ADE7757
*
Energy Metering IC
with Integrated Oscillator
REV. A
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FEATURES
On-Chip Oscillator as Clock Source
High Accuracy, Supposes 50 Hz/60 Hz IEC 521/IEC 61036
Less than 0.1% Error over a Dynamic Range of 500 to 1
The ADE7757 Supplies Average Real Power on the
Frequency Outputs F1 and F2
The High Frequency Output CF Is Intended for
Calibration and Supplies Instantaneous Real Power
The Logic Output REVP Can Be Used to Indicate a
Potential Miswiring or Negative Power
Direct Drive for Electromechanical Counters and
2-Phase Stepper Motors (F1 and F2)
Proprietary ADCs and DSP Provide High Accuracy over
Large Variations in Environmental Conditions and
Time
On-Chip Power Supply Monitoring
On-Chip Creep Protection (No Load Threshold)
On-Chip Reference 2.5 V (20 ppm/C Typical)
with External Overdrive Capability
Single 5 V Supply, Low Power (20 mW Typical)
Low Cost CMOS Process
AC Input Only
FUNCTIONAL BLOCK DIAGRAM
MULTIPLIER
REVP
V2P
V2N
V1P
HPF
RCLKIN
REF
IN/OUT
F1
F2
CF
SCF
S0
S1
PHASE
CORRECTION
4k
...110101...
SIGNAL
PROCESSING
BLOCK
POWER
SUPPLY MONITOR
-
ADC
V1N
ADE7757
...11011001...
LPF
2.5V
REFERENCE
DIGITAL-TO-FREQUENCY
CONVERTER
V
DD
AGND
DGND
-
ADC
INTERNAL
OSCILLATOR
GENERAL DESCRIPTION
The ADE7757 is a high accuracy electrical energy measurement
IC. It is a pin reduction version of the ADE7755 with an enhance-
ment of a precise oscillator circuit that serves as a clock source
to the chip. The ADE7757 eliminates the cost of an external
crystal or resonator, thus reducing the overall cost of a meter
*U.S. Patents
built with this IC. The chip directly interfaces with the shunt
resistor and operates only with ac input.
The ADE7757 specifications surpass the accuracy requirements
as quoted in the IEC 61036 standard. The AN-679 Application
Note can be used as a basis for a description of an IEC 61036
low cost watt-hour meter reference design.
The only analog circuitry used in the ADE7757 is in the -
ADCs and reference circuit. All other signal processing (e.g.,
multiplication and filtering) is carried out in the digital domain.
This approach provides superior stability and accuracy over
time and extreme environmental conditions.
The ADE7757 supplies average real power information on the
low frequency outputs F1 and F2. These outputs may be used
to directly drive an electromechanical counter or interface with
an MCU. The high frequency CF logic output, ideal for calibra-
tion purposes, provides instantaneous real power information.
The ADE7757 includes a power supply monitoring circuit on
the V
DD
supply pin. The ADE7757 will remain inactive until
the supply voltage on V
DD
reaches approximately 4 V. If the
supply falls below 4 V, the ADE7757 will also remain inactive
and the F1, F2, and CF outputs will be in their nonactive modes.
Internal phase matching circuitry ensures that the voltage and
current channels are phase matched while the HPF in the cur-
rent channel eliminates dc offsets. An internal no-load threshold
ensures that the ADE7757 does not exhibit creep when no load
is present.
The ADE7757 is available in a 16-lead SOIC narrow-body package.
5,745,323; 5,760,617; 5,862,069; 5,872,469.
ADE7757* PRODUCT PAGE QUICK LINKS
Last Content Update: 02/23/2017
COMPARABLE PARTS
View a parametric search of comparable parts.
DOCUMENTATION
Application Notes
A Low Cost Watt-Hour Energy Meter Based on the
ADE7757
AN-559: A Low Cost Watt-Hour Energy Meter Based on the
ADE7755
AN-639: Frequently Asked Questions (FAQs) Analog
Devices Energy (ADE) Products
Data Sheet
ADE7757: Energy Metering IC with Integrated Oscillator
Data Sheet
REFERENCE MATERIALS
Technical Articles
Analog Feedback - Analog/Linear IC: Filling Important
Roles
Digital Energy Meters by the Millions
How Solid Is Your Solid-State Energy Meter? Not All Ics Are
Created Equal.
IC Technology and Failure Mechanisms - Understanding
Reliability Standards Can Raise Quality of Meters
Measuring Harmonic Energy with a Solid State Energy
Meter
Measuring Reactive Power in Energy Meters
RF Meets Power Lines: Designing Intelligent Smart Grid
Systems that Promote Energy Efficiency
Solid State Solutions For Electricity Metrology
Tapping The Potential Of Electronic Energy Metering
Trusting Integrated Circuits in Metering Applications
DESIGN RESOURCES
ADE7757 Material Declaration
PCN-PDN Information
Quality And Reliability
Symbols and Footprints
DISCUSSIONS
View all ADE7757 EngineerZone Discussions.
SAMPLE AND BUY
Visit the product page to see pricing options.
TECHNICAL SUPPORT
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number.
DOCUMENT FEEDBACK
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REV. A–2–
ADE7757–SPECIFICATIONS
(V
DD
= 5 V 5%, AGND = DGND = 0 V, On-Chip Reference, RCLKIN = 6.2 k,
0.5% 50 ppm/C, T
MIN
to T
MAX
= –40C to +85C, unless otherwise noted.)
Parameter Value Unit Test Conditions/Comments
ACCURACY
1, 2
Measurement Error
1
on Channel V1 Channel V2 with Full-Scale Signal (± 165 mV), 25°C
0.1 % Reading typ Over a Dynamic Range 500 to 1
Phase Error
1
between Channels Line Frequency = 45 Hz to 65 Hz
V1 Phase Lead 37°
(PF = 0.8 Capacitive) ± 0.1 Degrees (°) max
V1 Phase Lag 60°
(PF = 0.5 Inductive) ± 0.1 Degrees (°) max
AC Power Supply Rejection
1
S0 = S1 = 1,
Output Frequency Variation (CF) 0.2 % Reading typ V1 = 21.2 mV rms, V2 = 116.7 mV rms @ 50 Hz
Ripple on V
DD
of 200 mV rms @ 100 Hz
DC Power Supply Rejection
1
S0 = S1 = 1,
Output Frequency Variation (CF) ± 0.3 % Reading typ V1 = 21.2 mV rms, V2 = 116.7 mV rms,
V
DD
= 5 V ± 250 mV
ANALOG INPUTS See Analog Inputs section
Channel V1 Maximum Signal Level ± 30 mV max V1P and V1N to AGND
Channel V2 Maximum Signal Level ± 165 mV max V2P and V2N to AGND
Input Impedance (DC) 320 k min OSC = 450 kHz, RCLKIN = 6.2 k, 0.5% ± 5
0
ppm/°C
Bandwidth (–3 dB) 7 kHz nominal OSC = 450 kHz, RCLKIN = 6.2 k, 0.5% ± 50 ppm/°C
ADC Offset Error
1, 2
± 18 mV max See Terminology Section and Typical Performance Characteristics
Gain Error
1
± 4% Ideal typ External 2.5 V Reference
V1 = 21.2 mV rms, V2 = 116.7 mV rms
OSCILLATOR FREQUENCY (OSC) 450 kHz nominal RCLKIN = 6.2 k, 0.5% ± 50 ppm/°C
Oscillator Frequency Tolerance
1
± 12 % Reading typ
Oscillator Frequency Stability
1
± 30 ppm/°C typ
REFERENCE INPUT
REF
IN/OUT
Input Voltage Range 2.7 V max 2.5 V + 8%
2.3 V min 2.5 V – 8%
Input Capacitance 10 pF max
ON-CHIP REFERENCE Nominal 2.5 V
Reference Error ± 200 mV max
Temperature Coefficient ± 20 ppm/°C typ
LOGIC INPUTS
3
SCF, S0, S1,
Input High Voltage, V
INH
2.4 V min V
DD
= 5 V ± 5%
Input Low Voltage, V
INL
0.8 V max V
DD
= 5 V ± 5%
Input Current, I
IN
± 1 µA max Typically 10 nA, V
IN
= 0 V to V
DD
Input Capacitance, C
IN
10 pF max
LOGIC OUTPUTS
3
F1 and F2
Output High Voltage, V
OH
I
SOURCE
= 10 mA
4.5 V min V
DD
= 5 V
Output Low Voltage, V
OL
I
SINK
= 10 mA
0.5 V max V
DD
= 5 V
CF
Output High Voltage, V
OH
I
SOURCE
= 5 mA
4V min V
DD
= 5 V
Output Low Voltage, VOL I
SINK
= 5 mA
0.5 V max V
DD
= 5 V
Frequency Output Error
1, 2
(CF) ± 10 % Ideal typ External 2.5 V Reference,
V1 = 21.2 mV rms, V2 = 116.7 mV rms
POWER SUPPLY For Specified Performance
V
DD
4.75 V min 5 V – 5%
5.25 V max 5 V + 5%
I
DD
5 mA max Typically 4 mA
NOTES
1
See Terminology section for explanation of specifications.
2
See plots in Typical Performance Characteristics.
3
Sample tested during initial release and after any redesign or process change that may affect this parameter.
Specifications subject to change without notice.

ADE7757ARNZRL

Mfr. #:
Manufacturer:
Analog Devices Inc.
Description:
Data Acquisition ADCs/DACs - Specialized Energy Meter IC w/ Intg Oscillator
Lifecycle:
New from this manufacturer.
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