Datasheet
– 376 –
Design and specifi cations are each subject to change without notice. Ask factory for the current technical specifi cations before purchase and/or use.
Should a safety concern arise regarding this product, please be sure to contact us immediately.
Product Code
E
1
Y
2
G
3 4 5 6 789 10 11 12
S
S
PGS only
Taping
1
A
Coating
82310
Other materials laminated
C
M
Suffix
Thickness (mm)
Dimension Y (Long)Dimension X (Short)
Style
10 0.1
0.025
03
0.017
02
✽Custom product is suffix.
0.0707
Y(mm)
X(mm)
“PGS” Graphite Sheets
“PGS” Graphite Sheets
Type:
EYG
■ Recommended applications
● Smart phones, Cellular phones, DVC, DSC,
PCs and peripherals, pickup
● Semiconductor manufacturing equipment
(Sputtering, Dry etching, Steppers)
● Optical communications equipment
■ Features
● Excellent thermal conductivity : 700 to 1750 W/(m·K)
(2 to 4 times as high as copper, 3 to 7 time as high
as aluminum)
● Lightweight: Specifi c gravity : 0.85 to 2.1 g/cm
3
(1/4 to 1/10 of copper, 1/1.3 to 1/3 of aluminum in density)
● Flexible and easy to be cut or trimmed.
(withstands repeated bending)
● Low thermal resistance
● RoHS compliant
PGS (Pyrolytic Graphite Sheet) is a thermal interface
material which is very thin, synthetically made, has
high thermal conductivity, and is made from a higly
oriented graphite polymer film. It is ideal for providing
thermal management/heat-sinking in limited spaces
or to provide supplemental heat-sinking in addition to
conventional means. This material is flexible and can
be cut into customizable shapes.
■ Explanation of Part Numbers
■ Dimensions in mm (not to scale)
■ Handling Precautions
(Please see Page 380)
Dimension of representative
Part No.
Dimension X (Short)
✽
Dimension Y (Long)
✽
Thickness (mm)
EYGS1823
180±5 mm 230±5 mm 0.10±0.03, 0.07±0.015
EYGS1218
115±5 mm 180±5 mm
0.10±0.03, 0.07±0.015,
0.025±0.010, 0.017±0.005
EYGS0912
90±5 mm 115±5 mm
0.10±0.03, 0.07±0.015,
0.025±0.010, 0.017±0.005
1 0
0 7
✽
Please contact us for other dimensions other than those above.
1 0
0 7
0 3
0 2
1 0
0 7
0 3
0 2
Dec. 201102




