ADV7129KS AD [Analog Devices], ADV7129KS Datasheet - Page 17

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ADV7129KS

Manufacturer Part Number
ADV7129KS
Description
192-Bit, 360 MHz True-Color Video DAC with Onboard PLL
Manufacturer
AD [Analog Devices]
Datasheet
The ADV7129 is a very highly integrated monolithic silicon
device. This high level of integration inevitably leads to consid-
eration of thermal and environmental conditions which the
ADV7129 must operate in. Reliability of the device is enhanced
by keeping it as cool as possible. In order to avoid destructive
damage to the device, the absolute maximum junction tempera-
ture must never be exceeded. Certain applications, depending
on ambient temperature and pixel data rates may require forced
air cooling or external heatsinks. The following data is intended as
a guide in evaluating the operating conditions of a particular appli-
cation so that optimum device and system performance is achieved.
It should be noted that information on package characteristics
published herein may not be the most up to date at the time of
reading this. Advances in package compounds and manufacture
will inevitably lead to improvements in the thermal data. Please
contact your local sales office for the most up-to-date information.
Package Characteristics
Junction-to-Case (
part is:
(Note:
The maximum silicon junction temperature should be limited to
100 C. Temperatures greater than this will reduce long-term
device reliability. To ensure that the silicon junction tempera-
REV. 0
JC
is independent of airflow.)
JC
) Thermal Resistance for this particular
JC
= 8.9 C/W
THERMAL AND ENVIRONMENTAL CONSIDERATIONS
Figure 13. Supply Current vs. Frequency
550
525
500
475
450
425
160
V
AA
APPENDIX II
200
= +5V
–17–
SPEED – MHz
240
ture stays within prescribed limits, the addition of an external
heatsink can be used if the junction temperature is brought be-
yond the maximum limit.
Junction-to-Ambient (
lar part is:
Thermal Model
The junction temperature of the device in a specific application
is given by:
or
where:
T
T
P
JC
CA
JA
J
A
D
280
= Junction Temperature of Silicon ( C)
= Ambient Temperature ( C)
= Power Dissipation (W)
= Junction to Case Thermal Resistance ( C/W)
= Case to Ambient Thermal Resistance ( C/W)
= Junction to Ambient Thermal Resistance ( C/W)
320
JA
JA
= 25.9 C/W (Still Air)
= will significantly decrease in air flow.
T
T
J
J
360
= T
= T
A
A
+ P
+ P
JA
) Thermal Resistance for this particu-
D
D
(
(
JC
JA
)
+
CA
)
ADV7129
(1)
(2)

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