Bluetooth communication detection device for electric energy meter
By introducing a lifting mechanism and adjustable detection components into the Bluetooth communication detection device for electricity meters, the problems of limited device functionality and inconvenient maintenance are solved, achieving efficient and stable detection and convenient operation of electricity meters.
Patent Information
- Application Number
- CN202520288621.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-21
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2035-02-21
AI Technical Summary
Existing Bluetooth communication detection devices for electricity meters have limited functionality and are difficult to adjust, resulting in low detection efficiency and inconvenient maintenance.
A Bluetooth communication detection device for electricity meters, including a lifting mechanism and a detection component, was designed. The lifting mechanism can lift and position the meter tray, and the detection component can move along the width of the conveyor line. The position of the Bluetooth module can be adjusted by the swing bracket to achieve switching between vertical and horizontal states, which facilitates the picking, placing and maintaining of electricity meters.
It improves detection results, enhances the stability and reliability of the device, simplifies the structure, reduces the number of drive units used, and lowers costs.
Smart Images

Figure CN223742723U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a kind of bluetooth communication detection devices, more specifically, it relates to a kind of electric energy meter bluetooth communication detection device. BACKGROUND
[0002] Bluetooth module communication detection is a very important link in the process of verification, and more and more enterprises use automatic equipment to replace manual judgment, which can effectively improve the detection efficiency and reduce the error probability. Currently, most enterprises use manual bluetooth communication detection, which is low in efficiency and prone to errors. Therefore, a new type of reliable, convenient and adaptive bluetooth communication detection device is designed, which can adapt to three-phase and various types of electric energy meters to meet the needs of various manufacturers for testing the bluetooth communication detection function of the meter.
[0003] For example: Chinese patent publication number CN217932030U, published on November 29, 2022, the utility model is named as an energy controller bluetooth communication detection module mounting bracket, including a tray conveying line and a meter loading tray for loading an energy controller moving on the tray conveying line, the tray conveying line side is fixed with a bracket base, the bracket base vertically extends to a position higher than the energy controller, one or more fixing seats are provided on the bracket base, the fixing seat extends to the upper of the energy controller through the connecting piece, and the bluetooth communication detection module is fixed at the end to detect the bluetooth communication module on the energy controller. This scheme completely realizes the installation function of the energy controller bluetooth communication detection module, and can realize free adjustment of position while realizing installation of single and multiple detection modules, with stable and reliable structure, improved efficiency and success rate of bluetooth communication detection, and thus improved production efficiency and equipment practicability of the overall electric energy meter verification assembly line. However, the detection part in the scheme is simple in structure and single in function, cannot be adjusted, and is not conducive to later maintenance. UTILITY MODEL CONTENTS
[0004] The utility model overcomes the problem of single function and difficulty in adjustment of existing electric energy meter bluetooth communication detection device, and provides an electric energy meter bluetooth communication detection device. The scheme can adjust the bluetooth module, has good overall stability, high reliability, simple structure, and is convenient for meter taking and placing and later maintenance.
[0005] In order to solve the above technical problems, the utility model discloses the following technical scheme: A kind of electric energy meter bluetooth communication detection device, including conveying line and jacking mechanism in conveying line, electric meter tray is equipped on the conveying line, the jacking mechanism includes the positioning disc that can be adapted with the electric meter tray and is connected, conveying line side is equipped with detection component, the detection component includes the swing support that can be moved along the width direction of conveying line, blue tooth module is equipped on the swing support.In the present scheme, jacking mechanism can lift the electric meter tray on conveying line, positioning is carried out, it is guaranteed that electric energy meter on electric meter tray is in correct position, meanwhile also lifts electric energy meter to certain height, to reduce the distance between electric energy meter and blue tooth module in detection component, improve detection effect;And detection group can also be moved along the width direction of conveying line, so as to move blue tooth module to the position where electric energy meter is, meanwhile, through swing support, blue tooth module can also be adjusted to vertical or horizontal state, so as to facilitate the taking and placing of electric energy meter and later maintenance.
[0006] As preferred, the detection component is arranged on the disconnection mechanism, the disconnection mechanism includes a base and a telescopic assembly arranged on the base, the telescopic assembly includes a first driving device and a telescopic rod arranged on the output end of the first driving device, and the telescopic rod is connected to the detection component. Arranging the detection component on the disconnection mechanism does not affect the original equipment structure, and the telescopic movement of the disconnection mechanism drives the movement of the detection component, reducing the use of driving devices.
[0007] As preferred, the detection component further includes a mounting bracket, the swing support includes a first bracket and a second bracket, the first bracket is fixedly connected to the mounting bracket, and the second bracket is hingedly connected to the first bracket. The mounting bracket is used for mounting the entire detection component, the first bracket is used for connecting with the mounting bracket, and the second bracket is used for fixing the blue tooth module; the first bracket and the second bracket are hingedly connected, facilitating the adjustment of the blue tooth module.
[0008] As preferred, the second bracket includes a mounting portion and a connecting portion, the width size of the connecting portion is smaller than that of the mounting portion, the blue tooth module is arranged on the mounting portion, and the connecting portion is connected with the first bracket. The part of the second bracket away from the first bracket is the mounting portion, and the part close to the first bracket is the connecting portion, the connecting portion is connected with the first bracket, the mounting portion is used for mounting the blue tooth module, and the width size of the mounting portion is designed to be larger, which can provide sufficient space for mounting the blue tooth module, and on the other hand, the center of gravity of the second bracket in the vertical state can be close to the position of the first bracket, thereby improving the stability of the second bracket in the vertical state.
[0009] As preferred, the rotation angle range of the first support and the second support is 0° to 90°. The first support is in a fixed state, the second support rotates relative to the first support, and the second support can be in a horizontal state and a vertical state. When the second support is in the horizontal state, the Bluetooth module on the second support is above the electric energy meter, and the Bluetooth communication detection work can be performed. When the second support is in the vertical state, the electric energy meter can be taken and placed.
[0010] As preferred, the jacking mechanism further comprises a second driving device and a fixed plate bearing the second driving device, and the output end of the second driving device is provided with a fixing seat, and the fixing seat is provided with the positioning disc. The second driving device is used for driving the lifting of the lifting mechanism, and the fixing seat is used for arranging the positioning disc, so that the positioning disc jacks up the electric meter tray.
[0011] As preferred, at least two groups of positioning pins are arranged on the positioning disc. The positioning pins on the positioning disc can position the position of the electric meter tray, and at least two groups of positioning pins are arranged, so that the positioning effect is better.
[0012] As preferred, the size of the fixing seat is larger than the size of the positioning disc, and at least one group of positioning discs can be arranged. The fixing seat can arrange one or more positioning discs, so that the arrangement number of the positioning disc is increased, and the use of the driving device is reduced.
[0013] As preferred, the size of the electric meter tray is larger than the size of the electric energy meter, and at least one group of electric energy meters can be arranged. The electric meter tray can arrange the first or more electric energy meters, so that the arrangement number of the electric energy meter is increased, and the use of the driving device is reduced.
[0014] Compared with the prior art, the utility model has the advantages of (1) the scheme can adjust the Bluetooth module, has good overall stability, high reliability and simple structure; (2) the hinged connection mode can be turned over by 90°, facilitating electric meter taking and placing and later maintenance; (3) the structure is reasonably arranged, the use of driving device is reduced, and the cost consumption is reduced. BRIEF DESCRIPTION OF DRAWINGS
[0015] Figure 1 It is the isometric view for the utility model.
[0016] Figure 2 It is the top view for the utility model.
[0017] Figure 3 It is the isometric view for the utility model.
[0018] Figure 4 It is the schematic view of the electric meter tray and the detection assembly of the utility model.
[0019] Figure 5This is a schematic diagram of the swing bracket of this utility model.
[0020] Figure 6 This is a schematic diagram of the lifting mechanism of this utility model.
[0021] In the diagram: 1. Conveyor line, 2. Lifting mechanism, 3. Meter tray, 4. Positioning plate, 5. Detection component, 6. Swing bracket, 6.1. First bracket, 6.2. Second bracket, 6.21. Mounting part, 6.22. Connecting part, 7. Bluetooth module, 8. Disconnection cable mechanism, 9. Base, 10. Telescopic component, 11. First drive device, 12. Mounting bracket, 13. Hinge, 14. Second drive device, 15. Fixing plate, 16. Fixing seat, 17. Positioning pin, 18. Energy meter, 19. Main bracket, 20. Slide, 21. Guide rod. Detailed Implementation
[0022] The technical solution of this utility model will be further described in detail below through specific embodiments and in conjunction with the accompanying drawings.
[0023] Example 1: As Figures 1 to 5 The device shown is a Bluetooth communication testing device for an electricity meter, including a main support 19, a conveyor line 1 on the main support 19, a disconnection mechanism 8 on one side of the conveyor line 1, and a lifting mechanism 2 at the bottom of the middle position of the conveyor line 1. The conveyor line 1 can transport an electricity meter 18. A testing component 5 is arranged on the disconnection mechanism 8. The testing component 5 can perform Bluetooth communication testing on the electricity meter 18 on the conveyor line 1, verify whether the Bluetooth connection between the electricity meter 18 and the smart device is stable, whether it can maintain a continuous connection within a set distance, and check whether there are frequent disconnections or connection failures during the Bluetooth connection process.
[0024] Specifically, the conveyor line 1 is arranged on the main support 19 and consists of two tracks. A continuous distribution of electricity meters 18 is arranged on the conveyor line 1, and the electricity meters 18 are placed on the meter tray 3. Positioning holes are provided at the bottom of the meter tray 3. The lifting mechanism 2 is located below the meter tray 3 and is equipped with a positioning plate 4. The positioning plate 4 has positioning pins 17 that can cooperate with the positioning holes at the bottom of the meter tray 3 to position the meter tray 3 and ensure the correct position of the electricity meters 18. Furthermore, the lifting mechanism 2 can also drive the positioning plate 4 to move up and down, not only allowing the positioning plate 4 to cooperate with the meter tray 3 but also lifting the meter tray 3 to a certain height, thus raising the electricity meters 18 to a certain height. This ensures the positioning effect of the positioning plate 4 on the meter tray 3 and reduces the distance between the electricity meters 18 and the detection component 5, improving the detection effect. The detection component 5 includes a Bluetooth module 7, which is capable of Bluetooth communication detection.
[0025] The detection assembly 5 includes a mounting bracket 12, a swing bracket 6 and a Bluetooth module 7. The detection assembly 5 is arranged on the disconnection mechanism 8 through the mounting bracket 12. As shown in Figures 3 to 5 The disconnection mechanism 8 is a disconnection mechanism for an electric energy meter calibration special machine. The disconnection mechanism 8 includes a base 9 and a telescopic assembly 10. The telescopic assembly 10 is arranged on the base 9. The base 9 is arranged on a general bracket 19. The telescopic assembly 10 includes a first driving device 11. Specifically, the first driving device 11 is a cylinder structure. The output end of the cylinder is a telescopic rod. One end of the telescopic rod away from the first driving device 11 is connected with a sliding seat 20. Two parallel arranged guide rods 21 are arranged on the base 9. The sliding seat 20 is slidingly connected with the guide rods 21. The length direction of the guide rods 21 is the same as the width direction of the conveying line 1. Thus, the telescopic assembly 10 can drive the sliding seat 20 to move along the width direction of the conveying line 1. The detection assembly is arranged on the sliding seat 20. Specifically, the mounting bracket 12 is an inverted “U” shape and is fixed on both sides of the sliding seat 20 of the disconnection mechanism 8. The swing bracket 6 is arranged on the top of the mounting bracket 12. The swing bracket 6 includes a first bracket 6.1 and a second bracket 6.2. The first bracket 6.1 and the second bracket 6.2 are hingedly connected through a hinge 13. The first bracket 6.1 is fixed with the mounting bracket 12 through screws. The second bracket 6.2 can swing relative to the first bracket 6.1. The Bluetooth module 7 is arranged on the second bracket 6.2 and changes the position with the second bracket 6.2.
[0026] The second bracket 6.2 includes a mounting portion 6.21 and a connecting portion 6.22. The mounting portion 6.21 of the second bracket 6.2 is close to the first bracket 6.1 and is hingedly connected with the first bracket 6.1 through the hinge 13. The connecting portion 6.22 of the second bracket 6.2 is a “C” shaped connecting piece. Thus, under the action of the “C” shaped connecting piece, when the second bracket 6.2 rotates to be horizontal, the “C” shaped connecting piece will abut against the surface of the first bracket 6.1, so that the second bracket 6.2 cannot continue to rotate. When the hinge 13 is closed, the second bracket 6.2 is in a vertical state. Thus, the second bracket 6.2 can only rotate within a range of 90°. Four groups of mounting holes are arranged on the mounting portion 6.21 of the second bracket 6.2. The Bluetooth module 7 is fixedly connected with the mounting portion 6.21 through screws and the like. Thus, the Bluetooth module 7 is convenient to replace. A damping member can be designed on the hinge 13. Thus, the hinge 13 has a certain damping effect. Thus, the movement of the swing bracket 6 has a certain buffering effect. Thus, the swing bracket 6 is prevented from generating relatively violent vibration and impact to affect the Bluetooth module 7.
[0027] It also needs to be explained that the width size of the mounting part 6.21 is larger than that of the connecting part 6.22, and the size of the mounting part 6.21 is matched with the size of the Bluetooth module 7, which is not only conducive to the installation of the Bluetooth module 7, but also can improve the stability of the Bluetooth module 7. Specifically, when the second support 6.2 is in a horizontal state, the Bluetooth module 7 is located above the conveying line 1, and then the detection assembly 5 is adjusted by the telescopic assembly 10, so that the Bluetooth module 7 can be located above the electric energy meter 18. At this time, the Bluetooth communication detection work can be carried out. When the detection work is completed or there is a fault error, the corresponding second support 6.2 can be lifted, so that the Bluetooth module 7 is away from the electric energy meter 18, and then the electric energy meter 18 is taken out for inspection, which is convenient for the use of the electric energy meter 18. In addition, when the second support 6.2 is lifted and in a vertical state, since the width size of the second support 6.2 is larger, the overall weight of the Bluetooth module 7 will be close to the position of the first support 6.1, so that the stability of the Bluetooth module 7 on the second support 6.2 can be improved, and the possibility of the second support 6.2 suddenly falling to the horizontal state can be reduced.
[0028] Embodiment 2: An electric energy meter Bluetooth communication detection device as shown in Figures 1 to 6 The device comprises a total support 19, the total support 19 is provided with a conveying line 1, a disconnection mechanism 8 is arranged on one side of the conveying line 1, and a jacking mechanism 2 is arranged at the middle position of the bottom of the conveying line 1. The conveying line 1 can transport electric energy meters 18, and a detection assembly 5 is arranged on the disconnection mechanism 8. The detection assembly 5 can detect the Bluetooth communication of the electric energy meter 18 on the conveying line 1, verify whether the Bluetooth connection between the electric energy meter 18 and the smart device is stable, whether it can maintain continuous connection within the set distance, and whether there is frequent disconnection or connection failure during the Bluetooth connection process.
[0029] Specifically, the conveying line 1 is arranged on the total support 19 and is composed of two tracks. The electric energy meter 18 is arranged on the conveying line 1 in a continuous distribution manner. The electric energy meter 18 is arranged on the electric meter tray 3, and the electric meter tray 3 is provided with a positioning hole at the bottom. The jacking mechanism 2 is located below the electric meter tray 3. The jacking mechanism 2 is provided with a positioning disc 4, and the positioning disc 4 is provided with a positioning pin 17. The positioning pin 17 can cooperate with the positioning hole at the bottom of the electric meter tray 3, so as to position the electric meter tray 3 and ensure the correct position of the electric energy meter 18. In addition, the jacking mechanism 2 can drive the positioning disc 4 to move up and down. Not only can the positioning disc 4 cooperate with the electric meter tray 3, but also can lift the electric meter tray 3 to a certain height, so that the electric energy meter 18 is lifted to a certain height. On the one hand, it can ensure the positioning effect of the positioning disc 4 on the electric meter tray 3, and on the other hand, it can reduce the distance between the electric energy meter 18 and the detection assembly 5 and improve the detection effect. The detection assembly 5 comprises a Bluetooth module 7, and the Bluetooth module 7 can perform Bluetooth communication detection.
[0030] The detection component 5 includes a mounting bracket 12, a swing bracket 6, and a Bluetooth module 7. The detection component 5 is mounted on the disconnection and retraction mechanism 8 via the mounting bracket 12, as detailed below. Figures 3 to 5 As shown, the disconnection and reconnection mechanism 8 is a dedicated disconnection and reconnection mechanism for electricity meter calibration. The disconnection and reconnection mechanism 8 includes a base 9 and a telescopic assembly 10. The telescopic assembly 10 is arranged on the base 9, and the base 9 is arranged on the main support 19. The telescopic assembly 10 includes a first drive device 11. Specifically, the first drive device 11 is a cylinder structure. The output end of the cylinder is a telescopic rod. The end of the telescopic rod away from the first drive device 11 is connected to a slide 20. Two parallel guide rods 21 are arranged on the base 9. The slide 20 is slidably connected to the guide rods 21. The length direction of the guide rods 21 is the same as the width direction of the conveyor line 1, so that the telescopic assembly 10 can drive the slide 20 to move along the width direction of the conveyor line 1. A detection component is arranged on the slide 20. Specifically, the mounting bracket 12 is inverted "U" shaped and is fixed on both sides of the slide 20 on the disconnection mechanism 8. A swing bracket 6 is arranged on the top of the mounting bracket 12. The swing bracket 6 includes a first bracket 6.1 and a second bracket 6.2. The first bracket 6.1 and the second bracket 6.2 are hinged by a hinge 13. The first bracket 6.1 is fixed to the mounting bracket 12 by screws. The second bracket 6.2 can swing relative to the first bracket 6.1. The Bluetooth module 7 is arranged on the second bracket 6.2 and follows the position change of the second bracket 6.2.
[0031] The second bracket 6.2 includes a mounting part 6.21 and a connecting part 6.22. The mounting part 6.21 of the second bracket 6.2 is close to the first bracket 6.1 and is hinged to the first bracket 6.1 via a hinge 13. The connecting part 6.22 of the second bracket 6.2 is a "C"-shaped connecting piece. Therefore, under the action of the "C"-shaped connecting piece, when the second bracket 6.2 rotates to a horizontal position, the "C"-shaped connecting piece will abut against the surface of the first bracket 6.1, preventing the second bracket 6.2 from rotating further. When the hinge 13 is closed, the second bracket 6.2 is in a vertical position. Therefore, the second bracket 6.2 can only rotate within a 90° range. Four sets of mounting holes are provided on the mounting part 6.21 of the second bracket 6.2. The Bluetooth module 7 is fixedly connected to the mounting part 6.21 via screws or other fasteners, facilitating the replacement of the Bluetooth module 7. Damping elements can also be designed on the hinge 13 to give the hinge 13 a certain damping effect, thereby providing a certain buffering effect on the movement of the swing bracket 6 and preventing the swing bracket 6 from generating a relatively violent vibration impact that could affect the Bluetooth module 7.
[0032] It also needs to be explained that the width size of the mounting part 6.21 is larger than the width size of the connecting part 6.22, and the size of the mounting part 6.21 is matched with the size of the Bluetooth module 7, so it is not only beneficial to install the Bluetooth module 7, but also can improve the stability of the Bluetooth module 7. Specifically, when the second support 6.2 is in a horizontal state, the Bluetooth module 7 is located above the conveying line 1, and then the detection assembly 5 is adjusted through the telescopic assembly 10, so that the Bluetooth module 7 can be located above the electric energy meter 18, at this time, the Bluetooth communication detection work can be carried out, when the detection work is finished or there is a fault error, the corresponding second support 6.2 can be lifted, so that the Bluetooth module 7 is away from the electric energy meter 18, and then the electric energy meter 18 is taken out for inspection, so it is convenient for the use of the electric energy meter 18. In addition, when the second support 6.2 is lifted and in a vertical state, because the width size of the second support 6.2 is larger, the overall weight of the Bluetooth module 7 will be close to the position of the first support 6.1, so the stability of the Bluetooth module 7 on the second support 6.2 can be improved, and the possibility of the second support 6.2 suddenly falling to the horizontal state can be reduced.
[0033] The jacking mechanism 2 comprises a second driving device 14, a fixed plate 15, a fixed seat 16 and a positioning disc 4. The fixed plate 15 is arranged on a total support 19, and a mounting hole is arranged on the fixed plate 19 for mounting the second driving device 14. The second driving device 14 is in a cylinder structure, and the fixed plate 15 is in a rectangular plate structure. Guide holes and guide columns located in the guide holes are arranged at four corner positions of the fixed plate 15. The output end of the second driving device 14 is also provided with a telescopic rod, and the telescopic rod and the upper end of the guide column are jointly connected with the fixed seat 16. Thus, when the second driving device 14 starts to perform telescopic movement, the fixed seat 16 will move up and down along the vertical direction.
[0034] The upper surface of the fixed seat 16 is provided with a groove, and the positioning disc 4 can be placed on the upper surface of the fixed seat 16. As shown in Figure 6 , two positioning discs 4 can be arranged on one fixed seat 16. The number of the positioning discs 4 can also be designed according to the length of the fixed seat 16, so that one driving device can make multiple positioning discs 4 move, reducing the use of the driving device. As shown in Figure 4 , two groups of electric energy meters 18 are arranged on the positioning disc 4. Therefore, in this embodiment, four groups of electric energy meters 18 are arranged on one fixed seat 16. Of course, by designing the size and length of the positioning disc 4, different and various numbers of electric energy meters 18 can also be arranged.
[0035] On the positioning disc 4, positioning pins 17 are further arranged. Since two groups of electric energy meters 18 are arranged on one positioning disc 4, four groups of positioning pins 17 are arranged, and each group of electric energy meters 18 needs to be matched with at least two groups of positioning pins 17 to ensure the positioning effect of the electric energy meters 18. The positioning pins 17 are designed in two types, one type is a positioning pin with a conical top and a cylindrical bottom, which mainly plays a guiding and positioning role, and the other type is a cylindrical positioning pin, which plays a limiting and fixing role.
Claims
1. An electric energy meter Bluetooth communication detection device, characterized in that, The utility model provides a kind of electric meter conveying line, including conveying line and jacking mechanism located in conveying line, and the electric meter tray is equipped on the conveying line, and the jacking mechanism includes the positioning disc that can be matched with the electric meter tray and is clamped, and the conveying line side is equipped with detection component, and the detection component includes the swing support that can move along the width direction of conveying line, and the swing support is equipped with Bluetooth module.
2. The electric energy meter Bluetooth communication detection device according to claim 1, characterized in that, The detection component is arranged on the disconnection mechanism, and the disconnection mechanism includes a base and a telescopic assembly arranged on the base, the telescopic assembly includes a first driving device and a telescopic rod arranged on the output end of the first driving device, and the telescopic rod is connected to the detection component.
3. The electric energy meter Bluetooth communication detection device according to claim 1 or 2, characterized in that, The detection component further includes a mounting bracket, the swing support includes a first bracket and a second bracket, the first bracket is fixedly connected to the mounting bracket, and the second bracket is hingedly connected to the first bracket.
4. The electric energy meter Bluetooth communication detection device according to claim 3, characterized in that, The second bracket includes a mounting portion and a connecting portion, the width of the connecting portion is smaller than that of the mounting portion, the mounting portion is provided with the Bluetooth module, and the connecting portion is connected to the first bracket.
5. The electric energy meter Bluetooth communication detection device according to claim 4, characterized in that, The rotation angle of the first bracket and the second bracket ranges from 0° to 90°.
6. The electric energy meter Bluetooth communication detection device according to claim 1 or 2, characterized in that, The jacking mechanism further includes a second driving device and a fixed plate carrying the second driving device, the output end of the second driving device is provided with a fixed seat, and the fixed seat is provided with the positioning disc.
7. The electric energy meter Bluetooth communication detection device according to claim 6, characterized in that, The positioning disc is provided with at least two groups of positioning pins.
8. The electric energy meter Bluetooth communication detection device according to claim 6, characterized in that, The size of the fixed seat is larger than that of the positioning disc, and at least one group of positioning discs can be arranged.
9. The electric energy meter Bluetooth communication detection device according to claim 8, characterized in that, The size of the electric meter tray is larger than that of the electric energy meter, and at least one group of electric energy meters can be arranged.