LMC6035, LMC6035-Q1, LMC6036
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SNOS875G –JANUARY 2000–REVISED APRIL 2013
LMC6035/LMC6035-Q1/LMC6036 Low Power 2.7V Single Supply CMOS Operational
Amplifiers
Check for Samples: LMC6035, LMC6036
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FEATURES
APPLICATIONS
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(Typical Unless Otherwise Noted)
LMC6035 in DSBGA Package
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Filters
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High Impedance Buffer or Preamplifier
Battery Powered Electronics
Medical Instrumentation
Automotive Applications
Ensured 2.7V, 3V, 5V and 15V Performance
Specified for 2 kΩ and 600Ω Loads
Wide Operating Range: 2.0V to 15.5V
Ultra Low Input Current: 20fA
Rail-to-Rail Output Swing
DESCRIPTION
The LMC6035/6 is an economical, low voltage op
amp capable of rail-to-rail output swing into loads of
600Ω. LMC6035 is available in a chip sized package
(8-Bump DSBGA) using micro SMD package
technology. Both allow for single supply operation
and are ensured for 2.7V, 3V, 5V and 15V supply
voltage. The 2.7 supply voltage corresponds to the
End-of-Life voltage (0.9V/cell) for three NiCd or NiMH
batteries in series, making the LMC6035/6 well suited
for portable and rechargeable systems. It also
features a well behaved decrease in its specifications
at supply voltages below its ensured 2.7V operation.
This provides a “comfort zone” for adequate operation
at voltages significantly below 2.7V. Its ultra low input
currents (IIN) makes it well suited for low power active
filter application, because it allows the use of higher
resistor values and lower capacitor values. In
addition, the drive capability of the LMC6035/6 gives
these op amps a broad range of applications for low
voltage systems.
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@ 600Ω: 200mV from Either Rail at 2.7V
@ 100kΩ: 5mV from Either Rail at 2.7V
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High Voltage Gain: 126dB
Wide Input Common-Mode Voltage Range
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-0.1V to 2.3V at VS = 2.7V
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Low Distortion: 0.01% at 10kHz
LMC6035 Dual LMC6036 Quad
See AN-1112 (Literature Number SNVA009) for
DSBGA Considerations
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AEC-Q100 Grade 3 Qualified (LMC6035-Q1)
Connection Diagram
Top View
Figure 1. 8-Bump DSBGA Package
(Bump Side Down)
See Package Number YZR0008
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PRODUCTION DATA information is current as of publication date.
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necessarily include testing of all parameters.
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