Energy storage battery inverter testing device

By designing electrical connection components and a clamping plate structure, the problems of convenient connection and stable fixation of the energy storage battery inverter testing device were solved, achieving flexible connection and stable testing without tool assistance.

CN223565754UActive Publication Date: 2025-11-18深圳天溯计量检测股份有限公司
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Patent Information

Application Number
CN202423039335.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-10
Publication Date
2025-11-18
Estimated Expiration
2034-12-10

AI Technical Summary

Technical Problem

Existing testing equipment for energy storage battery inverters requires tools for connection operations, and the inverter is not fixed, which affects convenience and testing stability.

Method used

The system employs electrical connection components and a clamping plate structure, enabling convenient connection and fixation of the energy storage battery inverter via an electrically adjustable telescopic rod and fixing screws. This includes the design of components such as the electrically adjustable telescopic rod, clamping plate, electrical connection components, and fixing screws.

Benefits of technology

It enables convenient connection without the need for tools, adapts to different inverter models, and improves connection flexibility and test stability.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223565754U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of energy storage battery inverter testing, in particular to an energy storage battery inverter testing device, which comprises a testing table, a positioning plate, an electric adjusting telescopic rod and a clamping plate, a track is arranged at the front end of the upper side of the testing table, an electric connecting component is mounted on the upper side of the track, and the electric connecting component is connected with the positioning plate. One end of the electric connecting component is provided with a connecting wire, the inner side of the clamping plate is provided with an energy storage battery inverter main body, the front side of the energy storage battery inverter main body is provided with a power connection end, and the electric connecting component comprises a first adjusting plate. According to the utility model, the energy storage battery inverter main body and the connecting wire are connected through the electric connecting member, no tool assistance is needed in the connecting process, the convenience of use is facilitated, the position of the electric connector can be adjusted, the connection operation of energy storage battery inverter main bodies of different models can be adapted, and the use is convenient. And the energy storage battery inverter main body is fixed through the clamping plate, so that the test stability is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to energy storage battery inverter test technical field, specifically a kind of energy storage battery inverter testing device. BACKGROUND

[0002] The inverter for energy storage battery, i.e., the energy storage inverter, is a key component of the energy storage system, responsible for bidirectional conversion and transmission of energy between the energy storage battery and the power grid. When the power grid is normal, it converts the direct current of the energy storage battery into alternating current and feeds it into the power grid. When the power grid is abnormal, it serves as an emergency power supply to power important loads. During the processing of the energy storage battery inverter, a testing device is used to test the energy storage battery inverter to ensure the normal operation of the processed energy storage battery inverter.

[0003] However, the energy storage battery inverter testing devices on the market currently require connection operations of test lines, which need tools for assistance during the connection operation process, making it inconvenient to use. The inverter is not fixed during the connection process, which is not conducive to the stability of the test. Therefore, the technical personnel in the field provide an energy storage battery inverter testing device to solve the problems raised in the above background technology. SUMMARY

[0004] The utility model aims at providing an energy storage battery inverter testing device to solve the problems raised in the above background technology.

[0005] To achieve the above-mentioned purpose, the utility model provides the following technical scheme:

[0006] An energy storage battery inverter testing device includes a test table, a positioning plate, an electrically adjustable telescopic rod, and a clamping plate. The positioning plate is located at the upper side of the test table at both ends. The electrically adjustable telescopic rod is located at the outer end of the positioning plate. The clamping plate is located at the inner end of the electrically adjustable telescopic rod. The upper side of the front end of the test table is provided with a track. The upper side of the track is installed with an electrical connection component. One end of the electrical connection component is provided with a connecting line. The inner side of the clamping plate is installed with an energy storage battery inverter main body. The front side of the energy storage battery inverter main body is provided with an electrical connection end. The electrical connection component includes a first adjusting plate. The upper side of the first adjusting plate is provided with a first guide slide rod. The upper end of the first guide slide rod is provided with a second adjusting plate. The inside of the second adjusting plate is provided with a threaded rod. The rear side of the threaded rod is provided with an electrical connector. The front side of the electrical connector is provided with a second guide slide rod at the outer end position.

[0007] As a further scheme of the utility model: the front side of the first adjusting plate is installed with a first fixed screw. The front side of the second adjusting plate is installed with a second fixed screw at the position corresponding to the first guide slide rod. The inner side of the first adjusting plate is provided with a sliding block. The upper side of the track is provided with a sliding groove.

[0008] As a further scheme of the utility model: the first adjusting plate slides at the outer side position of the track, the second adjusting plate slides at the outer side position of the first guide sliding rod, the threaded rod rotates at the inner side position of the second adjusting plate, the rear side of the threaded rod rotates at the front side position of the electric connector, and the front end of the second guide sliding rod slides at the inner side position of the second adjusting plate.

[0009] As a further scheme of the utility model: the electric connector corresponds to the position of the power connection end, the electric connector is electrically connected with the energy storage battery inverter main body through the power connection end, and the electric connector is electrically connected with the test bench through the connecting line.

[0010] As a further scheme of the utility model: the clamping plate slides at the inner side position of the positioning plate through the electrically-operated adjusting telescopic rod, and the energy storage battery inverter main body is fixed at the upper side position of the test bench through the clamping plate.

[0011] As a further scheme of the utility model: the rear end of the first fixing screw penetrates the first adjusting plate and is located at the front side position of the track, the first adjusting plate is fixed at the outer side position of the track through the first fixing screw, the rear end of the second fixing screw penetrates the second adjusting plate and is located at the outer side position of the first guide sliding rod, and the second adjusting plate is fixed at the outer side position of the first guide sliding rod through the second fixing screw.

[0012] As a further scheme of the utility model: the sliding block slides at the inner side position of the sliding groove, and the first adjusting plate slides at the outer side position of the track through the sliding block and the sliding groove.

[0013] Compared with the prior art, the utility model has the advantages that:

[0014] The energy storage battery inverter testing device is connected with the connecting line through the electric connection component, and no tool is needed in the connecting process, so that the convenience of use is improved; the position of the electric connector can be adjusted, the connecting operation of different models of energy storage battery inverters can be adapted, the adaptation range is wide, and the flexibility of use is improved.

[0015] The energy storage battery inverter main body is fixed through the clamping plate, so that the movement of the energy storage battery inverter main body in the test process is avoided, and the stability of the test is improved. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 It is a structural schematic view of an energy storage battery inverter testing device.

[0017] Figure 2 It is a structural schematic view of an electric connection component in an energy storage battery inverter testing device.

[0018] Figure 3 For Figure 1 Structural diagram of part A.

[0019] In the figure: 1, test bench; 2, positioning plate; 3, electrically adjustable telescopic rod; 4, clamping plate; 5, track; 6, electrical connection component; 7, connecting wire; 8, energy storage battery inverter main body; 9, power connection end; 10, first adjusting plate; 11, first guide sliding rod; 12, second adjusting plate; 13, threaded rod; 14, electrical connector; 15, second guide sliding rod; 16, first fixing screw; 17, second fixing screw; 18, sliding block; 19, sliding groove. DETAILED DESCRIPTION

[0020] Please refer to Figures 1 to 3The utility model discloses an energy storage battery inverter testing arrangement, including test table 1, positioning plate 2, electrically adjusted telescopic link 3 and clamping plate 4, positioning plate 2 is located test table 1's upside both ends position, electrically adjusted telescopic link 3 is located the outer end position at positioning plate 2, clamping plate 4 is located the inner end position at electrically adjusted telescopic link 3, the upside front end position of test table 1 is provided with track 5, the upside of track 5 is installed electrically connected component 6, one end of electrically connected component 6 is provided with connecting wire 7, the inside of clamping plate 4 is installed energy storage battery inverter main part 8, and the front side of energy storage battery inverter main part 8 is provided with electricity connection end 9, and electrically connected component 6 includes first adjusting plate 10, the upside of first adjusting plate 10 is provided with first guide slide bar 11, and the upper end of first guide slide bar 11 is provided with second adjusting plate 12, and the inside of second adjusting plate 12 is provided with threaded rod 13, and the back of threaded rod 13 is provided with electric connection head 14, and the front side outer end position of electric connection head 14 is provided with second guide slide bar 15, and first adjusting plate 10 slides in the outside position of track 5, and second adjusting plate 12 slides in the outside position of first guide slide bar 11, and threaded rod 13 rotates in the inside position of second adjusting plate 12, and the back of threaded rod 13 rotates in the front side position of electric connection head 14, and the front end of second guide slide bar 15 slides in the inside position of second adjusting plate 12, and the position of electric connection head 14 corresponds with electricity connection end 9, and electric connection head 14 is electrically connected with energy storage battery inverter main part 8 through electricity connection end 9, and electric connection head 14 is electrically connected with test table 1 through connecting wire 7, and clamping plate 4 slides in the inside position of positioning plate 2 through electrically adjusted telescopic link 3, and energy storage battery inverter main part 8 is fixed in the upside position of test table 1 through clamping plate 4, first, place a kind of energy storage battery inverter testing arrangement to use position, then, energy storage battery inverter main part 8 is placed to the upside of test table 1, electrically adjusted telescopic link 3 runs and pushes clamping plate 4 to slide on the upside of test table 1, and energy storage battery inverter main part 8 is fixed to the upside of test table 1 by clamping plate 4, according to the position of electricity connection end 9, slider 18 slides in the inside of sliding slot 19, the horizontal position of electric connection head 14 is adjusted, first adjusting plate 10 is fixed to the outside of track 5, second adjusting plate 12 slides in the outside of first guide slide bar 11, the height of electric connection head 14 is adjusted, second adjusting plate 12 is fixed to the outside of first guide slide bar 11, the front end of threaded rod 13 rotates in the inside of second adjusting plate 12, the back of threaded rod 13 rotates in the front side of electric connection head 14, the front end of second guide slide bar 15 slides in the inside of second adjusting plate 12, the longitudinal position of electric connection head 14 is adjusted, and electric connection head 14 is clamped to the inside of electricity connection end 9, the electrical connection of connecting wire 7 and energy storage battery inverter main part 8 is completed, and test table 1 runs and tests energy storage battery inverter main part 8 through connecting wire 7, electric connection head 14 and electricity connection end 9.

[0021] In Figure 2 、 3The front side of the first adjusting plate 10 is provided with a first fixing screw 16, the front side of the second adjusting plate 12 is provided with a second fixing screw 17 at the position corresponding to the first guide sliding rod 11, the inner side of the first adjusting plate 10 is provided with a sliding block 18, the upper side of the track 5 is provided with a sliding groove 19, the rear end of the first fixing screw 16 penetrates the first adjusting plate 10 and is located at the front side position of the track 5, the first adjusting plate 10 is fixed to the outer side position of the track 5 through the first fixing screw 16, the rear end of the second fixing screw 17 penetrates the second adjusting plate 12 and is located at the outer side position of the first guide sliding rod 11, the second adjusting plate 12 is fixed to the outer side position of the first guide sliding rod 11 through the second fixing screw 17, the sliding block 18 slides in the inner position of the sliding groove 19, the first adjusting plate 10 slides in the outer side position of the track 5 through the sliding block 18 and the sliding groove 19, according to the position of the power connection end 9, the sliding block 18 slides in the inner position of the sliding groove 19, the transverse position of the electric connector 14 is adjusted, the first adjusting plate 10 is fixed to the outer side of the track 5 by rotating the first fixing screw 16, the second adjusting plate 12 slides in the outer side of the first guide sliding rod 11, the height of the electric connector 14 is adjusted, the second adjusting plate 12 is fixed to the outer side of the first guide sliding rod 11 by rotating the second fixing screw 17, the front end of the threaded rod 13 rotates in the inner position of the second adjusting plate 12, the rear end of the threaded rod 13 rotates in the front side position of the electric connector 14, the front end of the second guide sliding rod 15 slides in the inner position of the second adjusting plate 12, the longitudinal position of the electric connector 14 is adjusted, the electric connector 14 is clamped into the inner position of the power connection end 9, and the electrical connection of the connecting line 7 and the energy storage battery inverter main body 8 is completed.

[0022] The working principle of the utility model is: first, a kind of energy storage battery inverter testing device is placed to use position, then, energy storage battery inverter main body 8 is placed to the upper side of test table 1, electrically operated adjusting telescopic link 3 is operated to push clamping plate 4 to slide in the upper side of test table 1, energy storage battery inverter main body 8 is fixed to the upper side of test table 1 by clamping plate 4, according to the position of power connection end 9, sliding block 18 slides in the inner position of sliding groove 19, the transverse position of electric connector 14 is adjusted, first adjusting plate 10 is fixed to the outer side of track 5 by rotating first fixing screw 16, second adjusting plate 12 slides in the outer side of first guide sliding rod 11, the height of electric connector 14 is adjusted, second adjusting plate 12 is fixed to the outer side of first guide sliding rod 11 by rotating second fixing screw 17, the front end of threaded rod 13 rotates in the inner position of second adjusting plate 12, the rear end of threaded rod 13 rotates in the front side position of electric connector 14, the front end of second guide sliding rod 15 slides in the inner position of second adjusting plate 12, the longitudinal position of electric connector 14 is adjusted, electric connector 14 is clamped into the inner position of power connection end 9, and the electrical connection of connecting line 7 and energy storage battery inverter main body 8 is completed, test table 1 is operated to test energy storage battery inverter main body 8 by connecting line 7, electric connector 14 and power connection end 9.

[0023] The above merely describes a preferred embodiment of the present application, and the protection scope of the present application is not limited thereto, and any skilled person in the art, according to the technical scheme and the inventive concept of the present application, makes equivalent replacement or change within the technical range disclosed by the present application, which should be covered within the protection scope of the present application.

Claims

1. A kind of energy storage battery inverter testing device, including test table (1), positioning plate (2), electrically adjustable telescopic rod (3) and clamping plate (4), the positioning plate (2) is located at the upper side both ends position of test table (1), the electrically adjustable telescopic rod (3) is located at the outer end position of positioning plate (2), the clamping plate (4) is located at the inner end position of electrically adjustable telescopic rod (3), it is characterized in that, The upper side front end position of the test platform (1) is provided with a track (5), the upper side of the track (5) is provided with an electric connection component (6), one end of the electric connection component (6) is provided with a connecting line (7), the inner side of the clamping plate (4) is provided with a storage battery inverter main body (8), the front side of the storage battery inverter main body (8) is provided with an electricity connection end (9), the electric connection component (6) comprises a first adjusting plate (10), the upper side of the first adjusting plate (10) is provided with a first guide sliding rod (11), the upper end of the first guide sliding rod (11) is provided with a second adjusting plate (12), the inside of the second adjusting plate (12) is provided with a threaded rod (13), the rear side of the threaded rod (13) is provided with an electric connection head (14), the front side outer end position of the electric connection head (14) is provided with a second guide sliding rod (15).

2. The energy storage battery inverter test device of claim 1, wherein, The front side of the first adjusting plate (10) is provided with a first fixed screw (16), the front side of the second adjusting plate (12) is provided with a second fixed screw (17) corresponding to the position of the first guide sliding rod (11), the inner side of the first adjusting plate (10) is provided with a sliding block (18), and the upper side of the track (5) is provided with a sliding groove (19).

3. The energy storage battery inverter test device of claim 1, wherein, The first adjusting plate (10) slides at the outer side position of the track (5), the second adjusting plate (12) slides at the outer side position of the first guide sliding rod (11), the threaded rod (13) rotates at the inner side position of the second adjusting plate (12), the rear side of the threaded rod (13) rotates at the front side position of the electric connection head (14), and the front end of the second guide sliding rod (15) slides at the inner side position of the second adjusting plate (12).

4. The energy storage battery inverter test device of claim 1, wherein, The electric connection head (14) corresponds to the position of the electricity connection end (9), the electric connection head (14) is electrically connected with the storage battery inverter main body (8) through the electricity connection end (9), and the electric connection head (14) is electrically connected with the test platform (1) through the connecting line (7).

5. The energy storage battery inverter test device of claim 1, wherein, The clamping plate (4) slides at the inner side position of the positioning plate (2) through the electrically adjusted telescopic rod (3), and the storage battery inverter main body (8) is fixed at the upper side position of the test platform (1) through the clamping plate (4).

6. The energy storage battery inverter test device of claim 2, wherein, The rear end of the first fixed screw (16) penetrates the first adjusting plate (10) and is located at the front side position of the track (5), the first adjusting plate (10) is fixed at the outer side position of the track (5) through the first fixed screw (16), the rear end of the second fixed screw (17) penetrates the second adjusting plate (12) and is located at the outer side position of the first guide sliding rod (11), and the second adjusting plate (12) is fixed at the outer side position of the first guide sliding rod (11) through the second fixed screw (17).

7. The energy storage battery inverter test device of claim 2, wherein, The sliding block (18) slides at the inner side position of the sliding groove (19), and the first adjusting plate (10) slides at the outer side position of the track (5) through the sliding block (18) and the sliding groove (19).