Product Catalog
- TEC/Peltier Controllers
- Laser Drivers
- TEC Modules
- Thermistors
- TEG
- Heat Sink
- Temperature Plate Assembly
- Thermal Conductive Material
- SMT/SMD Resistor Kits
- SMT/SMD Capacitor Kits
- SMT/SMD Inductor Kits
- Empty Enclosure
- Adjustable Decade Boxes
- LED Related Products
- Noise Measurement Amplifier
- High Voltage Power Supply
- Household Earthquake Alarm
- + More Products
- Videos
Contact Us
Analog Technologies, Inc.
2352 Walsh Ave.
Santa Clara, CA 95051
U. S. A
Tel.: 408-748-9100
Fax: 408-748-9111
New Website: www.analogti.com
Online Store: www.smtzone.com
Characteristic analysis of TEC refrigeration cycle (I)
Time : 2015-04-24 09:50Source :analogtechnologies Author : Analog Click :
When thermoelectric module is in the cooling mode, the heat of cooled device transfers into the cold end of TEC and then based on thermoelectric effect, the heat is dissipated by the heat sink. According to the first law of thermodynamics, the cooling capacity is equal to the Peltire effect with heat conduction from the heat flow analysis of the single couple of TEC cold end:
Where, qc is heat flow, αP, N =αP-αN; the first item of (1) right side is Peltire effect; the second is heat conduction, and due to the X direction of figure 1, its value is negative. From (1) and (2), the general expression of cooling capacity can be obtained:
Similarly, the general expression of the heat dissipation capacity of the hot end is:
From (3) and (4), it shows that the cooling effet of TEC consists of three effects, namely, Fourier effect, Peltire effect and Joule effect. Peltre effect αP, NT can make TEC endothermic in the cold end and exothermic in the hot end. Hot and cold end temperature difference of TEC can result in Fourier effectK(Th -Tc )and Joule effect I2R/2. However, it can’t be considered that the half of heat generated by Joule effect transfers to the cold end and the other half transfers to the hot side. For example, the dimensionless parameterζis introduced for (3) and (4), the followingformula can be obtained:
Whenζ=1,qc =IαP ,NTc+IR, qh =IαP, NTh. At this point, the whole Joule heat will transfer to the cold end and there is only Peltier effect in the hot end. Because of the existence of Seebeck, the voltage, input power andrefrigeration coefficient of a couple respectively are:


Fig.1 Schematic of single thermocouple
Where, qc is heat flow, αP, N =αP-αN; the first item of (1) right side is Peltire effect; the second is heat conduction, and due to the X direction of figure 1, its value is negative. From (1) and (2), the general expression of cooling capacity can be obtained:





The left characteristic analysis of TEC refrigeration cycle will be introduced in the next article.
If you want to know more, please feel free to contact us.
Our web site is http://www.analogtechnologies.com/
Our web site is http://www.analogtechnologies.com/
Hot news
- How to use the NTC
- Application Status of Semiconductor Lasers
- Functions of Capacitor Kits
- Reliability of thermoelectric cooler
- The Principle of NTC Thermistor
- The Features of Laser Drivers
- Heat Sink in Thermoelectric Cooling System
- The Definition of Low Niose Amplifier
- Resistor/capacitor/inductor kits
- Analysis of LED Market Prospects