EVALUATION KIT AVAILABLE
MAX44241/MAX44243/MAX44246
36V, Low-Noise, Precision,
Single/Quad/Dual Op Amps
General Description
Benefits and Features
The MAX44241/MAX44243/MAX44246 are 36V, ultra-
precision, low-noise, low-drift, single/quad/dual opera-
tional amplifiers that offer near-zero DC offset and drift
through the use of patented chopper stabilized and
auto-zeroing techniques. This method constantly mea-
sures and compensates the input offset, eliminating drift
over time and temperature and the effect of 1/f noise.
These single/quad/dual devices feature rail-to-rail out-
puts, operate from a single 2.7V to 36V supply or dual
1.3ꢀV to 1ꢁV supplies, and consume only 0.42mA per
channel, with only 9nV/√Hz input-referred voltage noise.
S Reduces Noise-Sensitive Precision Applications
• Low 9nV/√Hz Noise at 1kHz
• Integrated EMI Filter
S Eliminates Cost of Calibration with Increased
Accuracy and Patented Auto-Zero Circuitry
• Ultra-Low Input V : 5µV (max)
OS
• Low 20nV/°C (max) of Offset Drift
S Suitable for High-Bandwidth Applications
• 1µs Fast Settling Time
The ICs are available in ꢁ-pin FMAXM or SO packages
and are rated over the -40NC to +12ꢀNC temperature
range.
• 5MHz Gain-Bandwidth Product
S Low 0.55mA Per Channel (max) Quiescent Current
S Wide Supply for High-Voltage Front-Ends
Applications
Battery-Powered
Equipment
• 2.7V to 36V Supply Range
Transducer Amplifiers
Load Cell Amplifiers
S Rail-to-Rail Output
PLC Analog I/O
Modules
Precision
Instrumentation
Ordering Information appears at end of data sheet.
For related parts and recommended products to use with this part,
refer to www.maximintegrated.com/MAX44241.related.
µMAX is a registered trademark of Maxim Integrated Products, Inc.
Typical Operating Circuit
15V
3.3V
½ MAX44246
R
1
3V
BUFFER
V
OUT
R
MAX6126
15V
V
DD
-15V
15V
50R
G
R
V
V
REF
DD
V
BUFFER
R
IN+
R
G
MICRO-
PROCESSOR
50R
G
MAX11211
OUTPUT
V
15V
IN-
-15V
R
V
SS
½ MAX44246
BUFFER
C
1
1.5V
½ MAX44246
-15V
For pricing, delivery, and ordering information, please contact Maxim Direct
at 1-888-629-4642, or visit Maxim’s website at www.maximintegrated.com.
19-6375; Rev 7; 4/15