive external signals.

Claims

1. An outdoor dual-power supply and communication transmission device, characterized in that: It includes a main body (33), a photovoltaic power generation panel (9), a control panel (11), a signal receiving mechanism (23), an inverter (24), a storage battery (27), a hand-cranked generator (30), and a controller (31); The main body (33) is a box with a top cover (1), and a side cover (3) is provided on the side of the main body (33). The main body (33) contains a photovoltaic power generation panel (9), a signal receiving mechanism (23), an inverter (24), a storage battery (27), a hand-cranked generator (30), and a controller (31). The number of photovoltaic panels (9) is two or more, one of which is installed on the inner wall of the top cover (1) and is connected to the controller (31); The outer wall of the main body (33) is provided with a rotating rod socket (6) that cooperates with the hand-cranked generator (30). The hand-cranked generator (30) is provided with a rotating rod (7). The rotating rod (7) is set on the outer wall of the main body (33) through a rotating rod placement clip (5). The outer wall of the main body (33) is provided with a control panel (11), which is electrically connected to the signal receiving mechanism (23), inverter (24), battery (27) and controller (31). The control panel (11) is provided with a display (10), a power socket and control buttons. The signal receiving mechanism (23) is connected to the inverter (24) and the battery (27), and the battery (27) is connected to the inverter (24), the hand-cranked generator (30) and the controller (31); The signal receiving mechanism (23) is provided with a lifting rod mechanism, which is a multi-stage lifting rod, and a receiving contact connecting rod (16) is hinged on the lifting rod mechanism. The end of the receiving contact connecting rod (16) is provided with a connecting rod head main contact (20), and an auxiliary contact (17) is provided on the rod body of the receiving contact connecting rod (16). The position of the lifting rod mechanism is matched with the position of the side cover (3). When the lifting rod mechanism is in the extended state, it extends out of the main body (33) from the side cover (3).

2. The outdoor dual-power supply and communication transmission device according to claim 1, characterized in that: The side cover (3) is mounted on the main body (33) via a hinge (4), and the side cover (3) is provided with a connecting handle (2).

3. The outdoor dual-power supply and communication transmission device according to claim 1, characterized in that: The control buttons include a signal receiving mechanism control button, a controller control button, and a lifting rod mechanism control button.

4. The outdoor dual-power supply and communication transmission device according to claim 1, characterized in that: The outer wall of the main body (33) is provided with a hook (8).

5. The outdoor dual-power supply and communication transmission device according to claim 1, characterized in that: The lifting rod mechanism includes a vertical rod (18), a first lifting rod (19), a second lifting rod (21), and a third lifting rod (22). The third lifting rod (22), the second lifting rod (21), the first lifting rod (19), and the vertical rod (18) are connected in sequence. The vertical rod (18) is hinged to a receiving contact connecting rod (16) via a movable pivot (32).

6. The outdoor dual-power supply and communication transmission device according to claim 1, characterized in that: The power sockets on the control panel (11) include: a 220V power socket, a USB charging socket, a Type-C charging socket, and an I / O charging socket.