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ADE7569 数据表(PDF) 26 Page - Analog Devices

部件名 ADE7569
功能描述  Single-Phase Energy Measurement IC with 8052 MCU, RTC, and LCD Driver
PDF  136 Pages
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制造商  AD [Analog Devices]
网页  http://www.analog.com
标志 AD - Analog Devices

ADE7569 数据表(HTML) 26 Page - Analog Devices

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ADE7566/ADE7569
Preliminary Technical Data
Rev. PrA | Page 26 of 136
POWER SUPPLY ARCHITECTURE
Each ADE7566/ADE7569 have two power supply inputs, VDD and
VBAT, and require only a single 3.3 V power supply at VDD for full
operation. A battery backup, or secondary power supply, with a
maximum of 3.6 V can be connected to the VBAT input. Internally,
the ADE7566/ADE7569 connect VDD or VBAT to VSW, which is used
to derive power for the ADE7566/ADE7569 circuitry. The VSWOUT
output pin reflects the voltage at VSW and has a maximum output
current of 6 mA. This pin can also be used to power a limited
number of peripheral components. The 2.5 V analog supply (VINTA)
and the 2.5 V supply for the core logic (VINTD) are derived by
on-chip linear regulators from VSW. Figure 22 shows the power
supply architecture of ADE7566/ADE7569.
The ADE7566/ADE7569 provide automatic battery switchover
between VDD and VBAT based on the voltage level detected at VDD
or VDCIN. Additionally, the BCTRL input can be used to trigger a
battery switchover. The conditions for switching VSW from VDD
to VBAT and back to VDD are described in the Battery Switchover
section. VDCIN is an input pin that can be connected to a 0 V to
3.3 V dc signal. This input is intended for power supply super-
visory purposes and does not provide power to the ADE7566/
ADE7569 circuitry (see the Battery Switchover section).
POWER SUPPLY
MANAGEMENT
LDO
VINTD
LDO
VINTA
ADC
VSW
ADC
SCRATCHPAD
LCD
RTC
TEMPERATURE ADC
3.3V
MCU
ADE
SPI/I2C
UART
2.5V
VDCIN VDD VBAT
VSWOUT
BCTRL
Figure 22. Power Supply Architecture
BATTERY SWITCHOVER
The ADE7566/ADE7569 monitor VDD, VBAT, and VDCIN. Automatic
battery switchover from VDD to VBAT can be configured based on
the status of VDD, VDCIN, or the BCTRL pin. Battery switchover is
enabled by default. Setting Bit 1 in the Battery Switchover
Configuration SFR (BATPR, 0xF5) disables battery switchover
so that VDD is always connected to VSW. The source of VSW is
indicated by Bit 6 in the Peripheral Configuration SFR
(PERIPH, 0xF4), which is set when VSW is connected to VDD
and cleared when VSW is connected to VBAT.
The battery switchover functionality provided by the
ADE7566/ADE7569 allows a seamless transition from VDD to
VBAT. An automatic battery switchover option ensures a stable
power supply to the ADE7566/ADE7569, as long as the external
battery voltage is above 2.75 V. It allows continuous code
execution even while the internal power supply is switching
from VDD to VBAT and back. Note that the energy metering
ADCs are not available when VBAT is being used for VSW.
Power supply monitor (PSM) interrupts can be enabled to
indicate when battery switchover occurs and when the VDD
power supply is restored (see the Power Supply Monitor
Interrupt (PSM) section.)
Switching from VDD to VBAT
The following three events switch the internal power supply
(VSW) from VDD to VBAT:
VDCIN < 1.2 V. When VDCIN falls below 1.2V, VSW switches from
VDD to VBAT. This event is enabled when the BATPRG[1:0] bits
in the Battery Switchover Configuration SFR (BATPR,
0xF5) = 0b01. Setting these bits disables switchover based
on VDCIN. Battery switchover on low VDCIN is disabled by
default.
VDD < 2.75 V. When VDD falls below 2.75 V, VSW switches
from VDD to VBAT. This event is enabled when BATPRG[1:0] in
the Battery Switchover Configuration SFR (BATPR, 0xF5)
are cleared.
Rising edge on BCTRL. When the battery control pin,
BCTRL, goes high, VSW switches from VDD to VBAT. This
external switchover signal can trigger a switchover to VBAT
at any time. Setting bits INT1PRG[4:2] to 0bx01 in the
Interrupt Pins Configuration SFR (INTPR, 0xFF) enables
the battery control pin.
Switching from VBAT to VDD
To switch VSW back from VBAT to VDD, all of the following events
that are enabled to force battery switchover must be false:
VDCIN < 1.2 V and VDD < 2.75 V enabled. If the low VDCIN
condition is enabled, VSW switches to VDD after VDCIN
remains above 1.2 V and VDD remains above 2.75 V.
VDD < 2.75 V enabled. VSW switches back to VDD after VDD
has been above 2.75 V.
BCTRL enabled. VSW switches back to VDD after BCTRL is
low and the first or second bullet point is satisfied.



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