MSP430F2002IPWR 16-Bit Microcontroller IPWR Package

  • The MSP430F2002IPWR provides ultra-low-power microcontroller control for efficient battery operation.
  • 16-bit architecture delivers efficient math performance, improving sensor sampling accuracy.
  • Ultra-low-power design reduces standby current, extending battery life in products.
  • Ideal for remote sensors, offering stable timing and low maintenance.
  • Production testing and qualification ensure robust operation under temperature extremes.
SKU: MSP430F2002IPWR Category: Brand:
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产品上方询盘

MSP430F2002IPWR Overview

The MSP430F2002IPWR is a low-power, 16-bit microcontroller built for simple, energy?sensitive control tasks. It combines a compact instruction set core with on-chip nonvolatile memory and a small SRAM bank to serve battery-powered and space-constrained systems. Typical operating range supports low-voltage designs, and the package suits automated assembly. Use this device where lower power, fewer peripherals, and small code size give you faster time to market. See the manufacturer’s details at IC Manufacturer.

MSP430F2002IPWR Technical Specifications

CPU architecture 16-bit RISC
Maximum clock rate 16 MHz
Flash memory (on-chip) 2 KB
SRAM 128 bytes
Operating voltage 1.8 V to 3.6 V
Package TSSOP, 20-pin (PWR)
Temperature range -40 ??C to +85 ??C
Active current (typical) ~230 ??A/MHz
Standby / LPM current <1 ??A
Digital I/O pins 16

MSP430F2002IPWR Key Features

  • One 16-bit core enabling compact code and predictable instruction timing for deterministic control.
  • On-chip flash memory that retains firmware between power cycles, reducing BOM count and simplifying updates.
  • Ultra-low-power sleep modes and sub?microamp standby current, which extend battery life in intermittent?use products.
  • Small 20?pin package for higher board density and lower system cost compared to larger MCUs with similar functionality.

Typical Applications

  • Battery-powered sensor nodes where long sleep intervals and short active bursts demand sub?microamp standby and low active current.
  • Consumer remote controls and simple user interfaces that require a small code footprint, stable real-time response, and minimal BOM.
  • Industrial monitoring endpoints where a wide operating voltage and extended temperature range deliver reliable performance in harsh conditions.
  • Embedded controllers for simple motor or valve control that need deterministic timing, low cost, and straightforward firmware updates.

MSP430F2002IPWR Advantages vs Typical Alternatives

The device offers a smaller flash and SRAM footprint but a lower power draw compared with many 32?bit microcontrollers. It consumes far less energy in standby and often delivers similar real?time performance for control loops because of its deterministic 16?bit core. The compact 20?pin package reduces PCB area and assembly cost versus larger packages. For designs with constrained power, cost, or board space, this device strikes a better balance between functionality and efficiency.

MSP430F2002IPWR Brand Info

The MSP430F2002IPWR is part of Texas Instruments’ MSP430 family. The brand emphasizes ultra?low?power embedded processing and long-term production. TI supports this product with datasheets, development tools, and application notes to speed design and qualification in industrial and consumer projects.

FAQ

What is the core architecture?

The device uses a 16?bit RISC architecture. This provides compact code, reduced memory needs, and deterministic instruction timing for control-oriented applications.

Which supply voltage does it need?

It runs from 1.8 V to 3.6 V. This range supports common single?cell and multi?cell battery systems and many low?voltage logic domains in industrial designs.

How much nonvolatile memory is available?

On?chip flash provides 2 KB of persistent storage. That is sufficient for compact firmware, bootloaders, or small application code in cost?sensitive devices.

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产品中间询盘

What are the low?power capabilities?

The microcontroller implements multiple low?power modes and achieves standby currents below 1 ??A. Use these modes to maximize battery life in intermittent?use devices.

Which package suits automated assembly?

The part comes in a 20?pin TSSOP package (PWR). The package is compatible with standard pick?and?place and reflow processes for volume production.

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