High-precision recirculating and low-temperature laboratory chillers engineered to deliver stable, uniform cooling for evaporators, diagnostic setups, and advanced research baths.
Laboratory Chillers and Recirculating Cooling Systems are critical components designed to supply stable, temperature-regulated fluid to external instruments such as rotary evaporators, spectrometers, electron microscopes, and high-performance diagnostic machinery.
Our range of chillers features precise PID temperature control systems, robust circulation pumps, and advanced refrigeration architectures. Designed to reduce water usage and ensure consistent heat removal, these platforms are constructed with rust-proof stainless steel baths, visual display interfaces, and comprehensive safety indicators for over-temperature or empty tank scenarios.
Compare our diverse range of premium chillers and circulators, engineered with PID temperature controllers, powerful pump flows, and high safety marks.
Compact benchtop low temperature circulating chiller featuring a temperature range of -20°C to 20°C. Ideal for laboratory evaporators and condensers.
Premium low temperature circulating chiller offering a wider temperature span from -20°C to 80°C. Delivers high accuracy for advanced scientific research.
Reliable low temperature chiller designed for high cooling capacity. Offers digital temperature readouts and absolute protection against over-temperature.
Ergonomic recirculating chiller featuring user-friendly operation, efficient cooling fan, and optimal coolant flow rate for lab scale applications.
Advanced recirculating heating circulator/chiller delivering stable temperatures for sensitive biological assays and biochemical procedures.
Multi-purpose heating and cooling circulator/chiller providing uniform temperature control across variable research workloads.
Our recirculating cooling units combine high fluid capacity, rapid heat exchange, and advanced safety features to back your scientific assays.
Delivers stable recirculating flow rates to cool remote instrumentation without losing pressure.
Automated microprocessor-controlled adjustments maintain temperature variations within ±0.1°C limits.
Equipped with overflow detectors, pressure shut-offs, and over-temperature limits for unattended runs.
Closed-loop recirculating layout reduces overall tap water consumption to zero, cutting operating costs.