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WM8501GED/V датащи(PDF) 6 Page - Wolfson Microelectronics plc |
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WM8501GED/V датащи(HTML) 6 Page - Wolfson Microelectronics plc |
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6 / 20 page ![]() WM8501 Production Data w PD, Rev 4.2, July 2009 6 ELECTRICAL CHARACTERISTICS Test Conditions AVDD = 5V, DVDD = 3.3V, GND = 0V, TA = +25 oC, fs = 48kHz, MCLK = 256fs unless otherwise stated. PARAMETER SYMBOL TEST CONDITIONS MIN TYP MAX UNIT Digital Logic Levels (TTL Levels) Input LOW level VIL 0.8 V Input HIGH level VIH 2.0 V Output LOW VOL IOL = 2mA DGND + 0.3V V Output HIGH VOH IOH = 2mA DVDD – 0.3V V Analogue Reference Levels Reference voltage (VMID) AVDD/2 V Potential divider resistance RCAP AVDD to VMID and VMID to GND 50 k Ω DAC Output (Load = 10k Ω. 50pF) 0dBFs Full scale output voltage At DAC outputs 1.6 x AVDD/5 1.7 x AVDD/5 1.8 x AVDD/5 Vrms A-weighted, @ fs = 48kHz 90 100 dB A-weighted @ fs = 96kHz 97 dB Signal to Noise Ratio (Note 5,6,7) SNR A-weighted @ fs = 192kHz 97 dB Dynamic Range (Note 2, 6) DNR A-weighted, -60dB full scale input 90 100 dB Total Harmonic Distortion (Note 7) THD 1kHz, Load = 10k Ω, 0dBFS -88 -78 dB DAC channel separation 93 dB Analogue Output Levels Output level (line output) Load = 10k Ω, 0dBFS 1.7 Vrms Minimum resistance load (line output) To midrail or a.c. coupled 820 Ω Output level (Headphone output) Load = 16 Ω, 0dBFS 1.0 Vrms Minimum resistance load (Headphone output) To midrail or a.c. coupled 16 Ω Gain mismatch channel-to-channel ±1 %FSR Output d.c. level AVDD/2 V Supply Current Analogue supply current AVDD = 5V 9 mA DVDD = 5V 8 mA Digital supply current DVDD = 3.3V 4.5 mA Power down current (note 4) AVDD=DVDD=5V 0.01 mA Notes: 1. Ratio of output level with 1kHz full scale input, to the output level with all zeros into the digital input, measured ‘A’ weighted over a 20Hz to 20kHz bandwidth. 2. All performance measurements done with 20kHz low pass filter, and where noted an A-weight filter. Failure to use such a filter will result in higher THD and lower SNR and Dynamic Range readings than are found in the Electrical Characteristics. The low pass filter removes out of band noise; although it is not audible it may affect dynamic specification values. 3. VMID pin decoupled with 10uF and 0.1uF capacitors (smaller values may result in reduced performance). 4. Power down occurs 1.5 μs after MCLK is stopped. 5. Signal-to-noise ratio (dB) – SNR is a measure of the difference in level between the full scale output and the output with no signal applied. (No Auto-zero or Automute function is employed in achieving these results). |
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