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WM8912GEFL/RV 参数 Datasheet PDF下载

WM8912GEFL/RV图片预览
型号: WM8912GEFL/RV
PDF下载: 下载PDF文件 查看货源
内容描述: 超低功耗DAC与耳机驱动器的便携式音频应用 [Ultra Low Power DAC with Headphone Driver for Portable Audio Applications]
分类和应用: 驱动器便携式
文件页数/大小: 128 页 / 1259 K
品牌: WOLFSON [ WOLFSON MICROELECTRONICS PLC ]
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Production Data  
WM8912  
REGISTER  
ADDRESS  
BIT  
LABEL  
DEFAULT  
DESCRIPTION  
3:0  
DCS_STARTUP_  
COMPLETE [3:0]  
0000  
DC Servo Start-Up status  
[3] - LINEOUTR  
[2] - LINEOUTL  
[1] - HPOUTR  
[0] - HPOUTL  
0 = Start-Up DC Servo mode not  
completed..  
1 = Start-Up DC Servo mode  
complete.  
Table 31 DC Servo Enable and Start-Up Modes  
DC SERVO ACTIVE MODES  
The DC Servo modes described above are suitable for initialising the DC offset correction circuit on  
the Line and Headphone outputs as part of a controlled start-up sequence which is executed before  
the signal path is fully enabled. Additional modes are available for use whilst the signal path is active;  
these modes may be of benefit following a large change in signal gain, which can lead to a change in  
DC offset level. Periodic updates may also be desirable to remove slow drifts in DC offset caused by  
changes in parameters such as device temperature.  
The DC Servo circuit is enabled on HPOUTR and HPOUTL by setting DCS_ENA_CHAN_1 and  
DCS_ENA_CHAN_0 respectively, as described earlier in Table 31. Similarly, the DC Servo circuit is  
enabled on LINEOUTR and LINEOUTL by setting DCS_ENA_CHAN_3 and DCS_ENA_CHAN_2  
respectively.  
Writing a logic 1 to DCS_TRIG_SINGLE_n initiates a single DC offset measurement and adjustment  
to the associated output; (‘n’ = 3 for LINEOUTR channel, 2 for LINEOUTL channel, 1 for HPOUTR  
channel, 0 for HPOUTL channel). This will adjust the DC offset correction on the selected channel by  
no more than 1LSB (0.25mV).  
Setting DCS_TIMER_PERIOD_01 or DCS_TIMER_PERIOD_23 to a non-zero value will cause a  
single DC offset measurement and adjustment to be scheduled on a periodic basis. Periodic rates  
ranging from every 0.52s to in excess of 2 hours can be selected.  
Writing a logic 1 to DCS_TRIG_SERIES_n initiates a series of DC offset measurements and applies  
the necessary correction to the associated output. The number of DC Servo operations performed is  
determined by DCS_SERIES_NO_01 or DCS_SERIES_NO_23. A maximum of 128 operations may  
be selected, though a much lower value will be sufficient in most applications.  
The DC Servo control fields associated with active modes (suitable for use on a signal path that is in  
active use) are described in Table 32.  
REGISTER  
ADDRESS  
BIT  
LABEL  
DEFAULT  
DESCRIPTION  
R68 (44h)  
15  
DCS_TRIG_SING  
LE_3  
0
Writing 1 to this bit selects a single DC  
offset correction for LINEOUTR.  
DC Servo 1  
In readback, a value of 1 indicates that  
the DC Servo single correction is in  
progress.  
14  
13  
DCS_TRIG_SING  
LE_2  
0
0
Writing 1 to this bit selects a single DC  
offset correction for LINEOUTL.  
In readback, a value of 1 indicates that  
the DC Servo single correction is in  
progress.  
DCS_TRIG_SING  
LE_1  
Writing 1 to this bit selects a single DC  
offset correction for HPOUTR.  
In readback, a value of 1 indicates that  
the DC Servo single correction is in  
progress.  
PD, Rev 4.0, September 2010  
51  
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