参数资料
型号: MC8610TPX1066JB
厂商: Freescale Semiconductor
文件页数: 61/96页
文件大小: 0K
描述: MPU E600 CORE 1066MHZ 783-PBGA
标准包装: 36
系列: MPC86xx
处理器类型: 32-位 MPC86xx PowerPC
速度: 1.066GHz
电压: 1V
安装类型: 表面贴装
封装/外壳: 783-BBGA,FCBGA
供应商设备封装: 783-FCPBGA(29x29)
包装: 托盘
MPC8610 Integrated Host Processor Hardware Specifications, Rev. 2
Electrical Characteristics
Freescale Semiconductor
64
VTX-IDLE-DIFFp
Electrical idle
differential peak
output voltage
020
mV
VTX-IDLE-DIFFp = |VTX-IDLE-D+ –VTX-IDLE-D-| <= 20 mV
See Note 2
VTX-RCV-DETECT
The amount of
voltage change
allowed during
receiver
detection
600
mV
The total amount of voltage change that a transmitter
can apply to sense whether a low impedance receiver
is present. See Note 6
VTX-DC-CM
The TX DC
common mode
voltage
0
3.6
V
The allowed DC common mode voltage under any
conditions. See Note 6
ITX-SHORT
TX short circuit
current limit
90
mA
The total current the transmitter can provide when
shorted to its ground
TTX-IDLE-MIN
Minimum time
spent in
electrical idle
50
UI
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
TTX-IDLE-SET-TO-IDLE
Maximum time to
transition to a
valid electrical
idle after sending
an electrical idle
ordered set
20
UI
After sending an electrical idle ordered set, the
transmitter must meet all electrical idle specifications
within this time. This is considered a debounce time
for the transmitter to meet electrical idle after
transitioning from LO.
TTX-IDLE-TO-DIFF-DATA Maximum time to
transition to valid
TX specifications
after leaving an
electrical idle
condition
20
UI
Maximum time to meet all TX specifications when
transitioning from electrical idle to sending differential
data. This is considered a debounce time for the TX to
meet all TX specifications after leaving electrical idle
RLTX-DIFF
Differential
return loss
12
dB
Measured over 50 MHz to 1.25 GHz. See Note 4
RLTX-CM
Common mode
return loss
6
dB
Measured over 50 MHz to 1.25 GHz. See Note 4
ZTX-DIFF-DC
DC differential
TX impedance
80
100
120
Ω
TX DC differential mode low impedance
ZTX-DC
Transmitter DC
impedance
40
Ω
Required TX D+ as well as D- DC Impedance during
all states
LTX-SKEW
Lane-to-lane
output skew
500 +
2 UI
ps
Static skew between any two transmitter lanes within
a single link
CTX
AC coupling
capacitor
75
200
nF
All transmitters shall be AC-coupled. The AC coupling
is required either within the media or within the
transmitting component itself.
Table 49. Differential Transmitter (TX) Output Specifications (continued)
Symbol
Parameter
Min
Nom
Max
Units
Comments
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