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PDF ADE7923 Data sheet ( Hoja de datos )

Número de pieza ADE7923
Descripción Isolated Energy Metering Chipset
Fabricantes Analog Devices 
Logotipo Analog Devices Logotipo



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Data Sheet
Isolated Energy Metering Chipset
for Polyphase Shunt Meters
ADE7978/ADE7933/ADE7932/ADE7923
FEATURES
Flexible I2C, SPI, and HSDC serial interfaces
Enables shunt current sensors in polyphase energy meters
Immune to magnetic tampering
Highly accurate; supports EN 50470-1, EN 50470-3,
IEC 62053-21, IEC 62053-22, IEC 62053-23, ANSI C12.20,
and IEEE 1459 standards
Compatible with 3-phase, 3- or 4-wire (delta or wye) meters
and other 3-phase services
Computes active, reactive, and apparent energy on each
phase and on the overall system
Less than 0.2% error in active and reactive energy over
Safety and regulatory approvals (pending)
UL recognition
5000 V rms for 1 minute per UL 1577
CSA Component Acceptance Notice #5A
IEC 61010-1: 400 V rms
VDE certificate of conformity
DIN V VDE V 0884-10 (VDE V 0884-10):2006-12
VIORM = 846 V peak
Optional isolated (ADE7933/ADE7932) or nonisolated
(ADE7923) neutral
a dynamic range of 2000 to 1 at TA = 25°C
APPLICATIONS
Less than 0.1% error in voltage rms over a dynamic range
of 500 to 1 at TA = 25°C
Less than 0.25% error in current rms over a dynamic range
of 500 to 1 at TA = 25°C
Power quality measurements including total harmonic
distortion (THD)
Single 3.3 V supply
Operating temperature: −40°C to +85°C
Shunt-based polyphase meters
Power quality monitoring
Solar inverters
Process monitoring
Protective devices
Isolated sensor interfaces
Industrial PLCs
TYPICAL APPLICATION CIRCUIT
PHASE PHASE PHASE
NEUTRAL
A
B
C
ISOLATION
BARRIER
LOAD
V1P
VM
IM PHASE A
ADE7932/
IP ADE7933
V2P
3.3V
GNDISO_A
GNDMCU
V1P
VM
IM PHASE B
ADE7932/
IP ADE7933
V2P
3.3V
GNDISO_B
GNDMCU
V1P
VM
IM PHASE C
ADE7932/
IP ADE7933
V2P
3.3V
GNDISO_C
GNDMCU
V1P
VM
NEUTRAL
LINE
IM ADE7923
(OPTIONAL,
NONISOLATED)
IP
V2P
3.3V
GNDMCU
ADE7978
ENERGY
METERING
IC
3.3V
I2C/HSDC OR SPI
IRQ0, IRQ1
GNDMCU
3.3V
GNDMCU
Figure 1. 3-Phase, 4-Wire Meter with Three ADE7933/ADE7932 Devices, One ADE7923, and One ADE7978
1 Protected by U.S. Patents 5,952,849; 6,873,065; 7,075,329; 6,262,600; 7,489,526; and 7,558,080. Other patents are pending.
Rev. A
Document Feedback
Information furnished by Analog Devices is believed to be accurate and reliable. However, no
responsibilityisassumedbyAnalogDevices for itsuse,nor foranyinfringementsofpatentsor other
rights of third parties that may result from its use. Specifications subject to change without notice. No
license is granted by implication or otherwise under any patent or patent rights of Analog Devices.
Trademarksandregisteredtrademarksarethepropertyoftheirrespectiveowners.
One Technology Way, P.O. Box 9106, Norwood, MA 02062-9106, U.S.A.
Tel: 781.329.4700 ©2013–2014 Analog Devices, Inc. All rights reserved.
Technical Support
www.analog.com

1 page




ADE7923 pdf
Data Sheet
GENERAL DESCRIPTION
The ADE7978, the ADE7933/ADE7932, and ADE7923 form a
chipset dedicated to measuring 3-phase electrical energy using
shunts as current sensors.
The ADE7933/ADE7932 are isolated, 3-channel sigma-delta
analog-to-digital converters (Σ-Δ ADCs) for polyphase energy
metering applications that use shunt current sensors. The
ADE7923 is a nonisolated, 3-channel Σ-Δ ADC for the neutral line
that uses a shunt current sensor. The ADE7932 features two 24-bit
ADCs, and the ADE7933 and ADE7923 feature three 24-bit ADCs.
One channel is dedicated to measuring the voltage across the
shunt when a shunt is used for current sensing. This channel
provides a signal-to-noise ratio (SNR) of 67 dB over a 3.3 kHz
signal bandwidth. Up to two additional channels are dedicated
to measuring voltages, which are usually sensed using resistor
dividers.
The unused voltage channels on the neutral ADE7923 can be
used for auxiliary voltage measurements. These channels provide
an SNR of 75 dB over a 3.3 kHz signal bandwidth. One voltage
channel can be used to measure the temperature of the die via
an internal sensor.
The ADE7933 and ADE7923 include three channels: one
current channel and two voltage channels. The ADE7932
includes one current channel and one voltage channel, but is
otherwise identical to the ADE7933.
The ADE7933/ADE7932 include isoPower®, an integrated,
isolated dc-to-dc converter. Based on the Analog Devices, Inc.,
iCoupler® technology, the dc-to-dc converter provides the
regulated power required by the first stage of the ADCs at a
3.3 V input supply. The ADE7933/ADE7932 eliminate the need
for an external dc-to-dc isolation block. The iCoupler chip scale
transformer technology is used to isolate the logic signals
between the first and second stages of the ADC. The result is a
small form factor, total isolation solution. The ADE7923 is the
nonisolated version of the ADE7933 that can be used for
neutral current measurement when isolation from the neutral
line is not required.
The ADE7933/ADE7932 and ADE7923 contain a digital interface
that is specially designed to interface with the ADE7978. Using
this interface, the ADE7978 accesses the ADC outputs and
configuration settings of the ADE7933/ADE7932 and
ADE7923.
ADE7978/ADE7933/ADE7932/ADE7923
The ADE7933/ADE7932 are available in a 20-lead, Pb-free, wide-
body SOIC package with increased creepage. The ADE7923 is
available in a similar 20-lead, Pb-free, wide-body SOIC package
without the increased creepage.
The ADE7978 is a high accuracy, 3-phase electrical energy
measurement IC with serial interfaces and three flexible pulse
outputs. The ADE7978 can interface with up to four ADE7933/
ADE7932 and ADE7923 devices. The ADE7978 incorporates all
the signal processing required to perform total (fundamental and
harmonic) active, reactive, and apparent energy measurement
and rms calculations, as well as fundamental-only active and
reactive energy measurement and rms calculations. A fixed
function digital signal processor (DSP) executes this signal
processing.
The ADE7978 measures the active, reactive, and apparent energy
in various 3-phase configurations, such as wye or delta services,
with both three and four wires. The ADE7978 provides system
calibration features for each phase, gain calibration, and optional
offset correction. Phase compensation is also available, but it is
not necessary because the currents are sensed using shunts. The
CF1, CF2, and CF3 logic outputs provide a wide selection of
power information: total active, reactive, and apparent powers;
the sum of the current rms values; and fundamental active and
reactive powers.
The ADE7978 incorporates power quality measurements, such
as short duration low or high voltage detection, short duration
high current variations, line voltage period measurement, and
angles between phase voltages and currents. Two serial interfaces,
SPI and I2C, can be used to communicate with the ADE7978.
A dedicated high speed interface—the high speed data capture
(HSDC) port—can be used in conjunction with I2C to provide
access to the ADC outputs and real-time power information.
The ADE7978 also has two interrupt request pins, IRQ0 and
IRQ1, to indicate that an enabled interrupt event has occurred.
The ADE7978 is available in a 28-lead, Pb-free LFCSP package.
Note that throughout this data sheet, multifunction pins, such
as SCLK/SCL, are referred to by the entire pin name or by a
single function of the pin, for example, SCLK, when only that
function is relevant.
Rev. A | Page 5 of 124

5 Page





ADE7923 arduino
Data Sheet
ADE7978/ADE7933/ADE7932/ADE7923
I2C Interface Timing Parameters
VDD = 3.3 V ± 10%, GND = DGND = 0 V, XTALIN = 16.384 MHz, TMIN to TMAX = −40°C to +85°C.
Table 3.
Parameter
SCL Clock Frequency
Hold Time for Start and Repeated Start Conditions
Low Period of SCL Clock
High Period of SCL Clock
Setup Time for Repeated Start Condition
Data Hold Time
Data Setup Time
Rise Time of SDA and SCL Signals
Fall Time of SDA and SCL Signals
Setup Time for Stop Condition
Bus Free Time Between a Stop and Start Condition
Pulse Width of Suppressed Spikes
Symbol
fSCL
tHD;STA
tLOW
tHIGH
tSU;STA
tHD;DAT
tSU;DAT
tR
tF
tSU;STO
tBUF
tSP
Standard Mode
Min Max
0 100
4.0
4.7
4.0
4.7
0 3.45
250
1000
300
4.0
4.7
N/A1
Fast Mode
Min Max
0 400
0.6
1.3
0.6
0.6
0 0.9
100
20 300
20 300
0.6
1.3
50
1 N/A means not applicable.
Unit
kHz
μs
μs
μs
μs
μs
ns
ns
ns
μs
μs
ns
SDA
tF
tLOW
tR
SCL
tHD;STA tHD;DAT
START
CONDITION
tSU;DAT
tF
tHD;STA
tHIGH
tSU;STA
REPEATED START
CONDITION
Figure 6. I2C Interface Timing
tSP tr
tBUF
tSU;STO
STOP
START
CONDITION CONDITION
Rev. A | Page 11 of 124

11 Page







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