Key Performance Parameters | Model | Maximum Capacity | Readability | Typical Repeatability | Typical Eccentricity | Stabilization Time |
IMC-1T | 1T | 1g | 5g | 16g | 5s | |
IMC-2T | 2T | 5g | 10g | 30g | 10s |
The Smart Large-Capacity Mass Comparator is built from 304 stainless steel with a brushed finish for durability. It features a sandwich structure with a triangular design, providing strong stability and effective eccentric load handling. The platform size can be customized based on requirements; the model shown has a triangular platform with a side length of 1.2 meters. | The comparator is portable for on-site weights calibration. The scale body is equipped with a special locking mechanism to secure the load cell during transportation, preventing sensor damage and ensuring accuracy, as shown in the diagram | The Comparator uses AI algorithms for easy on-site use. It automatically adjusts corner errors without manual intervention, making operation simple and quick. It also features a unique frequency-based, step-by-step real-time temperature compensation algorithm, ensuring accurate measurement across diverse environments | The Comparator uses independent sensor channel switching and intelligent corner error calculation, reducing eccentric load error. It also detects weights placement with an eccentric load alarm, as shown. |
Key Performance Parameters | Model | Maximum Capacity | Readability | Typical Repeatability | Typical Eccentricity | Stabilization Time |
IMC-1T | 1T | 1g | 5g | 16g | 5s | |
IMC-2T | 2T | 5g | 10g | 30g | 10s |
The Smart Large-Capacity Mass Comparator is built from 304 stainless steel with a brushed finish for durability. It features a sandwich structure with a triangular design, providing strong stability and effective eccentric load handling. The platform size can be customized based on requirements; the model shown has a triangular platform with a side length of 1.2 meters. | The comparator is portable for on-site weights calibration. The scale body is equipped with a special locking mechanism to secure the load cell during transportation, preventing sensor damage and ensuring accuracy, as shown in the diagram | The Comparator uses AI algorithms for easy on-site use. It automatically adjusts corner errors without manual intervention, making operation simple and quick. It also features a unique frequency-based, step-by-step real-time temperature compensation algorithm, ensuring accurate measurement across diverse environments | The Comparator uses independent sensor channel switching and intelligent corner error calculation, reducing eccentric load error. It also detects weights placement with an eccentric load alarm, as shown. |