GCIXP1240AC Intel, GCIXP1240AC Datasheet - Page 71

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GCIXP1240AC

Manufacturer Part Number
GCIXP1240AC
Description
IC MPU NETWORK 232MHZ 432-BGA
Manufacturer
Intel
Datasheets

Specifications of GCIXP1240AC

Rohs Status
RoHS non-compliant
Processor Type
Network
Features
32-bit StrongARM RISC Core
Speed
232MHz
Voltage
3.3V
Mounting Type
Surface Mount
Package / Case
432-BGA
Mounting
Surface Mount
Operating Temperature (max)
70C
Operating Temperature (min)
0C
Operating Temperature Classification
Commercial
Lead Free Status / Rohs Status
Not Compliant
Other names
837152

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4.2.2
4.2.3
Datasheet
Table 36. I2 and O2 Pin Types
Table 37. Overshoot/Undershoot Specifications
Note: In
Type 2 Driver DC Specifications
Table 36
1. Input leakage currents include high impedance output leakage for all bidirectional buffers with tri-state outputs.
Currents from the chip (chip sourcing) are denoted as negative(-) current. Input leakage currents
include high-Z output leakage for all bidirectional buffers with tri-state outputs. The electrical
specifications are preliminary and subject to change.
Overshoot/Undershoot Specifications
The IXP1240 has been designed to be tolerant of overshoot and undershoot associated with normal
I/O switching. However, excessive overshoot or undershoot of I/O signals can cause the device to
latchup.
V
V
V
V
I
C
I1/O1
I2/O2
O3
O4
O5
i
oh
ol
ih
il
in
Table 35
Symbol
Pin Type
Table 37
refers to pin types: I2, O2.
and
Table
specifies limits on I/O overshoot and undershoot that should never be exceeded.
Input High Voltage
Input Low Voltage
Output High
Voltage
Output Low Voltage
Input Leakage
Current
Pin Capacitance
36, currents into the chip (chip sinking) are denoted as positive(+) current.
-0.75 V
-0.7 V
-0.7 V
-0.75 V
-0.7 V
Parameter
Undershoot
1
Ioh = -500 uA
Iol = 1500 uA
0
Vin
Condition
VDDX + 0.7 V
VDDX + 0.65 V
VDDX + 0.6 V
VDDX + 1.0 V
VDDX + 0.65 V
VDDX
Overshoot
Intel
---
---
0.5 x VDDX
0.9 x VDDX
-10 A
5 pF
®
Minimum
IXP1240 Network Processor
4 ns
4 ns
4 ns
4 ns
4 ns
Maximum Duration
VDD_REF + 0.5 V
0.3 x VDDX
---
0.1 x VDDX
10 A
10 pF
Maximum
71

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