ADE7166ASTZF8 Analog Devices Inc, ADE7166ASTZF8 Datasheet - Page 62

IC ENERGY METER 1PHASE 64LQFP

ADE7166ASTZF8

Manufacturer Part Number
ADE7166ASTZF8
Description
IC ENERGY METER 1PHASE 64LQFP
Manufacturer
Analog Devices Inc
Datasheets

Specifications of ADE7166ASTZF8

Applications
Energy Measurement
Core Processor
8052
Program Memory Type
FLASH (8 kB)
Controller Series
ADE71xx
Ram Size
512 x 8
Interface
I²C, SPI, UART
Number Of I /o
20
Voltage - Supply
3.135 V ~ 3.465 V
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
64-LQFP
Ic Function
Single Phase Energy Measurement IC
Supply Voltage Range
3.13V To 3.46V, 2.4V To 3.7V
Operating Temperature Range
-40°C To +85°C
Digital Ic Case Style
LQFP
No. Of Pins
64
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

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Company
Part Number
Manufacturer
Quantity
Price
Part Number:
ADE7166ASTZF8
Manufacturer:
Analog Devices Inc
Quantity:
10 000
Part Number:
ADE7166ASTZF8-RL
Manufacturer:
Analog Devices Inc
Quantity:
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ADE7566/ADE7569/ADE7166/ADE7169
Active Energy Pulse Output
All of the ADE7566/ADE7569/ADE7166/ADE7169 circuitry has a
pulse output whose frequency is proportional to active power
(see the Active Power Calculation section). This pulse
frequency output uses the calibrated signal from the WGAIN
register output, and its behavior is consistent with the setting of
the active energy accumulation mode in the ACCMODE
register (0x0F). The pulse output is active low and should be
preferably connected to an LED as shown in
ACTIVE ENERGY
ACTIVE POWER
APSIGN FLAG
THRESHOLD
THRESHOLD
Figure 68. Energy Accumulation in Absolute Accumulation Mode
NO-LOAD
NO-LOAD
FROM VOLTAGE
APNOLOAD
INTERRUPT STATUS REGISTERS
CHANNEL
OUTPUT
FROM
LPF2
ADC
WATTOS[15:0]
POS
LPF1
WGAIN[11:0]
NEG
ZERO-CROSSING
Figure 79.
DETECTION
POS
Figure 69. Line Cycle Active Energy Accumulation
DIGITAL-TO-FREQUENCY
APNOLOAD
CONVERTER
WDIV[7:0]
%
TO
Rev. A | Page 62 of 144
CALIBRATION
LINCYC[15:0]
CONTROL
+
+
Line Cycle Active Energy Accumulation Mode
In line cycle active energy accumulation mode, the energy accumu-
lation of the ADE7566/ADE7569/ADE7166/ADE7169 can be
synchronized to the voltage channel zero crossing so that active
energy can be accumulated over an integral number of half-line
cycles. The advantage of summing the active energy over an
integer number of line cycles is that the sinusoidal component in
the active energy is reduced to 0. This eliminates any ripple in the
energy calculation. Energy is calculated more accurately and
more quickly because the integration period can be shortened.
By using this mode, the energy calibration can be greatly
simplified, and the time required to calibrate the meter can be
significantly reduced.
In the line cycle active energy accumulation mode, the
ADE7566/ADE7569/ADE7166/ADE7169 accumulate the active
power signal in the LWATTHR register for an integral number of
line cycles, as shown in Figure 69. The number of half-line cycles is
specified in the LINCYC register.
The ADE7566/ADE7569/ADE7166/ADE7169 can accumulate
active power for up to 65,535 half-line cycles. Because the active
power is integrated on an integral number of line cycles, the
CYCEND flag in the Interrupt Status 3 SFR (MIRQSTH, 0xDE) is
set at the end of an active energy accumulation line cycle. If the
CYCEND enable bit in the Interrupt Enable 3 SFR (MIRQENH,
0xDB) is set, the 8052 core has a pending ADE interrupt. The
ADE interrupt stays active until the CYCEND status bit is
cleared (see the
Another calibration cycle starts as soon as the CYCEND flag is
set. If the LWATTHR register is not read before a new CYCEND
flag is set, the LWATTHR register is overwritten by a new value.
48
23
LWATTHR[23:0]
Energy Measurement Interrupts section).
0
ACTIVE ENERGY
IS ACCUMULATED IN
THE INTERNAL REGISTER,
AND THE LWATTHR
REGISTER IS UPDATED
AT THE END OF THE LINCYC
HALF-LINE CYCLES
0

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