Texas Instruments_LF353P

Texas Instruments
LF353P  
OP Amps, Buffer Amps ICs

Texas Instruments
LF353P
687-LF353P
Ersa
Texas Instruments-LF353P-datasheets-2415820.pdf
IC OPAMP JFET 2 CIRCUIT 8DIP
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    LF353P Description

    The Texas Instruments LF353P is a low-power, dual operational amplifier (op-amp) integrated circuit (IC) that is designed for use in a wide range of applications. Here is a description of the LF353P, its features, and potential applications:

    Description:

    The LF353P is a member of the OP-Amp family, specifically designed to offer high performance in terms of speed and accuracy while maintaining low power consumption. It is a dual op-amp, meaning it contains two independent operational amplifiers within a single package, which can be used in various configurations for different applications.

    Features:

    1. Low Power Consumption: The LF353P is optimized for battery-powered applications, consuming very low power.
    2. High Input Impedance: It has a high input impedance, which is beneficial for applications where the source impedance is high.
    3. Low Offset Voltage: The LF353P has a low input offset voltage, which is crucial for maintaining accuracy in signal processing.
    4. Wide Supply Voltage Range: It operates over a wide range of supply voltages, making it suitable for various power supply conditions.
    5. Short Circuit Protection: The device includes protection against short circuits, which can be a common issue in operational amplifier applications.
    6. Rail-to-Rail Input and Output: It features rail-to-rail input and output, allowing the input signal to go all the way to the negative rail and the output to swing close to both rails without distortion.
    7. Low Drift: The LF353P has low drift over temperature, which is important for maintaining stability in long-term applications.

    Applications:

    1. Portable Electronics: Due to its low power consumption, the LF353P is ideal for use in portable devices where battery life is a critical factor.
    2. Medical Instruments: The precision and low noise characteristics make it suitable for medical equipment that requires accurate signal processing.
    3. Audio Equipment: It can be used in audio amplifiers and filters where low distortion and high fidelity are required.
    4. Sensor Signal Conditioning: The LF353P is often used to process signals from sensors in industrial applications, providing amplification and filtering.
    5. Data Acquisition Systems: In systems where precise amplification and filtering of analog signals are needed before digitization, the LF353P can be a good choice.
    6. Control Systems: It can be used in feedback loops for control systems where stability and accuracy are paramount.

    The LF353P, like other operational amplifiers, can be configured in various ways to perform tasks such as amplification, filtering, integration, differentiation, and more, depending on the specific circuit design and application requirements.

    Tech Specifications

    Voltage - Supply Span (Max)
    Number of Channels per Chip
    Power Supply Type
    Maximum Input Offset Voltage (mV)
    Typical Output Resistance (Ohm)
    PPAP
    Gain Bandwidth Product
    Product Status
    Current - Input Bias
    Automotive
    Maximum Input Offset Current (uA)
    Supplier Package
    Package / Case
    Typical Voltage Gain (dB)
    REACH Status
    Typical Input Bias Current (uA)
    EU RoHS
    Amplifier Type
    Maximum Dual Supply Voltage (V)
    Moisture Sensitivity Level (MSL)
    Typical Input Noise Voltage Density (nV/rtHz)
    Operating Temperature
    Typical Slew Rate (V/us)
    ECCN
    Mounting Type
    Current - Supply
    Standard Package Name
    Pin Count
    Shut Down Support
    Mounting
    Typical Dual Supply Voltage (V)
    Voltage - Supply Span (Min)
    Lead Shape
    Manufacturer Type
    HTSUS
    Package
    Current - Output / Channel
    Minimum CMRR (dB)
    PCB changed
    Output Type
    HTS
    ECCN (US)
    Maximum Power Dissipation (mW)
    Supplier Device Package
    Minimum CMRR Range (dB)
    Minimum Operating Temperature (°C)
    Maximum Operating Temperature (°C)
    Process Technology
    Typical Gain Bandwidth Product (MHz)
    Package Height
    Mfr
    RoHS Status
    Maximum Input Bias Current (uA)
    Typical Noninverting Input Current Noise Density (pA/rtHz)
    Slew Rate
    Package Length
    Minimum Dual Supply Voltage (V)
    Maximum Supply Current (mA)
    Voltage - Input Offset
    Series
    Type
    Part Status
    Number of Circuits
    Package Width
    Base Product Number
    Maximum Dual Supply Voltage
    Unit Weight
    en - Input Voltage Noise Density
    Vos - Input Offset Voltage
    Voltage Gain dB
    Dual Supply Voltage
    Minimum Dual Supply Voltage
    Product
    RoHS
    Supply Voltage - Min
    Operating Supply Current
    SR - Slew Rate
    Number of Channels
    Technology
    Height
    Maximum Operating Temperature
    Ib - Input Bias Current
    Supply Voltage - Max
    Width
    Mounting Style
    Input Type
    Minimum Operating Temperature
    CMRR - Common Mode Rejection Ratio
    In - Input Noise Current Density
    Shutdown
    Vcm - Common Mode Voltage
    Length
    Operating Supply Voltage
    Output Current per Channel
    Supply Type
    Pd - Power Dissipation
    USHTS
    GBP - Gain Bandwidth Product

    LF353P Documents

    Download datasheets and manufacturer documentation for LF353P

    Ersa LF353      
    Ersa LF353      
    Ersa Mult Dev 21/Dec/2022       Material Set 30/Mar/2017      

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