A remote ignition device for training
By connecting the remote control switch module with the heating wire, the automated control of the remote ignition device is realized, which solves the problems of low simulation training efficiency and poor flexibility caused by manually igniting smoke bombs, and improves the efficiency and flexibility of the exercise.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- 山川
- Filing Date
- 2025-08-29
- Publication Date
- 2026-07-21
AI Technical Summary
In emergency command drills, igniting smoke bombs requires manual operation, resulting in low simulation training effectiveness and poor flexibility.
Design a remote ignition device including a housing, a remote control switch module and a power supply. It is connected to a heating wire through a plug-in terminal and uses the remote control switch module to control the on and off of the heating wire, simplifying the operation to remote ignition.
It eliminates the need for on-site operation, reduces manpower requirements, improves the efficiency and flexibility of simulation training, and adapts to the needs of training venues of different sizes.
Smart Images

Figure CN224534303U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of training equipment technology, and in particular to a remote ignition device for training. Background Technology
[0002] Emergency command drills are used to simulate the actual situation of typical key locations where local accidents occur. The situation is displayed through corresponding display components to improve the coordination level and combat capability of emergency management teams. For example, in fire drills, smoke is released to display the accident point.
[0003] Currently, during drills, smoke is released by igniting colored smoke grenades. However, igniting smoke grenades requires manual operation and the cooperation of multiple people, which makes the simulation training inefficient and lacks flexibility. Utility Model Content
[0004] The purpose of this invention is to solve the above-mentioned problems by providing a remote ignition device for drills.
[0005] To achieve the above objectives, the technical solution of this utility model is: a remote ignition device for drills, comprising: The device includes a housing, a remote control switch module integrated within the housing, and a power supply. The housing is provided with plug-in terminals, each with two terminals. One terminal is connected to the remote control switch module, and the other terminal is connected to one electrode of the power supply. The other electrode of the power supply is connected to the remote control switch module. The two terminals of the plug-in terminals are used to connect to the two ends of the heating wire.
[0006] Furthermore, the housing is also provided with a charging port, which is connected to a power source, and a manual switch is provided between one electrode of the power source and the charging port.
[0007] Furthermore, an antenna is externally mounted on the housing, and the antenna is connected to the remote control switch module.
[0008] Furthermore, the charging port, antenna, and connector are all located on one side of the housing, while the manual switch is located on the side of the housing.
[0009] Furthermore, the plug-in terminal is connected to a first connecting wire harness, the other end of which is connected to at least one first branch wire harness, and the end of the first branch wire harness is provided with a second plug.
[0010] Furthermore, it also includes a second connecting wire, the second connecting wire harness including a third plug that mates with the second plug, and two second branch wires, the two second branch wires being used to connect to the two ends of the heating wire respectively.
[0011] Furthermore, the remote control switch module is model KGS-B01.
[0012] Furthermore, a partition plate is provided inside the housing, and the power supply and remote control module are located on both sides of the partition plate.
[0013] Compared with the prior art, the remote ignition device for training disclosed in this utility model has the following advantages: it realizes the basic function of remotely controlling the on and off of the heating wire. Compared with the method of manually igniting smoke bombs in the background technology, it does not require on-site operation by operators. Ignition can be achieved through remote control, which reduces the need for manpower, avoids the cumbersome cooperation of multiple people, and significantly improves the efficiency of simulation training and the flexibility of the exercise. Attached Figure Description
[0014] Figure 1 This is a schematic diagram of the overall structure of a remote ignition device for training purposes according to this utility model. Figure 1 .
[0015] Figure 2 This is a schematic diagram of the overall structure of a remote ignition device for training purposes according to this utility model. Figure 2 .
[0016] Figure 3 This is a schematic diagram of the structure of a remote ignition device for training and its output line according to this utility model.
[0017] Figure 4 This is a schematic diagram of the internal structure of a remote ignition device for training according to the present invention.
[0018] Figure 5 This is a schematic diagram of the structure of the first connecting line in a remote ignition device for training according to the present invention.
[0019] Figure 6 This is a schematic diagram of the structure of the second connecting line in a remote ignition device for training according to the present invention.
[0020] Figure 7 This is a schematic diagram of the module structure of a remote ignition device for training according to the present invention.
[0021] In the diagram: 1. Housing; 10. Bottom cover; 11. Divider plate; 2. Plug-in terminal; 3. Charging interface; 4. Antenna; 5. Manual switch; 6. First connecting harness; 61. First plug; 62. First branch harness; 63. Second plug; 64. Second connecting harness; 640. Second branch; 641. Third plug; 7. Power supply; 8. Remote control switch module. Detailed Implementation
[0022] The present invention will now be described in further detail with reference to the accompanying drawings. The drawings are simplified schematic diagrams, illustrating only the basic structure of the present invention, and therefore only show the components relevant to the present invention.
[0023] Please refer to Figures 1-7 As a specific implementation method, this utility model provides a remote ignition device for drills, which includes: The housing 1 includes a remote control switch module 8 and a power supply 7 integrated within the housing 1. The housing 1 is provided with a plug-in terminal 2, which includes two terminals. One terminal is connected to the remote control switch module 8, and the other terminal is connected to one electrode of the power supply 7. The other electrode of the power supply 7 is connected to the remote control switch module 8. The two terminals of the plug-in terminal 2 are used to connect to the two ends of the heating wire.
[0024] For details, please refer to Figure 1 - Figure 7 The housing 1 serves as the mounting base for the entire device and can be made of ABS plastic or engineering plastic, possessing certain structural strength and weather resistance to protect internal components from external environmental influences. The remote control switch module 8 and power supply 7 are integrated within the housing 1. The remote control switch module 8 receives external remote control signals and controls the circuit's on / off state. This remote control switch module 8 represents conventional technology in the field; it controls the circuit's on / off state by acquiring remote control signals, thereby controlling the circuit on / off state of the plug-in terminal 2. In this application, the remote control switch module 8 uses a commonly used switch module in the field, and its structure will not be described in detail here. Those skilled in the art should understand that during operation, the two ends of the heating wire are connected to the two electrodes of the plug-in terminal 2. When the remote control switch module 8 receives an ignition signal, it connects the power supply circuit to power the heating wire. The heating wire is placed inside the smoke bomb, heating and igniting the smoke bomb, thus achieving remote control. The power supply 7 provides electrical energy to the entire device and can be a lithium battery to ensure battery life. The plug-in terminal 2 on the housing 1 uses a standard component commonly used in the field. One of its two terminals is electrically connected to the remote control switch module 8, and the other terminal is electrically connected to one electrode of the power supply 7. The other electrode of the power supply 7 is directly electrically connected to the remote control switch module 8. Thus, when the two terminals of the plug-in terminal 2 are connected to the heating wire, a complete control loop is formed. This structure realizes the basic function of remotely controlling the on / off state of the heating wire. Compared with the manual ignition of smoke bombs in the prior art, no on-site operation is required. Ignition can be achieved solely through remote control, reducing manpower requirements, avoiding the cumbersome coordination of multiple people, and significantly improving the efficiency and flexibility of simulation training.
[0025] Furthermore, as a specific implementation, the housing 1 is also provided with a charging interface 3, which is connected to the power supply 7, and a manual switch 5 is provided between one electrode of the power supply 7 and the charging interface.
[0026] Specifically, the housing 1 is also equipped with a charging port 3, which adopts a universal USB interface, Type-C interface, or plug terminal 2, facilitating the charging of the power supply 7 inside the housing 1 by an external charging power supply 7. This solves the problem of the power supply 7 becoming unusable after its power is depleted, extending the continuous use time of the device. At the same time, a manual switch 5 is provided between one electrode of the power supply 7 and the charging port. This manual switch 5 is a rocker switch or push-button switch. When charging the power supply 7 is required, the manual switch 5 is closed to conduct the charging circuit; when not charging, the manual switch 5 is opened to prevent the power supply 7 from leaking current through the charging port and to avoid interference from the charging current to other components such as the remote control switch module 8, thereby improving the safety and stability of the device during charging.
[0027] Furthermore, as a specific implementation, an external antenna 4 is mounted on the housing 1, and the antenna 4 is connected to the remote control switch module 8. Specifically, the external antenna 4 is electrically connected to the remote control switch module 8. Compared with the internal antenna 4, the external antenna 4 can more effectively receive and transmit wireless signals, enhance the strength of the remote control signal, and extend the effective distance of remote control. This allows operators to control the ignition device from a greater distance, adapting to the needs of training grounds of different sizes and further improving the flexibility and convenience of training.
[0028] Furthermore, as a specific implementation method, refer to Figure 1 - Figure 3 The charging port 3, antenna 4, and connector 2 are all located on one side of the housing 1, while the manual switch 5 is located on the side of the housing 1. Specifically, the charging port 3, antenna 4, and connector 2 are all located on the same side of the housing 1, such as the front of the housing 1. This allows the operator to complete all operations on the same side when connecting external lines (such as charging cables or heating wires) and adjusting the antenna 4, without having to flip the housing 1 back and forth, thus simplifying the operation process. The manual switch 5 is located on the side of the housing 1, separate from the interfaces, which avoids accidental activation of the manual switch 5 when plugging or unplugging lines, ensuring operational accuracy. It also makes the surface layout of the housing 1 more rational and the structure more compact.
[0029] Furthermore, as a specific implementation method, refer to Figure 3 , Figure 5 - Figure 7The plug terminal 2 is plugged into and fitted with a first connecting wire harness 6. The other end of the first connecting wire harness 6 is connected to at least one first branch wire harness 62. The end of the first branch wire harness 62 is provided with a second plug 63.
[0030] Furthermore, it also includes a second connecting wire, the second connecting wire harness 64 including a third plug 641 that is plugged into and mates with the second plug 63 and two second branch wires 640, the two second branch wires 640 being used to connect to the two ends of the heating wire respectively.
[0031] Specifically, the plug-in terminal 2 is connected to a first connecting harness 6, which is a multi-core cable with a certain degree of flexibility and strength, facilitating deployment during drills. The other end of the first connecting harness 6 is connected to at least one first branch harness 62, for example, via a 1-to-2 or 1-to-3 splitter connector. Each first branch harness 62 has a second plug 63 at its end, which is a standardized plug. The first connecting harness 6 contains two wire cores, with a first plug 61 at one end. The first plug 61 can be plugged into the plug-in terminal 2, electrically connecting the two wire cores in the first connecting harness 6 to the two electrodes of the plug-in terminal. Each first branch harness 62 also contains two wire cores that correspond one-to-one with the two wire cores in the first connecting harness 6, facilitating connection between each first branch harness 62 and a heating wire, enabling the simultaneous ignition of multiple smoke bombs. This structure allows a single ignition device to connect to multiple heating wires simultaneously, simulating scenarios where multiple accident points occur concurrently. This enriches the exercise content, enhances its realism and complexity, and better trains the emergency management team's collaborative response capabilities. It should be noted that when connecting the heating wires, a wire clamp can be installed at the end of the second branch line 640 to facilitate the clamping and conduction of the heating wires.
[0032] Furthermore, the remote control switch module 8 is model KGS-B01. Specifically, the remote control switch module 8 uses a model KGS-B01 module, which is a mature wireless remote control switch module with fast response speed (typically less than 0.5 seconds), high receiving sensitivity, and low power consumption. It can stably receive remote control signals and quickly realize the on / off switching of the circuit, and can be remotely controlled via a remote controller. Selecting this model module can ensure the reliability of remote control, reduce signal delay or loss, ensure the timeliness and accuracy of ignition operation, and reduce the risk of exercise interruption due to equipment failure.
[0033] Furthermore, a partition plate 11 is provided inside the housing 1, with the power supply 7 and the remote control module located on both sides of the partition plate 11. Specifically, a bottom cover is detachably fitted to the bottom of the housing 1, and a partition plate 11 is provided inside. The partition plate 11 is made of insulating material, dividing the internal space of the housing 1 into two independent areas, with the power supply 7 and the remote control module respectively located on both sides of the partition plate 11. This structure can effectively reduce the impact of electromagnetic interference generated by the power supply 7 during operation on the remote control module, ensuring the stable operation of the remote control module; at the same time, the separate arrangement also facilitates the wiring and installation of each component. When it is necessary to repair or replace a component, it can be operated independently without disassembling other components, simplifying the maintenance process and extending the service life of the device.
[0034] Obviously, the above embodiments are merely illustrative examples for clear explanation and are not intended to limit the implementation. Those skilled in the art will recognize that other variations or modifications can be made based on the above description. It is neither necessary nor possible to exhaustively list all possible implementations here. However, obvious variations or modifications derived therefrom are still within the protection scope of this invention.
Claims
1. A remote ignition device for drills, characterized in that, include: The housing (1) includes a remote control switch module (8) and a power supply (7) integrated within the housing (1). The housing (1) is provided with a plug-in terminal (2). The plug-in terminal (2) includes two terminals, one of which is connected to the remote control switch module (8), and the other of which is connected to one electrode of the power supply (7). The other electrode of the power supply (7) is connected to the remote control switch module (8). The two terminals of the plug-in terminal (2) are used to connect to the two ends of the heating wire.
2. The remote ignition device for drills according to claim 1, characterized in that, The housing (1) is also provided with a charging interface (3), which is connected to the power supply (7), and a manual switch (5) is provided between one electrode of the power supply (7) and the charging interface.
3. The remote ignition device for drills according to claim 2, characterized in that, An antenna (4) is externally mounted on the housing (1), and the antenna (4) is connected to the remote control switch module (8).
4. The remote ignition device for drills according to claim 3, characterized in that, The charging port (3), antenna (4) and plug terminal (2) are all located on one side of the housing (1), and the manual switch (5) is located on the side of the housing (1).
5. A remote ignition device for drills according to claim 4, characterized in that, The plug terminal (2) is plugged into and fitted with a first connecting wire harness (6), and the other end of the first connecting wire harness (6) is connected to at least one first branch wire harness (62), and the end of the first branch wire harness (62) is provided with a second plug (63).
6. A remote ignition device for drills according to claim 5, characterized in that, It also includes a second connecting wire, the second connecting wire harness (64) including a third plug (641) that is plugged into the second plug (63), and two second branch wires (640) for connecting to the two ends of the heating wire respectively.
7. A remote ignition device for drills according to claim 1, characterized in that, The remote control switch module (8) is model KGS-B01.
8. A remote ignition device for drills according to claim 1, characterized in that, The housing (1) is provided with a partition plate (11), and the power supply (7) and remote control module are located on both sides of the partition plate (11).