Level detection platform for electric power instrument
By designing the rotation function of the rotating seat and platform support, combined with the horizontal detection structure and magnetic adsorption, the shortcomings of existing horizontal detection equipment for power instruments in multi-directional detection are solved, achieving accurate multi-directional detection and stability, and simplifying the operation process.
Patent Information
- Application Number
- CN202520470433.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-18
- Publication Date
- 2026-02-17
- Estimated Expiration
- 2035-03-18
AI Technical Summary
Existing power instrument level testing equipment cannot perform accurate testing in multiple directions and is easily affected by external vibrations or positional changes, resulting in inaccurate test results. It is also complex to operate and difficult to provide real-time feedback.
A horizontal detection platform for power instruments was designed, comprising a platform base, a rotating base, a platform support, a drooping shaft, a horizontal detection structure, and an orientation pointer. Through the rotation function of the rotating base and the platform support, combined with the multi-directional detection and magnetic adsorption design of the horizontal detection structure, the device can accurately measure the tilt angle in multiple directions and provide instant feedback.
It enables precise detection of the horizontal status of power instruments in multiple directions, improves the stability and accuracy of detection, simplifies the operation process, and is suitable for precise horizontal calibration of various devices.
Smart Images

Figure CN223925742U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of horizontal detection technology, and in particular to a horizontal detection platform for power instruments. Background Technology
[0002] During the installation and use of electrical instruments and equipment, ensuring that the equipment remains level is crucial for its normal operation. Imbalance can lead to instrument errors, affect measurement accuracy, and may even cause equipment failure. Traditional methods for leveling typically use level gauges, spirit levels, or simple mechanical indicators to determine whether the equipment is level. However, these methods have certain limitations, such as insufficient accuracy, applicability to measurements in only one direction, and poor stability in complex environments.
[0003] With the advancement of technology, more and more precision equipment requires more accurate and comprehensive level testing. This is especially true in electrical instruments such as supplementary lighting equipment, where the tilt angle of the equipment may involve adjustments in multiple directions. Traditional technologies often struggle to handle the tilt of the equipment in multiple directions simultaneously, and the testing process is usually quite complex and cannot provide real-time feedback, increasing the difficulty for users to adjust and maintain the equipment.
[0004] Most electrical instrument leveling devices on the market currently use a simple leveling principle, achieving leveling through physical angles or gravity. However, most of these devices cannot accurately measure tilt angles or perform simultaneous testing in multiple directions. At the same time, existing technologies often lack stability, and the devices are susceptible to external vibrations or positional changes, resulting in inaccurate test results or slow response.
[0005] Therefore, it is essential to invent a horizontal testing platform for electrical instruments. Utility Model Content
[0006] To address the aforementioned technical problems, this utility model provides a power instrument leveling platform. This solves the issues of existing power instrument leveling platforms being unable to detect tilt angles in multiple directions, requiring complex bases for installation, and exhibiting poor detection accuracy. The power instrument leveling platform includes a platform base, a rotating base, a platform support, a drooping shaft, a leveling detection structure, a level pointer, and an orientation pointer. The rotating base is fixedly mounted on the surface of the platform base, and the platform support is fixedly mounted above the rotating base. The drooping shaft is rotatably mounted inside the top of the platform support. The leveling detection structure is rotatably mounted on the drooping shaft, and the level pointer and orientation pointer are fixedly mounted on the outer surface of the platform support.
[0007] The platform base includes a support base, an adsorption base, a rotating structure, and a direction scale. The adsorption base is fixedly installed at the bottom of the support base and adsorbs onto the surface of the power instrument. The rotating structure is fixedly installed on the surface of the support base and is rotatably connected to a rotating seat. The direction scale is set on the surface of the support base.
[0008] The horizontal detection structure includes a pendant frame, a suspension buckle, a counterweight, and an inclined scale. The suspension buckle is fixedly installed on the top of the pendant frame and is rotatably mounted on the pendant shaft. The counterweight is fixedly installed on the bottom of the pendant frame, and the inclined scale is set on the surface of the pendant frame.
[0009] The platform base's internal support base uses a metal disc, and the adsorption base uses a circular magnet. This rotating structure and the rotating base can rotate relative to each other. The platform base can drive the platform support to rotate via the rotating base, serving the following functions: ① Supporting other components: The platform base fixes and supports structural components such as the rotating base and platform support, ensuring the overall stability of the equipment; ② Providing rotation functionality: Through the connection between the rotating base and the rotating structure, the platform base allows the platform support to rotate horizontally, facilitating the detection of the electrical instrument's horizontal position; ③ Adsorbing electrical instruments: The adsorption base is fixedly installed at the bottom of the platform base, using a magnet design to firmly adsorb onto the surface of the electrical instrument, ensuring the platform does not move during testing; ④ Adjusting direction: Direction scales are set on the platform base surface, helping users adjust the platform's angle and accurately measure the instrument's horizontal position, detecting not only horizontal but also front-back horizontal positions.
[0010] The internal pendant frame of the horizontal detection structure is a ring-shaped plastic frame, and the counterweight is a steel block located at the lower end of the central axis of the pendant frame. Under the influence of gravity, the pendant frame remains directly below, serving the following functions: ① Providing horizontal detection: The horizontal detection structure is rotatably mounted via the pendant axis, allowing it to follow the tilt of the indicator instrument in multiple directions; ② Suspension and stabilization: The pendant frame stabilizes the position of the horizontal pointer, ensuring accurate horizontal indication in any direction. The counterweight is fixed to the bottom of the pendant frame, ensuring the structure remains vertical and, under gravity, always oriented correctly; ③ Precise tilt measurement: The horizontal pointer is fixed to the outside of the platform support, displaying the horizontal status in real time. The orientation pointer helps confirm the current direction, and together with the tilt scale, accurately indicates whether the equipment is tilted and its tilt angle; ④ Multi-directional measurement: Combining the rotation function of the rotating base and platform support, the horizontal detection structure can comprehensively detect whether the instrument is horizontal at different angles, making it particularly suitable for equipment requiring precise horizontal calibration, such as supplementary lighting equipment.
[0011] Compared with the prior art, the present invention has the following beneficial effects:
[0012] 1. The platform base of this utility model has the following functions: ① Supporting other components: The platform base fixes and supports structural components such as the rotating seat and platform support, ensuring the stability of the overall equipment; ② Providing rotation function: Through the connection between the rotating seat and the rotating structure, the platform base allows the platform support to rotate in the horizontal direction, thereby facilitating the detection of the horizontal status of the power instrument.
[0013] ③ Adsorption of electrical instruments: The adsorption base is fixedly installed at the bottom of the platform base and uses a magnetic design to firmly adhere to the surface of the electrical instrument, ensuring that the platform does not move during the testing process; ④ Adjustment of direction: The direction scale is set on the surface of the platform base to help users adjust the angle of the platform and accurately measure the level of the instrument. It can detect the level in not only the left and right directions, but also the level in the front and back directions.
[0014] 2. The horizontal detection structure of this utility model has the following functions: ① It provides horizontal detection:
[0015] ① The horizontal detection structure is rotatably mounted via a pendant axis, allowing it to follow the tilt of the gravity-indicating instrument in multiple directions; ② Suspension and stabilization: The pendant frame stabilizes the position of the horizontal pointer, ensuring it accurately indicates a horizontal state in any direction. A counterweight is fixed to the bottom of the pendant frame, ensuring the structure remains vertical and, under gravity, the horizontal detection structure is always in the correct orientation; ③ Precise tilt measurement: The horizontal pointer is fixed to the outside of the platform support, displaying the horizontal status in real time. The orientation pointer helps confirm the current direction, and together with the tilt scale, accurately indicates whether the equipment is tilted and its tilt angle.
[0016] ④ Multi-directional measurement: Combining the rotation function of the rotating base and platform support, the horizontal detection structure can comprehensively detect whether the power instrument is in a horizontal state at different angles. It is especially suitable for equipment that requires precise horizontal calibration, such as supplementary lighting equipment. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the structure of this utility model.
[0018] Figure 2 This is a structural schematic diagram of the platform base of this utility model.
[0019] Figure 3 This is a schematic diagram of the horizontal detection structure of this utility model.
[0020] In the picture:
[0021] Platform base 1, support base 11, adsorption base 12, rotating structure 13, direction scale 14, rotating seat 2, platform bracket 3, drooping shaft 4, horizontal detection structure 5, drooping frame 51, suspension buckle 52, counterweight 53, tilt scale 54, horizontal pointer 6, orientation pointer 7. Detailed Implementation
[0022] To enable those skilled in the art to better understand the present invention, the technical solutions in the embodiments of the present invention will be clearly and completely described below. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort should fall within the protection scope of the present invention.
[0023] As attached Figure 1 To be continued Figure 3 As shown.
[0024] This utility model provides a horizontal testing platform for electrical instruments, comprising a platform base 1, a rotating base 2, a platform support 3, a drooping shaft 4, a horizontal testing structure 5, a horizontal pointer 6, and an orientation pointer 7. The rotating base 2 is fixedly mounted on the surface of the platform base 1, and the platform support 3 is fixedly mounted above the rotating base 2. The drooping shaft 4 is rotatably mounted inside the top of the platform support 3. The horizontal testing structure 5 is rotatably mounted on the drooping shaft 4, and the horizontal pointer 6 is fixedly mounted on the outer surface of the platform support 3. The orientation pointer 7 is fixedly mounted on the outer surface of the platform support 3.
[0025] The platform base 1 includes a support base 11, an adsorption base 12, a rotating structure 13, and a direction scale 14. The adsorption base 12 is fixedly installed at the bottom of the support base 11 and is adsorbed onto the surface of the power instrument. The rotating structure 13 is fixedly installed on the surface of the support base 11 and is rotatably connected to the rotating seat 2. The direction scale 14 is set on the surface of the support base 11.
[0026] The horizontal detection structure 5 includes a pendant frame 51, a suspension buckle 52, a counterweight 53, and an inclined scale 54. The suspension buckle 52 is fixedly installed on the top of the pendant frame 51 and is rotatably installed on the pendant shaft 4. The counterweight 53 is fixedly installed on the bottom of the pendant frame 51, and the inclined scale 54 is set on the surface of the pendant frame 51.
[0027] The support base 11 inside the platform base 1 is a metal disk, and the adsorption base 12 is a circular magnet. The rotating structure 13 and the rotating seat 2 can rotate relative to each other. The platform base 1 can drive the platform support 3 to rotate through the rotating seat 2, and has the following functions: ① Supporting other components: The platform base 1 fixes and supports structural components such as the rotating seat 2 and the platform support 3, ensuring the stability of the overall equipment; ② Providing rotation function: Through the connection between the rotating seat 2 and the rotating structure 13, the platform base 1 allows the platform support 3 to rotate in the horizontal direction, thereby facilitating the detection of the horizontal state of the power instrument; ③ Adsorbing power instruments: The adsorption base 12 is fixedly installed at the bottom of the platform base 1 and uses a magnet design, which can firmly adsorb onto the surface of the power instrument, ensuring that the platform does not move during the detection process; ④ Adjusting direction: The direction scale 14 is set on the surface of the platform base 1 to help users adjust the angle of the platform and accurately measure the horizontal state of the instrument. It can detect the horizontal state not only in the left and right directions, but also in the front and back directions.
[0028] The pendant frame 51 inside the horizontal detection structure 5 is a ring-shaped plastic frame, and the counterweight 53 is a steel metal block. The counterweight 53 is located at the lower end of the group on the central axis of the pendant frame 51; the pendant frame 51 is always directly below under the action of gravity.
[0029] Compared with existing technologies, this equipment has the following significant advantages:
[0030] 1. Comprehensive inspection of horizontal status
[0031] Multi-directional horizontal detection: This device, through the rotatable design of the platform base 1, can detect the horizontal status of electrical instruments in multiple directions. It is particularly suitable for detecting left and right tilt, front and back tilt, and tilt in various directions. Existing technologies can usually only detect the horizontal in a single direction and cannot provide such comprehensive measurement.
[0032] 2. Precise horizontal adjustment
[0033] Precise Measurement and Indication: The horizontal detection structure 5, combined with the pendant frame 51, horizontal pointer 6, and tilt scale 54, can accurately display the horizontal state and indicate minute tilt changes in real time. Existing technologies may rely on simple liquid level detection, which has low accuracy and cannot provide precise calibration of the tilt angle.
[0034] 3. Stability and security
[0035] Counterweight and stability: The counterweight 53 in the horizontal detection structure 5 ensures that the drooping frame 51 is always directly below under the action of gravity, avoiding errors caused by vibration or external force. This design improves the stability and accuracy of the measurement and is better able to cope with the challenges of complex environments compared with traditional horizontal detection technology.
[0036] Adsorption design: The adsorption base 12 on the platform base 1 is adsorbed onto the surface of the power instrument by a magnet, ensuring that the platform will not move, thereby improving the stability of the detection.
[0037] 4. Ease of operation
[0038] Rotation Function: The rotation function of the platform base 1, in conjunction with the rotating seat 2 and the rotating structure 13, allows the platform support 3 to be easily adjusted, greatly improving the user's operational convenience. In the prior art, level measurement often requires manual equipment adjustment or complex operating procedures, while this device simplifies the operation process through rotational adjustment.
[0039] 5. Structural optimization
[0040] Modular design: Each component, such as the horizontal detection structure 5, the rotating seat 2, and the platform support 3, is modularly designed, which effectively reduces the overall weight and improves the operability of the equipment. Compared with existing technologies, the equipment is designed to be lighter and more compact.
[0041] High-precision sensing system: Combining mechanical structure and precise tilt scale 54, it ensures high accuracy of detection results and is suitable for electrical instruments with strict requirements for levelness.
[0042] 6. Multifunctionality
[0043] Adaptable to various devices: This platform is not only suitable for electrical instruments but also for other devices requiring precise leveling. Its design is highly adaptable, capable of meeting the leveling needs of different types of equipment.
[0044] In summary, this equipment has significant advantages over existing technologies in terms of accuracy, stability, and ease of operation due to its rotation function, precise horizontal detection structure, stable design, and ease of operation.
[0045] Any technical solution that achieves the above-mentioned technical effects by utilizing the technical solution described in this utility model, or by designing a similar technical solution inspired by the technical solution described in this utility model, falls within the protection scope of this utility model.
Claims
1. An electrical instrument level detection platform characterized by: The utility model provides a platform base (1), rotating seat (2), platform support (3), pendant axis (4), horizontal detection structure (5), horizontal pointer (6) and towards pointer (7), wherein: rotating seat (2) fixed mounting is installed on the surface of platform base (1), and platform support (3) fixedly rotates and does not pass in the above of rotating seat (2), and this pendant axis (4) rotates and is installed in the inside of platform support (3) top end, horizontal detection structure (5) rotates and is installed on the pendant axis (4), and horizontal pointer (6) fixed mounting is installed on the surface of platform support (3) outside, and towards pointer (7) fixed mounting is installed on the outside of platform support (3).
2. A power instrument level detection platform as claimed in claim 1, wherein: The platform base (1) includes support base (11), adsorption base (12), rotating structure (13) and direction scale (14), and the adsorption base (12) is fixedly installed at the bottom of the support base (11), and the adsorption base (12) is adsorbed on the surface of the electric instrument; the rotating structure (13) is fixedly installed on the surface of the support base (11), and the rotating structure (13) is rotationally connected with the rotating seat (2), and the direction scale (14) is arranged on the surface of the support base (11).
3. A power instrument level detection platform as claimed in claim 1, wherein: The horizontal detection structure (5) includes pendant framework (51), suspension buckle (52), counterweight (53) and inclination scale (54), and the suspension buckle (52) is fixedly installed at the top of the pendant framework (51), and the suspension buckle (52) is rotationally installed on the pendant axis (4); the counterweight (53) is fixedly installed at the bottom of the pendant framework (51), and the inclination scale (54) is arranged on the surface of the pendant framework (51).
4. A power instrument level detection platform as claimed in claim 2, wherein: The support base (11) in the platform base (1) is a metal disc, the adsorption base (12) is a circular magnet, the rotating structure (13) and the rotating seat (2) can rotate relative to each other; the platform base (1) can be rotated by the rotating seat (2) driving the platform support (3).
5. A power instrument level detection platform as claimed in claim 3, wherein: The pendant framework (51) in the horizontal detection structure (5) is an annular plastic framework, and the counterweight (53) is a steel metal block, and the counterweight (53) is located at the bottom end of the central axis of the pendant framework (51); the pendant framework (51) is always directly below under the action of gravity. The utility model provides a platform base (1), rotating seat (2), platform support (3), pendant axis (4), horizontal detection structure (5), horizontal pointer (6) and towards pointer (7), wherein: rotating seat (2) fixed mounting is installed on the surface of platform base (1), and platform support (3) fixedly rotates and does not pass in the above of rotating seat (2), and this pendant axis (4) rotates and is installed in the inside of platform support (3) top end, horizontal detection structure (5) rotates and is installed on the pendant axis (4), and horizontal pointer (6) fixed mounting is installed on the surface of platform support (3) outside, and towards pointer (7) fixed mounting is installed on the outside of platform support (3).