An intelligent individual soldier helmet system
Patent Information
- Application Number
- CN202611108143.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2026-07-24
- Publication Date
- 2026-09-18
AI Technical Summary
[0003]现有技术中单兵头盔系统,将显示屏通过卡扣扣紧在头盔主体上,在需要拆卸时,需要双手解除卡扣,才可拆卸,操作较为麻烦,还易贻误战机,并且头盔内部布线杂乱,增加了检修难度,因此,存在有可改进之处
[0040] 1. This invention sets up a protective structure, a plug-in structure, and a press-to-unlock structure to house components such as the display screen within the protective structure, thus providing protection. During installation, the protective structure and display screen can be inserted into the mounting base using the plug-in structure, allowing for installation on the helmet body. During disassembly, the press-to-unlock structure allows for easy disassembly with just one hand. This makes installation and disassembly easier and more convenient.
Smart Images

Figure CN122767643A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the technical field of intelligent individual helmets, and in particular to an intelligent individual helmet system. Background Technology
[0002] It is a wearable individual soldier information hub that integrates ballistic protection, photoelectric sensing, AR information display, squad communication, and edge computing, and is a core terminal of the future soldier combat system;
[0003] In existing individual soldier helmet systems, the display screen is fastened to the helmet body with clips. When it needs to be removed, both hands are required to release the clips, which is cumbersome and can easily lead to missed opportunities. In addition, the internal wiring of the helmet is messy, which increases the difficulty of maintenance. Therefore, there are areas for improvement. Summary of the Invention
[0004] To address the problems mentioned in the background section, the present invention provides an intelligent individual soldier helmet system.
[0005] The intelligent individual soldier helmet system provided by this invention adopts the following technical solution:
[0006] A smart individual soldier helmet system, comprising:
[0007] Helmet body;
[0008] A wiring structure is located in the middle of the outer side of the helmet body for wiring;
[0009] Mounting bracket, installed on the front side of the helmet body;
[0010] The protective structure is mounted on the mounting base and includes an infrared camera, a buzzer, a main controller (EC600U_CNLB_EXTFS8M), a LORA self-organizing network module, a GNSS positioning module, a triaxial sensor, a 3D magnetic sensor, a temperature and humidity sensor, a barometric pressure sensor, an OLED display, a power amplifier, an electrostatic detection chip, an alarm light, and a charging indicator light.
[0011] A cleaning structure, installed on the protective structure, is used to clean the protective structure and ensure camera clarity;
[0012] A plug-in structure is provided between the protective structure and the mounting base, allowing for direct plug-in installation on the mounting base;
[0013] The first press-to-unlock mechanism is provided on the plug-in structure, and the plug-in can be released by pressing with one hand.
[0014] A snap-fit structure is provided on the cleaning structure to snap-fit and position the cleaning structure on the protective structure;
[0015] The second press-to-unlock mechanism is located on the cleaning structure; pressing releases the latch.
[0016] As one embodiment, the protective structure includes:
[0017] A protective box is provided on the front side of the mounting base, and the front of the protective box is provided with transparent protective glass.
[0018] As one embodiment, the plug-in structure includes:
[0019] The slot is located in the middle of the mounting base, and the top of the slot walls on both sides of the slot are provided with inclined guide grooves.
[0020] The protective box is installed on the upper rear side of the box. An inner groove is opened in the inner groove. A locking block is movably protruding from the bottom of the groove walls on both sides of the inner groove. The end of the locking block protruding from the inner groove is inclined.
[0021] A fixing block is provided on both sides of the inner groove wall, and a spring is connected between the locking block and the fixing block.
[0022] As one embodiment, the press-to-unlock structure includes:
[0023] A button block 1 is movably inserted into the top of the inner groove 1. A rod is connected to the middle of the bottom of the button block 1. The bottom end of the rod is movably inserted into the fixed cylinder. The bottom end of the fixed cylinder is fixedly connected to the lower wall of the inner groove 1. A spring 2 is sleeved on the rod. The two ends of the spring 2 are respectively connected to the top of the fixed cylinder and the button block 1.
[0024] Both sides of the bottom of the block are connected to through strips, which move through the inner wall of the inner groove. A pressing wheel is rotatably installed at the bottom end of the through strip.
[0025] Both of the two card blocks are close to each other and have a pressure strip connected to their top side. The end face of the pressure strip is beveled.
[0026] As one implementation, the cleanup structure includes:
[0027] A horizontal groove is formed on the protective box, and a cleaning strip is slidably disposed in the horizontal groove. A wiping strip is disposed on the inner side of the cleaning strip and is in close contact with the transparent protective glass.
[0028] As one embodiment, the snap-fit structure includes:
[0029] The cleaning strip has two inner grooves at both ends, and the cleaning strip has a third inner groove in the middle.
[0030] The second inner groove moves through the second locking block on the groove wall. One end of the second locking block protrudes from the second inner groove. The other end of the second locking block is provided with an end block. A fourth spring connects the end block and one end of the groove wall of the third inner groove.
[0031] The two ends of the upper and lower sides of the groove wall are provided with slot 2.
[0032] As one embodiment, the second press-to-unlock structure includes:
[0033] The second button is inserted into the inner groove three. A telescopic rod is connected between the second button and one side wall of the inner groove three. A spring three is sleeved on the telescopic rod. The two ends of the spring three are respectively connected to the second button and one side wall of the inner groove three.
[0034] Both end blocks are connected to a pressure strip on one side of each other, and the bottom end face of the pressure strip is inclined.
[0035] Both ends of one side of the second pressing block are provided with protrusions, and the second pressing wheel is installed on the protrusions.
[0036] As one embodiment, the wiring structure includes:
[0037] A wiring box is fixedly embedded in the helmet body, and multiple wiring slots are provided on the inner wall of the wiring box;
[0038] The wiring box is secured with a sealing cover by screws, and a pressure strip is provided on the inner wall of the sealing cover.
[0039] In summary, the present invention has the following beneficial technical effects:
[0040] 1. This invention sets up a protective structure, a plug-in structure, and a press-to-unlock structure to house components such as the display screen within the protective structure, thus providing protection. During installation, the protective structure and display screen can be inserted into the mounting base using the plug-in structure, allowing for installation on the helmet body. During disassembly, the press-to-unlock structure allows for easy disassembly with just one hand. This makes installation and disassembly easier and more convenient.
[0041] 2. This invention features a cleaning structure, a snap-fit structure, and a second press-to-unlock structure. The cleaning structure is used to clean the protective structure, ensuring image clarity. The snap-fit structure allows the cleaning structure to be snapped into place when it is moved to the protective structure near both ends, preventing it from interfering with normal camera operation. During cleaning, the second press-to-unlock structure allows the snap-fit to be released simply by pressing, enabling the cleaning structure to be moved for cleaning.
[0042] 3. By setting up a wiring structure on the helmet body, the wiring becomes more organized, reducing the difficulty of maintenance work. Attached Figure Description
[0043] Figure 1This is a schematic diagram of the structure of an intelligent individual soldier helmet system according to an embodiment of the present invention;
[0044] Figure 2 This is a schematic diagram of the internal structure of the wiring box in an embodiment of the present invention;
[0045] Figure 3 This is an embodiment of the present invention. Figure 2 Enlarged view of the structure at point A;
[0046] Figure 4 This is a schematic diagram of the structure of the mounting base in an embodiment of the present invention;
[0047] Figure 5 This is a schematic diagram of the structure after the insert block on the mounting base is pulled out in an embodiment of the present invention;
[0048] Figure 6 This is a schematic diagram of the structure of the protective box in an embodiment of the present invention;
[0049] Figure 7 This is an embodiment of the present invention. Figure 6 Enlarged view of the structure at point B;
[0050] Figure 8 This is a schematic diagram of the internal structure of the insert block in an embodiment of the present invention;
[0051] Figure 9 This is an embodiment of the present invention. Figure 8 Enlarged view of the structure at point C;
[0052] Figure 10 This is a schematic diagram of the structure of the cleaning strip in an embodiment of the present invention;
[0053] Figure 11 This is a schematic diagram of the internal structure of the cleaning strip in an embodiment of the present invention;
[0054] Figure 12 This is an embodiment of the present invention. Figure 11 Enlarged view of the structure at point D.
[0055] Explanation of reference numerals in the attached diagram: 1. Helmet body; 2. Mounting base; 3. Protective box; 4. Transparent protective glass; 5. Insert block; 6. Inner groove one; 7. Locking block one; 8. Fixing block; 9. Spring one; 10. Slot; 11. Guide groove; 12. Locking groove one; 13. Fixing cylinder; 14. Insert rod; 15. Spring two; 16. Through strip; 17. Compression wheel one; 18. Press block one; 19. Pressure strip one; 20. Pressing strip; 21. Cleaning strip; 22. Guide groove; 23. Press block two; 24. Wiring groove; 25. Locking block two; 26. Inner groove two; 27. End block; 28. Pressure strip two; 29. Sealing cover; 30. Inner groove three; 31. Spring three; 32. Telescopic rod; 33. Protrusion; 34. Compression wheel two; 35. Wiping strip; 36. Wiring box. Detailed Implementation
[0056] The following is in conjunction with the appendix Figures 1-12 The present invention will be described in further detail below.
[0057] This invention discloses an intelligent individual soldier helmet system. (Refer to...) Figures 1-12 A smart individual soldier helmet system, comprising:
[0058] Helmet body 1;
[0059] The wiring structure is located in the middle of the outside of the helmet body 1 and is used for wiring;
[0060] Mounting base 2 is installed on the front side of helmet body 1;
[0061] The protective structure is mounted on the mounting base 2. The structure includes an infrared camera, a buzzer, a main controller (EC600U_CNLB_EXTFS8M), a LORA self-organizing network module, a GNSS positioning module, a triaxial sensor, a 3D magnetic sensor, a temperature and humidity sensor, a barometric pressure sensor, an OLED display, a power amplifier, an electrostatic detection chip, an alarm light, and a charging indicator light.
[0062] The cleaning structure, installed on the protective structure, is used to clean the protective structure and ensure camera clarity;
[0063] The plug-in structure is set between the protective structure and the mounting base 2, and is directly plugged into the mounting base 2 for installation;
[0064] The first press-to-unlock mechanism is located on the plug-in structure, and the plug-in can be released by pressing with one hand.
[0065] A snap-fit structure is installed on the cleaning structure to snap and position the cleaning structure on the protective structure;
[0066] Press-to-unlock mechanism two is located on the cleaning mechanism; press to release the latch.
[0067] The helmet-mounted system enables communication between terminal nodes and the gateway via a LoRa self-organizing network module; it can issue commands such as entry, retreat, and patrol, with terminals confirming and responding via buttons; it achieves BeiDou or GPS positioning via a GNSS module; it uses the WIFI and IBS positioning functions of the 4G module and calls the Gaode interface to achieve indoor positioning; it triggers an alarm 3 seconds after the wearer falls into one meter of water, and sends data to the gateway when the wireless signal is sufficient, and displays the collected information on the screen, including temperature and humidity, altitude, electronic compass orientation, posture display, and peripheral device status display; it acquires peripheral device information via Bluetooth, including a vital signs detection wristband, a gas detector ignition alarm, an SCBA pressure gauge, and shoulder lights, and displays all peripheral device information in real time on the display screen.
[0068] See Figures 4-9 The protective structure includes:
[0069] A protective box 3 is set on the front side of the mounting base 2. A transparent protective glass 4 is set on the front of the protective box 3. The protective box 3 and the transparent protective glass 4 serve a protective function.
[0070] The plug-in structure includes:
[0071] The slot 10 is located in the middle of the mounting base 2, and the top of the slot walls on both sides of the slot 10 are provided with inclined guide grooves 11.
[0072] A plug 5 is installed on the upper rear side of the protective box 3. An inner groove 6 is opened in the plug 5. A locking block 7 is movably protruding from the bottom of the groove walls on both sides of the inner groove 6. The locking block 7 protrudes from one end of the plug 5 at an angle.
[0073] Both sides of the lower wall of the inner groove 6 are provided with fixing blocks 8, and the locking block 7 is connected to the fixing block 8 by a spring 9.
[0074] The press-to-unlock mechanism includes:
[0075] The button 18 is inserted into the top of the inner groove 6. The middle of the bottom of the button 18 is connected to the insertion rod 14. The bottom end of the insertion rod 14 is inserted into the fixing cylinder 13. The bottom end of the fixing cylinder 13 is fixedly connected to the lower groove wall of the inner groove 6. A spring 15 is sleeved on the insertion rod 14. The two ends of the spring 15 are respectively connected to the top of the fixing cylinder 13 and the button 18.
[0076] Both sides of the bottom of the block 18 are connected to through strips 16. The through strips 16 move through the inner wall of the inner groove 16. The bottom end of the through strips 16 is rotatably equipped with extrusion rollers 17.
[0077] Two locking blocks 7 are close to each other, and each of their top sides is connected to a pressure strip 19. One end of the pressure strip 19 is beveled. When it is necessary to disassemble the protective box 3, simply press the pressing block 18 with one hand to move the insert rod 14 down inside the fixed cylinder 13 to compress the spring 15. The downward movement of the pressing block 18 also moves the through strip 16 down. The pressure wheel 17 at the bottom of the through strip 16 compresses the bevel on the pressure strip 19, pushing the locking block 7 out of the slot 12. The protective box 3 is then unlocked on the mounting base 2, and then directly removed from the mounting base 2. The protective box 3 can be removed for disassembly, making the operation simpler and more convenient. During installation, simply insert the insert block 5 on the protective box 3 into the slot 10. As the insert block 5 moves within the slot 10, the inclined surface of the locking block 7 presses against the wall of the slot 10, pushing the locking block 7 towards the insert block 5 and compressing the spring 9. After the insert block 5 is fully inserted into the slot 10, the elasticity of the spring 9 pushes the locking block 7 to move in the opposite direction and reset. The locking block 7 then inserts into the slot 12, thus securing the protective box 3 on the mounting base 2.
[0078] See Figure 1, Figure 2 , Figure 3 , Figure 6 , Figure 7 , Figure 10 , Figure 11 and Figure 12 The cleanup structure includes:
[0079] A horizontal groove 22 is formed on the protective box 3, and a cleaning strip 21 is slidably arranged in the horizontal groove 22. A wiping strip 35 is arranged on the inner side of the cleaning strip 21 and is close to the transparent protective glass 4.
[0080] The snap-fit structure includes:
[0081] Inner groove 26 is formed at both ends of the cleaning strip 21, and inner groove 30 is formed in the middle of the cleaning strip 21;
[0082] The inner groove 26 moves through the second locking block 25 on the groove wall. One end of the second locking block 25 extends out of the inner groove 26. The other end of the second locking block 25 is provided with an end block 27. A spring 4 is connected between the end block 27 and one end of the groove wall of the inner groove 30.
[0083] The two ends of the upper and lower sides of the groove wall of the horizontal groove 22 are provided with slot 2;
[0084] The second press-to-unlock mechanism includes:
[0085] The button 23 is inserted into the inner groove 30. The button 23 is connected to the groove wall of the inner groove 30 by a telescopic rod 32. A spring 31 is sleeved on the telescopic rod 32. The two ends of the spring 31 are respectively connected to the button 23 and the groove wall of the inner groove 30.
[0086] Both end blocks 27 are connected to a pressure strip 28 on one side of each other, and the bottom end of the pressure strip 28 is inclined.
[0087] Both ends of one side of the second block 23 are provided with protrusions 33, and extrusion rollers 34 are installed on the protrusions 33.
[0088] When it is necessary to clean dust or rainwater on the transparent protective glass 4 to ensure the camera's field of vision, simply press the second button 23 on the cleaning strip 21 with one hand, push the second pressing wheel 34 on the protrusion 33 to press the inclined surface on the second pressure strip 28, pull the second locking block 25 to move on the cleaning strip 21, and pull the second locking block 25 out of the second locking slot to release the locking. Then push the second button 23 to drive the wiping strip 35 on the cleaning strip 21 to move back and forth against the transparent protective glass 4 to clean the transparent protective glass 4, ensuring the camera's field of vision. The cleaning process is also simpler and more convenient.
[0089] The wiring structure includes:
[0090] A wiring box 36 is fixedly embedded in the helmet body 1, and multiple wiring slots 24 are provided on the inner wall of the wiring box 36.
[0091] The sealing cover 29 is fastened to the wiring box 36 by screws. A pressure strip 20 is set on the inner wall of the sealing cover 29. The wiring is laid inside the wiring box 36, making the wiring on the helmet body 1 more neat. During maintenance, the sealing cover 29 can be removed for maintenance, reducing the difficulty of maintenance work.
[0092] The implementation principle of the intelligent individual soldier helmet system of this invention is as follows: When it is necessary to disassemble the protective box 3, simply press the first button 18 with one hand to drive the insert rod 14 to move down in the fixed cylinder 13 and compress the second spring 15. The downward movement of the first button 18 also drives the through strip 16 to move down. The bottom end of the through strip 16 compresses the inclined surface on the pressure strip 19, pushing the first locking block 7 out of the slot 12. The protective box 3 is then unlocked on the mounting base 2, and the protective box 3 can be directly pulled out from the mounting base 2 for disassembly. The operation is simpler and more convenient. During installation, simply insert the insert block 5 on the protective box 3 into the slot 10. When the insert block 5 moves in the slot 10, the inclined surface on the first locking block 7 compresses the slot wall of the slot 10, pushing the first locking block 7 towards the insert block 5, compressing the spring 9. After the insert 5 is fully inserted into the slot 10, the spring force of spring 9 pushes the locking block 7 to move in the opposite direction and reset. The locking block 7 is then inserted into the slot 12, thus fixing the protective box 3 on the mounting base 2. When it is necessary to clean dust or rainwater from the transparent protective glass 4 to ensure the camera's field of vision, simply press the second button 23 on the cleaning strip 21 with one hand, push the second pressing wheel 34 on the protrusion 33 to press the inclined surface on the second pressure strip 28, and pull the second locking block 25 to move on the cleaning strip 21. The second locking block 25 is then pulled out of the slot 2 to release the locking. Then, push the second button 23 to move the wiping strip 35 on the cleaning strip 21 back and forth against the transparent protective glass 4 to clean the transparent protective glass 4, ensuring the camera's field of vision. This cleaning process is also simpler and more convenient.
[0093] The above are all preferred embodiments of the present invention and are not intended to limit the scope of protection of the present invention. Therefore, all equivalent changes made in accordance with the structure, shape and principle of the present invention should be covered within the scope of protection of the present invention.
Claims
1. An intelligent individual soldier helmet system, characterized in that, include: Helmet body (1); A wiring structure is provided in the middle of the outside of the helmet body (1) for wiring; Mounting base (2) is installed on the front side of the helmet body (1); The protective structure is installed on the mounting base (2). The protective structure includes an infrared camera, a buzzer, a main controller (EC600U_CNLB_EXTFS8M), a LORA self-organizing network module, a GNSS positioning module, a triaxial sensor, a 3D magnetic sensor, a temperature and humidity sensor, a barometric pressure sensor, an OLED display screen, a power amplifier, and an electrostatic detection chip. A cleaning structure, installed on the protective structure, is used to clean the protective structure and ensure camera clarity; A plug-in structure is provided between the protective structure and the mounting base (2), and is directly plugged into the mounting base (2); The first press-to-unlock mechanism is provided on the plug-in structure, and the plug-in can be released by pressing with one hand. A snap-fit structure is provided on the cleaning structure to snap-fit and position the cleaning structure on the protective structure; The second press-to-unlock mechanism is located on the cleaning structure; pressing releases the latch.
2. The intelligent individual soldier helmet system according to claim 1, characterized in that, The protective structure includes: A protective box (3) is provided on the front side of the mounting base (2), and a transparent protective glass (4) is provided on the front of the protective box (3).
3. The intelligent individual soldier helmet system according to claim 2, characterized in that: The plug-in structure includes: A slot (10) is provided in the middle of the mounting base (2), and guide grooves (11) with inclined surfaces are provided on the top of the slot walls on both sides of the slot (10). The protective box (3) is equipped with a plug (5) on the upper rear side. An inner groove (6) is opened in the plug (5). A locking block (7) is movably protruding from the bottom of the groove walls on both sides of the inner groove (6). The locking block (7) protrudes from one end of the plug (5) at an angle. The inner groove (6) has fixing blocks (8) on both sides of the lower groove wall, and the locking block (7) is connected to the fixing block (8) by a spring (9).
4. The intelligent individual soldier helmet system according to claim 3, characterized in that: The press-to-unlock mechanism includes: A push block (18) is inserted into the top of the inner groove (6). A push rod (14) is connected to the middle of the bottom of the push block (18). The bottom end of the push rod (14) is inserted into the fixing cylinder (13). The bottom end of the fixing cylinder (13) is fixedly connected to the lower wall of the inner groove (6). A spring (15) is sleeved on the push rod (14). The two ends of the spring (15) are respectively connected to the top of the fixing cylinder (13) and the push block (18). Both sides of the bottom of the first block (18) are connected to through strips (16). The through strips (16) move through the inner wall of the inner groove (6). The bottom end of the through strips (16) is rotatably equipped with an extrusion wheel (17). The two card blocks (7) are close to each other and are connected to a pressure strip (19) on one side top. One end face of the pressure strip (19) is inclined.
5. The intelligent individual soldier helmet system according to claim 3, characterized in that: The cleanup structure includes: A horizontal groove (22) is formed on the protective box (3), and a cleaning strip (21) is slidably arranged in the horizontal groove (22). A wiping strip (35) that is close to the transparent protective glass (4) is arranged on the inner side of the cleaning strip (21).
6. The intelligent individual soldier helmet system according to claim 5, characterized in that: The snap-fit structure includes: Inner grooves two (26) are formed at both ends of the cleaning strip (21), and inner groove three (30) is formed in the middle of the cleaning strip (21). The inner groove 2 (26) moves through the groove wall and the locking block 2 (25). One end of the locking block 2 (25) extends out of the inner groove 2 (26). The other end of the locking block 2 (25) is provided with an end block (27). The end block (27) is connected to one end of the groove wall of the inner groove 3 (30) by a spring 4. The transverse groove (22) has two slots at both ends of the upper and lower sides of the groove wall.
7. The intelligent individual soldier helmet system according to claim 6, characterized in that: The second press-to-unlock structure includes: The second button (23) is inserted into the inner groove three (30). The second button (23) is connected to the groove wall on one side of the inner groove three (30) by a telescopic rod (32). A third spring (31) is sleeved on the telescopic rod (32). The two ends of the third spring (31) are respectively connected to the second button (23) and the groove wall on one side of the inner groove three (30). Both end blocks (27) are connected to a pressure strip (28) on one side of each other, and the bottom end of the pressure strip (28) is inclined. Both ends of one side of the second pressing block (23) are provided with protrusions (33), and the second pressing wheel (34) is installed on the protrusions (33).
8. The intelligent individual soldier helmet system according to claim 1, characterized in that: The wiring structure includes: A wiring box (36) is fixedly embedded in the helmet body (1), and multiple wiring grooves (24) are provided on the inner wall of the wiring box (36). The wiring box (36) is secured with a sealing cover (29) by screws, and a pressure strip (20) is provided on the inner wall of the sealing cover (29).