Product name: PXL dynamic cyclic chain code calibration device
Description:
PXL type dynamic circulation chain code calibration device is applied in the electronic belt scale in the belt conveyor circulation operation, to achieve the electronic belt scale accuracy automatic calibration, in accordance with the People's Republic of China national metrology verification regulation jjg65-90 provisions, can be used as the electronic belt scale and weighing feeder calibration device.
Working principle:
PXL type dynamic cyclic chain code check device is installed at the scene of the electronic belt scale, electronic belt scale adjustment, after the completion of chain code by lifting gear fell from the top of the belt scale of the conveyor belt, through the belt running, drag chain code and circular movement of belt and the process continues, this revised belt scale secondary instrument complete belt scale simulation calibration objects, so as to achieve calibration purposes.
Main features of the system:
PXL automatic circulation chain code calibration device is composed of standard chain code, rubber roller, main hoist, secondary hoist, mechanical code grab, PLC metering control system.
◆ high calibration accuracy, chain code with the belt synchronous operation, closer to the actual work, accurate and reliable verification;
◆ simulate the conveying characteristics of the material, so that the calibration is more intuitive and reliable;
◆ calibration is convenient and fast;
◆ the system fully automatic operation, save time and effort;
Main technical parameters:
Chain code specification (kg/m) : 5-200kg/m different specifications.
Chain code accuracy: MII level
System accuracy: ±0.1%
Calibration belt scale capacity: 1-6000t/h
Total power: 2.2-4kw
Conveyor belt width: 500-2200mm
Working environment requirements:
◆ ambient temperature: instrument -10℃--60℃, machinery -35℃--65℃;
◆ power supply:
220VAC (+10%/-15%), 50HZ (±2%) metering system and control circuit
380VAC (+10%/-15%), 50HZ (±2%) lift drive part
Appearance diagram: