Texas Instruments_OPA2209AIDR

Texas Instruments
OPA2209AIDR  
OP Amps, Buffer Amps ICs

Texas Instruments
OPA2209AIDR
687-OPA2209AIDR
Ersa
Texas Instruments-OPA2209AIDR-datasheets-2766717.pdf
IC OPAMP GP 2 CIRCUIT 8SOIC
In Stock : 12139

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    OPA2209AIDR Description

    The OPA2209AIDR is a high-performance, low-noise, dual operational amplifier (op amp) offered by Texas Instruments. It is designed to provide excellent DC and AC performance specifications, making it suitable for a wide range of applications.

    Description:

    The OPA2209AIDR is a dual operational amplifier that features low input bias current, low input offset voltage, and low noise. It is available in an 8-pin SOIC (Small Outline Integrated Circuit) package. The device is designed for use in a wide range of applications, including precision instrumentation, audio equipment, and data acquisition systems.

    Features:

    1. Low Input Bias Current: The OPA2209AIDR has a low input bias current, which helps to minimize the error in circuits that require high input impedance.
    2. Low Input Offset Voltage: The device has a low input offset voltage, which helps to improve the accuracy of circuits that require precise amplification.
    3. Low Noise: The OPA2209AIDR has a low noise level, making it suitable for use in applications that require low-noise amplification, such as audio equipment and medical instruments.
    4. High Slew Rate: The device has a high slew rate, which allows it to respond quickly to changes in input signals.
    5. Wide Supply Voltage Range: The OPA2209AIDR can operate over a wide supply voltage range, making it suitable for use in a variety of power supply configurations.

    Applications:

    1. Precision Instrumentation: The OPA2209AIDR's low input bias current and low input offset voltage make it well-suited for use in precision instrumentation applications, such as strain gauge amplifiers and pressure sensors.
    2. Audio Equipment: The device's low noise and high slew rate make it suitable for use in audio equipment, such as preamplifiers and active filters.
    3. Data Acquisition Systems: The OPA2209AIDR's low input offset voltage and low noise make it an excellent choice for use in data acquisition systems, where precise amplification and low-noise performance are critical.
    4. Medical Instruments: The device's low input bias current and low noise make it suitable for use in medical instruments, such as electrocardiogram (ECG) amplifiers and other bio-medical signal processing applications.
    5. Industrial Control Systems: The OPA2209AIDR's wide supply voltage range and high slew rate make it suitable for use in industrial control systems, where reliable performance and fast response times are important.

    Tech Specifications

    Number of Channels per Chip
    Unit Weight
    Power Supply Type
    Typical Output Current (mA)
    Rail-to-rail
    Product
    PPAP
    Gain Bandwidth Product
    Automotive
    Maximum Input Offset Current (uA)
    RoHS
    REACH Status
    Input common mode headroom (to negative supply) (typ) (V)
    Operating temperature range (°C)
    Current - Supply
    Output swing headroom (to negative supply) (typ) (V)
    Standard Package Name
    Shut Down Support
    Mounting
    Minimum Single Supply Voltage (V)
    Iout (typ) (A)
    Moisture Sensitive
    Manufacturer Type
    Package
    Minimum CMRR (dB)
    Maximum Quiescent Current (mA)
    Total supply voltage (+5 V = 5, ±5 V = 10) (max) (V)
    GBW (typ) (MHz)
    en - Input Voltage Noise Density
    Output Type
    Vos - Input Offset Voltage
    Minimum Dual Supply Voltage
    Minimum CMRR Range (dB)
    Typical Gain Bandwidth Product (MHz)
    Package Height
    Maximum Operating Temperature
    Ib - Input Bias Current
    RoHS Status
    Number of channels
    Iq per channel (typ) (mA)
    Minimum Operating Temperature
    Voltage - Input Offset
    Type
    Vos (offset voltage at 25°C) (max) (mV)
    Operating Supply Voltage
    Output Current per Channel
    Part Status
    Input Offset Voltage Drift (uV/°C)
    Supply Type
    Lead finish / Ball material
    Number of Circuits
    Package Width
    GBP - Gain Bandwidth Product
    Voltage - Supply Span (Max)
    Maximum Input Offset Voltage (mV)
    Product Status
    Current - Input Bias
    Rail to Rail
    Supplier Package
    Package / Case
    Number of Channels
    Typical Voltage Gain (dB)
    Typical Input Bias Current (uA)
    EU RoHS
    Carrier
    Amplifier Type
    Maximum Dual Supply Voltage (V)
    Input common mode headroom (to positive supply) (typ) (V)
    Moisture Sensitivity Level (MSL)
    Typical Input Noise Voltage Density (nV/rtHz)
    Operating Temperature
    Architecture
    Typical Slew Rate (V/us)
    Output swing headroom (to positive supply) (typ) (V)
    ECCN
    MSL rating / Peak reflow
    Mounting Type
    THD + N at 1 kHz (typ) (%)
    Pin Count
    Minimum PSRR (dB)
    Shutdown
    Vcm - Common Mode Voltage
    Typical Dual Supply Voltage (V)
    Voltage - Supply Span (Min)
    Lead Shape
    HTSUS
    Pins
    Current - Output / Channel
    USHTS
    PCB changed
    HTS
    Rating
    ECCN (US)
    Total supply voltage (+5 V = 5, ±5 V = 10) (min) (V)
    Supplier Device Package
    Supply Voltage - Min
    Minimum Operating Temperature (°C)
    Maximum Operating Temperature (°C)
    Operating Supply Current
    SR - Slew Rate
    Mfr
    CMRR (typ) (dB)
    Supply Voltage - Max
    Offset drift (typ) (µV/°C)
    Mounting Style
    Maximum Input Bias Current (uA)
    Typical Noninverting Input Current Noise Density (pA/rtHz)
    Slew Rate
    Package Length
    Minimum Dual Supply Voltage (V)
    Vn at 1 kHz (typ) (nV√Hz)
    CMRR - Common Mode Rejection Ratio
    REACH
    Series
    Maximum Single Supply Voltage (V)
    Slew rate (typ) (V/µs)
    Typical Settling Time (ns)
    Base Product Number
    Input bias current (max) (pA)

    OPA2209AIDR Documents

    Download datasheets and manufacturer documentation for OPA2209AIDR

    Ersa OPA209,2209,4209      
    Ersa OPA209,2209,4209      
    Ersa Copper Wire Base Alternative 23/Apr/2014      

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