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SN65MLVD080DGGR Datasheet(PDF) 6 Page - Texas Instruments

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Part # SN65MLVD080DGGR
Description  8-CHANNEL HALF-DUPLEX M-LVDS LINE TRANSCEIVERS
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Manufacturer  TI [Texas Instruments]
Direct Link  http://www.ti.com
Logo TI - Texas Instruments

SN65MLVD080DGGR Datasheet(HTML) 6 Page - Texas Instruments

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RECEIVER SWITCHING CHARACTERISTICS
SN65MLVD080
SN65MLVD082
SLLS581B – SEPTEMBER 2003 – REVISED SEPTEMBER 2005
over recommended operating conditions unless otherwise noted
PARAMETER
TEST CONDITIONS
MIN TYP(1)
MAX
UNIT
tpLH
Propagation delay time, low-to-high-level output
2
4
6
ns
tpHL
Propagation delay time, high-to-low-level output
2
4
6
ns
tr
Output signal rise time
1
2.3
ns
tf
Output signal fall time
CL = 15 pF, See Figure 10
1
2.3
ns
tsk(o)
Output skew
350
ps
tsk(p)
Pulse skew (|tPHL– tPLH|)
50
350
ps
tsk(pp)
Part-to-part skew(2)
1
ns
tjit(per)
Period jitter, rms (1 standard deviation) ((3))
7
ps
100 MHz clock input(4)
tjit(c-c)
Cycle-to-cycle jitter, rms
110
ps
Type 1
550
ps
tjit(det)
Deterministic jitter
Type 2
480
ps
200 Mbps 215–1 PRBS input(5)
Type 1
720
ps
tjit(pp)
Peak-to-peak jitter (3)(6)
Type 2
660
ps
tPZH
Enable time, high-impedance-to-high-level output
30
ns
tPZL
Enable time, high-impedance-to-low-level output
30
ns
CL = 15 pF, See Figure 11
tPHZ
Disable time, high-level-to-high-impedance output
18
ns
tPLZ
Disable time, low-level-to-high-impedance output
28
ns
(1)
All typical values are at 25
°C and with a 3.3-V supply voltage.
(2)
tsk(pp) is the magnitude of the time difference in propagation delay times between any specified terminals of two devices when both
devices operate with the same supply voltages, at the same temperature, and have identical packages and test circuits.
(3)
Jitter is ensured by design and characterization. Stimulus jitter has been subtracted from the numbers.
(4)
VID = 200 mVpp ('080), VID = 400 mVpp ('082), Vcm = 1 V, tr = tf = 0.5 ns (10% to 90%), measured over 30 k samples.
(5)
VID = 200 mVpp ('080), VID = 400 mVpp ('082), Vcm = 1 V, tr = tf = 0.5 ns (10% to 90%), measured over 100 k samples.
(6)
Peak-to-peak jitter includes jitter due to pulse skew (tsk(p)).
6
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