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XIO2000AI 数据表(PDF) 147 Page - TEXAS ADVANCED OPTOELECTRONIC SOLUTIONS

部件名 XIO2000AI
功能描述  PCI Express to PCI Bus Translation Bridge
PDF  159 Pages
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制造商  TAOS [TEXAS ADVANCED OPTOELECTRONIC SOLUTIONS]
网页  http://www.taosinc.com
标志 TAOS - TEXAS ADVANCED OPTOELECTRONIC SOLUTIONS

XIO2000AI 数据表(HTML) 147 Page - TEXAS ADVANCED OPTOELECTRONIC SOLUTIONS

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Electrical Characteristics
137
April 2007 Revised October 2008
SCPS155C
7.5
PCI Express Differential Receiver Input Ranges
PARAMETER
TERMINALS
MIN
NOM
MAX
UNITS
COMMENTS
UI
Unit interval
RXP, RXN
399.88
400
400.12
ps
Each UI is 400 ps
±300 ppm. UI does not account for SSC
dictated variations.
See Note 11.
VRX-DIFFp-p
Differential input
peak-to-peak voltage
RXP, RXN
0.175
1.200
V
VRX-DIFFp-p = 2*|VRXP − VRXN|
See Note 12.
TRX-EYE
Minimum receiver eye
width
RXP, RXN
0.4
UI
The maximum interconnect media and transmitter jitter that
can be tolerated by the receiver is derived as
TRX-MAX- JITTER = 1 − TRX-EYE = 0.6 UI
See Notes 12 and 13.
TRX-EYE-MEDIAN-to-MAX-
JITTER
Maximum time between
the jitter median and
maximum deviation
from the median.
RXP, RXN
0.3
UI
Jitter is defined as the measurement variation of the
crossing points (VRX-DIFFp-p = 0 V) in relation to recovered
TX UI. A recovered TX UI is calculated over
3500 consecutive UIs of sample data. Jitter is measured
using all edges of the 250 consecutive UIs in the center of
the 3500 UIs used for calculating the TX UI.
See Notes 12 and 13.
VRX-CM-ACp
AC peak common mode
input voltage
RXP, RXN
150
mV
VRX-CM-ACp = RMS(|VRXP + VRXN|/2 – VRX-CM-DC)
VRX-CM-DC = DC(avg) of |VRXP + VRXN|/2
See Note 12.
RLRX-DIFF
Differential return loss
RXP, RXN
10
dB
Measured over 50 MHz to 1.25 GHz with the P and N lines
biased at +300 mV and −300 mV, respectively.
See Note 14.
RLRX-CM
Common mode return
loss
RXP, RXN
6
dB
Measured over 50 MHz to 1.25 GHz with the P and N lines
biased at +300 mV and −300 mV, respectively.
See Note 14.
ZRX-DIFF-DC
DC differential input
impedance
RXP, RXN
80
100
120
RX dc differential mode impedance
See Note 15.
ZRX-DC
DC input impedance
RXP, RXN
40
50
60
Required RXP as well as RXN dc impedance (50
Ω ±20%
tolerance)
See Notes 12 and 15.
ZRX-HIGH-IMP-DC
Powered down dc input
impedance
RXP, RXN
200K
Required RXP as well as RXN dc impedance when the
receiver terminations do not have power.
See Note 16.
VRX-IDLE-DET-DIFFp-p
Electrical idle detect
threshold
RXP, RXN
65
175
mV
VRX-IDLE-DET-DIFFp-p = 2 * |VRXP −VRXN| measured at the
receiver package terminals
TRX-IDLE-DET-DIFF-ENTER
-TIME
Unexpected electrical
idle enter detect
threshold integration
time
RXP, RXN
10
ms
An unexpected electrical idle
(VRX-DIFFp-p<VRX-IDLE-DET-DIFFp-p) must be recognizedno
longer than TRX-IDLE-DET-DIFF-ENTER-TIME to signal an
unexpected idle condition.
NOTES: 11. No test load is necessarily associated with this value.
12. Specified at the measurement point and measured over any 250 consecutive UIs. A test load must be used as the RX device when
taking measurements. If the clocks to the RX and TX are not derived from the same reference clock, then the TX UI recovered from
3500 consecutive UIs is used as a reference for the eye diagram.



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