Instrumentation, Op Amps, Buffer Amps

Results: 9
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Number of Circuits
Output Type
Slew Rate
Gain Bandwidth Product
Current - Input Bias
Voltage - Input Offset
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Current - Output / Channel
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14-SOIC
IC OPAMP GP 4 CIRCUIT 14SOIC
Analog Devices Inc.
2,435
In Stock
1 : $37.04000
Cut Tape (CT)
1,000 : $12.71523
Tape & Reel (TR)
-
Tape & Reel (TR)
Cut Tape (CT)
Digi-Reel®
Active
Standard (General Purpose)
4
Rail-to-Rail
5V/µs
10 MHz
1 pA
400 µV
950µA (x4 Channels)
80 mA
2.7 V
6 V
-40°C ~ 125°C
Surface Mount
14-SOIC (0.154", 3.90mm Width)
14-SOIC
14-TSSOP
IC OPAMP GP 4 CIRCUIT 14TSSOP
Analog Devices Inc.
680
In Stock
1 : $37.04000
Tube
-
Tube
Active
Standard (General Purpose)
4
Rail-to-Rail
5V/µs
10 MHz
1 pA
400 µV
950µA (x4 Channels)
80 mA
2.7 V
6 V
-40°C ~ 125°C
Surface Mount
14-TSSOP (0.173", 4.40mm Width)
14-TSSOP
14-SOIC
IC OPAMP GP 4 CIRCUIT 14SOIC
Analog Devices Inc.
285
In Stock
1 : $37.04000
Tube
-
Tube
Active
Standard (General Purpose)
4
Rail-to-Rail
5V/µs
10 MHz
1 pA
400 µV
950µA (x4 Channels)
80 mA
2.7 V
6 V
-40°C ~ 125°C
Surface Mount
14-SOIC (0.154", 3.90mm Width)
14-SOIC
14-TSSOP
IC OPAMP GP 4 CIRCUIT 14TSSOP
Analog Devices Inc.
7,384
In Stock
1 : $37.04000
Cut Tape (CT)
2,500 : $12.65670
Tape & Reel (TR)
-
Tape & Reel (TR)
Cut Tape (CT)
Digi-Reel®
Active
Standard (General Purpose)
4
Rail-to-Rail
5V/µs
10 MHz
1 pA
400 µV
950µA (x4 Channels)
80 mA
2.7 V
6 V
-40°C ~ 125°C
Surface Mount
14-TSSOP (0.173", 4.40mm Width)
14-TSSOP
14-TSSOP
IC OPAMP GP 4 CIRCUIT 14TSSOP
Analog Devices Inc.
105
In Stock
1 : $43.38000
Tube
-
Tube
Active
Standard (General Purpose)
4
Rail-to-Rail
5V/µs
10 MHz
1 pA
400 µV
950µA (x4 Channels)
80 mA
2.7 V
6 V
-40°C ~ 125°C
Surface Mount
14-TSSOP (0.173", 4.40mm Width)
14-TSSOP
14-SOIC
IC OPAMP GP 4 CIRCUIT 14SOIC
Analog Devices Inc.
0
In Stock
2,500
Marketplace
Obsolete
-
Tape & Reel (TR)
Bulk
Obsolete
Standard (General Purpose)
4
Rail-to-Rail
5V/µs
10 MHz
1 pA
400 µV
950µA (x4 Channels)
80 mA
2.7 V
6 V
-40°C ~ 125°C
Surface Mount
14-SOIC (0.154", 3.90mm Width)
14-SOIC
14-TSSOP
IC OPAMP GP 4 CIRCUIT 14TSSOP
Analog Devices Inc.
0
In Stock
Check Lead Time
1 : $44.54000
Cut Tape (CT)
2,500 : $15.74370
Tape & Reel (TR)
-
Tape & Reel (TR)
Cut Tape (CT)
Active
Standard (General Purpose)
4
Rail-to-Rail
5V/µs
10 MHz
1 pA
400 µV
950µA (x4 Channels)
80 mA
2.7 V
6 V
-40°C ~ 125°C
Surface Mount
14-TSSOP (0.173", 4.40mm Width)
14-TSSOP
IC OPAMP GP 4 CIRCUIT DIE
IC OPAMP GP 4 CIRCUIT DIE
Analog Devices Inc.
0
In Stock
Obsolete
-
Bulk
Obsolete
Standard (General Purpose)
4
Rail-to-Rail
5V/µs
10 MHz
1 pA
400 µV
950µA (x4 Channels)
80 mA
2.7 V
6 V
-40°C ~ 125°C
Surface Mount
Die
Die
IC OPAMP GP 4 CIRCUIT DIE
IC OPAMP GP 4 CIRCUIT DIE
Analog Devices Inc.
0
In Stock
Obsolete
-
Bulk
Obsolete
Standard (General Purpose)
4
Rail-to-Rail
5V/µs
10 MHz
1 pA
400 µV
950µA (x4 Channels)
80 mA
2.7 V
6 V
-40°C ~ 125°C
Surface Mount
Die
Die
Showing
of 9

About Instrumentation, OP Amps, Buffer Amps


What is an Operational Amplifier (Op Amp)?
An operational amplifier is a fundamental analog circuit element that amplifies the voltage difference between two inputs (inverting and non-inverting). These devices are used everywhere from sensor signal chains to audio mixers.
How it works: Operates in open-loop mode for extremely high gain or in closed-loop mode where resistors or capacitors set a precise, predictable gain. In a sensor interface, for example, a thermocouple’s microvolt output might be amplified by an op amp before digitization.
Best for: General-purpose amplification, active filter design, and precision math functions such as summing, integration, or differentiation—found in everything from lab instrumentation to industrial automation.
Watch out for: Input overvoltage can cause latch-up or phase reversal; driving the output into saturation may slow recovery, and poor feedback design can introduce oscillations—issues often addressed in manufacturer application notes.

What is an Instrumentation Amplifier (In-Amp)?
An instrumentation amplifier is a precision differential amplifier, typically built from three op amps, designed for accurate measurement of very small voltage differences in noisy environments.
How it works: Two input buffers and a difference amplifier provide high input impedance and excellent common-mode rejection (often >100 dB). In strain-gauge load cell systems, an In-Amp can boost a few millivolts of bridge output to a clean, usable signal for ADC input.
Best for: Sensor interfaces such as strain gauges, thermocouples, and bridge circuits; medical devices like ECGs; and industrial data acquisition where environmental noise would swamp a standard op amp.

What is a Buffer Amplifier?
A buffer amplifier (unity-gain buffer) isolates one circuit stage from another while preserving signal voltage. It’s often the unsung hero in analog design, preventing precision signals from being degraded before processing.
How it works: Passes the input voltage directly to the output with high input impedance (avoiding source loading) and low output impedance (capable of driving multiple loads). In audio gear, for example, a buffer can feed several effect pedals from one guitar pickup without tone loss.
Best for: Preventing signal degradation, driving multiple loads, and bridging stages with mismatched impedances in both low-frequency and high-speed designs.

Specialized Amplifier Types
  • Transconductance Amplifier: Converts voltage to current for use in current-mode control loops, VCO modulation, or voltage-controlled current sources in laser drivers.
  • Transimpedance Amplifier (TIA): Converts current to voltage, crucial in photodiode receivers for fiber optics or light detection in LIDAR.
  • Sample-and-Hold Amplifier: Captures and holds a voltage during ADC conversion—essential in multiplexed measurement systems.
  • Chopper / Zero-Drift Amplifier: Actively cancels offset and drift, enabling long-term DC accuracy in precision weigh scales and low-frequency seismic sensors.