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ADE7932 数据表(PDF) 79 Page - Analog Devices

部件名 ADE7932
功能描述  Isolated Energy Metering Chipset for Polyphase Shunt Meters
PDF  120 Pages
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制造商  AD [Analog Devices]
网页  http://www.analog.com
标志 AD - Analog Devices

ADE7932 数据表(HTML) 79 Page - Analog Devices

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Data Sheet
ADE7978/ADE7933/ADE7932
Rev. 0 | Page 79 of 120
POWER-UP PROCEDURE
The ADE7978/ADE7933/ADE7932 chipset contains on-chip
power supply monitors that supervise the power supply (VDD).
The ADE7933/ADE7932 have a monitor with a threshold at
2.0 V ± 10% and a timeout timer of 23 ms. The ADE7978 has
a monitor with a threshold between 2.5 V and 2.6 V and a time-
out timer of 32 ms. Because the ADE7933/ADE7932 are fully
managed by the ADE7978, the power supply monitor of the
ADE7978 determines the power-up of the chipset.
The ADE7978 is in an inactive state until VDD reaches the
threshold of 2.5 V to 2.6 V. The ADE7933/ADE7932 are also in
an inactive state. Before the chipset is powered up, make sure
that the power supply for the ADE7978 ensures a transition from
around 2.5 V or 2.6 V to 3.3 V − 10% in less than 32 ms. Figure 99
shows the power-up procedure, which follows these steps:
1.
When VDD crosses the 2.5 V to 2.6 V threshold, the
ADE7978 power supply monitor keeps the chip in the
inactive state for an additional 32 ms, allowing VDD to reach
3.3 V − 10%, the minimum recommended supply voltage.
2.
The ADE7978 starts to function and generates a 4.096 MHz
clock signal for the ADE7933/ADE7932 at the CLKOUT pin.
3.
The ADE7933/ADE7932 devices begin to function.
4.
After 20 μs, the ADE7978 resets the ADE7933/ADE7932
devices by setting the RESET_EN pin low. The ADE7978
toggles the following pins eight times from high to low at a
4.096 MHz frequency (CLKIN/4): VT_A, VT_B, VT_C,
and VT_N.
5.
The ADE7933/ADE7932 devices begin to function at
default conditions.
6.
When the ADE7978 and the ADE7933/ADE7932 devices
become fully functional, the IRQ1 interrupt pin is set low, and
Bit 15 (RSTDONE) in the STATUS1 register (Address 0xE503)
is set to 1. This bit is cleared to 0 during power-up and is set
to 1 when the power-up is completed.
7.
After a power-up of the ADE7978, the I2C serial port is
active. For information about changing the serial port to SPI
and about locking in the selected serial port (I2C or SPI), see
the Serial Interface Selection section. Immediately after
power-up, the ADE7978 resets all registers to their default
values.
After a successful power-up of the chipset, follow the instructions
in the Initializing the Chipset section.
If the supply voltage, VDD, falls below 2 V ± 10%, the ADE7978
and the ADE7933/ADE7932 devices enter an inactive state, which
means that no measurements or computations are executed.
INITIALIZING THE CHIPSET
After the ADE7978/ADE7933/ADE7932 are powered up,
initialize the chipset as follows.
1.
Monitor the IRQ1 pin until it goes low, indicating that the
RSTDONE interrupt is triggered.
2.
When the ADE7978 starts functioning after power-up, the
I2C port is the active serial port. If SPI communication is
to be used, toggle the SS/HSA pin three times from high to
low to select the SPI interface. For more information about
changing the communication port to SPI, see the Serial
Interface Selection section.
3.
Read the STATUS1 register (Address 0xE503) to verify that
Bit 15 (RSTDONE) is set to 1, and then write a 1 to the bit
to clear it. The IRQ1 pin returns high. Because RSTDONE
is an unmaskable interrupt, Bit 15 (RSTDONE) must be
reset to 0 for the IRQ1 pin to return high.
It is recommended that all other flags in the STATUS1 and
STATUS0 registers also be reset by writing a 1 to all bits in
the registers.
20µs
ADE7978 AND
ADE7933/ADE7932s
POWERED UP.
3.3V – 10%
2.5V TO 2.6V
ADE7978 STARTS
FUNCTIONING. ADE7978
CLOCKS ADE7933/ADE7932s.
0V
32ms
ADE7978 POR
TIMER TURNED ON.
RSTDONE
INTERRUPT
TRIGGERED.
ADE7978 AND
ADE7933/ADE7932s
READY.
50ms
MICROPROCESSOR
MAKES THE CHOICE
BETWEEN I2C AND SPI.
ADE7978 RESETS ADE7933/ADE7932s.
ADE7933/ADE7932s START
FUNCTIONING.
Figure 99. Power-Up Procedure



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