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SC8164 датащи(PDF) 13 Page - Vitesse Semiconductor Corporation

номер детали SC8164
подробное описание детали  2.488 Gbit/sec to 2.7Gbit/sec 1:16 SONET/SDH Demux
PDF  16 Pages
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производитель  VITESSE [Vitesse Semiconductor Corporation]
домашняя страница  http://www.vitesse.com
Logo VITESSE - Vitesse Semiconductor Corporation

SC8164 датащи(HTML) 13 Page - Vitesse Semiconductor Corporation

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VITESSE
SEMICONDUCTOR CORPORATION
Preliminary Datasheet
VSC8164
2.488 Gbit/sec to 2.7Gbit/sec
1:16 SONET/SDH Demux
Page 13
 VITESSE SEMICONDUCTOR CORPORATION
G52239-0, Rev. 3.3
741 Calle Plano, Camarillo, CA 93012 • 805/388-3700 • FAX: 805/987-5896
5/17/00
Package Thermal Considerations
This package has been enhanced with a copper heat slug to provide a low thermal resistance path from the
die to the exposed surface of the heat spreader. The thermal resistance is shown in the following table
Table 4: Thermal Resistance
Thermal Resistance with Airflow
Shown in the table below is the thermal resistance with airflow. This thermal resistance value reflects all the
thermal paths including through the leads in an environment where the leads are exposed. The temperature dif-
ference between the ambient airflow temperature and the case temperature should be the worst case power of
the device multiplied by the thermal resistance.
Table 5: Thermal Resistance with Airflow
Maximum Ambient Temperature without Heatsink
The worst case ambient temperature without use of a heatsink is given by the equation:
where:
θ
CA Theta case to ambient at appropriate airflow
Τ
A(MAX) Ambient Air temperature
Τ
C(MAX) Case temperature (85
oC for VSC8164)
P(MAX) Power (1.1 W for VSC8164)
Symbol
Description
°C/W
θjc
Thermal resistance from
junction to case.
1.34
θca
Thermal resistance from case to
ambient with no airflow,
including conduction through
the leads.
25.0
Airflow
θ
ca (
oC/W)
100 lfpm
21
200 lfpm
18
400 lfpm
16
600 lfpm
14.5
T
AMAX
()
T
CMAX
()
P
–
MAX
()θCA
=



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