Introducing the UDA1380HN/N2 Audio Codec from NXP
The UDA1380HN/N2 is a high-performance, low-power stereo audio codec designed by NXP Semiconductors, a leader in the field of advanced integrated circuits. This versatile codec is ideal for a wide range of applications, from portable audio devices to high-end audio systems, providing excellent sound quality and a rich set of features.
Key Features
- High-Quality Audio: The UDA1380HN/N2 supports 24-bit audio processing and a sampling rate of up to 96 kHz, ensuring high-fidelity sound reproduction for a premium listening experience.
- Low Power Consumption: Designed with power efficiency in mind, this codec is perfect for battery-operated devices, helping to extend battery life without compromising on audio quality.
- Multiple Audio Interfaces: It includes I2S and S/PDIF inputs, providing flexibility in receiving audio data from different digital sources.
- Integrated Digital Filters: On-chip digital filtering options, such as programmable notch filter, de-emphasis, and wind filter, allow for tailored audio output and noise reduction.
- Flexible Analog Outputs: The device features stereo line outputs and a headphone driver, making it adaptable for various output requirements.
Applications
The UDA1380HN/N2 is suitable for a broad spectrum of audio applications, including but not limited to:
- MP3 players
- Home audio systems
- Portable speakers
- Car audio systems
- Sound cards
Technical Specifications
With its compact SSOP32 package, the UDA1380HN/N2 is designed to fit into space-constrained applications while delivering robust audio features. It operates over a wide temperature range, making it reliable in various environments. The codec also supports a dynamic range control, which is essential for maintaining consistent audio levels and protecting speakers from damage due to sudden volume spikes.
Whether you're developing a high-end home audio system or a compact portable device, the UDA1380HN/N2 from NXP offers an optimal solution for delivering superior audio quality with the efficiency and flexibility that modern applications demand.