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EVAL-ADE7169F16EB Datasheet(PDF) 26 Page - Analog Devices

No. de pieza EVAL-ADE7169F16EB
Descripción Electrónicos  Single-Phase Energy Measurement IC with 8052 MCU, RTC and LCD driver
PDF  148 Pages
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Fabricante Electrónico  AD [Analog Devices]
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EVAL-ADE7169F16EB Datasheet(HTML) 26 Page - Analog Devices

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ADE75xx/ADE71xx
Preliminary Technical Data
Rev. PrE | Page 26 of 148
6
METER_OFF
0
Set this bit to turn off the modulators and energy metering DSP circuitry to reduce power if
metering functions are not needed in PSM0
5
RESERVED
0
4
COREOFF
0
Set this bit to shut down the core if in the PSM1 operating mode.
3
RESERVED
Controls the core clock frequency, Fcore. Fcore=4.096MHz/2CD
CD[2:0]
Fcore (MHz)
0
0
0
4.096
0
0
1
2.048
0
1
0
1.024
0
1
1
0.512
1
0
0
0.256
1
0
1
0.128
1
1
0
0.064
2-0
CD[2:0]
010
1
1
1
0.032
Note: The POWCON register must be unlocked by first writing to the KYREG key register. The KYREG SFR is set to 0xA7 to unlock the
POWCON SFR and then the POWCON SFR can be modified. For example:
MOV KYREG,#0A7h
;Write KYREG to 0xA7 to get write access to the POWCON SFR
MOV POWCON, #10H
;Shutdown the core
POWER SUPPLY ARCHITECTURE
ADE75XX/ADE71XX has two power supply inputs, VDD and
VBAT, and requires only a single 3.3V power supply at VDD for
full operation. A battery backup, or secondary power supply,
with a maximum of 3.6V can be connected to the VBAT input.
Internally, the ADE75XX/ADE71XX connects VDD or VBAT to
VSW, which is used to derive the power for the
ADE75XX/ADE71XX circuitry. The VSWOUT output pin reflects
the voltage at VSW, and has a maximum output current of TBD
mA. This pin may also be used to power a limited number of
peripheral components. The 2.5V analog supply, VINTA and the
2.5V supply for the core logic, VINTD, are derived by on-chip
linear regulators from VSW. Figure 9 shows the power supply
architecture of ADE75XX/ADE71XX.
The ADE75XX/ADE71XX provides automatic battery
switchover between VDD and VBAT based on the voltage level
detected at VDD or VDCIN. Additionally, the BCTRL input can
also 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 0V to 3.3V DC
signal. This input is intended for power supply supervisory
purposes and does not provide power to the
ADE75XX/ADE71XX circuitry - see Battery Switchover section.
MCU
SCRATCHPAD
LCD
RTC
TEMPERATURE ADC
DCIN
V
DD
V
INTD
V
INTA
V
3.3V
2.5V
LDO
BAT
V
SWOUT
V
BCTRL
SW
V
ADE
SPI/I2C
UART
LDO
POWER SUPPLY
MANAGEMENT
ADC
ADC
Figure 9: Power Supply Architecture
BATTERY SWITCHOVER
ADE75XX/ADE71XX monitors 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
ADE75XX/ADE71XX allows a seamless transition from VDD to
VBAT. An automatic battery switchover option ensures a stable
power supply to the ADE75XX/ADE71XX, as long as the
external battery voltage is above TBD 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



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