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DS90LV011A Datasheet(PDF) 3 Page - Texas Instruments

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Part # DS90LV011A
Description  DS90LV011A 3V LVDS Single High Speed Differential Driver
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Manufacturer  TI [Texas Instruments]
Direct Link  http://www.ti.com
Logo TI - Texas Instruments

DS90LV011A Datasheet(HTML) 3 Page - Texas Instruments

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DS90LV011A
www.ti.com
SNLS140C – MAY 2002 – REVISED APRIL 2013
Electrical Characteristics
Over Supply Voltage and Operating Temperature ranges, unless otherwise specified.
(1) (2) (3)
Symbol
Parameter
Conditions
Pin
Min
Typ
Max
Units
|VOD|
Output Differential Voltage
RL = 100Ω
OUT+,
250
350
450
mV
(Figure 2 and Figure 3)
OUT
ΔVOD
VOD Magnitude Change
3
35
mV
VOS
Offset Voltage
RL = 100Ω
1.125
1.22
1.375
V
(Figure 2)
ΔVOS
Offset Magnitude Change
0
1
25
mV
IOFF
Power-off Leakage
VOUT = 3.6V or GND, VDD = 0V
±1
±10
μA
IOS
Output Short Circuit Current(4)
VOUT+ and VOUT− = 0V
−6
−24
mA
IOSD
Differential Output Short Circuit
VOD = 0V
−5
−12
mA
Current(4)
COUT
Output Capacitance
3
pF
VIH
Input High Voltage
TTL IN
2.0
VDD
V
VIL
Input Low Voltage
GND
0.8
V
IIH
Input High Current
VIN = 3.3V or 2.4V
±2
±10
μA
IIL
Input Low Current
VIN = GND or 0.5V
±1
±10
μA
VCL
Input Clamp Voltage
ICL = −18 mA
−1.5
−0.6
V
CIN
Input Capacitance
3
pF
IDD
Power Supply Current
No Load
VIN = VDD or GND
VDD
5
8
mA
RL = 100Ω
7
10
mA
(1)
Current into device pins is defined as positive. Current out of device pins is defined as negative. All voltages are referenced to ground
except VOD.
(2)
All typicals are given for: VDD = +3.3V and TA = +25°C.
(3)
The DS90LV011A is a current mode device and only function with datasheet specification when a resistive load is applied to the drivers
outputs.
(4)
Output short circuit current (IOS) is specified as magnitude only, minus sign indicates direction only.
Switching Characteristics
Over Supply Voltage and Operating Temperature Ranges, unless otherwise specified.
(1) (2) (3) (4)
Symbol
Parameter
Conditions
Min
Typ
Max
Units
tPHLD
Differential Propagation Delay High to Low
RL = 100Ω, CL = 15 pF
0.3
1.0
1.5
ns
tPLHD
Differential Propagation Delay Low to High
(Figure 4 and Figure 5)
0.3
1.1
1.5
ns
tSKD1
Differential Pulse Skew |tPHLD − tPLHD|
(5)
0
0.1
0.7
ns
tSKD3
Differential Part to Part Skew(6)
0
0.2
1.0
ns
tSKD4
Differential Part to Part Skew(7)
0
0.4
1.2
ns
tTLH
Transition Low to High Time
0.2
0.5
1.0
ns
tTHL
Transition High to Low Time
0.2
0.5
1.0
ns
fMAX
Maximum Operating Frequency(8)
200
250
MHz
(1)
All typicals are given for: VDD = +3.3V and TA = +25°C.
(2)
These parameters are specified by design. The limits are based on statistical analysis of the device performance over PVT (process,
voltage, temperature) ranges.
(3)
CL includes probe and fixture capacitance.
(4)
Generator waveform for all tests unless otherwise specified: f = 1 MHz, ZO = 50Ω, tr ≤ 1 ns, tf ≤ 1 ns (10%-90%).
(5)
tSKD1, |tPHLD − tPLHD|, is the magnitude difference in differential propagation delay time between the positive going edge and the negative
going edge of the same channel.
(6)
tSKD3, Differential Part to Part Skew, is defined as the difference between the minimum and maximum specified differential propagation
delays. This specification applies to devices at the same VDD and within 5°C of each other within the operating temperature range.
(7)
tSKD4, part to part skew, is the differential channel to channel skew of any event between devices. This specification applies to devices
over recommended operating temperature and voltage ranges, and across process distribution. tSKD4 is defined as |Max − Min|
differential propagation delay.
(8)
fMAX generator input conditions: tr = tf < 1 ns (0% to 100%), 50% duty cycle, 0V to 3V. Output criteria: duty cycle = 45%/55%, VOD >
250mV. The parameter is specified by design. The limit is based on the statistical analysis of the device over the PVT range by the
transitions times (tTLH and tTHL).
Copyright © 2002–2013, Texas Instruments Incorporated
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