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MXL1016CS8MAXN/a460avaiUltra-Fast Precision TTL Comparators
MXL1016CS8N/a15avaiUltra-Fast Precision TTL Comparators
MXL1016CS8MAXIMN/a600avaiUltra-Fast Precision TTL Comparators
MXL1016CS8MAXIM ?N/a240avaiUltra-Fast Precision TTL Comparators


MXL1016CS8 ,Ultra-Fast Precision TTL ComparatorsELECTRICAL CHARACTERISTICS – MXL1016(V+ = 5V, V– = -5V, V (Q) = 1.4V, V = 0V, T = T to T , unless o ..
MXL1016CS8 ,Ultra-Fast Precision TTL ComparatorsPin DescriptionPIN NAME FUNCTIONTOP VIEW1 V+ Positive Power Supply, +5V2 IN+ Noninverting Input3 IN ..
MXL1016CS8 ,Ultra-Fast Precision TTL ComparatorsApplicationsPART TEMP. RANGE PIN-PACKAGEHigh-Speed A/D ConvertersMXL1016CN8 0°C to +70°C 8 Plastic ..
MXL1016CS8 ,Ultra-Fast Precision TTL ComparatorsFeaturesThe Maxim MXL1016 (10ns typ) and MXL1116 (12ns ' Ultra Fast (10ns typ)typ) high-speed, comp ..
MXL1016CS8+ ,Ultra-Fast Precision TTL ComparatorPin DescriptionPIN NAME FUNCTION1 V+ Positive Power Supply +5VTOP VIEW2 IN+ Noninverting Input3 IN- ..
MXL1074CT ,5A/2A Step-Down / PWM / Switch-Mode DC-DC Regulatorsapplications. The MXL1074 is2A On-Chip Power Switch (MXL1076)rated at 5A, while the MXL1076 is rate ..
NDXD4812EC , Isolated 7.5W Wide Input Single & Dual Output DC/DC Converters
NDY1205C , Isolated 3W Wide Input DC/DC Converters
NDY1205C , Isolated 3W Wide Input DC/DC Converters
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NDY2403C , Isolated 3W Wide Input DC/DC Converters
NDY2403C , Isolated 3W Wide Input DC/DC Converters


MXL1016CS8
Ultra-Fast Precision TTL Comparators
_______________General Description
The Maxim MXL1016 (10ns typ) and MXL1116 (12ns
typ) high-speed, complementary-output comparators
are designed specifically to interface directly to TTL
logic while operating from either a dual ±5V supply or a
single +5V supply.
The MXL1016/MXL1116 remain stable with the outputs
in the active region, which greatly reduces output insta-
bility common with slow-moving input signals. In addi-
tion, an output latch (LE) is provided.
For lower-power, higher-performance comparators, see
the MAX912/MAX913 dual/single comparator data
sheet. The MAX913 is an improved, plug-in replace-
ment for the MXL1016 and MXL1116, and the MAX912
is the dual equivalent to the MAX913.
________________________Applications

High-Speed A/D Converters
Zero-Crossing Detectors
Current Sense for Switching Regulators
High-Speed Sampling Circuits
High-Speed Triggers
Line Receivers
Extended Range V/F Converters
Fast Pulse Height/Width Discriminators
____________________________Features
Ultra Fast (10ns typ)Single +5V or Dual ±5V Supply OperationInput Common-Mode Extends to
Negative Supply (MXL1116)
Inputs Can Exceed the Positive Supply
Up to +15V (MXL1116) Without Damage
Complementary TTL OutputsLow Offset Voltage:1mVNo Minimum Input Slew-Rate RequirementNo Power-Supply Current SpikingOutput Latch
______________Ordering Information
MXL1016/MXL1116
Ultra-Fast Precision TTL Comparators
________________________________________________________________Maxim Integrated Products1
__________________Pin Configuration_____________________Pin Description
Call toll free 1-800-998-8800 for free samples or literature.

19-0138; Rev. 2; 4/95
MXL1016/MXL1116_______________________________________________________________________________________
ABSOLUTE MAXIMUM RATINGS

Positive Supply Voltage............................................................7V
Negative Supply Voltage........................................................–7V
Differential Input Voltage
MXL1016............................................................................±5V
MXL1116..........................................................................±15V
Input Voltage (either input)
MXL1016......................................................Equal to Supplies
MXL1116....................................................(V––0.3V) to 15V
Latch Pin Voltage.............................................Equal to Supplies
Output Current (continuous).............................................±20mA
Continuous Power Dissipation (TA= +70°C)
Plastic DIP (derate 9.09mW/°C above +70°C)............727mW
SO (derate 5.88mW/°C above +70°C).........................471mW
CERDIP (derate 8.00mW/°C above +70°C).................640mW
Operating Temperature Ranges:
MXL1016C/MXL1116C.......................................0°C to +70°C
MXL1016MJ..................................................–55°C to +125°C
Storage Temperature Range............................–65°C to +150°C
Lead Temperature (soldering, 10sec).............................+300°C
ELECTRICAL CHARACTERISTICS – MXL1016

(V+ = 5V, V– = -5V, VOUT (Q) = 1.4V, VLE= 0V, TA= TMINto TMAX, unless otherwise noted.)
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.
Ultra-Fast Precision TTL Comparators
MXL1016/MXL1116
Ultra-Fast Precision TTL Comparators
_________________________________________________________________________________________________3
ELECTRICAL CHARACTERISTICS – MXL1116

(V+ = 5V, V– = –5V, VOUT (Q) = 1.4V, VLE= 0V, TA= TMINto TMAX, unless otherwise noted. Specifications for VOS, IB, CMRR and AV
are valid for single-supply operation, V+ = 5V, V– = 0V.)
Note 1:
Input offset voltage is defined as the average of the two input offset voltages, measured by forcing first one output, then the
other to 1.4V. Input offset current is defined in the same way.
Note 2:
Input bias current (IB) is defined as the average of the two input currents.
Note 3:
tPDand ΔtPDcannot be measured in automatic handling equipment with low values of overdrive. Correlation tests have
shown that tPDand ΔtPDlimits shown can be guaranteed by design, if additional DC tests are performed to guarantee that
all internal bias conditions are correct. For low overdrive conditions, VOSis added to overdrive.
Note 4:
Input latch setup time, tSU, is the interval in which the input signal must be stable prior to asserting the latch signal. The hold
time, tH, is the interval after the latch is asserted in which the input signal must be stable.
Maxim cannot assume responsibility for use of any circuitry other than circuitry entirely embodied in a Maxim product. No circuit patent licenses are
implied. Maxim reserves the right to change the circuitry and specifications without notice at any time._____________________________Maxim Integrated Products, 120 San Gabriel Drive, Sunnyvale, CA 94086 (408) 737-76001995 Maxim Integrated Products Printed USAis a registered trademark of Maxim Integrated Products.
MXL1016/MXL1116
Ultra-Fast Precision TTL Comparators
_______________________________________________________Package Information
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