DatasheetQ Logo
Electronic component search and free download site. Transistors,MosFET ,Diode,Integrated circuits

WM8778SEDS/RV 查看數據表(PDF) - Wolfson Microelectronics plc

零件编号
产品描述 (功能)
生产厂家
WM8778SEDS/RV
Wolfson
Wolfson Microelectronics plc Wolfson
WM8778SEDS/RV Datasheet PDF : 52 Pages
First Prev 11 12 13 14 15 16 17 18 19 20 Next Last
WM8778
Production Data
Figure 10 Typical Power up Sequence where AVDD is Powered before DVDD
Typical POR Operation (typical values, not tested)
SYMBOL
Vpora
Vporr
Vpora_off
Vpord_off
MIN
0.5
0.5
1.0
0.6
TYP
0.7
0.7
1.4
0.8
MAX
1.0
1.1
2.0
1.0
UNIT
V
V
V
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 9 and Figure 10 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 9 shows DVDD powering up before AVDD. Figure 10 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 an typical equivalent resistance of 50k(+/-20%). Assuming a 10uF capacitor,
the time required for VMID to reach threshold of 1V is approx 110ms.
w
PD, Rev 4.2, July 2008
14

Share Link: 

datasheetq.com  [ Privacy Policy ]Request Datasheet ] [ Contact Us ]