Introduction
High Temperature Circulator operates within a working temperature range from RT to 200°C, ensuring reliable thermal performance for various heating needs. It is equipped with advanced overcurrent protection to safeguard the system during extended use. Caster wheels allow easy movement and flexible placement in lab or pilot environments. Our High Temperature Circulator supports reactors, bio-processing units, and pilot beverage production lines.
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 regulated heating and closed-loop fluid circulation for laboratory and pilot-scale thermal processes. This ensures uniform heat distribution across systems such as mixing tanks, calorimeters, and bio-processing lines.
Specifications
| Working Temperature Range | RT to 200°C |
| Temperature Control Accuracy | ±1°C |
| Reservoir Volume | 10 L |
| Heating Power | 3000 W |
| Lift | 15 m |
| Inlet/Outlet Size | 12.7 mm |
| Flow Rate | 30 L/min |
| Circulating Pump Power | 250 W |
| Power Consumption | 3250 W |
| Power Supply | 220V / 50Hz |
| Dimensions (W × D × H) | 460 × 580 × 805 mm |
Features
Dual-channel flow routing
High-altitude operation stability
Temperature-fluctuation resistant shell
Tool-free fluid access
Compact lab-friendly frame
FAQs
1. Why does the High Temperature Circulator include a filter in the circulation pipeline?
High Temperature Circulator incorporates a built-in filter to intercept impurities that may enter the system during operation. This filtration helps maintain uninterrupted flow even in setups involving viscous or reactive fluids. It becomes essential when the unit is used with fermentation tanks or extraction equipment that runs continuously. The reduced risk of clogs means fewer shutdowns and less time spent on disassembly or cleaning. This protective layer supports extended usage without affecting performance or temperature uniformity. It also shields the heat exchanger and connected components from particle damage. Flow stability across varying viscosities is preserved through this added safeguard. By integrating the filter into the system, long-term reliability is maintained without external accessories.
2. How does the PT100 sensor enhance control in the High Temperature Circulator ?
The High Temperature Circulator allows for the connection of an external PT100 sensor to offer direct temperature feedback from the actual point of use. This feature is beneficial in systems like reactors or fermenters, where internal conditions may fluctuate. It allows the circulator to adjust based on process temperature rather than tank readings alone. sensor integration improves consistency in setups where thermal accuracy is critical. The dynamic response ensures smoother transitions when ramping up or cooling down. With this sensor, thermal stability is not just system-wide but point-specific. It also supports processes where material sensitivity to heat is high. The external feedback loop enhances adaptability in diverse lab environments.
3. What is the role of the closed-loop system in the High Temperature Circulator ?
High Temperature Circulator features a fully closed-loop system designed to prevent contamination and evaporation of the heat transfer fluid. This design helps retain fluid integrity even after long usage cycles. It avoids oxidation and reduces fluid wastage, especially when operating at high temperatures for extended periods. The closed environment minimizes air contact, extending the life of expensive thermal oils. This system benefits labs using the circulator with pilot fermenters or peptide production lines. Maintenance cycles are also reduced since fluid properties remain stable over time. The sealed loop also promotes uniform flow across connected equipment. Its efficiency lies in consistent thermal behavior without frequent refills or top offs.
4. Why is the High Temperature Circulator equipped with touch screen operation?
The High Temperature Circulator includes a touch screen interface to make operational settings clearer and more accessible. interface displays both the current tank temperature and the set temperature simultaneously, which is useful during ramp-up or cooling phases. This visibility allows for better process control across applications like pilot-scale beverage lines or reactors. Users can make adjustments without interrupting the system, minimizing workflow disruption. Visual prompts and real-time values help identify any instability early. Screen interaction also reduces reliance on external monitoring tools. Quick navigation shortens the time needed for parameter checks. Its presence supports fast troubleshooting in multi-step heating operations.
5. How does the High Temperature Circulator support safety during prolonged use?
High Temperature Circulator comes with overcurrent, overheating, and leakage protection, all designed to reduce operational risks. These built-in protections activate automatically during irregular voltage or temperature surges. This is especially critical in long experiments where human supervision might be minimal. The circulator’s safety measures reduce the likelihood of equipment failure or fluid loss. They help safeguard both the sample and the connected lab devices. Each protection feature functions independently, adding multiple layers of fail-safe operation. These controls are vital when integrated with multi-stage systems such as bioreactors. unit is engineered to preserve both lab safety and equipment performance.
6. What does the liquid level display in the High Temperature Circulator offer the user?
High Temperature Circulator features a built-in liquid level display that allows real-time monitoring of fluid levels during operation. This function proves useful when used with pilot systems that require stable, uninterrupted fluid circulation. It alerts users before the reservoir runs low, preventing air from entering the lines and affecting heat exchange. feature supports quick visual checks without needing to pause the unit or open any panels. For setups where fluid stability impacts sample integrity, this tool becomes a reliable asset. It avoids accidental dry running and protects the pump system from damage. Visual indicators help reduce human error in fluid management. circulator ensures operational continuity with minimal intervention.
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