MPC8572ECVTAULD Freescale Semiconductor, MPC8572ECVTAULD Datasheet - Page 83

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MPC8572ECVTAULD

Manufacturer Part Number
MPC8572ECVTAULD
Description
MPU POWERQUICC III 1023-PBGA
Manufacturer
Freescale Semiconductor
Datasheet

Specifications of MPC8572ECVTAULD

Processor Type
MPC85xx PowerQUICC III 32-Bit
Speed
1.333GHz
Voltage
1.1V
Mounting Type
Surface Mount
Package / Case
1023-FCPBGA
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Features
-

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Freescale Semiconductor
V
T
T
MAX-JITTER
T
V
V
IDLE-DELTA
V
V
V
V
I
T
TX-SHORT
TX-EYE
TX-EYE-MEDIAN-to-
TX-RISE
TX-IDLE-MIN
TX-DE-RATIO
TX-CM-ACp
TX-CM-DC-ACTIVE-
TX-CM-DC-LINE-DELTA
TX-IDLE-DIFFp
TX-RCV-DETECT
TX-DC-CM
Symbol
, T
TX-FALL
MPC8572E PowerQUICC III Integrated Processor Hardware Specifications, Rev. 5
Table 62. Differential Transmitter (TX) Output Specifications (continued)
De- Emphasized
Differential
Output Voltage
(Ratio)
Minimum TX Eye
Width
Maximum time
between the jitter
median and
maximum
deviation from
the median.
D+/D- TX Output
Rise/Fall Time
RMS AC Peak
Common Mode
Output Voltage
Absolute Delta of
DC Common
Mode Voltage
During L0 and
Electrical Idle
Absolute Delta of
DC Common
Mode between
D+ and D–
Electrical Idle
differential Peak
Output Voltage
The amount of
voltage change
allowed during
Receiver
Detection
The TX DC
Common Mode
Voltage
TX Short Circuit
Current Limit
Minimum time
spent in
Electrical Idle
Parameter
0.125
–3.0
0.70
Min
50
0
0
0
0
Nominal
–3.5
Max
0.15
-4.0
100
600
3.6
20
25
20
90
Units
mV
mV
mV
mV
mV
mA
dB
UI
UI
UI
UI
V
Ratio of the V
bits after a transition divided by the V
the first bit after a transition. See Note 2.
The maximum Transmitter jitter can be derived as
T
See Notes 2 and 3.
Jitter is defined as the measurement variation of the
crossing points (V
recovered TX UI. A recovered TX UI is calculated
over 3500 consecutive unit intervals of sample
data. Jitter is measured using all edges of the 250
consecutive UI in the center of the 3500 UI used for
calculating the TX UI. See Notes 2 and 3.
See Notes 2 and 5
V
V
See Note 2
|V
Idle)
V
V
[Electrical Idle]
See Note 2.
|V
V
V
See Note 2.
V
mV
See Note 2.
The total amount of voltage change that a
transmitter can apply to sense whether a low
impedance Receiver is present. See Note 6.
The allowed DC Common Mode voltage under any
conditions. See Note 6.
The total current the Transmitter can provide when
shorted to its ground
Minimum time a Transmitter must be in Electrical
Idle Utilized by the Receiver to start looking for an
Electrical Idle Exit after successfully receiving an
Electrical Idle ordered set
TX-MAX-JITTER
TX-CM-ACp
TX-CM-DC
TX-CM-DC
TX-CM-Idle-DC
TX-CM-DC-D+
TX-CM-DC-D-
TX-IDLE-DIFFp
TX-CM-DC (during L0)
TX-CM-DC-D+
|<=100 mV
= DC
= DC
= RMS(|V
TX-DIFFp-p
= DC
= DC
= DC
- V
= |V
= 1 - T
(avg)
(avg)
TX-CM-DC-D-
TX-DIFFp-p
(avg)
TX-IDLE-D+
(avg)
Comments
(avg)
- V
of |V
of |V
TXD+
TX-EYE
of the second and following
of |V
TX-CM-Idle-DC (During Electrical
of |V
of |V
TX-D+
TX-D+
+ V
TX-D-
= 0 V) in relation to a
TX-D+
= 0.3 UI.
| <= 25 mV
TX-D+
-V
TXD-
+ V
+ V
TX-IDLE-D-
|
|
|/2 - V
TX-D-
TX-D-
+ V
TX-DIFFp-p
TX-D-
|/2
|/2 [L0]
PCI Express
TX-CM-DC
| <= 20
|/2
of
83
)

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