Features: Stereo Codec:• DAC SNR 98dB, THD -84dB ('A' weighted @ 48kHz)• ADC SNR 95dB, THD -84dB ('A' weighted @ 48kHz)• Speaker driver (1W into 8 BTL with 5V supply)• Headphone driver with 'capless' option• 40mW per channel output power into 16 / 3.3V AVDD2• Po...
WM8983: Features: Stereo Codec:• DAC SNR 98dB, THD -84dB ('A' weighted @ 48kHz)• ADC SNR 95dB, THD -84dB ('A' weighted @ 48kHz)• Speaker driver (1W into 8 BTL with 5V supply)• Headph...
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Audio IC Development Tools WM8903 Evaluation Board System
CONDITION | MIN | MAX |
DBVDD, DCVDD, AVDD1 supply voltages | -0.3V | +3.63V |
AVDD2 supply voltage | -0.3V | +7V |
Voltage range digital inputs | DGND -0.3V | DVDD +0.3V |
Voltage range analogue inputs | AGND -0.3V | AVDD +0.3V |
Operating temperature range, TA | -25°C | +85°C |
Storage temperature prior to soldering | 30°C max / 85% RH max | |
Storage temperature after soldering | -65°C | +150°C |
The WM8983 is a low power, high quality stereo codec designed for portable multimedia applications. Highly flexible analogue mixing functions enable new application features, combining hi-fi quality audio with voice communication.
The WM8983 integrates preamps for stereo differential mics, and includes drivers for speaker, headphone and differential or stereo line output. External component requirements are reduced as no separate microphone or headphone amplifiers are required.
Advanced on-chip digital signal processing includes a 5-band equaliser, a mixed signal Automatic Level Control for the microphone or line input through the ADC as well as a purely digital limiter function for record or playback. A programmable high pass filter in the ADC path is provided for wind noise reduction and an IIR with programmable coefficients can be used as a notch filter to suppress fixed-frequency noise.
The WM8983 digital audio interface can operate in master or slave mode, while an integrated PLL supports flexible clocking schemes. A-law and -law companding are fully supported.
The WM8983 operates at analogue supply voltages from 2.5V to 3.3V, although the digital core can operate at voltages down to 1.71V to save power. Speaker supplies can operate up to 5V for increased speaker output power. Additional power management control enables individual sections of the chip to be powered down under software control.