Storage Temperature Range .............................-65°C to +150°C
Junction Temperature ......................................................+150°C
Lead Temperature (soldering, 10s) .................................+300°C
Soldering Temperature (reflow) .......................................+260°C
Stresses beyond those listed under “Absolute Maximum Ratings” may cause permanent damage to the device. These are stress ratings only, and functional
operation of the device at these or any other conditions beyond those indicated in the operational sections of the specifications is not implied. Exposure to
absolute maximum rating conditions for extended periods may affect device reliability.
ELECTRICAL CHARACTERISTICS
(V
DD
= +8V, V
SS
= -5V, V
L
= +3V, V
COMPHI
= +1V, V
COMPLO
= 0V, V
LDV_
= 0V, LOAD EN LOW = LOAD EN HIGH = 0,
T
J
= +75°C. All temperature coefficients measured at T
J
= +50°C to +100°C, unless otherwise noted.) (Note 1)
PARAMETER
DC CHARACTERISTICS
Voltage Range
Gain
Gain Temperature Coefficient
Offset
Offset Temperature Coefficient
Power-Supply Rejection Ratio
Maximum DC Drive Current
DC Output Resistance
DC Output Resistance Variation
PSRR
I
DUT_
V
DD
, V
SS
independently varied over full
range
All drive mode specs valid over this range
I
DUT_
= ±10mA (Note 2)
I
DUT_
= -40mA to +40mA
DHV_ to DLV_ and DTV_:
V
DLV_
= V
DTV_
= +1.5V,
V
DHV_
= -2.2V, +5.2V
DC Crosstalk
DLV_ to DHV_ and DTV_:
V
DHV_
= V
DTV_
= +1.5V,
V
DLV_
= -2.2V, +5.2V
DTV_ to DHV_ and DLV_:
V
DHV_
= V
DLV_
= +1.5V,
V
DTV_
= -2.2V, +5.2V
Linearity Error
0 to 3V (Note 3)
Full range (Note 4)
±40
48.5
49.5
50.5
2.5
5
V
DHV_
= 2V, V
DLV_
= 0V, V
DTV_
= 1V
±250
18
Measured at 0V and 3V
-2.2
0.995
1
50
±10
+5.2
1.005
V
V/V
ppm/°C
mV
µV/°C
mV/V
mA
Ω
Ω
SYMBOL
CONDITIONS
MIN
TYP
MAX
UNITS
DRIVER (all specifications apply when DUT_ = DHV_, DUT_ = DTV_, or DUT_ = DLV_)
5
mV
5
±5
±15
mV
mV
2
Maxim Integrated
MAX9972
Quad, Ultra-Low-Power, 300Mbps ATE
Drivers/Comparators
ELECTRICAL CHARACTERISTICS (continued)
(V
DD
= +8V, V
SS
= -5V, V
L
= +3V, V
COMPHI
= +1V, V
COMPLO
= 0V, V
LDV_
= 0V, LOAD EN LOW = LOAD EN HIGH = 0,
T
J
= +75°C. All temperature coefficients measured at T
J
= +50°C to +100°C, unless otherwise noted.) (Note 1)
PARAMETER
AC CHARACTERISTICS (Note 5)
Dynamic Output Current
Drive-Mode Overshoot,
Undershoot, and Preshoot
Term-Mode Spike
High-Impedance-Mode Spike
Propagation Delay, Data to Output
Prop-Delay Temperature
Coefficient
Prop-Delay Match, t
LH
vs. t
HL
Prop-Delay Skew, Drivers Within
Package
3V
P-P
, 40MHz,
PW = 4ns to 21ns
1V
P-P
, 40MHz,
PW = 2.5ns to 23.5ns
(Note 1)
200mV to 4V
P-P
swing (Note 6)
V
DHV_
= V
DTV_
= 1V, V
DLV_
= 0V
V
DLV_
= V
DTV_
= 0V, V
DHV_
= 1V
V
DLV_
= -1V, V
DHV_
= 0V
V
DLV_
= 0V, V
DHV_
= 1V
1.6
40
5%
+10
25
25
25
25
2.6
10
30
150
20
ps
90
80
1.8
1.6
25
0.7
0.7
1.5
2.0
2.6
3.4
±5
1.8
2.4
3.3
ns
%
2.5
ns
ps
ns
ns
mV
4.2
mA
mV
mV
mV
ns
ps/°C
ps
ps
SYMBOL
CONDITIONS
MIN
TYP
MAX
UNITS
Prop-Delay Change vs. Pulse
Width
Relative to 12.5ns
pulse
Prop-Delay Change vs. Common-
Mode Voltage
Prop Delay, Data to High
Impedance
Prop Delay, Data to Term
Minimum Voltage Swing
1V
P-P
, V
DLV_
= 0 to 3V, relative to delay at
V
DLV_
= 1V
V
DHV_
= +1.5V, V
DLV_
= -1.5V, both
directions
V
DHV_
= +1.5V, V
DLV_
= -1.5V, V
DTV_
= 0V,
both directions
(Note 7)
V
DHV_
= 0.2V, V
DLV_
= 0V, 20% to 80%
V
DHV_
= 1V, V
DLV_
= 0V, 20% to 80%
V
DHV_
= 3V, V
DLV_
= 0V, 10% to 90%
Rise/Fall Time
V
DHV_
= 4V, V
DLV_
= 0V,
R
L
= 500_, 10% to 90%
V
DHV_
= 5V, V
DLV_
= 0V,
R
L
= 500_, 10% to 90%
Rise/Fall-Time Matching
Minimum Pulse Width (Note 8)
V
DHV_
= 1V to 5V
200mV, V
DHV_
= 0.2V, V
DLV_
= 0V
1V, V
DHV_
= 1V, V
DLV_
= 0V
3V, V
DHV_
= 3V, V
DLV_
= 0V
Maxim Integrated
3
MAX9972
Quad, Ultra-Low-Power, 300Mbps ATE
Drivers/Comparators
ELECTRICAL CHARACTERISTICS (continued)
(V
DD
= +8V, V
SS
= -5V, V
L
= +3V, V
COMPHI
= +1V, V
COMPLO
= 0V, V
LDV_
= 0V, LOAD EN LOW = LOAD EN HIGH = 0,
T
J
= +75°C. All temperature coefficients measured at T
J
= +50°C to +100°C, unless otherwise noted.) (Note 1)
PARAMETER
COMPARATOR (Note 9)
DC CHARACTERISTICS (driver in high-impedance mode) (V
COMPHI
= 0.8V, V
COMPLO
= 0.2V)
Input Voltage Range
Differential Input Voltage
Hysteresis
Input Offset Voltage
Input Offset Temperature
Coefficient
Common-Mode Rejection Ratio
Linearity Error (Note 10)
Power-Supply Rejection Ratio
AC CHARACTERISTICS (Note 11)
Equivalent Input Bandwidth
Propagation Delay
Prop-Delay Temperature
Coefficient
Prop-Delay Match, t
LH
to t
HL
Prop-Delay Skew, Comparators
Within Package
Prop-Delay Dispersions vs.
Common-Mode Voltage
(Note 14)
Prop-Delay Dispersions vs.
Overdrive
Prop-Delay Dispersions vs.
Pulse Width
Prop-Delay Dispersions vs.
Slew Rate
Same edges (LH and HL)
0 to 4.9V
-1.9V to +4.9V
V
CHV_
= V
CLV_
= 0.1V to 0.9V,
V
DUT_
= 1V
P-P
, t
R
= t
F
= 500ps, 10% to
90% relative to timing at 50% point
2ns to 23ns pulse width, relative to 12.5ns
pulse width
0.5V/ns to 2V/ns
Terminated (Note 12)
High impedance (Note 13)
0.9
500
300
2.2
4
120
200
20
ps
30
3.1
MHz
ns
ps/°C
ps
ps
PSRR
CMRR
V
DUT_
= 0 and 3V
V
DUT_
= 1.5V
V
DUT_
= -2.2V, +5.2V
V
DUT_
= 1.5V, supplies independently
varied over full range
60
±5
±10
5
V
DUT_
- V
CHV_
, V
DUT_
- V
CLV_
V
CHV_
= V
CLV_
= 1.5V
V
DUT_
= 1.5V
25
-2.2
-7.4
8
±10
+5.2
+7.4
V
V
mV
mV
µV/°C
dB
mV
mV/V
SYMBOL
CONDITIONS
MIN
TYP
MAX
UNITS
220
ps
±60
50
ps
ps
4
Maxim Integrated
MAX9972
Quad, Ultra-Low-Power, 300Mbps ATE
Drivers/Comparators
ELECTRICAL CHARACTERISTICS (continued)
(V
DD
= +8V, V
SS
= -5V, V
L
= +3V, V
COMPHI
= +1V, V
COMPLO
= 0V, V
LDV_
= 0V, LOAD EN LOW = LOAD EN HIGH = 0,
T
J
= +75°C. All temperature coefficients measured at T
J
= +50°C to +100°C, unless otherwise noted.) (Note 1)