Manufacturer Part Number
TCA0372BDWR2G
Manufacturer
onsemi
Introduction
The TCA0372BDWR2G is a dual operational amplifier (op-amp) integrated circuit (IC) designed for a variety of instrumentation, signal conditioning, and buffer applications.
Product Features and Performance
Dual op-amp design with two independent amplifier channels
Wide supply voltage range of 5V to 40V
Low input offset voltage of 1mV
High gain bandwidth product of 1.4MHz
High output current capability of 1A per channel
Low input bias current of 100nA
Slew rate of 1.4V/μs
Product Advantages
Wide operating temperature range of -40°C to 125°C
Robust ESD protection
Compact 16-SOIC surface mount package
RoHS3 compliant
Key Technical Parameters
Supply voltage range: 5V to 40V
Input offset voltage: 1mV
Gain bandwidth product: 1.4MHz
Output current per channel: 1A
Input bias current: 100nA
Slew rate: 1.4V/μs
Quality and Safety Features
Compliant with RoHS3 environmental regulations
ESD protection for enhanced reliability
Compatibility
The TCA0372BDWR2G is compatible with a wide range of electronic systems and devices that require a high-performance dual op-amp for signal conditioning, amplification, and buffering applications.
Application Areas
Instrumentation and measurement equipment
Industrial control systems
Audio and video signal processing
Power supply regulation and control
Sensor signal conditioning
Product Lifecycle
The TCA0372BDWR2G is an active product and is currently available from onsemi. There are no known plans for its discontinuation, and replacement or upgrade options may be available if needed.
Several Key Reasons to Choose This Product
Wide supply voltage range and high output current capability make it suitable for a variety of applications.
Low input offset voltage and bias current provide high precision and accuracy.
Fast slew rate and high gain bandwidth enable efficient signal processing.
Robust ESD protection and RoHS3 compliance ensure reliability and environmental compliance.
Compact 16-SOIC surface mount package provides flexibility in circuit design and integration.