ADE7769

Features: On-chip oscillator as clock source High accuracy, supports 50 Hz/60 Hz IEC62053-21 Less than 0.1% error over a dynamic range of 500 to 1 Supplies average real power on frequency outputs F1 and F2 High frequency output CF calibrates and supplies instantaneous real power CF output remains...

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ADE7769 Picture
SeekIC No. : 004274507 Detail

ADE7769: Features: On-chip oscillator as clock source High accuracy, supports 50 Hz/60 Hz IEC62053-21 Less than 0.1% error over a dynamic range of 500 to 1 Supplies average real power on frequency outputs F...

floor Price/Ceiling Price

Part Number:
ADE7769
Supply Ability:
5000

Price Break

  • Qty
  • 1~5000
  • Unit Price
  • Negotiable
  • Processing time
  • 15 Days
Total Cost: $ 0.00

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Upload time: 2024/11/24

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Product Details

Description



Features:

On-chip oscillator as clock source
High accuracy, supports 50 Hz/60 Hz IEC62053-21
Less than 0.1% error over a dynamic range of 500 to 1
Supplies average real power on frequency outputs F1 and F2
High frequency output CF calibrates and supplies instantaneous real power
CF output remains logic high when ADE7769 is under no-load threshold
Logic output REVP indicates a potential miswiring or negative power
Direct drive for electromechanical counters and 2-phase stepper motors (F1 and F2)
Proprietary ADCs and DSPs 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 2.45 V (20 ppm/°C typical) with external overdrive capability
Single 5 V supply, low power (20 mW typical)
Low cost CMOS process





Pinout

ADE7769 Diagram

  Connection Diagram




Specifications

Meter Type Single Phase
Package 16-Lead SOIC
Active Energy Accuracy 0.1% over 500:1 @25°C
Active Energy Bandwidth 14kHz
Analog input range +/-32mV to +/- 500mV peak
Power Consumption 20mW Typical
Reference Tempco 20ppm/°C Typical


Parameter Rating
VDD to AGND
VDD to DGND
Analog Input Voltage to AGND,
V1P, V1N, V2P, and V2N
Reference Input Voltage to AGND
Digital Input Voltage to DGND
Digital Output Voltage to DGND
Operating Temperature Range
Storage Temperature Range
Junction Temperature
16-Lead Plastic SOIC, Power Dissipation
JA Thermal Impedance1
Package Temperature Soldering
−0.3 V to +7 V
−0.3 V to +7 V

−6 V to +6 V
−0.3 V to VDD + 0.3 V
−0.3 V to VDD + 0.3 V
−0.3 V to VDD + 0.3 V
−40°C to +85°C
−65°C to +150°C
150°C
350 mW
124.9°C/W
See J-STD-20





Description

The ADE77691 is a high accuracy electrical energy metering IC. It is a pin reduction version of the ADE7755 with an enhanced, precise oscillator circuit that serves as a clock source to the chip. It 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 the shunt resistor.

The ADE7769 specifications surpass the accuracy require-ments of the IEC62053-21 standard. The AN-679 Application Note can be used as a basis for a description of an IEC61036 (equivalent to IEC62053-21) low cost, watt-hour meter reference design.

The only analog circuitry used in the ADE7769 is in the - ADCs and reference circuit. All other signal processing, such as multiplication and filtering, is carried out in the digital domain. This approach provides superior stability and accuracy over time and extreme environmental conditions.

The ADE7769 supplies average real power information on the low frequency outputs, F1 and F2. These outputs can be used to directly drive an electromechanical counter or interface with an MCU. The high frequency CF logic output, ideal for calibration purposes, provides instantaneous real power information.

The ADE7769 includes a power supply monitoring circuit on the VDD supply pin. It remains inactive until the supply voltage on VDD reaches approximately 4 V. If the supply falls below 4 V, the ADE7769 also remains inactive and the F1, F2, and CF outputs are in their nonactive modes.

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 it does not exhibit creep when no load is present. During a no-load condition, the CF pin stays logic high.

The ADE7769 has a 16-lead, narrow body SOIC package.






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