Fire extinguishing system upper control device with emergency lighting function

By designing the fire protection system upper control device that connects the ejection, traction, telescopic and locking components, rapid emergency lighting is achieved, solving the problems of limited lighting angle and response delay in the existing devices, and improving the lighting efficiency of the fire protection operating surface and the reliability of the equipment.

CN120332719AActive Publication Date: 2025-07-18DINGREN DIGITAL TECHNOLOGY (HANGZHOU) CO LTD
View PDF 5 Cites 0 Cited by

Patent Information

Application Number
CN202510682329.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-26
Publication Date
2025-07-18
Estimated Expiration
2045-05-26

AI Technical Summary

Technical Problem

In the existing fire control devices, the lighting angle and range of fixed emergency lighting lamps are limited and are prone to dust accumulation and damage. The external independent lighting equipment needs to be manually started and the electric drive structure has a response delay and the risk of mechanical failure, which is difficult to meet the strict requirements of fire emergency scenarios.

Method used

A fire protection system upper control device including ejection components, traction components, telescopic components and locking components is designed. The spring element provides instantaneous elasticity to make the lighting components pop out quickly. Combined with the linkage design of the driving components and the mating components, the lighting components can be quickly expanded and concealed, avoiding long-term exposure, and LED light panels are used to provide lighting.

Benefits of technology

It realizes rapid emergency lighting, expands the lighting coverage, avoids the delays and risks of mechanical failures of traditional electric drives, and improves the lighting efficiency of the fire-fighting operation surface and the neatness of the equipment.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120332719A_ABST
    Figure CN120332719A_ABST
Patent Text Reader

Abstract

The invention discloses a fire-fighting system upper control device with an emergency lighting function, which mainly comprises a fire-fighting control device and an emergency lighting mechanism, a pop-up part drives a pushing table to lift along a sliding column through a spring A, and a telescopic part drives a telescopic sleeve to stretch out and draw back through a lead screw A to adjust the lighting height. The traction component drives a worm gear and a worm through a motor to control a lead screw B and drive a traction table to move, the locking component is attracted by an electromagnet and matched with a spring B to achieve locking and releasing of a pushing table, the lighting component adopts a slope LED lamp panel, power is triggered by a limiting plate button, the lighting component is automatically lightened when popped out, and rapid emergency lighting is achieved through mechanical linkage. And the emergency lighting efficiency of the fire-fighting operation surface is effectively improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the technical field of fire control system control devices, and more particularly to an upper control device of a fire control system with an emergency lighting function. Background Art

[0002] The upper control device of a fire control system is a core device in fire emergency management, used for centralized monitoring and control of the operating status of fire-fighting facilities. In emergency situations such as fires, the fire control device needs to operate reliably, and the emergency lighting function is crucial for operators to accurately operate the equipment in a dark or smoky environment;

[0003] Existing fire control devices usually adopt fixed emergency lighting lamps or externally mounted independent lighting devices. Although the fixed lighting lamps have a simple structure, their lighting angles and ranges are limited, and they are prone to dust accumulation or damage when exposed to the external environment for a long time;

[0004] The externally mounted independent lighting devices require manual installation and activation, which may affect the emergency response speed due to operation delays in emergency situations;

[0005] In addition, some fire control devices adopt an electric-driven telescopic lighting structure, but such structures rely on motor drive, have problems such as response delay and high risk of mechanical failure, and are difficult to meet the stringent requirements for lighting speed and reliability in fire emergency scenarios. Summary of the Invention

[0006] Aiming at the above deficiencies existing in the prior art, the purpose of the present invention is to provide an upper control device of a fire control system that can achieve rapid emergency lighting.

[0007] The technical solution adopted by the present invention to achieve the above purpose is: an upper control device of a fire control system with an emergency lighting function, including a fire control device. The fire control device includes a device chassis, and an emergency lighting mechanism is provided on the back of the device chassis. The emergency lighting mechanism includes a pop-up component, a traction component, a telescopic component, a lighting component, and a locking component. An installation cavity is provided inside the device chassis, a movement port is provided at the top of the installation cavity, the pop-up component is provided in the installation cavity, the pop-up component includes a push table capable of linear movement and an elastic element for providing a movement force to the push table. The telescopic component is provided on the push table, the top end of the telescopic component is fixedly connected to the lighting component, the push table can drive the lighting component to pass through the movement port, a driving component is provided at the bottom end of the telescopic component, and a cooperating component is provided in the installation cavity to cooperate with the driving component. When the push table performs linear movement, the driving component cooperates with the cooperating component to enable the telescopic component to generate telescopic movement;

[0008] The traction component is also provided in the installation cavity, and the traction component includes a traction table capable of linear motion;

[0009] The locking component is provided on the traction table, and the locking component can cooperate with the pushing table so that the pushing table moves synchronously when the traction table moves linearly.

[0010] In the above technical solution, the specific structure of the ejection component is as follows:

[0011] The ejection component further includes a sliding column and a limiting plate. The elastic element is a spring A. The sliding column is fixedly connected in the installation cavity. The pushing table is slidably connected to the sliding column. The top end of the sliding column is fixedly connected with the limiting plate;

[0012] The spring A is sleeved on the sliding column. The bottom end of the spring A is fixedly connected to the bottom surface of the installation cavity, and the top end of the spring A is fixedly connected to the pushing table;

[0013] Furthermore, a buffer rubber pad is fixedly connected to the bottom surface of the limiting plate.

[0014] In the above technical solution, the telescopic component adopts the following structure:

[0015] The telescopic component includes a fixed sleeve, a telescopic sleeve, and a lead screw A. The fixed sleeve is fixedly connected to the pushing table. The fixed sleeve is provided with a sliding groove, and the telescopic sleeve is provided with a sliding strip. The telescopic sleeve is located inside the fixed sleeve, and the sliding strip is slidably connected in the sliding groove;

[0016] The bottom end of the telescopic sleeve is provided with a lead screw seat. The lead screw A is provided inside the fixed sleeve. The lead screw A is threadedly connected to the lead screw seat, and the top end of the lead screw A is located inside the telescopic sleeve;

[0017] The top end of the telescopic sleeve is fixedly connected with the lighting component;

[0018] The driving component is provided on the pushing table, and the driving component is power-connected to the lead screw A.

[0019] In the above technical solution, the driving component is selected as follows:

[0020] The driving component includes an input shaft, bevel gear A, bevel gear B, transmission shaft, and transmission gear. The bottom end of the lead screw A is fixedly connected to the input shaft. The bottom end of the input shaft passes through the pushing platform and is fixedly connected to bevel gear A. The transmission shaft is rotatably connected to the pushing platform, and bevel gear B is fixedly connected to the transmission shaft. Bevel gear A and bevel gear B are meshed and connected. The transmission gear is fixedly connected to the transmission shaft;

[0021] The fitting uses a transmission rack, and the transmission gear meshes with the transmission rack.

[0022] In the above technical solution, the traction component adopts the following structure:

[0023] The traction component further includes a driving motor, lead screw B, guide post, worm, and worm gear. The guide post is fixedly connected to the installation cavity. The traction platform is slidably connected to the guide post. The lead screw B is threadedly connected to the traction platform. The bottom end of the lead screw B is fixedly connected to a power shaft, and the worm gear is fixedly connected to the power shaft. The worm is rotatably connected to the installation cavity. The worm and the worm gear are meshed and connected. The driving motor is fixedly connected to the installation cavity, and the driving motor is power-connected to the worm.

[0024] In the above technical solution, the locking component selects the following structure:

[0025] The locking component includes an electromagnet, adsorption platform, locking head, and spring B. A locking cavity is provided on the traction platform. A locking port is provided at one end of the locking cavity facing the pushing platform. A mounting plate is fixedly connected to the locking cavity, and the electromagnet is fixedly connected to the mounting plate. A moving plate is provided in the locking cavity. A traction column is fixedly connected to the moving plate. The end of the traction column passes through the mounting plate and is fixedly connected to the locking head. The locking head passes through the locking port. An adsorption platform is provided on the moving plate, and the adsorption platform cooperates with the electromagnet;

[0026] A tail plate is fixedly connected to the locking cavity. A moving column is fixedly connected to the tail plate. The moving column passes through the moving plate, and spring B is sleeved on the moving column. One end of spring B is fixedly connected to the moving plate, and the other end is fixedly connected to the tail plate;

[0027] A locking groove is provided on the pushing platform to cooperate with the locking head.

[0028] In the above technical solution, the structure of the lighting component is:

[0029] The lighting component includes a lighting platform and an LED light board. The top end of the telescopic component is fixedly connected to the lighting platform. An inclined surface is provided on the lighting platform, and the inclined surface faces the operation surface of the fire control device. The LED light board is fitted and connected to the inclined surface.

[0030] When the lighting component is located in the installation cavity, the top surface of the lighting platform is flush with the top surface of the movement port.

[0031] In the above technical solution, a button is fixedly connected to the limiting plate, and a storage battery is fixedly connected inside the device chassis. The storage battery, the button, and the LED light board are electrically connected. When the pushing platform touches the button, the storage battery supplies power to the LED light board. When the pushing platform does not touch the button, the storage battery cannot supply power to the LED light board.

[0032] In the above technical solution, both the electromagnet and the driving motor are signal-connected to the internal control board of the fire control device.

[0033] Advantages of the present invention:

[0034] When emergency lighting is required for the fire control device, the locking component can release the locking limit of the pushing platform. Then, under the elastic force of the spring element, the pushing platform drives the telescopic component to rise, which also makes the lighting component quickly move out of the installation cavity to the outside world. Thus, the fire control device is emergently illuminated by the lighting component. This kind of instantaneous elastic force release provided by the spring element can realize the quick pop-up of the lighting component, meet the harsh requirements for lighting speed in fire emergency scenarios, and avoid the possible delay of traditional electric drive.

[0035] Furthermore, during the rising process of the pushing platform, the linkage design of the driving component and the cooperating part makes the telescopic component automatically extend without manual intervention, so as to increase the height of the lighting component, expand the lighting coverage range, and have excellent lighting effects.

[0036] When the emergency lighting work is completed, the traction platform in the traction component can rise corresponding to the pushing platform. Then, the traction platform and the pushing platform are connected through the locking component. When the traction platform in the traction component descends, it can synchronously drive the pushing platform to descend and compress the spring. At the same time, the driving component and the cooperating part are linked to realize the retraction of the telescopic component. Finally, the lighting component extends into the installation cavity, thus realizing the hidden installation of the lighting component, avoiding damage caused by long-term exposure, and ensuring the clean appearance of the fire control device. BRIEF DESCRIPTION OF THE DRAWINGS

[0037] Figure 1 It is a schematic structural diagram of the present invention during emergency lighting;

[0038] Figure 2Schematic structural diagram of the present invention when there is no emergency lighting;

[0039] Figure 3 Schematic structural diagram of the interior of the device chassis of the present invention during emergency lighting;

[0040] Figure 4 Schematic structural diagram of the interior of the device chassis of the present invention when there is no emergency lighting;

[0041] Figure 5 Schematic structural diagram of the emergency lighting mechanism in the present invention;

[0042] Figure 6 Schematic structural diagram of another angle of the emergency lighting mechanism in the present invention;

[0043] Figure 7 For Figure 5 Detail structural diagram of part a therein;

[0044] Figure 8 For Figure 6 Detail structural diagram of part b therein;

[0045] Figure 9 Schematic structural diagram of the telescopic component in the present invention;

[0046] Figure 10 For Figure 9 Detail structural diagram of part c therein;

[0047] Figure 11 Schematic structural diagram of the locking component in the present invention.

[0048] In the figure: 100 Fire control device, 101 Device chassis, 102 Installation cavity, 103 Movement port;

[0049] 200 Ejecting component, 201 Sliding column, 202 Limiting plate, 203 Pushing platform, 204 Elastic element;

[0050] 300 Traction component, 301 Traction platform, 302 Driving motor, 303 Screw B, 304 Guide post, 305 Worm, 306 Worm gear;

[0051] 400 Telescopic component, 401 Fixed sleeve, 402 Telescopic sleeve, 403 Screw A, 404 Sliding groove, 405 Sliding strip, 406 Screw seat;

[0052] 500 Lighting component, 501 Lighting platform, 502 LED light board;

[0053] 600 Locking component, 601 Electromagnet, 602 Locking head, 603 Spring B, 604 Locking cavity, 605 Locking port, 606 Installation plate, 607 Movement plate, 608 Traction column, 609 Tail plate, 610 Movement column, 612 Locking groove;

[0054] 700 driving component, 701 input shaft, 702 bevel gear A, 703 bevel gear B, 704 transmission shaft, 705 transmission gear;

[0055] 800 fitting. Specific implementation manner

[0056] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention.

[0057] Please refer to Figures 1-3 , an upper control device of a fire protection system with an emergency lighting function, including a fire control device 100. Among them, the fire control device 100 includes a device chassis 101;

[0058] Furthermore, an emergency lighting mechanism is provided on the back of the device chassis 101. In the embodiment, the emergency lighting mechanism includes a pop-up component 200, a traction component 300, a telescopic component 400, a lighting component 500, and a locking component 600. That is, an installation cavity 102 is provided inside the device chassis 101, and a movement port 103 is provided at the top of the installation cavity 102. A pop-up component 200 is provided in the installation cavity 102;

[0059] Please refer to Figure 3 , Figure 4 , the pop-up component 200 includes a sliding column 201, a limiting plate 202, a pushing platform 203, and an elastic element 204. In this embodiment, the elastic element 204 is selected as spring A. A sliding column 201 is fixedly connected in the installation cavity 102. A pushing platform 203 is slidably connected to the sliding column 201. A limiting plate 202 is fixedly connected to the top end of the sliding column 201. Furthermore, a spring A is sleeved on the sliding column 201. The bottom end of the spring A is fixedly connected to the bottom surface of the installation cavity 102, and the top end of the spring A is fixedly connected to the pushing platform 203. In this way, the elastic component can provide a movement force for the pushing platform 203, so that the pushing platform 203 can perform a linear movement on the sliding column 201. When the pushing platform 203 is pressed down, the elastic component will be compressed. To reduce the impact of the pushing platform 203 on the limiting plate 202, a buffer rubber pad is fixedly connected to the bottom surface of the limiting plate 202;

[0060] Please refer to Figure 5 , Figure 6 , Figure 9 , Figure 10, a telescopic member 400 is further provided on the pushing platform 203. The top end of the telescopic member 400 is fixedly connected with a lighting member 500. The telescopic member 400 is mainly used to lift the lighting height of the lighting member 500. Specifically, the telescopic member 400 includes a fixed sleeve 401, a telescopic sleeve 402, and a lead screw A 403. That is, the fixed sleeve 401 is fixedly connected to the pushing platform 203, and a sliding groove 404 is provided on the fixed sleeve 401. A sliding bar 405 is provided on the telescopic sleeve 402. The telescopic sleeve 402 is located inside the fixed sleeve 401, and the sliding bar 405 is slidably connected in the sliding groove 404;

[0061] In addition, a lead screw seat 406 is further provided at the bottom end of the telescopic sleeve 402. A lead screw A 403 is provided inside the fixed sleeve 401. The lead screw A 403 is threadedly connected to the lead screw seat 406, and the top end of the lead screw A 403 is located inside the telescopic sleeve 402. The top end of the telescopic sleeve 402 here is fixedly connected with a lighting member 500;

[0062] Furthermore, please refer to Figure 8 、 Figure 9 , a driving member 700 is further provided on the pushing platform 203. The driving member 700 is power-connected to the lead screw A 403, and a mating member 800 is provided in the installation cavity 102 to cooperate with the driving member 700. More specifically, the driving member 700 includes an input shaft 701, a bevel gear A 702, a bevel gear B 703, a transmission shaft 704, and a transmission gear 705. That is, the bottom end of the lead screw A 403 is fixedly connected with the input shaft 701. The bottom end of the input shaft 701 passes through the pushing platform 203 and is fixedly connected with a bevel gear A 702. A transmission shaft 704 is rotatably connected to the pushing platform 203, and a bevel gear B 703 is fixedly connected to the transmission shaft 704. The bevel gear A 702 is meshed with the bevel gear B 703. A transmission gear 705 is fixedly connected to the transmission shaft 704. The above-mentioned mating member 800 adopts a transmission rack, and the transmission gear 705 is meshed with the transmission rack;

[0063] When the pushing platform 203 drives the telescopic member 400 and the lighting member 500 to pass out from the movement port 103, the transmission gear can be rotated under the action of the mating member 800 (transmission rack). In this way, the bevel gear B 703 can drive the bevel gear A 702 to rotate. Finally, the power is transmitted to the lead screw A 403 through the input shaft 701. When the lead screw A 403 rotates, the telescopic sleeve 402 can move upward in the fixed sleeve 401, thereby lifting the height of the lighting member 500;

[0064] When the pushing platform 203 drives the telescopic member 400 and the lighting member 500 to move into the installation cavity 102, under the action of the mating member 800 (transmission rack), the lead screw A403 rotates in the opposite direction, so that the telescopic sleeve 402 can retract into the fixed sleeve 401, thereby reducing the height of the lighting member 500 until the lighting member 500 is located within the installation cavity 102;

[0065] Furthermore, please refer to Figure 5 、 Figure 7 There is also a traction member 300 provided in the installation cavity 102. The traction member 300 includes a traction platform 301, a drive motor 302, a lead screw B303, a guide post 304, a worm 305, and a worm gear 306. That is, a guide post 304 is fixedly connected in the installation cavity 102, a traction platform 301 is slidably connected to the guide post 304, a lead screw B303 is threadedly connected to the traction platform 301, the bottom end of the lead screw B303 is fixedly connected to a power shaft, a worm gear 306 is fixedly connected to the power shaft, a worm 305 is rotatably connected in the installation cavity 102, the worm 305 is meshed with the worm gear 306, and a drive motor 302 is fixedly connected in the installation cavity 102. The drive motor 302 is power-connected to the worm 305. In this way, the drive motor 302 can drive the worm 305 to rotate, causing the worm 305 to drive the worm gear 306 to rotate. When the worm gear 306 rotates, the lead screw B303 rotates, so that the traction platform 301 can perform a linear motion on the guide post 304;

[0066] In addition, please refer to Figure 5 、 Figure 11 There is also a locking member 600 provided on the traction platform 301. The locking member 600 can cooperate with the pushing platform 203 so that the traction platform 301 drives the pushing platform 203 to move synchronously when performing a linear motion. In this embodiment, the locking member 600 includes an electromagnet 601, an adsorption platform, a locking head 602, and a spring B603. That is, a locking cavity 604 is provided on the traction platform 301, a locking port 605 is provided at one end of the locking cavity 604 facing the pushing platform 203, a mounting plate 606 is fixedly connected in the locking cavity 604, an electromagnet 601 is fixedly connected to the mounting plate 606, a moving plate 607 is provided in the locking cavity 604, a traction column 608 is fixedly connected to the moving plate 607, the end of the traction column 608 passes through the mounting plate 606 and is fixedly connected to a locking head 602, the locking head 602 passes out of the locking port 605, and an adsorption platform is provided on the moving plate 607, and the adsorption platform cooperates with the electromagnet 601;

[0067] A tail plate 609 is fixedly connected inside the locking cavity 604. A moving column 610 is fixedly connected to the tail plate 609. The moving column 610 passes through the moving plate 607. A spring B603 is sleeved on the moving column 610. One end of the spring B603 is fixedly connected to the moving plate 607, and the other end is fixedly connected to the tail plate 609;

[0068] A locking groove 612 is provided on the pushing platform 203 to cooperate with the locking head 602;

[0069] When the pushing platform 203 is at the bottom and the elastic element 204 is compressed, at this time, the electromagnet 601 adsorbs the adsorption platform. In this way, the spring B603 is stretched, and the locking head 602 is inserted into the locking groove 612. In this way, by using the self-locking effect of the worm 305 and the worm gear 306, it is possible to prevent the pushing platform 203 and the traction platform 301 from moving due to the elastic force of the spring element;

[0070] When emergency lighting is required, the electromagnet 601 can be powered off. Then, under the elastic force of the spring B603, the locking head 602 is quickly disengaged from the locking groove 612. Then, under the action of the spring element, the pushing platform 203 drives the lighting component 500 to quickly pass out of the moving port 103, so as to perform lighting operations;

[0071] When the lighting is completed, the driving motor 302 can be used to drive the lead screw B303 to rotate. In this way, the traction platform 301 rises to a predetermined height. Then, the electromagnet 601 adsorbs the adsorption platform. In this way, the spring B603 is stretched, and the locking head 602 is inserted into the locking port 605. When the driving motor 302 drives the traction platform 301 to descend, the traction platform 301 can synchronously drive the pushing platform 203 to descend. In this way, the elastic element 204 can be compressed;

[0072] Furthermore, the lighting component 500 includes a lighting platform 501 and an LED light board 502. The top end of the telescopic component 400 is fixedly connected to the lighting platform 501. The lighting platform 501 is provided with an inclined surface facing the operation surface of the fire control device 100. The LED light board 502 is fitted and connected to the inclined surface. In this way, the lighting operation can be improved through the LED light board 502, and the lighting is directed towards the operation surface of the fire control device 100 to ensure sufficient lighting of the operation surface;

[0073] In addition, a button is fixedly connected to the limiting plate 202. A storage battery is fixedly connected inside the device chassis 101. The storage battery, the button and the LED light board 502 are electrically connected. When the pushing platform 203 touches the button, the storage battery supplies power to the LED light board 502. When the pushing platform 203 does not touch the button, the storage battery cannot supply power to the LED light board 502. In this way, after the elastic element 204 quickly pushes the pushing platform 203, the LED light board 502 can be automatically lit, thereby reducing operations and accelerating the emergency lighting efficiency;

[0074] In addition, when the lighting component 500 is located in the installation cavity 102, the top surface of the lighting table 501 is flush with the top surface of the movement port 103 to ensure the overall neat appearance of the fire control device 100;

[0075] Finally, the electromagnet 601 and the drive motor 302 in this embodiment are both signal-connected to the internal control board of the fire control device 100. That is to say, the internal control board of the fire control device 100 is used to control the operation of the electromagnet 601 and the drive motor 302. When the fire signal detected by the external fire detector is transmitted to the fire control device 100, the control board can automatically control the electromagnet 601 to cut off the power, thereby realizing the emergency lighting work. After the emergency lighting is completed, the operation panel on the fire control device 100 can be used to control the electromagnet 601 and the drive motor 302 to work to achieve in-situ restoration.

[0076] For those skilled in the art, it is obvious that the present invention is not limited to the details of the above exemplary embodiments, and the present invention can be implemented in other specific forms without departing from the spirit or basic characteristics of the present invention. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-limiting. The scope of the present invention is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the present invention. Any reference signs in the claims should not be regarded as limiting the claimed claim.

[0077] In addition, it should be understood that although this specification is described according to embodiments, not every embodiment only contains an independent technical solution. This narrative manner of the specification is only for clarity. Those skilled in the art should regard the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. An upper control device of a fire protection system with an emergency lighting function, comprising a fire protection control device (100), the fire protection control device (100) includes a device chassis (101), and an emergency lighting mechanism is provided on the back of the device chassis (101), characterized in that: The emergency lighting mechanism includes a pop-up component (200), a traction component (300), a telescopic component (400), a lighting component (500), and a locking component (600). An installation cavity (102) is provided inside the device chassis (101). A movement port (103) is provided at the top of the installation cavity (102). The pop-up component (200) is provided inside the installation cavity (102). The pop-up component (200) includes a push platform (203) capable of linear movement and an elastic element (204) for providing a movement force to the push platform (203). The telescopic component (400) is provided on the push platform (203). The top end of the telescopic component (400) is fixedly connected to the lighting component (500). The push platform (203) can drive the lighting component (500) to pass through the movement port (103). A driving component (700) is provided at the bottom end of the telescopic component (400). A mating component (800) is provided inside the installation cavity (102) to cooperate with the driving component (700). When the push platform (203) moves linearly, the driving component (700) cooperates with the mating component (800) to enable the telescopic component (400) to generate telescopic movement; The traction component (300) is also provided inside the installation cavity (102). The traction component (300) includes a traction platform (301) capable of linear movement; The locking component (600) is provided on the traction platform (301). The locking component (600) can cooperate with the push platform (203) so that when the traction platform (301) moves linearly, it drives the push platform (203) to move synchronously.

2. The upper control device of a fire protection system with an emergency lighting function according to claim 1, characterized in that: The pop-up component (200) further includes a sliding column (201) and a limiting plate (202). The elastic element (204) is a spring A. The sliding column (201) is fixedly connected inside the installation cavity (102). The push platform (203) is slidably connected to the sliding column (201). The top end of the sliding column (201) is fixedly connected to the limiting plate (202); The spring A is sleeved on the sliding column (201). The bottom end of the spring A is fixedly connected to the bottom surface of the installation cavity (102), and the top end of the spring A is fixedly connected to the push platform (203).

3. The upper control device of a fire protection system with an emergency lighting function according to claim 1, characterized in that: The telescopic component (400) includes a fixed sleeve (401), a telescopic sleeve (402), and a lead screw A (403). The fixed sleeve (401) is fixedly connected to the push platform (203). A sliding groove (404) is provided on the fixed sleeve (401). A sliding strip (405) is provided on the telescopic sleeve (402). The telescopic sleeve (402) is located inside the fixed sleeve (401), and the sliding strip (405) is slidably connected to the sliding groove (404); The bottom end of the telescopic sleeve (402) is provided with a lead screw seat (406). Inside the fixed sleeve (401), there is a lead screw A (403). The lead screw A (403) is threadedly connected to the lead screw seat (406), and the top end of the lead screw A (403) is located inside the telescopic sleeve (402). The top end of the telescopic sleeve (402) is fixedly connected to the lighting component (500). On the pushing platform (203), there is a driving component (700). The driving component (700) is power-connected to the lead screw A (403).

4. The upper control device of a fire protection system with an emergency lighting function according to claim 3, characterized in that: The driving component (700) includes an input shaft (701), bevel gear A (702), bevel gear B (703), transmission shaft (704), and transmission gear (705). The bottom end of the lead screw A (403) is fixedly connected to the input shaft (701). The bottom end of the input shaft (701) passes through the pushing platform (203) and is fixedly connected to the bevel gear A (702). On the pushing platform (203), the transmission shaft (704) is rotatably connected. On the transmission shaft (704), there is a fixedly connected bevel gear B (703). The bevel gear A (702) is meshed and connected with the bevel gear B (703). On the transmission shaft (704), there is a fixedly connected transmission gear (705). The fitting (800) is a transmission rack, and the transmission gear (705) is meshed with the transmission rack.

5. The upper control device of a fire protection system with an emergency lighting function according to claim 1, characterized in that: The traction component (300) further includes a driving motor (302), lead screw B (303), guide post (304), worm (305), and worm gear (306). The guide post (304) is fixedly connected inside the installation cavity (102). The traction platform (301) is slidably connected to the guide post (304). The lead screw B (303) is threadedly connected to the traction platform (301). The bottom end of the lead screw B (303) is fixedly connected to a power shaft, and a worm gear (306) is fixedly connected to the power shaft. The worm (305) is rotatably connected inside the installation cavity (102). The worm (305) is meshed and connected with the worm gear (306). The driving motor (302) is fixedly connected inside the installation cavity (102). The driving motor (302) is power-connected to the worm (305).

6. The upper control device of a fire protection system with emergency lighting function according to claim 5, characterized in that: The locking component (600) comprises an electromagnet (601), an adsorption platform, a locking head (602) and a spring B (603); a locking cavity (604) is provided on the traction platform (301); a locking opening (605) is provided at one end of the locking cavity (604) facing the pushing platform (203); a mounting plate (606) is fixedly connected in the locking cavity (604); and the electromagnet (601) is fixedly connected to the mounting plate (606). 01), a moving plate (607) is provided in the locking cavity (604), a traction column (608) is fixedly connected to the moving plate (607), an end of the traction column (608) passes through the mounting plate (606) and is fixedly connected to the locking head (602), the locking head (602) passes through the locking opening (605), an adsorption platform is provided on the moving plate (607), and the adsorption platform cooperates with the electromagnet (601); A tail plate (609) is fixedly connected in the locking cavity (604), a moving column (610) is fixedly connected to the tail plate (609), the moving column (610) passes through the moving plate (607), the spring B (603) is sleeved on the moving column (610), one end of the spring B (603) is fixedly connected to the moving plate (607), and the other end is fixedly connected to the tail plate (609); The pushing platform (203) is provided with a locking groove (612) to cooperate with the locking head (602).

7. The upper control device of a fire protection system with an emergency lighting function according to claim 2, characterized in that: The lighting component (500) comprises a lighting platform (501) and an LED light board (502); the top end of the telescopic component (400) is fixedly connected to the lighting platform (501); an inclined surface is provided on the lighting platform (501), the inclined surface faces the operating surface of the fire control device (100), and the LED light board (502) is engaged and connected to the inclined surface; When the lighting component (500) is located in the installation cavity (102), the top surface of the lighting platform (501) is flush with the top surface of the movement opening (103).

8. The upper control device of a fire protection system with an emergency lighting function according to claim 2, characterized in that: A buffer rubber pad is fixedly connected to the bottom surface of the limiting plate (202).

9. The upper control device of a fire protection system with an emergency lighting function according to claim 7, characterized in that: A button is fixedly connected to the limit plate (202), a battery is fixedly connected inside the device chassis (101), and the battery, the button and the LED light board (502) are electrically connected. When the push platform (203) contacts the button, the battery supplies power to the LED light board (502); when the push platform (203) does not contact the button, the battery cannot supply power to the LED light board (502).

10. The upper control device of a fire protection system with an emergency lighting function according to claim 6, characterized in that: The electromagnet (601) and the drive motor (302) are both signal-connected to the internal control board of the fire control device (100).

Citation Information

Patent Citations

  • Fire emergency lamp with automatic protection function

    CN214890865U

  • Fire-fighting emergency lighting lamp based on Internet of Things

    CN216480673U

  • Floor lamp lifting structure and floor lamp thereof

    CN219995248U

  • Fire-fighting emergency lighting lamp

    CN220061560U

  • Electronic device and use method

    WO2021127922A1