Intelligent emergency induction lighting device
By designing an intelligent emergency induced lighting device in the emergency escape passage, a strip light belt is formed using lamp beads, self-luminous bodies and reflective films. Combined with intelligent control, the problem of unclear escape direction in the existing device is solved, and a safe and reliable multi-function lighting effect is achieved.
Patent Information
- Application Number
- CN202422376022.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-29
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2034-09-29
AI Technical Summary
The existing emergency escape passage lacks fast and accurate direction guidance for escape directions, resulting in casualties in the accident. The existing device has a single function and does not have intelligent control.
An intelligent emergency induced lighting device is designed, including a lamp box, lampshade, lamp bead, self-luminous body, reflective film, battery and smart chip. A curved cylindrical lens is used to form a strip light belt, combined with direction induced marks and text patterns, and multifunctional lighting is achieved through intelligent control and self-luminous body.
It realizes intelligent control with simple structure, low cost, safe and reliable, energy-saving and environmentally friendly, and clear direction, improves the safety and reliability of emergency escape channels, and has economic and social benefits.
Smart Images

Figure CN223137658U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a lighting device, in particular to an intelligent emergency induction lighting device applied to the field of energy-saving safety facilities. Background Art
[0002] At present, it is a basic requirement of the state for safety facilities to set emergency escape signs in emergency escape passages such as buildings and tunnels. However, the existing emergency devices only have the function of spatial point lighting. Once an accident occurs, it is common for trapped people to fail to quickly and accurately judge the escape direction, resulting in casualties. Therefore, it is undoubtedly very necessary to develop an emergency induction lighting device with the functions of escape direction and ground linear induction lighting, and then further develop an intelligent emergency induction lighting emergency device, which can make the emergency escape facilities better serve the people's life safety, thus having great economic and social benefits. Content of the Utility Model
[0003] The technical problem to be solved by the utility model is to overcome the defects of the prior art and provide an intelligent emergency induction lighting device with simple structure, low cost, safety and reliability, energy conservation and environmental protection, clear indication, and intelligent control.
[0004] The technical problem of the utility model is realized by the following technical solutions:
[0005] An intelligent emergency induction lighting device includes a lamp box and a lampshade. The lamp box is provided with lamp beads, a self-luminous body, and a reflective film A on the front facing the emergency escape passage direction, and a reflective film B is pasted on the back opposite to the front. A storage battery and an intelligent chip are arranged inside; a lamp bead board is arranged inside the lampshade, and an arc-shaped cylindrical lens is arranged outside the lampshade.
[0006] The arc-shaped cylindrical lens protrudes outward in a semicircular shape. The two ends of the arc-shaped cylindrical lens are fixed by being embedded in the arc-shaped cylindrical lens grooves on the lampshade, and direction induction signs and corresponding text patterns are arranged on the surface of the arc-shaped cylindrical lens.
[0007] The lamp beads are LED lamp beads, and a self-luminous body is arranged outside the lamp beads.
[0008] The reflective film A is provided with holes for the lamp beads and the self-luminous body to be exposed.
[0009] The intelligent chip includes a sensor and an intelligent control chip.
[0010] The sensor realizes the induction function by adopting radar, infrared, or video recognition technology.
[0011] The lamp bead board, intelligent chip, storage battery and multiple lamp beads are conductively connected via wires; wire holes for the wires to pass through are reserved on the lamp box, storage battery, intelligent chip, lamp shade and lamp bead board, and waterproof connectors are installed in the wire holes of the lamp box; the wires pass through the waterproof connectors and are externally connected to a power supply for power supply.
[0012] The top of the lamp bead board is fixedly connected to the inner top surface of the lamp shade.
[0013] The lamp box and the lamp shade are fixedly connected together.
[0014] On the lamp box, lamp ears are respectively provided on the front face along the direction of the emergency escape passage and on the back face opposite to the front face.
[0015] Compared with the prior art, the present utility model mainly designs a smart emergency induction lighting device with a unique structure, which includes a lamp box at the top and a lamp shade at the bottom. On the front face of the lamp box along the direction of the emergency escape passage, multiple lamp beads, self-luminous bodies and a reflective film A are provided, and a reflective film B is pasted on the back face opposite to the front face. Inside, there are a storage battery for emergency power supply and an intelligent chip. The lamp shade is a semi-circular lamp shade formed by bending an inverted U shape. Inside the lamp shade, there is a U-shaped lamp bead board, and outside the lamp shade, there is an arc-shaped cylindrical lens that surrounds the semi-circular shape of the lamp shade. The lamp bead board is enclosed in the lamp shade by the arc-shaped cylindrical lens. In this way, the light emitted by the lamp bead board can be condensed into a strip of light by the arc-shaped cylindrical lens to illuminate the ground of the emergency escape passage for pedestrians to evacuate emergently. Especially, direction induction signs and corresponding text patterns can be pasted on the surface of the arc-shaped cylindrical lens, so that clear induction directions and corresponding text patterns can be formed on the ground under the illumination of the light emitted by the lamp bead board, thereby enhancing the induction and illumination effects. At the same time, this smart emergency induction lighting device also has the following characteristics: first, it has multiple functions, intelligent control, energy-saving and high efficiency; second, it forms a strip of light in the opposite direction on the ground, directly and clearly guiding pedestrians to evacuate emergently, improving the safety and reliability of the emergency escape passage; third, it is provided with self-luminous bodies, that is, self-luminous bodies formed by multiple lamp beads cooperating with circular afterglow materials sprayed, which can enable the lighting device to achieve the functions of energy saving and self-luminescence when there is no power supply. Therefore, this smart emergency induction lighting device has the advantages of simple structure, low cost, safety and reliability, energy conservation and environmental protection, clear direction, intelligent control, etc. It can be widely applied to the induction lighting in emergency escape passages of buildings, tunnels, etc., and play a comprehensive role in induction guidance, safety warning and emergency evacuation, so it has high economic and social benefits. Description of the Drawings
[0016] Figure 1 It is a cross-sectional view of the present utility model.
[0017] Figure 2 is Figure 1 right view of
[0018] Figure 3 is the left view of Figure 1 .
[0019] Figure 4 is the top view of Figure 1 .
[0020] Figure 5 is the three - dimensional exploded view of Figure 1 . Detailed implementation mode
[0021] The embodiments of the present utility model will be further described in detail below with reference to the above - mentioned drawings.
[0022] As shown in Figures 1 to 5 , 1. waterproof joint, 2. lamp box, 3. self - luminous body, 4. lamp beads, 5. lamp cover, 51. arc - shaped cylindrical lens groove, 6. arc - shaped cylindrical lens, 7. reflective film A, 71. reflective film B, 72. perforation, 8. storage battery, 9. intelligent chip, 10. lamp bead board, 11. wire hole, 12. wire, 13. lamp ear.
[0023] An intelligent emergency induction lighting device, as shown in Figure 1 , is mainly applicable to the induction lighting in emergency escape passages such as buildings and tunnels, and plays a comprehensive role in induction guidance, safety warning and emergency evacuation. Its structure includes a lamp box 2 at the top and a lamp cover 5 at the bottom. The lamp box is a rectangular lamp box, and the lamp cover is a semi - circular lamp cover formed by an inverted U - shaped bend. Both the lamp box 2 and the lamp cover 5 are made of plastic materials and are fixedly connected together by a strong adhesive or bolts.
[0024] On the front side of the lamp box 2 along the direction of the emergency escape passage, there are multiple lamp beads 4, a self - luminous body 3 and a reflective film A7. On the back side opposite to the front side, a reflective film B71 is pasted. In this embodiment, as shown in Figure 2 , Figure 3 , on one of the narrower sides of the rectangular lamp box 2, there are three lamp beads 4, a self - luminous body 3 and a reflective film A, and a reflective film B is pasted on the other opposite narrower side.
[0025] Among them, the lamp beads 4 are LED lamp beads. Each lamp bead 4 is surrounded by a circular afterglow material sprayed to form a self - luminous body 3. That is, three lamp beads 4 are exactly provided with three corresponding self - luminous bodies 3. The reflective film A is a rectangular film, and there are perforations 72 on the rectangular film for the lamp beads 4 and the self - luminous body 3 to be exposed. Therefore, during the intermittent extinguishing of the three lamp beads 4, the afterglow emitted by the self - luminous body 3 can also display the outline of the emergency escape passage direction, thus playing the role of emergency induction lighting.
[0026] The reflective film B is a rectangular film with a reflective function and also plays the role of emergency induction lighting.
[0027] The described lamp box 2 is provided with lamp ears 13 on the front and the back opposite to the front along the direction of the emergency escape passage, and the lamp box can be installed on the side walls of emergency escape passages such as buildings and tunnels at a certain height through the lamp ears 13 on both sides.
[0028] The interior of the described lamp box 2 is provided with a storage battery 8 for emergency power supply and an intelligent chip 9. The storage battery is a small-capacity electrical storage device. When normally powered, it is charged by an external power supply. Once an accidental power outage occurs, the storage battery 8 supplies emergency power to provide power for the lighting device for a certain period of time.
[0029] The described intelligent chip 9 is composed of a sensor and an intelligent control chip. The sensor detects the personnel activity signals in the detection area, and the intelligent control chip synchronously receives the working signals of the sensor, and then opens and closes multiple lamp beads 4 and the lamp bead board 10 to save energy.
[0030] The described sensor can use technologies such as radar, infrared, and video recognition to achieve the induction function.
[0031] A U-shaped lamp bead board 10 is provided inside the described lamp cover 5. The lamp bead board 10 is an LED lamp bead board 10, and the top of the lamp bead board is fixedly connected to the inner top surface of the lamp cover 5 by a strong adhesive. An arc-shaped cylindrical lens 6 that surrounds the lamp cover in an arc shape along the semi-circular shape of the lamp cover is provided outside the lamp cover 5, and the lamp bead board 10 is enclosed in the lamp cover 5 by the arc-shaped cylindrical lens 6; the arc-shaped cylindrical lens 6 is made of transparent plastic material, and the arc-shaped cylindrical lens protrudes outward in a semi-circular shape. Both ends of the arc-shaped cylindrical lens 6 are fixedly embedded in the arc-shaped cylindrical lens groove 51 on the lamp cover 5; therefore, the light emitted by the lamp bead board 10 can be condensed into strip-shaped light by the arc-shaped cylindrical lens 6 to illuminate the ground of the emergency escape passage for pedestrians to evacuate emergently. Especially when direction induction signs and corresponding text patterns are pasted on the surface of the arc-shaped cylindrical lens 6, clear induction directions and corresponding text patterns can be formed on the ground under the illumination of the light emitted by the lamp bead board 10, so as to enhance the induction and illumination effects.
[0032] In addition, the lamp bead board 10, the intelligent chip 9, the storage battery 8, and multiple lamp beads 4 are electrically connected through a wire 12. Wire holes 11 for the wire 12 to pass through are reserved on the lamp box 2, the storage battery 8, the intelligent chip 9, the lamp cover 5, and the lamp bead board 10. A waterproof joint 1 is also installed in the wire hole 11 of the lamp box 2, and the wire 12 passes through the waterproof joint 1 and is externally connected to a power supply for power supply.
[0033] In this way, when multiple lamp beads 4 and the lamp bead board 10 are normally powered on, they can be powered by the power supply externally connected by the wire 12; when multiple lamp beads 4 and the lamp bead board 10 are accidentally powered off by the externally connected power supply, the storage battery 8 supplies emergency power.
[0034] The utility model has the following characteristics: First, it has multiple functions, intelligent control, energy saving and high efficiency; Second, it forms strip-shaped light bands of opposite directions on the ground, directly and clearly guiding pedestrians to evacuate emergently, and improving the safety and reliability of the emergency escape passage; Third, it is provided with a self-luminous body, that is, a self-luminous body formed by cooperating multiple lamp beads with circular afterglow materials sprayed thereon, which can enable the lighting device to have the functions of energy saving and self-luminescence when there is no power supply.
[0035] Therefore, the intelligent emergency induction lighting device has the advantages of simple structure, low cost, safety and reliability, energy conservation and environmental protection, clear direction, intelligent control, etc. It can be widely applied to the induction lighting in emergency escape passages of buildings, tunnels, etc., and play a comprehensive role in induction guidance, safety warning and emergency evacuation. Therefore, it has high economic and social benefits.
[0036] The embodiments described in the present utility model are only used to illustrate the present utility model and not to limit the scope of the present utility model. In addition, it should be understood that after reading the content taught by the present utility model, those skilled in the art can make various changes or modifications to the present utility model, and these equivalent forms also fall within the scope defined by the appended claims of this application.
Claims
1. An intelligent emergency induction lighting device, comprising a lamp box (2) and a lamp shade (5), characterized in that The described lamp box (2) is provided with lamp beads (4), self-luminous bodies (3) and a reflective film A (7) facing the direction of the emergency escape passage. A reflective film B (71) is pasted on the back relative to the front face, and a storage battery (8) and an intelligent chip (9) are arranged inside; a lamp bead board (10) is arranged inside the lamp cover (5), and a curved body cylindrical lens (6) is arranged outside the lamp cover (5).
2. The intelligent emergency induction lighting device according to claim 1, characterized in that The described curved body cylindrical lens (6) protrudes outward in a semicircular shape. Both ends of the curved body cylindrical lens (6) are fixed by being embedded in the curved body cylindrical lens grooves (51) on the lamp cover (5). Direction guiding signs and corresponding text patterns are arranged on the surface of the curved body cylindrical lens (6).
3. An intelligent emergency induction lighting device according to claim 1, characterized in that The described lamp bead (4) is an LED lamp bead, and a self-luminous body (3) is arranged around the lamp bead (4).
4. The intelligent emergency induction lighting device according to claim 3, characterized in that The described reflective film A (7) is provided with a perforation (73) for the lamp bead (4) and the self-luminous body (3) to be exposed.
5. The intelligent emergency induction lighting device according to claim 1, wherein The described intelligent chip (9) includes a sensor and an intelligent control chip.
6. The intelligent emergency induction lighting device according to claim 5, characterized in that The described sensor realizes the sensing function by using radar, infrared or video recognition technology.
7. An intelligent emergency induction lighting device according to claim 1, characterized in that The lamp bead board (10), the intelligent chip (9), the storage battery (8) and multiple lamp beads (4) are electrically connected through a wire (12); wire holes (11) for the wire (12) to pass through are reserved on the lamp box (2), the storage battery (8), the intelligent chip (9), the lamp cover (5) and the lamp bead board (10). A waterproof connector (1) is installed in the wire hole (11) of the lamp box (2); the wire (12) passes through the waterproof connector (1) and is externally connected to a power supply for power supply.
8. An intelligent emergency induction lighting device according to claim 7, characterized in that The top of the lamp bead board (10) is fixedly connected to the inner top surface of the lamp cover (5).
9. An intelligent emergency induction lighting device according to claim 1, wherein The lamp box (2) and the lamp cover (5) are fixedly connected together.
10. The intelligent emergency induction lighting device according to claim 1, characterized in that The described lamp box (2) is respectively provided with lamp ears (13) on the front face facing the direction of the emergency escape passage and on the back relative to the front face.