Product details

Frequency (MHz) 16 Nonvolatile memory (kByte) 2 RAM (kByte) 0.125 ADC type Slope Number of ADC channels 0 Number of GPIOs 4 Features Real-time clock, Spy-bi-wire, Watchdog timer UART 0 USB No Number of I2Cs 0 SPI 0 Number of comparator channels 4 Timers - 16-bit 1 Bootloader (BSL) None Operating temperature range (°C) -40 to 85 Rating Catalog
Frequency (MHz) 16 Nonvolatile memory (kByte) 2 RAM (kByte) 0.125 ADC type Slope Number of ADC channels 0 Number of GPIOs 4 Features Real-time clock, Spy-bi-wire, Watchdog timer UART 0 USB No Number of I2Cs 0 SPI 0 Number of comparator channels 4 Timers - 16-bit 1 Bootloader (BSL) None Operating temperature range (°C) -40 to 85 Rating Catalog
SOIC (D) 8 29.4 mm² 4.9 x 6
  • Low Supply Voltage Range: 1.8 V to 3.6 V
  • Ultra-Low Power Consumption
    • Active Mode: 220 µA at 1 MHz, 2.2 V
    • Standby Mode: 0.5 µA
    • Off Mode (RAM Retention): 0.1 µA
  • Five Power-Saving Modes
  • Ultra-Fast Wake-Up From Standby Mode in Less Than 1 µs
  • 16-Bit RISC Architecture, 62.5-ns Instruction Cycle Time
  • Basic Clock Module Configurations
    • Internal Frequencies up to 16 MHz With Four Calibrated Frequencies to ±1%
    • Internal Very-Low-Power Low-Frequency Oscillator
  • 16-Bit Timer_A With Two Capture/Compare Registers
  • On-Chip Comparator for Analog Signal Compare Function or Slope Analog-to-Digital (A/D) Conversion (MSP430G2210 Only)
  • 10-Bit 200-ksps Analog-to-Digital (A/D) Converter With Internal Reference, Sample-and-Hold, and Autoscan (MSP430G2230 Only)
  • Universal Serial Interface (USI) Supports SPI and I2C (MSP430G2230 Only)
  • Brownout Detector
  • Serial Onboard Programming, No External Programming Voltage Needed, Programmable Code Protection by Security Fuse
  • On-Chip Emulation Logic With Spy-Bi-Wire Interface
  • Family Members:
    • MSP430G22x0: 2KB + 256B Flash Memory, 128B RAM
  • Available in 8-Pin Plastic Packages (D)
  • For Complete Module Descriptions, See the MSP430x2xx Family User's Guide (SLAU144)

All trademarks are the property of their respective owners.

  • Low Supply Voltage Range: 1.8 V to 3.6 V
  • Ultra-Low Power Consumption
    • Active Mode: 220 µA at 1 MHz, 2.2 V
    • Standby Mode: 0.5 µA
    • Off Mode (RAM Retention): 0.1 µA
  • Five Power-Saving Modes
  • Ultra-Fast Wake-Up From Standby Mode in Less Than 1 µs
  • 16-Bit RISC Architecture, 62.5-ns Instruction Cycle Time
  • Basic Clock Module Configurations
    • Internal Frequencies up to 16 MHz With Four Calibrated Frequencies to ±1%
    • Internal Very-Low-Power Low-Frequency Oscillator
  • 16-Bit Timer_A With Two Capture/Compare Registers
  • On-Chip Comparator for Analog Signal Compare Function or Slope Analog-to-Digital (A/D) Conversion (MSP430G2210 Only)
  • 10-Bit 200-ksps Analog-to-Digital (A/D) Converter With Internal Reference, Sample-and-Hold, and Autoscan (MSP430G2230 Only)
  • Universal Serial Interface (USI) Supports SPI and I2C (MSP430G2230 Only)
  • Brownout Detector
  • Serial Onboard Programming, No External Programming Voltage Needed, Programmable Code Protection by Security Fuse
  • On-Chip Emulation Logic With Spy-Bi-Wire Interface
  • Family Members:
    • MSP430G22x0: 2KB + 256B Flash Memory, 128B RAM
  • Available in 8-Pin Plastic Packages (D)
  • For Complete Module Descriptions, See the MSP430x2xx Family User's Guide (SLAU144)

All trademarks are the property of their respective owners.

The Texas Instruments MSP430 family of ultra-low-power microcontrollers consist of several devices featuring different sets of peripherals targeted for various applications. The architecture, combined with five low-power modes, is optimized to achieve extended battery life in portable measurement applications. The device features a powerful 16-bit RISC CPU, 16-bit registers, and constant generators that contribute to maximum code efficiency. The digitally controlled oscillator (DCO) allows wake-up from low-power modes to active mode in less than 1 µs.

The MSP430G22x0 series is an ultra-low-power mixed signal microcontroller with a built-in 16-bit timer and four I/O pins. In addition, the MSP430G2230 has a built-in communication capability using synchronous protocols (SPI or I2C) and a 10-bit A/D converter. The MSP430G2210 has a versatile analog comparator.

The Texas Instruments MSP430 family of ultra-low-power microcontrollers consist of several devices featuring different sets of peripherals targeted for various applications. The architecture, combined with five low-power modes, is optimized to achieve extended battery life in portable measurement applications. The device features a powerful 16-bit RISC CPU, 16-bit registers, and constant generators that contribute to maximum code efficiency. The digitally controlled oscillator (DCO) allows wake-up from low-power modes to active mode in less than 1 µs.

The MSP430G22x0 series is an ultra-low-power mixed signal microcontroller with a built-in 16-bit timer and four I/O pins. In addition, the MSP430G2230 has a built-in communication capability using synchronous protocols (SPI or I2C) and a 10-bit A/D converter. The MSP430G2210 has a versatile analog comparator.

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Technical documentation

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Type Title Date
* Data sheet MSP430G22x0 Mixed Signal Microcontroller datasheet (Rev. E) 07 Feb 2013
* Errata MSP430G2210 Microcontroller Errata (Rev. B) PDF | HTML 18 Jun 2021
* User guide MSP430F2xx, MSP430G2xx Family User's Guide (Rev. K) PDF | HTML 25 Aug 2022
Application note ESD Diode Current Specification (Rev. B) PDF | HTML 23 Aug 2021
Application note Migrating from MSP430 F2xx and G2xx families to MSP430 FR4xx and FR2xx family (Rev. G) PDF | HTML 02 Aug 2021
User guide MSP430 MCUs Development Guide Book (Rev. A) PDF | HTML 13 May 2021
Application note MSP430 System ESD Troubleshooting Guide PDF | HTML 13 Dec 2019
Application note Migrating from the MSP430F2xx,G2xx Family to the MSP430FR58xx/FR59xx/68xx/69xx (Rev. E) PDF | HTML 03 Nov 2016
Functional safety information Safety Manual for MSP430G2xx, F5xx, and FR57xx in IEC 60730 Safety Applications (Rev. A) 12 Jan 2016
Application note MSP Code Protection Features PDF | HTML 07 Dec 2015
Application note Using the Real-Time-Clock Library (Rev. A) 11 Jan 2011

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