Isotech

Isotech

Isotech specializes in precision temperature calibration—from dry-block calibrators and micro-baths to reference thermometers and SPRTs—trusted by accredited labs and process industries worldwide. Their systems deliver stable, traceable performance with certificates and documentation to support ISO/IEC 17025 quality programs and on-site QA workflows.

Frequently Asked Questions

What industries rely on Isotech temperature calibration equipment?
Isotech temperature calibration systems are extensively utilized across aerospace, pharmaceutical, and metrology laboratories requiring precise thermal validation. Their equipment ensures strict compliance with rigorous international standards, including ISO/IEC 17025.
Are Isotech dry block calibrators suitable for field use?
Yes, Isotech dry block calibrators are specifically engineered for portability and robust performance in challenging industrial environments. They offer laboratory-grade accuracy while maintaining rugged construction necessary for on-site instrument verification.
How often should Isotech standard platinum resistance thermometers (SPRTs) be recalibrated?
For optimal accuracy, Isotech SPRTs should undergo routine recalibration annually, although this interval may be shortened for highly critical applications. Regular calibration maintains traceability to national standards and ensures drift remains within acceptable tolerances.
Does Isotech provide solutions for primary temperature standards?
Absolutely. Isotech is a global leader in providing primary temperature realization solutions, including fixed point cells and maintenance baths. These systems deliver fundamental accuracy for top-tier national measurement institutes and industrial primary laboratories.
Can Isotech calibration baths accommodate custom sensors?
Isotech liquid calibration baths feature exceptional volume and stability, readily accommodating oddly shaped or custom industrial sensors. Their versatile design allows engineers to calibrate multiple probes simultaneously without compromising thermal uniformity.