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ADE7757AARZ

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亚德诺 - ADI 振荡器
页数 文件大小 规格书
14页 532K
描述
IC SPECIALTY ANALOG CIRCUIT, PDSO16, LEAD FREE, MS-012AC, SOIC-16, Analog IC:Other

ADE7757AARZ 数据手册

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PRELIMINARY TECHNICAL DATA  
Energy Metering IC  
a
Preliminary Technical Data  
with Integrated Oscillator  
ADE7757*  
The ADE7757 specifications surpass the accuracy require-  
ments as quoted in the IEC1036 standard. Due to the  
similarity between the ADE7757 and AD7755, the Appli-  
cation Note AN-559 can be used as a basis for a descrip-  
tion of an IEC1036 low cost watt-hour meter reference  
design.  
FEATURES  
On Chip Oscillator as clock source  
High Accuracy, Supports 50 Hz/60 Hz IEC 521/1036  
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 only analog circuitry used in the ADE7757 is in the  
sigma-delta 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 environmen-  
tal conditions.  
The High Frequency Output CF Is Intended for  
Calibration and Supplies Instantaneous Real Power  
Direct Drive for Electromechanical Counters and  
Two 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 ؎ 8% (30 ppm/؇C Typical)  
with External Overdrive Capability  
Single 5 V Supply, Low Power (15 mW Typical)  
Low Cost CMOS Process  
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 calibration purposes, provides instanta-  
neous real power information.  
The ADE7757 includes a power supply monitoring circuit  
on the VDD supply pin. The ADE7757 will remain in reset  
mode until the supply voltage on VDD reaches approxi-  
mately 4 V. If the supply falls below 4 V, the ADE7757  
will also reset and the F1, F2 and CF outputs will be in  
their non-active modes.  
AC Input only  
GENERAL DESCRIPTION  
The ADE7757 is a high accuracy electrical energy mea-  
surement IC. It is a pin reduction version of AD7755  
with an enhancement 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 built with this  
IC. The chip directly interfaces with shunt resistor and  
only operates with AC input.  
Internal phase matching circuitry ensures that the voltage  
and current channels are phase matched while the HPF in  
the current 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 16-lead SOIC narrow-body  
package.  
FUNCTIONAL BLOCK DIAGRAM  
V
AGND  
DGND  
DD  
ADE7757  
POWER  
SUPPLY MONITOR  
SIGNAL  
PROCESSING  
BLOCK  
V2P  
V2N  
...110101...  
∑ ∆  
ADC  
MULTIPLIER  
PHASE  
LPF  
CORRECTION  
HPF  
...11011001...  
V1N  
V1P  
∑ ∆  
Φ
ADC  
DIGITAL-TO-FREQUENCY  
CONVERTER  
4kV  
2.5V  
REFERENCE  
INTERNAL  
OSCILLATOR  
RCLKIN  
F1  
REF  
IN/OUT  
RESERVED  
CF  
SCF S0 S1  
F2  
*U.S. Patents 5,745,323, 5,760,617, 5,862,069, 5,872,469; other pending.  
REV. PrC.  
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  
which may result from its use. No license is granted by implication or  
otherwise under any patent or patent rights of Analog Devices.  
One Technology Way, P.O. Box 9106, Norwood, MA 02062-9106, USA.  
Tel: 781/329-4700 World Wide Web Site: http://www.analog.com  
Fax: 781/326-8703  
© Analog Devices, Inc., February 2002  

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