max9963bjccq-td Maxim Integrated Products, Inc., max9963bjccq-td Datasheet - Page 8

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max9963bjccq-td

Manufacturer Part Number
max9963bjccq-td
Description
Quad Low-power 500mbps Ate Driver/comparator
Manufacturer
Maxim Integrated Products, Inc.
Datasheet
ELECTRICAL CHARACTERISTICS (continued)
(V
perature coefficients are measured at T
Quad, Low-Power, 500Mbps
ATE Driver/Comparator
Note 1:
Note 2:
Note 3:
Note 4:
Note 5:
Note 6:
Note 7:
Note 8:
Note 9:
Note 10: Full ranges are -1.3V ≤ V
Note 11: Nominal target value is 50Ω. Contact factory for alternate trim selections within the 45Ω to 51Ω range.
Note 12: V
Note 13: Measured from the crossing point of DATA_ inputs to the settling of the driver output.
Note 14: Prop delays are measured from the crossing point of the differential input signals to the 50% point of expected output
8
Voltage Gain
Voltage-Gain Temperature
Coefficient
Clamp Linearity
Short-Circuit Output Current
Clamp DC Impedance
CC
_______________________________________________________________________________________
= +9.75V, V
All MIN and MAX limits are 100% tested in production.
Total for quad device at worst-case setting. R
voltages.
Does not include internal dissipation of the comparator outputs. With output loads of 50Ω to (V
240mW (typ) to the total chip power (MAX996_ _HCCQ, MAX996_ _JCCQ).
Externally forced voltages may exceed this range provided that the absolute maximum ratings are not exceeded.
Transition time from LLEAK being asserted to leakage current dropping below specified limits.
Transition time from LLEAK being deasserted to output returning to normal operating mode.
Based on simulation results only.
With the exception of offset and gain/CMRR tests, reference input values are calibrated for offset and gain.
Relative to straight line between 0 and 3V.
Measurement is made using the comparator.
swing. Rise time of the differential inputs DATA_ and RCV_ is 250ps (10% to 90%).
PARAMETER
DTV_
EE
= 1.5V, R
= -5.25V, V
S
CCO_ _
= 50Ω. External signal driven into T-line is a 0 to 3V edge with 1.2ns rise time (10% to 90%).
DHV_
= 2.5V, SC1 = SC0 = 0, V
J
SYMBOL
= +70°C to +100°C, unless otherwise noted.) (Note 1)
≤ 6.5V, -1.5V ≤ V
A
V
I
to 6.5V
I
to 5.3V
V
V
V
V
V
I
V
I
DUT
DUT
DUT
DUT
CPHV_
DUT_
CPLV_
DUT_
CPHV_
CPHV_
= 1mA, V
= -1mA, V
= -5mA and -15mA
= 5mA and 15mA
L_
= 6.0V
= -1.0V
DTV_
= 5V, V
= 0, V
= 3V, V
= 3V, V
≥ 10MΩ. The applicable supply currents are measured with typical supply
CPHV_
≤ 6.5V, -1.5V ≤ V
CPLV_
CPLV_
CPHV_
CPHV_
CONDITIONS
CPLV_
CPLV_
= 7.2V, V
= -1.5V,
= -1.5V, V
= 6.5V, V
= 6.5V,
= 0,
= 0,
CPLV_
DLV_
CPHV_
CPLV_
= -2.2V, T
≤ 6.3V.
= -0.3
= -1.5
J
= +85°C, unless otherwise noted. All tem-
0.96
MIN
-95
50
50
50
TYP
-100
±10
±10
VCCO_ _
MAX
1.00
-50
- 2V), this adds
95
55
55
ppm/°C
UNITS
V/V
mV
mA

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