A detection device and method for a light-sensing LED bulb

By designing a light-sensitive LED bulb lamp detection device, using a light source plate to separate the light emitting and sensing areas, and combining with an automated lifting mechanism, the accurate measurement of the sensing illuminance value of the light-sensitive LED bulb lamp is achieved, solving the detection problem of the light-sensitive LED bulb lamp in mass production, and improving the reliability and detection efficiency of the product.

CN113310667BActive Publication Date: 2025-07-18FOSHAN ELECTRICAL & LIGHTING
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Patent Information

Application Number
CN202110523748.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-05-13
Publication Date
2025-07-18
Estimated Expiration
2041-05-13

AI Technical Summary

Technical Problem

In the prior art, the light-sensitive LED bulb lamp lacks a device for accurately detecting the sensing illuminance during mass production, which makes it difficult to test and quantify the sensing function and insufficient product reliability.

Method used

A light-sensitive LED bulb lamp detection device is designed, including an illuminance detection mechanism, a base, a horizontal track, a first lamp base and a second lamp base. The light emitting area and the photoelectric induction area are separated by a light source plate, and combined with an automated lifting mechanism and a trigger light source, the accurate measurement and quantization detection of the inductive illuminance value of the light-sensitive LED bulb lamp are realized.

Benefits of technology

It solves the problem of false triggering of light-sensitive LED bulb lamps that are susceptible to their own light, realizes accurate detection of light-sensitive LED bulb lamps, and improves product reliability and detection efficiency.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The present invention discloses a detection device for a light-sensing LED bulb lamp, which includes an illuminance detection mechanism, a base, a horizontal track, a first lamp socket and a second lamp socket; the horizontal track and the illuminance detection mechanism are both arranged on the base, and the illuminance detection mechanism is used to detect the light intensity of the environment; the first lamp socket and the second lamp socket are both arranged on the horizontal track, and the first lamp socket and the second lamp socket are both movably connected to the horizontal track; the first lamp socket is used to fix the light-sensing LED bulb lamp, and a triggering light source is arranged on the second lamp socket. The present invention also provides a detection method for a light-sensing LED bulb lamp. By adopting the present invention, the problem that the traditional light-sensing bulb lamp is easily mis-triggered by the LED light emitted by itself can be solved, and at the same time, the induction illuminance value of the light-sensing LED bulb lamp can be quantitatively detected, thereby improving the reliability of the product.
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Description

Technical Field

[0001] The present invention relates to the field of lighting, and in particular, to a detection device and method for a light-sensing LED bulb lamp. Background Art

[0002] Smart home connects various communication devices, household appliances and security devices in a home into a home intelligent system, so as to monitor, control and manage the above devices and exchange information, providing a safe, efficient, comfortable and convenient home environment. The light-sensing LED bulb lamp automatically turns on and off by detecting the ambient light intensity, specifically manifested as automatically turning off the lamp during the day and automatically turning on the lamp at night. Currently, during mass production operations, due to the lack of a detection device for accurately detecting the induction illuminance, it is difficult to test the induction function of the light-sensing LED bulb, and the induction illuminance value of the traditional light-sensing bulb lamp is also difficult to quantify, thus unable to improve the reliability of the product. Summary of the Invention

[0003] The technical problem to be solved by the present invention is to provide a light-sensing LED bulb lamp and its detection device, which can test the induction function of the light-sensing LED bulb and quantify the detection of the induction illuminance value of the light-sensing LED bulb lamp, thereby improving the reliability of the product.

[0004] To solve the above technical problem, the present invention provides a detection device for a light-sensing LED bulb lamp, including an illuminance detection mechanism, a base, a horizontal track, a first lamp holder and a second lamp holder; the horizontal track and the illuminance detection mechanism are both arranged on the base, and the illuminance detection mechanism is used to detect the ambient light intensity; the first lamp holder and the second lamp holder are both arranged on the horizontal track, and the first lamp holder and the second lamp holder are both movably connected to the horizontal track; the first lamp holder is used to fix the light-sensing LED bulb lamp, and a trigger light source is arranged on the second lamp holder.

[0005] Preferably, the light-sensing LED bulb lamp includes a lampshade, a heat dissipation shell and a lamp head, and the lampshade is connected to the lamp head through the heat dissipation shell to form a sealed cavity; a light source board is arranged in the sealed cavity, the light source board is in contact connection with the heat dissipation shell, the light source board divides the sealed cavity into a first cavity and a second cavity, a driving power board and a light sensor are arranged in the second cavity, and the light sensor and the light source board are both electrically connected to the driving power board; a through hole is formed in the heat dissipation shell, a lamp cap is arranged at the through hole, and the light sensor is arranged in the lamp cap.

[0006] Preferably, the light source board includes a first substrate and an LED light source. The first substrate is in contact with the heat dissipation shell. The LED light source is fixed on the upper surface of the first substrate, and the drive power board is arranged below the first substrate. The drive power board includes a second substrate, an induction control circuit module, and a constant current drive power module. The second substrate is fixed inside the heat dissipation shell. The induction control circuit module and the constant current drive power module are both arranged on the second substrate. The constant current drive power module and the light sensor are both electrically connected to the induction control circuit module, and the constant current drive power module is also electrically connected to the LED light source.

[0007] Preferably, the detection device of the photoinductive LED bulb lamp further includes a first lifting mechanism, a first driving mechanism, a second lifting mechanism, and a control mechanism. The first lifting mechanism, the horizontal track, and the control mechanism are all arranged on the base. The first driving mechanism is arranged on the horizontal track and runs along the horizontal track. The second lifting mechanism is arranged on the first driving mechanism. The first lamp holder and the illuminance detection mechanism are both arranged on the first lifting mechanism. The illuminance detection mechanism is arranged below the first lamp holder. The first lifting mechanism is used to lift the first lamp holder and the illuminance detection mechanism. The second lamp holder and the trigger light source are both arranged on the second lifting mechanism. The first driving mechanism is used to drive the second lifting mechanism to move along the horizontal track. The second lifting mechanism is used to lift the second lamp holder and the trigger light source. The first lifting mechanism, the first driving mechanism, the first lamp holder, the illuminance detection mechanism, the second lifting mechanism, and the second lamp holder are all connected to the control mechanism.

[0008] Preferably, a second driving mechanism is further arranged on the first lifting mechanism. A detection lamp panel is arranged on the second driving mechanism. The second driving mechanism is used to drive the detection lamp panel to rotate. At least two of the first lamp holders are arranged at equal intervals on the detection lamp panel. At least two indicator lights are also arranged on the detection lamp panel. The indicator lights correspond to the first lamp holders one by one. The indicator lights and the second driving mechanism are both connected to the control mechanism.

[0009] Preferably, a first connector is arranged on the second driving mechanism. A first groove, a first electromagnet, and a second electromagnet are arranged on the first connector. Among them, the first electromagnet is arranged in the first groove. The number of the second electromagnets is at least two, and they are symmetrically arranged along the first groove. A second connector and a second groove are arranged at the bottom of the detection lamp panel. The number of the second grooves is at least two, and the second grooves are symmetrically arranged along the second connector. A third groove is further arranged on the second connector. Iron sheets are arranged at both the second groove and the third groove. The first electromagnet and the second electromagnet are both connected to the control mechanism.

[0010] Preferably, a first distance sensor is provided on the first driving mechanism, a second distance sensor is provided on the second lifting mechanism, a third distance sensor is provided on the first lifting mechanism, and a fourth distance sensor is provided on the first lamp holder. The first distance sensor, the second distance sensor, the third distance sensor, and the fourth distance sensor are all connected to the control mechanism. The first distance sensor is used to measure the horizontal distance between the trigger light source and the light-sensing LED bulb lamp. The second distance sensor is used to measure the vertical distance between the trigger light source and the base. The third distance sensor is used to measure the vertical distance between the light-sensing LED bulb lamp or the illuminance detection mechanism and the base. The fourth distance sensor is used to detect whether a light-sensing LED bulb lamp is provided on the first lamp holder.

[0011] The present invention also provides a detection method for a light-sensing LED bulb lamp, including: turning on and lighting both the light-sensing LED bulb lamp and the trigger light source; moving the trigger light source in a direction closer to the light-sensing LED bulb lamp; when the light-sensing LED bulb lamp is turned off, turning off the power of the light-sensing LED bulb lamp; moving the first lamp holder and the light-sensing LED bulb lamp in a direction away from the trigger light source, and placing an illuminance detection mechanism at the original position of the first lamp holder; obtaining the illuminance value of the illuminance detection mechanism and using it as the induction illuminance value of the light-sensing LED bulb lamp.

[0012] The present invention also provides a detection method for a light-sensing LED bulb, comprising: S201, energizing a first electromagnet and a second electromagnet to fix a detection lamp panel provided with the light-sensing LED bulb to be detected on a second driving mechanism; S202, arranging a trigger light source and the light-sensing LED bulb on the same horizontal plane; S203, energizing and lighting both the light-sensing LED bulb and the trigger light source; S204, moving the trigger light source towards the light-sensing LED bulb; S205, when the light-sensing LED bulb goes out, cutting off the power supply of the light-sensing LED bulb, raising the height of the illuminance detection mechanism and making it on the same horizontal plane as the trigger light source; S206, obtaining the detected light intensity of the illuminance detection mechanism, and judging whether the detected light intensity is greater than a first preset threshold and less than a second preset threshold. If the judgment is yes, the light-sensing LED bulb passes the detection. If the judgment is no, the light-sensing LED bulb fails the detection and lights up the corresponding indicator light; S207, making the illuminance detection mechanism and the trigger light source return to the position at step S203; S208, judging whether the total rotation angle of the detection lamp panel is less than (360° - θ); S209, if the judgment is yes, making the second driving mechanism drive the detection lamp panel to rotate a preset angle θ, starting to detect the next light-sensing LED bulb, and returning to step S203; S210, if the judgment is no, cutting off the power supply of both the first electromagnet and the second electromagnet, and sending an alarm for replacing the detection lamp panel.

[0013] The present invention also provides a detection method for a light-sensing LED bulb, including: S301, energizing a first electromagnet and a second electromagnet to fix a detection lamp panel provided with the light-sensing LED bulb to be detected on a second driving mechanism; S302, setting a first preset threshold and a second preset threshold according to the specification parameters of the light-sensing LED bulb to be detected, where the first preset threshold is less than the second preset threshold; S303, arranging a trigger light source and an illuminance detection mechanism on the same horizontal plane, energizing and lighting the trigger light source, and moving the trigger light source in a direction close to the illuminance detection mechanism; S304, when the detected light intensity of the illuminance detection mechanism just equals the first preset threshold, obtaining the detection distance of a first distance sensor and taking the position of the trigger light source at this moment as the first preset position, and when the detected light intensity of the illuminance detection mechanism just equals the second preset threshold, obtaining the detection distance of the first distance sensor and taking the position of the trigger light source at this moment as the second preset position; S305, lowering the height of the light-sensing LED bulb to make it on the same horizontal plane as the trigger light source; S306, moving the trigger light source back to the first preset position, then energizing and lighting the light-sensing LED bulb, and then slowly moving the trigger light source from the first preset position to the second preset position. During this process, if the light-sensing LED bulb goes out, the light-sensing LED bulb is qualified, otherwise the light-sensing LED bulb is unqualified and the corresponding indicator light is lit. When the trigger light source reaches the second position, cut off the power supply of the light-sensing LED bulb; S307, judging whether the total rotation angle of the detection lamp panel is less than (360° - θ); S308, if the judgment is yes, then making the second driving mechanism drive the detection lamp panel to rotate a preset angle θ, starting to detect the next light-sensing LED bulb, and returning to step S306; S309, if the judgment is no, then cutting off the power supply of both the first electromagnet and the second electromagnet, and sending an alarm for replacing the detection lamp panel.

[0014] The beneficial effects of implementing the present invention are as follows:

[0015] In the present invention, the light-emitting area and the photoelectric induction area of the bulb are separated by a light source board, which can solve the problem that the traditional light-sensing bulb is easily mis-triggered by the LED light emitted by itself. In addition, through the detection device of the light-sensing LED bulb, the light-sensing illuminance value of the light-sensing LED bulb can be accurately measured, so that the induction illuminance value of the light-sensing LED bulb can be quantitatively detected, improving the reliability of the product. Description of the Drawings

[0016] Figure 1 is a schematic structural diagram of the detection device of the light-sensing LED bulb provided by the present invention;

[0017] Figure 2 is a schematic structural diagram of the light - sensing LED bulb provided by the present invention

[0018] Figure 3 is a schematic structural diagram of another embodiment of the detection device of the light - sensing LED bulb provided by the present invention

[0019] Figure 4 is the front view of the detection lamp panel provided by the present invention;

[0020] Figure 5 is the top view of the detection lamp panel provided by the present invention;

[0021] Figure 6 is the schematic structural diagram of the first connector and the second connector provided by the present invention;

[0022] Figure 7 is the electrical connection block diagram of the detection device of the light - sensing LED bulb provided by the present invention;

[0023] Figure 8 is the flowchart of the first embodiment of the detection method of the light - sensing LED bulb provided by the present invention;

[0024] Figure 9 is the flowchart of the second embodiment of the detection method of the light - sensing LED bulb provided by the present invention;

[0025] Figure 10 is the flowchart of the third embodiment of the detection method of the light - sensing LED bulb provided by the present invention. Detailed implementation manners

[0026] To make the objectives, technical solutions and advantages of the present invention clearer, the present invention will be further described in detail below with reference to the accompanying drawings. It is hereby declared that the orientation terms such as up, down, left, right, front, back, inside, and outside that appear or will appear in the text of the present invention are only based on the accompanying drawings of the present invention, and they do not specifically limit the present invention.

[0027] (1) The following is the first embodiment of the detection device of the light - sensing LED bulb provided by the present invention

[0028] As Figure 1As shown in the figure, the present invention provides a detection device for a light-sensitive LED bulb, including an illuminance detection mechanism (not shown in the figure), a base 1, a horizontal track 3, a first lamp socket 7 and a second lamp socket 10; the horizontal track 3 and the illuminance detection mechanism (not shown in the figure) are both arranged on the base 1, and the illuminance detection mechanism (not shown in the figure) is used to detect the ambient light intensity; the first lamp socket 7 and the second lamp socket 10 are both arranged on the horizontal track 3, and the first lamp socket 7 and the second lamp socket 10 are both movably connected to the horizontal track 3; the first lamp socket 7 is used to fix the light-sensitive LED bulb 9, and a trigger light source 11 is arranged on the second lamp socket 10.

[0029] In the present invention, through the detection device of the light-sensitive LED bulb, the light-sensitive illuminance value of the light-sensitive LED bulb can be accurately measured, so that the induced illuminance value of the light-sensitive LED bulb can be quantitatively detected, and the reliability of the product can be improved.

[0030] Specifically, an incandescent lamp is used to simulate natural light as the trigger light source 11, but it is not limited thereto. The trigger light source 11 is moved horizontally to trigger the light-sensitive LED bulb 9 to turn on and off. The light-sensitive LED bulb 9 is removed, and the illuminance detection mechanism (not shown in the figure) is placed at the position of the original light-sensitive LED bulb 9, and the light intensity data at this position is tested and recorded by the illuminance detection mechanism.

[0031] As Figure 2 and Figure 7 shown, preferably, the light-sensitive LED bulb 9 includes a lampshade 901, a heat dissipation shell 902 and a lamp head 903, and the lampshade 901 is connected to the lamp head 903 through the heat dissipation shell 902 to form a sealed cavity; a light source board is arranged in the sealed cavity, the light source board is in contact connection with the heat dissipation shell 902, the light source board divides the sealed cavity into a first cavity 905 and a second cavity 906, a driving power board 907 and a light sensor 908 are arranged in the second cavity 906, and the light sensor 908 and the light source board are both electrically connected to the driving power board 907; a through hole 909 is opened on the heat dissipation shell 902, a lamp cap 910 is arranged at the through hole 909, and the light sensor 908 is arranged in the lamp cap 910.

[0032] In traditional photosensitive bulb lights, a photosensitive sensor is placed by opening a hole in the lampshade and then led to the driving power supply with a wire. This method affects the appearance of the product, and the photosensitive sensor on the lampshade is easily affected by the LED light emitted by the bulb itself and is mis-triggered. In the present invention, the light-emitting area and the photoelectric induction area of the bulb light are separated by a light source board, which can solve the problem that the traditional photosensitive bulb light is easily affected by the LED light emitted by itself and is mis-triggered. In the present invention, a lamp cap 910 is arranged in the second cavity 906 (i.e., the photoelectric induction area), and a light sensor 908 is arranged at the lamp cap 910. When external light irradiates the light sensor 908 through the lamp cap 910, the intensity of the external light can be detected in real time by the light sensor 908. When the light intensity reaches a preset value, the light source board is driven to work by the driving power supply board 907, and the bulb light is turned on; otherwise, the bulb light is turned off.

[0033] Preferably, the light source board includes a first substrate 911 and an LED light source 912. The first substrate 911 abuts against the heat dissipation shell 902. The LED light source 912 is fixed on the upper surface of the first substrate 911, and the driving power supply board 907 is arranged below the first substrate 911. It should be noted that the LED light source is arranged in the first cavity 905, which can reduce the mis-triggering of the LED light source 912 on the light sensor 908. In addition, the first substrate 911 can be dissipated heat through the heat dissipation shell 902 to avoid being burned out during high-temperature operation.

[0034] Furthermore, the driving power supply board 907 includes a second substrate, an induction control circuit module 914, and a constant current driving power supply module 915. The second substrate is fixed in the heat dissipation shell 902. Both the induction control circuit module 914 and the constant current driving power supply module 915 are arranged on the second substrate. The constant current driving power supply module 915 and the light sensor 908 are both electrically connected to the induction control circuit module 914, and the constant current driving power supply module 915 is also electrically connected to the LED light source 912. It should be noted that the light sensor 908 provided in the present invention is used to detect the intensity of the light entering the lamp cap 910 and transmit the light intensity to the induction control circuit module 914. When the light intensity is greater than or less than the threshold set by the induction control circuit module 914, the induction control circuit module 914 outputs a high or low level control signal accordingly, and then controls the on and off of the LED light source through the constant current driving power supply module 915, that is, realizes the automatic control of the on and off of the lamp. In addition, the second substrate can be dissipated heat through the heat dissipation shell 902 to avoid being burned out during high-temperature operation.

[0035] Preferably, the inductive control circuit module 914 is a single-chip microcomputer. It should be noted that the single-chip microcomputer integrates many components such as an arithmetic unit, a controller, a memory, and an input / output device, and realizes many functions such as signal processing and data storage. For example, the arithmetic unit contains a large number of comparison circuits, which can perform logical operation processing on the received signal instructions. Preferably, the models that the above single-chip microcomputer can adopt include but are not limited to AT78C51.

[0036] (2) The following is the second embodiment of the detection device for the photoinductive LED bulb provided by the present invention

[0037] To improve the test efficiency and save labor costs, this embodiment realizes automatic detection. As Figure 3 and Figure 7 shown, the detection device for the photoinductive LED bulb further includes a first lifting mechanism 2, a first driving mechanism 5, a second lifting mechanism 6, and a control mechanism 4. The first lifting mechanism 2, the horizontal track 3, and the control mechanism 4 are all arranged on the base 1. The first driving mechanism 5 is arranged on the horizontal track 3 and runs along the horizontal track 3. The second lifting mechanism 6 is arranged on the first driving mechanism 5. The first lamp holder 7 and the illuminance detection mechanism 8 are both arranged on the first lifting mechanism 2. The illuminance detection mechanism 8 is arranged directly below the first lamp holder 7. The first lifting mechanism 2 is used to lift the first lamp holder 7 and the illuminance detection mechanism 8. The second lamp holder 10 and the trigger light source 11 are both arranged on the second lifting mechanism 6. The first driving mechanism 5 is used to drive the second lifting mechanism 6 to move along the horizontal track. The second lifting mechanism 6 is used to lift the second lamp holder 10 and the trigger light source 11. The first lifting mechanism 2, the first driving mechanism 5, the first lamp holder 7, the illuminance detection mechanism 8, the second lifting mechanism 6, and the second lamp holder 10 are all connected to the control mechanism 4.

[0038] The detection device for the photoinductive LED bulb provided by the present invention is used to detect and quantify the inductive illuminance value of the photoinductive LED bulb (that is, when the photoinductive LED bulb just goes out, the ambient light intensity detected by the light sensor in the photoinductive LED bulb), so as to accurately test the inductive illuminance value of the photoinductive LED bulb and improve the reliability of the product.

[0039] Specifically:

[0040] First, fix the light - sensing LED bulb 9 to be detected on the first lamp holder 7. Raise the light - sensing LED bulb 9 and the trigger light source 11 to the same horizontal plane respectively through the first lifting mechanism 2 and the second lifting mechanism 6 (preferably, in the present invention, the center position of the trigger light source 11 is at the same horizontal plane as the photosensor in the light - sensing LED bulb 9). Then, power on and light up both the light - sensing LED bulb 9 and the trigger light source 11. Next, drive the second lifting mechanism 6 and the trigger light source 11 to move along the horizontal track 3 in the direction closer to the light - sensing LED bulb 9 through the first driving mechanism 5 (it should be noted that the light intensity is greater in the place closer to the trigger light source 11). When the light - sensing LED bulb 9 goes out, drive the second lifting mechanism 6 and the trigger light source 11 to stop moving through the first driving mechanism 5, and cut off the power supply of the light - sensing LED bulb 9.

[0041] Then, raise the height of the illuminance detection mechanism 8 through the first lifting mechanism 2 so that the illuminance detection mechanism 8 and the trigger light source 11 are at the same horizontal plane (since the illuminance detection mechanism 8 is arranged directly below the light - sensing LED bulb 9 or the first lamp holder 7, by raising the illuminance detection mechanism 8 by a certain height, the illuminance detection mechanism 8 can be in the position where the light - sensing LED bulb 9 was before). The control mechanism 4 obtains the light intensity detected by the illuminance detection mechanism 8 and takes it as the induction illuminance value of the light - sensing LED bulb 9 to be detected. When the induction illuminance value is greater than the first preset threshold and less than the second preset threshold (the first preset threshold and the second preset threshold are both calculated based on the qualified induction illuminance value and the error range of the light - sensing LED bulb 9. For example, if the qualified induction illuminance value is A and the error range is ±B, then the first preset threshold is A - B and the second preset threshold is A + B), it indicates that the induction test of the light - sensing LED bulb 9 to be detected is qualified; otherwise, it is unqualified and relevant personnel are reminded.

[0042] It should be noted that in the present invention, except for the manual operation of disassembling the light - sensing LED bulb 9, other operations are automatically run under the control of the control mechanism 4, but it is not limited to this. Disassembling the light - sensing LED bulb 9 can also be automatically operated by relevant intelligent robotic arms, with high test efficiency and labor - cost savings.

[0043] (3) The following is the third embodiment of the detection device for the light - sensing LED bulb provided by the present invention

[0044] To improve the detection efficiency, batch detection is realized in this embodiment. For example Figures 4 - 5As shown, a second driving mechanism 12 is further provided on the first lifting mechanism 2. A detection lamp panel 13 is provided on the second driving mechanism 12. The second driving mechanism 12 is used to drive the detection lamp panel 13 to rotate. At least two of the first lamp holders 7 are arranged at equal intervals on the detection lamp panel 13. The second driving mechanism 12 is connected to the control mechanism 4. More preferably, at least two indicating lamps 21 are symmetrically arranged on the detection lamp panel 13. Each indicating lamp 21 corresponds to each of the first lamp holders 7 one by one. The indicating lamps 21 are connected to the control mechanism 4. Further, the indicating lamps are replaced by a touch display screen, which can display specific induced illuminance values.

[0045] It should be noted that in order to improve the detection efficiency of the light-sensing LED bulb 9 of the present invention to achieve batch detection of the light-sensing LED bulb 9, a second driving mechanism 12 is provided on the first lifting mechanism 2, and a detection lamp panel 13 is provided on the second driving mechanism 12. The second driving mechanism 12 is used to drive the detection lamp panel 13 to rotate. At least two of the first lamp holders 7 are arranged at equal intervals on the detection lamp panel 13. The second driving mechanism 12 is connected to the control mechanism 4. By symmetrically arranging a plurality of the first lamp holders 7 on the detection lamp panel 13, the present invention can achieve batch detection of the light-sensing LED bulb 9. Further, the indicating lamp 21 is used to remind relevant personnel whether each light-sensing LED bulb 9 is qualified, thereby improving the detection efficiency of the light-sensing LED bulb 9.

[0046] Specifically:

[0047] First, fix a plurality of light-sensing LED bulbs to be detected on the first lamp holders on the detection lamp panel 13. Raise the light-sensing LED bulb 9 and the trigger light source 11 to the same horizontal plane through the first lifting mechanism 2 and the second lifting mechanism 6 respectively (preferably, in the present invention, the center position of the trigger light source 11 is at the same horizontal plane as the light sensor in the light-sensing LED bulb 9). Then, power on and light up both the light-sensing LED bulb 9 and the trigger light source 11. Next, drive the second lifting mechanism 6 and the trigger light source 11 to move along the horizontal track 3 in the direction close to the light-sensing LED bulb 9 through the first driving mechanism 5 (it should be noted that the light intensity is greater at places closer to the trigger light source 11). When the light-sensing LED bulb 9 goes out, drive the second lifting mechanism 6 and the trigger light source 11 to stop moving through the first driving mechanism 5, and cut off the power supply of the light-sensing LED bulb 9.

[0048] Then, the height of the illuminance detection mechanism 8 is increased by the first lifting mechanism 2 so that the illuminance detection mechanism 8 and the trigger light source 11 are on the same horizontal plane (since the illuminance detection mechanism 8 is provided directly below the light-sensing LED bulb 9 or the first lamp holder 7, by raising the illuminance detection mechanism 8 by a certain height, the illuminance detection mechanism 8 can be made to be in the position where the light-sensing LED bulb 9 was before). The control mechanism 4 obtains the light intensity detected by the illuminance detection mechanism 8 and uses it as the induced illuminance value of the light-sensing LED bulb 9 to be detected. When the induced illuminance value is greater than the first preset threshold and less than the second preset threshold (the first preset threshold and the second preset threshold are both calculated based on the qualified induced illuminance value and the error range of the light-sensing LED bulb 9. For example, if the qualified induced illuminance value is A and the error range is ±B, then the first preset threshold is A - B and the second preset threshold is A + B), it indicates that the induction test of the light-sensing LED bulb 9 to be detected is qualified; otherwise, the light-sensing LED bulb 9 is detected as unqualified and the corresponding indicator light 21 is lit.

[0049] Next, the height of the light-sensing LED bulb 9 is lowered by the first lifting mechanism 2 so that the light-sensing LED bulb 9 and the trigger light source 11 are raised to the same horizontal plane, and it is determined whether the total rotation angle of the detection lamp panel 13 is less than (360° - θ), where θ is the preset angle for each rotation of the detection lamp panel 13 (that is, if there are four first lamp holders 7 symmetrically arranged on the detection lamp panel 13, and each first lamp holder 7 is provided with a light-sensing LED bulb 9 to be detected, then θ is 90° at this time, and so on, but not limited to this. According to the total rotation angle of the detection lamp panel 13, the present invention can determine whether all the light-sensing LED bulbs 9 on the detection lamp panel 13 have been detected, thus avoiding repeated detection). When the determination is yes, the second driving mechanism 12 is made to drive the detection lamp panel 13 to rotate by the preset angle θ, and the detection of the next light-sensing LED bulb 9 is started, and the above detection steps of the light-sensing LED bulb are repeated. When the determination is no, an alarm for replacing the next batch of light-sensing LED bulbs 9 to be detected will be issued. At this time, the staff can determine whether each detected light-sensing LED bulb is qualified according to the indicator light 21, thereby realizing the batch detection of the light-sensing LED bulbs 9 and improving the production efficiency.

[0050] (IV) The following is the fourth embodiment of the detection device for the light-sensing LED bulb provided by the present invention

[0051] To improve the detection efficiency, in this embodiment, it is not necessary to disassemble and assemble the light-sensing LED bulb to be detected on the detection device. As Figure 6 and Figure 7As shown, a first connector 14 is provided on the second driving mechanism 12. A first groove 15, a first electromagnet 16, and a second electromagnet 17 are provided on the first connector 14. Among them, the first electromagnet 16 is provided in the first groove 15. The number of the second electromagnets 17 is at least two, and they are symmetrically arranged along the first groove 15. A second connector 18 and a second groove 19 are provided at the bottom of the detection lamp panel 13. The number of the second grooves 19 is at least two, and the second grooves 19 are symmetrically arranged along the second connector 18. A third groove 20 is further provided on the second connector 18. Iron sheets are provided at both the second groove 19 and the third groove 20. Both the first electromagnet 16 and the second electromagnet 17 are connected to the control mechanism 4.

[0052] It should be noted that in order to further improve the detection efficiency of the light-sensing LED bulb 9 of the present invention, to achieve batch detection of the light-sensing LED bulb 9, and to save the time of the staff, a first connector 14 is provided on the second driving mechanism 12. A first groove 15, a first electromagnet 16, and a second electromagnet 17 are provided on the first connector 14. Among them, the first electromagnet 16 is provided in the first groove 15. The number of the second electromagnets 17 is at least two, and they are symmetrically arranged along the first groove 15. A second connector 18 and a second groove 19 are provided at the bottom of the detection lamp panel 13. The number of the second grooves 19 is at least two, and the second grooves 19 are symmetrically arranged along the second connector 18. A third groove 20 is further provided on the second connector 18. Iron sheets are provided at both the second groove 19 and the third groove 20. Both the first electromagnet 16 and the second electromagnet 17 are connected to the control mechanism 4. Among them, the detection lamp panel can be movably connected to the second driving mechanism through the first connector 14 and the second connector 18. After all the light-sensing LED bulbs 9 on the detection lamp panel are detected, the detection lamp panel can be easily disassembled, and then another detection lamp panel filled with light-sensing LED bulbs 9 to be detected is replaced, so as to avoid disassembling the light-sensing LED bulbs 9 on the detection device and affecting the continuous operation of the detection device, and further improve the detection efficiency of the light-sensing LED bulbs 9.

[0053] Specifically:

[0054] First, energize the first electromagnet and the second electromagnet to fix the detection lamp panel with the light - induced LED bulb to be detected on the second driving mechanism. Raise the light - induced LED bulb 9 and the trigger light source 11 to the same horizontal plane through the first lifting mechanism 2 and the second lifting mechanism 6 respectively (preferably, in the present invention, the central position of the trigger light source 11 is on the same horizontal plane as the light sensor in the light - induced LED bulb 9). Then, power on and light up both the light - induced LED bulb 9 and the trigger light source 11. Next, drive the second lifting mechanism 6 and the trigger light source 11 to move along the horizontal track 3 in the direction close to the light - induced LED bulb 9 by the first driving mechanism 5 (it should be noted that the light intensity is greater in the place closer to the trigger light source 11). When the light - induced LED bulb 9 goes out, drive the second lifting mechanism 6 and the trigger light source 11 to stop moving by the first driving mechanism 5, and cut off the power supply of the light - induced LED bulb 9.

[0055] Then, raise the height of the illuminance detection mechanism 8 through the first lifting mechanism 2 so that the illuminance detection mechanism 8 and the trigger light source 11 are on the same horizontal plane (since the illuminance detection mechanism 8 is arranged directly below the light - induced LED bulb 9 or the first lamp holder 7, by raising the illuminance detection mechanism 8 by a certain height, the illuminance detection mechanism 8 can be in the position where the light - induced LED bulb 9 was before). The control mechanism 4 obtains the light intensity detected by the illuminance detection mechanism 8 and takes it as the induction illuminance value of the light - induced LED bulb 9 to be detected. When the induction illuminance value is greater than the first preset threshold and less than the second preset threshold (the first preset threshold and the second preset threshold are both calculated according to the qualified induction illuminance value and the error range of the light - induced LED bulb 9. For example, if the qualified induction illuminance value is A and the error range is ±B, then the first preset threshold is A - B and the second preset threshold is A + B), it indicates that the induction test of the light - induced LED bulb 9 to be detected is qualified. Otherwise, the light - induced LED bulb 9 is unqualified in detection and the corresponding indicator light 21 is lit.

[0056] Next, the height of the light-sensing LED bulb 9 is reduced by the first lifting mechanism 2 so that the light-sensing LED bulb 9 and the trigger light source 11 are raised to the same horizontal plane, and it is determined whether the total rotation angle of the detection lamp panel 13 is less than (360° - θ), where θ is the preset angle for each rotation of the detection lamp panel 13 (i.e., if there are four first lamp sockets 7 symmetrically arranged on the detection lamp panel 13, and each first lamp socket 7 is provided with a light-sensing LED bulb 9 to be detected, then θ is 90° at this time, and so on, but not limited to this. According to the total rotation angle of the detection lamp panel 13, the present invention can determine whether all the light-sensing LED bulbs 9 on the detection lamp panel 13 have been detected, thus avoiding repeated detection). When the determination is yes, the second driving mechanism 12 is made to drive the detection lamp panel 13 to rotate by the preset angle θ, and the detection of the next light-sensing LED bulb 9 is started, and the above-mentioned detection steps of the light-sensing LED bulb are repeated. When the determination is no, both the first electromagnet and the second electromagnet are powered off, and an alarm for replacing the detection lamp panel is issued. At this time, the staff can determine whether each detected light-sensing LED bulb is qualified according to the indicator lamp 21, and promptly replace it with a new detection lamp panel to continue the detection, thereby further improving the detection efficiency of the light-sensing LED bulb 9, realizing the batch detection of the light-sensing LED bulb 9, and improving the production efficiency.

[0057] Preferably, a first distance sensor 21 is provided on the first driving mechanism 5, a second distance sensor is provided on the second lifting mechanism 6, and a third distance sensor is provided on the first lifting mechanism 2. The first distance sensor, the second distance sensor, and the third distance sensor are all connected to the control mechanism 4; the first distance sensor is used to measure the horizontal distance between the trigger light source 11 and the light-sensing LED bulb 9, the second distance sensor is used to measure the vertical distance between the trigger light source 11 and the base 1, and the third distance sensor is used to measure the vertical distance between the light-sensing LED bulb 9 or the illuminance detection mechanism 8 and the base 1. More preferably, a fourth distance sensor is provided on the first lamp socket 7, and the fourth distance sensor is used to detect whether there is a light-sensing LED bulb 9 on the first lamp socket 7, and the fourth distance sensor is connected to the control mechanism 4.

[0058] It should be noted that in the present invention, the positions of the triggering light source 11, the light-sensing LED bulb 9, and the illuminance detection mechanism 8 are adjusted by the control mechanism 4. Specifically, the precise adjustment of the positions is achieved by the first distance sensor 21 provided on the first driving mechanism 5, the second distance sensor provided on the second lifting mechanism 6, and the third distance sensor provided on the first lifting mechanism 2. In addition, in order to avoid excessive waste of power by the indicator lights, the present invention determines whether there is a light-sensing LED bulb 9 on the first lamp socket 7 through the fourth distance sensor. When it is detected that there is a light-sensing LED bulb 9 on the first lamp socket 7 after the detection, the original state of the indicator light is maintained (that is, if it was originally on, it remains on, so as to always prompt the staff of the qualified state of the lamp). When it is detected that there is no light-sensing LED bulb 9 on the first lamp socket 7 after the detection, the indicator light is turned off (after a round of detection, unnecessary power consumption is avoided).

[0059] As Figure 8 shown, the present invention also provides a first embodiment of a detection method for a light-sensing LED bulb, including:

[0060] S101, power on and light up both the light-sensing LED bulb and the triggering light source;

[0061] S102, move the triggering light source in the direction closer to the light-sensing LED bulb;

[0062] S103, when the light-sensing LED bulb goes out, cut off the power supply of the light-sensing LED bulb;

[0063] S104, move the first lamp socket and the light-sensing LED bulb in the direction away from the triggering light source, and place the illuminance detection mechanism at the original position of the first lamp socket;

[0064] S105, obtain the illuminance value of the illuminance detection mechanism and use it as the induction illuminance value of the light-sensing LED bulb.

[0065] In the present invention, through the detection device of the light-sensing LED bulb, the light-sensing illuminance value of the light-sensing LED bulb can be accurately measured, so that the induction illuminance value of the light-sensing LED bulb can be quantitatively detected, and the reliability of the product can be improved.

[0066] As Figure 9 shown, the present invention provides a second embodiment of a detection method for a light-sensing LED bulb, including:

[0067] S201, power on the first electromagnet and the second electromagnet to fix the detection lamp panel provided with the light-sensing LED bulb to be detected on the second driving mechanism.

[0068] S202. Place the trigger light source and the light - sensitive LED bulb on the same horizontal plane.

[0069] S203. Power on and light up both the light - sensitive LED bulb and the trigger light source.

[0070] S204. Move the trigger light source towards the light - sensitive LED bulb.

[0071] S205. When the light - sensitive LED bulb goes out, cut off the power supply of the light - sensitive LED bulb, raise the height of the illuminance detection mechanism and make it on the same horizontal plane as the trigger light source.

[0072] S206. Obtain the detected light intensity of the illuminance detection mechanism, and judge whether the detected light intensity is greater than the first preset threshold and less than the second preset threshold. If the judgment is yes, the light - sensitive LED bulb is detected as qualified; if the judgment is no, the light - sensitive LED bulb is detected as unqualified and light up the corresponding indicator light.

[0073] S207. Make the illuminance detection mechanism and the trigger light source return to the positions in step S203.

[0074] S208. Judge whether the total rotation angle of the detected lamp panel is less than (360° - θ).

[0075] S209. If the judgment is yes, make the second driving mechanism drive the detected lamp panel to rotate a preset angle θ, start to detect the next light - sensitive LED bulb, and return to step S203.

[0076] S210. If the judgment is no, cut off the power supply of both the first electromagnet and the second electromagnet, and issue an alarm for replacing the detected lamp panel.

[0077] The detection method of the light - sensitive LED bulb provided by the present invention can accurately detect the induction illuminance values of a batch of light - sensitive LED bulbs, improve the detection efficiency of the light - sensitive LED bulbs, realize the batch detection of the light - sensitive LED bulbs, and improve the production efficiency.

[0078] As Figure 10 shown, the present invention also provides another detection method for the light - sensitive LED bulb, including:

[0079] S301. Power on the first electromagnet and the second electromagnet to fix the detected lamp panel with the light - sensitive LED bulb to be detected on the second driving mechanism.

[0080] S302. Set a first preset threshold and a second preset threshold according to the specification parameters of the photosensitive LED bulb to be detected, where the first preset threshold is less than the second preset threshold.

[0081] S303. Place the trigger light source and the illuminance detection mechanism on the same horizontal plane, power on and light up the trigger light source, and move the trigger light source in the direction close to the illuminance detection mechanism.

[0082] S304. When the detected light intensity of the illuminance detection mechanism just equals the first preset threshold, obtain the detection distance of the first distance sensor and take the position of the trigger light source at this moment as the first preset position. When the detected light intensity of the illuminance detection mechanism just equals the second preset threshold, obtain the detection distance of the first distance sensor and take the position of the trigger light source at this moment as the second preset position.

[0083] S305. Lower the height of the photosensitive LED bulb so that it is on the same horizontal plane as the trigger light source.

[0084] S306. Move the trigger light source back to the first preset position, then power on and light up the photosensitive LED bulb, and then slowly move the trigger light source from the first preset position to the second preset position. During this process, if the photosensitive LED bulb goes out, the photosensitive LED bulb is qualified; otherwise, the photosensitive LED bulb is unqualified and the corresponding indicator light is lit. When the trigger light source reaches the second position, power off the photosensitive LED bulb.

[0085] S307. Determine whether the total rotation angle of the detected lamp panel is less than (360° - θ).

[0086] S308. If the determination is yes, then make the second driving mechanism drive the detection lamp panel to rotate by a preset angle θ, start detecting the next photosensitive LED bulb, and return to step S306.

[0087] S309. If the determination is no, then power off both the first electromagnet and the second electromagnet, and issue an alarm for replacing the detection lamp panel.

[0088] By using this detection method, the present invention can, when only detecting that the photosensitive LED bulb is qualified, that is, without accurately calculating the specific induced illuminance value, set the horizontal movement interval of the trigger light source (equivalent to the qualified screening interval), and without frequently lifting and lowering the illuminance detection mechanism and the photosensitive LED bulb, thereby improving the detection efficiency and saving electric energy.

[0089] In addition, in the present invention, each specific position in the horizontal movement range of the above-mentioned triggering light source (equivalent to the qualified screening range) can also correspond to a specific light intensity one by one. By establishing a data relationship table for converting distance to light intensity, precise measurement can be achieved. For example: the length of the qualified screening range is 50 cm, and 50 cm is divided into several equal parts, and a specific range is determined according to the actual measurement accuracy required. By adopting this improved method, it is not necessary to frequently lift and lower the illuminance detection mechanism and the light-sensing LED bulb, thereby improving the detection efficiency, saving electric energy, and accurately measuring the induction illuminance value of the light-sensing LED bulb.

[0090] The above is the preferred implementation mode of the present invention. It should be noted that for those of ordinary skill in the art, without departing from the principle of the present invention, several improvements and retouches can be made, and these improvements and retouches are also regarded as the protection scope of the present invention.

Claims

1. A detection method for a light - sensitive LED bulb, which is applied to a detection device, is characterized in that the detection device includes an illuminance detection mechanism, a base, a first lifting mechanism, a horizontal track, a first lamp holder and a second lamp holder; the first lifting mechanism and the horizontal track are both arranged on the base, the first lamp holder and the illuminance detection mechanism are both arranged on the first lifting mechanism, the first lifting mechanism is used for lifting the first lamp holder and the illuminance detection mechanism, and the illuminance detection mechanism is used for detecting the light intensity of the environment; the second lamp holder is arranged on the horizontal track and is movably connected to the horizontal track; the first lamp holder is used for fixing the light - sensitive LED bulb, and a trigger light source is arranged on the second lamp holder; a second driving mechanism is further arranged on the first lifting mechanism, a detection lamp panel is arranged on the second driving mechanism, the second driving mechanism is used for driving the detection lamp panel to rotate, at least two of the first lamp holders are arranged at equal intervals on the detection lamp panel, and at least two indicator lights are further arranged on the detection lamp panel, and the indicator lights correspond to the first lamp holders one by one; a first connector is arranged on the second driving mechanism, and a first groove, a first electromagnet and a second electromagnet are arranged on the first connector; wherein, the first electromagnet is arranged in the first groove, the number of the second electromagnets is at least two, and they are symmetrically arranged along the first groove; a second connector and a second groove are arranged at the bottom of the detection lamp panel, the number of the second grooves is at least two, and the second grooves are symmetrically arranged along the second connector; a third groove is further arranged on the second connector, and iron sheets are arranged at both the second groove and the third groove; the detection method includes: S201, energize the first electromagnet and the second electromagnet to fix the detection lamp panel provided with the light - sensitive LED bulb to be detected on the second driving mechanism; S202, arrange the trigger light source and the light - sensitive LED bulb on the same horizontal plane; S203, energize and light both the light - sensitive LED bulb and the trigger light source; S204, move the trigger light source in the direction close to the light - sensitive LED bulb; S205, when the light - sensitive LED bulb goes out, cut off the power supply of the light - sensitive LED bulb, raise the height of the illuminance detection mechanism and make it on the same horizontal plane as the trigger light source; S206, obtain the detected light intensity of the illuminance detection mechanism, and judge whether the detected light intensity is greater than a first preset threshold and less than a second preset threshold. If the judgment is yes, the light - sensitive LED bulb is detected to be qualified; if the judgment is no, the light - sensitive LED bulb is detected to be unqualified and light up the corresponding indicator light; S207, make the illuminance detection mechanism and the trigger light source return to the position in step S203; S208, judge whether the total rotation angle of the detection lamp panel is less than (360° - θ); S209, if the judgment is yes, make the second driving mechanism drive the detection lamp panel to rotate a preset angle θ, start to detect the next light - sensitive LED bulb, and return to step S203; In S210, if the judgment is negative, then power off both the first electromagnet and the second electromagnet, and issue an alarm for replacing the detection lamp panel.

2. A detection method for a light-sensing LED bulb, applied to a detection device, characterized in that the detection device includes an illuminance detection mechanism, a base, a first lifting mechanism, a first driving mechanism, a horizontal track, a first lamp holder and a second lamp holder; the first lifting mechanism and the horizontal track are both arranged on the base, the first lamp holder and the illuminance detection mechanism are both arranged on the first lifting mechanism, the first lifting mechanism is used for lifting the first lamp holder and the illuminance detection mechanism, and the illuminance detection mechanism is used for detecting the ambient light intensity; the second lamp holder is arranged on the horizontal track and is movably connected to the horizontal track; the first lamp holder is used for fixing the light-sensing LED bulb, and a trigger light source is arranged on the second lamp holder; a first distance sensor is arranged on the first driving mechanism. A second driving mechanism is further arranged on the first lifting mechanism, a detection lamp panel is arranged on the second driving mechanism, the second driving mechanism is used for driving the detection lamp panel to rotate, at least two of the first lamp holders are arranged at equal intervals on the detection lamp panel, and at least two indicator lights are further arranged on the detection lamp panel, and the indicator lights correspond to the first lamp holders one by one. A first connector is arranged on the second driving mechanism, and a first groove, a first electromagnet and a second electromagnet are arranged on the first connector; wherein, the first electromagnet is arranged in the first groove, the number of the second electromagnets is at least two, and they are symmetrically arranged along the first groove; a second connector and a second groove are arranged at the bottom of the detection lamp panel, the number of the second grooves is at least two, and the second grooves are symmetrically arranged along the second connector; a third groove is further arranged on the second connector, and iron sheets are arranged at both the second groove and the third groove. The detection method includes: In S301, power on the first electromagnet and the second electromagnet to fix the detection lamp panel with the light-sensing LED bulb to be detected on the second driving mechanism. In S302, set a first preset threshold and a second preset threshold according to the specification parameters of the light-sensing LED bulb to be detected, wherein the first preset threshold is less than the second preset threshold. In S303, place the trigger light source and the illuminance detection mechanism on the same horizontal plane, power on and light up the trigger light source, and move the trigger light source in the direction close to the illuminance detection mechanism. In S304, when the detected light intensity of the illuminance detection mechanism just equals the first preset threshold, obtain the detection distance of the first distance sensor and take the position of the trigger light source at this moment as the first preset position. When the detected light intensity of the illuminance detection mechanism just equals the second preset threshold, obtain the detection distance of the first distance sensor and take the position of the trigger light source at this moment as the second preset position. In S305, lower the height of the light-sensing LED bulb so that it is on the same horizontal plane as the trigger light source. S306. Move the triggering light source back to the first preset position, then power on and light the light - induced LED bulb. Next, slowly move the triggering light source from the first preset position to the second preset position. During this process, if the light - induced LED bulb goes out, the light - induced LED bulb is qualified; otherwise, the light - induced LED bulb is unqualified and the corresponding indicator light is lit. When the triggering light source reaches the second preset position, power off the light - induced LED bulb. S307. Determine whether the total rotation angle of the detection lamp panel is less than (360° - θ). S308. If the determination is yes, then make the second driving mechanism drive the detection lamp panel to rotate by a preset angle θ, start detecting the next light - induced LED bulb, and return to step S306. S309. If the determination is no, then power off both the first electromagnet and the second electromagnet, and issue an alarm for replacing the detection lamp panel.

3. The detection method according to any one of claims 1 or 2, characterized in that, It also includes: Power on and light both the light - induced LED bulb and the triggering light source. Make the triggering light source move in the direction closer to the light - induced LED bulb. When the light - induced LED bulb goes out, power off the light - induced LED bulb. Move the first lamp holder and the light - induced LED bulb in the direction away from the triggering light source, and place the illuminance detection mechanism at the original position of the first lamp holder. Obtain the illuminance value of the illuminance detection mechanism and use it as the induction illuminance value of the light - induced LED bulb.

4. A detection device for a photoinductive LED bulb based on the detection method according to any one of claims 1 or 2, characterized in that, It includes an illuminance detection mechanism, a base, a first lifting mechanism, a control mechanism, a horizontal track, a first lamp holder, and a second lamp holder. The first lifting mechanism and the horizontal track are both arranged on the base. The first lamp holder and the illuminance detection mechanism are both arranged on the first lifting mechanism. The first lifting mechanism is used to lift the first lamp holder and the illuminance detection mechanism. The illuminance detection mechanism is used to detect the ambient light intensity. The second lamp holder is arranged on the horizontal track and is movably connected to the horizontal track. The first lamp holder is used to fix the light - induced LED bulb, and the second lamp holder is provided with a triggering light source. The first lifting mechanism is also provided with a second driving mechanism. The second driving mechanism is provided with a detection lamp panel. The second driving mechanism is used to drive the detection lamp panel to rotate. At least two of the first lamp holders are equidistantly arranged on the detection lamp panel. The detection lamp panel is also provided with at least two indicator lights, and the indicator lights correspond to the first lamp holders one by one. The second driving mechanism is provided with a first connector. The first connector is provided with a first groove, a first electromagnet, and a second electromagnet. Among them, the first electromagnet is arranged in the first groove. The number of the second electromagnets is at least two, and they are symmetrically arranged along the first groove. The bottom of the detection lamp panel is provided with a second connector and a second groove. The number of the second grooves is at least two, and the second grooves are symmetrically arranged along the second connector. The second connector is also provided with a third groove, and iron sheets are arranged at both the second groove and the third groove. The control mechanism is connected to the illuminance detection mechanism, the first lifting mechanism, the first lamp holder, the second lamp holder, the second driving mechanism, the indicator light, the first electromagnet, and the second electromagnet.

5. The detection device of the light-sensing LED bulb as claimed in claim 4, characterized in that, The light-sensing LED bulb lamp includes a lamp cover, a heat dissipation shell, and a lamp head. The lamp cover is connected to the lamp head through the heat dissipation shell to form a sealed cavity. A light source board is provided in the sealed cavity. The light source board is in contact connection with the heat dissipation shell. The light source board divides the sealed cavity into a first cavity and a second cavity. A driving power board and a light sensor are provided in the second cavity. The light sensor and the light source board are both electrically connected to the driving power board. A through hole is formed in the heat dissipation shell, and a lamp cap is provided at the through hole. The light sensor is provided in the lamp cap.

6. The detection device of the light-sensing LED bulb according to claim 5, characterized in that The light source board includes a first substrate and an LED light source. The first substrate abuts against the heat dissipation shell. The LED light source is fixed on the upper surface of the first substrate. The driving power board is arranged below the first substrate. The driving power board includes a second substrate, an induction control circuit module, and a constant current driving power module. The second substrate is fixed in the heat dissipation shell. The induction control circuit module and the constant current driving power module are both arranged on the second substrate. The constant current driving power module and the light sensor are both electrically connected to the induction control circuit module. The constant current driving power module is also electrically connected to the LED light source.

7. The detection device of the light-sensing LED bulb as described in claim 6, characterized in that, It further includes a first driving mechanism and a second lifting mechanism. The control mechanism is arranged on the base. The first driving mechanism is arranged on the horizontal track and runs along the horizontal track. The second lifting mechanism is arranged on the first driving mechanism. The first lamp holder and the illuminance detection mechanism are both arranged on the first lifting mechanism. The illuminance detection mechanism is arranged below the first lamp holder. The second lamp holder and the trigger light source are both arranged on the second lifting mechanism. The first driving mechanism is used to drive the second lifting mechanism to move along the horizontal track. The second lifting mechanism is used to lift the second lamp holder and the trigger light source. The first driving mechanism and the second lifting mechanism are both connected to the control mechanism.

8. The detection device of the light-sensing LED bulb according to claim 7, characterized in that A first distance sensor is arranged on the first driving mechanism. A second distance sensor is arranged on the second lifting mechanism. A third distance sensor is arranged on the first lifting mechanism. A fourth distance sensor is arranged on the first lamp holder. The first distance sensor, the second distance sensor, the third distance sensor, and the fourth distance sensor are all connected to the control mechanism. The first distance sensor is used to measure the horizontal distance between the trigger light source and the light-sensing LED bulb lamp. The second distance sensor is used to measure the vertical distance between the trigger light source and the base. The third distance sensor is used to measure the vertical distance between the light-sensing LED bulb lamp or the illuminance detection mechanism and the base. The fourth distance sensor is used to detect whether a light-sensing LED bulb lamp is arranged on the first lamp holder.

Citation Information

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