Introduction
High Temperature Circulator offers a wide operating range from ambient to 200°C, supporting varied heating needs in labs and units. Its closed circulation system protects fluid quality by minimizing exposure to contaminants. The internal filter prevents blockage and keeps circulation steady during operation. Our Circulator supports reactors, fermentation tanks, and pilot-scale processing in pharmaceutical, food, and biochemical environments.
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 is designed to deliver stable heating performance for laboratory processes and pilot-scale operations. This supports temperature regulation in reactors, bio-fermentation units, synthesis lines, and other systems that rely on continuous fluid circulation.
Specifications
| Working Temperature Range | RT to 200°C |
| Temperature Control Accuracy | ±1°C |
| Reservoir Volume | 15 L |
| Heating Power | 6000 W |
| Lift | 15 m |
| Inlet/Outlet Size | 12.7 mm |
| Flow Rate | 30 L/min |
| Circulating Pump Power | 250 W |
| Power Consumption | 6250 W |
| Power Supply | 220V / 50Hz |
| Dimensions (W × D × H) | 460 × 650 × 935 mm |
Features
Anti-tilt structural base design
Compact vertical space footprint
Shielded internal wiring system
Overheat protection safety module
Uniform flow distribution channel
FAQs
1. Can the High Temperature Circulator handle exposure to chemically aggressive media during extended runs?
High Temperature Circulator features corrosion-resistant internal pathways that reduce fluid interaction with reactive surfaces, making it suitable for continuous operation with aggressive media. The entire circulation channel is sealed to prevent leaks, and electrical components remain isolated from the liquid zone. This separation allows for extended performance in challenging chemical workflows. Built-in filters capture residue before it affects the system. These elements preserve internal stability when working with solvent-rich or high-load applications. Its robust mechanical build resists deformation under long-term thermal stress. That ensures performance doesn't decline during high-demand processing. It's a strong fit for industrial and research-grade chemical labs.
2. Does the High Temperature Circulator require frequent fluid replacement due to overheating or evaporation?
The High Temperature Circulator uses a closed circulation system that limits fluid exposure to air, reducing evaporation and oxidation. This design keeps the fluid clean and consistent over longer cycles without the need for frequent replacement. Its internal structure minimizes turbulence, which helps reduce air entrapment and bubble formation. These factors support stable fluid performance in extended-use scenarios. The internal insulation also contributes to maintaining the fluid's properties during long heating phases. With fewer contaminants entering the system, fluid degradation is slowed. Users experience fewer interruptions due to fluid top-ups. It’s ideal for continuous and repetitive heating routines.
3. Is the High Temperature Circulator suitable for processes that require multi-point equipment connection?
High Temperature Circulator is built to handle distribution across multiple connected devices without losing flow stability. This is useful in setups where several reactors or vessels operate in tandem. The circulator delivers consistent output through each port due to its balanced flow mechanics. You can integrate splitters or junctions as needed without affecting temperature uniformity. The interface ports are positioned for easy branching within tight equipment arrays. It performs reliably even when demand varies between units. This makes it suitable for modular labs and pilot systems. The system adapts well to multi-stage processing setups.
4. What kind of monitoring features does the High Temperature Circulator offer during operation?
The High Temperature Circulator provides a digital front panel that shows both set and real-time tank temperatures. This dual display allows users to detect changes instantly without connecting external sensors. The interface includes visual alerts for fluid level, system faults, and imbalance conditions. All key parameters can be managed via the touch-based controls. This reduces the need for manual tracking during long experiments. Real-time feedback helps prevent unnoticed performance drops. The level indicator is helpful during extended use to track fluid consumption. These features improve user control in high-throughput labs.
5. Can the High Temperature Circulator be integrated into existing process lines with limited floor space?
The High Temperature Circulator features a vertically oriented build that saves lateral space in dense laboratory environments. Its narrow footprint fits easily between other instruments without obstructing access or airflow. Casters allow smooth movement across work areas, supporting flexible installation. Connection ports are placed for quick linking with adjacent systems. This layout benefits teams managing dynamic or space-constrained setups. Despite its size, the circulator maintains full functionality and flow consistency. It’s suitable for labs that adjust equipment frequently. The compact design doesn’t sacrifice output capacity or structural reliability.
6. How suitable is the High Temperature Circulator for food-grade or clean liquid heating?
The High Temperature Circulator is equipped with stainless fluid-contact surfaces that are resistant to microbial growth and chemical leaching, making it a reliable choice for food-grade processes. Its closed circulation system limits air contact, protecting liquid purity throughout heating cycles. Smooth internal walls allow for easier post-use cleaning. You can use compatible sanitary fittings to match regulatory needs in food testing labs. The design prevents cross-contamination across multiple batches. Its non-reactive pathway supports safe fluid recirculation. Whether it’s used for beverage trials or dairy applications, hygiene is upheld. That makes it suitable for nutraceutical and pilot-scale food processing.
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