The Working Principle and Usage of the Architectural Electronic Level_News Center Co., Ltd._Qingdao Aodesen Electronics Co., Ltd. 
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Home > News Center Co., Ltd. > The Working Principle and Usage of the Architectural Electronic Level
News Center Co., Ltd.
The Working Principle and Usage of the Architectural Electronic Level
Publish Time:2024-04-10        View Count:36        Return to List

The glass tube of the original bubble level has an inner surface with a curved radius.Electronic LevelWhen tilted, the bubbles will move toElectronic LevelThe higher end. The larger the radius of curvature of the inner wall of the horizontal bubble, the higher the resolution; conversely, the smaller the radius of curvature, the lower the resolution. Therefore, the radius of curvature of the horizontal bubble determines the product's accuracy.

The electronic level gauge for products is primarily used for measuring the flatness, straightness, perpendicularity, and installation level of various machine tools and workpieces.

The electronic level specifications are manufactured into frame levels, rule levels, and two methods, catering to different applications.

Fourth, the electronic level instrument's structure primarily consists of the body, the level bubble system, and the adjustment mechanism. The body is capable of measuring the base plane, while the level bubble serves as a reading that reflects the true data of the body's measurement of the base plane. The adjustment mechanism can be used to regulate the electronic level, with the M5 thread option featuring a fine thread of ×0.5 and a multi-tooth spring for ensuring the stability and adjustability of the zero position.

During usage for measurement, ensure the electronic level's working surface is tightly connected to the surface being measured, and take the main readable value after the bubble has settled.

The graduation value of an electronic level is the slope ratio formed by the movement of the main horizontal bubble over one graduation, based on a meter. To measure the specific slope value of a length L, the following formula can be used:

Actual tilt value = Nominal graduation value × L × Error graduation number, e.g., with a nominal graduation value of 0.02mm/mm/m, L = 200mm, and error graduation number of 2, the actual tilt value is 0.02/1000 × 200 = 0.008mm. To prevent measurement errors caused by an inaccurate zero point of the electronic level, it is necessary to check or adjust the zero point of the electronic level before use. The working principle and usage of the Architect electronic level.

The glass tube interior of the original bubble level has a curved surface with a specific radius of curvature. As the electronic level tilts, the bubble moves to the end where the electronic level is elevated. The larger the radius of curvature of the level bubble interior, the higher the resolution; conversely, a smaller radius results in lower resolution. Therefore, the radius of curvature of the level bubble determines the product's precision.

The electronic level gauge for products is primarily used for measuring the flatness, straightness, perpendicularity, and installation level of various machine tools and workpieces.

Product specifications: Electronic level gauges are manufactured into frame level gauges, bar level gauges, and two methods based on different applications.

Fourth, the electronic level instrument's structure mainly consists of the body, a level bubble system, and an adjustment mechanism. The body can measure the base plane, the level bubble serves as a reading to reflect the true data of the body's measurement of the base plane, and the adjustment mechanism can be used to regulate the electronic level. The M5 thread can be selected with a fine thread of ×0.5 and a multi-tooth spring, ensuring the stability and adjustability of the zero position.

When using the electronic level for measurement, ensure the working surface is tightly connected to the surface being measured. Read the main value after the bubble has settled.

The graduation value of an electronic level is the inclination ratio formed by the movement of the main horizontal bubble over one graduation, based on one meter. To measure the specific inclination value of a length L, the following formula can be used:

The actual tilt value = nominal graduation value × L × number of error divisions, e.g., the nominal graduation value is 0.02mm/mm/m, L = 200mm, and the number of error divisions is 2. Therefore, the actual tilt value is 0.02/1000 × 200 = 0.008mm. To prevent measurement errors caused by the inaccurate zero position of the electronic level, it is necessary to check or adjust the zero position of the electronic level before use.

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