PowerCycling PCX Series PCX4-12-F1-3030-TA-W6
MFG Part Number: 387005671
The PCX4-12-F1-3030-TA-W6 is a high-performance thermoelectric
cooler designed for thermal cycling between multiple temperature set
points and is ideal for applications in healthcare among others, where fast
temperature changes are required. The thermoelectric module is specially
constructed to reduce the amount of stress induced on the thermoelectric
elements during operation. It has a maximum Qc of 34.7 Watts when ΔT
= 0 and a maximum ΔT of 73.6 °C at Qc = 0.
PowerCycling PCX Series Thermoelectric Cooler
Features
High thermal cycling reliability
Precise temperature control
Solid-state operation
Boosted performance with next-gen
material
RoHS-compliant
Applications
Molecular Diagnostics (DNA Amplification, PCR)
Point of Care Testing Devices
Thermal Test Sockets
ELECTRICAL AND THERMAL PERFORMANCE
For maximum performance, be sure to orient the CONTROL side of the TEC against the application to be managed and the HEATSINK side against the heat sink or other heat
rejection method. The CONTROL side is always opposite the side with lead attachments. Lead attachment is a passive heat loss and less impactful if located on the side that attaches
to the heat exchanger.
0.00 0.50 1.00 1.50 2.00 2.50 3.00 3.50 4.00 4.50 5.00
Operating Current (Amps)
0.00
2.00
4.00
6.00
8.00
10.00
12.00
14.00
16.00
18.00
Operating Voltage (Volts)
Current vs Voltage (I vs V)
Thot = 27 °C
ΔT=0°C
ΔT=10°C
ΔT=20°C
ΔT=30°C
ΔT=40°C
ΔT=50°C
ΔT=60°C
0.00 0.50 1.00 1.50 2.00 2.50 3.00 3.50 4.00 4.50 5.00
Operating Current (Amps)
0.00
5.00
10.00
15.00
20.00
25.00
30.00
35.00
40.00
Qc (Watts)
Heat Pumped at Cold Side
Thot = 27 °C
ΔT=0°C
ΔT=10°C
ΔT=20°C
ΔT=30°C
ΔT=40°C
ΔT=50°C
ΔT=60°C
0.00 2.00 4.00 6.00 8.00 10.00 12.00 14.00 16.00 18.00
Operating Voltage (Volts)
0.00
5.00
10.00
15.00
20.00
25.00
30.00
35.00
40.00
Qc (Watts)
Heat Pumped at Cold Side
Thot = 27 °C
ΔT=0°C
ΔT=10°C
ΔT=20°C
ΔT=30°C
ΔT=40°C
ΔT=50°C
ΔT=60°C
PowerCycling PCX Series PCX4-12-F1-3030-TA-W6
MFG Part Number: 387005671
0.00 1.00 2.00 3.00 4.00 5.00
Operating Current (Amps)
0.00
1.00
2.00
3.00
4.00
5.00
6.00
COP
Coefficient of Performance (COP = Qc/Pin)
Thot = 27 °C
ΔT=0°C
ΔT=10°C
ΔT=20°C
ΔT=30°C
ΔT=40°C
ΔT=50°C
ΔT=60°C
0.00 2.00 4.00 6.00 8.00 10.00 12.00 14.00 16.00 18.00
Operating Voltage (Volts)
0.00
1.00
2.00
3.00
4.00
5.00
6.00
COP
Coefficient of Performance (COP = Qc/Pin)
Thot = 27 °C
ΔT=0°C
ΔT=10°C
ΔT=20°C
ΔT=30°C
ΔT=40°C
ΔT=50°C
ΔT=60°C
0.00 1.00 2.00 3.00 4.00 5.00
Operating Current (Amps)
0.00
20.00
40.00
60.00
80.00
100.00
120.00
Qh (Watts)
Total Heat Dissipated at Hot Side (Qh=Qc+Pin)
Thot = 27 °C
ΔT=0°C
ΔT=10°C
ΔT=20°C
ΔT=30°C
ΔT=40°C
ΔT=50°C
ΔT=60°C
0.00 2.00 4.00 6.00 8.00 10.00 12.00 14.00 16.00 18.00
Operating Voltage (Volts)
0.00
20.00
40.00
60.00
80.00
100.00
120.00
Qh (Watts)
Total Heat Dissipated at Hot Side (Qh=Qc+Pin)
Thot = 27 °C
ΔT=0°C
ΔT=10°C
ΔT=20°C
ΔT=30°C
ΔT=40°C
ΔT=50°C
ΔT=60°C
0.0 10.0 20.0 30.0 40.0 50.0 60.0 70.0 80.0
ΔT (°C)
0.00
5.00
10.00
15.00
20.00
25.00
30.00
35.00
Qc (Watts)
Heat Pumped at Cold Side (Qc)
Thot = 27 °C | Current = 3.4 Amps
0.0 10.0 20.0 30.0 40.0 50.0 60.0 70.0 80.0
ΔT (°C)
0.00
0.50
1.00
1.50
2.00
COP
Coefficient of Performance (COP = Qc/Pin)
Thot = 27 °C | Current = 3.4 Amps