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WM8718 датащи(PDF) 13 Page - Wolfson Microelectronics plc

номер детали WM8718
подробное описание детали  24 Bit Differential Stereo DAC with Volume Control
PDF  32 Pages
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производитель  WOLFSON [Wolfson Microelectronics plc]
домашняя страница  http://www.wolfsonmicro.com
Logo WOLFSON - Wolfson Microelectronics plc

WM8718 датащи(HTML) 13 Page - Wolfson Microelectronics plc

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WM8718
Production Data
w
PD Rev 4.3 November 2006
13
Figure 6 Typical Power Up Sequence Where AVDD is Powered Before DVDD
Typical POR Operation (typical values, not tested)
SYMBOL
MIN
TYP
MAX
UNIT
Vpora
0.5
0.7
1.0
V
Vporr
0.5
0.7
1.1
V
Vpora_off
1.0
1.4
2.0
V
Vpord_off
0.6
0.8
1.0
V
In a real application the designer is unlikely to have control of the relative power up sequence of
AVDD and DVDD. Using the POR circuit to monitor VMID ensures a reasonable delay between
applying power to the device and Device Ready.
Figure 5 and Figure 6 show typical power up scenarios in a real system. Both AVDD and DVDD
must be established and VMID must have reached the threshold Vporr before the device is ready
and can be written to. Any writes to the device before Device Ready will be ignored.
Figure 5 shows DVDD powering up before AVDD. Figure 6 shows AVDD powering up before
DVDD. In both cases, the time from applying power to Device Ready is dominated by the charge
time of VMID.
A 10uF cap is recommended for decoupling on VMID. The charge time for VMID will dominate the
time required for the device to become ready after power is applied. The time required for VMID
to reach the threshold is a function of the VMID resistor string and the decoupling capacitor. The
Resistor string has a typical equivalent resistance of 33kohm (+/-20%). Assuming a 10uF
capacitor, the time required for VMID to reach threshold of 1V is approx 74ms.



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