PPC440EPX-SUA667T Applied Micro Circuits Corporation, PPC440EPX-SUA667T Datasheet - Page 69

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PPC440EPX-SUA667T

Manufacturer Part Number
PPC440EPX-SUA667T
Description
Manufacturer
Applied Micro Circuits Corporation
Datasheet

Specifications of PPC440EPX-SUA667T

Family Name
440EPx
Device Core
PowerPC
Device Core Size
32b
Frequency (max)
667MHz
Instruction Set Architecture
RISC
Supply Voltage 1 (typ)
1.5/3.3V
Operating Supply Voltage (max)
1.6/3.45V
Operating Supply Voltage (min)
1.425/3.15V
Operating Temp Range
-40C to 100C
Operating Temperature Classification
Industrial
Mounting
Surface Mount
Pin Count
680
Package Type
TEBGA
Lead Free Status / RoHS Status
Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
PPC440EPX-SUA667T
Manufacturer:
FUJITSU
Quantity:
143
Table 16. DC Power Supply Loads
Revision 1.30 – February 27, 2009
AMCC Proprietary
Table 15. V
Data Sheet
V
OV
EOV
SOV
SOV
AV
EAV
UnAV
Notes:
Notes:
1. Power is measured and is based on V
DD
1. See “Absolute Maximum Ratings” on page 65 for filter recommendations.
2. SOV
3. The maximum current values listed above are not guaranteed to be the highest obtainable. These values are dependent on many
4. Typical current is estimated at 667MHz with V
5. Maximum current is measured at 667MHz with V
each function with representative traffic.
DD
DD
DD
(+1.5V) active operating current
DD
DD
DD
factors including the type of applications running, clock rates, use of internal functional capabilities, external interface usage, case
temperature, and the power supply voltages. Your specific application can produce significantly different results. V
power are primarily dependent on the applications running and the use of internal chip functions (DMA, PCI, Ethernet, and so on).
OV
and T
(DDR2), and T
DD
(+1.5V) input current
(+3.3V) active operating current
(+1.5V) active operating current
(+2.5V) active operating current
(+1.8V) DDR2 active operating current
(+2.5V) DDR1 active operating current
DD
(+3.3V) active operating current
DD
Frequency (MHz)
C
(I/O) current and power are primarily dependent on the capacitive loading, frequency, and utilization of the external buses.
DD
= +100°C with a typical process.
will be either +2.5V or +1.8V but not both.
Supply Power Dissipation
400
533
667
C
Parameter
= +100°C, and best-case process (which drives worst-case power).
1
DD
specified in the table and T
2
2
+1.425V
1.49
1.64
1.94
DD
DD
= +1.5V, OV
= +1.6V, OV
Symbol
I
I
I
I
SODD2
SODD1
I
I
EODD
I
EADD
UADD
ODD
I
ADD
DD
DD
= +3.3V, EOV
DD
440EPx – PPC440EPx Embedded Processor
C
= 100°C, while running Linux and a test application that exercises
= +3.45V, EOV
+1.5V
1.69
1.88
2.20
Typical
1575
115
210
440
60
20
20
90
DD
4
= +2.5V, SOV
DD
= +2.6V, SOV
Maximum
3350
120
300
450
110
DD
+1.6V
70
30
30
2.00
2.21
2.78
= +2.5V (DDR1) or +1.8V (DDR2),
DD
5
= +2.6V (DDR1) or +1.9V
DD
Unit
mA
mA
mA
mA
mA
mA
mA
mA
Unit
(logic) current and
W
W
W
Notes
Notes
1
1
1
1
1
69

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