Peltier Device

■Uni Thermo Devices of Taisei
Taisei Co., Ltd. succeeded in the development of the new generation type electronic cooling element, Unisamo, which improved the cooling capacity by up to 25% of the conventional Peltier element!

By utilizing our own precision technology, we realized high reliability and high stability that resistance anomalies are not seen even if it surpassed 478,000 cycles.


Peltier DeviceThermo Electric Peltier Controller

Peltier Device

▼ Uni-Thermo Device 70series

Uni-Thermo Device 7070CE Uni-Thermo Device 7070CE
Max. Current : 7.5A
Max. V. : 30.0V ( D.C. )
Max. Temperature Gap : 75.0 °C ( typ. )
Max. Endothermic Quantity : 140.0 W ( typ. )
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Uni-Thermo Device 7070AL Uni-Thermo Device 7070AL
Max. Current : 7.5A
Max. V. : 30.0V ( D.C. )
Max. Temperature Gap : 72.0 °C ( typ. )
Max. Endothermic Quantity : 132.0 W ( typ. )
PDF

Uni-Thermo Device 7070KA Uni-Thermo Device 7070KA
Max. Current : 7.5A
Max. V. : 30.0V ( D.C. )
Max. Temperature Gap : 74.0 °C ( typ. )
Max. Endothermic Quantity : 125.0 W ( typ. )
PDF

▼ Uni-Thermo Device 40series

Uni-Thermo Device 4040CE Uni-Thermo Device 4040CE
Max. Current : 7.0A
Max. V. : 19.0V ( D.C. )
Max. Temperature Gap : 75.0 °C ( typ. )
Max. Endothermic Quantity : 64.0 W ( typ. )
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Uni-Thermo Device 4040AL Uni-Thermo Device 4040AL
Max. Current : 7.0A
Max. V. : 19.0V ( D.C. )
Max. Temperature Gap : 72.0 °C ( typ. )
Max. Endothermic Quantity : 62.0 W ( typ. )
PDF

Uni-Thermo Device 4040KA Uni-Thermo Device 4040KA
Max. Current : 7.0A
Max. V. : 19.0V ( D.C. )
Max. Temperature Gap : 74.0 °C ( typ. )
Max. Endothermic Quantity : 59.0 W ( typ. )
40 Capton Peltier Module Reliability Test Result [ PDF ]
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▼ Uni-Thermo Device 30series

Uni-Thermo Device 3030CE Uni-Thermo Device 3030CE
Max. Current : 3.5A
Max. V. : 15.0V ( D.C. )
Max. Temperature Gap : 75.0 °C ( typ. )
Max. Endothermic Quantity : 27.0 W ( typ. )
PDF

Uni-Thermo Device 3030AL Uni-Thermo Device 3030AL
Max. Current : 3.5A
Max. V. : 15.0V ( D.C. )
Max. Temperature Gap : 72.0 °C ( typ. )
Max. Endothermic Quantity : 25.0 W ( typ. )
PDF

Uni-Thermo Device 3030KA Uni-Thermo Device 3030KA
Max. Current : 3.5A
Max. V. : 15.0V ( D.C. )
Max. Temperature Gap : 72.0 °C ( typ. )
Max. Endothermic Quantity : 25.0 W ( typ. )
PDF

▼ Uni-Thermo Device 20series

Uni-Thermo Device 2020CE Uni-Thermo Device 2020CE
Max. Current : 3.2A
Max. V. : 6.2V ( D.C. )
Max. Temperature Gap : 70.0 °C ( typ. )
Max. Endothermic Quantity : 13.0 W ( typ. )
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Uni-Thermo Device 2020AL Uni-Thermo Device 2020AL
Max. Current : 3.2A
Max. V. : 6.2V ( D.C. )
Max. Temperature Gap : 67.0 °C ( typ. )
Max. Endothermic Quantity : 13.0 W ( typ. )
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Uni-Thermo Device 2020KA Uni-Thermo Device 2020KA
Max. Current : 3.2A
Max. V. : 6.2V ( D.C. )
Max. Temperature Gap : 67.0 °C ( typ. )
Max. Endothermic Quantity : 13.0 W ( typ. )
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Thermo Electric Peltier Controller

Thermo Electric Peltier Controller TA-20 Model TA-20
Temperature Control Range : -20 ~ +110 °C
The method of Temperature and parameters are very simple and easy.
Input Volt : DC5 V
External Dimension : W100 x D65 x H35 mm
Output Current : 5 A max.
Temperature Control : ±1°C
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Thermo Electric Peltier Controller TA-30 Model TA-30
Temperature Control Range : -20 ~ +110 °C
The method of Temperature and parameters are very simple and easy.
Input Volt : DC8 ~ 12 V
External Dimension : W100 x D65 x H35 mm
Output Current : 5 A max.
Temperature Control : ±1°C
PDF

Thermo Electric Peltier Controller TA-151 Model TA-151
Temperature Control Range : -80 ~ +150 °C
The method of Temperature and parameters are very simple and easy.
Input Volt : DC8 ~ 24 V
External Dimension : W120 x D100 x H44 mm
Output Current : 8 A max.
Temperature Control : ±0.1°C
PDF

Thermo Electric Peltier Controller TA-PB-1 Model TA-PB-2
Temperature Control Range : -100 ~ +150 °C
The method of Temperature and parameters are very simple and easy.
Input Volt : DC1 ~ 50 V
External Dimension : W178 x D93(D110*) x
H44.5 mm (*: When connectors are installed,
excluding jumpers)
Output Current : 12 A max.
Temperature Control : ±0.1°C
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Catalog of the Peltier Device [ PDF ]