MSP430F1471IPM 16-Bit Microcontroller IPM Package

  • MSP430F1471IPM 16-bit ultralow-power MCU core accelerates control loops, improving responsiveness and extending battery life.
  • Rich peripheral set reduces external components, lowering system cost and simplifying board-level design.
  • Small package saves board space, enabling compact designs and easier enclosure integration for tight assemblies.
  • Perfect for battery-powered sensor nodes, it extends runtime while delivering accurate sampling and reliable control.
  • Qualified manufacturing processes and on-chip watchdogs enhance reliability for long-term industrial and consumer deployments.
SKU: MSP430F1471IPM Category: Brand:
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MSP430F1471IPM Overview

The MSP430F1471IPM is a low-power, 16?bit microcontroller in the MSP430 family known for energy-efficient embedded control. It targets battery-powered and sensor-based industrial designs that need precise analog measurement and predictable timing. The device combines a compact package and integrated peripherals to reduce board area and component count. For official ordering and documentation, refer to IC Manufacturer.

MSP430F1471IPM Technical Specifications

Parameter Value
Core 16?bit RISC MSP430 CPU
Operating Voltage Refer to device datasheet for exact range
Clock Frequency Refer to device datasheet for supported DCO/ACLK/SMCLK rates
On?chip Memory (Flash) See official product documentation for Flash size
On?chip RAM See official product documentation for RAM size
Analog Peripherals Integrated ADC and comparator options listed in datasheet
Digital Peripherals Timers, UART/USART, I/O ports; see datasheet for count and features
Package IPM package identifier; consult datasheet for pin count and dimensions
Temperature Range Refer to product specification for operating temperature limits
Power Modes Multiple low?power modes; see datasheet for current consumption per mode

MSP430F1471IPM Key Features

  • 16?bit MSP430 core provides compact code and efficient arithmetic for control and sensing tasks.
  • Ultra?low power operation supports extended battery life by minimizing active and standby currents.
  • Integrated analog peripherals enable precise signal acquisition without external ADCs, saving board space.
  • Multiple timers and serial interfaces simplify deterministic timing and communication for industrial control systems.

Typical Applications

  • Battery?powered sensor nodes where prolonged field operation requires aggressive low?power modes and compact control code.
  • Portable medical instruments that need stable analog acquisition, predictable timing, and a small PCB footprint for handheld designs.
  • Industrial monitoring modules that require reliable I/O, local data processing, and low idle power for distributed installations.
  • Consumer metering and control devices where integrated peripherals reduce BOM and improve robustness over discrete solutions.

MSP430F1471IPM Advantages vs Typical Alternatives

The MSP430F1471IPM stands out for low energy per operation and a compact integration of analog and digital functions. Compared with many 8?bit microcontrollers, it offers a 16?bit data path for more efficient arithmetic and reduced code size. Versus higher?end 32?bit MCUs, it lowers system power and costs while preserving sufficient performance for sensor interfacing and control. The device helps shorten BOM and PCB area by combining timers, serial interfaces, and analog front ends in a single package.

MSP430F1471IPM Brand Info

The MSP430 series is a product line from Texas Instruments. It focuses on ultra?low?power embedded microcontrollers for instrumentation, industrial, and portable applications. The brand emphasizes power efficiency, integrated analog capabilities, and a broad ecosystem of development tools and reference designs to accelerate product development.

FAQ

What is the core architecture?

The device uses a 16?bit MSP430 CPU core. This architecture provides efficient instruction density and lower code size compared with many 8?bit designs, making it suitable for control and measurement tasks.

How can I verify power consumption?

Reference the official datasheet for measured current figures in each low?power and active mode. Datasheet tables list typical and absolute values for standby, active, and peripheral?active currents.

Where do I find pin assignments?

Pinout diagrams and package dimensions are provided in the product datasheet. Consult those sections for pin functions, alternate pin modes, and mechanical drawings for PCB footprint design.

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Which development tools support it?

TI??s MSP430 development tools, IDEs, and in?circuit debuggers typically support MSP430 devices. Check the toolchain documentation and device support lists for compatibility and recommended tool versions.

How to obtain detailed peripheral specs?

Detailed information on ADC resolution, timer capabilities, serial interfaces, and electrical characteristics is available in the official datasheet. Use that documentation for timing, accuracy, and integration planning.

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