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WM8972LEFL/R 数据表(PDF) 35 Page - Wolfson Microelectronics plc

部件名 WM8972LEFL/R
功能描述  MONO CODEC FOR PORTABLE AUDIO APPLICATIONS
PDF  49 Pages
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制造商  WOLFSON [Wolfson Microelectronics plc]
网页  http://www.wolfsonmicro.com
标志 WOLFSON - Wolfson Microelectronics plc

WM8972LEFL/R 数据表(HTML) 35 Page - Wolfson Microelectronics plc

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Preliminary Technical Data
WM8972L
w
PTD Rev 2.2 June 2004
35
The WM8972L has two possible device addresses, which can be selected using the CSB pin.
CSB STATE
DEVICE ADDRESS
Low
0011010 (0 x 34h)
High
0011011 (0 x 36h)
Table 31 2-Wire MPU Interface Address Selection
POWER SUPPLIES
The WM8972L can use up to four separate power supplies:
AVDD / AGND: Analogue supply, powers all analogue functions except the headphone drivers.
AVDD can range from 1.8V to 3.6V and has the most significant impact on overall power
consumption (except for power consumed in the headphone). A large AVDD slightly improves
audio quality.
OPVDD / OPGND: Output supply, powers the output drivers. OPVDD can range from 1.8V to
3.6V. OPVDD is normally tied to AVDD, but it requires separate layout and decoupling
capacitors to curb harmonic distortion. With a larger OPVDD, louder speaker outputs can be
achieved with lower distortion. If OPVDD is lower than AVDD, the output signal may be clipped.
DCVDD: Digital core supply, powers all digital functions except the audio and control
interfaces. DCVDD can range from 1.42V to 3.6V, and has no effect on audio quality. The
return path for DCVDD is DGND, which is shared with DBVDD.
DBVDD: Digital buffer supply, powers the audio and control interface buffers. This makes it
possible to run the digital core at very low voltages, saving power, while interfacing to other
digital devices using a higher voltage. DBVDD draws much less power than DCVDD, and has
no effect on audio quality. DBVDD can range from 1.8V to 3.6V. The return path for DBVDD is
DGND, which is shared with DCVDD.
It is possible to use the same supply voltage on all four. However, digital and analogue supplies
should be routed and decoupled separately to keep digital switching noise out of the analogue signal
paths.



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