Introduction
High and operates within a working temperature range of -20 to 200°C ideal for rapid heating and cooling cycles. It performs reliably under controlled humidity, supporting stable use in enclosed lab spaces. The multi-stage fermentation process benefits from safety features like leakage protection and emergency stop. Our circulator is suited for, mixing tanks, pilot-scale setups, and fluid-based process systems.
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 and Low Temperature Circulator provides external heating and cooling across a broad temperature range for lab and pilot-scale processes. This function ensures stable conditions in fermentation tanks, extraction lines, and fluid transfer systems.
Specifications
| Working Temperature Range | -20 to 200°C |
| Ambient Temperature | 5 to 35°C |
| Relative Humidity | Less than or equal to 70% |
| Temperature Control Accuracy | ±1° |
| Temperature Sensor | PT100 |
| Circulating Pump Pressure | Less than or equal to 0.4 MPa |
| Circulating Pump Lift | 4 to 6 m |
| Max. Reactor Volume Can Be Matched | 5 L |
| External Input | External Sensor Port |
| Cooling Capacity | 2208 W |
| Heating Power | 2000 W |
| Compressor Power | 736 W |
| Circulating Pump Power | 100 W |
| Power Consumption | 2900 W |
| Power Supply | Single Phase 220V / 50Hz |
| Dimensions (W × D × H) | 640 × 570 × 870 mm |
| Net Weight | 105 kg |
Features
External sensor input option
Balanced circulating pump output
Stable single-phase power input
Secure panel lock system
Durable heat-resistant casing
FAQs
1. Can the High and Low Temperature Circulator be integrated with automated systems in a laboratory setup?
High and Low Temperature Circulator supports integration into automated setups where external monitoring or control is required. The structure accommodates signal input compatibility that fits well into advanced workflow systems. This makes it suitable for research labs aiming to streamline their thermal regulation with process synchronization. The unit doesn’t just regulate temperature but fits into process loops with real-time response alignment. It enhances process consistency when used alongside analytical systems or batch reactors. The inclusion of input ports helps it communicate effectively with programmable lab networks. That makes the circulator a valuable component in integrated lab environments. The product bridges temperature control with larger automated instrumentation.
2. How does the High and Low Temperature Circulator handle prolonged use in a pilot-scale food or beverage line?
High and Low Temperature Circulator is built to support pilot-scale beverage production where consistent thermal regulation is essential. It manages different fluid consistencies, such as fruit pulp and blended liquids, without disturbing circulation flow. The system is designed to endure long operating hours without performance drop-off. This makes it suitable for processes like pasteurization, heat blending, and temperature maintenance during filling stages. It sustains required temperature conditions through continuous operation. The rugged build prevents delays or cycling issues during repeated use. Its compatibility with batch containers and jacketed equipment supports flexible setup integration. The unit maintains stable thermal delivery throughout small-batch product development runs.
3. Can the High and Low Temperature Circulator be operated safely in high-load environments such as milling or mixing setups?
High and Low Temperature Circulator includes built-in protections suited for setups involving mechanical vibration or extended running equipment. In milling or mixing stations, temperature fluctuation can be triggered by rapid agitation, but this circulator absorbs such variables. It features system safeguards that react to load surges and internal fluid movement. This stability makes it highly effective in processes like wet milling or homogenizing. Safety elements such as circuit protection help prevent interruptions during aggressive operations. The circulator allows heat control while the primary machinery continues without overheating. The entire system supports constant thermal delivery even when external operations are uneven. This feature is critical when integrating temperature-sensitive processes into heavy equipment layouts.
4. Is the High and Low Temperature Circulator useful in extraction and concentration setups with thermal variation?
High and Low Temperature Circulator helps manage systems where heat-sensitive extraction or solvent recovery is involved. Its circulating design supports both evaporation and condensation paths without thermal distortion. This allows the user to recover components without risking chemical degradation. The unit sustains fluid uniformity in cooling jackets or condensers connected to extractors. It handles high and low thermal loads associated with shifting solvent phases. This ensures compound integrity and extraction yield even when running variable profiles. Users benefit from reliable operation even when thermal pressure changes rapidly. circulator offers a crucial balance point for systems managing thermal-sensitive material processing.
5. Is the High and Low Temperature Circulator suitable for new energy applications requiring controlled thermal cycling?
High and Low Temperature Circulator supports thermal testing and conditioning of battery modules or energy materials. It helps stabilize cell packs during stress analysis or charge-discharge simulations. In energy R&D setups, the circulator offers continuous flow control when thermal balance is needed for safety. It reduces risk from temperature drift that may cause internal short circuits or data deviation. The system works efficiently during thermal ramp tests across multiple cycles. It supports reproducibility of results by maintaining the external environment consistently. The circulator complements high-stakes research in energy cells or supercapacitor prototypes. Lab-based developers can rely on it for stable control throughout material lifecycle testing.
6. How does the High and Low Temperature Circulator manage performance during oral liquid or dairy pilot runs?
The High and Low Temperature Circulator performs well in small-batch runs of liquid-based consumables that require batch-to-batch temperature uniformity. It works well with containers used in dairy product testing or herbal oral formulations. The system maintains thermal consistency during pasteurization, stabilization, or cold-holding stages. This ensures the properties of heat-sensitive ingredients are preserved. It reduces the risk of layering or temperature gradients during pilot filling or holding. The construction allows for clean circulation without cross-contamination. circulator helps bridge laboratory development and scalable production trials. It provides repeatable results in early-stage testing of drinkable products.
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