Intelligent guard cabinet for lighting system
By installing searchlights and rotatable reflectors inside the protective cabinet, the problem of inconvenient inspections when there is insufficient light is solved, and the intelligent dustproof and heat dissipation device improves work efficiency and equipment protection.
Patent Information
- Application Number
- CN202210349050.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-04-01
- Publication Date
- 2026-02-13
- Estimated Expiration
- 2042-04-01
AI Technical Summary
The existing protective cabinets cannot provide sufficient lighting for staff at night or in low-light conditions, making inspections inconvenient.
Inside the observation window of the protective cabinet, a searchlight and a rotatable reflector are installed. The light is controlled by a lighting switch, and the angle of the light is adjusted by the reflector to eliminate glare and ensure observation without blind spots. At the same time, a dustproof and heat dissipation device is adopted, which combines electric and manual components to achieve intelligent control and dustproof and heat dissipation.
Provides all-around lighting for staff in low-light conditions, eliminates blind spots, improves inspection efficiency, and ensures normal operation and protection of the controller through intelligent dustproof and heat dissipation devices.
Smart Images

Figure CN115551244B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of protective cabinet technology, and in particular to an intelligent protective cabinet for lighting systems. Background Technology
[0002] With technological advancements, intelligent lighting systems are increasingly being used. These systems typically consist of lighting equipment and controllers. For ease of management and operation, multiple controllers are often placed in one location and protected by a cabinet. Moreover, the most likely cause of malfunctions in intelligent lighting systems lies with the controllers, with only a very small probability of a faulty lighting equipment (such as LED lights). Therefore, it is essential for staff to regularly inspect and maintain all controllers.
[0003] Existing protective cabinets have observation windows, allowing staff to observe the readings and other conditions of the controller inside without opening the cabinet door, thus ensuring the controller operates normally. However, existing technology has the following drawback: staff may not be able to see the inside of the cabinet clearly when inspecting at night or in other low-light conditions, causing inconvenience to the inspectors.
[0004] Therefore, how to design an intelligent protective cabinet for lighting systems that can provide illumination inside the cabinet when staff are inspecting it, thereby facilitating the inspection and improving work efficiency, is a technical problem that technicians in this field need to solve. Summary of the Invention
[0005] The purpose of this invention is to overcome the shortcomings of the prior art and provide an intelligent protective cabinet for a lighting system that can provide illumination inside the cabinet when staff are conducting inspections, thereby facilitating inspections and improving work efficiency.
[0006] The objective of this invention is achieved through the following technical solution:
[0007] An intelligent protective cabinet for a lighting system includes a cabinet body and a cabinet door covering the cabinet body. The cabinet door has an observation window, and a searchlight and a reflector are provided on the inner side of the observation window. A lamp holder is provided on the inner side of the cabinet door, the searchlight is fixedly installed on the lamp holder, and the reflector is rotatably disposed above the searchlight.
[0008] The reflector includes a rotating shaft, a reflective part, and an operating rod. The rotating shaft is hinged to the lamp holder. An avoidance hole is provided on the cabinet door. The operating rod passes through the avoidance hole. The side of the reflective part facing the searchlight has a mirror structure.
[0009] In one embodiment, a lighting switch is provided on the outside of the cabinet door, and the lighting switch is electrically connected to the searchlight.
[0010] In one embodiment, a dustproof and heat dissipation device is provided on the side wall of the cabinet;
[0011] The dustproof and heat dissipation device includes: guide vanes, a drive assembly, and a transmission assembly. The guide vanes are rotatably mounted on the cabinet, and the drive assembly drives the guide vanes to rotate through the transmission assembly.
[0012] In one embodiment, the drive assembly includes: a motor, a telescopic rod, a sleeve, a base, a deflector, and a positioning aid;
[0013] The motor is fixedly installed on the cabinet. The motor drives the sleeve to perform reciprocating linear motion through the telescopic rod. The sleeve is provided with a telescopic elastic element. The telescopic rod passes through the telescopic elastic element. The telescopic rod is provided with a collar. The end face of the sleeve is provided with a blocking plate.
[0014] The base is fixed to the cabinet, the sway member is rotatably mounted on the base, and the sleeve is hinged to the sway member; the sway member is provided with a support arm, the positioning auxiliary member is hinged to the support arm, the base is provided with a locking pin, and the free end of the positioning auxiliary member is provided with a retaining groove that cooperates with the locking pin.
[0015] In one embodiment, the positioning aid is provided with a tail fin, the tail fin presses against or detaches from the support arm, and permanent magnets are provided at corresponding positions on the tail fin and the support arm.
[0016] The positioning auxiliary component has an avoidance groove for avoiding the locking pin. The locking pin has a cylindrical structure, and the retaining groove on the positioning auxiliary component has a semi-circular arc structure.
[0017] In one embodiment, the deflector is further provided with a hinge hole, which is a waist-shaped hole structure, and the sleeve is provided with an extension section, which is hinged to the deflector through the hinge hole.
[0018] In one embodiment, the output shaft of the motor has an external thread, the telescopic rod has an internal thread, the output shaft of the motor passes through the telescopic rod, and the motor drives the telescopic rod to slide through the cooperation of the external thread and the internal thread.
[0019] In one embodiment, the transmission assembly includes a rack, a drive gear, and a driven gear; the rack is slidably disposed on the cabinet, the drive gear is fixedly disposed on the deflector, and the driven gear is fixedly disposed at one end of the guide vane; the drive gear meshes with the rack, and the rack meshes with the driven gear.
[0020] In summary, the intelligent protective cabinet for lighting systems of the present invention can provide illumination inside the cabinet when staff are conducting inspections, thereby facilitating inspections and improving work efficiency. Attached Figure Description
[0021] To more clearly illustrate the technical solutions of the embodiments of the present invention, the accompanying drawings used in the embodiments will be briefly introduced below. It should be understood that the following drawings only show some embodiments of the present invention and should not be regarded as a limitation on the scope. For those skilled in the art, other related drawings can be obtained based on these drawings without creative effort.
[0022] Figure 1 This is a schematic diagram (I) of the intelligent protective cabinet for a lighting system according to the present invention;
[0023] Figure 2 This is a schematic diagram (II) of the structure of the intelligent protective cabinet for lighting systems according to the present invention;
[0024] Figure 3 for Figure 2 A partial schematic diagram of the cabinet door shown;
[0025] Figure 4 for Figure 3 An exploded view of the cabinet door shown;
[0026] Figure 5 A schematic diagram of the status of the intelligent protective cabinet for the lighting system when the dustproof and heat dissipation device is turned on.
[0027] Figure 6 for Figure 5 The diagram shows the state of the dustproof and heat dissipation device when it is turned on.
[0028] Figure 7 for Figure 6 The diagram shows the structure of the drive assembly and transmission assembly.
[0029] Figure 8 for Figure 7 A partial sectional view of the drive assembly and transmission assembly shown.
[0030] Figure 9 for Figure 7 An exploded view of the drive assembly and transmission assembly shown.
[0031] Figure 10 A schematic diagram showing the dustproof and heat dissipation device in the activated state when the electric components are undamaged;
[0032] Figure 11 A schematic diagram showing the dustproof and heat dissipation device in operation when an electric component is damaged (I);
[0033] Figure 12 Schematic diagram (II) showing the dustproof and heat dissipation device in operation when an electric component is damaged. Detailed Implementation
[0034] To facilitate understanding of the present invention, a more complete description will be given below with reference to the accompanying drawings. Preferred embodiments of the invention are shown in the drawings. However, the invention can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to provide a thorough and complete understanding of the disclosure of the invention.
[0035] It should be noted that when an element is referred to as being "fixed to" another element, it can be directly attached to the other element or there may be an intervening element. When an element is referred to as being "connected to" another element, it can be directly connected to the other element or there may be an intervening element. The terms "vertical," "horizontal," "left," "right," and similar expressions used herein are for illustrative purposes only and do not represent the only possible implementation.
[0036] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains. The terminology used herein in the description of the invention is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.
[0037] This invention provides an intelligent protective cabinet 10 for a lighting system, such as... Figure 1 and Figure 2 As shown, it includes a cabinet body 100 and a cabinet door 200 that covers the cabinet body 100. The cabinet door 200 has an observation window 210, which is usually fitted with glass to prevent dust and moisture from entering the cabinet body 100. Furthermore, as... Figure 3 As shown, a searchlight 220 and a reflector 230 are provided on the inside of the observation window 210. A lamp holder 240 (such as...) is provided on the inside of the cabinet door 200. Figure 4 As shown, the searchlight 230 is fixedly installed on the lamp holder 240, and the reflector 230 is rotatably positioned above the searchlight 220.
[0038] Specifically, such as Figure 4As shown, the reflector 230 includes a pivot 231, a reflective part 232, and an operating lever 233. The pivot 231 is hinged to the lamp holder 240. A clearance hole 201 is provided on the cabinet door 200, and the operating lever 233 passes through the clearance hole 201. The side of the reflective part 232 facing the searchlight 220 has a mirror structure. The mirror structure of the reflective part 232 can reflect the light shining on it, thereby changing the angle of light illumination.
[0039] In this embodiment, a lighting switch 250 is provided on the outside of the cabinet door 200. The lighting switch 250 is electrically connected to the searchlight 220. The staff can control the searchlight 220 to turn on or off by touching the lighting switch 250.
[0040] The intelligent protective cabinet 10 for lighting systems of the present invention protects the integrated controller and provides illumination inside the cabinet at night or in other low-light conditions, thereby facilitating inspection by staff. Its working principle is as follows:
[0041] During inspection, staff members observe the readings and other conditions of the controller in cabinet 100 through the observation window 210 on cabinet door 200. When the ambient light is insufficient, staff members turn on the lighting switch 250 to power on the spotlight 220, which illuminates the inside of cabinet 100, allowing staff members to see the readings and other conditions of the controller.
[0042] However, since the controllers inside the cabinet 100 are arranged in layers, while the positions of the observation window 210 and the spotlight 220 remain fixed, there will be two problems: First, the light from the spotlight 220 will reflect off some of the controllers, making it difficult for staff to see the readings. Second, staff will not be able to see the controllers placed below the cabinet 100 from the observation window 210, resulting in blind spots.
[0043] To this end, the intelligent protective cabinet 10 of the present invention is specially designed with a reflector 230. In use, the staff turns on the searchlight 220 to check the controller inside the cabinet. The light from the searchlight 220 shines on the reflective part 232 of the reflector 230 and is reflected onto the controller by the mirror structure. When a reflection occurs, the staff can swing the operating lever 233 to rotate the reflector 230 around the pivot 231 by a certain angle, thereby changing the reflection angle of the reflective part 232 and eliminating the reflection. When it is necessary to observe the controller below the cabinet 100, the staff can also swing the operating lever 233 to adjust the mirror structure of the reflector 232 to a suitable angle, so that the reading of the controller below can be projected onto the mirror structure of the reflector 232. In this way, by using the principle of a mirror, the staff can observe the internal situation of the cabinet 100 with almost no blind spots.
[0044] In practical use, the controller inside the protective cabinet generates a large amount of heat due to prolonged use. If not dissipated in time, the high temperature can damage the mainboard and circuitry within the controller. To ensure effective heat dissipation, ventilation windows are typically installed on the protective cabinet to allow air circulation and balance the internal and external temperatures. However, air circulation also allows dust and moisture to enter the cabinet through the ventilation windows. Therefore, in this invention, as... Figure 5 As shown, the intelligent protective cabinet 10 for the lighting system also includes a dustproof and heat dissipation device 20. The dustproof and heat dissipation device 20 can be opened when heat dissipation is needed to allow air circulation inside and outside the cabinet; it can also be closed when heat dissipation is not needed to prevent dust and moisture. Furthermore, to achieve intelligent control, the dustproof and heat dissipation device 20 is mainly controlled by programs and electric components; however, considering the risk of damage to the electric components, the dustproof and heat dissipation device 20 also requires manual control in case of damage.
[0045] Specifically, the dustproof and heat dissipation device 20 is installed on the side wall of the cabinet 100, such as... Figure 6 As shown, the dustproof heat dissipation device 20 includes: guide vanes 300, a drive assembly 400, and a transmission assembly 500. The guide vanes 300 are rotatably mounted on the cabinet 100. The drive assembly 400 drives the guide vanes 300 to rotate through the transmission assembly 500. There are multiple guide vanes 300, which are evenly arranged. When the dustproof heat dissipation device 20 is turned on, the guide vanes 300 rotate to an inclined state, resulting in a large gap between adjacent guide vanes 300. When the dustproof heat dissipation device 20 is turned off, the guide vanes 300 rotate to a vertical state, resulting in adjacent guide vanes 300 being in contact with each other.
[0046] Furthermore, such as Figure 7 and Figure 8 As shown, the drive assembly 400 includes: a motor 410, a telescopic rod 420, a sleeve 430, a base 440, a deflector 450, and a positioning auxiliary component 460. The motor 410 is fixedly mounted on the cabinet 100. The motor 410 drives the sleeve 430 to perform reciprocating linear motion via the telescopic rod 420. A telescopic elastic element 431 is provided inside the sleeve 430, and the telescopic rod 420 passes through the telescopic elastic element 431. A collar 421 is provided on the telescopic rod 420, and a blocking plate 432 is provided on the end face of the sleeve 430. One end of the telescopic elastic element 431 abuts against the collar 421, and the other end abuts against the blocking plate 432. The base 440 is fixedly mounted on the cabinet 100, and the deflector 450 is rotatably mounted on the base 440. The sleeve 430 and the deflector 450 are hinged together. The sway bar 450 is provided with a support arm 451, the positioning auxiliary part 460 is hinged to the support arm 451, the base 440 is provided with a locking pin 441, and the free end of the positioning auxiliary part 460 is provided with a retaining groove 461 that cooperates with the locking pin 441 (e.g.,Figure 9 (As shown). Preferably, the telescopic elastic element 431 is a spring structure.
[0047] Preferred, such as Figure 9 As shown, the positioning aid 460 is provided with a tail fin 462, which presses against or disengages from the support arm 451. Permanent magnets 452 are provided at corresponding positions on both the tail fin 462 and the support arm 451 (the permanent magnets 452 can stably press the tail fin 462 onto the support arm 451). Furthermore, a clearance groove 463 is provided on the positioning aid 460 to avoid the locking pin 441; meanwhile, the locking pin 441 has a cylindrical structure, and the retaining groove 461 on the positioning aid 460 has a semi-circular arc structure. In use, the positioning aid 460 has two states. First, the tail fin 462 of the positioning aid 460 is pressed against the support arm 451, and the positioning aid 460 acts as an extension of the support arm 451. The clearance groove 463 prevents the positioning aid 460 from interfering with the locking pin 441 during movement. Second, the tail fin 462 of the positioning aid 460 is detached from the support arm 451, and the retaining groove 461 is pressed against the locking pin 441. The semi-circular structure of the retaining groove 461 allows for a tighter fit with the locking pin 441. The two states of the positioning aid 460 play different roles during use; the specific working principles will be explained below.
[0048] In this embodiment, as Figure 8 As shown, the output shaft of the motor 410 has an external thread, and the telescopic rod 420 has an internal thread. The output shaft of the motor 410 passes through the telescopic rod 420. The motor 410 drives the telescopic rod 420 to slide through the cooperation of the external and internal threads. In this way, similar to a lead screw structure, the rotational motion of the output shaft of the motor 410 can be converted into the linear motion of the telescopic rod 420.
[0049] In this embodiment, the sleeve 430 is hinged to the deflector 450, specifically, as shown below. Figure 9 As shown, the deflector 450 is also provided with a hinge hole 453, which is an oblong hole structure. The sleeve 430 is provided with an extension section 433, which is hinged to the deflector 450 through the hinge hole 453. The reason for designing the hinge hole 453 as an oblong hole structure is that the sleeve 430 moves linearly while the deflector 450 rotates in an arc. When the sleeve 430 pulls the deflector 450 to rotate, there is a slight change in the contact point between the two. Therefore, designing the hinge hole 453 as an oblong hole structure can provide the sleeve 430 with the necessary room for movement.
[0050] In this embodiment, as Figure 7As shown, the transmission assembly 500 includes a rack 510, a driving gear 520, and a driven gear 530. The rack 510 is slidably mounted on the cabinet 100, the driving gear 520 is fixedly mounted on the deflector 450, and the driven gear 530 is fixedly mounted on one end of the guide vane 300. The driving gear 520 meshes with the rack 510, and the rack 510 meshes with the driven gear 530. Thus, rotation of the deflector 450 causes the driving gear 520 to rotate as well, and the driving gear 520, through the rack 510, drives the driven gear 530 to rotate, thereby causing the guide vane 300 to rotate.
[0051] Next, based on the above structure, the main working principle of the dustproof heat dissipation device 20 of the present invention will be explained. To make the explanation clearer, the working environment of the dustproof heat dissipation device 20 will be divided into two situations: "electrical components are not damaged" and "electrical components are damaged".
[0052] Under the condition that "the electric components are not damaged," that is, when the motor 410 can work normally, the dustproof and heat dissipation device 20 is mainly controlled by the program and the electric components. Specifically: when the temperature sensor inside the cabinet 100 detects that the controller temperature is too high, it will send a signal to the motor 410. After receiving the signal, the motor 410 starts to drive the telescopic rod 420 to move linearly, thereby pulling the sleeve 430 to move closer to the motor 410. Since the deflector 450 is hinged to the sleeve 430, under the pull of the sleeve 430, the deflector 450 and its drive gear 520 will rotate a certain angle (e.g., Figure 10 (As shown). The driving gear 520 drives the driven gear 530 to rotate via the rack 510, thereby causing the guide vane 300 to rotate and opening the dustproof and heat dissipation device 20. Similarly, when the controller temperature decreases, the motor 410 receives a signal and drives the telescopic rod 420 to move in the opposite direction, causing the deflector 450 and the driving gear 520 to rotate in the opposite direction, which can drive the guide vane 300 to rotate until the dustproof and heat dissipation device 20 is closed.
[0053] In the above situation, the positioning auxiliary component 460 is in the first state, that is, the tail fin 462 is stably pressed onto the support arm 451 by the permanent magnet 452, and the positioning auxiliary component 460 is equivalent to an extension rod of the support arm 451. The positioning auxiliary component 460 rotates together with the deflector 450. In this case, the clearance groove 463 can prevent the movement of the positioning auxiliary component 460 from getting stuck with the locking pin 441;
[0054] In the event of "electric component failure," i.e., when motor 410 cannot function properly, the dustproof and heat dissipation device 20 requires manual assistance. Specifically, the operator moves the positioning auxiliary component 460 upwards. At this time, the tail fin 462 of the positioning auxiliary component 460 is pressed against the support arm 451 (e.g., Figure 11(As shown), moving the positioning auxiliary component 460 can drive the sway component 450 to rotate together, which in turn drives the guide vane 300 through the transmission component 500, thereby opening the dustproof heat dissipation device 20. Subsequently, in order to keep the dustproof heat dissipation device 20 stably open, the operator must overcome the attraction of the permanent magnet 452 and, while keeping the sway component 450 stationary, rotate the positioning auxiliary component 460 by a certain angle (equivalent to bending the connection between the positioning auxiliary component 460 and the sway component 450), so that the retaining groove 461 of the positioning auxiliary component 460 presses against the locking pin 441 (as shown). Figure 12 (As shown). At this time, the positioning auxiliary member 460, which abuts against the locking pin 441, provides support for the sway member 450, thereby preventing the sway member 450 from resetting and keeping the dustproof heat dissipation device 20 stably in the open state. When resetting is required, the operator lifts the positioning auxiliary member 460 a certain distance to disengage it from the locking pin 441, and then the positioning auxiliary member 460 and the sway member 450 can be rotated back to their original positions, thereby closing the dustproof heat dissipation device 20.
[0055] It should be noted that the dustproof and heat dissipation device 20 of the present invention is mainly controlled by a program and electric components. Through the cooperation of a temperature sensor and a drive assembly 400, intelligent control of the dustproof and heat dissipation device 20 is achieved, thereby meeting heat dissipation requirements while also providing dust and moisture protection, saving manpower and resources, and improving work efficiency. At the same time, the present invention also considers the possibility of damage to the electric components, allowing the dustproof and heat dissipation device 20 to be manually controlled to still ensure heat dissipation.
[0056] It is particularly important to emphasize that the electric and manual components of the dustproof and heat dissipation device 20 are not independent of each other. In the event of "electrical component failure," the output shaft of the motor 410 cannot rotate, therefore the telescopic rod 420 cannot move smoothly in a straight line; that is, the position of the telescopic rod 420 is fixed. At this time, the setting of the sleeve 430 and the telescopic elastic element 431 creates the necessary conditions for the rotation of the deflector 450. When the operator rotates the positioning auxiliary component 460 and the deflector 450 upwards, the deflector 450 pushes the sleeve 430 towards the motor 410. Since the position of the telescopic rod 420 is fixed, the telescopic elastic element 431 inside the sleeve 430 is compressed (e.g., ...). Figure 11 As shown), the telescopic elastic element 431 provides the necessary space for the movement of the sleeve 430. Furthermore, when the positioning aid 460 abuts against the locking pin 441, the compressed telescopic elastic element 431 provides an elastic force to the sleeve 430, causing the deflector 450 to tend to return to its original position. This causes the support arm 451 of the deflector 450 to provide pressure to the positioning aid 460, which makes the positioning aid 460 more stably pressed against the locking pin 441 (as shown). Figure 12 (As shown).
[0057] Furthermore, the telescopic elastic element 431 also has a "fault-tolerant" function. When the motor 410 is working normally, during the process of the dustproof and heat dissipation device 20 changing from open to closed, since the distance the motor 410 drives the telescopic rod 420 to move is fixed, without the telescopic elastic element 431, if some objects are caught between the guide vanes 300, or if the guide vanes 300 interfere with each other due to assembly errors, the transmission component 500 will jam, preventing the telescopic rod 420 from moving to the designated position, which could easily damage the motor 410. However, with the telescopic elastic element 431 installed, when the transmission component 500 jams, the telescopic rod 420 can compress the telescopic elastic element 431, so the telescopic rod 420 can still move to the designated position. That is, the telescopic elastic element 431 allows the dustproof and heat dissipation device 20 to allow the guide vanes 300 to not be completely closed, thereby protecting the normal operation of the motor 410.
[0058] In summary, the intelligent protective cabinet 10 for lighting systems of the present invention can provide illumination inside the cabinet when staff are conducting inspections, thereby facilitating inspections and improving work efficiency.
[0059] The embodiments described above are merely illustrative of several implementations of the present invention, and while the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the invention patent. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of the present invention, and these all fall within the protection scope of the present invention. Therefore, the protection scope of this invention patent should be determined by the appended claims.
Claims
1. A smart guard cabinet for a lighting system, characterized in that, The utility model provides a kind of cabinet, including cabinet and the cabinet door that covers on the cabinet, observation window is set on the cabinet door, the inside of the observation window is equipped with searchlight and reflector plate;The inside of the cabinet door is equipped with lamp holder, the searchlight is fixedly installed on the lamp holder, the reflector plate is rotatably equipped above the searchlight; The reflector plate includes: pivot, reflector part and operating lever, the pivot is hinged with the lamp holder, the cabinet door is equipped with avoiding hole, the operating lever is equipped with the avoiding hole, the side of the reflector part facing the searchlight is mirror surface structure; The sidewall of the cabinet is equipped with dustproof heat dissipation device;The dustproof heat dissipation device includes: guide vane, driving assembly and transmission assembly, the guide vane is rotatably equipped on the cabinet, the driving assembly is driven the guide vane rotation by the transmission assembly; The driving assembly includes: motor, telescopic rod, sleeve, base, deflection piece and positioning auxiliary part;The motor is fixedly installed on the cabinet, the motor drives the sleeve to do reciprocating linear motion by the telescopic rod, the sleeve is equipped with telescopic elastic element, the telescopic rod is equipped with the telescopic elastic element, the telescopic rod is equipped with shaft ring, the end surface of the sleeve is equipped with blocking piece;The base is fixedly arranged on the cabinet, the deflection piece is rotatably arranged on the base, the sleeve is hinged with the deflection piece;The deflection piece is equipped with support arm, the positioning auxiliary part is hinged with the support arm, the base is equipped with locking nail, the free end of the positioning auxiliary part is equipped with clamping groove matched with the locking nail; The positioning auxiliary part is equipped with tail wing, the tail wing holds or separates the support arm, the tail wing and the corresponding position of the support arm are all equipped with permanent magnet;The positioning auxiliary part is equipped with avoiding slot, the avoiding slot is used to avoid the locking nail, the locking nail is cylindrical structure, the clamping groove on the positioning auxiliary part is semicircular arc structure.
2. The intelligent guard cabinet for lighting systems of claim 1, wherein, The outside of the cabinet door is equipped with lighting switch, and the lighting switch is electrically connected with the searchlight.
3. The intelligent guard cabinet for lighting systems of claim 1, wherein, The deflection piece is also equipped with hinged hole, the hinged hole is a waist-shaped hole structure, the sleeve is equipped with extension section, and the extension section is hinged with the deflection piece through the hinged hole.
4. The intelligent guard cabinet for lighting systems of claim 1, wherein, The output shaft of the motor is equipped with external thread, the telescopic rod is equipped with internal thread, the output shaft of the motor is equipped in the telescopic rod, and the motor drives the telescopic rod to slide through the cooperation of the external thread and the internal thread.
5. The intelligent guard cabinet for lighting systems of claim 1, wherein, The transmission assembly includes: rack, driving gear and driven gear; The rack is slidably arranged on the cabinet, the driving gear is fixedly arranged on the deflection piece, and the driven gear is fixedly arranged on one end of the guide vane;The driving gear is engaged with the rack, and the rack is engaged with the driven gear.
Citation Information
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