NE5532AD8 Dual Operational Amplifier
The NE5532AD8 from ON Semiconductor is a high-performance, dual operational amplifier that combines a wide range of features to ensure reliability and versatility across a multitude of applications. Designed for high-fidelity audio pre-amplifiers and active filters, the NE5532AD8 also excels in other signal processing tasks in industrial, automotive, and consumer electronics domains.
This operational amplifier is characterized by its low noise performance, with a noise voltage of just 5 nV/√Hz at 1 kHz, making it an excellent choice for audio applications where maintaining signal integrity is paramount. Additionally, the NE5532AD8 boasts a high unity-gain and frequency compensation which ensures a stable and high-frequency response, making it suitable for high-speed signal conditioning environments.
Key Features:
- High Gain Bandwidth: 10 MHz typical
- Low Total Harmonic Distortion: 0.003% typical
- High Slew Rate: 9 V/μs typical
- Low Noise: 5 nV/√Hz at 1 kHz
- Dual Amplifier Configuration
- Internally Compensated for Unity Gain
- Operational temperature range: -40°C to +105°C
- Supply Voltage Range: ±3 V to ±20 V
The device is offered in an 8-pin DIP (Dual In-line Package), represented by the 'D8' suffix in its part number, which makes it suitable for through-hole PCB mounting. This package style is widely used and favored for its ease of handling and soldering onto circuit boards.
ON Semiconductor's NE5532AD8 is designed to meet the stringent requirements of audio systems, but its robustness and flexibility also make it a good fit for other analog circuits that require high performance. Whether you're designing professional audio equipment or looking for a reliable op-amp for signal conditioning in sensor interfaces, the NE5532AD8 is a solid choice that offers both quality and cost-effectiveness.
Overall, the NE5532AD8 stands out as a versatile component that can enhance the performance of your electronic designs, ensuring clear and accurate signal amplification across a wide range of operating conditions.