- Series, Thermoelectric, Peltier Modules

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387001742
ET4,7,F1,2323,TA,RT,W4.5
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3.20mm
Square - 23.00mm L x 23.00mm W
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1
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NL1015T-01AC
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Lead Wires, Exterior Metallization (Both Sides)
85°C
4.6 V
1 A
2.46mm
Rectangular - 10.97mm L x 8.79mm W
2.6W @ 27°C
61°C @ 27°C
1
4.07 Ohms
XLT2423-31AC
TEM THERMOCYCLER 36.4X50.24X3MM
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125°C
7.7 V
19 A
3.05mm
Rectangular - 54.41mm L x 36.40mm W
95.0W @ 27°C
58°C @ 27°C
1
340 mOhms
FIT0797
ELECTRIC COOLER MODULE (12V 3A)
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Lead Wires
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15.5 V
3 A
4.50mm
Square - 40.00mm L x 40.00mm W
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1
3.6 Ohms
XLT2418-04AC
TEM THERMOCYCLER 40X39.57X2.34MM
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125°C
14.1 V
13.9 A
2.34mm
Rectangular - 44.70mm L x 40.01mm W
127.0W @ 27°C
56.5°C @ 27°C
1
830 mOhms
430705-505
PELTIER MODULE NO MARKINGS
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Lead Wires, Non-Sealed
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430874-501
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XLT2416-04AC
TEM THERMOCYCLER 25.4X25.4X3.8MM
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Lead Wires, Lapped, Sealed
125°C
3.6 V
14.7 A
3.81mm
Rectangular - 28.70mm L x 25.40mm W
33.9W @ 27°C
56°C @ 27°C
1
200 mOhms
NL1507-03AC
TEM14.33X11.28X2.43MM DIA4MM
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Lead Wires, Lapped
85°C
4.7 V
1.8 A
2.43mm
Rectangular - 14.33mm L x 11.28mm W
5.4W @ 27°C
64°C @ 27°C
1
2.3 Ohms
387001712
ET-MS2,192,14,20,11,18,11,W8
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8.28mm
Square - 40.00mm L x 40.00mm W
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1
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XLT2393-01LS
TEM THERMOCYCLER 40X38X2.41MM
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Lead Wires, Lapped, Sealed
125°C
21.4 V
13.4 A
2.62mm
Square - 40.00mm L x 40.00mm W
187.0W @ 27°C
58°C @ 27°C
1
1.33 Ohms
NL2064T-11AB
MULTISTAGE TEM 29.64X29.64X6.1MM
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Lead Wires, Exterior Metallization (Both Sides)
85°C
8.6 V
5.4 A
6.10mm
Square - 29.64mm L x 29.64mm W
10.4W @ 27°C
93°C @ 27°C
2
1.43 Ohms
105127085001
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3.33mm
Square - 40.00mm L x 40.00mm W
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1
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387001790
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Lead Wires, Lapped, Sealed
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7.6 V
3.9 A
3.81mm
Rectangular - 38.40mm L x 20.60mm W
16.7W @ 25°C
67°C @ 25°C
1
-
387001740
ET4,12,F1,3030,TA,RT,W4.5
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3.20mm
Square - 30.00mm L x 30.00mm W
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1
-
XLT2427-03AC
TEM THERMOCYCLER 16X72X2.67MM
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PCB Symbol, Footprint & 3D Model
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Lead Wires, Lapped
125°C
15.8 V
7.5 A
2.67mm
Rectangular - 76.68mm L x 16.76mm W
76.5W @ 27°C
53°C @ 27°C
1
1.66 Ohms
XLT3-8-01LS
TEM THERMOCYCLER 20X20X3.55MM
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PCB Symbol, Footprint & 3D Model
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Lead Wires, Lapped, Sealed
125°C
3.5 V
7.4 A
3.53mm
Rectangular - 24.43mm L x 20.00mm W
16.9W @ 27°C
64°C @ 27°C
1
400 mOhms
387001766
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3.20mm
Rectangular - 34.00mm L x 30.00mm W
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1
-
XLT2422-01LS
TEM THERMOCYCLER 30X30X3.33MM
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PCB Symbol, Footprint & 3D Model
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Lead Wires, Lapped, Sealed
125°C
14.7 V
3.7 A
3.33mm
Rectangular - 34.01mm L x 30.00mm W
36.0W @ 27°C
66°C @ 27°C
1
3.2 Ohms
MIKROE-3828
PELTIER ELEMENT TEC1-12706
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PCB Symbol, Footprint & 3D Model
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Lead Wires
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14.4 V
6.4 A
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50.0W @ 25°C
66°C @ 25°C
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1.98 Ohms

About Thermoelectric, Peltier Modules

Thermoelectric modules, also known as Peltier modules, are specialized devices that utilize the Peltier effect to facilitate thermal transfer. These modules consist of two ceramic substrates with a junction in between. When an electric current is passed through the junction, heat is generated on one side while being absorbed on the other side. To effectively manage the heat generated, it is recommended to use a heatsink on the hot side of the module. The heatsink helps dissipate the excess heat and maintain optimal operating temperatures. The characteristics of thermoelectric modules include: Qmax @ Th: This refers to the maximum amount of heat that can be transferred by the module when the temperature at the hot side (Th) is maintained within specified limits. Delta Tmax @ Th: It represents the maximum temperature difference that can be achieved between the hot side and the cold side of the module when the temperature at the hot side (Th) is maintained within specified limits. Current max: This indicates the maximum current that the module can handle without experiencing any adverse effects or performance degradation. Voltage max: It denotes the maximum voltage that can be applied to the module without causing any damage or compromising its functionality. Resistance: This parameter relates to the electrical resistance exhibited by the module, which affects the efficiency and performance of the device. Operating temperature: It specifies the temperature range within which the module can function reliably and maintain its desired performance characteristics. By considering these characteristics, engineers and designers can select the appropriate thermoelectric modules for their specific thermal management requirements. These modules find applications in various industries, including electronics, telecommunications, automotive, aerospace, and medical, where precise temperature control and thermal regulation are crucial.

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