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參數(shù)資料
型號(hào): ADE7169ACPF16-RL
廠商: ANALOG DEVICES INC
元件分類: 模擬信號(hào)調(diào)理
英文描述: Single-Phase Energy Measurement IC with 8052 MCU, RTC and LCD driver
中文描述: ANALOG CIRCUIT, QCC64
封裝: 9 X 9MM, MO-220VMMD, LFCSP-64
文件頁數(shù): 28/140頁
文件大小: 1359K
代理商: ADE7169ACPF16-RL
ADE7169F16
Preliminary Technical Data
(IPSME, 0xEC) enables this event to generate a PSM interrupt.
This event associated with the SAG monitoring can be used to
detect a power supply - V
DD
- being compromised and trigger
further actions prior to decide a switch of V
DD
to V
BAT
.
SAG Monitor PSM Interrupt
The ADE7169F16 energy measurement DSP monitors the ac
voltage input at the V
P
and V
N
input pins. The SAGLVL register
is used to set the threshold for a line voltage sag event. The
SAGF bit in the Power Management Interrupt Flag SFR (IPSMF,
0xF8) is set if the line voltage stays below the level set in the
SAGLVL register for the number of line cycles set in the
SAGCYC register, - see Line Voltage Sag Detection section.
Rev. PrD | Page 28 of 140
Setting the ESAG bit in the Power Management Interrupt
Enable SFR (IPSME, 0xEC) enables this event to generate a
PSM interrupt.
USING THE POWER SUPPLY FEATURES
In an energy meter application, V
DD
, the 3.3V power supply, is
typically generated from the ac line voltage and regulated to
3.3V by a voltage regulator IC. The pre-regulated DC voltage,
typically 5V to 12V, can be connected to V
DCIN
through a
resistor divider. A 3.6V battery can be connected to V
BAT
. Figure
11 shows how the ADE7169F16 power supply inputs would be
set up in this application.
BCTRL
Voltage
Supervisory
Voltage
Supervisory
ac input
SAG
Detection
PSU
3.3V
Regulator
5 - 12V dc
Power Supply
Management
(240, 220, 110V typical)
V
DCIN
V
DD
V
SWOUT
V
BAT
V
P
V
N
IPSMF SFR
(Addr. 0xF8)
V
SW
Figure 11. Power Supply Management for Energy Meter Application
Figure 12 shows the sequence of events that will be generated
for the power meter application in Figure 11 if the main power
supply generated by the PSU starts to fail. The sag detection can
provide the earliest warning of a potential problem on V
DD
.
When a sag event occurs, the user code can be configured to
backup data and prepare for battery switchover if desired. The
relative spacing of these interrupts will depend on the design of
the power supply.
Figure 13 shows the sequence of events that will be generated
for the power meter application shown in Figure 11 if the main
power supply starts to fail, with battery switchover on low V
DCIN
or low V
DD
enabled.
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