A stereo garage operator testing device
By designing a testing device for automated parking garage operators, and utilizing a lifting frame and positioning mechanism to achieve automated testing, the problem of low testing efficiency caused by manual wire connection was solved, thereby improving testing efficiency and applicability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-04-06
- Publication Date
- 2026-03-31
AI Technical Summary
The testing process for existing automated parking system operators requires manual connection of wires, resulting in low testing efficiency and cumbersome disassembly and assembly.
A three-dimensional parking garage operator testing device was designed, including a testing platform, a lifting frame, a movable testing seat, and a testing rod assembly. The lifting frame controls the connection and disconnection between the testing rod assembly and the elevator operator port. Automated testing is achieved using a sliding toothed plate and ratchet mechanism. The device is combined with a positioning mechanism to adjust the position and adapt to different elevator operators.
It eliminates the need for manual wire disassembly and assembly, significantly shortens testing time, improves testing efficiency, and expands the scope of application to meet the testing needs of different elevator operators.
Smart Images

Figure CN116449131B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of automated parking systems, and in particular to a testing device for automated parking system operators. Background Technology
[0002] With the rapid development of economy and science and technology, and constrained by natural space resources, buildings are gradually moving towards high-rise buildings, and parking spaces are increasingly developing towards multi-level parking garages. To facilitate user operation of multi-level parking garages, operators are needed to control their operation. Because these operators control the multi-level parking garage, they require multiple interfaces to connect to various components. To ensure smooth operation, these operators need to be tested before leaving the factory. Currently, testing of multi-level parking garage operators generally requires manual connection of wires to the various ports, followed by testing with a testing machine. After testing, the wires are disconnected from the ports. This entire process is cumbersome, time-consuming, and significantly impacts testing efficiency. Therefore, existing technology suffers from low testing efficiency. Summary of the Invention
[0003] The purpose of this invention is to provide a testing device for a three-dimensional parking garage operator. This invention effectively improves testing efficiency.
[0004] The technical solution of the present invention: a three-dimensional parking garage operator testing device, including a testing platform, a lifting frame on the testing platform, a movable testing seat above the lifting frame, a testing rod assembly on the movable testing seat, the upper end of the testing rod assembly being connected to the testing machine via a wire, and the lower end of the testing rod assembly cooperating with the elevator operator port.
[0005] In the aforementioned three-dimensional parking garage operator testing device, the lifting frame includes hydraulic lifting rods located at both ends of the testing platform. Each hydraulic lifting rod has a limit frame at its upper end, and a sliding toothed plate is provided inside the limit frame. A ratchet mechanism that mates with the toothed surface of the sliding toothed plate is provided above the middle part of the limit frame. One of the sliding toothed plates has a first socket at its inner end, and the other sliding toothed plate has a first slot at its inner end.
[0006] In the aforementioned three-dimensional parking garage operator testing device, the movable test base is provided with a second socket and a second slot at both ends.
[0007] In the aforementioned three-dimensional parking garage operator testing device, the test rod group includes multiple metal test rods arranged side by side. The upper end of the metal test rod is connected to the testing machine via a wire, and the lower end of the metal test rod is provided with a contact piece.
[0008] In the aforementioned three-dimensional parking garage operator testing device, the contact piece includes a metal contact piece with a groove in the middle.
[0009] In the aforementioned three-dimensional parking garage operator testing device, the testing platform includes a fixed platform, a positioning mechanism is provided on the upper surface of the fixed platform, a placement seat is provided above the positioning mechanism, clamping plates are provided on both sides above the placement seat, and a pushing cylinder is provided at the outer end of the clamping plate.
[0010] Compared with existing technologies, this invention comprises a testing platform, a lifting frame mounted on the testing platform, a movable testing seat, and a test rod assembly housed within the movable testing seat. The test rod assembly is connected to the testing machine via wires. The lifting frame controls the connection between the test rod assembly and the elevator operator port, enabling power-on / off testing of the elevator operator port. The entire process eliminates the need for manual wire disassembly, effectively shortening testing time and significantly improving testing efficiency. Furthermore, by incorporating an adjustable sliding toothed plate and ratchet mechanism on the lifting frame, and utilizing sockets and slots to mate with the movable testing seat, this invention allows for free assembly and combination based on the number of elevator operator ports. The positioning mechanism on the testing platform adjusts the testing position to accommodate different elevator operators, expanding its applicability. Additionally, by placing a metal contact piece below the metal test rod, this invention increases the contact area and improves testing effectiveness. In summary, this invention effectively improves testing efficiency. Attached Figure Description
[0011] Figure 1 This is a schematic diagram of the structure of the present invention;
[0012] Figure 2 yes Figure 1 Enlarged view of the test platform and lifting frame in the middle;
[0013] Figure 3 yes Figure 2 A magnified view of a portion of the image;
[0014] Figure 4 This is a structural view of the movable test stand.
[0015] The labels in the attached diagram are as follows: 1-Test platform, 2-Lifting frame, 3-Modible test seat, 4-Test rod assembly, 5-Test machine, 201-Hydraulic lifting rod, 202-Limit frame, 203-Sliding toothed plate, 204-Ratchet mechanism, 205-First socket, 206-First slot, 301-Second socket, 302-Second slot, 401-Metal test rod, 402-Contact piece, 421-Metal contact piece, 422-Groove, 101-Fixed platform, 102-Positioning mechanism, 103-Placement seat, 104-Clamping plate, 105-Push cylinder. Detailed Implementation
[0016] The present invention will be further described below with reference to the accompanying drawings and embodiments, but this should not be construed as limiting the present invention.
[0017] Example. A testing device for an automated parking garage operator, configured as follows: Figure 1-4 As shown, the test platform 1 is provided with a lifting frame 2, a movable test seat 3 is provided above the lifting frame 2, a test rod group 4 is provided on the movable test seat 3, the upper end of the test rod group 4 is connected to the test machine 5 via a wire, and the lower end of the test rod group 4 is engaged with the elevator operator port.
[0018] like Figure 2 As shown, the lifting frame 2 includes hydraulic lifting rods 201 located at both ends of the test platform 1. Each hydraulic lifting rod 201 has a limiting frame 202 at its upper end. The limiting frame 202 has a sliding toothed plate 203 inside. The upper part of the middle of the limiting frame 202 has a ratchet mechanism 204 that cooperates with the toothed surface of the sliding toothed plate 203. The inner end of one sliding toothed plate 203 has a first socket 205, and the inner end of the other sliding toothed plate 203 has a first slot 206.
[0019] The movable test base 3 is provided with a second socket 301 and a second slot 302 at both ends.
[0020] like Figure 4 As shown, the test rod group 4 includes multiple metal test rods 401 arranged side by side. The upper end of the metal test rod 401 is connected to the test machine 5 via a wire, and the lower end of the metal test rod 401 is provided with a contact piece 402.
[0021] The contact piece 402 includes a metal contact piece 421, and the metal contact piece 421 has a groove 422 in the middle.
[0022] like Figure 2 As shown, the test platform 1 includes a fixed platform 101, a positioning mechanism 102 is provided on the upper surface of the fixed platform 101, a placement seat 103 is provided above the positioning mechanism 102, clamping plates 104 are provided on both sides above the placement seat 103, and a pushing cylinder 105 is provided at the outer end of the clamping plate 104.
[0023] The movable test base is provided with mounting holes for installing metal test rods.
[0024] Both the first socket and the second socket have magnets at their inner ends, and the inner bottom surfaces of the first slot and the second slot have magnetic sheets.
[0025] A metal spring and a metal sheet are provided on the top surface of the groove. This allows the contact piece to make a tighter contact and fit with the port.
[0026] Furthermore, the movable test stand is also equipped with a fault indicator light assembly that works in conjunction with the test rod assembly. The fault indicator light assembly includes an optocoupler, an LED, and a resistor. A resistor is connected in series with the LED at the input of the optocoupler in the current loop, and the output drives the LED. When current flows through the loop, the LED will light up.
[0027] Furthermore, the sliding toothed plate has graduations on both the front and rear sides for easy position adjustment.
[0028] The positioning mechanism includes a front and rear sliding screw assembly, a sliding seat above the front and rear sliding screw assembly, and a left and right sliding screw assembly on the sliding seat. This allows the positioning mechanism to move the fixed platform forward, backward, left, and right, adjusting the position of the fixed platform to adapt to the detection of different elevator operators.
[0029] Assembly process of the movable test fixture: Select the appropriate number of movable test fixtures to assemble according to the number of elevator operator ports to be tested. Insert the second sockets of two adjacent movable test fixtures into their second slots, and attract and attach the magnets to the magnetic plates. After assembly, insert the second socket of the corresponding movable test fixture into the first slot on another sliding toothed plate, and insert the second slot of the corresponding movable test fixture into the first socket of one of the sliding toothed plates, thus installing the movable test fixture on the lifting frame.
[0030] After the movable test stand is installed, the position of the placement stand is adjusted by the positioning mechanism so that the elevator operator is placed behind the placement stand and each port corresponds to the metal test rod.
[0031] The process of using this invention is as follows: The elevator operator is placed on the upper surface of the placement seat. The clamping plates on the left and right sides and the push cylinder are used to center and clamp the elevator operator. Then, the hydraulic lifting rod descends, driving the test rod group to descend. The contact piece contacts and adheres to the port of the elevator operator. The testing machine transmits the test current to the port through the wire, the metal test rod and the contact piece to test each port.
Claims
1. A device for testing a stereo garage operator, characterized by: Including test platform (1), be equipped with lifting frame (2) on test platform (1), be equipped with movable test seat (3) above lifting frame (2), be equipped with test pole group (4) on movable test seat (3), test pole group (4) upper end is connected with test machine (5) through wire, test pole group (4) lower end is matched with elevator operator port; The lifting frame (2) includes hydraulic lifting rods (201) located at both ends of the test platform (1), each hydraulic lifting rod (201) has a limiting frame (202) at the upper end, the limiting frame (202) has a sliding tooth plate (203) inside, and the upper part of the middle part of the limiting frame (202) has a ratchet mechanism (204) matched with the toothed surface of the sliding tooth plate (203); the inner end of one of the sliding tooth plates (203) is provided with a first socket (205), and the inner end of the other sliding tooth plate (203) is provided with a first slot (206); The movable test seat (3) is provided with a second socket (301) and a second slot (302) at both ends respectively.
2. The stereo garage operator testing device according to claim 1, characterized in that: The test pole group (4) includes a plurality of metal test poles (401) arranged side by side, the upper end of the metal test pole (401) is connected with the test machine (5) through the wire, and the lower end of the metal test pole (401) is provided with a contact piece (402).
3. A stereo garage operator testing device according to claim 2, characterized in that: The contact piece (402) includes a metal contact piece (421), and the middle part of the metal contact piece (421) is provided with a groove (422).
4. The stereo garage operator testing device of claim 1, wherein: The test platform (1) includes a fixed platform (101), and the upper surface of the fixed platform (101) is provided with a positioning mechanism (102), and the upper surface of the positioning mechanism (102) is provided with a placing seat (103), and the both sides of the upper surface of the placing seat (103) are provided with clamping plates (104), and the outer end of the clamping plate (104) is provided with a push cylinder (105).
Citation Information
Patent Citations
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