A laser charging protection system and a laser charging method

By designing a laser charging protection system, which utilizes electrical connections and mechanical structures to control the current, and combines optical signal conversion and alarm modules, the problem of insufficient self-test protection in laser charging is solved, thus achieving charging stability and safety.

CN115208082BActive Publication Date: 2025-12-12CHANGZHOU JINHUIXIN INFORMATION TECH CO LTD
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Patent Information

Application Number
CN202210741194.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-06-27
Publication Date
2025-12-12
Estimated Expiration
2042-06-27

AI Technical Summary

Technical Problem

In existing laser charging technologies, the self-checking and protection effects of the charging system are poor, and it is impossible to disconnect the charging in time, which leads to damage to the charging device and cumbersome charging methods.

Method used

A laser charging protection system was designed, including a main control panel, a transmitting panel, and a receiving panel. Through an electrically connected power supply, control switch, current control module, conversion module, and laser emission module, combined with mechanical structures such as sliding plate, threaded ring, and rotating door, current control and optical signal conversion are realized. A detection module and an alarm module are provided for protection.

Benefits of technology

It achieves stability and safety in laser charging, ensures timely power disconnection when the rechargeable battery is fully charged to prevent device damage, and simplifies the charging process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a kind of laser charging protection system and laser charging method, master control panel, sending panel and receiving panel, the master control panel, sending panel, connecting mechanism and receiving panel are sequentially electrically connected, the master control panel includes power supply, control switch, current control module, conversion module and laser emission module, the power supply, control switch, current control module, conversion module and laser emission module are sequentially electrically connected, the outside of master control panel is provided with connecting mechanism, the battery is placed into the placing pipe by the application, and control switch is started by rotating knob, realize the laser charging of convenient at the same time, protect laser charging system.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of coating tools, in particular to a laser charging protection system and a laser charging method. BACKGROUND

[0002] The laser charging technology is a technology for long-distance energy transmission by using optical fibers, which is jointly developed by Lockheed Martin and American Laser Power Corporation, and the indoor wind tunnel charging test was completed in July 2012, and the outdoor unmanned aerial vehicle charging test will be carried out in 2013.

[0003] In the prior art, when the laser charging is carried out, the self-checking protection effect of the charging system is poor, when the charging is completed, the charging cannot be disconnected in time, which leads to the damage of the charging device, and the charging means is complicated, which is not conducive to use, so the present application provides a laser charging protection system and a laser charging method. SUMMARY

[0004] Based on the background technology, when the laser charging is carried out, the self-checking protection effect of the charging system is poor, when the charging is completed, the charging cannot be disconnected in time, which leads to the damage of the charging device, and the charging means is complicated, which is not conducive to use, so the present application provides a laser charging protection system and a laser charging method.

[0005] The laser charging protection system provided by the present application comprises a main control panel, a sending panel and a receiving panel, the main control panel, the sending panel, a connecting mechanism and the receiving panel are sequentially electrically connected, the main control panel comprises a power supply, a control switch, a current control module, a conversion module and a laser emission module, the power supply, the control switch, the current control module, the conversion module and the laser emission module are sequentially electrically connected, and the connecting mechanism is arranged on the outer side of the main control panel.

[0006] Preferably, the right side of the master control panel is fixedly connected to the right inner wall of the connecting mechanism, and the control switch on the right side of the master control panel extends to the outside of the connecting mechanism, a hollow baffle is fixedly installed in the connecting mechanism, the right side of the baffle is symmetrically and slidably connected with a sliding plate, and there are two sliding plates, the sides away from each other of the two sliding plates are fixedly connected with threaded rings, and there are two threaded rings, the right sides of the two threaded rings penetrate through the baffle, the same placing pipe is slidably connected to the front and rear inner walls of the connecting mechanism, a receiving panel is fixedly installed in the placing pipe, two rotating doors are symmetrically and rotatably connected to the left side of the connecting mechanism, adjusting mechanisms are arranged on the top and bottom inner walls of the connecting mechanism, vertical plates are fixedly connected to the top and bottom of the connecting mechanism, the right sides of the two vertical plates are fixedly connected with movable pipes, ladder-shaped plates are slidably connected in the two movable pipes, and there are two ladder-shaped plates, locking blocks are fixedly connected to the outer walls of the two knobs, and there are two locking blocks, the locking blocks are in movable contact with the inclined surfaces of the ladder-shaped plates, return springs are fixedly connected to the right sides of the ladder-shaped plates, one end of each return spring is fixedly connected to the inner wall of the movable pipe, and the connecting mechanism is convenient for connecting the master control panel and the receiving panel, and is convenient for guiding the adjusting structure, thereby increasing the charging stability and safety.

[0007] Preferably, the adjusting mechanism comprises rotating knobs rotatably connected to the top and bottom inner walls of the connecting mechanism, threaded columns are fixedly connected to the sides close to each other of the two rotating knobs, and there are two threaded columns, the outer walls of the threaded columns are threadedly connected with the inner walls of the threaded rings, and the top and bottom inner walls of the connecting mechanism are slidably connected with adaptive rods, and there are two adaptive rods, the left ends of the two adaptive rods are rotatably connected with connecting rods, the left ends of the two connecting rods are rotatably connected with positioning plates, and there are two positioning plates, the left sides of the two positioning plates are slidably connected with the left inner wall of the connecting mechanism, the top and bottom of the placing pipe are symmetrically and fixedly connected with L-shaped plates, and there are two L-shaped plates, the sides away from each other of the two L-shaped plates are rotatably connected with top plates on the sides close to each other of the two positioning plates, and there are two top plates, the top and bottom of the connecting mechanism are rotatably connected with knobs, and there are two knobs, the ends close to each other of the two knobs extend into the connecting mechanism and are wound with pulling belts, and the ends close to each other of the two pulling belts are fixedly connected to the sides away from each other of the two threaded rings, and the adjusting mechanism is convenient for charging the charging battery.

[0008] Preferably, the outer walls of the two knobs are fixedly sleeved with one return spring, and there are two one return springs, the ends away from each other of the two one return springs are fixedly connected to the top and bottom inner walls of the connecting mechanism, and the elastic force of the one return spring is convenient for driving the knob to return.

[0009] Preferably, the right side of the rotating door is fixedly connected with two No.

[0010] Preferably, the receiving panel comprises a laser receiving module, a photovoltaic module, a detection module and an alarm module, and the laser receiving module, the photovoltaic module, the detection module and the alarm module are electrically connected.

[0011] Preferably, the sending panel comprises an instruction module, and the instruction module is electrically connected with the current control module.

[0012] The application further provides a charging method of the laser charging protection system, which comprises the following steps:

[0013] S1: first, the charging battery is placed in the placing pipe, and the rotating knob is rotated to wind the pulling belt, and the pulling belt drives the threaded ring to move, when the threaded ring moves, the threaded ring drives the rotating lever to rotate through the threaded column, at this time, with the rotation of the rotating lever, the rotating lever drives the connecting rod to move through the matching rod, and the connecting rod drives the positioning plate to slide, and the positioning plate drives the L-shaped plate to move through the top plate;

[0014] S2: when the L-shaped plate moves, the L-shaped plate drives the placing pipe to move, and the rotating door rotates through the elastic force of the No.

[0015] S3: then, the control switch is pressed, the control switch starts the power supply, and the sending panel sends signals to the current control module through the instruction module, guides the current control module to control the input of the current, and the power supply passes the current into the current control module through the control switch, at this time, the current control module passes the current into the conversion module, at this time, the conversion module converts the electric signal into the optical signal, and sends the converted optical signal into the laser emitting module;

[0016] S4: at the same time, the laser emitting module emits the received optical signal into the laser receiving module, the laser receiving module collects the optical signal and sends it into the photovoltaic module, the photovoltaic module converts the optical signal into the electric signal, and continuously charges the charging battery, when the charging battery is fully charged, the excess current is sent into the detection module through the photovoltaic module, and the detection module electrifies the alarm module to alarm.

[0017] The application has the following beneficial effects:

[0018] 1, by putting rechargeable battery into the placement tube, rotating the knob, the knob is wound against the pull belt, with the rotation of the pull belt, the pull belt drives the threaded column to rotate through the threaded ring, when the threaded column rotates, the threaded column drives the adaptive rod to slide through the rotating lever, when the adaptive rod slides, the adaptive rod drives the positioning plate to slide through the connecting rod, at the same time, the positioning plate moves the L-shaped plate through the top plate.

[0019] 2, when the L-shaped plate moves, the L-shaped plate drives the rotating door to rotate through the placement tube, which plays a protective role for the rechargeable battery, when the threaded ring moves, the threaded ring drives the sliding plate to slide, which facilitates the movement of the placement tube, at the same time, the locking block contacts the trapezoidal plate through the trapezoidal plate, and the locking block is fixed through the trapezoidal plate.

[0020] 3, press the control switch at this time, the control switch starts the power supply, at the same time, the sending panel controls the input of current through the current control module through the instruction module, at this time, the power supply passes through the control switch to input current into the current control module, at this time, the current control module passes the current into the conversion module, at this time, the conversion module converts the electrical signal into optical signal, and sends the converted optical signal to the laser emission module.

[0021] 4, at the same time, the laser emission module emits the received optical signal to the laser receiving module, and collects the optical signal through the laser receiving module, at this time, the laser receiving module sends the received optical signal to the photovoltaic module, at the same time, the photovoltaic module converts the optical signal into electrical signal, and continuously charges the rechargeable battery, when the rechargeable battery is fully charged, the excess current is sent to the detection module through the photovoltaic module, at the same time, the detection module energizes the alarm module, which plays an alarm effect, and protects the laser charging system.

[0022] By putting the rechargeable battery into the placement tube, rotating the knob and starting the control switch, the laser charging is realized, and the laser charging system is protected. BRIEF DESCRIPTION OF DRAWINGS

[0023] Figure 1 The structure block diagram of the laser charging protection system charging method is proposed in the application;

[0024] Figure 2 The front view of the connection structure of the laser charging protection system is proposed in the application;

[0025] Figure 3 The structure three-dimensional drawing of the connection structure of the laser charging protection system is proposed in the application;

[0026] Figure 4The application provides a main control panel, a sending panel and a receiving panel of a laser charging protection system.

[0027] Figure 5 The application provides a main control panel, a sending panel and a receiving panel of a laser charging protection system.

[0028] In the figure: 1 main control panel, 2 sending panel, 3 connecting mechanism, 4 receiving panel, 5 power supply, 6 control switch, 7 control module, 8 conversion module, 9 laser emission module, 10 instruction module, 11 laser receiving module, 12 photovoltaic module, 13 detection module, 14 alarm module, 15 baffle, 16 placing pipe, 17 rotating door, 18 sliding plate, 19 threaded ring, 20 L-shaped plate, 21 top plate, 22 positioning plate, 23 connecting rod, 24 adaptive rod, 25 rotating lever, 26 threaded column, 27 rotating knob, 28 No. 1 rotary spring, 29 pulling belt, 30 No. 2 rotary spring, 31 vertical plate, 32 movable pipe, 33 return spring, 34 trapezoidal plate, 35 locking block. DETAILED DESCRIPTION

[0029] The application will be further described below in combination with specific embodiments.

[0030] Embodiment 1

[0031] Reference Figures 1-5 In the embodiment, a laser charging protection system is provided, which comprises a main control panel 1, a sending panel 2 and a receiving panel 4. The main control panel 1, the sending panel 2, a connecting mechanism 3 and the receiving panel 4 are sequentially electrically connected. The main control panel 1 comprises a power supply 5, a control switch 6, a current control module 7, a conversion module 8 and a laser emission module 9. The power supply 5, the control switch 6, the current control module 7, the conversion module 8 and the laser emission module 9 are sequentially electrically connected. The outer side of the main control panel 1 is provided with the connecting mechanism 3.

[0032] In the embodiment, the right side of the master control panel 1 is fixedly connected to the right inner wall of the connecting mechanism 3, and the control switch 6 on the right side of the master control panel 1 extends to the outside of the connecting mechanism 3. An internally hollow baffle 15 is fixedly installed in the connecting mechanism 3. The right side of the baffle 15 is symmetrically and slidably connected with two sliding plates 18. The sides of the two sliding plates 18 away from each other are fixedly connected with two threaded rings 19. The right sides of the two threaded rings 19 penetrate through the baffle 15. The front and back inner walls of the connecting mechanism 3 are slidably connected with the same placement tube 16. The placement tube 16 is fixedly installed with the receiving panel 4. The left side of the connecting mechanism 3 is symmetrically and rotatably connected with two rotating doors 17. The top and bottom inner walls of the connecting mechanism 3 are provided with adjusting mechanisms. The top and bottom of the connecting mechanism 3 are fixedly connected with two vertical plates 31. The right sides of the two vertical plates 31 are fixedly connected with two movable tubes 32. The two movable tubes 32 are slidably connected with two ladder-shaped plates 34. The outer walls of the two knobs 27 are fixedly connected with two locking blocks 35. The locking blocks 35 are in movable contact with the inclined surfaces of the ladder-shaped plates 34. The right sides of the ladder-shaped plates 24 are fixedly connected with return springs 33. One end of the return spring 33 is fixedly connected with the inner wall of the movable tube 32. The connecting mechanism 3 is convenient for connecting the master control panel 1 and the receiving panel 4, and is convenient for guiding the adjusting mechanism, increasing the charging stability and safety. The adjusting mechanism comprises two rotating dials 25 rotatably connected with the top and bottom inner walls of the connecting mechanism 3. The sides of the two rotating dials 25 close to each other are fixedly connected with two threaded columns 26. The outer walls of the threaded columns 26 are threadedly connected with the inner walls of the threaded rings 19. The top and bottom inner walls of the connecting mechanism 3 are slidably connected with two adaptive rods 24. The left ends of the two adaptive rods 24 are rotatably connected with two connecting rods 23. The left ends of the two connecting rods 23 are rotatably connected with two positioning plates 22. The left sides of the two positioning plates 22 are slidably connected with the left inner wall of the connecting mechanism 3. The top and bottom of the placement tube 16 are symmetrically and fixedly connected with two L-shaped plates 20. The sides of the two L-shaped plates 20 away from each other are rotatably connected with the sides of the two positioning plates 22 close to each other. The top and bottom of the connecting mechanism 3 are rotatably connected with two knobs 27. The ends of the two knobs 27 close to each other extend into the connecting mechanism 3 and are wound with two pulling belts 29. The ends of the two pulling belts 29 close to each other are fixedly connected with the sides of the two threaded rings 19 away from each other. The adjusting mechanism is convenient for charging the charging battery. The outer walls of the two knobs 27 are fixedly provided with two return springs 28. The ends of the two return springs 28 away from each other are fixedly connected with the top and bottom inner walls of the connecting mechanism 3. The elastic force of the return spring 28 is convenient for driving the knob 27 to return.The right side of the rotating door 17 is fixedly connected with two No. 2 rotary springs 30, and the two No. 2 rotary springs 30 are fixedly connected with the left side of the connecting mechanism 3 at one end, and the elastic force of the No. 2 rotary springs 30 facilitates the rotation of the rotating door 17; the receiving panel 4 comprises a laser receiving module 11, a photovoltaic module 12, a detection module 13 and an alarm module 14, and the laser receiving module 11, the photovoltaic module 12, the detection module 13 and the alarm module 14 are electrically connected; the sending panel 2 comprises an instruction module 10, and the instruction module 10 is electrically connected with the current control module 7.

[0033] In actual work, the rechargeable battery is placed in the placing pipe 16, the knob 27 is rotated, the knob 27 winds the pulling belt 29, the pulling belt 29 drives the threaded ring 19 to move as the knob 27 winds the pulling belt 29, the threaded ring 19 drives the threaded column 26 to rotate as the threaded ring 19 moves, the threaded column 26 drives the rotating lever 25 to rotate as the threaded column 26 rotates, the rotating lever 25 drives the adaptive rod 24 to slide as the rotating lever 25 rotates, the adaptive rod 24 pushes the connecting rod 23 to move as the adaptive rod 24 slides, the connecting rod 23 drives the positioning plate 22 to slide as the connecting rod 23 moves, the positioning plate 22 pushes the L-shaped plate 20 to move through the top plate 21 as the positioning plate 22 slides, the L-shaped plate 20 drives the placing pipe 16 to move as the L-shaped plate 20 moves, the rotating door 17 rotates through the elastic force of the No. 2 rotary spring 30 as the placing pipe 16 moves, which protects the rechargeable battery, the threaded ring 19 drives the sliding plate 18 to slide as the threaded ring 19 moves, which facilitates the movement of the placing pipe 16, the locking block 35 contacts the trapezoidal plate 34 as the knob 27 moves, the locking block 35 is fixed through the trapezoidal plate 34, the control switch 6 is pressed, the control switch 6 starts the power supply 5, the sending panel 2 sends signals to the current control module 7 through the instruction module 10, the current control module 7 controls the input of the current, the power supply 5 inputs the current into the current control module 7 through the control switch 6, the current control module 7 inputs the current into the conversion module 8, the conversion module 8 converts the electric signal into the light signal, sends the converted light signal to the laser emitting module 9, the laser emitting module 9 emits the received light signal to the laser receiving module 11, the laser receiving module 11 collects the light signal, sends the received light signal to the photovoltaic module 12, converts the light signal into the electric signal through the photovoltaic module 12, and continuously charges the rechargeable battery, the excess current is sent to the detection module 13 through the photovoltaic module 12 when the rechargeable battery is fully charged, the detection module 13 electrifies the alarm module 14, which has an alarm effect and facilitates the protection of the laser charging system.

[0034] Embodiment 2

[0035] The application further provides a charging method of the laser charging protection system, comprising the following steps:

[0036] S1: first, the charging battery is placed in the placing tube 16, and the rotating knob 27 is rotated to wind the pulling belt 29, and the pulling belt 29 drives the threaded ring 19 to move, when the threaded ring 19 moves, the threaded ring 19 drives the rotating lever 25 to rotate through the threaded column 26, at this time, with the rotation of the rotating lever 25, the rotating lever 25 drives the connecting rod 23 to move through the matching rod 24, and the connecting rod 23 drives the positioning plate 22 to slide, and the positioning plate 22 drives the L-shaped plate 20 to move through the top plate 21;

[0037] S2: when the L-shaped plate 20 moves, the L-shaped plate 20 drives the placing tube 16 to move, the rotating door 17 is rotated through the elastic force of the second rotary spring 30, and the threaded ring 19 is moved to drive the sliding plate 18 to slide;

[0038] S3: then, the control switch 6 is pressed, the control switch 6 starts the power supply 5, the sending panel 2 sends a signal to the current control module 7 through the instruction module 10, the current control module 7 controls the input of the current, the power supply 5 inputs the current into the current control module 7 through the control switch 6, at this time, the current control module 7 inputs the current into the conversion module 8, at this time, the conversion module 8 converts the electric signal into the optical signal, and sends the converted optical signal to the laser emission module 9;

[0039] S4: at the same time, the laser emission module 9 emits the received optical signal to the laser receiving module 11, the laser receiving module 11 collects the optical signal and sends it to the photovoltaic module 12, the photovoltaic module 12 converts the optical signal into the electric signal and continuously charges the charging battery, when the charging battery is fully charged, the excess current is sent to the detection module 13 through the photovoltaic module 12, the detection module 13 electrifies the alarm module 14 to alarm.

[0040] The above merely describes the preferred embodiments of the present application, but the protection scope of the present application is not limited to this, any person skilled in the art can make equivalent replacement or change according to the technical scheme and the inventive concept of the present application within the technical range disclosed by the present application, which should be covered in the protection scope of the present application.

Claims

1. A laser charging protection system comprising a master panel (1), a transmitting panel (2) and a receiving panel (4), characterized in that, The master control panel (1), the sending panel (2), the connecting mechanism (3) and the receiving panel (4) are electrically connected in sequence, the master control panel (1) comprises a power supply (5), a control switch (6), a current control module (7), a conversion module (8) and a laser emission module (9), the power supply (5), the control switch (6), the current control module (7), the conversion module (8) and the laser emission module (9) are electrically connected in sequence, and the outer side of the master control panel (1) is provided with the connecting mechanism (3); The right side of the master control panel (1) is fixedly connected to the right inner wall of the connecting mechanism (3), and the control switch (6) on the right side of the master control panel (1) extends out of the connecting mechanism (3), a baffle (15) with an internal cavity is fixedly installed in the connecting mechanism (3), the right side of the baffle (15) is symmetrically and slidably connected with sliding plates (18), the sliding plates (18) are two, screw rings (19) are fixedly connected to the sides of the two sliding plates (18) away from each other, the screw rings (19) are two, the right sides of the two screw rings (19) penetrate the baffle (15), a placement tube (16) is slidably connected to the front and rear inner walls of the connecting mechanism (3), the receiving panel (4) is fixedly installed in the placement tube (16), two rotating doors (17) are symmetrically and rotatably connected to the left side of the connecting mechanism (3), adjusting mechanisms are arranged on the top inner wall and the bottom inner wall of the connecting mechanism (3), vertical plates (31) are fixedly connected to the top and the bottom of the connecting mechanism (3), movable tubes (32) are fixedly connected to the right sides of the two vertical plates (31), trapezoidal plates (34) are slidably connected in the two movable tubes (32), the trapezoidal plates (34) are two, locking blocks (35) are fixedly connected to the outer walls of the two knobs (27), the locking blocks (35) are two, the locking blocks (35) are in movable contact with the inclined surfaces of the trapezoidal plates (34), return springs (33) are fixedly connected to the right sides of the trapezoidal plates (34), and one end of the return spring (33) is fixedly connected to the inner wall of the movable tube (32); The outer walls of the two knobs (27) are fixedly provided with two one-way return springs (28), one end of the two one-way return springs (28) away from each other is fixedly connected to the top inner wall and the bottom inner wall of the connecting mechanism (3); The right sides of the rotating doors (17) are fixedly connected with two second one-way return springs (30), and one end of the two second one-way return springs (30) is fixedly connected to the left side of the connecting mechanism (3).

2. A laser charge protection system according to claim 1, wherein, The adjusting mechanism comprises rotating dials (25) connected to the top inner wall and the bottom inner wall of the connecting mechanism (3), the two sides of the rotating dials (25) close to each other are fixedly connected with threaded columns (26), the outer wall of the threaded column (26) is threadedly connected with the inner wall of the threaded ring (19), the top inner wall and the bottom inner wall of the connecting mechanism (3) are slidably connected with adaptive rods (24), the left ends of the two adaptive rods (24) are rotatably connected with connecting rods (23), the left ends of the two connecting rods (23) are rotatably connected with positioning plates (22), the left sides of the two positioning plates (22) are slidably connected with the left inner wall of the connecting mechanism (3), the top and the bottom of the placing pipe (16) are symmetrically fixedly connected with L-shaped plates (20), the two sides of the two L-shaped plates (20) away from each other are rotatably connected with top plates (21), the top of the connecting mechanism (3) and the bottom are rotatably connected with knobs (27), the two ends of the two knobs (27) close to each other are extended into the connecting mechanism (3) and are wound with pulling belts (29), and the two ends of the two pulling belts (29) close to each other are fixedly connected with the two sides of the two threaded rings (19) away from each other.

3. A laser charge protection system according to claim 1, wherein, The receiving panel (4) comprises a laser receiving module (11), a photovoltaic module (12), a detection module (13) and an alarm module (14), and the laser receiving module (11), the photovoltaic module (12), the detection module (13) and the alarm module (14) are sequentially electrically connected.

4. A laser charge protection system according to claim 1, wherein, The sending panel (2) comprises an instruction module (10), and the instruction module (10) is electrically connected with the current control module (7).

5. A charging method of a laser charging protection system, characterized by, The method comprises the following steps: S1: first, the charging battery is placed in the placing pipe (16), and the knob (27) is rotated to wind the pulling belt (29), at the same time, the pulling belt (29) drives the threaded ring (19) to move, when the threaded ring (19) moves, the threaded ring (19) drives the rotating dial (25) to rotate through the threaded column (26), at this time, with the rotation of the rotating dial (25), the rotating dial (25) drives the connecting rod (23) to move through the adaptive rod (24), at the same time, the connecting rod (23) drives the positioning plate (22) to slide, and the positioning plate (22) drives the L-shaped plate (20) to move through the top plate (21); S2: when the L-shaped plate (20) moves, the L-shaped plate (20) drives the placing pipe (16) to move, at the same time, the rotating door (17) is rotated through the elastic force of the second rotary spring (30), and moves through the threaded ring (19) to drive the sliding plate (18) to slide. S3: Then press the control switch (6), the control switch (6) starts the power supply (5), while sending the panel (2) through the instruction module (10) to the current control module (7) sends a signal, guide the current control module (7) to control the input of the current, at the same time the power supply (5) through the control switch (6) to the current control module (7) into the current, at this time the current control module (7) will current into the conversion module (8) in this time, the conversion module (8) will electrical signal into optical signal, and sends the converted optical signal to the laser emission module (9) in; S4: At the same time the laser emission module (9) will receive the optical signal to the laser receiving module (11) emission, at the same time the laser receiving module (11) to the optical signal collection and send to the photovoltaic module (12) in, at the same time the photovoltaic module (12) to the optical signal conversion for electrical signal, and the charging battery continues to charge, when the charging battery inside full of electricity, the excess current through the photovoltaic module (12) to the detection module (13) in, at the same time the detection module (13) to the alarm module (14) power on, alarm.

Citation Information

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