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Low Temperature Circulating Chiller LLTC-C14

Low Temperature Circulating Chiller LLTC-C14

Low Temperature Circulating Chiller LLTC-C14 offers a high-capacity circulation pump delivering up to 6.8 m³/h at 2 bar for optimal cooling. The controller ensures precise system regulation at all stages. Its high-efficiency compressor enhances cooling performance. It reduces energy consumption over long-term use. Our chiller is ideal for chemical processing, pharmaceutical manufacturing, biotechnology labs, medical testing, industrial cooling, and semiconductor systems.

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Temperature Range -45°C to 20°C
Temperature Control ±0.5°C
Circulation Pump Max 6.8m³/h 2 bar
Refrigerant R448A
Cooling Capacity at -20°C 28.1 kW
Cooling Capacity at -35°C 14.5 kW
Power 400V 50HZ / 460V 60HZ
  • Flexible Voltage Options
  • Efficient Heat Removal
  • Precision Engineered Cooling
  • Extended Operating Range
  • Heavy-Duty Pumping Capacity

Our Low Temperature Circulating Chiller is ideal for chemical processing, pharmaceutical manufacturing, biotechnology labs, medical testing, industrial cooling, semiconductor systems, laser cooling, research, food processing, aerospace, and battery testing.

Low Temperature Circulating Chiller LLTC-C14 | Temperature Control : ±0.5°C | Circulation Pump Max : 6.8m³/h 2 bar
Low Temperature Circulating Chiller LLTC-C14 | Flexible Voltage Options | Efficient Heat Removal

Models of Low Temperature Circulating Chillers

Labtron Low Temperature Circulating Chillers offer precise temperature control and reliable cooling for laboratory, industrial, and research applications. Their advanced refrigeration systems ensure consistent low-temperature circulation. These chillers feature high-quality components, intuitive controls, and durable construction for efficient thermal management. They operate reliably under varying load conditions, even in continuous or high-demand use. Our chillers are ideal for cooling rotary evaporators, distillation systems, and spectroscopy instruments.

Low Temperature Circulating Chiller LLTC-C12

Low Temperature Circulating Chiller LLTC-C12

  • Temperature Range : -45°C to 20°C
  • Temperature Control : ±0.5°C
  • Circulation Pump Max : 3.5m³/h 2 bar
  • Refrigerant : R448A
Low Temperature Circulating Chiller LLTC-E11

Low Temperature Circulating Chiller LLTC-E11

  • Temperature Range : -80°C to -50°C
  • Temperature Control : ±0.5°C
  • Circulation Pump Max : 3.4m³/h 2 bar
  • Refrigerant : R448A/R508B/R23
Low Temperature Circulating Chiller LLTC-E10

Low Temperature Circulating Chiller LLTC-E10

  • Temperature Range : -80°C to -50°C
  • Temperature Control : ±0.5°C
  • Circulation Pump Max : 2.3m³/h 2 bar
  • Refrigerant : R448A/R508B/R23
Low Temperature Circulating Chiller LLTC-E12
Low Temperature Circulating Chiller LLTC-E12
  • Temperature Range : -80°C to -50°C
  • Temperature Control : ±0.5°C
  • Circulation Pump Max : 4.6m³/h 2 bar
  • Refrigerant : R448A/R508B/R23
Low Temperature Circulating Chiller LLTC-F10
Low Temperature Circulating Chiller LLTC-F10
  • Temperature Range : -100°C to -65°C
  • Temperature Control : PLC controller, control outlet temperature, 7-inch touch screen
  • Circulation Pump Max : 20L/min 2 bar
  • Refrigerant : Mixed refrigerant 1
Low Temperature Circulating Chiller LLTC-C11

Low Temperature Circulating Chiller LLTC-C11

  • Temperature Range : -45°C to 20°C
  • Temperature Control : ±0.5°C
  • Circulation Pump Max : 2.4m³/h 2 bar
  • Refrigerant : R448A
Low Temperature Circulating Chiller LLTC-G11

Low Temperature Circulating Chiller LLTC-G11

  • Temperature Range : 5°C to 90°C
  • Temperature Control : PLC controller, control the water tank outlet temperature
  • Temperature Control Accuracy : ±0.3°C
  • Circulation Pump Max : 35L/min 2 bar
Low Temperature Circulating Chiller LLTC-B13

Low Temperature Circulating Chiller LLTC-B13

  • Temperature Range : -25°C to 30°C
  • Temperature Control : ±0.5°C
  • Circulation Pump Max : 6.7m³/h 2 bar
  • Refrigerant : R448A/R507C
Low Temperature Circulating Chiller LLTC-C14 FAQ's
  • A Low Temperature Circulating Chiller is used for precise temperature control in various applications, including chemical processing, pharmaceutical manufacturing, biotechnology labs, medical testing, and industrial cooling. It is ideal for maintaining consistent temperatures in sensitive processes. The chiller is commonly used in research environments where temperature accuracy is critical. It also supports applications such as semiconductor cooling, laser systems, and food processing, ensuring optimal performance and safety.

  • Absolutely, the Low Temperature Circulating Chiller is ideal for semiconductor systems where precise temperature control is crucial for performance and reliability. It helps maintain stable operating conditions, preventing overheating that could affect the performance of sensitive components. The chiller’s high-capacity circulation pump ensures efficient cooling, while its energy-saving design optimizes long-term use. This makes it a valuable tool for maintaining the integrity of semiconductor equipment in demanding applications.

  • Yes, the Low Temperature Circulating Chiller is specifically designed for laboratory applications, providing accurate temperature regulation for research and experiments. It is essential for maintaining controlled conditions in sensitive laboratory processes. The chiller ensures uniform cooling and precise temperature control, critical for achieving reliable experimental results. Its versatility makes it suitable for a wide range of laboratory applications, from chemical research to biological studies, ensuring optimal performance and safety in diverse research environments.

  • Industries such as chemical processing, pharmaceuticals, biotechnology, aerospace, medical testing, and semiconductor manufacturing all benefit from the chiller’s precise and efficient cooling performance. The chiller ensures temperature stability in critical processes, which is essential for maintaining product quality and safety. It is also valuable in industries like food processing and research, where consistent cooling is needed for both production and experimental applications. Additionally, its energy-efficient design helps reduce operational costs across these industries.

  • The chiller is primarily designed for indoor use, but it can be used in outdoor environments if proper protection from the elements is provided. This includes ensuring the chiller is shielded from rain, direct sunlight, and extreme temperatures. It is important to place the chiller in a well-ventilated area to ensure optimal performance. Additionally, external conditions like humidity and dust should be considered, as they may affect the chiller's efficiency and longevity if not adequately protected.

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Labtron Equipment Ltd., Quatro House, Lyon Way, Camberley, Surrey GU16 7ER United Kingdom

Email: info@labtron.com Whatsapp: +44 73 4441 2688 Phone: +44 2080 043608

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