MFG Part Number 385901-002
NRC400-T0-00-PC2
Nextreme™ NRC400 Performance Chiller
The Nextreme NRC400 is a next generation benchtop recirculating chiller using solid-state thermoelectric technology for precise temperature control of analytical and industrial equipment. It offers high heat pumping capacity for its size, improved temperature stability and lower noise operation than previous models. Utilizing custom thermoelectric coolers with premium thermoelectric materials, it delivers a higher coefficient of performance (COP). The NRC400 is a semi-closed system with a large reservoir tank requiring less refilling. It is equipped with a high-quality pump offering high MTBF with low pulsation to accommodate highly sensitive imaging and test instruments. This model comes with an option to increase chiller performance using Boost Mode. With the Boost Mode ON, the fans run at a higher speed which increases the unit's performance to the maximum cooling capacity. Users can easily control temperature setpoints and alarm settings via the high-res LCD touchscreen display. Custom configurations are available, however, MOQ applies.
Features
- Reliable Performance
- Environmentally Friendly
- User-Friendly
- Application Specific Configurations

技术指标
性能
Maximum Cooling Capacity2
348 W Boost Mode OFF, 400 W Boost Mode ON
Setpoint Range
-5°C to 40°C
Temperature Stability
±0.05°C
运行
冷却液
Water or Water/Glycol
运行温度
15°C to 40°C
储存温度范围(不含冷却液)
0°C to 50°C
湿度范围
35% to 85%
储存湿度范围
5% to 95%, non-condensing
输入电压
100 - 230 VAC
频率
50/60 Hz
电流
< 4.85 A
最大正向压力
0.88 巴
兼容性
ANSI / UL / CSA / IEC EN 61010-1 Edition 3
物理尺寸
高度
400 mm
长度
413 mm
宽度
274 mm
重量
24 kg
冷却液容量
1 Liters
耦合
Refer to the NRC400 user manual for guidance (page 21)
Cord Options
All compliance testing and validation has been done with these specific cord models.
Power cord is not supplied with the unit and must be ordered separately.
MFG Part Number
Plug Type
Standard
Style
Cable
Length
Length
Conductor
Cross-Section
Cross-Section
Color
Connector
Order
387009619
Australia
AS 3112
straight
2.0 m
3 x 1.5 mm²
Black
C13
387009620
Europlug
CEE 7 / VII
straight
2.0 m
3 x 1.5 mm²
Black
C13
387009621
China
GB 2099
straight
2.0 m
3 x 1.5 mm²
Black
C13
387009622
Japan
JIS 8303
straight
2.0 m
3 x 2 mm²
Black
C13
387009623
United Kingdom
BS 1363
straight
2.0 m
3 x 1.5 mm²
Black
C13
387009624
United States
NEMA 5-15P
straight
2.0 m
3 x 2 mm²
Black
C13
Liquid Interface

Cooling Power Operating Points1
Select Graph
100% Water (20°C Ambient Air)
Cooling Power (Qc) = 348 Watts
Boost Mode (Qc) = 400 Watts
Fluid Setpoint = 20 °C
Fluid ΔT @ 1.0 L/min = 5.0 °C
Boost Mode Fluid ΔT @ 1.0 L/min = 6.0 °C
Cooling Power (Qc) = 348 Watts
Boost Mode (Qc) = 400 Watts
Fluid Setpoint = 20 °C
Fluid ΔT @ 1.0 L/min = 5.0 °C
Boost Mode Fluid ΔT @ 1.0 L/min = 6.0 °C
100% Water (30°C Ambient Air)
Cooling Power (Qc) = 205 Watts
Boost Mode (Qc) = 266 Watts
Fluid Setpoint = 20 °C
Fluid ΔT @ 1.0 L/min = 3.0 °C
Boost Mode Fluid ΔT @ 1.0 L/min = 3.8 °C
Cooling Power (Qc) = 205 Watts
Boost Mode (Qc) = 266 Watts
Fluid Setpoint = 20 °C
Fluid ΔT @ 1.0 L/min = 3.0 °C
Boost Mode Fluid ΔT @ 1.0 L/min = 3.8 °C
70/30 Water-Glycol (20°C Ambient Air)
Cooling Power (Qc) = 317 Watts
Boost Mode (Qc) = 388 Watts
Fluid Setpoint = 20 °C
Fluid ΔT @ 1.0 L/min = 4.8 °C
Boost Mode Fluid ΔT @ 1.0 L/min = 5.9 °C
Cooling Power (Qc) = 317 Watts
Boost Mode (Qc) = 388 Watts
Fluid Setpoint = 20 °C
Fluid ΔT @ 1.0 L/min = 4.8 °C
Boost Mode Fluid ΔT @ 1.0 L/min = 5.9 °C
70/30 Water-Glycol (30°C Ambient Air)
Cooling Power (Qc) = 200 Watts
Boost Mode (Qc) = 258 Watts
Fluid Setpoint = 20 °C
Fluid ΔT @ 1.0 L/min = 3.0 °C
Boost Mode ΔT = 3.9 °C
Cooling Power (Qc) = 200 Watts
Boost Mode (Qc) = 258 Watts
Fluid Setpoint = 20 °C
Fluid ΔT @ 1.0 L/min = 3.0 °C
Boost Mode ΔT = 3.9 °C
Notes
- Performance curve deviation is within +/-5%
- Maximum Cooling Capacity rated at 20°C Ambient Air and 20°C Fluid Temperature w/ Boost Mode On
- Use water as coolant for control temperatures above 10°C
- To prevent freezing, use coolant with up to 30% glycol below 10°C
- For alternate coolants please contact Laird Thermal Systems
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Revision: 02 Date: 03-21-2025
Print Date: 05-06-2025