max9150euit Maxim Integrated Products, Inc., max9150euit Datasheet - Page 4

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max9150euit

Manufacturer Part Number
max9150euit
Description
Max9150 Low-jitter, 10-port Lvds Repeater
Manufacturer
Maxim Integrated Products, Inc.
Datasheet
AC ELECTRICAL CHARACTERISTICS (continued)
(V
to +85°C, unless otherwise noted. Typical values are at V
Low-Jitter, 10-Port LVDS Repeater
(Figure 2, V
4
Note 1: Current-into-device pins is defined as positive. Current-out-of-device pins is defined as negative. All voltages are
Note 2: Guaranteed by design, not production tested.
Note 3: AC parameters are guaranteed by design and characterization.
Note 4: C
Note 5: Signal generator conditions, unless otherwise noted: frequency = 200MHz, 50% duty cycle, R
Note 6: Signal generator conditions for t
Note 7: t
Note 8: t
Note 9: Device meets V
Power-Down Time
Power-Up Time
CC
150
140
130
120
110
100
_______________________________________________________________________________________
90
= +3.0V to +3.6V, R
0.1
referenced to ground, except V
1ns (0% to 100%).
and t
SKOO
SKPP
L
SUPPLY CURRENT vs. FREQUENCY
PARAMETER
CC
includes scope probe and test jig capacitance.
F
is the
= +3.3V, R
= 1ns (0% to 100%. t
is the magnitude difference in differential propagation delay between outputs for a same-edge transition.
1
INPUT FREQUENCY (MHz)
|
MAX - MIN
10
OD
L
L
= 50Ω ±1%, C
= 50Ω, C
and AC specifications while operating at f
100
|
differential propagation delay.
JPP
L
SYMBOL
= 5pF, IV
1000
TH
includes pulse (duty cycle) skew.
t
t
JPP
PD
PU
L
, V
= 5pF,
: V
TL
OD
, V
ID
2.40
2.35
2.30
2.25
2.20
2.15
2.10
I = 200mV, V
Figures 4, 5
OD
= 200mV, V
|
V
3.0
, and ∆V
ID
DIFFERENTIAL PROPAGATION DELAY
|
= 0.2V to 1.0V, V
CC
3.1
= +3.3V, T
vs. SUPPLY VOLTAGE
OD
t
OS
PHLD
CM
3.2
.
CONDITIONS
= 1.2V, frequency = 200MHz, 50% duty cycle, R
= 1.2V, f
V
CC
3.3
MAX
(V)
A
Typical Operating Characteristics
= +25°C.) (Notes 2–5)
t
CM
PLHD
.
3.4
IN
=
= 50MHz, T
|
3.5
V
ID
/ 2
3.6
|
to 2.4V -
A
= +25°C, unless otherwise noted.)
2.40
2.35
2.30
2.25
2.20
2.15
2.10
|
V
50
ID
MIN
DIFFERENTIAL PROPAGATION DELAY
/ 2
O
|
60
= 50Ω, t
, PWRDN = high, T
t
PHLD
vs. OUTPUT LOAD
TYP
70
R
R
t
PLHD
O
L
= 1ns, and t
(Ω)
= 50Ω, t
80
MAX
100
100
A
R
90
= -40°C
= 1ns,
UNITS
F
ns
µs
=
100

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