A Separable and Detachable Installation Structure for a Street Lamp Driver and Its Detection Method

By designing a detachable connected street lamp driver structure and detection unit, the problem of inconvenience in replacement caused by the integration of the lamp body and driving part in the existing street lamp is solved, and the convenience of replacement and the stability of electrical connection are achieved.

CN119642164BActive Publication Date: 2025-06-10ZHEJIANG ALITE LIGHTING CO LTD

Patent Information

Application Number
CN202510041417.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-01-10
Publication Date
2025-06-10
Estimated Expiration
2045-01-10

AI Technical Summary

Technical Problem

In existing street lights, the lamp body and the driving part are integrated, which leads to inconvenience in replacement, time-consuming and labor-intensive, and increases labor costs.

Method used

A separate, detachable mounting structure of street lamp driver is designed. By providing a detachable connection connection component between the lamp body shell and the driving housing, the drive part is separated from the lamp body, and the stability of the electrical connection is ensured through the electrical connection assembly and the rebound assembly.

Benefits of technology

It realizes convenient replacement and maintenance of the lamp body and the driving part, reduces labor costs, and ensures the stability and practicality of the electrical connection through the detection unit.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The present invention discloses a separable and detachable installation structure for a street lamp driver, aiming to provide a separable and detachable street lamp driver structure with a simple structure and a path detection function, as well as a detection method thereof. The key technical points of the technical solution are that the present invention separates the lamp body and the driving part, which not only facilitates replacement, but also enables direct maintenance of the street lamp. Moreover, it can be matched with different driving types to achieve quick and convenient replacement operations. Although different connection methods achieve the same effect, when a base is used for supporting installation, the stability is better and it meets the export standards. The present invention is applicable to the technical field of lighting device equipment.
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Description

Technical Field

[0001] The present invention relates to the technical field of lighting device equipment, and more specifically, it relates to a separable and detachable installation structure of a street lamp driver and its detection method. Background Art

[0002] As a facility for providing lighting functions to roads, street lamps are mainly composed of lamps with light sources, lamp poles, wires, and foundation embedded parts, and these components form the lamp body part. Among them, the lamp is set at the top of the lamp pole, the lamp pole is set on the foundation embedded part, the foundation embedded part is set on the ground, the lamp pole adopts a hollow structure, the wire is placed inside the lamp pole and electrically connects the power part of the foundation embedded part with the light source, and under the action of the lamp, the light diffuses around.

[0003] Currently, street lamps on the market include a lamp body and a driving part arranged on the lamp body. For traditional street lamps, the lamp body and the driving part are integrated together. If the driving part is damaged, the whole lamp body needs to be disassembled, which will cause extremely inconvenient replacement, time-consuming and laborious, and also increase labor costs. Therefore, how to ensure the separation of the driving part and the lamp body, and ensure that an effective control effect can still be formed after adopting the separation structure between the two is the existing problem. Summary of the Invention

[0004] Aiming at the deficiencies of the existing technology, the purpose of the present invention is to provide a separable and detachable street lamp driver installation structure with a simple structure and a path detection function, and its detection method.

[0005] To achieve the above object, the present invention provides the following technical solution: A separable and detachable installation structure of a street lamp driver, including a lamp body and a driving part arranged on the lamp body, the driving part is detachably connected to the lamp body, and the driving part is placed outside the housing of the lamp body. There is an installation structure between the driving part and the lamp body. The installation structure includes a driving housing and a connection component arranged on the housing of the lamp body and detachably connected to the driving housing. The driving part is connected to the housing of the lamp body through the driving housing and the connection component in a rotational connection manner. There is a driving component for electrical connection between the housing of the lamp body and the driving housing. The driving component includes a driving unit arranged in the driving housing, a circuit board arranged in the housing of the lamp body and electrically connected to the driving unit, and an electrical connection component for cooperating with the connection between the driving unit and the circuit board. This electrical connection component is configured to form a path state after the driving part is rotationally connected to the housing of the lamp body; conversely, it forms an open circuit state after the driving part is rotated in the reverse direction and separated from the housing of the lamp body.

[0006] The present invention is further configured such that: the electrical connection assembly includes a conductive thimble disposed on the driving unit and an annular conductive sheet disposed on the circuit board and forming a conduction and disconnection with the conductive thimble. A rebound assembly is further provided in the driving housing, and the rebound assembly is configured to form a resilience force after the driving part rotates and is connected to the lamp body housing, so as to form an elastic pressure with the annular conductive sheet.

[0007] The present invention is further configured such that: a detection unit for detecting the magnitude of the rebound pressure of the conductive thimble is further provided in the driving housing. The detection unit includes a pressure detector disposed in the driving housing, an alarm electrically connected to the pressure detector, a rebound structure disposed on the rebound path of the conductive thimble, and an adjustment structure for adjusting the state of the rebound structure. Different pressure values are formed on the pressure detector by the conductive thimble through the rebound structure after being stressed.

[0008] The present invention is further configured such that: the rebound structure includes a rebound channel disposed in the driving housing and adapted to the outer diameter of each conductive thimble, a spring disposed in the rebound channel and abutting against one end of the pressure detector and the conductive thimble respectively, and an extension platform disposed on the pressure detector and adapted to the inner diameter of the rebound channel.

[0009] The present invention is further configured such that: the adjustment structure includes a plurality of adjustment chambers uniformly disposed on the inner wall of the rebound channel, adjustment blocks respectively disposed in each adjustment chamber, and a driver for driving each adjustment block to reciprocate in the adjustment chamber. The driver is a telescopic oil cylinder, and the driver is disposed in the adjustment chamber. The adjustment structure further includes a lifting oil cylinder disposed on the pressure detector and used for driving each rebound channel to lift.

[0010] The present invention is further configured such that: the connection assembly is set as a base detachably connected to the lamp body housing, and the circuit board is installed in the base; or as an internal thread structure disposed on the inner wall of the lamp body housing, and the driving housing is adapted to the internal thread structure through an external thread, and the circuit board is installed in the lamp body housing; or after the driving housing penetrates through the lamp body housing, the connection assembly is a nut threadedly connected to the driving housing.

[0011] The present invention is further configured such that: a waterproof seal ring is provided between the driving housing and the lamp body housing.

[0012] A detection method for a separable and detachable installation structure suitable for the above street lamp driver, characterized in that it further includes a controller, the controller is communicatively connected to an alarm, and the controller includes a detection module for receiving the electrical signal of a pressure detector; a comparison unit for setting the initial pressure value as P0 and, after the driving part is installed, setting the maximum pressure P formed by the conductive thimble, and comparing the pressure value received by the detection module with the set value; a driving module for driving the telescopic oil cylinder and the lifting oil cylinder to reciprocate, and a test unit for detecting whether the conductive thimble and the annular conductive sheet form a conduction path. The specific detection control method includes the following steps: S1. At time period T1, install the driving part and the lamp body. At this time, the pressure detector records the detected pressure value as P1. Determine whether the value of P1 is greater than P. If P1 > P, it is determined that there is a foreign object, and an alarm needs to be issued through the alarm and manual cleaning is required. If not, proceed to the next installation step;

[0013] S2. At time period T2, gradually tighten and install the driving part and the lamp body. At this time, the pressure detector records the detected pressure value as P2. Determine whether the value of P2 is greater than P0 and less than P. If so, it is determined that the pressure value is within the normal range;

[0014] S3. At time period T3, after the driving part and the lamp body are tightened and installed, at this time, the pressure detector records the detected pressure value as P3. Determine whether the value of P3 is greater than P. If P3 > P, it means that the conductive thimble is stuck in the rebound channel, and the driver needs to be driven to adjust the conductive thimble left and right; if not, detect whether the conductive thimble and the annular conductive sheet form a conduction state;

[0015] S4. During time period T4, after the driver adjusts the conductive thimble left and right, at this time, the pressure detector records the detected pressure value as P4. Determine whether the value of P4 is greater than P. If P4 > P, it is determined that the jam still exists and causes a phenomenon of inability to energize, and the rebound channel is driven to lift and lower repeatedly to form a lifting and squeezing of the conductive thimble; if not, detect whether the conductive thimble and the annular conductive sheet form a conduction state;

[0016] S5. During time period T5, after the rebound channel is driven to lift and lower repeatedly, at this time, the pressure detector records the detected pressure value as P5. Determine whether the value of P5 is greater than P. If P5 > P, it is determined that the jam still exists, and the rebound channel is driven to descend to the annular conductive sheet and form a conduction state; otherwise, detect whether the conductive thimble and the annular conductive sheet form a conduction state;

[0017] S6. Complete the installation.

[0018] By adopting the above technical solutions, the beneficial effects are as follows: 1. In the present invention, the lamp body and the driving part are designed in a separated manner. This not only facilitates replacement but also allows for direct maintenance of the street lamp. Moreover, it can be matched with different driving types to achieve quick and convenient replacement operations. Secondly, regarding the connection between the driving part and the lamp body, a detachable connection component is adopted. The connection component is set as a base that is detachably connected to the lamp body housing, and the circuit board is installed inside the base; or it is an internal thread structure provided on the inner wall of the lamp body housing, and the driving housing is adapted to the internal thread structure through an external thread, and the circuit board is installed inside the lamp body housing; or after the driving housing penetrates the lamp body housing, the connection component is a nut that is threadedly connected to the driving housing. Although different connection methods achieve the same effect, when the base is used for supporting installation, the stability is better and it meets the export standards;

[0019] 2. In the technical solution of the present invention, the electrical connection component is set to include a conductive thimble provided on the driving unit and an annular conductive sheet provided on the circuit board that forms a conduction and disconnection with the conductive thimble. Through the cooperation between the conductive thimble and the annular conductive sheet, a path can be formed between the two. Moreover, a rebound component is further provided inside the driving housing, and the rebound component is configured to form a resilience force after the driving part rotates and is connected to the lamp body housing, so as to form an elastic pressure on the annular conductive sheet. This can further improve the contact formed by the conductive thimble on the annular conductive sheet, form a path, and ensure the stability of the electrical connection, greatly enhancing the practicality;

[0020] 3. In order to ensure that sufficient elastic pressure can be formed between the conductive thimble and the annular conductive sheet, a detection unit for detecting the rebound pressure magnitude of the conductive thimble is further provided inside the driving housing. The detection unit includes a pressure detector provided inside the driving housing, an alarm electrically connected to the pressure detector, a rebound structure provided on the rebound path of the conductive thimble, and an adjustment structure for adjusting the state of the rebound structure. The conductive thimble forms different pressure values on the pressure detector through the rebound structure after being stressed. By detecting the pressure value of the conductive thimble, the position state of the conductive thimble is judged, ensuring the path effect between the conductive thimble and the annular conductive sheet, achieving good structural stability, strong practicality, and simple structure;

[0021] 4. In the technical solution of the present invention, by setting the initial value of the pressure formed by the conductive thimble as P0 and the maximum value P of the pressure formed by the conductive thimble after the driving part is installed, the position of the conductive thimble between the driving part and the annular conductive sheet is detected in real time to judge the position of the conductive rod during the installation process, and the rebound channel or the conductive rod is adjusted through the driver and the lifting oil cylinder, so as to achieve a stable path state and ensure the normal operation of the drive. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] Figure 1 This is the overall structure diagram of a street lamp for an embodiment of a separable and detachable installation structure of a street lamp driver and its detection method according to the present invention.

[0023] Figure 2 This is the structure diagram of the driving part for an embodiment of a separable and detachable installation structure of a street lamp driver and its detection method according to the present invention.

[0024] Figure 3 This is the sectional structure diagram of the driving part for an embodiment of a separable and detachable installation structure of a street lamp driver and its detection method according to the present invention.

[0025] Figure 4 This is an embodiment of a separable and detachable installation structure of a street lamp driver and its detection method according to the present invention Figure 3 The enlarged view of the structure at position A in the figure.

[0026] In the figure, the reference numerals are as follows: 1, lamp body; 2, driving part; 20, driving housing; 21, circuit board; 22, driving unit; 220, conductive thimble; 221, annular conductive sheet; 30, pressure detector; 31, alarm; 32, return channel; 33, spring; 320, adjustment chamber; 321, adjustment block; 322, driver; 340, lifting oil cylinder; 4, base. Detailed implementation manners

[0027] Refer to Figures 1 to 4 For further description of an embodiment of a separable and detachable installation structure of a street lamp driver and its detection method according to the present invention.

[0028] For ease of explanation, spatial relative terms such as "upper", "lower", "left", "right", etc. are used in the embodiments to describe the relationship between one element or feature shown in the figure and another element or feature. It should be understood that, in addition to the orientation shown in the figure, the spatial terms are intended to include different orientations during the use or operation of the device. For example, if the device in the figure is inverted, the element described as being "below" other elements or features will be positioned "above" other elements or features. Therefore, the exemplary term "lower" can include both upper and lower orientations. The device can be positioned in other ways (rotated 90 degrees or in other orientations), and the spatial relative descriptions used herein can be interpreted accordingly.

[0029] Moreover, relative relationship terms such as "first" and "second" are only used to distinguish one component with the same name from another, and do not necessarily require or imply any such actual relationship or order between these components.

[0030] A separable and detachable installation structure for a street lamp driver, comprising a lamp body 1 and a driving part 2 arranged on the lamp body 1. The driving part 2 is detachably connected to the lamp body 1, and the driving part 2 is placed outside the housing of the lamp body 1. An installation structure is provided between the driving part 2 and the lamp body 1. The installation structure includes a driving housing 20 and a connection component arranged on the housing of the lamp body 1 and detachably connected to the driving housing 20. The driving part 2 is connected to the housing of the lamp body 1 through the driving housing 20 and the connection component in a rotatable connection manner. A driving component for electrical connection is provided between the housing of the lamp body 1 and the driving housing 20. The driving component includes a driving unit 22 arranged in the driving housing 20, a circuit board 21 arranged in the housing of the lamp body 1 and electrically connected to the driving unit 22, and an electrical connection component for cooperating with the connection between the driving unit 22 and the circuit board 21. The electrical connection component is configured to form a conductive state after the driving part 2 is rotatably connected to the housing of the lamp body 1; conversely, it forms an open circuit state after the driving part 2 is reversely rotated and separated from the housing of the lamp body 1. In the present invention, the lamp body 1 and the driving part 2 are designed in a separable manner, which not only facilitates replacement but also allows for direct repair of the street lamp. Moreover, it can be matched with different driving types to achieve quick and convenient replacement operations. Secondly, for the connection between the driving part 2 and the lamp body 1, a detachable connection component is adopted. The connection component is a base 4 detachably connected to the housing of the lamp body 1, and the circuit board 21 is installed in the base 4; or it is an internal thread structure arranged on the inner wall of the housing of the lamp body 1, and the driving housing 20 is adapted to the internal thread structure through an external thread, and the circuit board 21 is installed in the housing of the lamp body 1; or after the driving housing 20 penetrates through the housing of the lamp body 1, the connection component is a nut threadedly connected to the driving housing 20. Although different connection methods achieve the same effect, when the base 4 is used for supporting installation, the stability is better and it meets the export standards.

[0031] Further, the electrical connection component includes a conductive thimble 220 disposed on the driving unit 22 and an annular conductive sheet 221 disposed on the circuit board 21 and forming a connection and disconnection with the conductive thimble 220. A resilient component is further provided in the driving housing 20. The resilient component is configured to form a resilient force after the driving part 2 rotates and is connected to the housing of the lamp body 1, so as to form an elastic pressure with the annular conductive sheet 221. In the technical solution of the present invention, by setting the electrical connection component to include the conductive thimble 220 disposed on the driving unit 22 and the annular conductive sheet 221 disposed on the circuit board 21 and forming a connection and disconnection with the conductive thimble 220, through the cooperation between the conductive thimble 220 and the annular conductive sheet 221, a path can be formed between the two. And a resilient component is further provided in the driving housing 20. The resilient component is configured to form a resilient force after the driving part 2 rotates and is connected to the housing of the lamp body 1, so as to form an elastic pressure with the annular conductive sheet 221. In this way, it can further improve the contact formed by the conductive thimble 220 on the annular conductive sheet 221, form a path, and ensure the stability of the electrical connection, greatly improving the practicability.

[0032] In the embodiment of the present invention, the annular conductive sheet 221 is connected to the circuit inside the lamp body 1, which is not marked in the drawings and belongs to the common knowledge of those skilled in the art, so it will not be elaborated in the present invention.

[0033] Further, a detection unit for detecting the magnitude of the resilient pressure of the conductive thimble 220 is further provided in the driving housing 20. The detection unit includes a pressure detector 30 disposed in the driving housing 20, an alarm 31 electrically connected to the pressure detector 30, a resilient structure disposed on the resilient path of the conductive thimble 220, and an adjustment structure for adjusting the state of the resilient structure. The conductive thimble 220 forms different pressure values on the pressure detector 30 through the resilient structure after being stressed. In order to ensure that sufficient elastic pressure can be formed between the conductive thimble 220 and the annular conductive sheet 221, by providing a detection unit for detecting the magnitude of the resilient pressure of the conductive thimble 220 in the driving housing 20, the detection unit includes a pressure detector 30 disposed in the driving housing 20, an alarm 31 electrically connected to the pressure detector 30, a resilient structure disposed on the resilient path of the conductive thimble 220, and an adjustment structure for adjusting the state of the resilient structure. The conductive thimble 220 forms different pressure values on the pressure detector 30 through the resilient structure after being stressed. By detecting the pressure value of the conductive thimble 220, the position state of the conductive thimble 220 is judged to ensure the path effect between the conductive thimble 220 and the annular conductive sheet 221, achieving good structural stability, strong practicability and simple structure.

[0034] Furthermore, the resilience structure includes a resilience channel 32 disposed within the drive housing 20 and adapted to the outer diameter of each conductive thimble 220, a spring 33 disposed within the resilience channel 32 and abutting against one end of the pressure detector 30 and the conductive thimble 220 respectively, and an extension platform disposed on the pressure detector 30 and adapted to the inner diameter of the resilience channel 32. In the embodiment of the present invention, through the provided resilience structure, under the action of the spring 33, an elastic support can be formed between the conductive thimble 220 and the annular conductive sheet 221, ensuring a good abutting effect therebetween and guaranteeing the stability of conduction.

[0035] Furthermore, the adjustment structure includes a plurality of adjustment chambers 320 uniformly disposed on the inner wall of the resilience channel 32, adjustment blocks 321 respectively disposed within each adjustment chamber 320, and a driver 322 for driving each adjustment block 321 to reciprocate within the adjustment chamber 320. The driver 322 is a telescopic oil cylinder, and the driver 322 is disposed within the adjustment chamber 320. The adjustment structure further includes a lifting oil cylinder 340 disposed on the pressure detector 30 and used for driving each resilience channel 32 to lift. In the embodiment of the present invention, two adjustment methods can be adopted. One is to directly drive the conductive thimble 220, and the other is to drive the resilience channel 32 to drive the movement of the conductive thimble 220, thereby achieving the adjustment effect on the conductive thimble 220, and different methods can be adopted according to different adjustment situations until the effect of a conductive path is achieved.

[0036] Furthermore, a waterproof seal ring is provided between the drive housing 20 and the outer shell of the lamp body 1. Through the provided waterproof seal ring, the sealing effect after the installation of the drive housing 20 and the outer shell of the lamp body 1 can be achieved, ensuring the connection stability therebetween, greatly improving the practicability and having strong stability.

[0037] A detection method applicable to the separable and detachable installation structure of the above street lamp driver further includes a controller, which is communicatively connected to an alarm 31. The controller includes a detection module for receiving the electrical signal of a pressure detector 30; a comparison unit for setting the initial pressure value as P0 and, after the installation of the driving part 2, setting the maximum pressure formed by the conductive thimble 220 as P, and comparing the pressure value received by the detection module with the set value; a driving module for driving the telescopic oil cylinder and the lifting oil cylinder 340 to reciprocate; and a test unit for detecting whether the conductive thimble 220 and the annular conductive sheet 221 form a conductive path. The specific detection control method includes the following steps: S1. At time period T1, install the driving part 2 and the lamp body 1. At this time, the pressure detector 30 records the detected pressure value as P1. Determine whether the value of P1 is greater than P. If P1 > P, it is determined that there is a foreign object, and an alarm needs to be issued through the alarm 31 and manual cleaning is required. If not, proceed to the next installation step; Step S1 is for the initial installation stage. If there is a situation where P1 > P, then cleaning is required. If there is still an alarm situation after cleaning, the next operation can be directly carried out.

[0038] S2. At time period T2, gradually tighten the installation of the driving part 2 and the lamp body 1. At this time, the pressure detector 30 records the detected pressure value as P2. Determine whether the value of P2 is greater than P0 and less than P. If so, it is determined that the pressure value is within the normal range.

[0039] S3. At time period T3, after the installation of the driving part 2 and the lamp body 1 is tightened, at this time, the pressure detector 30 records the detected pressure value as P3. Determine whether the value of P3 is greater than P. If P3 > P, it means that the conductive thimble 220 is stuck in the return spring channel 32, and the driver 322 needs to be driven to adjust the conductive thimble 220 left and right; if not, detect whether the conductive thimble 220 and the annular conductive sheet 221 form a conductive state.

[0040] S4. During time period T4, after the driver 322 adjusts the conductive thimble 220 left and right, at this time, the pressure detector 30 records the detected pressure value as P4. Determine whether the value of P4 is greater than P. If P4 > P, it is determined that the jamming still exists and causes the phenomenon of inability to energize, and the return spring channel 32 is driven to lift and lower repeatedly to form a lifting extrusion on the conductive thimble 220; if not, detect whether the conductive thimble 220 and the annular conductive sheet 221 form a conductive state.

[0041] S5. During the time period T5, after repeatedly lifting and lowering the return channel 32, at this time, the pressure detector 30 records the detected pressure value as P5, and determines whether the value of P5 is greater than P. If P5 > P, it is determined that the jamming still exists, and the return channel 32 is driven to descend to the annular conductive sheet 221 to form a conducting state; otherwise, it is detected whether the conductive thimble 220 and the annular conductive sheet 221 form a conducting state.

[0042] S6. The installation is completed.

[0043] In the embodiment of the present invention, the state of the conductive thimble 220 is mainly divided into two major stages. First, when the driving part 2 is just installed, and the pressure value changes after the installation is completed. If there is a change in the pressure value, the state of the conductive thimble 220 can be judged by comparing the set pressure value, and then the position of the conductive thimble 220 can be adjusted according to the specific judgment situation.

[0044] And in the present invention, the above detection scheme is adopted to perform self-detection through the driving part 2 when the lamp body 1 is installed in batches, so as to achieve a good assembly effect and further improve the structural stability.

[0045] In the technical solution of the present invention, by setting the initial value of the pressure formed by the conductive thimble 220 as P0 and the maximum value P of the pressure formed by the conductive thimble 220 after the installation of the driving part 2, the position of the conductive thimble 220 between the driving part 2 and the annular conductive sheet 221 is detected in real time to judge the position of the conductive thimble during the installation process, and the return channel 32 or the conductive thimble is adjusted through the driver 322 and the lifting oil cylinder 340, so as to form a stable conducting state and ensure the normal operation of the drive.

[0046] The above are only the preferred embodiments of the present invention and are not intended to limit the present invention. Any ordinary changes and substitutions made by those skilled in the art within the scope of the technical solution of the present invention should be included in the protection scope of the present invention.

Claims

1. A method for detecting a street lamp driver detachable and detachable mounting structure, the street lamp driver detachable and detachable mounting structure comprising a lamp body (1) and a driving part (2) arranged on the lamp body (1), characterized in that: The driving part (2) is detachably connected to the lamp body (1), and the driving part (2) is arranged outside the outer shell of the lamp body (1). A mounting structure is arranged between the driving part (2) and the lamp body (1), and the mounting structure comprises a driving housing (20) and a connecting component arranged on the outer shell of the lamp body (1) and detachably connected to the driving housing (20). The driving part (2) is connected to the outer shell of the lamp body (1) through the driving housing (20) and the connecting component by rotation. An electrically connected driving component is arranged between the outer shell of the lamp body (1) and the driving housing (20). The driving component comprises a driving unit (22) arranged in the driving housing (20), a circuit board (21) arranged in the outer shell of the lamp body (1) and electrically connected to the driving unit (22), and an electrical connection component for connecting the driving unit (22) and the circuit board (21). The electrical connection component is configured to form a passage state after the driving part (2) is rotatably connected to the outer shell of the lamp body (1); On the contrary, as the driving part (2) and the lamp body (1) shell rotate in the opposite direction and separate, a circuit-breaking state is formed; The device also includes a controller, which is in communication with the alarm (31). The controller includes a detection module for receiving an electrical signal from a pressure detector (30); a comparison unit for setting an initial pressure value P0 and a maximum pressure value P formed by the conductive ejector pin (220) after the drive part (2) is installed, and comparing the pressure value received by the detection module with the set value; a drive module for driving the telescopic oil cylinder and the lifting oil cylinder (340) to reciprocate, and a test unit for detecting whether a path is formed between the conductive ejector pin (220) and the annular conductive sheet (221). The specific detection control method includes the following steps: S1, during a T1 time period, the drive part (2) and the lamp body (1) are installed. At this time, the pressure detector (30) counts the detected pressure value as P1, and determines whether the P1 value is greater than P. If P1>P, it is determined that there is a foreign object, and an alarm needs to be sounded through the alarm (31) and manual cleaning is performed. If not, the next step of installation is performed. S2, during the T2 period, the driving part (2) and the lamp body (1) are gradually tightened and installed. At this time, the pressure detector (30) counts the detected pressure value as P2, and determines whether the P2 value is greater than P0 and less than P, and then determines that it is within the normal pressure value range; S3, during the T3 time period, after the driving part (2) and the lamp body (1) are screwed together and installed, the pressure detector (30) measures the detected pressure value as P3, and determines whether the value of P3 is greater than P. If P3>P, the conductive ejector pin (220) is stuck in the rebound channel (32), and the driver (322) needs to be driven to adjust the conductive ejector pin (220) left and right; if not, it is detected whether the conductive ejector pin (220) and the annular conductive sheet (221) form a path state; S4, within the T4 time period, after the driver (322) adjusts the conductive ejector pin (220) left and right, the pressure detector (30) counts the detected pressure value as P4, and determines whether the P4 value is greater than P. If P4>P, it is determined that the jam still exists and causes the phenomenon of power failure, and the rebound channel (32) is driven to rise and fall repeatedly, thereby forming a lifting and squeezing of the conductive ejector pin (220); If not, detecting whether the conductive ejector pin (220) and the annular conductive sheet (221) form a path state; S5, in the T5 time period, after the driving rebound channel (32) is repeatedly raised and lowered, at this time, the pressure detector (30) counts the detected pressure value as P5, and determines whether the P5 value is greater than P. If P5>P, it is determined that the jam still exists, and the driving rebound channel (32) is lowered to the annular conductive sheet (221) to form a passage state; otherwise, it is detected whether the conductive ejector pin (220) and the annular conductive sheet (221) form a passage state; S6. Complete the installation.

2. A method for detecting a street lamp driver separation and detachable installation structure according to claim 1, characterized in that: The electrical connection assembly comprises a conductive ejector pin (220) arranged on the driving unit (22) and an annular conductive sheet (221) arranged on the circuit board (21) and forming an on / off circuit with the conductive ejector pin (220). A rebound assembly is also provided in the driving housing (20). The rebound assembly is configured to form a rebound force after the driving part (2) rotates and connects to the outer shell of the lamp body (1), so as to form an elastic pressure with the annular conductive sheet (221).

3. A method for detecting a street lamp driver separation and detachable installation structure according to claim 2, characterized in that: The drive housing (20) is also provided with a detection unit for detecting the magnitude of the rebound pressure of the conductive ejector pin (220), the detection unit comprising a pressure detector (30) arranged in the drive housing (20), an alarm (31) electrically connected to the pressure detector (30), a rebound structure arranged on the rebound path of the conductive ejector pin (220), and an adjustment structure for adjusting the state of the rebound structure. After being subjected to force, the conductive ejector pin (220) forms different pressure values ​​on the pressure detector (30) through the rebound structure.

4. A method for detecting a street lamp driver separation and detachable installation structure according to claim 3, characterized in that: The rebound structure comprises a rebound channel (32) arranged in the driving housing (20) and adapted to the outer diameter of each conductive ejector pin (220), a spring (33) arranged in the rebound channel (32) and respectively abutting against the pressure detector (30) and one end of the conductive ejector pin (220), and an extension platform arranged on the pressure detector (30) and adapted to the inner diameter of the rebound channel (32).

5. A method for detecting a street lamp driver separation and detachable installation structure according to claim 4, characterized in that: The regulating structure comprises a plurality of regulating chambers (320) uniformly arranged on the inner wall of the rebound channel (32), regulating blocks (321) respectively arranged in each regulating chamber (320), and a driver (322) for driving each regulating block (321) to slide back and forth in the regulating chamber (320), wherein the driver (322) is a telescopic oil cylinder, and the driver (322) is placed in the regulating chamber (320). The regulating structure also comprises a lifting oil cylinder (340) arranged on the pressure detector (30) and used for driving each rebound channel (32) to rise and fall.

6. A method for detecting a street lamp driver separation and detachable installation structure according to claim 1, characterized in that: The connection component is configured as a base (4) detachably connected to the outer shell of the lamp body (1), and the circuit board (21) is installed in the base (4); or it is an internal thread structure arranged on the inner wall of the outer shell of the lamp body (1), the drive housing (20) is adapted to the internal thread structure through an external thread, and the circuit board (21) is installed in the outer shell of the lamp body (1); or after the drive housing (20) is inserted through the outer shell of the lamp body (1), the connection component is a nut threadedly connected to the drive housing (20).

7. A method for detecting a street lamp driver separation and detachable installation structure according to claim 6, characterized in that: A waterproof sealing ring is provided between the driving housing (20) and the outer shell of the lamp body (1).

Citation Information

Patent Citations

  • Probe module for resistivity test of conductive fiber material

    CN116399913A

  • Novel LED lamp

    CN207334494U

  • Lamp driving module mounting structure and down lamp

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