MAX9977AKCCQ+D Maxim Integrated, MAX9977AKCCQ+D Datasheet - Page 6

no-image

MAX9977AKCCQ+D

Manufacturer Part Number
MAX9977AKCCQ+D
Description
Buffers & Line Drivers
Manufacturer
Maxim Integrated
Datasheet

Specifications of MAX9977AKCCQ+D

Rohs
yes
Quad, Low-Power, 1200Mbps
ATE Driver
ELECTRICAL CHARACTERISTICS (continued)
(V
at T
6
Note 1: Unless otherwise specified, all minimum and maximum DC and AC driver 3V rise and fall time test limits are 100% tested at
Note 2: Total is for a quad device and is specified at the worst-case setting. The supply currents are measured with typical supply
Note 3: Externally forced voltages may exceed this range provided that the Absolute Maximum Ratings are not exceeded.
Note 4: Transition time from LLEAK being asserted to leakage current dropping below specified limits.
Note 5: Based on simulation results only.
Note 6: Transition time from LLEAK being deasserted to output returning to normal operating mode.
Note 7: With the exception of offset and gain/CMRR tests, reference input values are calibrated for offset and gain.
Note 8: Specifications measured at the end points of the full range. Full range is -1.3V ≤ V
Note 9: Relative to straight line between 0 and 4.5V.
Note 10: Change in offset voltage with power supplies independently set to their minimum and maximum values.
Note 11: Nominal target value is 47Ω. Contact factory for alternate trim selections within the 45Ω to 51Ω range.
Note 12: Measured from the crossing point of DATA_ inputs to the settling of the driver output.
Note 13: Prop delays are measured from the crossing point of the differential input signals to the 50% point of the expected output
Note 14: Rising edge to rising edge or falling edge to falling edge.
Note 15: Specified amplitude is programmed. At this pulse width, the output reaches at least 90% of its nominal (DC) amplitude. The
Note 16: Specified amplitude is programmed. Maximum data rate is specified in transitions per second. A square wave that reaches
Note 17: Crosstalk from one driver to any other. Aggressor channel is driving 3V
Note 18: Indicative of switching speed from DHV_ or DLV_ to DTV_ and DTV_ to DHV_ or DLV_ when V
Minimum Pulse Width
(Note 15)
Data Rate
(Note 16)
Dynamic Crosstalk
Rise and Fall Time, Drive to Term
Rise and Fall Time, Term to Drive
GROUND SENSE
GS Voltage Range
GS Input Bias Current
CC
J
_______________________________________________________________________________________
= +60°C to +100°C, unless otherwise noted.) (Note 1)
= +9.75V, V
production. All other test limits are guaranteed by design. All tests are performed at nominal supply voltages, unless other-
wise noted.
voltages.
-1.5V ≤ V
swing. Rise time of the differential inputs DATA_ and RCV_ are 250ps (10% to 90%).
pulse width is measured at DATA_.
at least 90% of its programmed amplitude may be generated at one-half of this frequency.
with V
V
PARAMETER
DTV_
DTV_
< V
EE
DTV_
= -4.75V, V
DLV_
= +1.5V.
≤ +6.5V.
or V
DTV_
GS
= 0, V
> V
DHV_
t
t
SYMBOL
DTR
TDR
T
12 = V
V
GS
, t
, t
, switching speed is degraded by a factor of approximately 3.
DTF
TDF
T
34 = 1.8V, T
0.2V
1V
2V
3V
5V
0.2V
1V
2V
3V
5V
(Note 17)
V
10% to 90%, Figure 1a (Note 18)
V
10% to 90%, Figure 1b (Note 18)
V
DHV
DHV
GS
P-P
P-P
P-P
P-P
P-P
P-P
P-P
P-P
P-P
P-P
= 0
_ = 3V, V
_ = 3V, V
, Z
, Z
L
L
J
= 500Ω
= 500Ω
= +85°C, unless otherwise noted. All temperature coefficients are measured
DLV
DLV
CONDITIONS
_ = 0, V
_ = 0, V
DTV
DTV
_ = 1.5V,
_ = 1.5V,
P-P
into a 50Ω load. Victim channel is in term mode
DHV_
±250
MIN
0.6
0.6
≤ +6.5V, -1.5V ≤ V
1300
1800
1800
1500
1200
DLV_
TYP
550
550
650
850
800
1.0
1.0
15
< V
MAX
1000
DTV_
±25
630
750
1.3
1.3
DLV_
< V
≤ +6.3V,
UNITS
mV
DHV_
Mbps
mV
µA
ps
ns
ns
P-P
. If

Related parts for MAX9977AKCCQ+D