Introduction
High Temperature Circulator operates from room temperature to 200°C making it suitable for tasks that need consistent thermal control. The integrated filter helps prevent blockage during long operation. It features liquid level monitoring to avoid fluid-related interruptions. Our circulator is applied in bio-fermentation units with extraction systems with beverage pilot lines and with pharmaceutical processes.
This baths and circulators is designed to meet the rigorous requirements of modern laboratory operations, ensuring high precision, reliability, and ease of use for various experimental applications.Applications
High Temperature Circulator delivers controlled heating to lab and pilot systems requiring steady high-temperature fluid circulation. This supports consistent temperature in reactors, fermenters, and processing setups across food, biotech, and pharma sectors.
Specifications
| Working Temperature Range | RT to 200°C |
| Temperature Control Accuracy | ±1°C |
| Reservoir Volume | 35 L |
| Heating Power | 9000 W |
| Lift | 22 m |
| Inlet/Outlet Size | 12.7 mm |
| Flow Rate | 42 L/min |
| Circulating Pump Power | 370 W |
| Power Consumption | 9370 W |
| Power Supply | 380V / 50Hz |
| Dimensions (W × D × H) | 520 × 720 × 1130 mm |
Features
Handles variable load conditions
Suited for humid environments
Withstands extended runtime demands
Compatible with modular setups
Maintains stability during transitions
FAQs
1. How does the High Temperature Circulator support uninterrupted research workflows?
The High Temperature Circulator is built for continuous usage without compromising output consistency, which is essential in extended-duration tests or multi-phase research procedures. It helps maintain a stable environment across long operational hours, reducing the need for reset cycles. This improves time management for labs handling complex trials or simulations. Its sustained performance also helps preserve thermal balance in setups that cannot afford variation. Consistent heating throughout supports better data reliability. Researchers benefit from fewer pauses or system interruptions. This contributes directly to productive research cycles.
2. What interface advantages does the High Temperature Circulator provide to lab operators?
High Temperature Circulator includes a user-friendly touchscreen interface that displays both the active process temperature and the preset value simultaneously. This feature allows users to make adjustments quickly while monitoring changes in real time, which is crucial in labs managing diverse tasks. Operators can fine-tune conditions without halting progress. The dual-view display promotes confident decision-making. It assists multi-user labs by making temperature data accessible at a glance. This improves collaboration across shifts. Its clarity is especially helpful in fast-paced experimental environments.
3. Can the High Temperature Circulator support vertically arranged lab setups?
High Temperature Circulator is compatible with installations that require vertical circulation, including stacked reactor systems and multilevel pilot lines. It maintains steady performance even with elevated or irregular piping configurations. This capability benefits compact labs where horizontal space is limited. The unit delivers unbroken circulation across levels without losing output strength. Operators can install the system closer to active tanks or test rigs. It eliminates the need for frequent repositioning. Its flexibility supports labs with evolving equipment arrangements.
4. What built-in measures help the High Temperature Circulator prevent equipment failure?
High Temperature Circulator is equipped with protective protocols that counter electrical surges, system overheating, and unstable process loads. These features are essential for labs operating high-value or sensitive systems that require protection from instability. It detects irregular performance and initiates safety responses to shield both the unit and connected devices. This reduces unplanned halts due to safety shutdowns. Reliable monitoring also extends the lifespan of downstream systems. Users benefit from uninterrupted operation even under fluctuating input demands. This defense layer adds security in data-critical workflows.
5. How does the High Temperature Circulator assist in contamination-sensitive applications?
The High Temperature Circulator contains an integrated filter system that supports clean circulation routes in sterile and controlled spaces. This is vital when working with food-grade materials, culture growth, or biologically sensitive content. It traps particulates that may arise during prolonged use, helping maintain internal hygiene. This function decreases the need for frequent internal cleaning cycles. In research and development, where reproducibility is essential, the filtration helps avoid variation from residual build-up. This contributes to better batch control. Its inclusion is a value point for facilities maintaining strict process integrity.
6. Why is the High Temperature Circulator ideal for multi-batch pilot plant operations?
High Temperature Circulator is engineered for applications involving frequent heating cycles, offering stability across back-to-back processing stages. Its thermal control remains steady even as input requirements shift between test runs. Pilot environments benefit from this predictability when scaling experimental outcomes. It eliminates the delay often seen during repeated startups or cooldowns. With this unit, thermal control does not vary due to cycle count. The system holds firm through daylong activity. Its performance is ideal for process development requiring consistent output across numerous trials.
Tips: For more details, quotes and customized solutions, please contact us anytime. We’re always ready to serve you professionally.

