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 amplifiers.

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. Here are some examples of how they are used:

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

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Description Price Amplifier Type Mounting Type Package Type Power Supply Type Number of Channels per Chip Pin Count Typical Single Supply Voltage Typical Gain Bandwidth Product Output Type Typical Dual Supply Voltage Typical Slew Rate Maximum Operating Frequency Maximum Operating Temperature Minimum Operating Temperature
RS Stock No. 791-7475
Mfr. Part No.CLC4011ITP14
BrandMaxLinear
TWD15.60
Each (In a Pack of 10)
units
- Surface Mount TSSOP Single 4 14 2.5 → 5.5 V 4.9MHz - ±1.25 → ±2.75V 9V/µs - +85 °C -40 °C
RS Stock No. 791-7466
Mfr. Part No.CLC2007ISO8
BrandMaxLinear
TWD38.60
Each (In a Pack of 12)
units
- Surface Mount SOIC Dual 2 8 2.7 → 12.6 V 95MHz - ±5V 225V/µs - +120 °C -40 °C
RS Stock No. 791-7463
Mfr. Part No.CLC4000ISO14
BrandMaxLinear
TWD84.80
Each (In a Pack of 4)
units
High Current Surface Mount SOIC Dual, Single 4 14 5 → 12 V 510MHz - ±2.5 → ±6.5V 210V/µs - +85 °C -40 °C
RS Stock No. 821-2122
Mfr. Part No.CLC4007ITP14MTR
BrandMaxLinear
TWD64.50
Each (In a Pack of 2)
units
- Surface Mount TSSOP Dual, Single 4 14 3 → 5 V 90MHz - ±5V 225V/µs 5 MHz +85 °C -40 °C
RS Stock No. 821-2188
Mfr. Part No.XR8051ASO8MTR
BrandMaxLinear
TWD53.60
Each (In a Pack of 5)
units
- Surface Mount SOIC Dual, Single 1 8 3 → 5 V 65MHz - ±5V 190V/µs 5 MHz +125 °C -40 °C
RS Stock No. 821-2125
Mfr. Part No.CLC4011ISO14MTR
BrandMaxLinear
TWD25.10
Each (In a Pack of 10)
units
- Surface Mount SOIC Dual, Single 4 14 2.5 → 5.5 V 2.5MHz - ±1.25 → ±2.75V 9V/µs 10 kHz +85 °C -40 °C
RS Stock No. 821-2113
Mfr. Part No.CLC2023IMP8MTR
BrandMaxLinear
TWD61.40
Each (In a Pack of 5)
units
- Surface Mount MSOP Dual, Single 2 8 2.5 → 12 V 35MHz - ±5V 12V/µs 1 MHz +85 °C -40 °C
RS Stock No. 821-2197
Mfr. Part No.XR8054ASO14MTR
BrandMaxLinear
TWD84.80
Each (In a Pack of 5)
units
- Surface Mount SOIC Dual, Single 4 14 3 → 5 V 65MHz - ±5V 190V/µs 5 MHz +125 °C -40 °C
RS Stock No. 821-2119
Mfr. Part No.CLC2011ISO8MTR
BrandMaxLinear
TWD19.10
Each (In a Pack of 10)
units
- Surface Mount SOIC Dual, Single 2 8 2.5 → 5.5 V 2.5MHz - ±1.25 → ±2.75V 9V/µs 10 kHz +85 °C -40 °C
RS Stock No. 791-7444
Mfr. Part No.CLC1003IST5X
BrandMaxLinear
TWD31.30
Each (In a Pack of 10)
units
Low Noise Surface Mount SOT-23 Single 1 5 2.5 → 12 V 35MHz - - 12V/µs - +85 °C -40 °C
RS Stock No. 821-2107
Mfr. Part No.CLC2000ISO8MTR
BrandMaxLinear
TWD73.00
Each (In a Pack of 5)
units
- Surface Mount SOIC Dual, Single 2 8 5 → 12 V 510MHz - ±2.5 → ±6.5V 210V/µs 5 MHz +85 °C -40 °C