Op Amp | Operational Amplifier | Differential Amplifier | RS
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    Op Amps

    Op Amps, short for Operational Amplifiers, are semiconductor devices commonly used in analogue electronic circuits. They work by receiving an input signal and amplifying it into a stronger output signal. Op Amps offer a very high voltage gain. You can find out more in our op amps guide.

    How do Op Amps work?

    Op Amps provide mathematical operations such as addition, multiplication, differentiation, and integration. They are voltage amplifiers which usually have a differential input and a single-ended output.

    There are two inputs into an Operational Amplifier which are called inverting (-) and non-inverting (+) inputs. If you were to increase the voltage to the inverting input, the output voltage decreases. Alternatively, if you increase the voltage to the non-inverting input, the output voltage increases. If an equal voltage is supplied to both inputs, the output will not change.

    What is a differential amplifier?

    Op Amps are often referred to as differential amplifiers. This is because the output of an Op-Amp is relative to the difference between the input voltages.

    Where are Op Amps used?

    Operational amplifiers have a wide variety of uses in electronic circuits.

    Op Amp Applications

    • Crystal oscillators and waveform generators
    • Audio- and video-frequency pre-amplifiers and buffers
    • Integrators
    • Comparators
    • Analogue-to-digital (ADC) and digital-to-analogue (DAC) converters
    • Voltage Clamps
    • Analogue Calculators
    • Filters
    • Differentiators
    • Precision rectifiers
    • Linear voltage regulators
    • Current regulators
    • Precision rectifiers
    • Precision peak to peak detectors

    5035 Products showing for Op Amps

    STMicroelectronics
    Low Noise
    Surface Mount
    SOIC
    Single
    4
    14
    2.7 → 10 V
    12MHz
    -
    ±3V
    4V/µs
    -
    +125 °C
    -40 °C
    -
    10 V
    7mV
    100 mA
    Rail to Rail Output
    80 dB
    Texas Instruments
    -
    Surface Mount
    SOIC
    Dual
    2
    8
    -
    3MHz
    -
    ±12 V, ±15 V, ±5 V, ±9 V
    13V/µs
    -
    +70 °C
    0 °C
    -
    -
    -
    -
    -
    106 dB
    Linear Technology
    Low Noise, Precision
    Through Hole
    PDIP
    Dual, Single
    4
    14
    3 → 28 V
    26MHz
    -
    ±12 V, ±15 V, ±3 V, ±5 V, ±9 V
    8.5V/µs
    -
    +85 °C
    -40 °C
    -
    -
    -
    -
    No
    118.6 dB
    Texas Instruments
    -
    Through Hole
    PDIP
    Dual
    2
    8
    -
    3MHz
    -
    ±12 V, ±15 V, ±5 V, ±9 V
    13V/µs
    -
    +70 °C
    0 °C
    -
    -
    -
    -
    No
    106 dB
    Renesas Electronics
    -
    Through Hole
    PDIP
    Dual, Single
    2
    8
    3 → 15 V
    480kHz
    -
    ±3 V, ±5 V
    0.16V/µs
    -
    +70 °C
    0 °C
    -
    -
    -
    -
    No
    102 dB
    onsemi
    -
    Surface Mount
    SOIC
    Dual, Single
    2
    8
    3 → 36 V
    24MHz
    -
    ±1.5 → ±18V
    10V/µs
    100 kHz
    +85 °C
    -40 °C
    -
    -
    -
    -
    No
    100 dB
    Texas Instruments
    -
    Surface Mount
    SOIC
    Dual
    1
    8
    -
    1MHz
    -
    ±12 V, ±15 V, ±5 V, ±9 V
    3.5V/µs
    -
    +70 °C
    0 °C
    -
    -
    -
    -
    No
    75.6 dB
    Texas Instruments
    -
    Through Hole
    PDIP
    Dual
    4
    14
    -
    3MHz
    -
    ±12 V, ±15 V, ±5 V, ±9 V
    13V/µs
    -
    +85 °C
    -40 °C
    -
    -
    -
    -
    No
    106 dB
    Texas Instruments
    Precision
    Through Hole
    MDIP
    Single
    4
    14
    5 → 15 V
    1.4MHz
    -
    -
    1.1V/µs
    -
    +70 °C
    0 °C
    -
    -
    -
    -
    No
    126 dB
    Microchip
    Precision
    Through Hole
    PDIP
    Single
    2
    8
    3 V, 5 V
    10MHz
    -
    -
    7V/µs
    -
    +85 °C
    -40 °C
    -
    -
    -
    -
    Rail to Rail Input/Output
    110 dB
    Texas Instruments
    Precision
    Through Hole
    PDIP
    Dual
    1
    8
    -
    600kHz
    -
    ±12 V, ±15 V, ±5 V, ±9 V
    0.3V/µs
    -
    +70 °C
    0 °C
    -
    -
    -
    -
    No
    112 dB
    STMicroelectronics
    Low Power
    Surface Mount
    SOIC
    Dual, Single
    2
    8
    3 → 15 V
    1MHz
    -
    ±3 V, ±5 V
    0.8V/µs
    -
    +125 °C
    -40 °C
    -
    -
    -
    -
    Rail to Rail Input/Output
    92 dB
    Texas Instruments
    -
    Surface Mount
    SOIC
    Single
    1
    8
    5.5 → 34 V
    100MHz
    -
    -
    3600V/µs
    -
    +85 °C
    -40 °C
    -
    -
    -
    -
    No
    90 dB
    Texas Instruments
    -
    Surface Mount
    MSOP
    Single
    2
    8
    5 → 15 V
    1.5MHz
    -
    -
    1.3V/µs
    -
    +85 °C
    -40 °C
    -
    -
    -
    -
    Rail to Rail Input/Output
    116.5 dB
    STMicroelectronics
    Operational Amplifier
    Surface Mount
    SO14
    -
    -
    14
    36 V
    6MHz
    -
    -
    -
    -
    -
    -
    -
    -
    -
    -
    Rail to Rail Input/Output
    -
    Texas Instruments
    Precision
    Surface Mount
    SOIC
    Single
    2
    8
    5 → 15 V
    1.4MHz
    -
    -
    1.1V/µs
    -
    +85 °C
    -40 °C
    -
    -
    -
    -
    No
    126 dB
    Texas Instruments
    Precision
    Surface Mount
    SOIC
    Dual, Single
    2
    8
    3 V, 5 V
    6.4MHz
    -
    -
    1.6V/µs
    -
    +125 °C
    -40 °C
    -
    -
    -
    -
    Rail to Rail Input/Output
    109 dB
    Texas Instruments
    Low Noise, Precision
    Through Hole
    PDIP
    Dual, Single
    1
    8
    5 → 28 V
    5.8MHz
    -
    ±12 V, ±15 V, ±18 V, ±3 V, ±5 V, ±9 V
    45V/µs
    -
    +105 °C
    -40 °C
    -
    -
    -
    -
    No
    107 dB
    Analog Devices
    Low Noise
    Surface Mount
    MSOP
    Dual, Single
    1
    8
    2.2 → 5.5 V
    3MHz
    -
    ±1.1 → ±2.75V
    0.45V/µs
    1 kHz
    +125 °C
    -40 °C
    -
    5.5 V
    4µV
    -
    Rail to Rail Input/Output
    132 dB
    Texas Instruments
    Dual Operational
    Through Hole
    PDIP
    Dual, Single
    2
    8
    15 V
    2MHz
    -
    -
    -
    -
    -
    -
    -
    -
    -
    -
    -
    -
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