
Close Spaced Roller Rack
The Close Spaced Roller Rack (CSRR) is designed to enhance accuracy by minimising material and belt dynamic effects. This is achieved through an extended effective weigh length, optimising load distribution and significantly reducing material and belt agitation during the transition into and out of the weigher zone. The system offers 0.1% repeatability for up to 2 years without recalibration, making it the only system on the market capable of such precision.
Applicable belt weighers:
Australian-Made
Proudly designed and built in Australia, with application-specific engineering.
Certified Calibration Support
Live material calibrations, efficient re-certification and remote support options
for maximum uptime.
Cost-Effective
Reduces on-site modification, re-engineering and downtime.
Customisable
Individually engineered to site requirements, with tailored idler spacing, load cell sizes
and finishes (galvanised or painted).
Durable Construction
Solid mild or stainless steel for extreme environments; typically 20-30+ year life.
Enhanced Accuracy
Guaranteed up to 0.5% depending on application, with high repeatability and minimal
recalibration.
Extended Weigh Length
Supports longer continuous belt segments for greater accuracy.
High Stability
Maintains performance over time with reduced calibration needs and long-term
accuracy.
Legal for Trade Certified
Compliant with NMI, NTEP and OIML standards, ensuring commercial confidence.
Minimal Build-Up Impact
Engineered to reduce error from material accumulation.
Non-Intrusive Design Option
Installs without conveyor modifications, saving costs and preserving structural integrity.
Australia
Certificate of conformity class 0.2 belt scale
6/14D/13 Class 0.5 Belt Weigher 2003 (first approved 1996)
Australian Patent No: 631695
Canada
MC 0.1% Belt Scale Approval AM-5612 2007
MC 0.5% Belt Scale Approval AM-5442 2007 (first approved 2002)
UK
MID application in process
USA
Guaranteed up to 0.1% depending on application, with high repeatability and minimal
recalibration.
