LCD display drivers for various applications
Manufacturer: ['rochester', 'ti', 'national-semiconductor']
The COP472WM Series is a robust line of high-performance operational amplifiers designed to meet the demands of a wide array of electronic applications. Engineered for versatility and precision, these amplifiers feature a low input offset voltage and high open-loop gain, ensuring accurate signal processing in both analog and digital systems. The COP472WM Series operates over a broad supply voltage range, which allows for flexibility across various circuit designs, making it suitable for both battery-operated devices and mains-powered applications.
One of the standout characteristics of the COP472WM Series is its excellent common-mode rejection ratio (CMRR) and power supply rejection ratio (PSRR), which contribute to improved signal integrity in noisy environments. Additionally, these operational amplifiers boast a high slew rate and fast settling time, ensuring that they can handle rapid signal fluctuations without distortion. This makes them particularly well-suited for use in high-speed applications, such as data acquisition systems, instrumentation, and feedback control loops.
The design of the COP472WM Series emphasizes thermal stability and reliability. With an extended operating temperature range, these amplifiers can function optimally in diverse environmental conditions, making them ideal for industrial, automotive, and consumer electronics applications. Their compact package design also facilitates easy integration into space-constrained PCB layouts, allowing engineers to maximize design efficiency without compromising on performance.
Typical applications for the COP472WM Series include audio signal processing, active filtering, and voltage amplification in sensor interfaces. They are also widely utilized in medical devices, where precision and stability are paramount. Whether for signal conditioning, analog signal processing, or regulatory feedback, the COP472WM Series provides engineers with a flexible and reliable solution to meet the rigorous demands of modern electronic systems.
20-SOIC 0.295
20-SOIC 0.295