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MAX9178 Datasheet(PDF) 3 Page - Maxim Integrated Products

Part No. MAX9178
Description  Quad LVDS Line Driver with High-ESD Tolerance and Flow-Through Pinout
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Manufacturer  MAXIM [Maxim Integrated Products]
Direct Link  https://www.maximintegrated.com/en.html
Logo MAXIM - Maxim Integrated Products

MAX9178 Datasheet(HTML) 3 Page - Maxim Integrated Products

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Quad LVDS Line Driver with High-ESD
Tolerance and Flow-Through Pinout
_______________________________________________________________________________________
3
DC ELECTRICAL CHARACTERISTICS (continued)
(VCC = +3.0V to +3.6V, RL = 100
Ω ±1%, IN_ = high or low, EN = high, EN = low, TA = -40°C to +85°C. Typical values are at VCC =
+3.3V, TA = +25°C, unless otherwise noted.) (Notes 1, 2)
SWITCHING CHARACTERISTICS
(VCC = +3.0V to +3.6V, RL = 100
Ω ±1%, CL = 15pF, TA = -40°C to +85°C. Typical values are at VCC = +3.3V, TA = +25°C, unless
otherwise noted.) (Notes 4–7)
Note 1: Maximum and minimum limits over temperature are guaranteed by design and characterization. Devices are 100% tested
at TA = +85°C.
Note 2: Currents into the device are positive, and current out of the device is negative. All voltages are referenced to ground
except VOD,
∆VOD, VOS, and ∆VOS.
Note 3: Guaranteed by design.
Note 4: AC parameters are guaranteed by design and characterization. Limits are set at ±6 sigma.
Note 5: CL includes probe and jig capacitance.
Note 6: Pulse generator output for AC tests: tR = tF = 1ns (0.2 x VCC to 0.8 x VCC), 50% duty cycle, RO = 50
Ω, VOH = VCC + 1V set-
tling to VCC, VOL = -1V settling to zero, frequency = 200MHz.
PARAMETER
SYMBOL
CONDITIONS
MIN
TYP
MAX
UNITS
0
≤ IN_, EN, EN ≤ VCC
-20
5
+20
µA
VCC
≤ IN_, EN, EN ≤ VCC + 1
0.67
1.5
Input Current
IIN
-1V
≤ IN_, EN, EN ≤ 0
-1.5
-0.46
mA
SUPPLY CURRENT
ICC
IN_ = VCC or 0, EN = VCC, EN = 0, no load
3.8
6.0
ICCL
IN_ = VCC or 0, EN = VCC, EN = 0,
outputs loaded
18
25
Supply Current
ICCZ
IN_ = VCC or 0, EN = 0, EN = VCC
3.8
6
mA
PARAMETER
SYMBOL
CONDITIONS
MIN
TYP
MAX
UNITS
Differential Propagation Delay
High to Low
tPHLD
Figures 2, 3
0.9
1.4
2.0
ns
Differential Propagation Delay
Low to High
tPLHD
Figures 2, 3
0.9
1.5
2.0
ns
Differential Pulse Skew
tSKD1
Figures 2, 3 (Note 8)
0.1
0.25
ns
Differential Channel-to-Channel
Skew
tSKD2
Figures 2, 3 (Note 9)
0.15
0.35
ns
tSKD3
Figures 2, 3 (Note 10)
0.9
Differential Part-to-Part Skew
tSKD4
Figures 2, 3 (Note 11)
1.1
ns
Rise Time
tR
Figures 2, 3
0.20
0.43
0.70
ns
Fall Time
tF
Figures 2, 3
0.20
0.41
0.70
ns
Disable Time High to Z
tPHZ
Figures 4, 5
3.9
5
ns
Disable Time Low to Z
tPLZ
Figures 4, 5
3.9
5
ns
Enable Time Z to High
tPZH
Figures 4, 5
5.0
7
ns
Enable Time Z to Low
tPZL
Figures 4, 5
5.0
7
ns
Active to High Time
tAH
RL = 80
Ω to 132Ω ±1%; Figures 6, 7
50
100
ns
High to Active Time
tHA
RL = 80
Ω to 132Ω ±1%; Figures 6, 7 (Note 12)
1.0
1.5
µs
Maximum Operating Frequency
fMAX
(Note 13)
200
MHz


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