COOLER EXPRESS Three Evaporator Cooling Unit (1CPU, 2GPUs Cooling) Total load 660W Test Report
^Appearance
^Inside
^Evaporative Temperature -50℃
^Test report of using CPU heat simulator
^Insert a core temp. sensor in middle of CPU heat simulator.
^Adaptor to change the power output of CPU heat simulator.
^We set the CPU heat simulator's voltage to 140V(Voltage drop 0.2=139.8V)Current 2.34A ( Formula for Watt: W = V(voltage)xA(current) ,139.8x 2.34 =327.1 W
^GPU1 heat simulator voltage set to 140V(Voltage drop 0.2=139.8V)Current 1.19A(,139.8x 1.19 =166.3 W
^GPU2 heat simulator voltage set to 140V current 1.19A.(,140x 1.19 =166.6 W
^Proceed load test.
CPU heat simulator runniing at 330.4W, Core Temp. = -10.9 ℃ Evap. Temp. -30.5 ℃
GPU1 heat simulator runniing at 166.3W, Core Temp. = -13.3 ℃ Evap. Temp. -22.1
GPU2 heat simulator runniing at 166.6W, Core Temp. = -14.5 ℃ Evap. Temp. -23.3
^Perform load test for 10 minutes
CPU heat simulator runniing at 331.8W, Core Temp. = -5.7 ℃ Evap. Temp. -29.3 ℃
GPU1 heat simulator runniing at 166.3W, Core Temp. = -11.6 ℃ Evap. Temp. -22.1℃
GPU2 heat simulator runniing at 166.6W, Core Temp. = -13.0 ℃ Evap. Temp. -24.3℃
^Perform load test for 20 minutes
CPU heat simulator runniing at 325.7W, Core Temp. = -5.1 ℃ Evap. Temp. -28.3 ℃
GPU1 heat simulator runniing at 166.3W, Core Temp. = -10.6 ℃ Evap. Temp. -23.1℃
GPU2 heat simulator runniing at 166.6W, Core Temp. = -12.3 ℃ Evap. Temp. -23.5℃
^Perform load test for 30 minutes
CPU heat simulator runniing at 326.6W, Core Temp. = -4.7 ℃ Evap. Temp. -28.1 ℃
GPU1 heat simulator runniing at 166.3W, Core Temp. = -10.2 ℃ Evap. Temp. -23.1℃
GPU2 heat simulator runniing at 166.6W, Core Temp. = -12.2 ℃ Evap. Temp. -23.5℃
^Perform load test for 40 minutes
CPU heat simulator runniing at 331.3W, Core Temp. = -4.3 ℃ Evap. Temp. -27.8 ℃
GPU1 heat simulator runniing at 166.3W, Core Temp. = -9.9℃ Evap. Temp. -23.0℃
GPU2 heat simulator runniing at 166.6W, Core Temp. = -11.7 ℃ Evap. Temp. -23.2℃
^Perform load test for 50 minutes
CPU heat simulator runniing at 326.4W, Core Temp. = -4.4 ℃ Evap. Temp. -27.8 ℃
GPU1 heat simulator runniing at 166.3W, Core Temp. = -10.7℃ Evap. Temp. -20.7℃
GPU2 heat simulator runniing at 166.6W, Core Temp. = -11.9 ℃ Evap. Temp. -23.1℃
^Perform load test for 60 minutes
CPU heat simulator runniing at 326.2W, Core Temp. = -4.1 ℃ Evap. Temp. -27.5 ℃
GPU1 heat simulator runniing at 166.3W, Core Temp. = -10.0℃ Evap. Temp. -23.5℃
GPU2 heat simulator runniing at 166.6W, Core Temp. = -11.6 ℃ Evap. Temp. -24.0℃
From the tests above we know that the Three Evaporator Cooling Unit can handle the heat of any CPU on the market, perfect for heavy overclockers.

^Appearance

^Inside

^Evaporative Temperature -50℃

^Test report of using CPU heat simulator

^Insert a core temp. sensor in middle of CPU heat simulator.

^Adaptor to change the power output of CPU heat simulator.
^We set the CPU heat simulator's voltage to 140V(Voltage drop 0.2=139.8V)Current 2.34A ( Formula for Watt: W = V(voltage)xA(current) ,139.8x 2.34 =327.1 W
^GPU1 heat simulator voltage set to 140V(Voltage drop 0.2=139.8V)Current 1.19A(,139.8x 1.19 =166.3 W
^GPU2 heat simulator voltage set to 140V current 1.19A.(,140x 1.19 =166.6 W
^Proceed load test.
CPU heat simulator runniing at 330.4W, Core Temp. = -10.9 ℃ Evap. Temp. -30.5 ℃
GPU1 heat simulator runniing at 166.3W, Core Temp. = -13.3 ℃ Evap. Temp. -22.1
GPU2 heat simulator runniing at 166.6W, Core Temp. = -14.5 ℃ Evap. Temp. -23.3
^Perform load test for 10 minutes
CPU heat simulator runniing at 331.8W, Core Temp. = -5.7 ℃ Evap. Temp. -29.3 ℃
GPU1 heat simulator runniing at 166.3W, Core Temp. = -11.6 ℃ Evap. Temp. -22.1℃
GPU2 heat simulator runniing at 166.6W, Core Temp. = -13.0 ℃ Evap. Temp. -24.3℃
^Perform load test for 20 minutes
CPU heat simulator runniing at 325.7W, Core Temp. = -5.1 ℃ Evap. Temp. -28.3 ℃
GPU1 heat simulator runniing at 166.3W, Core Temp. = -10.6 ℃ Evap. Temp. -23.1℃
GPU2 heat simulator runniing at 166.6W, Core Temp. = -12.3 ℃ Evap. Temp. -23.5℃
^Perform load test for 30 minutes
CPU heat simulator runniing at 326.6W, Core Temp. = -4.7 ℃ Evap. Temp. -28.1 ℃
GPU1 heat simulator runniing at 166.3W, Core Temp. = -10.2 ℃ Evap. Temp. -23.1℃
GPU2 heat simulator runniing at 166.6W, Core Temp. = -12.2 ℃ Evap. Temp. -23.5℃
^Perform load test for 40 minutes
CPU heat simulator runniing at 331.3W, Core Temp. = -4.3 ℃ Evap. Temp. -27.8 ℃
GPU1 heat simulator runniing at 166.3W, Core Temp. = -9.9℃ Evap. Temp. -23.0℃
GPU2 heat simulator runniing at 166.6W, Core Temp. = -11.7 ℃ Evap. Temp. -23.2℃
^Perform load test for 50 minutes
CPU heat simulator runniing at 326.4W, Core Temp. = -4.4 ℃ Evap. Temp. -27.8 ℃
GPU1 heat simulator runniing at 166.3W, Core Temp. = -10.7℃ Evap. Temp. -20.7℃
GPU2 heat simulator runniing at 166.6W, Core Temp. = -11.9 ℃ Evap. Temp. -23.1℃
^Perform load test for 60 minutes
CPU heat simulator runniing at 326.2W, Core Temp. = -4.1 ℃ Evap. Temp. -27.5 ℃
GPU1 heat simulator runniing at 166.3W, Core Temp. = -10.0℃ Evap. Temp. -23.5℃
GPU2 heat simulator runniing at 166.6W, Core Temp. = -11.6 ℃ Evap. Temp. -24.0℃
From the tests above we know that the Three Evaporator Cooling Unit can handle the heat of any CPU on the market, perfect for heavy overclockers.