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Número de pieza ADE7169F16
Descripción Single-Phase Energy Measurement IC
Fabricantes Analog Devices 
Logotipo Analog Devices Logotipo



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Preliminary Technical Data
Single-Phase Energy Measurement IC with
8052 MCU, RTC and LCD driver
ADE7169F16
GENERAL FEATURES
Wide supply voltage operation 2.4 to 3.7V
Battery supply input with Automatic switch-over
Reference 1.2 V ± 1% (drift 50 ppm/°C Maximum)
64-Lead Quad Flat (LQFP) or Chip Scale (LCSP) Lead Free
Packages
Operating Temperature -40°C to 85°C
ENERGY MEASUREMENT FEATURES
High accuracy active, reactive energy measurement IC,
supports IEC 62053-21, 62053-22, 62053-23
Two differential inputs with PGAs to support Shunt, Current
Transformer and di/dt current sensors
Selectable Digital integrator to support di/dt current sensor
Digital parameters for Gain, offset and phase compensation
Selectable No-load threshold level for Watt, VA, and VAR
anti-creep
Less than 0.1% error on active energy over a dynamic range
of 1000 to 1 @ 25C
Less than 0.5% error on reactive energy over a dynamic
range of 1000 to 1 @ 25C
Less than 0.5% error on rms measurements over a dynamic
range of 1000 to 1 for current and 100:1 for voltage @ 25C
Auto-calibration of offsets
High frequency outputs supply proportional to Irms, active,
reactive or apparent power
Proprietary ADCs and DSP provide high accuracy over large
variations in environmental conditions and time
Temperature monitoring
MICROPROCESSOR FEATURES
8052 based core
Single-cycle 4MIPS 8052 core
8052 compatible instruction set
32.768 kHz external crystal with on-chip PLL
Two external interrupt sources
External reset pin
Real Time Clock
Counter for seconds, minutes and hours
Automatic battery switchover for RTC back up
Ultra-Low Battery Supply Current < 1μA
Software clock calibration with temperature and offset
compensation
Integrated LCD driver
104-segment with 2, 3 or 4 Multiplexer
3V/5V driving capability
Internally generated LCD drive voltages
Temperature and Supply compensated drive voltages
Low power battery mode
Wake-up from I/O and UART
LCD driver capability
On-chip peripherals
UART, SPI or I2C
Watch-Dog timer
Power Supply Monitoring with User Selectable Levels
Memory: 16kBytes Flash Memory, 512 Bytes RAM
Development tools
Single pin emulation
IDE based assembly and C source debugging
GENERAL DESCRIPTION
The ADE7169F16 integrates Analog Devices Energy (ADE) Metering IC analog front end and fixed function DSP solution with
an enhanced 8052 MCU core, a RTC, an LCD driver and all the peripherals to make an electronic energy meter with LCD
display with a single part.
The ADE Energy Measurement core includes Active, Reactive, Apparent Energy calculations, as well as voltage and current rms
measurements. This information is ready to use for energy billing by using built-in energy scalars. Many power line
supervisory features like SAG, Peak, Zero-crossing are also included in the energy measurement DSP to simplify energy meter
design.
The microprocessor functionality includes a single cycle 8052 core, a Real Time Clock with a power supply back-up pin, a
UART, and a SPI or I2C interface. The ready to use information from the ADE core reduces the program memory size
requirement thus making it easy to integrate complicated design in 16k Bytes of Flash memory.
The ADE7169F16 also includes a 104-segment LCD driver. This driver generates voltages capable of driving 5V LCDs.
Rev. PrD 09/06
Information furnished by Analog Devices is believed to be accurate and reliable.
However, no responsibility is assumed by Analog Devices for its use, nor for any
infringements of patents or 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. Trademarks and
registered trademarks are the property of their respective owners.
One Technology Way, P.O. Box 9106, Norwood, MA 02062-9106, U.S.A.
Tel: 781.329.4700
www.analog.com
Fax: 781.326.8703 © 2006 Analog Devices, Inc. All rights reserved.

1 page




ADE7169F16 pdf
Preliminary Technical Data
ADE7169F16
Instruction set..............................................................................76
Read-Modify-Write Instructions ..............................................79
Instructions that Affect Flags ....................................................79
Interrupt System ..............................................................................82
Standard 8051 Interrupt Architecture......................................82
ADE7169F16 Interrupt Architecture .......................................82
Interrupt SFR register list...........................................................82
Interrupt Priority.........................................................................84
Interrupt Flags .............................................................................84
Interrupt Vectors .........................................................................87
Watch DOG Functionality.........................................................87
Watchdog Timer Interrupt ....................................................87
Context Saving.............................................................................87
LCD Driver ......................................................................................88
LCD SFR Register list .................................................................88
LCD Setup ....................................................................................92
LCD Timing and Waveforms ....................................................92
BLINK mode................................................................................93
Software Controlled Blink Mode ..........................................93
Automatic Blink Mode ...........................................................93
Display Element Control............................................................93
Writing to LCD Data registers ..............................................93
Reading LCD Data registers ..................................................93
Voltage generation.......................................................................93
Power Consumption...............................................................94
Contrast control ......................................................................94
Lifetime Performance.............................................................94
LCD External Circuitry..............................................................94
LCD Function in PSM2..............................................................94
Example LCD Setup....................................................................95
Flash memory ..................................................................................96
Flash memory Overview............................................................96
Flash/EE Memory Reliability ................................................96
Flash memory organization.......................................................96
Using the Flash Memory............................................................97
ECON—Flash/EE Memory Control SFR ............................97
Flash functions ......................................................................100
Protecting the Flash..............................................................100
Flash memory timing ...........................................................102
In circuit programming............................................................102
Serial Downloading ..............................................................102
Timers .............................................................................................103
Timer sfr register list ................................................................103
Timer 0 and Timer 1.................................................................106
Timer/Counter 0 and 1 Data Registers ..............................106
Timer/Counter 0 and 1 Operating Modes ........................106
Timer 2 .......................................................................................107
Timer/Counter 2 Data Registers.........................................107
Timer/Counter 2 Operating Modes ...................................107
PLL ..................................................................................................109
PLL SFR register list..................................................................109
RTC - Real Time Clock ................................................................111
RTC SFR register list.................................................................111
Read and Write operations ......................................................114
Writing the RTC Registers...................................................114
Reading the RTC Counter SFRs .........................................114
RTC Modes ................................................................................114
RTC Interrupts ..........................................................................114
Interval Timer Alarm ...........................................................114
RTC CalibrationRTC................................................................114
UART serial interface ...................................................................116
UART SFR register list..............................................................116
UART operation modes ...........................................................119
Mode 0 (Shift Register with baud rate fixed at Fcore /12)
.................................................................................................119
Mode 1 (8-Bit UART, Variable Baud Rate)........................119
Rev. PrD | Page 5 of 140

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ADE7169F16 arduino
Preliminary Technical Data
ADE7169F16
TIMING SPECIFICATIONS
AC inputs during testing are driven at VSWOUT – 0.5 V for Logic 1 and 0.45 V for Logic 0. Timing measurements are made at VIH min for
Logic 1 and VIL max for Logic 0 as shown in Figure 2.
For timing purposes, a port pin is no longer floating when a 100 mV change from load voltage occurs. A port pin begins to float when a
100 mV change from the loaded VOH/VOL level occurs as shown in Figure 2.
CLOAD for all outputs = 80 pF, unless otherwise noted.
VDD = 2.7 V to 3.6 V; all specifications TMIN to TMAX, unless otherwise noted.
Table 2. CLOCK INPUT (External Clock Driven XTAL1) Parameter
tCK
tCKL
tCKH
tCKR
tCKF
1/tCORE
XTAL1 Period
XTAL1 Width Low
XTAL1 Width High
XTAL1 Rise Time
XTAL1 Fall Time
Core Clock Frequency1
32.768 kHz External Crystal
Min Typ Max
30.52
6.26
6.26
9
9
TBD TBD 4.096
Unit
μs
μs
μs
ns
ns
MHz
1 ADE7129F16 internal PLL locks onto a multiple (512 times) of the 32.768 kHz external crystal frequency to provide a stable 12.58 MHz internal clock for the system. The
core can operate at this frequency or at a binary submultiple called Core_Clk, selected via the PLLCON SFR.
DVDD – 0.5V
0.45V
0.2DVDD + 0.9V
TEST POINTS
0.2DVDD – 0.1V
VLOAD – 0.1V
VLOAD
VLOAD + 0.1V
TIMING
REFERENCE
POINTS
Figure 2. Timing Waveform Characteristics
VLOAD – 0.1V
VLOAD
VLOAD – 0.1V
Rev. PrD | Page 11 of 140

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