Artículo: AMZ-B0F9YW9BV1

Yosoo Health Gear

DAC Decoder Board I2S Input 32bit 384K e with 3.5mm Headphone Output Digital Audio for Power Amplifier BoardDAC eI2S eDAC Stereo

Detalles del producto
Disponibilidad
En stock
Peso con empaque
0.20 kg
Devolución
No
Condición
Nuevo
Producto de
Amazon
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USA

Sobre este producto
  • Spec: Item Type: DAC Decoder Board Material: PCB Power Supply Voltage: DC 5V-10V Maximum Support: 32bit Data 384K Sampling Rate SNR: 112db, Distortion -93db How to Use: Use after installation. Package List: 1 xDAC Decoder Board Notice: 1. The power supply should not be connected to the reverse, the reverse will damage the board, the voltage exceeds 10V will also damage the board. 2. This board does not need to connect to MCLK chip, internal PLL upfrequency generates MCLK clock, which is much better than using asynchronous clock.
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High-Resolution Audio Decoding : This DAC decoder board supports 32bit/384KHz high-resolution audio decoding, delivering studio-grade sound quality with an impressive 112dB SNR and -93dB distortion rating. Flexible Connectivity Options : Featuring standard I2S input interface (LRCK/DATA/), the e supports direct connection with most digital audio sources. The board includes manual switching capability for left-justified I2S format signals, providing compatibility with various digital audio equipment Dual Filter Modes : Users can select between normal mode for balanced sound characteristics or low latency mode for real-time audio processing through the FLT port configuration. This flexibility allows optimization for different listening preferences and application scenarios Integrated Headphone Output : The built-in 3.5mm headphone jack enables direct monitoring without additional amplification equipment. The 2.1V RMS output voltage drives most headphones effectively while maintaining clean signal transmiss Smart Clock Design : Utilizing internal PLL upfrequency technology for MCLK generation eliminates the need for external clock chips. This innovative design reduces signal jitter and improves timing accuracy compared to asynchronous clock solutions