Luminous help-seeking bag

By integrating a solar-powered LED emitter and a BeiDou positioning module into the distress kit, the problem of existing distress devices being difficult to locate on water or at sea is solved, achieving a combination of efficient rescue and first aid functions and improving the practicality of the distress kit.

CN224131278UActive Publication Date: 2026-04-17ANRUN (ZHANGZHOU) INFORMATION TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ANRUN (ZHANGZHOU) INFORMATION TECHNOLOGY CO LTD
Filing Date
2025-02-20
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

Existing outdoor distress devices are difficult to locate in a timely manner and provide effective rescue when operating on water or at sea, and they lack rescue capabilities.

Method used

Design a light-emitting distress kit equipped with a solar panel, LED light source, battery, switch and Beidou positioning module. It is powered by solar charging, the LED light source illuminates to indicate the location, the Beidou positioning module transmits location information, and can be filled with gas to provide buoyancy and oxygen.

Benefits of technology

It improves the visibility and positioning accuracy of distress devices, providing convenience and safety for rescue operations, especially in environments without mobile phone signals, enabling timely determination of rescue locations and enhancing rescue efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a luminous help-seeking bag which comprises a base plate, a solar panel, a control panel, a storage battery, an LED luminous body and a switch are arranged on the base plate, the base plate is located in a bag body with at least one transparent face and is fixedly connected with the bag body, and the bag body is an insulating bag body, seals the base plate and components installed on the base plate. The LED luminous body and the solar panel correspond to the transparent surface of the bag body, the solar panel receives sunlight and charges the storage battery through the control panel, the storage battery supplies power to the LED luminous body or cuts off power from the LED luminous body through the switch and the control panel, so that the LED luminous body can emit light or does not emit light, and the bag body is provided with a gas nozzle capable of being filled with gas. Furthermore, a flexible cable and a Beidou positioning module are installed on the substrate, one part of the flexible cable penetrates out of the bag body and is located outside the bag body, one end of the flexible cable is provided with a charging and discharging interface, and a communication antenna of the Beidou positioning module is arranged on the flexible cable. The rescue device not only facilitates rescue of external force, but also has a rescue function.
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Description

Technical Field

[0001] This utility model relates to the field of distress device manufacturing technology, and in particular to a light-emitting distress bag. Background Technology

[0002] When people encounter danger while on water, especially at sea or in the wild, and require external assistance, the vastness of the sea or wilderness, coupled with the lack of cell phone signals, makes it difficult for rescuers to locate those in danger in a timely manner, thus increasing the difficulty of the rescue. Having effective distress equipment is crucial in such situations.

[0003] A Chinese utility model patent, patent number ZL201921770380.1, entitled "An Outdoor Backpack Rescue Device," was published on June 26, 2020. The device includes a backpack body, a solar charging mechanism, and a signal amplification mechanism. The signal amplification mechanism comprises an arc-shaped backpack cap, a support frame, and a portable signal amplifier. The support frame consists of a lower cap support frame and an upper amplifier support frame. The lower cap support frame is tightly attached to the arc-shaped backpack cap, while the upper amplifier support frame is fixed in the opposite direction above the lower cap support frame, and also holds the portable signal amplifier, forming a signal dish. Several photovoltaic modules of the solar charging mechanism are foldable and connected together. The photovoltaic modules, control circuit board, and energy storage device are connected sequentially, with a USB port located on the energy storage device. This utility model integrates the backpack body, solar charging mechanism, and signal amplification mechanism, saving backpack space, providing power transmission, improving the signal dish, and resulting in a stronger signal. However, this outdoor backpack rescue device does not emit light and lacks rescue functionality. Utility Model Content

[0004] The technical problem to be solved by this utility model is to provide a light-emitting distress bag, which not only facilitates rescue by external forces, but also has a rescue function.

[0005] To achieve the above objectives, the technical solution of this utility model is as follows: a light-emitting distress kit, comprising a substrate, on which a solar panel, a control board, a storage battery, an LED light emitter, and a switch are mounted. The substrate is located within a kit with at least one transparent side and is fixedly connected to the kit. The kit is an insulating kit that seals the substrate and the components mounted on the substrate. The LED light emitter and the solar panel correspond to the transparent side of the kit. The solar panel receives sunlight and then charges the storage battery through the control board. The storage battery supplies power to or de-supplys the LED light emitter through the switch and the control board, so that the LED light emitter can emit light or not emit light. The kit is provided with a gas inlet for filling with gas.

[0006] Preferably, the substrate is a PCB circuit board, which facilitates manufacturing.

[0007] Preferably, the package is made of elastic, transparent plastic. This allows for easier inflation of more gas, which is beneficial for rescue efforts.

[0008] Further improvements include a rectangular substrate with the solar panel, control board, battery, and LED emitters on one side and the switch on the other side. The solar panel is mounted in the center of one side of the substrate, and multiple LED emitters are positioned on both sides of the long side. Two batteries are located on either side of the short side of the substrate, and the control board is positioned on one side of the short side. This design makes the structure more rational.

[0009] As a further improvement, the package body is provided with a connecting through hole.

[0010] Furthermore, multiple distress packets are connected together using connecting holes and connectors. This increases the luminous area and, when used on water, also increases buoyancy, making rescue operations more effective.

[0011] A further improvement involves mounting a flexible cable on the substrate, with a portion of the cable extending beyond the casing and forming a sealed connection with the casing. The end of the cable outside the casing has a charging / discharging interface, allowing for charging of the battery or external devices. This enables charging of the battery via an external power source and also allows charging of external devices such as mobile phones when used outdoors.

[0012] Furthermore, the substrate is also equipped with a BeiDou positioning module, which is powered by a battery. The communication antenna of the BeiDou positioning module is mounted on the flexible cable. Signals sent via a switch and control board trigger the BeiDou positioning module to transmit its location information to external rescue personnel via a direct satellite connection. This ensures that external rescue personnel can promptly determine the location requiring rescue and arrive at the scene in a timely manner.

[0013] Furthermore, the BeiDou positioning module is mounted on the control board to make the structure more compact.

[0014] Preferably, the charging / discharging interface is a Type-C charging / discharging interface to improve versatility.

[0015] This invention features an LED emitter and a solar panel that correspond to the transparent side of the casing. A battery supplies or disconnects power to the LED emitter via a switch and control board, allowing it to emit light or not. The casing is equipped with a gas inlet. This design allows for several advantages: First, while awaiting rescue, the LED emitter helps rescuers pinpoint the location of the person being rescued, facilitating rescue efforts. Second, the gas inlet allows for the filling of the casing with oxygen, which is beneficial for people experiencing altitude sickness in high-altitude areas. Third, it provides buoyancy during water activities, enabling it to function as a lifebuoy and providing rescue capabilities.

[0016] Furthermore, by setting up a BeiDou positioning module, signals are sent through the switch and control board to trigger the BeiDou positioning module to send location information to external rescue personnel via direct satellite connection. In special environments where there is no mobile phone signal, such as remote mountainous areas, oceans, and deserts, this ensures that rescue personnel can promptly determine the location requiring rescue and organize forces to arrive at the rescue site in a timely manner, providing reliable protection for users in extreme environments. Attached Figure Description

[0017] Figure 1 This is a perspective view of the utility model;

[0018] Figure 2 This is a three-dimensional schematic diagram of the present invention assuming the package is in a non-transparent state;

[0019] Figure 3 This is a perspective view of the hidden package body of this utility model from one angle;

[0020] Figure 4 This is another perspective view of the hidden package body of this utility model;

[0021] Figure 5 This is a three-dimensional schematic diagram of multiple of these utility models connected in a row;

[0022] Figure 6 This is a three-dimensional schematic diagram of multiple of the present inventions connected to form a ring shape. Detailed Implementation

[0023] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.

[0024] Figures 1 to 4 As shown, a light-emitting distress kit includes a substrate 1, on which a solar panel 2, a control board 3, a battery 4, an LED emitter 5, and a switch 6 are mounted. The substrate 1 is located inside and fixedly connected to a package 10. The package 10 is a fully transparent and insulated package, sealing the substrate 1 and all components mounted on it. The LED emitter 5 and the solar panel 2 correspond to the transparent side of the package 10. The solar panel 2 receives sunlight and then charges the battery 4 through the control board 3. The battery 4 supplies power to or de-supplys the LED emitter 5 through the switch 6 and the control board 3, so that the LED emitter 5 can emit light or not. The package 10 is provided with a gas nozzle 101 for filling with gas.

[0025] Preferably, the substrate 1 is a PCB circuit board; the package 10 is made of elastic transparent plastic.

[0026] The substrate 1 is rectangular. A solar panel 2, a control board 3, a battery 4, and LED emitters 5 are located on one side of the substrate 1, while a switch 6 is located on the other side. The solar panel 2 is installed in the middle of one side of the substrate 1, and multiple LED emitters 5 are respectively arranged on both sides of the long side of the substrate 1. There are two batteries 4, respectively located on both sides of the short side of the substrate 1. The control board 3 is located on one side of the short side of the substrate 1. The other side of the substrate 1 is fixedly connected to one side of the inner wall of the enclosure 10.

[0027] A flexible cable 7 is mounted on the substrate 1. A portion of the flexible cable 7 extends out of the housing 10 and is located outside the housing 10. The contact portion of the flexible cable 7 with the housing 10 forms a sealed connection. The end of the flexible cable 7 outside the housing 10 is provided with a charging / discharging interface 71, through which the battery 4 can be charged or an external device can be charged. This facilitates charging during normal use, ensuring that the battery 4 has sufficient power when needed; secondly, it can also charge external devices such as mobile phones when necessary.

[0028] The charging / discharging interface 71 is a Type-C charging / discharging interface 71 to improve versatility.

[0029] The base plate 1 is also equipped with a Beidou positioning module 8, which is powered by a battery 4. The communication antenna of the Beidou positioning module 8 is mounted on the flexible cable 7. Signals are sent via a switch 6 and a control board 3 to trigger the Beidou positioning module 8 to transmit its location information to external rescue personnel via a direct satellite connection. The Beidou positioning module 8 is mounted on the control board 3 to make the structure more compact.

[0030] In special environments where mobile phone signals are unavailable, such as remote mountainous areas, oceans, and deserts, conventional communication and positioning methods often fail. The BeiDou Positioning Module 8 achieves precise positioning through direct satellite connection and sends the location information to rescue personnel, ensuring that rescuers can promptly determine the location requiring assistance and organize resources to reach the rescue site in a timely manner, providing reliable protection for users in extreme environments.

[0031] The package body 10 is provided with a connecting through hole 102 to facilitate carrying, connecting, or transporting.

[0032] Figure 5 As shown, multiple distress packets are connected in a row using connecting through holes 102 and connectors 9; Figure 6 As shown, multiple distress packets are connected in a ring shape using connecting through holes 102 and connectors 9. This results in a larger luminous area during outdoor activities; when used on water, not only is the luminous area larger, but the buoyancy generated is also greater, making rescue more convenient.

[0033] Although the present invention has been specifically shown and described in conjunction with preferred embodiments, those skilled in the art should understand that various changes in form and detail may be made to the present invention without departing from the spirit and scope of the present invention as defined in the appended claims, and all such changes shall be within the scope of protection of the present invention.

Claims

1. An illuminable distress kit comprising a substrate, characterized by: The substrate is equipped with a solar panel, a control board, a storage battery, an LED light emitter, and a switch. The substrate is located in a housing with at least one transparent side and is fixedly connected to the housing. The housing is an insulating housing that seals the substrate and the components mounted on the substrate. The LED light emitter and the solar panel correspond to the transparent side of the housing. The solar panel receives sunlight and then charges the storage battery through the control board. The storage battery supplies power to or disconnects power to the LED light emitter through the switch and the control board, so that the LED light emitter can emit light or not emit light. The housing is equipped with a gas nozzle for filling with gas.

2. The lighted distress kit of claim 1, wherein: The substrate is a PCB circuit board.

3. The luminous distress kit of claim 1, wherein: The package is made of elastic, transparent plastic.

4. The luminous distress kit of claim 1, wherein: The substrate is rectangular, with the solar panel, control board, battery, and LED emitters on one side of the substrate and the switch on the other side. The solar panel is installed in the middle of one side of the substrate, and multiple LED emitters are respectively arranged on both sides of the long side of the substrate. There are two batteries, respectively arranged on both sides of the short side of the substrate. The control board is arranged on one side of the short side of the substrate.

5. The luminous distress kit of claim 1, wherein: The package body is provided with a connecting through hole.

6. The luminous distress kit of claim 5, wherein: Multiple distress packets are connected together using the connecting through-holes and connectors.

7. A luminous distress kit according to any one of claims 1 to 6, characterized in that: A flexible cable is mounted on the substrate. A portion of the flexible cable extends out of the casing and is outside the casing. The flexible cable and the casing are in contact and sealed together. The end of the flexible cable outside the casing is provided with a charging and discharging interface, through which the battery or external device is charged.

8. The luminous distress kit of claim 7, wherein: The base plate is also equipped with a Beidou positioning module, which is powered by a battery. The communication antenna of the Beidou positioning module is set on the flexible cable. The Beidou positioning module is triggered by a switch and control board to send location information to external rescue personnel through direct satellite connection.

9. The luminous distress kit of claim 8, wherein: The BeiDou positioning module is mounted on the control board.

10. The luminous distress kit of claim 7, wherein: The charging and discharging interface is a Type-C charging and discharging interface.

Citation Information

Patent Citations

  • Outdoor backpack help-seeking device

    CN210841947U