Introduction
High Temperature Circulator offers a working temperature range from RT to 200°C, ensuring reliable thermal control. It includes a closed-loop system that reduces fluid loss during extended use. The real-time liquid level display supports continuous operation without disruption. Our High Temperature Circulator is used with reactors, peptide lines, fermentation tanks, beverage processing, and UV cooling setups.
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 support for laboratory and pilot-scale systems requiring stable thermal conditions. This allows reliable operation with external equipment like reactors, fermentation tanks, and fluid processing setups without heat loss or fluid evaporation.
Specifications
| Working Temperature Range | RT to 200°C |
| Temperature Control Accuracy | ±1°C |
| Reservoir Volume | 5 L |
| Heating Power | 2000 W |
| Lift | 6 m |
| Inlet/Outlet Size | 12.7 mm |
| Flow Rate | 20 L/min |
| Circulating Pump Power | 100 W |
| Power Consumption | 2100 W |
| Power Supply | 220V / 50Hz |
| Dimensions (W × D × H) | 300 × 450 × 550 mm |
Features
Consistent thermal load management
Long-hour circulation endurance
Optimized system energy balance
Non-disruptive cooling transitions
Adaptable laboratory workflow integration
FAQs
1. How does the High Temperature Circulator maintain consistent heating for thermally unstable or sensitive materials during use?
High Temperature Circulator ensures consistent thermal delivery without fluid loss, making it ideal for handling fragile compounds during synthesis or processing. The closed-loop system preserves the heat transfer medium, reducing vapour exposure over long durations. Its responsive control algorithm limits thermal drift, supporting even heat distribution across delicate substances. The internal build minimizes exposure to oxidation or degradation. Superior insulation keeps the system isolated from external fluctuations. This sustained stability maintains molecular structure in heat-sensitive samples. It’s a dependable solution for labs requiring tight thermal control. The unit suits analytical and preparative tasks involving narrow safety ranges.
2. What features of the High Temperature Circulator help extend the life of thermal fluids during prolonged use?
The High Temperature Circulator features a sealed circulation loop that shields fluids from air, helping avoid degradation due to oxidation or contamination. Its design avoids moisture entry, preserving the thermal medium's original properties even during extended runs. Interior components resist chemical and thermal wear, keeping pathways clean and intact. Its regulated heating system reacts proportionally, preventing thermal shock to the fluid. Direct air contact is eliminated, which helps maintain viscosity and thermal stability. The system protects costly fluids from early breakdown. Overall, it lowers replacement needs and service intervals. This setup supports uninterrupted operation across demanding applications.
3. Is the High Temperature Circulator compatible with noise-sensitive or vibration-critical laboratory instruments?
High Temperature Circulator is engineered to function quietly, making it compatible with labs where low noise levels are essential. Its pump design reduces vibrational impact on nearby instruments, supporting sensitive measurements. Sound insulation minimizes disturbances near cleanrooms or detector-based devices. Compact housing allows close placement without affecting nearby experimental setups. The internal mechanics are tuned for minimal mechanical output. It’s suitable for use around analytical balances, spectrometers, and optical systems. This feature enhances workflow accuracy in shared environments. Whether used near sensors or in acoustic isolation chambers, the unit avoids unwanted interference during operations.
4. Can the High Temperature Circulator handle thick or high-viscosity fluids in lab or pilot-scale workflows?
High Temperature Circulator supports steady heat transfer even when circulating dense or slow-flowing liquids. Its powerful internal pump maintains consistent movement of viscous media like resins, oils, or polymer mixtures. Inlet and outlet ports are optimized to manage sustained flow without blockages. Components in contact with fluid are resistant to fouling or wear. Its heat response adapts to the slower thermal absorption of thick substances. This allows the unit to operate across both batch and continuous protocols. It is highly effective in setups involving specialized or high-boiling fluids. The system delivers dependable performance across complex thermal tasks.
5. What built-in safety measures protect the High Temperature Circulator from hazards during extended operation?
The High Temperature Circulator includes multiple safeguards to detect and respond to system irregularities in real time. Its thermal protection features include automatic cut-off to prevent overheating beyond set thresholds. Anti-blockage systems ensure smooth circulation, avoiding pressure build-up or motor strain. Electrical load is monitored through a current-limiting circuit to reduce the risk of overload. Alerts are displayed when the unit detects deviation from safe parameters. It can self-adjust to stabilize operation if adverse conditions arise. These features protect both user and equipment during unattended or long-cycle use. This makes it a safe choice for continuous thermal workflows.
6. What real-time monitoring options are available in the High Temperature Circulator for process oversight?
High Temperature Circulator offers a digital control panel that provides live feedback on actual and setpoint temperatures. system allows operators to observe heat delivery without additional sensors, improving usability during active processes. It records fluctuations for reference and verification. External probe (PT100) compatibility enables direct thermal monitoring from connected equipment. Display alerts help identify any deviation or fault during runtime. The interface streamlines tuning and makes system control intuitive. This helps maintain accuracy in temperature-sensitive routines. It’s an essential tool for labs requiring constant feedback and traceable operation records.
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