Testing equipment of fire emergency lamp illumination and evacuation indication system
By designing a multi-functional testing device, the problem of existing equipment being unable to perform multi-condition testing simultaneously has been solved, enabling efficient testing of fire emergency lighting and evacuation indicators, and improving production efficiency and ease of operation.
Patent Information
- Application Number
- CN202423259494.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-28
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2034-12-28
AI Technical Summary
Existing testing equipment for fire emergency lighting and evacuation indicators has limited functionality and cannot perform tests under multiple operating conditions simultaneously, resulting in low testing efficiency and failing to meet production needs.
A testing device including a control cabinet, a mounting rack, and multiple testing units was designed. It has a main power controller, a charging circuit controller, and a light source controller, which can simulate various working conditions. The device also improves the ease of operation and modularity through push-pull components and splicing structures.
It enables simultaneous testing under multiple operating conditions, improves testing efficiency, ensures that the equipment does not need to be shut down in case of failure, meets production needs, and enhances operational convenience and equipment versatility.
Smart Images

Figure CN223742693U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to emergency equipment testing arrangement's technical field, specifically relates to a kind of testing equipment of fire emergency light illumination and dispersing indication system. BACKGROUND
[0002] When testing fire emergency lighting and dispersing indicator, the detection of multiple test conditions is required, and the existing method is to detect the fire emergency lighting and dispersing indicator under single condition by a single-condition device, then replace another device to detect another condition, which disperses the test equipment and makes the test function of the experimental equipment single, cannot test multiple conditions, greatly reduces the detection and production efficiency of fire emergency lighting and dispersing indicator, and cannot meet the production needs of existing fire emergency lighting and dispersing indicator. UTILITY MODEL CONTENT
[0003] The utility model provides a kind of testing equipment of fire emergency light illumination and dispersing indication system to solve the technical problems of single function and slow test efficiency of the test equipment in prior art.
[0004] The technical scheme adopted by the utility model to achieve the above-mentioned purpose is:
[0005] A kind of testing equipment of fire emergency light illumination and dispersing indication system includes test equipment main body, the test equipment main body includes control cabinet, two or more than two racks and multiple test devices, the rack is equipped with splicing structure between the rack;The rack is equipped with multiple placing cavities, and multiple test devices are arranged in the placing cavity;Push-pull assembly is arranged between the placing cavity and the test device;The test device is equipped with main electric controller, charging loop controller and light source controller;
[0006] The main electric controller is used for power supply control after sample insertion power socket;
[0007] The charging loop controller monitors the voltage of the battery, monitors whether the battery is charging or discharging condition, and can simulate the effect of charging loop open circuit and short circuit;
[0008] The light source controller is used for the effect of light source disconnection and light source fault by short-circuit and on-button simulation.
[0009] Further improvement, the rack is frame structure, the placing cavity includes multiple placing cavity one and placing cavity two, the placing cavity two is arranged below the multiple placing cavity one, the placing cavity one is equipped with two mirror image fixed rods, the placing cavity two is equipped with three fixed rods one, the push-pull assembly is arranged between two fixed rods, and the placing cavity one and the placing cavity two are equipped with platform.
[0010] Further, the push-pull assembly comprises two telescopic slide rails and a placing platform, the telescopic slide rails are arranged on the fixed rods respectively, and the telescopic slide rails are provided with hanging plates, and the placing platform is arranged between the hanging plates.
[0011] Further, the telescopic slide rail comprises a drawer slide rail and a slide rail, the drawer slide rail is arranged in the slide rail, the placing platform is provided with a placing groove, and the placing platform is further provided with a handle.
[0012] Further, the splicing structure comprises a plurality of buckles and a plurality of buckling holes, the buckles are arranged on the side of the placing frame, the buckling holes are arranged on the side of the placing clamp, the buckling holes are provided with insertion grooves, and the insertion grooves are connected with the buckling holes.
[0013] Further, the main electric controller comprises a display table, a plurality of indicator lights, a power switch, a socket and a plurality of adjustment knobs.
[0014] Further, the charging loop controller comprises a display table, a plurality of indicator lights, a plurality of adjustment knobs, a battery port, an alarm port and a temperature acquisition port.
[0015] Further, the light source controller comprises a local light source interface, an external light source structure, a plurality of indicator lights, a local external port and a plurality of adjustment knobs.
[0016] Further, the control cabinet is provided with a controller center, an operation panel, indicator lights, a plurality of control buttons and a touch screen.
[0017] Further, the bottom of the test equipment main body is provided with a plurality of rollers and a plurality of adjustable supporting feet.
[0018] Compared with the prior art, the test equipment of the fire emergency lamp lighting and evacuation indication system provided by the embodiment of the utility model has at least one of the following technical effects:
[0019] 1. The utility model discloses a plurality of placement cavities and a plurality of test devices are arranged to provide a plurality of multifunctional test stations, improve the test efficiency, and when one of the test devices fails, the test efficiency is ensured without shutdown; the main electric controller is arranged to control the power supply after the sample is inserted into the power socket, the charging loop controller is arranged to monitor the voltage of the battery, the charging and discharging conditions of the battery are monitored, the open circuit and short circuit effects of the charging loop are simulated, the light source controller is arranged to simulate the effects of light source disconnection and light source failure through the short circuit and on button, a plurality of test conditions are provided, the detection and production efficiency of the fire emergency lighting and evacuation indicator are greatly improved, and the production demand of the existing fire emergency lighting and evacuation indicator is met;
[0020] 2. The push-pull assembly is arranged to push and pull the test device into one of the placement cavities or the second placement cavity, thereby improving the convenience of electrical connection operation between the test device and the sample during testing, protecting the test device, and improving the convenience of the operator when connecting the sample; the splicing structure is arranged to be combined and spliced according to the demand, thereby improving the combination and the convenience of test upgrading BRIEF DESCRIPTION OF DRAWINGS
[0021] In order to more clearly illustrate the technical scheme in the embodiments of the utility model, the following will briefly introduce the drawings needed to be used in the embodiments or prior art description. Obviously, the drawings in the following description are only some embodiments of the utility model, and for those skilled in the art, other drawings can be obtained without creative labor under the premise of the drawings.
[0022] Figure 1 It is the overall structure schematic diagram of the test equipment of the fire emergency light illumination and evacuation indicator system of the embodiment.
[0023] Figure 2 It is the Figure 2 Enlarged schematic view of A in the embodiment.
[0024] Figure 3 It is the structure schematic view of the push-pull assembly and the test device of the embodiment. DETAILED DESCRIPTION
[0025] The following description is only the preferred embodiment of the utility model, and does not limit the protection scope of the utility model.
[0026] Embodiment, see attached Figures 1-3A testing device for a fire emergency lighting and evacuation guidance system includes a main body 1, which comprises a control cabinet 2, two or more racks 3, and multiple testing devices 4. A splicing structure 5 is provided between the racks 3. Each rack 3 has multiple placement cavities 6, and the multiple testing devices 4 are respectively disposed within each placement cavity 6. A push-pull assembly 7 is provided between each placement cavity 6 and each testing device 4. Each testing device 4 is equipped with a main power controller 8, a charging circuit controller 9, and a light source controller 10. The multiple testing devices 4 provide multiple multi-functional testing stations, improving testing efficiency. Furthermore, if one testing device 4 malfunctions, the system can continue operating without stopping, ensuring testing efficiency.
[0027] The main power controller 8 is used for power supply control after the sample is inserted into the power socket;
[0028] The charging circuit controller 9 monitors the battery voltage, whether the battery is charging or discharging, and can simulate the open circuit and short circuit of the charging circuit.
[0029] The light source controller 10 is used to simulate the function of the light source being disconnected and the light source malfunctioning by short-circuiting and turning on the button.
[0030] The placement rack 3 is a frame structure, and the placement cavity 6 includes multiple placement cavities 1 and 2. The placement cavity 2 is located below the multiple placement cavities 1. Each placement cavity 1 is provided with two mirror-image fixed rods, and each placement cavity 2 is provided with three fixed rods. The push-pull assembly 7 is located between the two fixed rods. Both placement cavities 1 and 2 are provided with platforms 60. The placement cavity 6 is used to place the testing device 4, so that the periodic testing of samples can be carried out as needed, and the testing device 4 is protected. The platform 60 is used to place the test samples, improving the convenience and neatness during testing.
[0031] Each push-pull assembly 7 includes two telescopic slide rails 70 and a placement platform 71. The two telescopic slide rails 70 are respectively mounted on the two fixed rods. Each telescopic slide rail 70 is provided with a hanging plate 72. The placement platform 71 is respectively positioned between the two hanging plates 72. The push-pull assembly 7 is used to push and pull the test device 4 into the placement cavity one or the placement cavity two, thereby improving the convenience of electrical connection operation between the device and the sample during testing, protecting the test device 4, and improving the convenience for operators when connecting samples.
[0032] The telescopic slide rails 70 all include drawer slide rails 700 and slide rails 701, with the drawer slide rails 700 disposed within the slide rails 701; the placement platform 71 is provided with a placement groove 710; the placement platform 71 is also provided with a handle 712.
[0033] The splicing structure 5 includes multiple buckles 50 and multiple buckle holes 51. The multiple buckles 50 are respectively disposed on the side of one of the placement racks 3, and the multiple buckle holes 51 are disposed on the side of another placement clip. Each buckle hole 51 is provided with an insertion groove, and the insertion groove is connected to the buckle hole 51. The splicing structure 5 is used to combine and splice according to requirements, thereby improving the combinability and the convenience of testing and upgrading.
[0034] The main power controller 8 includes a display, multiple indicator lights, a power switch, a socket, and multiple adjustment knobs.
[0035] The charging circuit controller 9 includes a display, multiple indicator lights, multiple adjustment knobs, a battery port, an alarm port, and a temperature acquisition port. The temperature acquisition port is used to measure the temperature rise of product components by inserting thermocouple wires, thereby improving the functionality of the test.
[0036] The light source controller 10 includes a local light source interface, an external light source structure, multiple indicator lights, a local external port, and multiple adjustment knobs.
[0037] The control cabinet 2 is equipped with a control device center 20, an operation panel 21, four indicator lights 22, multiple control buttons 23, and a touch screen 24. The control cabinet 2 is used for manual control and status display, and the touch screen 24 can perform corresponding operation control.
[0038] The bottom of the main body 1 of the testing equipment is provided with multiple rollers 11 and multiple adjustable support feet 12. The rollers 11 are used for movement, and the adjustable support feet 12 are used for support and stability after placement.
[0039] This invention provides multiple multi-functional testing stations by incorporating multiple placement chambers and testing devices, improving testing efficiency. Even if one testing device malfunctions, the system can continue operating without shutdown, ensuring consistent testing efficiency. A main power controller controls power supply after the sample is inserted into the power socket. A charging circuit controller monitors battery voltage and charging / discharging conditions, simulating open and short circuits in the charging circuit. A light source controller simulates light source disconnection and malfunction via short circuit and on / off buttons, providing multiple testing conditions and significantly improving the testing and production efficiency of fire emergency lighting and evacuation indicators, meeting existing production needs. A push-pull assembly facilitates the placement of the testing device into placement chamber one or two, enhancing the convenience of electrical connection between the device and the sample during testing, protecting the testing device, and improving operator convenience when connecting samples. A splicing structure allows for modular assembly as needed, improving compatibility and ease of upgrades.
[0040] This utility model is not limited to the above-described embodiments. Other testing equipment for fire emergency lighting and evacuation indication systems obtained by using the same or similar structure or device as the above-described embodiments of this utility model are all within the protection scope of this utility model.
Claims
1. A test apparatus for a fire emergency light illumination and evacuation indication system, comprising a test apparatus body, characterized in that: The test equipment body includes a control cabinet, two or more placing racks and a plurality of test devices, the placing racks are provided with a splicing structure between the placing racks; the placing rack is provided with a plurality of placing cavities, and a plurality of test devices are arranged in the placing cavities; the placing cavities are provided with a push-pull assembly between the placing cavities and the test devices; the test devices are each provided with a main power controller, a charging loop controller and a light source controller; The main power controller is used for power supply control after a sample is inserted into a power socket; The charging loop controller monitors the voltage of the battery, monitors whether the battery is in a charging or discharging working condition, and can simulate the effect of open circuit and short circuit of the charging loop; The light source controller is used for simulating the effect of light source disconnection and light source failure of the short circuit and on button.
2. The test device for a fire emergency light illumination and evacuation indication system of claim 1, wherein: The placing rack is a frame structure, the placing cavities include a plurality of placing cavities one and a placing cavity two, the placing cavity two is arranged below the plurality of placing cavities one; the placing cavity one is provided with two fixed rods arranged in mirror image, the placing cavity two is provided with three fixed rods one, and the push-pull assembly is arranged between the two fixed rods; the placing cavity one and the placing cavity two are each provided with a platform.
3. The test apparatus for a fire emergency light illumination and evacuation indication system of claim 2, wherein: The push-pull assembly includes two telescopic slide rails and a placing platform, the two telescopic slide rails are arranged on the two fixed rods respectively, and the two telescopic slide rails are each provided with a hanging plate; the placing platform is arranged between the two hanging plates.
4. The test apparatus for a fire emergency light illumination and evacuation indication system of claim 3, wherein: The telescopic slide rail includes a drawer slide rail and a slide rail, the drawer slide rail is arranged in the slide rail; the placing platform is provided with a placing groove; and the placing platform is further provided with a handle.
5. The test apparatus for a fire emergency light illumination and evacuation indication system of claim 4, wherein: The splicing structure includes a plurality of buckles and a plurality of buckle holes, the plurality of buckles are arranged on the side surface of one of the placing racks, the plurality of buckle holes are arranged on the side surface of another placing rack, the buckle hole is provided with an insertion slot, and the insertion slot is in communication connection with the buckle hole.
6. The test apparatus for a fire emergency light illumination and evacuation indication system of claim 5, wherein: The main power controller includes a display table, a plurality of indicator lights, a power switch, a socket and a plurality of adjustment knobs.
7. The test apparatus for a fire emergency light illumination and evacuation indication system of claim 6, wherein: The charging loop controller includes a display table one, a plurality of indicator lights one, a plurality of adjustment knobs one, a battery port, an alarm port and a temperature acquisition port.
8. The test apparatus for a fire emergency light illumination and evacuation indication system of claim 7, wherein: The light source controller includes a local light source interface, an external light source structure, a plurality of indicator lights two, a local external port and a plurality of adjustment knobs two.
9. The test apparatus for a fire emergency light illumination and evacuation indication system of claim 8, wherein: The control cabinet is provided with a controller center, an operation panel, an indicator light four, a plurality of control buttons four and a touch screen.
10. The test device for a fire emergency light illumination and evacuation indication system of claim 9, wherein: The bottom of the test equipment body is provided with a plurality of rollers and a plurality of adjustable supporting feet.