Allicdata Part #: | 1487-1062-ND |
Manufacturer Part#: |
387001838 |
Price: | $ 14.15 |
Product Category: | Fans, Thermal Management |
Manufacturer: | Laird Technologies - Engineered Thermal Solutions |
Short Description: | ET6,7,F2,3030,TA,RT,W6 |
More Detail: | Peltier Module 34.00mm x 30.00mm x 3.81mm 29.8W @ ... |
DataSheet: | 387001838 Datasheet/PDF |
Quantity: | 16 |
1 +: | $ 12.85830 |
10 +: | $ 11.77850 |
25 +: | $ 11.34760 |
Series: | ET |
Part Status: | Active |
Outline L x W x H: | 34.00mm x 30.00mm x 3.81mm |
Qmax @ Th: | 29.8W @ 25°C |
Delta Tmax @ Th: | 67°C @ 25°C |
Current - Max: | 6.0A |
Voltage - Max: | 8.5V |
Resistance: | 1.19 Ohms |
Operating Temperature: | -- |
Features: | Lead Wires, Lapped, Sealed |
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Thermoelectric modules, such as the non-regenerative 387001838, are often considered a modern marvel in the field of thermoelectricity. A thermoelectric module is a device that converts temperature differential to electrical energy. The 387001838 module is one such module — it works by converting any temperature differences from one side of the device to the other and then utilizes electric current to transfer the heat between the two sides. The module is typically equipped with a cooling fan to ensure that the temperature differences are maintained at an optimal level.
The 387001838 thermoelectric module works by harnessing the Seebeck Effect. This effect occurs when two dissimilar metals are placed in contact and a temperature difference between the two metals exists. This temperature difference creates a thermal gradient and a thermoelectric potential. This thermoelectric potential is what causes electrons to flow from one metal to the other and generate electrical current.
The 387001838 module utilizes this principle to create an efficient thermoelectric cooling system. It uses two dissimilar semi-conductors— n-type and p-type—and creates a thermal gradient with them. When a current is passed through the two semi-conductors, electrons flow from the n-type to the p-type, and vice-versa. This creates a thermoelectric potential, which is in turn used to drive the heat from one side of the device to the other. This causes the two sides to become cooler, and thus the heat is effectively transferred.
The 387001838 thermoelectric module is often used in a variety of applications including electronics cooling, medical equipment cooling, and for creating power from temperature differences. It is a highly efficient device that requires minimal maintenance, and is very reliable. Its wide range of applications, combined with its small size and low power consumption, make it an ideal choice for many applications.
In conclusion, the 387001838 thermoelectric module can be a great asset for many technological needs. It utilizes the Seebeck Effect to convert temperature differences into electric energy, and has a variety of applications. It is also very reliable and requires minimal maintenance, thus making it a popular choice for many applications. If you are considering a thermoelectric device, the 387001838 thermoelectric module should be strongly considered.
The specific data is subject to PDF, and the above content is for reference
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387001789 | Laird Techno... | 12.54 $ | 14 | ET4,3,F1,2020,TA,RT,W6Pel... |
387001794 | Laird Techno... | 12.54 $ | 15 | ET5,6,F1,2040,TA,RT,W6Pel... |
387001742 | Laird Techno... | 12.73 $ | 20 | ET4,7,F1,2323,TA,RT,W4.5P... |
387001765 | Laird Techno... | 12.85 $ | 20 | ET3,12,F2,3030,TA,RT,W6Pe... |
387001766 | Laird Techno... | 12.97 $ | 20 | ET4,12,F2,3030,TA,RT,W6Pe... |
387001793 | Laird Techno... | 12.97 $ | 20 | ET4,7,F2,3030,TA,RT,W6Pel... |
387001790 | Laird Techno... | 13.47 $ | 20 | ET4,6,F2,2138,TA,RT,W6Pel... |
387001740 | Laird Techno... | 13.66 $ | 20 | ET4,12,F1,3030,TA,RT,W4.5... |
387001840 | Laird Techno... | 13.71 $ | 20 | ET8,7,F2,3030,TA,RT,W6Pel... |
387001838 | Laird Techno... | 14.15 $ | 16 | ET6,7,F2,3030,TA,RT,W6Pel... |
387001795 | Laird Techno... | 14.27 $ | 23 | ET6,12,F1,3030,TA,RT,W6Pe... |
387001745 | Laird Techno... | 14.46 $ | 20 | ET14,3,F1,3030,TA,RT,W6Pe... |
387001746 | Laird Techno... | 14.83 $ | 20 | ET2,12,F2,3030,TA,RT,W6Pe... |
387001741 | Laird Techno... | 15.63 $ | 20 | ET2.5,12,F1,3030,TA,RT,W4... |
387001842 | Laird Techno... | 15.73 $ | 20 | ET9,31,F1,3030,TA,RT,W6Pe... |
387001835 | Laird Techno... | 16.44 $ | 13 | ET6,12,F1,4040,TA,RT,W6Pe... |
387001841 | Laird Techno... | 17.48 $ | 20 | ET9,3,F2,2525,TA,RT,W6Pel... |
387001816 | Laird Techno... | 17.48 $ | 7 | ET15,65,F2A,1312,11,W2.25... |
387001768 | Laird Techno... | 17.67 $ | 14 | ET4,12,F2,4040,TA,RT,W6Pe... |
387001815 | Laird Techno... | 17.97 $ | 15 | ET15,31,F2A,0909,11,W2.25... |
387001839 | Laird Techno... | 19.38 $ | 40 | ET7,16,F1,4040,TA,RT,W6Pe... |
387002317 | Laird Techno... | 23.97 $ | 40 | ET6,19,F1,4040,TA,RT,W6Pe... |
387001827 | Laird Techno... | 28.34 $ | 8 | ET15,24,F2,5252,TA,RT,W6P... |
387001814 | Laird Techno... | 37.11 $ | 20 | THERMOELECTPeltier Module |
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387001826 | Laird Techno... | 39.21 $ | 11 | ET8,28,F2,5252,TA,RT,W6Pe... |
387001820 | Laird Techno... | 43.38 $ | 7 | ET-MS2,010,06,06,11,11,11... |
387001821 | Laird Techno... | 48.36 $ | 10 | ET-MS2,024,06,06,11,11,11... |
387001712 | Laird Techno... | 59.72 $ | 10 | ET-MS2,192,14,20,11,18,11... |
387000573 | Laird Techno... | 19.44 $ | 1000 | CP2,31,10,L1,W8 TEFLON LE... |
387002329 | Laird Techno... | 10.23 $ | 19 | ET4,3,F1,1515,TA,RT,W4.5P... |
387001748 | Laird Techno... | 10.92 $ | 20 | ET2.6,6,F1,1225,TA,RT,W6P... |
387001836 | Laird Techno... | 11.6 $ | 20 | ET7,3,F1,2020,TA,RT,W4.5P... |
387001764 | Laird Techno... | 11.6 $ | 20 | ET2,6,F1,1225,TA,RT,W6Pel... |
387001837 | Laird Techno... | 12.04 $ | 25 | ET6,3,F1,2020,TA,RT,W6Pel... |
387001747 | Laird Techno... | 14.33 $ | 1000 | ET2.3,49,F1,1919,TA,RT,W6... |
387001823 | Laird Techno... | 16.93 $ | 2 | ET8,12,F2,2525,TA,RT,W6Pe... |
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