MAX9966BGCCQ+TD Maxim Integrated, MAX9966BGCCQ+TD Datasheet - Page 2

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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
ABSOLUTE MAXIMUM RATINGS
V
V
All Other Pins ...................................(V
V
DUT_ to GND.........................................................-2.5V to +7.5V
DATA_, NDATA_, RCV_, NRCV_ to GND ................-2.5 to +5.0V
DATA_ to NDATA_ ................................................….……..±1.5V
RCV_ to NRCV_ ....................................................…………±1.5V
V
SCLK, DIN, CS, RST to GND ...............................…-1.0V to +5V
DHV_, DLV_, DTV_, CHV_, CLV_ to GND .............-2.5V to +7.5V
CPHV_ to GND ......................................................-2.5V to +8.5V
CPLV_ to GND.......................................................-3.5V to +7.5V
DHV_ to DLV_........................................................…………±10V
DHV_ to DTV_........................................................…………±10V
Quad Low-Power, 500Mbps
ATE Driver/Comparator
ELECTRICAL CHARACTERISTICS
(V
All temperature coefficients are measured at T
*Dissipation wattage values are based on still air with no heat sink for the MAX9965 and slug soldered to board copper for the MAX9966.
Actual maximum power dissipation is a function of users’ heat extraction technique and may be substantially higher.
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.
2
POWER SUPPLIES
Positive Supply
Negative Supply
Positive Supply
Negative Supply
Power Dissipation
DUT_ CHARACTERISTICS
Operating Voltage Range Max
Leakage Current in High-Z Mode
Leakage Current in Low-Leakage
Mode
Combined Capacitance
Low-Leakage Enable Time
Low-Leakage Disable Time
Low-Leakage Recovery
CC
EE
CC
CCO_ _
CC
to GND............................................................-7.0V to +0.3V
_______________________________________________________________________________________
to GND .........................................................-0.3V to +11.5V
- V
= +9.75V, V
EE
to GND ....................................................…-0.3V to +5V
................................................................-0.3V to +18V
PARAMETER
EE
= -5.25V, V
CCO_ _
SYMBOL
EE
C
V
I
I
V
= 2.5V, SC1 = SC0 = 0, V
V
I
I
DUT
DUT
P
DUT
CC
DUT
EE
CC
- 0.3V) to (V
EE
D
J
= +60°C to +100°C, unless otherwise noted.) (Note 1)
(Note 2)
(Note 2)
(Notes 2, 3)
(Note 4)
LLEAK = 0, 0 ≤ V
LLEAK = 0, V
LLEAK = 1, 0 ≤ V
LLEAK = 1, V
LLEAK = 1, V
Driver in term mode (DUT_ = DTV_)
Driver in high-Z mode
(Notes 5, 7)
(Notes 6, 7)
Time to return to the specified maximum
leakage after a 3V, 4V/ns step at DUT_
(Note 7)
CC
+ 0.3V)
DUT_
DUT_
DUT_
CONDITIONS
DUT_
DUT_
CPHV_
= -1.5V, 6.5V
= -1.5V,T
= 6.5V, T
DLV_ to DTV_ ........................................................…………±10V
CHV_ or CLV_ to DUT_..........................................…………±10V
CH_, NCH_, CL_, NCL_ to GND...............................-2.5V to +5V
Current into DHV_, DLV_, DTV_,
Current into TEMP ............................................-0.5mA to +20mA
DUT_ Short Circuit to -1.5V to +6.5V .....................….Continuous
Power Dissipation (T
Storage Temperature Range .............................-65°C to +150°C
Junction Temperature .........................................….……+125°C
Lead Temperature (soldering, 10s) .....................……….+300°C
≤ 3V
≤ 3V, T
CHV_, CLV_, CPHV_, CPLV_........................................±10mA
MAX9965__CCQ (derate 167mW/°C
above +70°C) ...............................................................13.3W*
MAX9966__CCQ (derate 47.6mW/°C
above +70°C) .................................................................3.8W*
= 7.2V, V
J
J
< +90°C
J
< +90°C
< +90°C
CPLV_
= -2.2V, T
A
= +70°C)
J
MIN
-6.5
-1.5
9.5
=
+85°C, unless otherwise noted.
-5.25
TYP
9.75
-370
200
3.9
20
20
10
3
5
MAX
-425
+6.5
10.5
-4.5
±15
±30
±30
225
4.5
±2
±5
UNITS
mA
mA
µA
nA
pF
µs
µs
µs
W
V
V
V

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