Technical Document
Specifications
Brand
Maxim IntegratedAmplifier Type
Low Power
Mounting Type
Surface Mount
Package Type
SOIC
Power Supply Type
Dual, Single
Number of Channels per Chip
2
Pin Count
8
Typical Single Supply Voltage
2.3 → 6.5 V
Typical Gain Bandwidth Product
3MHz
Typical Dual Supply Voltage
±1.15 to ±3.25V
Typical Slew Rate
1.5V/µs
Minimum Operating Temperature
-40 °C
Maximum Operating Temperature
+85 °C
Typical Voltage Gain
90 dB
Rail to Rail
Rail to Rail Input/Output
Height
1.5mm
Width
4mm
Dimensions
5 x 4 x 1.5mm
Typical Input Voltage Noise Density
28nV/√Hz
Length
5mm
Country of Origin
United States
Product details
Low-Power and Precision Operational Amplifiers, Maxim Integrated
The operational amplifiers have low input offset voltage and drift. They are ideal for power-sensitive sensor interface applications where precision and low-noise performance enable the input voltage to scale.
Operational Amplifiers, Maxim Integrated
SR 2,398.00
SR 23.98 Each (In a Tube of 100) (ex VAT)
SR 2,757.70
SR 27.577 Each (In a Tube of 100) (inc. VAT)
100
SR 2,398.00
SR 23.98 Each (In a Tube of 100) (ex VAT)
SR 2,757.70
SR 27.577 Each (In a Tube of 100) (inc. VAT)
Stock information temporarily unavailable.
100
Stock information temporarily unavailable.
Technical Document
Specifications
Brand
Maxim IntegratedAmplifier Type
Low Power
Mounting Type
Surface Mount
Package Type
SOIC
Power Supply Type
Dual, Single
Number of Channels per Chip
2
Pin Count
8
Typical Single Supply Voltage
2.3 → 6.5 V
Typical Gain Bandwidth Product
3MHz
Typical Dual Supply Voltage
±1.15 to ±3.25V
Typical Slew Rate
1.5V/µs
Minimum Operating Temperature
-40 °C
Maximum Operating Temperature
+85 °C
Typical Voltage Gain
90 dB
Rail to Rail
Rail to Rail Input/Output
Height
1.5mm
Width
4mm
Dimensions
5 x 4 x 1.5mm
Typical Input Voltage Noise Density
28nV/√Hz
Length
5mm
Country of Origin
United States
Product details
Low-Power and Precision Operational Amplifiers, Maxim Integrated
The operational amplifiers have low input offset voltage and drift. They are ideal for power-sensitive sensor interface applications where precision and low-noise performance enable the input voltage to scale.


