MAX9975ARCCQ+TD Maxim Integrated, MAX9975ARCCQ+TD Datasheet - Page 8

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MAX9975ARCCQ+TD

Manufacturer Part Number
MAX9975ARCCQ+TD
Description
Buffers & Line Drivers
Manufacturer
Maxim Integrated
Datasheet

Specifications of MAX9975ARCCQ+TD

Rohs
yes
Dual, Low-Power, 1200Mbps ATE
Driver/Comparator with 35mA Load
ELECTRICAL CHARACTERISTICS (continued)
(MAX9975AR: V
V
cients are measured at T
8
COMPARATOR AC CHARACTERISTICS (Note 22)
Bandwidth
Minimum Pulse Width (Note 23)
Prop Delay
Prop-Delay Temperature
Coefficient
Prop-Delay Match, High/Low vs.
Low/High
Prop-Delay Match High vs. Low
Comparator
Prop-Delay Match, Comparators
within Package
Prop-Delay Dispersion vs.
Common-Mode Input (Note 24)
Prop-Delay Dispersion vs.
Overdrive
Prop-Delay Dispersion vs. Pulse
Width
Prop-Delay Dispersion vs. Slew
Rate
Waveform Tracking 10% to 90%
DUT_ Slew-Rate Tracking
CPLV_
_______________________________________________________________________________________
= -1.7V. V
PARAMETER
CC
CCO_
= +9.75V, V
= +1.8V, V
J
= +60°C to +100°C, unless otherwise noted.) (Note 1)
EE
LDH_
= -4.75V, V
SYMBOL
= V
t
PW(MIN)
t
PDL
LDL_
CPHV_
= 0V, V
Term mode, t
High-impedance mode
(Note 16)
MAX9975AR
MAX9975AZ
V
V
90% relative to timing at 50% point
V
V
90% relative to timing at 50% point
0.6ns to 24.4ns pulse width, relative to
12.5ns pulse width
0.5V/ns to 6V/ns slew rate, relative to 4V/ns
slew rate
V
term mode, 10% to 90% relative to timing at
50% point
V
high-impedance mode, 10% to 90% relative
to timing at 50% point
V
high-impedance mode, 10% to 90% relative
to timing at 50% point
Term mode
High-impedance mode
= +7.2V, V
CHV_
DUT
CHV_
DUT
DUT
DUT
DUT
GS
_ = 1V
_ = 0.2V
_ = 1.0V
_ = 1.0V
_ = 3V
= 0V, R
= V
= V
CPLV_
CLV_
CLV_
P-P
P-P
R
P-P
P-P
P-P
HYS_
, t
, t
CONDITIONS
= t
= 0.1V to 0.9V,
= 40mV to 160mV,
V
to +6.4V
V
to +6.9V
= -2.2V. MAX9975AZ: V
R
, t
, t
, t
R
CHV_
CHV_
F
= t
R
R
R
= t
= open, T
= 150ps
= t
= t
= t
F
F
= V
= V
= 250ps, 10% to
= 500ps,
F
F
F
= 150ps, 10% to
= 250ps,
= 250ps,
CLV_
CLV_
J
= +85°C, unless otherwise noted. All temperature coeffi-
= -1.4V
= -0.9V
CC
= +10.25V, V
MIN
1.5
0.5
0.9
EE
±250
±150
+1.7
TYP
±10
±50
±80
±40
±40
±30
±30
±40
500
2.5
0.7
1.3
= -4.25V, V
40
40
6
5
±350
±200
MAX
±50
±70
±60
±50
±60
±70
650
1.7
60
60
CPHV_
= +7.7V,
UNITS
ps/°C
GHz
V/ns
ps
ns
ps
ps
ps
ps
ps
ps
ps
ps

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