Ai-Driven Full Inverter Cold Storage Refrigeration Unit
Brief Advantage Of EXTRCOOL Ai Driven Inverter Air Cooled Cold Storage Refrigeration Unit
Traditional cold storage refrigeration units often suffer from high energy consumption, unstable temperature control, frequent manual maintenance and severe inventory loss, failing to meet the demands of modern commercial and industrial cold chain operations. The Extrcool AI Driven Inverter Air Cooled Cold Storage Refrigeration Unit redefines cold storage cooling performance by integrating intelligent AI algorithms, high-efficiency inverter technology and air-cooled modular design, becoming a premium and cost-effective solution for various cold storage scenarios.Equipped with advanced AI intelligent control systems, this unit realizes fully autonomous and adaptive refrigeration operation. It continuously learns and analyzes real-time data including ambient temperature, storage capacity, door opening frequency and equipment operating status. Different from fixed-operation traditional units, it automatically adjusts compressor speed, cooling output and defrost cycles in real time. This intelligent precise control maintains an ultra-stable internal temperature with minimal fluctuation, effectively reducing food, medicine and agricultural product spoilage loss and maximizing commodity preservation quality.For cold chain operators pursuing intelligent operation, low energy consumption, low loss rate and low maintenance cost, the Extrcool AI Driven Inverter Air Cooled Cold Storage Refrigeration Unit is the most reliable and future-oriented refrigeration upgrade choice.
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Core Components & Key Design Features
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Core Components & Key Design Features
- Wide Temperature Adaptability: Reliable operation guaranteed across -35°C to 52°C ambient conditions.
- High-Efficiency Evaporator Design: Optional external/inner rotor fans with 2.4–6mm large-pitch fins for optimal heat exchange.
- Corrosion-Resistant & Customizable Build: Stainless steel coated fins with customizable options to suit harsh environments.
- Comprehensive Anti-Icing Protection: Condensate drain pipe frost heating and chassis hot refrigerant deicing system for uninterrupted operation.
AI Frequency Conversion Advantages
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AI Frequency Conversion Advantages
- Higher Energy Efficiency: Delivers increased COP and reduced operating costs compared to traditional fixed-speed units.
- Fast Cooling Performance: Supports broadband operation with one-key control for quick, wait-free cooling.
- Extended Unit Lifespan: AI frequency modulation reduces frequent startups, minimizing component wear.
- Precise Temperature Stability: Maintains tight temperature fluctuations, preserving product quality effectively.
- Quiet Operation: Avoids overclocking and runs at low noise levels, suitable for various environments.
- Flexible Compatibility: Works with photovoltaic green electricity without needing an additional inverter.
Hot Fluoride Defrosting Benefits
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Hot Fluoride Defrosting Benefits
- Ultra-Short Defrost Cycles: Completes defrosting in just minutes, far faster than electric defrosting.
- Minimal Temperature Fluctuation: Keeps temperature variation within a narrow range, unaffected food freshness.
- Lower Operating Costs: High utilization rate makes the process significantly more energy-efficient than electric alternatives.
- Reduced Maintenance Needs: Stable, reliable technology eliminates the need for frequent part replacements.
Hot Fluorine Ice-Melting Features
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Precision Ice Removal Preheats before defrosting to prevent ice scraping damage to the evaporator.
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Significant Energy Savings Uses high-efficiency thermal energy to reduce power consumption substantially.
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Automatic Operation Starts automatically under harsh conditions, preventing shutdowns due to ice buildup.
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Enhanced Operational Safety Uses high-temperature exhaust to melt ice safely, even in unstable power supply scenarios.
Application Fields
Precise Temperature Control in a Wide Range
It enables precise temperature control with a tolerance of +0.5°C within the range from -20°C to 40°C, intelligently controlled by Al-driven frequency conversion, reducing hassle while saving more costs.
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Pharmaceutical & Chemical Precision Temperature Control
Pharmaceutical & Chemical Precision Temperature Control
- Precision Temperature Controlwith a Tolerance of ±0.5°C
- Storage Temperature FluctuationBelow 3°C
- Equipment Redundancy Backup
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Cold Chain Warehousing Zoned Temperature Control
Cold Chain Warehousing Zoned Temperature Control
- Multi-Temperature Zone ZonedTemperature Control Management
- Frequency Conversion Temperature Control ls More Cost-Effective
- Unified After-Sales Service with Prompt Response
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Food Processing Constant Temperature Storage
Food Processing Constant Temperature Storage
- Capable of Meeting Rapid Freezingand Refrigeration Needs
- Capable of Meeting 24-Hour Long-Term Operation Requirements
- Al-Driven Frequency ConversionFulfills Constant Temperature Requirements
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Hypermarket Smart Temperature Control
Hypermarket Smart Temperature Control
- Unified Customized Solutions witha High Level of Standardization
- Small Footprint & Low Noise Level
- Easy Operation & Easy Maintenance
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Melons & Fruits Precision Temperature Raising for Ripening
Melons & Fruits Precision Temperature Raising for Ripening
- Rapid Precooling Extends Shelf LifeMeets the Demands of Seasonal
- Fluctuations While Ensuring Sufficient Cooling Capacity
- Frequency Conversion Ripeningwith Precise Temperature Control
Brand Strength
EXTRCOOL specializes in the research, development and manufacturing of professional refrigeration equipment. With standardized production base, complete international certifications and professional R&D capability, the brand adheres to strict quality standards. It provides stable, energy-saving and reliable refrigeration equipment and one-stop overall solutions for global customers, with rich practical engineering experience and perfect after-sales support system.
Air Cooled Cold Room Evaporator Specification
| Product Parameter Table | |||||||
| Outdoor Unit Model | EXT120C | EXT120CT | EXT160CT | EXT200CT | EXT230CT | ||
| Power Supply Specification | 220V/~50Hz | 380V/3N~50Hz | 380V/3N~50Hz | 380V/3N~50Hz | 380V/3N~50Hz | ||
| Nominal Cooling Capacity | kW | 12.00 | 12.00 | 16.00 | 19.70 | 23.80 | |
| Nominal Input Power | kW | 4.61 | 4.61 | 6.18 | 7.82 | 9.33 | |
| Nominal Cooling COP | kW/kW | 2.60 | 2.60 | 2.59 | 2.52 | 2.55 | |
| Max. Input Power | A | 7.00 | 7.00 | 9.00 | 10.50 | 13.00 | |
| Max. Input Current | A | 31.80 | 11.80 | 15.20 | 17.70 | 22.00 | |
| Outdoor Unit Noise | dB(A) | 57 | 57 | 59 | 60 | 61 | |
| Refrigerant | / | R410A | R410A | R410A | R410A | R410A | |
| Waterproof Rating | / | IPX4 | IPX4 | IPX4 | IPX4 | IPX4 | |
| Dimensions | Length × Width × Height | mm | 1110×454×940 | 1110×454×940 | 1110×454×940 | 1010×450×1266 | 1135×454×1440 |
| Net Weight | Outdoor Unit | kg | 86 | 84 | 90 | 95 | 125 |
| Connecting Pipe | Liquid Pipe / Gas Pipe | mm | 9.52/15.88 | 9.52/15.88 | 9.52/15.88 | 9.52/15.88 | 9.52/19.05 |
| Compressor | Type | / | EVI DC Inverter Dual‑rotor Type | EVI DC Inverter Dual‑rotor Type | EVI DC Inverter Dual‑rotor Type | EVI DC Inverter Dual‑rotor Type | EVI DC Inverter Dual‑rotor Type |
| Brand | / | GMCC | GMCC | GMCC | GMCC | GMCC | |
| Quantity | Unit | 1 | 1 | 1 | 1 | 1 | |
| Fan | Type | / | DC Inverter Fan | DC Inverter Fan | DC Inverter Fan | DC Inverter Fan | DC Inverter Fan |
| Brand | / | Welling | Welling | Welling | Welling | Welling | |
| Quantity | Piece | 1 | 1 | 1 | 2 | 2 | |
| Throttling Method | / | EEV/EVI Dual Electronic Expansion Valve | EEV/EVI Dual Electronic Expansion Valve | EEV/EVI Dual Electronic Expansion Valve | EEV/EVI Dual Electronic Expansion Valve | EEV/EVI Dual Electronic Expansion Valve | |
| Indoor Air Cooler | |||||||
| Indoor Unit Model | EXT120C | EXT120CT | EXT160CT | EXT200CT | EXT230CT | ||
| Power Supply Specification | 220V/~50Hz | 220V/~50Hz | 220V/~50Hz | 220V/~50Hz | 220V/~50Hz | ||
| Indoor Fan | Type | / | External Rotor Axial Flow Fan | External Rotor Axial Flow Fan | External Rotor Axial Flow Fan | External Rotor Axial Flow Fan | External Rotor Axial Flow Fan |
| Quantity | Piece | 2 | 2 | 2 | 2 | 3 | |
| Power Supply | / | 220V/~50Hz | 220V/~50Hz | 220V/~50Hz | 220V/~50Hz | 220V/~50Hz | |
| Power | W | 180*2 | 180*2 | 260*2 | 260*2 | 260*3 | |
| Air Volume | m³/h | 3000*2 | 3000*2 | 4500*2 | 4500*2 | 4500*3 | |
| Drip Tray Defrost Heating Method | / | Hot Gas Defrost Heating | Hot Gas Defrost Heating | Hot Gas Defrost Heating | Hot Gas Defrost Heating | Hot Gas Defrost Heating | |
| Condensate Drain Anti-freeze Heating | W | 100 | 100 | 100 | 100 | 100 | |
| Storage Temperature Range | / | -20℃~40℃ | -20℃~40℃ | -20℃~40℃ | -20℃~40℃ | -20℃~40℃ | |
| Evaporating Temperature Range | / | -30℃~15℃ | -30℃~15℃ | -30℃~15℃ | -30℃~15℃ | -30℃~15℃ | |
| Protection Class | / | IPX4 | IPX4 | IPX4 | IPX4 | IPX4 | |
| Dimensions | Length × Width × Height | mm | 1357x395x720 | 1357x395x720 | 1357x395x720 | 1357x395x720 | 1357x395x720 |
| Net Weight | Outdoor Unit | kg | 49 | 49 | 55 | 55 | 76 |
| Connecting Pipe | Liquid Pipe / Gas Pipe | mm | 9.52/15.88 | 9.52/15.88 | 9.52/15.88 | 9.52/15.88 | 9.52/19.05 |
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Outdoor Ambient Temperature 32℃ |
Cooling Capacity at 27℃ Chamber Temperature | kW | 19.0 | 19.0 | 25.0 | 28.0 | 35.0 |
| Cooling Capacity at 20℃ Chamber Temperature | kW | 16.0 | 16.0 | 20.8 | 26.5 | 33.0 | |
| Cooling Capacity at 15℃ Chamber Temperature | kW | 14.0 | 14.0 | 19.5 | 25.3 | 31.5 | |
| Cooling Capacity at 10℃ Chamber Temperature | kW | 13.4 | 13.4 | 18.4 | 23.3 | 30.0 | |
| Cooling Capacity at 5℃ Chamber Temperature | kW | 12.6 | 12.6 | 17.5 | 20.8 | 26.2 | |
| Cooling Capacity at 0℃ Chamber Temperature (Nominal) | kW | 12.0 | 12.0 | 16.0 | 19.8 | 23.8 | |
| Cooling Capacity at -5℃ Chamber Temperature | kW | 10.5 | 10.5 | 13.5 | 16.2 | 19.6 | |
| Cooling Capacity at -10℃ Chamber Temperature | kW | 8.8 | 8.8 | 12.3 | 14.4 | 17.4 | |
| Cooling Capacity at -15℃ Chamber Temperature | kW | 7.5 | 7.5 | 10.3 | 12.5 | 15.5 | |
| Cooling Capacity at -20℃ Chamber Temperature | kW | 6.7 | 6.7 | 9.4 | 11.3 | 13.6 | |
| Applicable Volume (0℃) | m³ | 90~130 | 90~130 | 120~220 | 200~310 | 300~400 | |
| Storage Tonnage (0℃) | m³ | 50~80 | 50~80 | 70~120 | 100~160 | 140~220 | |
| Applicable Volume (-20℃) | t | 20~30 | 20~30 | 25~40 | 35~55 | 50~80 | |
| Storage Tonnage (-20℃) | t | 10~16 | 10~16 | 15~20 | 20~30 | 25~40 | |
| Note: For frozen products entering the warehouse, the daily inbound and outbound volume is <15% of the designed storage capacity. The above unit selection reference will vary according to the customer's usage conditions, such as the thermal insulation performance of the enclosure structure, the effective working volume of the cold storage, the outdoor ambient temperature of the cold storage, the inbound volume of frozen and refrigerated items, the inbound temperature, the number of door openings and other parameters. This selection table is only for simple selection reference! Users should conduct detailed calculation and determination according to the specific usage conditions to avoid selection deviation. The company does not bear any responsibility for selection! | |||||||






