Introduction

High and operates within a working range of -20 to 200°C, making it suitable for tasks needing broad thermal flexibility. It includes compressor protection to prevent damage during frequent temperature shifts. The system features a delay start mechanism for smoother recovery after interruptions. Our circulator is used in bio-fermentation units, liquid mixing systems and pilot-scale production 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 and Low Temperature Circulator supports a wide thermal range from -20°C to 200°C, enabling reliable temperature regulation for connected external systems. This allows it to maintain stable thermal conditions in bioreactors, pilot-scale processing setups, and chemical mixing operations.

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

Variable speed pump control

Compact vertical unit profile

Integrated liquid level alarm

Anti-vibration structural support

Overcurrent safety shutoff switch

FAQs

1. Can the High and Low Temperature Circulator function reliably in mobile or frequently reconfigured lab environments?

The High and Low Temperature Circulator is engineered to handle frequent repositioning in flexible lab setups. Its stable structure and balanced design allow it to maintain performance even when moved between workstations. The frame construction minimizes internal disturbance, helping preserve calibration. Tubing and port access are designed for easy detachment and reconnection during lab shifts. This makes it ideal for research environments where pilot units are rotated between applications. The circulation system stabilizes quickly after relocation, preventing process interruption. Compact layout supports efficient use of bench space in multi-zone workflows. It remains dependable across dynamic installation settings.

2. Is the High and Low Temperature Circulator safe to install near sensitive electronics or laboratory sensors?

High and Low Temperature Circulator is suited for placement near instruments requiring a controlled environment, such as spectrometers or calibration equipment. Its thermal output is localized, minimizing heat drift to nearby components. The machine operates with low vibration, reducing interference with sensitive signals or measurements. Rear-side ventilation avoids directing airflow toward precision setups. The circulator maintains steady operation without fluctuations that could disturb lab devices. Its layout ensures safety even in compact lab benches shared with analytical tools. The absence of electrical noise makes it compatible with monitoring systems. It performs quietly and without disruption near electronics.

3. How well does the High and Low Temperature Circulator perform in high-humidity laboratory conditions?

The High and Low Temperature Circulator is well-suited for humid environments such as food labs, fermentation areas, or plant extract lines. Its casing and airflow design limit internal condensation during extended operation. Ventilation components are placed to reduce moisture contact, preserving electronics and internal pathways. The unit continues functioning even in labs where ambient humidity is consistently elevated. It resists surface corrosion and component wear caused by moisture. Internal fluid handling is protected from environmental interference. Control panel responsiveness remains stable under damp conditions. This makes it a dependable choice for moisture-prone laboratory zones.

4. Can the High and Low Temperature Circulator support thermal control for reactors positioned at elevated heights?

High and Low Temperature Circulator accommodates reactors placed above bench level, such as on shelves or vertical setups. The circulation system delivers consistent flow without drop-off, ensuring reliable performance even when fluid must rise before returning. This capability is ideal for tall glass reactors, jacketed columns, or stacked process tanks. Pressure regulation helps prevent fluid backflow or inconsistent delivery. Its structure supports tubing placement for height-adjusted connections. Performance is not impacted by vertical positioning of external equipment. It allows efficient heat exchange across different elevations. The unit handles height variations without compromising circulation stability.

5. Is the High and Low Temperature Circulator suitable for use with solvent-based extraction or processing equipment?

The High and Low Temperature Circulator is compatible with thermal systems that support indirect solvent processing, such as in botanical extraction or distillation labs. Its internal fluid path remains isolated, avoiding interaction with vapors or chemical media. This prevents contamination and maintains system cleanliness during long operation hours. The materials are resistant to environmental exposure near volatile solvents. Vapor buildup is minimized through proper heat routing and enclosure design. It offers thermal consistency even around reactive setups. The circulator integrates safely into extraction workflows. Solvent-side processing remains unaffected by thermal system contact.

6. Can the High and Low Temperature Circulator maintain stability during temperature-sensitive dosing applications?

High and Low Temperature Circulator provides a thermally consistent environment ideal for dosing tasks involving heat-sensitive materials. It maintains uniform fluid conditions, preventing sudden shifts that could impact sample integrity. This is especially helpful for oral solution production, fermentation dosing, or bioactive fluid delivery. Thermal stability is preserved from reservoir to dosing point, avoiding inconsistency during micro-volume handling. It supports real-time fluid transitions without triggering variation in reaction conditions. External equipment receives well-regulated input at every phase. The system ensures dosing accuracy by keeping all process variables thermally balanced. It’s ideal for delicate fluid workflows.

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