FW80200M733SL678 Intel, FW80200M733SL678 Datasheet - Page 22

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FW80200M733SL678

Manufacturer Part Number
FW80200M733SL678
Description
IC I/O PROCESSOR 733MHZ 241-BGA
Manufacturer
Intel
Datasheet

Specifications of FW80200M733SL678

Rohs Status
RoHS non-compliant
Processor Type
I/O
Features
XScale Core
Speed
733MHz
Voltage
5V
Mounting Type
Surface Mount
Package / Case
241-BGA
Other names
844850

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Intel
Package Information
3.2
3.3
Table 8.
22
®
80200 Processor based on Intel
Note:
Package Thermal Specifications
Package Thermal Resistance
The Intel
range of 0°C to 90°C (T
environment to determine whether the device is within its specified operating range. The case
temperature should be measured at the center of the top surface, opposite the pins.
θ
maximum ambient temperature to conform to a particular case temperature:
Junction temperature (T
80200 processor. It can be calculated from θ
following equation:
Similarly, when T
follows:
Package Thermal Resistance — °C/Watt
Figure 3
temperature under several conditions.
Thermal simulations were performed for the 80200T extended temperature processor using
multiple board configurations. See the 80200 Specification Update for simulation results.
θ
θ
NOTES:
CA
1. This table applies to an PBGA device soldered directly into a board with all V
2. θ
3. Maximum Junction Temperature is 110°C
JC
CA
connections.
T
T
T
(Junction-to-Case)
is the thermal resistance from case to ambient. Use the following equation to calculate T
(Case-to-Ambient) (No Heatsink)
JA
A
J
C
January 2003
= T
= θ
= T
= T
and
®
JC
C
A
80200 processor is specified for operation when T
C
+ P (
+ θ
Figure 4
- P (
+ P (
CA
Parameter
θ CA
A
θ JC
θ CA
is known, the corresponding case temperature (T
)
)
)
show an application of the supplied thermal data. Here, we plot the case
J
C
) is commonly used in reliability calculations. T
®
max for 80200T is 105°C). Case temperature may be measured in any
XScale
θ
JA
Datasheet - Commercial and Extended Temperature (80200T)
Microarchitecture
θ
JC
JC
(thermal resistance from junction to case) using the
28.5
1.5
(0)
0
θ
Airflow — ft./min (m/sec)
CA
(1.01)
20.0
200
1.5
C
(case temperature) is within the
(2.03)
18.1
400
1.5
C
) can be calculated as
SS
J
(3.04)
max is 110°C for the
17.1
600
1.5
A
, the

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