The WM8590GEDS/RV is a high-performance, low-power stereo codec from Cirrus Logic. It is designed for a wide range of audio applications, providing high-fidelity audio conversion and processing capabilities in a compact package. This codec integrates various functions such as analog-to-digital converters (ADCs), digital-to-analog converters (DACs), and audio processing blocks, making it suitable for portable audio devices, professional audio equipment, and automotive audio systems.
Applications:
- Portable audio players
- Mobile phones
- Automotive infotainment systems
- Digital voice recorders
- Professional audio interfaces
Features:
- High-performance stereo ADC and DAC
- Low power consumption for extended battery life
- Integrated headphone amplifier
- Advanced audio processing capabilities, including EQ and volume control
- Flexible digital interface for easy integration with various processors
- Compact package for space-constrained applications
Benefits:
- Superior audio quality ensures a rich and immersive listening experience.
- Low power consumption extends battery life in portable devices.
- Integrated features reduce the need for external components, simplifying system design and lowering costs.
- Flexible digital interface enables seamless integration with different processors and platforms.
- Small form factor allows for use in compact and portable devices.
Additional Details:
The WM8590GEDS/RV typically supports sampling rates up to 192 kHz and offers a dynamic range of up to 106 dB. It includes various audio processing algorithms, such as equalization, volume control, and noise reduction, enhancing the overall audio experience. The integrated headphone amplifier can drive a wide range of headphones, providing ample power and low distortion. The codec communicates with the host processor via a standard digital audio interface, such as I2S or SPI. The device operates on a low supply voltage, further contributing to its low power consumption. The WM8590GEDS/RV is available in a small QFN package, making it suitable for space-constrained applications.