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WM8960 データシート(PDF) 66 Page - Wolfson Microelectronics plc |
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WM8960 データシート(HTML) 66 Page - Wolfson Microelectronics plc |
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66 / 92 page ![]() WM8960 Production Data w PD, August 2013, Rev 4.2 66 STOPPING THE MASTER CLOCK In order to minimise power consumed in the digital core of the WM8960, the master clock may be stopped in Standby and OFF modes. If this cannot be done externally at the clock source, the DIGENB bit (R25, bit 0) can be set to stop the MCLK signal from propagating into the device core. In Standby mode, setting DIGENB will typically provide an additional power saving on DCVDD of 20uA. However, since setting DIGENB has no effect on the power consumption of other system components external to the WM8960, it is preferable to disable the master clock at its source wherever possible. MCLK should not be stopped while the class D outputs are enabled, as this would prevent the outputs from functioning. REGISTER ADDRESS BIT LABEL DEFAULT DESCRIPTION R25 (19h) Additional Control (1) 0 DIGENB 0 Master clock disable 0 = Master clock enabled 1 = Master clock disabled Table 48 Enabling the Master Clock NOTE: Before DIGENB can be set, the control bits ADCL, ADCR, DACL and DACR must be set to zero and a waiting time of 1ms must be observed. Any failure to follow this procedure may prevent DACs and ADCs from re-starting correctly. SAVING POWER AT HIGHER SUPPLY VOLTAGE The AVDD supply of the WM8960 can operate beteen 2.7V and 3.6V. By default, all analogue circuitry on the device is optimized to run at 3.3V. This set-up is also good for all other supply voltages down to 2.7V. At lower voltages, performance can be improved by increasing the bias current by setting VSEL[1:0] = 01. If low power operation is preferred the bias current can be left at the default setting. This is controlled as shown below. REGISTER ADDRESS BIT LABEL DEFAULT DESCRIPTION R23 (17h) Additional Control (1) 7:6 VSEL [1:0] 11 Analogue Bias Optimisation 00 = Reserved 01 = Increased bias current optimized for AVDD=2.7V 1X = Lowest bias current, optimized for AVDD=3.3V Table 49 Bias Optimisation |
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