Detailed Description
Key Features of the Explosion-proof High/Low Temperature Circulator
The Explosion-proof High/Low Temperature Circulator is engineered to meet explosion-proof safety standards
Wide temperature control range from -60°C to 200°C with precise ±1°C stability in the Explosion-proof High/Low Temperature Circulator
Equipped with dual 3.74 kW air-cooled compressors ensuring the Explosion-proof High/Low Temperature Circulator delivers powerful cooling performance
Utilizes environmentally friendly refrigerants R22 and R23 for the Explosion-proof High/Low Temperature Circulator
High-efficiency silicone oil circulating pump delivering 42 L/min flow and 22 bar pressure in the Explosion-proof High/Low Temperature Circulator
Durable SUS304 stainless steel tank and piping for corrosion resistance in the Explosion-proof High/Low Temperature Circulator
External circulation interface DN15 allows easy integration of the Explosion-proof High/Low Temperature Circulator into complex systems
Powered by 3-phase 380V supply with total consumption of 15.5 kW, optimized for the Explosion-proof High/Low Temperature Circulator
Technical Specifications of Explosion-proof High/Low Temperature Circulator
Model: AKGD-50L/-60+200
Temperature Stability: ±1°C
Operating Temperature Range: -60°C to 200°C
Ambient Temperature: 5–35°C
Recommended Ambient Humidity: ≤60%
Power Supply: 3-phase 380V, 50Hz
Total Power Consumption: 15.5 kW / 27.26 A
Cooling Power: 3.74 kW × 2
Heating Power: 7.5 kW
Cooling Method: Air-cooled
Compressor Model: YM49A1G-100
Compressor Power: 3 HP
Refrigerants: R22, R23
Cooling Capacity:
@ 100°C – 18.43 kW
@ 10°C – 18.43 kW
@ 5°C – 17.87 kW
@ -5°C – 10.6 kW
@ -30°C – 6.89 kW
@ -60°C – 4.55 kW
Circulating Pump Power: 370 W
Circulating Pump Flow Rate: 42 L/min
Circulating Pump Pressure: 22 bar
External Circulation Interface Size: DN15
Heat Transfer Fluid Tank Material: SUS304 Stainless Steel
Heat Transfer Fluid Piping & Valve Material: SUS304 Stainless Steel
Circulating Medium: Silicone oil (viscosity < 50 cSt)
Compatible Equipment for the Explosion-proof High/Low Temperature Circulator
Laboratory Reactors: The Explosion-proof High/Low Temperature Circulator provides precise temperature control essential for chemical and pharmaceutical reactions requiring explosion-proof safety.
Vacuum Pumps: Perfectly matched with the Explosion-proof High/Low Temperature Circulator to maintain system pressure during controlled temperature processes.
Magnetic Stirrers: Used alongside the Explosion-proof High/Low Temperature Circulator for uniform mixing under strict temperature regulation.
Temperature Controllers and Sensors: Improve the operational precision of the Explosion-proof High/Low Temperature Circulator.
Heat Exchangers: Extend the capabilities of the Explosion-proof High/Low Temperature Circulator in complex laboratory setups.
Highlighting the Explosion-proof High/Low Temperature Circulator’s Safety and Performance
The Explosion-proof High/Low Temperature Circulator stands out for its combination of advanced temperature control and explosion-proof safety features. Its wide temperature range and high stability ensure reliable operation even in sensitive environments. Constructed with premium stainless steel and equipped with powerful compressors, this Explosion-proof High/Low Temperature Circulator guarantees durability and energy-efficient performance for demanding laboratory and industrial applications.
Watch Product Demonstrations
Explore real-world performance and applications in our product demo videos. Visit our video library for more insights and demonstrations.
Explore More Models
Explore more models in our heating cooling circulator category to find the perfect Explosion-proof High/Low Temperature Circulator for your laboratory needs.
Shipping Information
We provide worldwide shipping for all laboratory equipment. Every order is carefully packaged to ensure safe delivery. If the item is in stock, it will be shipped within 3–7 business days after payment confirmation. For out-of-stock items, we will inform you of the estimated shipping time based on the specific product.
Shipping Methods: DHL, FedEx, UPS, or sea freight (depending on order size and destination)
Estimated Delivery Time:
Asia: 5–10 business days
Europe & North America: 7–12 business days
South America & Africa: 10–15 business days
Sea freight: subject to actual transit time
Tracking: A tracking number will be provided via email once the shipment has been dispatched.
Customs & Duties: Buyers are responsible for any import taxes or customs duties required by their country or region.
For bulk orders, custom packaging, or special shipping arrangements, please contact our team for personalized assistance at lab@equilrxnlab.com.
Product specifications
Parameter | Specifications |
---|---|
Model | AKGD-50L/-60+200 |
Temperature Stability (℃) | ±1 |
Operating Temperature Range (℃) | -60~200 |
Ambient Temperature (℃) | 5~35 |
Best Ambient Humidity | ≤60% |
Power Supply | 3PH/380V/50HZ |
Total Power (kW/A) | 15.5/27.26 |
Cooling Power (kW) | 3.74 x2 |
Heating Power (kW) | 7.5 |
Cooling Method | Air-cooled |
Compressor Model | YM49A1G-100 |
Compressor Power (HP) | 3 |
Refrigerant | R22,R23 |
Type | Fully Enclosed Rotary Compressor |
Cooling Capacity (kW) @ 100℃ | 18.43KW |
Cooling Capacity (kW) @ 10℃ | 18.43KW |
Cooling Capacity (kW) @ 5℃ | 17.87KW |
Cooling Capacity (kW) @ -5℃ | 10.6KW |
Cooling Capacity (kW) @ -30℃ | 6.89KW |
Cooling Capacity (kW) @ -60℃ | 4.55KW |
Circulating Pump Power (W) | 370W |
Circulating Pump Flow Rate (L/min) | 42 |
Circulating Pump Pressure (bar) | 22 |
External Circulation Interface Size | DN15 |
Heat Transfer Fluid Tank Material | SUS304 |
Heat transfer fluid piping and valve materials | SUS304 |
Circulating Medium | Silicone oil below 50cs |
Internal Liquid Capacity (L) | 17 |
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Application Scenarios
Chemical synthesis laboratories requiring precise temperature control from -60°C to 200°C
Pharmaceutical research and development where explosion-proof equipment is essential for safety
Industrial testing environments needing stable heating and cooling cycles with high safety standards
Semiconductor manufacturing processes requiring exact temperature regulation with explosion protection
Environmental simulation chambers for testing materials under extreme temperature conditions
Food industry labs conducting temperature-sensitive quality control experiments
Petrochemical labs handling volatile substances that require explosion-proof temperature circulators
Universities and research institutions focusing on high-precision thermal experiments in controlled environments

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