MAX9966BGCCQ+TD Maxim Integrated, MAX9966BGCCQ+TD Datasheet - Page 7

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MAX9966BGCCQ+TD

Manufacturer Part Number
MAX9966BGCCQ+TD
Description
Buffers & Line Drivers
Manufacturer
Maxim Integrated
Datasheet

Specifications of MAX9966BGCCQ+TD

Rohs
yes
ELECTRICAL CHARACTERISTICS (continued)
(V
All temperature coefficients are measured at T
Differential Rise Time
Differential Fall Time
CLAMPS
High Clamp Input Voltage Range
Low Clamp Input Voltage Range
Clamp Offset Voltage
Offset Voltage Temperature
Coefficient
Clamp Power-Supply Rejection
Voltage Gain
Voltage Gain Temperature
Coefficient
Clamp Linearity
Short-Circuit Output Current
Clamp DC Impedance
Note 1: All min and max limits are 100% tested in production. Tests are performed at worst-case supply voltages where applicable.
Note 2: Total for quad device at worst-case setting. R
Note 3: Does not include internal dissipation of the comparator outputs. With output loads of 50Ω to (V
Note 4: Provided that the Absolute Maximum Ratings are not exceeded, externally forced voltages may exceed this range.
Note 5: Transition time from LLEAK being asserted to leakage current dropping below specified limits.
Note 6: Transition time from LLEAK being deasserted to output returning to normal operating mode.
Note 7: Based on simulation results only.
Note 8: With the exception of Offset and Gain/CMRR tests, reference input values are calibrated for offset and gain.
Note 9: Relative to straight line between 0 and 3V.
Note 10: Full ranges are -1.3V ≤ V
Note 11: Nominal target value is 50Ω. Contact factory for alternate trim selections within the 40Ω to 50Ω range.
Note 12: V
Note 13: Measured from the crossing point of DATA_ inputs to the settling of the driver output.
CC
= +9.75V, V
voltages.
240mW typical to the total chip power (MAX996_ _HCCQ, MAX996_ _JCCQ).
Measurement is made using the comparator.
PARAMETER
DTV_
= 1.5V, R
EE
= -5.25V, V
_______________________________________________________________________________________
S
= 50Ω. External signal driven into T-line is a 0 to 3V edge with 1.2ns rise time (10% to 90%).
CCO_ _
DHV_
SYMBOL
V
V
PSRR
R
I
V
= 2.5V, SC1 = SC0 = 0, V
CPH_
CPL_
DUT
A
OUT
≤ 6.5V, -1.5V ≤ V
t
t
OS
R
F
V
J
At DUT_ with I
At DUT_ with I
V
and max values, I
V
and max values, I
I
V
I
V
V
V
V
I
V
I
= +60°C to +100°C, unless otherwise noted.) (Note 1)
20% to 80%
20% to 80%
DUT_
DUT_
DUT
DUT
CC
CC
CPHV_
CPLV_
CPHV_
CPLV_
CPHV_
CPHV_
and V
and V
= -5mA and -15mA
= 5mA and 15mA
= 1mA, V
= -1mA, V
L
= -1.5V to 5.3V
= 5V, V
= -0.3V to 6.5V
= 0, V
= 3V, V
= 3V, V
DTV_
≥ 10MΩ. The applicable supply currents are measured with typical supply
Quad Low-Power, 500Mbps
EE
EE
independently set to their min
independently set to their min
CPLV_
DUT_
DUT_
≤ 6.5V, -1.5V ≤ V
CPHV_
CPLV_
CPLV_
CPLV_
CPHV_
CONDITIONS
DUT_
DUT_
CPHV_
= 1mA, V
= -1mA, V
= -1.5V, V
= -1.5V,
= 6.5V, V
= 0,
= 0,
ATE Driver/Comparator
= 6.5V,
= 1mA, V
= -1mA, V
= 7.2V, V
CPHV_
CPLV_
DUT_
DUT_
DLV_
CPHV_
CPLV_
CPLV_
= 1.5V
= 6.5V
= 1.5V
≤ 6.3V.
= -1.5V
= 0
= 0
= -2.2V, T
J
0.96
MIN
-0.3
-2.5
-95
40
40
50
50
50
= +85°C, unless otherwise noted.
VCCO_ _
TYP
±0.5
-100
500
500
±10
±10
- 2V), this adds
±100
±100
MAX
+7.5
+5.3
1.00
-50
95
55
55
ppm/°C
mV/°C
UNITS
mV
V/V
mV
mA
dB
ps
ps
Ω
V
V
7

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