A high voltage electroscope structure
Patent Information
- Application Number
- CN202520585099.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-31
- Publication Date
- 2026-09-01
- Estimated Expiration
- 2035-03-31
AI Technical Summary
现有技术的缺点是:目前的高压验电器由一只验电器和绝缘杆连接组成,这种式样的验电器虽然携带和使用方便,但必须随时携带两支才能完成验电情况核对工作,而在实际工作中,受各种因素影响,少带、漏拿的情况时有发生,很容易造成因偷懒就使用一支验电器完成验电工作或者因为未使用等电压等级,从而造成极大的安全隐患
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Figure CN224708135U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of high voltage system voltage detection technology, and more specifically, it relates to a high voltage detector structure. Background Technology
[0002] Whether a high-voltage system is energized must be confirmed using a high-voltage detector of the same voltage rating. However, in actual testing, these detectors frequently malfunction due to various reasons, such as the influence of the high-voltage electric field on their internal electronic components or loose internal batteries. For reliability, two detectors of the same voltage rating are usually used to verify the test results, ensuring accuracy. The drawback of current technology is that while the existing high-voltage detector consists of a single detector connected to an insulating rod, making it convenient to carry and use, two detectors must be carried at all times to verify the energization status. In practice, due to various factors, it is common for some detectors to be missing or not carried at all. This can easily lead to laziness in using only one detector or failing to use the correct voltage rating, creating significant safety hazards.
[0003] Existing technology includes a patent titled "A High-Voltage Detector" with publication number CN104849533B. This patent discloses a high-voltage detector comprising a detector body, which houses a signal acquisition module, a signal processing module, a signal detection and analysis module, and a power supply. The signal acquisition module includes a ranging device and an ultraviolet sensor, with the ultraviolet sensor equipped with a capacitor, a drive circuit, a rectifier, and a filter. The signal processing module includes a digital signal processing device and a signal transmitter, with the digital signal processing device including a signal converter, a storage device, an alarm device, a display device, and a temperature and humidity sensor. The signal detection and analysis module includes an online detection device and a remote transmission device. The detector body includes a switch button, a mounting port, and an operating handle. The advantages of this invention are that the ultraviolet sensor can convert ultraviolet signals into measurable electrical signals, enabling long-distance circuit detection without contact with high-voltage cables or live equipment, and providing accurate voltage detection results. However, this technology does not address the technical problems and solutions addressed in this application. Utility Model Content
[0004] The technical problem to be solved by this utility model is to provide a high voltage detector structure that is simple in structure and can meet the requirement of carrying two detectors on site to complete the voltage verification work with only one high voltage detector, thereby effectively reducing the safety hazards caused by human factors that prevent the voltage verification results from being verified as required.
[0005] To solve the above-mentioned technical problems, the technical solution adopted by this utility model is as follows: This utility model is a high voltage detector structure, including a first high voltage detector, a second high voltage detector, and an insulating component. One end of the insulating component is connected to the first high voltage detector, and the other end of the insulating component is connected to the second high voltage detector. The first high voltage detector and the second high voltage detector are of the same type.
[0006] The first high-voltage detector includes a high-voltage detector body, a detector metal hook, a detector light-emitting tube, and a detector sound. The second high-voltage detector includes a high-voltage detector body, a detector metal hook, a detector light-emitting tube, and a detector sound.
[0007] The insulating assembly includes an insulating sleeve and an insulating rod. One end of the insulating sleeve is fitted inside the high-voltage detector body of the first high-voltage detector, and the insulating rod is fitted inside the other end of the insulating sleeve. The insulating rod is fitted inside the high-voltage detector body of the second high-voltage detector.
[0008] The first high-voltage detector has a first insulating handle fixed to the outer ring of its main body, and the second high-voltage detector has a second insulating handle fixed to the outer ring of its main body.
[0009] The insulating sleeve of the insulating component is fixedly installed in the high-voltage detector body of the first high-voltage detector, or the insulating sleeve is screwed into the threaded hole of the high-voltage detector body of the second high-voltage detector through the threaded part.
[0010] The T-shaped end of the insulating rod of the insulating component is movably locked inside the limiting end of the insulating sleeve.
[0011] The insulating rod of the insulating component is fixedly installed in the high-voltage detector body of the second high-voltage detector, or the insulating rod is screwed into the threaded hole of the high-voltage detector body of the second high-voltage detector through the threaded part.
[0012] Both the first and second insulating handles are made of rubber.
[0013] The first high-voltage detector includes multiple different models of first high-voltage detectors, and the second high-voltage detector includes multiple different models of second high-voltage detectors.
[0014] The working principle and beneficial effects of this utility model are as follows: The high-voltage detector structure described in this utility model comprises two detectors mounted on a single detector structure: a first high-voltage detector, a second high-voltage detector, and an insulating component. The first and second high-voltage detectors are connected via the insulating component, ensuring they are insulated from each other. The first and second high-voltage detectors are of the same model (equivalent voltage level). This design allows for the simultaneous carrying of both detectors with just one detector structure, simplifying the process and preventing the violation of using only one detector due to forgetting to carry both. During on-site voltage testing, the first and second high-voltage detectors are used separately, allowing for verification of the test results using two detectors of the same voltage level, ensuring accurate results. Attached Figure Description
[0015] The following is a brief explanation of the contents of the accompanying drawings and the markings in the drawings: Figure 1 This is a schematic diagram of the high-voltage detector structure described in this utility model; The labels in the attached diagram are as follows: 1. First high-voltage detector; 2. Second high-voltage detector; 3. Insulating component; 4. High-voltage detector body; 5. Detector metal hook; 6. Detector light-emitting tube; 7. Detector sound; 8. Component insulating sleeve; 9. Component insulating rod; 10. First insulating handle; 11. Second insulating handle; 12. T-shaped end; 13. Limiting end. Detailed Implementation
[0016] The following description, with reference to the accompanying drawings, provides a more detailed explanation of the specific embodiments of this utility model, including the shape and structure of each component, the relative positions and connections between the parts, the functions and working principles of each part: As attached Figure 1As shown, this utility model is a high-voltage detector structure, including a first high-voltage detector 1, a second high-voltage detector 2, and an insulating component 3. One end of the insulating component 3 is connected to the first high-voltage detector 1, and the other end is connected to the second high-voltage detector 2. The first high-voltage detector 1 and the second high-voltage detector 2 are of the same model. To address the shortcomings of existing technologies, this invention proposes an improved technical solution. In this structure, two detectors are mounted on a single detector structure: the first high-voltage detector 1, the second high-voltage detector 2, and the insulating component 3. The first high-voltage detector 1 and the second high-voltage detector 2 are connected by the insulating component, and the two detectors are insulated from each other. The first high-voltage detector 1 and the second high-voltage detector 2 are of the same model (equivalent voltage level). This allows for the simultaneous carrying of both detectors with only one detector structure, making it convenient and avoiding the violation of using only one detector due to forgetting to carry both. During on-site voltage testing, the first high-voltage detector 1 and the second high-voltage detector 2 are used separately to verify the test results, ensuring accuracy. The high-voltage detector structure described in this utility model is simple in structure. Only one high-voltage detector is needed to meet the requirement of carrying two detectors on site to complete the voltage verification work. This effectively reduces the safety hazards caused by human factors that may lead to failure to verify the voltage test results as required.
[0017] The first high-voltage detector 1 includes a high-voltage detector body 4, a detector metal hook 5, a detector light-emitting tube 6, and a detector sound 7. The second high-voltage detector 2 includes a high-voltage detector body 4, a detector metal hook 5, a detector light-emitting tube 6, and a detector sound 7.
[0018] The insulating component 3 includes an insulating sleeve 8 and an insulating rod 9. One end of the insulating sleeve 8 is fitted inside the high-voltage detector body 4 of the first high-voltage detector 1, and the insulating rod 9 is fitted inside the other end of the insulating sleeve 8. The insulating rod 9 is fitted inside the high-voltage detector body 4 of the second high-voltage detector 2. A first insulating handle 10 is fixedly fitted around the outer ring of the high-voltage detector body 4 of the first high-voltage detector 1, and a second insulating handle 11 is fixedly fitted around the outer ring of the high-voltage detector body 4 of the second high-voltage detector 2. With this structure, the first insulating handle 10 and the second insulating handle 11 reliably provide insulation, ensuring user safety.
[0019] The insulating sleeve 8 of the insulating component 3 is fixedly fitted inside the high-voltage detector body 4 of the first high-voltage detector 1, or the insulating sleeve 8 is screwed into the threaded hole of the high-voltage detector body 4 of the first high-voltage detector 1 via a threaded portion. In the above structures, when the insulating sleeve 8 is fixedly fitted inside the high-voltage detector body 4 of the first high-voltage detector 1, the first high-voltage detector 1 and the insulating sleeve 8 are fixedly connected. When the insulating sleeve 8 is screwed into the threaded hole of the high-voltage detector body 4 of the first high-voltage detector 1 via a threaded portion, the first high-voltage detector 1 and the insulating sleeve 8 are movably connected. This allows the first high-voltage detector 1 to be replaced easily when damaged, without needing to replace the insulating component.
[0020] The T-shaped end 12 of the insulating rod 9 of the insulating component 3 is movably locked inside the limiting end 13 of the insulating sleeve 8. In this structure, the insulating sleeve 8 and the insulating rod 9 of the insulating component 3 are telescopic, extending when in use and retracting when not in use, reducing the overall length of the high-voltage detector structure and making it easy to carry when not in use.
[0021] The insulating rod 9 of the insulating component 3 is fixedly fitted into the high-voltage detector body 4 of the second high-voltage detector 2, or the insulating rod 9 is screwed into the threaded hole of the high-voltage detector body 4 of the second high-voltage detector 2 via a threaded portion. In the above structures, when the insulating rod 9 is fixedly fitted into the high-voltage detector body 4 of the second high-voltage detector 2, the second high-voltage detector 2 and the insulating rod 9 are fixedly connected. When the insulating rod 9 is screwed into the threaded hole of the high-voltage detector body 4 of the second high-voltage detector 2 via a threaded portion, the second high-voltage detector 2 and the insulating rod 9 are movably connected. This allows the second high-voltage detector 2 to be replaced easily when damaged, without needing to replace the insulating component.
[0022] Both the first insulating handle 10 and the second insulating handle 11 are made of rubber.
[0023] The first high-voltage detector 1 includes multiple different models of first high-voltage detectors, and the second high-voltage detector 2 includes multiple different models of second high-voltage detectors. With this structure, the first high-voltage detector 1 and the second high-voltage detector 2 can be replaced with different models to meet different voltage testing requirements. When replacing them, ensure that the first high-voltage detector 1 and the second high-voltage detector 2 being replaced are always the same model (equivalent voltage level).
[0024] The high-voltage detector structure described in this utility model comprises two detectors mounted on a single detector structure: a first high-voltage detector 1 and a second high-voltage detector 2, along with an insulating component 3. The first high-voltage detector 1 and the second high-voltage detector 2 are connected via the insulating component, ensuring they are insulated from each other and do not interfere with each other during use. The first high-voltage detector 1 and the second high-voltage detector 2 are of the same model (equivalent voltage level). This allows for the convenient carrying of both detectors with just one detector structure, avoiding the violation of carrying both detectors and using only one for testing. During on-site voltage testing, the first high-voltage detector 1 and the second high-voltage detector 2 are used separately to verify the test results, ensuring accuracy.
[0025] The present invention has been described above with reference to the accompanying drawings. Obviously, the specific implementation of the present invention is not limited to the above-described manner. Any improvements made using the inventive concept and technical solution of the present invention, or the direct application of the inventive concept and technical solution to other situations without modification, are all within the protection scope of the present invention.
Claims
1. A high-voltage detector structure, characterized in that: It includes a first high voltage detector (1), a second high voltage detector (2), and an insulation component (3). One end of the insulation component (3) is connected to the first high voltage detector (1), and the other end of the insulation component (3) is connected to the second high voltage detector (2). The first high voltage detector (1) and the second high voltage detector (2) are of the same type. The component insulating sleeve (8) of the insulating component (3) is fixedly installed in the high voltage detector body (4) of the first high voltage detector (1), or the component insulating sleeve (8) is screwed into the threaded hole of the high voltage detector body (4) of the second high voltage detector (2) through the threaded part. The T-shaped end (12) of the component insulating rod (9) of the insulating component (3) is movably locked inside the limiting end (13) of the component insulating sleeve (8); The insulating rod (9) of the insulating component (3) is fixedly installed in the high voltage detector body (4) of the second high voltage detector (2), or the insulating rod (9) is screwed into the threaded hole of the high voltage detector body (4) of the second high voltage detector (2) through the threaded part.
2. The high-voltage detector structure according to claim 1, characterized in that: The first high-voltage detector (1) includes a high-voltage detector body (4), a detector metal hook (5), a detector light tube (6), and a detector sound (7). The second high-voltage detector (2) includes a high-voltage detector body (4), a detector metal hook (5), a detector light tube (6), and a detector sound (7).
3. The high-voltage detector structure according to claim 1 or 2, characterized in that: The insulating component (3) includes an insulating sleeve (8) and an insulating rod (9). One end of the insulating sleeve (8) is fitted inside the high voltage detector body (4) of the first high voltage detector (1), and the other end of the insulating sleeve (8) is fitted inside the insulating rod (9). The insulating rod (9) is fitted inside the high voltage detector body (4) of the second high voltage detector (2).
4. The high-voltage detector structure according to claim 1 or 2, characterized in that: The first high voltage detector (1) has a first insulating handle (10) fixedly mounted on the outer ring of the high voltage detector body (4), and the second high voltage detector (2) has a second insulating handle (11) fixedly mounted on the outer ring of the high voltage detector body (4).
5. The high-voltage detector structure according to claim 4, characterized in that: Both the first insulating handle (10) and the second insulating handle (11) are made of rubber.
6. The high-voltage detector structure according to claim 1 or 2, characterized in that: The first high voltage detector (1) includes multiple first high voltage detectors of different models, and the second high voltage detector (2) includes multiple second high voltage detectors of different models.
Citation Information
Patent Citations
A high-voltage electroscope
CN104849533B