DAC-035-12-02
MFG Part Number DAC035-12-02-00-00
Cascade Series Thermoelectric Cooler Assembly
The DAC-035-12-02 is a thermoelectric cooler assembly that offers dependable, compact performance by cooling objects via convection or conduction. Heat is absorbed and dissipated thru high density heat exchangers equipped with air ducted shrouds and brand name fans. The heat pumping action is created by thermoelectric modules that are custom designed multistage cascades to achieve a high temperature differential. Custom configurations are available, however MOQ applies. This product can produce up to 40% more cooling capacity at cold temperatures, surpassing standard product offerings with similar form factors.
Features
  • High heat pumping capacity at cold temperatures
  • Precise temperature control
  • Reliable solid-state operation
  • Compact design

You can interact with the Performance Curves below to estimate the cooling performance by entering the thermal and electrical operating conditions for your application.
Click the [Custom Datasheet] button to create a Customized PDF Datasheet.
Please Note: Actual application performance will vary from calculated values based on actual thermal design characteristics.





Electrical and Thermal Performance

Use the sliders, input fields and [UPDATE] button below to enter your application's electrical and thermal conditions. Use the Graph Y and X Axis buttons to display a variety of performance curves and use the Voltage/Current slider to choose the electrical operating point to display performance.
Click [Custom Datasheet] button to save your results as a Customized PDF Datasheet.


Select Graph
Y - Axis




Select Graph
X - Axis




Optimum COP
Cooling Power (Qc) = 6.56 Watts
TEM Voltage = 3.44 Volts
TEM Current = 0.91 Amps
TEM COP = 2.09
Power Supply = 3.1 Watts
Power Dissipated (Qh) = 9.7 Watts
Fan Voltage = 12.0 Volts
Fan Current = 0.7 Amps
Maximum Qc
Cooling Power (Qc) = 30.02 Watts
TEM Voltage = 14.10 Volts
TEM Current = 3.87 Amps
TEM COP = 0.55
Power Supply = 54.6 Watts
Power Dissipated (Qh) = 84.6 Watts
Fan Voltage = 12.0 Volts
Fan Current = 0.7 Amps

Electrical Operating Point
Imin: 0.4 A
Imax: 3.9 A

Vmin: 2.0 V
Vmax: 14.1 V
TEC Voltage

TEC Current
Cooling Power (Qc)

Power Supply (Pin)

TEC COP (Qc/Pin)

Power Dissipated (Qh)

Fan Voltage

Fan Current

Thermal Operating Conditions
 Cooling 
 Heating  
Ambient High Temperature
Control Temperature
Ambient Low Temperature
Cooling ΔT
Heating ΔT
Click to UPDATE performance after changing thermal operating conditions or switching between heating and cooling mode.

Specifications
Heat Transfer Mechanism, Cold Side
Direct - Conduction
Heat Transfer Mechanism, Hot Side
Air - Forced Convection
Operating Temperature Range
-10°C to 54°C
Supply Voltage
12.0 VDC nominal / 14.0 VDC maximum
Current Draw
4.8 A running / 5.5 A startup
Power Supply
58.0 Watts
Performance Tolerance
10%
Hi-Pot Testing
No Testing
Fan MTBF
50000 hours
Over-Temp Thermostat (Hot and Cold Side Heat Sink)
75°C ±5°C (hot side heat sink)
Weight
1.20 kg
Panel Mounting
Flush Mount

Mounting Hole Location
Wiring Schematic

Notes
1For indoor use only
2Units are generally maintenance free, however occasionally it is recommended to clean the heat sinks and fans of debris. This is best done with compressed air.

Any information furnished by Laird and its agents, whether in specifications, data sheets, product catalogues or otherwise, is believed to be (but is not warranted as being) accurate and reliable, is provided for information only and does not form part of any contract with Laird. All specifications are subject to change without notice. Laird assumes no responsibility and disclaims all liability for losses or damages resulting from use of or reliance on this information. All Laird products are sold subject to the Laird Terms and Conditions of sale (including Laird’s limited warranty) in effect from time to time, a copy of which will be furnished upon request.

© Copyright 2019-2024 Laird Thermal Systems, Inc. All rights reserved. Laird™, the Laird Ring Logo, and Laird Thermal Systems™ are trademarks or registered trademarks of Laird Limited or its subsidiaries.

Revision: 00 Date: 06-01-2022

Print Date: 12-03-2024