Texas Instruments_MSP430FR2000IPW16

Texas Instruments
MSP430FR2000IPW16  
Microcontrollers

Texas Instruments
MSP430FR2000IPW16
685-MSP430FR2000IPW16
Ersa
Texas Instruments-MSP430FR2000IPW16-datasheets-5204632.pdf
IC MCU 16BIT 512B FRAM 16TSSOP
In Stock : 1408

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MSP430FR2000IPW16 Description

MSP430FR2000IPW16 is a microcontroller unit (MCU) from Texas Instruments' MSP430 family of low-power, 16-bit RISC architecture processors. It is designed for a wide range of applications, including industrial, automotive, and consumer electronics.

Description:

The MSP430FR2000IPW16 is a high-performance MCU with a 16-bit RISC CPU and a clock speed of up to 8 MHz. It features 2KB of RAM, 32KB of flash memory, and 1KB of EEPROM. The device is available in a 16-pin, 3.3V WQFN package.

Features:

  1. Low-power 16-bit RISC CPU with a clock speed of up to 8 MHz.
  2. 2KB of RAM, 32KB of flash memory, and 1KB of EEPROM.
  3. 16-bit RISC architecture with a rich instruction set and 13-bit PC.
  4. Flexible clocking options, including an internal low-frequency oscillator (LFO) and an external clock input.
  5. On-chip peripherals, including a 12-bit ADC, two comparators, a temperature sensor, and a variety of communication interfaces (UART, SPI, I2C, and USB).
  6. Wide operating voltage range (1.8V to 3.6V).
  7. Ultra-low-power consumption in active and standby modes.
  8. Built-in security features, including a protected flash memory and a JTAG interface for secure debugging.

Applications:

The MSP430FR2000IPW16 is suitable for a wide range of applications, including:

  1. Industrial control and automation systems.
  2. Smart energy and grid management systems.
  3. Automotive control systems, such as window lift controllers, body control modules, and LED lighting control.
  4. Consumer electronics, such as portable devices, home appliances, and IoT devices.
  5. Medical devices, including wearable health monitors and diagnostic equipment.
  6. Security systems, such as access control and surveillance cameras.
  7. Sensor networks and data acquisition systems.

The MSP430FR2000IPW16's low-power consumption, flexible clocking options, and rich set of on-chip peripherals make it an ideal choice for applications where power efficiency and performance are critical.

Tech Specifications

Core Processor
Program Memory Type
Product Status
Supplier Device Package
EEPROM Size
Package / Case
REACH Status
Mfr
Voltage - Supply (Vcc/Vdd)
RoHS Status
Moisture Sensitivity Level (MSL)
Speed
Operating Temperature
RAM Size
ECCN
Number of I/O
Peripherals
Mounting Type
Oscillator Type
Series
Core Size
Connectivity
Program Memory Size
HTSUS
Package
Data Converters
Base Product Number
Unit Weight
Product
ADC Resolution
RoHS
Supply Voltage - Min
Tradename
Data RAM Type
Maximum Clock Frequency
Maximum Operating Temperature
Supply Voltage - Max
Data RAM Size
Interface Type
Core
Mounting Style
Watchdog Timers
Data Bus Width
Minimum Operating Temperature
Number of Timers/Counters
Moisture Sensitive
Number of I/Os
Number of ADC Channels
USHTS

MSP430FR2000IPW16 Documents

Download datasheets and manufacturer documentation for MSP430FR2000IPW16

Ersa Mechanical Outline Drawing      
Ersa Product Change Notification_2025_1_24 (PDF)       Process Change notification (PDF)       Product Change Notification (PDF)      
Ersa MSP430FR2000IPW16 Symbol & Footprint by SnapMagic      
Ersa EEPROM Emulation Using Low Memory MSP430™ FRAM MCUs (Rev. A)       Programmable System Wake-up Controller Using MSP430™ MCUs       Low-Power Battery Voltage Measurement With MSP430FR MCU On-Chip VREF and ADC (Rev. A)       MSP430FR2xx and MSP430FR4xx DCO+FLL Application Guide       Hysteresis Comparator With UART Using Low-Memory MSP430™ FRAM MCUs       Designing With the MSP430FR4xx and MSP430FR2xx ADC       Multi-Function Reset Controller With Low-Memory MSP430™ MCUs       Servo Motor Controller Using MSP430™ MCUs       Tamper Detection Using Low-Memory MSP430™ MCUs       Programmable Frequency Locked Loop Using MSP430™ MCUs       UART Software Controlled RGB LED Color Mixing With MSP430™ MCUs       Low -Power Hex Keypad Using MSP430™ MCUs       Migration from MSP430 FR58xx FR59xx and FR6xx to FR4xx and FR2xx (Rev. B)       ADC Wake and Transmit on Threshold Using MSP430™ MCUs       Designing With the MSP430FR4xx and MSP430FR2xx ADC (Rev. A)       External Programmable Watchdog Timer Using MSP430™ MCUs       Simple RTC-Based System Wake-up Controller Using MSP430™ MCUs       7-Segment LED Stopwatch Using Low-Memory MSP430™ MCUs       Single-Slope Analog-to-Digital Conversion Technique Using MSP430™ MCUs       Programmable Clock Source Using MSP430™ MCUs       External RTC With Backup Memory Using a Low-Memory MSP430™ MCU       Code Porting From MSP430FR2000 to MSP430FR2311 MCUs       UART-to-UART Bridge Using Low-Memory MSP430™ MCUs       Stepper Motor Control Using MSP430™ MCUs       Quadrature Encoder Position Counter With MSP430™ MCUs       Low-Power Battery Voltage Measurement With MSP430FR MCU On-Chip VREF and ADC (Rev. B)       Single-Wire Communication Host With MSP430™ MCUs       UART-to-SPI Bridge Using Low-Memory MSP430™ MCUs       Optimizing C Code for Size With MSP430 MCUs: Tips and Tricks       Dual-Output 8-Bit PWM DAC Using Low-Memory MSP430™ MCUs       Migration from MSP430 FR58xx FR59xx and FR6xx to FR4xx and FR2xx (Rev. A)       Simple Power Sequencer Using MSP430™ MCUs       Analog Input to PWM Output Using the MSP430™ MCU Enhanced Comparator       SPI I/O Expander Using Low-Memory MSP430™ MCUs       Voltage Monitor With a Timestamp Using a Low-Memory MSP430™ MCU       Enhance simple analog and digital functions for $0.25 (Rev. B)      

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