Overview
LT1014ISW#PBF is a four-channel high-precision operational amplifier (Op Amp) launched by Analog Devices (formerly Linear Technology), designed for analog signal processing systems that require low offset, low drift and high common mode rejection ratio (CMRR). The device provides ultra-low offset voltage performance similar to OP07 and integrates four completely independent op amp channels. It is suitable for industrial instrumentation, signal conditioning, current detection, sensor amplification, power monitoring systems and other applications with extremely high signal accuracy requirements.

Specifications
parameter | Numeric |
Number of amplifier channels | 4 independent channels |
Input offset voltage (max) | 50μV |
Offset voltage drift (max) | 0.3μV/°C |
Input bias current | 1nA (typical) |
Supply voltage range | ±3V to ±18V or 6V to 36V |
Common Mode Rejection Ratio (CMRR) | ≥114dB |
Open loop gain (AOL) | ≥1,000,000 (typical) |
Bandwidth (Unity Gain) | 0.8MHz (typical) |
Slew Rate | 0.3V/μs (typical) |
Output drive capability | Capable of driving 2kΩ loads to the supply rails |
Operating temperature range | –40°C to +85°C (Industrial) |
Package | 16-pin SOIC (SW package) |
Environmental standards | RoHS Compliant, Lead Free (#PBF) |
Key Features of LT1014ISW#PBF
Low input offset and low drift
The typical input offset voltage is only 50μV, and the temperature drift is as low as 0.3μV/°C, which is particularly suitable for applications requiring long-term accuracy stability, such as high-end analog measurement or compensation circuits.
Ultra-high common mode rejection ratio and power supply rejection ratio
Both CMRR and PSRR are greater than 110dB, and high-precision computing performance can be maintained in environments with interference and power supply fluctuations.
Fully integrated four-channel space-saving
Four independent high-performance op amps are integrated into a single package, reducing board-level component count and design complexity.
Wide operating voltage range
Compatible with ±3V to ±18V dual power supplies or single power supply (6V–36V), it can be used in various analog front ends or industrial signal chains.
Low noise and low input bias current
The typical input bias current is only 1nA, and the noise is low, ensuring accuracy and stability when amplifying weak signals.
Excellent linear output capability
It can drive the load voltage close to the power rail in a stable linear state, avoiding distortion and improving system reliability.
Typical application scenarios
LT1014ISW#PBF is mainly used in analog system design with strict signal accuracy requirements:
Industrial Automation and Measuring Instruments
Voltage/current acquisition amplification, sensor signal front end, ADC buffer circuit.
High-precision data acquisition system
Used in conjunction with 16~24-bit ADC/DAC to ensure the linearity and zero point accuracy of the acquisition system.
Medical electronic equipment
ECG/EKG, low frequency physiological signal amplification, low drift monitoring applications.
Power Monitoring and Differential Measurements
High-precision differential amplification, linear power rail current sensing and feedback control.
Automotive and Communications Signal Processing
Analog signal cleaning, compensation and stabilization in EMC environments.
Advantages comparison analysis
Features/Parameters | LT1014ISW#PBF | General purpose quad op amp LM324 |
Input offset voltage (max) | 50μV | 2~5mV |
Input bias current | 1nA | 20~250nA |
Temperature Drift | 0.3μV/°C | 7~20μV/°C |
Supply voltage range | ±3V ~ ±18V | 3V ~ 32V |
Output linear drive capability | Close to the power rail | Unable to drive to rail |
Calculation accuracy | High precision, low drift | Basic performance |
Compared with conventional op amps such as LM324, LT1014 provides lower offset and higher precision, and is suitable for industrial and medical applications that require extremely high measurement stability and error control.
Manufacturer Profile: Analog Devices (ADI)
Analog Devices is a global leader in high-performance analog signal processing. The LT1014 series was first developed by Linear Technology and is still widely used in industries that have extremely high requirements for reliability and precision. This series represents the classic design paradigm of high-precision amplifiers.
Why choose LT1014ISW#PBF?
● Four-channel high-precision op amp, extremely low offset and temperature drift
● ±18V power supply support, suitable for wide voltage environment
● Power supply rejection ratio and common mode rejection ratio up to 110dB+, outstanding anti-interference ability
● Compact package, consistent performance, suitable for large-scale deployment
● Industrial temperature grade, suitable for harsh environment applications
● Compliant with RoHS environmental protection standards, long-term stable and reliable supply
Frequently Asked Questions (FAQ)
Q1: Is the LT1014ISW#PBF suitable for single-supply systems?
Yes. The LT1014ISW#PBF is a high-precision, low-drift quad operational amplifier with a wide input common-mode voltage range and near rail-to-rail output capability. It can still maintain good linearity and amplification performance under single-supply conditions (such as +5V or +12V), making it very suitable for signal conditioning, sensor interface or low-frequency amplification in single-supply applications. Its input offset voltage is as low as 50μV (typical value), which ensures good accuracy even under low voltage conditions.
Q2: How does the performance compare to OP07?
The performance is comparable but the integration is higher and the price-performance ratio is better. The core parameters of LT1014, such as low input offset voltage (typically 50μV) and low temperature drift (typically 0.3μV/°C), are basically comparable to the classic high-precision amplifier OP07, and some indicators are slightly improved. Compared with the OP07 single-channel architecture, LT1014 integrates four op amp channels with consistent matching performance, which significantly saves PCB space and has better thermal consistency and layout compactness in multi-channel signal processing systems. It is an ideal alternative for multi-channel high-precision applications (such as data acquisition and instrument amplifier design).
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