MAX9176EUB+T Maxim Integrated, MAX9176EUB+T Datasheet - Page 4

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MAX9176EUB+T

Manufacturer Part Number
MAX9176EUB+T
Description
LVDS Interface IC 670MHz LVDS->LVDS & X->LVDS 2
Manufacturer
Maxim Integrated
Datasheet

Specifications of MAX9176EUB+T

Rohs
yes
AC ELECTRICAL CHARACTERISTICS
(V
V
erwise noted. Typical values are at V
670MHz LVDS-to-LVDS and
Anything-to-LVDS 2:1 Multiplexers
Note 1: Current into a pin is defined as positive. Current out of a pin is defined as negative. All voltages are referenced to ground
Note 2: Maximum and minimum limits over temperature are guaranteed by design and characterization. Devices are 100% tested
Note 3: Tolerance on all external resistors (including figures) is ±1%.
Note 4: Guaranteed by design and characterization.
Note 5: AC parameters are guaranteed by design and characterization and not production tested. Limits are set at 6 sigma.
Note 6: C
Note 7: Pulse-generator output for differential inputs IN_+, IN_- (unless otherwise noted): f = 670MHz, 50% duty cycle, R
Note 8: Pulse-generator output for t
Note 9: t
Note 10: t
Note 11: Meets all AC specifications.
Note 12: Input jitter subtracted from output jitter.
4
DIFFERENTIAL INPUTS (IN_+, IN_-)
High-to-Low Propagation Delay
Low-to-High Propagation Delay
Added Deterministic Jitter
Added Random Jitter
Pulse Skew  t
Part-to-Part Skew
Rise Time
Fall Time
Select to Out Delay
Power-Down Time
Power-Up Time
Maximum Data Rate
Maximum Switching Frequency
Switching Supply Current
PRBS Supply Current
CM
CC
_______________________________________________________________________________________
= |V
= 3.0V to 3.6V, R
except V
ID
at T
t
to 0.8V
= 500ps (0% to 100%).
conditions.
conditions.
R
SKPP1
SKPP2
L
/2| to 2.4V - |V
PARAMETER
= 500ps, and t
includes scope probe and test jig capacitance.
A
= +25°C.
PLH
CC
is the magnitude of the difference of any differential propagation delays between devices operating under identical
is the magnitude of the difference of any differential propagation delays between devices operating over rated
TH
), 50% duty cycle, V
- t
, V
PHL
TL
L
ID
, V
= 100 , C
F
/2|, MAX9177 input common-mode voltage V
ID
= 500ps (0% to 100%). Pulse-generator output for single-ended inputs PD, SEL: t
, V
OD
, and V
L
DJ
CC
SYMBOL
= 5pF, differential input voltage V
OH
: V
DR
t
t
I
I
SKPP1
SKPP2
= 3.3V, V
CCSW
f
CCPR
t
t
t
t
PSO
MAX
PHL
PLH
t
SKP
t
t
t
OD
DJ
t
t
PD
PU
RJ
R
MAX
F
= V
OD
= 0.15V, V
CC
.
+ 1.0V settling to V
ID
Figures 4, 5
Figures 4, 5
Figures 4, 5 (Notes 8, 12)
Figures 4, 5 (Note 12)
Figures 4, 5
Figures 4, 5 (Note 9)
Figures 4, 5 (Note 10)
Figures 4, 5
Figures 4, 5
Figure 6
Figures 7, 8
Figures 7, 8
Figures 4, 5, V
Figures 4, 5, V
f
f
DR = 800Mbps, 2
IN
IN
= 0.2V, V
= 670MHz
= 155MHz
OS
= 1.25V, bit rate = 800Mbps, 2
CM
CONDITIONS
= 1.25V, T
OD
OD
23
CC
 ≥ 250mV (Note 11)
 ≥ 250mV (Note 11)
- 1 PRBS input
, V
CM
ID
OL
= |V
A
= 0.15V to 1.2V, MAX9176 input common-mode voltage
= -1.0V settling to zero.
= +25°C.) (Notes 5, 6, 7)
ID
/2| to V
CC
23
- |V
- 1 PRBS, R
ID
/2|, T
1.33
1.33
MIN
217
157
800
670
A
= -40°C to +85°C, unless oth-
O
= 50 , t
TYP
2.46
2.49
320
340
0.7
0.4
2.0
68
27
38
26
27
R
= t
F
R
= 1.5ns (0.2V
= 500ps, and t
MAX
3.23
3.31
142
383
360
1.0
1.3
2.0
2.7
6.0
80
35
58
47
49
O
= 50 ,
ps
ps
UNITS
Mbps
MHz
mA
mA
(RMS)
ps
ps
ps
ns
ns
(P-P)
ns
ns
ns
µs
CC
F

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