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"Three New Aspects" of High-Precision Matrix Belt Scale

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Update time:2025-08-13

Electronic belt scales are weighing devices installed on belt conveyors used to measure the materials passing on the conveyor belt. They dynamically and synchronously reflect the instantaneous flow rate of the materials being conveyed and the cumulative weight over a certain period, enabling printing and querying of material weights.

Electronic belt scales are widely used in the bulk material conveying processes of various industries such as building materials, cement, fertilizers, feed, steel, and more.

They integrate technologies such as computers, network information, and industrial automation control, and are applied not only for dynamic weighing and measurement of bulk materials but also in production control, trade settlement, sales, production management, and other specific scenarios.

 

However, with the development of industrial production, particularly in automation control, trade settlement, and internal enterprise management, the requirements for the accuracy and stability of electronic belt scales have become increasingly high. Traditional lever-type belt scales can no longer meet the growing demand for high precision.

 

山西华宁焦煤有限责任公司-高精度在线校验皮带秤1.jpg


In response to industry developments and by integrating new scientific technologies and concepts, electronic belt scales have undergone a new transformation—the high-precision matrix belt scale. This scale adopts a new design philosophy, creates a new structure, and utilizes new sensors and weighing instruments to provide users with higher measurement accuracy, stronger stability, and richer functionalities.

 

(1) New Design Structure

 

The high-precision matrix belt scale employs a single-group roller, fully suspended, lever-free, direct-bearing structure, equipped with high-precision weighing sensors to form weighing units.

Two to eight groups of four-roller fully suspended scale frames are arranged to form a weighing platform. The influence of belt tension on adjacent units within the weighing platform cancels each other out, essentially eliminating the impact of belt tension on weighing.

This weighing structure is simple, lightweight, easy to transport and install, has a small horizontal surface area, and requires minimal maintenance. This unique arrangement of weighing units significantly enhances the scale's adaptability to different environments and working conditions, greatly improving its long-term accuracy and stability.

 

(2) New Sensors

 

To further enhance the accuracy and stability of the high-precision matrix belt scale, Guonuo has equipped it with highly sensitive and balanced digital weighing sensors.

These sensors convert analog weighing signals into digital signals, significantly improving anti-interference capabilities.

They also possess good stability, resistance to lateral forces, temperature compensation, and overload protection functions, fully ensuring the accuracy of material weight detection. The zero point, sensitivity coefficient, and hysteresis of the sensors across the entire temperature range are included in the operational compensation content, enhancing the long-term stability of the array-type belt scale.

 

(3) New Weighing Instrument

 

Guonuo has configured the high-precision matrix belt scale with a new type of intelligent weighing instrument featuring a high-performance processor and multi-threading operations.

It includes online monitoring, intelligent diagnosis, and automatic alarm functions, enabling early fault warning and diagnosis of the belt scale, which helps maintain its overall operational stability.

Rich information interfaces allow for real-time transmission and sharing of measurement data. When paired with a belt scale measurement cloud platform, it enables remote monitoring of the belt scale's operational status.

 

Based on practical applications in various industries and working conditions, the high-precision matrix belt scale demonstrates good long-term accuracy and stability, requires minimal daily maintenance, and is simple and convenient to operate, meeting the high-precision demands of trade settlement, production monitoring and control, factory production activity weighing, and internal enterprise settlement scenarios.

 


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