MSP430F67621A

AKTIV

Kostengünstiger Polyphasenmessungs-SoC mit 3 Sigma-Delta-ADCs, 10-Bit-SAR-ADC, LCD, 64 KB Flash, 4 K

Produktdetails

CPU MSP430 Frequency (MHz) 25 Flash memory (kByte) 64 RAM (kByte) 4 ADC type 24-bit Sigma Delta Features Advanced sensing, LCD, Real-time clock UART 3 Number of ADC channels 3 SPI 4 USB No Operating temperature range (°C) -40 to 85 Rating Catalog Communication interface I2C, SPI, UART Operating system BareMetal (No OS), TI RTOS Hardware accelerators 0 Nonvolatile memory (kByte) 64 Number of GPIOs 72 Number of I2Cs 1 Security Secure debug
CPU MSP430 Frequency (MHz) 25 Flash memory (kByte) 64 RAM (kByte) 4 ADC type 24-bit Sigma Delta Features Advanced sensing, LCD, Real-time clock UART 3 Number of ADC channels 3 SPI 4 USB No Operating temperature range (°C) -40 to 85 Rating Catalog Communication interface I2C, SPI, UART Operating system BareMetal (No OS), TI RTOS Hardware accelerators 0 Nonvolatile memory (kByte) 64 Number of GPIOs 72 Number of I2Cs 1 Security Secure debug
LQFP (PN) 80 196 mm² 14 x 14 LQFP (PZ) 100 256 mm² 16 x 16
  • Accuracy <0.5% Over 2000:1 Dynamic Range for Phase Current
  • Meets or Exceeds ANSI C12.20 and IEC 63053 Standards
  • Support for Multiple Sensors Such as Current Transformers, Rogowski Coils, or Shunts
  • Power Measurement for up to Three Phases
  • Four-Quadrant Measurement per Phase or Cumulative
  • Exact Phase-Angle Measurements
  • Digital Phase Correction for Current Transformers
  • 40-Hz to 70-Hz Line Frequency Range Using Single Calibration
  • Flexible Power Supply Options With Automatic Switching
  • Display Operates at Very Low Power During AC Mains Failure: 3 µA in LPM3
  • Real-Time Clock (RTC) Module Operating from Dedicated Power Supply (AUXVCC3) Offering Integrated Offset and Temperature Calibration Features
  • Multiple Communication Interfaces for Smart Meter Implementations
  • High-Performance 25-MHz CPU With 32-Bit Multiplier
  • Up to 128KB of Flash With Single-Cycle Execution
  • Up to 8KB of RAM With Single-Cycle Access
  • Up to Three Independent 24-Bit Sigma-Delta Analog-to-Digital Converters (ADCs) With Differential Inputs and Variable Gain
  • System ADC:
    10-Bit 200-ksps 6-Channel Plus Temperature Sensor and Supply Measurement
  • Wide Input Supply-Voltage Range:
    1.8 V to 3.6 V
  • Ultra-Low Power Consumption During Energy Measurement
    • 3.0 mW at 10-MHz Operation (3.0 V)
  • Multiple Low-Power Modes
    • Standby Mode (LPM3): 2.5 µA at 3 V, Wake up in 3 µs (Typical)
    • RTC Mode (LPM3.5): 1.24 µA at 3 V (Typical)
    • Shutdown Mode (LPM4.5): 0.78 µA at 3 V (Typical)
  • LCD Driver With Contrast Control for up to 320 Segments
  • Password-Protected RTC With Crystal Offset Calibration and Temperature Compensation
  • Four Communications Ports
    • Configurable Among Four UART, Three SPI, and One I2C Interfaces
  • Four 16-Bit Timers With Nine Capture/Compare Registers
  • 100-Pin LQFP (PZ) Package With 72 I/O Pins
  • 80-Pin LQFP (PN) Package With 52 I/O Pins
  • Industrial Temperature Range of –40°C to 85°C
  • Development Tool (Also See Tools and Software)
  • Accuracy <0.5% Over 2000:1 Dynamic Range for Phase Current
  • Meets or Exceeds ANSI C12.20 and IEC 63053 Standards
  • Support for Multiple Sensors Such as Current Transformers, Rogowski Coils, or Shunts
  • Power Measurement for up to Three Phases
  • Four-Quadrant Measurement per Phase or Cumulative
  • Exact Phase-Angle Measurements
  • Digital Phase Correction for Current Transformers
  • 40-Hz to 70-Hz Line Frequency Range Using Single Calibration
  • Flexible Power Supply Options With Automatic Switching
  • Display Operates at Very Low Power During AC Mains Failure: 3 µA in LPM3
  • Real-Time Clock (RTC) Module Operating from Dedicated Power Supply (AUXVCC3) Offering Integrated Offset and Temperature Calibration Features
  • Multiple Communication Interfaces for Smart Meter Implementations
  • High-Performance 25-MHz CPU With 32-Bit Multiplier
  • Up to 128KB of Flash With Single-Cycle Execution
  • Up to 8KB of RAM With Single-Cycle Access
  • Up to Three Independent 24-Bit Sigma-Delta Analog-to-Digital Converters (ADCs) With Differential Inputs and Variable Gain
  • System ADC:
    10-Bit 200-ksps 6-Channel Plus Temperature Sensor and Supply Measurement
  • Wide Input Supply-Voltage Range:
    1.8 V to 3.6 V
  • Ultra-Low Power Consumption During Energy Measurement
    • 3.0 mW at 10-MHz Operation (3.0 V)
  • Multiple Low-Power Modes
    • Standby Mode (LPM3): 2.5 µA at 3 V, Wake up in 3 µs (Typical)
    • RTC Mode (LPM3.5): 1.24 µA at 3 V (Typical)
    • Shutdown Mode (LPM4.5): 0.78 µA at 3 V (Typical)
  • LCD Driver With Contrast Control for up to 320 Segments
  • Password-Protected RTC With Crystal Offset Calibration and Temperature Compensation
  • Four Communications Ports
    • Configurable Among Four UART, Three SPI, and One I2C Interfaces
  • Four 16-Bit Timers With Nine Capture/Compare Registers
  • 100-Pin LQFP (PZ) Package With 72 I/O Pins
  • 80-Pin LQFP (PN) Package With 52 I/O Pins
  • Industrial Temperature Range of –40°C to 85°C
  • Development Tool (Also See Tools and Software)

The TI MSP430F676x1A polyphase metering SoCs are powerful highly integrated solutions for revenue meters that offer accuracy and low system cost with few external components. The MSP430F676x1A uses the low-power MSP430™ CPU with a 32-bit multiplier to perform all energy calculations, metering applications such as tariff rate management, and communications with AMR or AMI modules.

The MSP430F676x1A features TI’s 24-bit sigma-delta converter technology, which provides better than 0.5% accuracy. Family members include up to 128KB of flash and 8KB of RAM and an LCD controller with support for up to 320 segments. The ultra-low-power nature of the MSP430F676x1A means that the system power supply can be minimized to reduce overall cost. Lowest standby power means that backup energy storage can be minimized, and critical data retained longer in case of a mains power failure.

The MSP430F676x1A family executes the TI energy measurement software library, which calculates all relevant energy and power results. The energy measurement software library is available with the MSP430F676x1A at no cost. Industry-standard development tools and hardware platforms are available to speed development of meters that meet all of the ANSI and IEC standards globally.

For complete module descriptions, see the MSP430F5xx and MSP430F6xx Family User’s Guide.

The TI MSP430F676x1A polyphase metering SoCs are powerful highly integrated solutions for revenue meters that offer accuracy and low system cost with few external components. The MSP430F676x1A uses the low-power MSP430™ CPU with a 32-bit multiplier to perform all energy calculations, metering applications such as tariff rate management, and communications with AMR or AMI modules.

The MSP430F676x1A features TI’s 24-bit sigma-delta converter technology, which provides better than 0.5% accuracy. Family members include up to 128KB of flash and 8KB of RAM and an LCD controller with support for up to 320 segments. The ultra-low-power nature of the MSP430F676x1A means that the system power supply can be minimized to reduce overall cost. Lowest standby power means that backup energy storage can be minimized, and critical data retained longer in case of a mains power failure.

The MSP430F676x1A family executes the TI energy measurement software library, which calculates all relevant energy and power results. The energy measurement software library is available with the MSP430F676x1A at no cost. Industry-standard development tools and hardware platforms are available to speed development of meters that meet all of the ANSI and IEC standards globally.

For complete module descriptions, see the MSP430F5xx and MSP430F6xx Family User’s Guide.

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Technische Dokumentation

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Top-Dokumentation Typ Titel Format-Optionen Datum
* Data sheet MSP430F676x1A Polyphase Metering SoCs datasheet (Rev. A) PDF | HTML 03 Okt 2018
* Errata MSP430F67621A Device Erratasheet (Rev. R) 24 Apr 2019
* User guide MSP430x5xx and MSP430x6xx Family User's Guide (Rev. Q) 17 Aug 2018
Application note Migration Guide From MSP430 MCUs to MSPM0 MCUs (Rev. B) PDF | HTML 02 Jun 2025
Application note ESD Diode Current Specification (Rev. B) PDF | HTML 23 Aug 2021
Application note MSP430 System-Level ESD Considerations (Rev. B) PDF | HTML 14 Jul 2021
User guide MSP430 MCUs Development Guide Book (Rev. A) PDF | HTML 13 Mai 2021
Application note Answers to Common Sigma-Delta ADC Questions on MSP MCUs PDF | HTML 11 Aug 2020
Application note MSP430 System ESD Troubleshooting Guide PDF | HTML 13 Dez 2019
Application note General Oversampling of MSP ADCs for Higher Resolution (Rev. A) PDF | HTML 01 Apr 2016
Application note MSP Code Protection Features PDF | HTML 07 Dez 2015
Application note Implementation of a Low-Cost Three-Phase Watt-Hour Meter Using the MSP430F67641 (Rev. C) 05 Aug 2015
Application note Designing With MSP430™ MCUs and Segment LCDs (Rev. A) PDF | HTML 20 Jul 2015
Application note Using TI’s DLMS COSEM Library 12 Nov 2013

Design und Entwicklung

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Codebeispiel oder Demo

SLAC694 MSP430F67641A, MSP430F67621A Code Examples

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Erste Schritte

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LQFP (PN) 80 Ultra Librarian
LQFP (PZ) 100 Ultra Librarian

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