Specifications: Average Particle Size:
< 0.49 micron < 0.000020 inch
Extended Temperature Limits:
Peak: -50 Celsius Degree to >180 Celsius Degree
Long-Term: -50 Celsius Degree to 130 Celsius Degree
Performance:
3 to 12 degrees centigrade lower CPU full load core temperatures than standard thermal compounds or thermal pads when measured with a calibrated thermal diode imbedded in the CPU core.
Coverage Area:
A 3.5 gram syringe contains enough compound to cover at least 15 to 25 small CPU cores, or 6 to 10 large CPU cores, or 2 to 5 heat plates. At a layer 0.003" thick, the 3.5 gram syringe will cover approximately 16 square inches.
Specifications: Average Particle Size:
<0.49 micron <0.000020 inch
Extended Temperature Limits:
Peak: -50 Degrees C to >180 Degrees C
Long-Term: -50 Degrees C to 130 Degrees C
Performance:
3 to 12 degrees centigrade lower CPU full load core temperatures than standard thermal compounds or thermal pads when measured with a calibrated thermal diode imbedded in the CPU core.
Coverage Area:
A 3.5 gram syringe contains enough compound to cover at least 15 to 25 small CPU cores, or 6 to 10 large CPU cores, or 2 to 5 heat plates. At a layer 0.003" thick, the 3.5 gram syringe will cover approximately 16 square inches.
Specifications: Average Particle Size:
<0.36 micron <0.000014 inch (70 particles lined up in a row equal 1/1000th of an inch.)
Temperature Limits:
Peak: -150 Degrees C to >185 Degrees C
Long-Term: -150 Degrees C to 130 Degrees C
Coverage Area:
2.7-gram syringe. (Approximately 1cc)
At a layer 0.003" thick, one syringe will cover about 22 square inches.
25-gram syringe. (Approximately 9.2cc)
At a layer 0.003" thick, one syringe will cover about 200 square inches.
Specifications: Average Particle Size: <0.36 microns <0.000015 inch (70 particles lined up in a row equal 1/1000th of an inch.)
Temperature limits: Peak: -150 Degrees C to >185 Degrees C Long-Term: -150 Degrees C to 130 Degrees C
Coverage Area: 25-gram syringes. (Approximately 9.2cc) At a layer 0.003" thick, one tube will cover about 200 square inches.
Important Reminder:
Due to the unique shapes and sizes of the particles in Ceramique 2, it will take a minimum of 25 hours and several thermal cycles to achieve maximum particle to particle thermal conduction and for the heatsink to CPU interface to reach maximum conductivity. (This period will be longer in a system without a fan on the heatsink.) On systems measuring actual internal core temperatures via the CPU's internal diode...