Electronic device hinge with resistance detection alarm structure and alarm system
By introducing a resistance detection alarm structure into the hinge of electronic devices, the problem of hinge wear caused by repeated bending is solved, thereby improving the stability and service life of the hinge.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-06
- Publication Date
- 2026-03-24
AI Technical Summary
In existing electronic devices, because the two screens use hinges to alternate bending postures, the force applied each time is different, resulting in excessive wear at the hinge connection and reduced usability.
An electronic device hinge with a resistance detection and alarm structure is used. The first and second adjustment plates are positioned and connected for steering through the hinge axis. Combined with the resistance guide component and the damping sleeve, the swing resistance is detected, and real-time alarms are provided through torque sensor, damping sensor and infrared laser to avoid excessive damage.
It improves the guiding performance and stability of the hinge, prevents excessive damage through timely alarms, and extends its service life.
Smart Images

Figure CN119043691B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of electronic device hinge technology, and in particular to an electronic device hinge and alarm system with a resistance detection alarm structure. Background Technology
[0002] Electronic devices are devices composed of electronic components such as integrated circuits, transistors, and vacuum tubes, which utilize electronic technology (including software) to function. Hinges are key components in electronic devices used to connect and support rotating parts. They play a crucial role in connecting, fixing, and opening electronic devices and are widely used in various electronic devices. Hinges not only provide connection and support but also affect the stability and lifespan of the device. Therefore, multiple factors need to be considered when selecting and using electronic device hinges, including load-bearing capacity, axial torque, stability, and durability. In existing electronic devices, when using hinges, two sets of screens use the hinges to achieve alternating bending postures. Due to the need for multiple bends, the force applied to the screens varies each time, leading to excessive force during opening and closing, which causes bending at the hinge connection. Furthermore, maintaining the same angle for extended periods accelerates hinge wear and damage, reducing overall usability. Therefore, we propose an electronic device hinge and alarm system with a resistance detection alarm structure to address the aforementioned problems. Summary of the Invention
[0003] To overcome the problem of existing electronic devices using two screens with hinges to achieve alternating bending postures, which requires multiple bends and applies different forces to the screens each time, excessive force can cause the hinge connection to bend, reducing the overall usability.
[0004] The technical solution of the present invention is as follows: an electronic device hinge with a resistance detection alarm structure, comprising a base plate, a first adjusting plate, a second adjusting plate, a hinge shaft, a resistance guiding assembly, and a protective box; the center of the base plate is provided with a hinge shaft for positioning and connecting the first adjusting plate and the second adjusting plate for steering; the hinge shaft is symmetrically fitted with the first adjusting plate and the second adjusting plate for mutual adjustment; both ends of the base plate are provided with resistance guiding assemblies near the edges for resistance detection to maintain stable swing guidance; the outer side of the resistance guiding assembly is fitted with a protective box to form protection; and the hinge shaft is linearly fitted with a damping sleeve to reduce the swing gap between the first adjusting plate and the second adjusting plate and maintain stability.
[0005] Preferably, the damping sleeve is linearly sleeved on the hinge shaft. As the swing of the first and second adjusting plates decreases, the gap is reduced to maintain overall stability and improve the overall guiding performance. The torque sensor, damping sensor and infrared laser are all electrically connected to the conductor, which can promptly alarm the resistance of the swing orientation position to avoid excessive damage and improve the overall use effect.
[0006] Preferably, the substrate has a movable groove for the hinge shaft to move in the center, the substrate is covered with a sleeve, the sleeve has a rubber damping layer inside, shock-absorbing plates are symmetrically arranged on the substrate near the edge, guide boxes are provided at both ends of the substrate, alarm lights are symmetrically distributed on the guide boxes, a fixing box is provided below the guide box, and a steering rod connected to the hinge shaft is provided in the center of the fixing box. The alarm lights can flash to provide a warning.
[0007] Preferably, the outer end of the steering rod is fitted with a connecting plate, and the outer periphery of the connecting plate is provided with scale strips located on the fixed box. The center of the steering rod is provided with a steering ball, and the outer end of the steering rod is provided with a guide cable. The power supply of electronic equipment can be connected through the guide cable to complete the control power supply.
[0008] Preferably, the top of the first adjusting plate is provided with five sets of first sleeves, the first adjusting plate is provided with a first keyway, the bottom of the first adjusting plate is provided with seven sets of first vertical rods, the middle of the seven sets of first vertical rods is connected to a first horizontal frame, and the center of the first horizontal frame is provided with a first transmission rod, through which transmission and conveying can be carried out.
[0009] Preferably, the bottom of the first vertical rod is provided with a first sleeve, and a first airbag block is provided between the first sleeve and the first vertical rod. Through the first vertical rod and the first horizontal frame, an interlaced support structure can be formed.
[0010] Preferably, the top of the second adjusting plate is provided with five sets of second sleeves, the second adjusting plate is provided with a second keyway, the bottom of the second adjusting plate is provided with seven sets of second vertical rods, the middle of the seven sets of second vertical rods is connected to a second crossbar, the center of the second crossbar is provided with a second transmission rod, the bottom of the second vertical rod is provided with a second sleeve, and a second airbag block is provided between the second sleeve and the second vertical rod. The second sleeve is fixedly sleeved with the hinge shaft. The second airbag block can reduce the extension bending and reduce the occurrence of vibration.
[0011] Preferably, the resistance guiding component includes an arc groove, a sheath, a sensing end, a central arc plate, an arc sleeve, a guide rod, a first protective block, a central pulley, an antistatic coating, a second protective block, and a contact end. The arc sleeve has an arc groove at its center, the arc groove has a sheath at its center, and the sheath has a sensing end at its center. The sheath can form an outer protection.
[0012] Preferably, the arc groove has a central arc plate at its center, and a guide rod is provided inside the arc groove. The guide rod has a central pulley that slides corresponding to the central arc plate at its center. The outer wall of the central pulley is coated with an antistatic coating. A first protective block and a second protective block are respectively fitted at the two ends of the guide rod near their ends. The end of the guide rod has a contact end, which is the monitoring point area of the infrared laser.
[0013] According to another aspect of the present invention, an electronic device hinge and alarm system with a resistance detection alarm structure are provided, which further includes a damping sensor located inside the central pulley, a torque sensor inside the steering ball, an infrared laser inside the sensing end, an external signal device electrically connected to the outer end of the infrared laser, an alarm device electrically connected to one end of the signal device, and the torque sensor, damping sensor and infrared laser are all electrically connected to a conductor, with a signal transmitter at the outer end of the conductor.
[0014] The beneficial effects of this invention are:
[0015] 1. In existing electronic devices, two screens are connected by hinges to achieve alternating bending postures. Due to the need for multiple bends and varying forces applied to the screens each time, excessive force during opening and closing can cause bending at the hinge connection, reducing the overall usability. In contrast, this device uses the hinge axis as the center to position and connect the first and second adjustment plates for steering. A resistance guide component is located at both ends of the substrate near the edge. It can detect the swing resistance as the first and second adjustment plates swing, maintaining guiding stability. A damping sleeve is linearly sleeved on the hinge axis. As the swing of the first and second adjustment plates decreases, the gap is reduced, maintaining overall stability and improving overall guiding performance. A torque sensor, a damping sensor, and an infrared laser are all electrically connected to the conductor, which can provide timely alarms for the resistance at the swing orientation position, preventing excessive damage and improving the overall usability.
[0016] 2. When an alarm is triggered, the first and second adjusting plates swing alternately along the hinge axis via the first and second sleeves. Simultaneously, the first and second transmission rods slide through the guide rods from the central pulley into the central arc plate in the arc groove. The damping sensor detects this. The second sleeve is fixedly connected to the hinge axis, so that when the hinge axis rotates, the torque sensor detects this. The infrared laser observes the internal bending posture in real time, and the alarm light on the alarm device flashes to warn of the alarm. The alarm is then controlled and transmitted to the backend by the signal transmitter. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the overall structure of the hinge of the electronic device of the present invention;
[0018] Figure 2 This is a schematic diagram of the hinge substrate of the electronic device of the present invention;
[0019] Figure 3 This is a schematic diagram of the hinge damping plate of the electronic device of the present invention;
[0020] Figure 4 This is a schematic diagram of the first adjusting plate of the hinge of the electronic device of the present invention;
[0021] Figure 5 This is a schematic diagram of the second adjustment plate of the hinge of the electronic device of the present invention;
[0022] Figure 6 This is a schematic diagram of the hinge resistance guiding component of the electronic device of the present invention;
[0023] Figure 7 This is a partially enlarged schematic diagram of hinge A in the electronic device of the present invention;
[0024] Figure 8 This is a partially enlarged schematic diagram of hinge B in the electronic device of the present invention;
[0025] Figure 9 This is a schematic diagram of the hinge alarm process of the electronic device of the present invention.
[0026] Explanation of reference numerals in the attached drawings: 1. Base plate; 2. First adjusting plate; 3. Second adjusting plate; 4. Hinge shaft; 5. Resistance guide assembly; 6. Protective box; 101. Sheath; 102. Rubber damping layer; 103. Movable groove; 104. Shock absorber plate; 105. Guide box; 106. Alarm light; 107. Fixing box; 108. Connecting plate; 109. Scale bar; 110. Guide cable; 111. Steering rod; 112. Steering ball; 201. First crossbeam; 202. First vertical rod; 203. First sleeve; 204. First airbag block; 205. First... 206. Conducting rod; 207. First keyway; 301. First sleeve; 302. Second sleeve; 303. Second keyway; 304. Second vertical rod; 305. Second horizontal frame; 306. Second sleeve; 307. Second airbag block; 401. Damping sleeve; 501. Arc groove; 502. Sheath; 503. Sensing end; 504. Central arc plate; 505. Arc sleeve; 506. Guide rod; 507. First protective block; 508. Central pulley; 509. Antistatic coating; 510. Second protective block; 511. Contact end. Detailed Implementation
[0027] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0028] Please see Figure 1-3This invention provides an embodiment of an electronic device hinge with a resistance detection alarm structure, comprising a base plate 1, a first adjusting plate 2, a second adjusting plate 3, a hinge shaft 4, a resistance guiding component 5, and a protective box 6; the center of the base plate 1 is provided with a hinge shaft 4 for positioning and connecting the first adjusting plate 2 and the second adjusting plate 3 for steering; the hinge shaft 4 is symmetrically fitted with the first adjusting plate 2 and the second adjusting plate 3 for mutual adjustment; both ends of the base plate 1 are provided with resistance guiding components 5 near the edges for resistance detection to maintain stable swing guidance; the outer side of the resistance guiding component 5 is fitted with a protective box 6 to form protection; the hinge shaft 4 is linearly fitted with a damping sleeve 401 to reduce the swing gap between the first adjusting plate 2 and the second adjusting plate 3 and maintain stability.
[0029] Please see Figure 1-4 In this embodiment, the base plate 1 has a movable groove 103 at its center for the hinge shaft 4 to move. The base plate 1 is covered by a sleeve 101, and a rubber damping layer 102 is provided inside the sleeve 101. Shock-absorbing plates 104 are symmetrically arranged near the edge of the base plate 1. Guide boxes 105 are provided at both ends of the base plate 1. Alarm lights 106 are symmetrically distributed on the guide boxes 105. A fixing box 107 is provided below the guide boxes 105. A steering rod 111 connected to the hinge shaft 4 is provided at the center of the fixing box 107. The alarm lights 106 can flash to provide a warning. A connecting plate 108 is sleeved on the outer end of the steering rod 111. A scale bar 109 located on the fixing box 107 is distributed circumferentially around the connecting plate 108. A steering ball 112 is provided at the center of the steering rod 111. A guide cable 110 is provided on the outer end of the steering rod 111. The power supply of electronic equipment can be connected through the guide cable 110 to complete the control power supply.
[0030] Please see Figure 3-5 In this embodiment, the top of the first adjusting plate 2 is provided with five sets of first sleeves 207 linearly, the first adjusting plate 2 is provided with a first keyway 206 linearly through it, the bottom of the first adjusting plate 2 is provided with seven sets of first vertical rods 202 linearly, the middle of the seven sets of first vertical rods 202 is connected to a first crossbeam 201, the center of the first crossbeam 201 is provided with a first transmission rod 205, and the transmission and conveying can be carried out through the first transmission rod 205. The bottom of the first vertical rod 202 is provided with a first sleeve 203, and a first airbag block 204 is provided between the first sleeve 203 and the first vertical rod 202. The first vertical rod 202 and the first crossbeam 201 can form an interlaced support structure.
[0031] Please see Figure 4-6In this embodiment, the top of the second adjusting plate 3 is linearly provided with five sets of second sleeves 302, the second adjusting plate 3 is linearly provided with a second keyway 303, the bottom of the second adjusting plate 3 is linearly provided with seven sets of second vertical rods 304, the middle of the seven sets of second vertical rods 304 is connected with a second crossbeam 305, the center of the second crossbeam 305 is provided with a second transmission rod 301, the bottom of the second vertical rods 304 is provided with a second sleeve 306, a second airbag block 307 is provided between the second sleeve 306 and the second vertical rods 304, the second sleeve 306 is fixedly sleeved with the hinge shaft 4, and the second airbag block 307 is provided between the second sleeve 306 and the second vertical rod 304. The two airbag blocks 307 can reduce the extension and bending, and reduce the occurrence of vibration. The resistance guide component 5 includes an arc groove 501, a protective sleeve 502, a sensing end 503, a central arc plate 504, an arc sleeve 505, a guide rod 506, a first protective block 507, a central pulley 508, an antistatic coating 509, a second protective block 510, and a contact end 511. The arc sleeve 505 has an arc groove 501 at its center, the arc groove 501 has a protective sleeve 502 at its center, and the protective sleeve 502 has a sensing end 503 at its center. The protective sleeve 502 can form an outer protection.
[0032] Please see Figure 1-8 In this embodiment, a central arc plate 504 is provided at the center of the arc groove 501, and a guide rod 506 is provided inside the arc groove 501. A central pulley 508 corresponding to the central arc plate 504 is provided at the center of the guide rod 506. The outer wall of the central pulley 508 is coated with an antistatic coating 509. A first protective block 507 and a second protective block 510 are respectively sleeved at the two ends of the guide rod 506 near the end position. A contact end 511 is provided at the end of the guide rod 506. The contact end 511 is the monitoring point area of the infrared laser.
[0033] Please see Figure 9 According to another aspect of the present invention, an electronic device hinge and alarm system with a resistance detection alarm structure are provided, which further includes a damping sensor, model 1045S, located inside the central pulley 508; a torque sensor, model TFF400, located inside the steering ball 112; an infrared laser, model NT370, located inside the sensing end 503; a signal device, model KXT118, electrically connected to the outer end of the infrared laser; an alarm device, model MS-790, electrically connected to one end of the signal device; and a conductor, model LX-100T, electrically connected to the torque sensor, damping sensor, and infrared laser. A signal transmitter, model TFG6092A, is located at the outer end of the conductor.
[0034] During operation, the first sleeve 207 and the first keyway 206 on the first adjusting plate 2 and the second adjusting plate 3 are pre-installed with the second sleeve 302 and the second keyway 303. The first adjusting plate 2 and the second adjusting plate 3 swing alternately along the hinge shaft 4 via the first sleeve 203 and the second sleeve 306. Simultaneously, the first transmission rod 205 and the second transmission rod 301 slide through the guide rod 506 into the central arc plate 504 in the arc groove 501 via the central pulley 508. The damping sensor detects this. The second sleeve 306 is fixedly sleeved with the hinge shaft 4. When the hinge shaft 4 rotates, the torque sensor detects this. The infrared laser observes the internal bending posture in a timely manner. The alarm light 106 on the alarm device flashes to warn of the alarm and control the alarm. The signal is transmitted to the backend by the signal transmitter.
[0035] The embodiments of the present invention have been described in detail above with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various changes can be made without departing from the spirit of the present invention.
Claims
1. An electronic device hinge with a resistance detection alarm structure, comprising a base plate (1); characterized in that: Also include the first adjusting plate (2), the second adjusting plate (3), the hinge shaft (4), the resistance guide component (5) and the protection box (6);The center of the base plate (1) is provided with the hinge shaft (4) for the steering connection of the first adjusting plate (2) and the second adjusting plate (3), the hinge shaft (4) is symmetrically provided with the first adjusting plate (2) and the second adjusting plate (3) for mutual adjustment, the both ends of the base plate (1) are provided with the resistance guide component (5) for resistance detection and swing guide stability, the outer side of the resistance guide component (5) is provided with the protection box (6) for protection, the hinge shaft (4) is linearly provided with the damping sleeve (401) for reducing the swing gap of the first adjusting plate (2) and the second adjusting plate (3) and keeping stability, the resistance guide component (5) includes the arc slot (501), the sheath (502), the sensing end (503), the center arc plate (504), the arc sleeve (505), the lead rod (506), the first protection block (507), the center pulley (508), the anti-static coating (509), the second protection block (510) and the contact end (511), the outer wall of the center pulley (508) is coated with the anti-static coating (509), the both ends of the lead rod (506) are provided with the first protection block (507) and the second protection block (510) respectively, the end of the lead rod (506) is provided with the contact end (511), the damping sensor is located in the center pulley (508), the torque sensor is located in the inside of the steering ball (112), the infrared laser is located in the inside of the sensing end (503), the outer end of the infrared laser is electrically connected with the signal generator, one end of the signal generator is electrically connected with the alarm, the torque sensor, the damping sensor and the infrared laser are all electrically connected with the conductor, the outer end of the conductor is provided with the signal transmitter, the top of the second adjusting plate (3) is linearly provided with five second sleeves (302), the second adjusting plate (3) is linearly provided with the second key groove (303), the bottom of the second adjusting plate (3) is linearly provided with seven second vertical rods (304), the second horizontal rack (305) is penetrated in the middle of the seven second vertical rods (304), the second horizontal rack (305) is provided with the second conducting rod (301) in the center, the bottom of the second vertical rod (304) is provided with the second sleeve (306), the second sleeve (306) and the second vertical rod (304) are provided with the second air bag block (307) between them, the second sleeve (306) is fixedly sleeved with the hinge shaft (4), the center of the arc sleeve (505) is provided with the arc slot (501), the center of the arc slot (501) is provided with the sheath (502), the center end of the sheath (502) is provided with the sensing end (503), the center arc plate (504) is slidably arranged along the direction of the arc slot (501), the inside of the arc slot (501) is provided with the lead rod (506), the center of the lead rod (506) is provided with the center pulley (508) slidably corresponding to the center arc plate (504).
2. The electronic device hinge with resistance detection and alarm structure according to claim 1, characterized in that: The center of the substrate (1) is provided with a movable slot (103) in which a hinge shaft (4) is movable, the periphery of the substrate (1) is covered with a sleeve (101), the inside of the sleeve (101) is provided with a rubber damping layer (102), symmetrically provided on the substrate (1) near the edge are shock-absorbing plates (104), both ends of the substrate (1) are provided with guide boxes (105), the guide boxes (105) are symmetrically provided with alarm lamps (106), the lower part of the guide boxes (105) is provided with a fixing box (107), the center of the fixing box (107) is provided with a steering rod (111) connected with the hinge shaft (4).
3. The electronic device hinge with resistance detection and alarm structure according to claim 2, characterized in that: The outer end of the steering rod (111) is provided with a connecting disc (108), the periphery of the connecting disc (108) is annularly provided with a scale bar (109) located on the fixing box (107), the center of the steering rod (111) is provided with a steering ball (112), and the outer end of the steering rod (111) is provided with a guide cable (110).
4. The electronic device hinge with resistance detection and alarm structure according to claim 1, characterized in that: The top of the first adjusting plate (2) is linearly provided with five groups of first sleeves (207), the first adjusting plate (2) is linearly provided with a first key groove (206), the bottom of the first adjusting plate (2) is linearly provided with seven groups of first vertical rods (202), the middle of the seven groups of first vertical rods (202) is provided with a first horizontal frame (201), and the center of the first horizontal frame (201) is provided with a first conducting rod (205).
5. The electronic device hinge with resistance detection alarm structure according to claim 4, characterized in that: The bottom of the first vertical rod (202) is provided with a first sleeve (203), and the first sleeve (203) and the first vertical rod (202) are provided with a first air bag block (204).
Citation Information
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