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SN65LVDS049 Datasheet(PDF) 5 Page - Texas Instruments

Part No. SN65LVDS049
Description  DUAL LVDS DIFFERENTIAL DRIVERS AND RECEIVERS
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Maker  TI [Texas Instruments]
Homepage  http://www.ti.com
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SN65LVDS049 Datasheet(HTML) 5 Page - Texas Instruments

 
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SN65LVDS049
SLLS575 – AUGUST 2003
SWITCHING CHARACTERISTICS
over operating free-air temperature range (unless otherwise noted)
PARAMETER
TEST CONDITIONS
MIN
TYP (1)
MAX
UNIT
LVDS Outputs (DOUT+, DOUT-)
tPLHD
Differential propagation delay low to high
RL = 100 Ω,
1.3
2.0
ns
CL = 15 pF distributed,
tPHLD
Differential propagation delay high to low
1.4
2.0
ns
See Figure 2
tsk(p)
Differential pulse skew (|tPHL - tPLH|)
0
0.15
0.4
ns
tsk(o)
Differential channel-to-channel skew (2)
0
0.05
0.5
ns
tsk(pp)
Differential part-to-part skew (3)
0
1
ns
tr
Differential rise time
0.2
0.5
1
ns
tf
Differential fall time
0.2
0.5
1
ns
tPHZ
Disable time, high level to high impedance
RL = 100 Ω,
2.7
4
ns
CL = 15 pF distributed,
tPLZ
Disable time, low level to high impedance
2.7
4
ns
See Figure 3
tPZH
Enable time, high impedance to high level
1
5
8
ns
tPZL
Enable time, high impedance to low level
1
5
8
ns
fMAX
Maximum operating frequency (4)
250
MHz
LVCMOS Outputs (ROUT)
tPLH
Propagation delay low to high
VID= 200 mV,
0.5
1.9
3.5
ns
CL = 15 pF distributed,
tPHL
Propagation delay high to low
0.5
1.7
3.5
ns
See Figure 4
tsk(p)
Pulse skew (|tPHL - tPLH|)
0
0.2
0.4
ns
tsk(o)
Channel-to-channel skew (5)
0
0.05
0.5
ns
tsk(pp)
Part-to-part skew (6)
0
1
ns
tr
Rise time
0.3
0.5
1.4
ns
tf
Fall time
0.3
0.5
1.4
ns
tPHZ
Disable time, high level to high impedance
CL = 15 pF distributed,
3
7.2
9
ns
See Figure 5
tPLZ
Disable time, low level to high impedance
2.5
4
8
ns
tPZH
Enable time, high impedance to high level
2.5
4.2
7
ns
tPZL
Enable time, high impedance to low level
2
3.3
7
ns
fMAX
Maximum operating frequency (7)
200
250
MHz
(1)
All typical values are at 25
°C and with a 3.3 V supply.
(2)
tsk(o) is the magnitude of the time difference between the tPLH or tPHL of all drivers of a single device with all of their inputs connected
together.
(3)
tsk(pp) is the magnitude of the 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.
(4)
f(MAX) generator input conditions: tr = tf < 1 ns (0% to 100%), 50% duty cycle, 0 V to 3 V. Output Criteria: duty cycle = 45% to 55%, VOD
> 250 mV, all channels switching.
(5)
tsk(lim) is the maximum delay time difference between drivers over temperature, VCC, and process.
(6)
tsk(pp) is the magnitude of the difference in propagation delay times between any specified terminals of two devices when both
devices operate wf(MAX) generaith the same supply voltages, at the same temperature, and have identical packages and test circuits
(7)
f(MAX) generator input conditions: tr = tf < 1 ns (0% to 100%), 50% duty cycle, VID = 200 mV, VCM = 1.2 V. Output criteria: duty cycle =
45% to 55%, VOH > 2.7 V, VOL < 0.25 V, all channels switching.
5


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