MSP430FE427IPMR 16-Bit Low-Power Microcontroller (IPMR package)

  • The MSP430FE427IPMR provides a low-power MCU core for efficient control.
  • Deterministic timing and peripherals enable precise measurements in time-critical systems.
  • Compact package delivers board-space savings for dense embedded application designs.
  • Battery-powered sensor node extends runtime and simplifies embedded firmware maintenance.
  • Manufacturing tests and industry-grade validation ensure consistent operation across conditions.
SKU: MSP430FE427IPMR Category: Brand:
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产品上方询盘

MSP430FE427IPMR Overview

The MSP430FE427IPMR is a low-power, 16?bit microcontroller in the MSP430 family designed for industrial sensing and control. It combines a compact package, efficient CPU core and integrated peripherals to reduce board area and system power. Typical uses include precision data acquisition, motor control, and portable instrumentation where longer battery life and predictable real?time response matter. For procurement and distribution details visit IC Manufacturer.

MSP430FE427IPMR Technical Specifications

Core 16?bit RISC CPU
Maximum CPU Clock 25 MHz
Operating Voltage 1.8 V to 3.6 V
Flash Memory 64 KB
SRAM 2 KB
ADC Resolution 12?bit
Package 64?pin LQFP
Operating Temperature -40 ??C to +85 ??C
Number of I/O Pins 48

MSP430FE427IPMR Key Features

  • Low?power 16?bit core ?? extends battery life in portable and remote systems by minimizing active and standby consumption.
  • Integrated 12?bit ADC ?? enables direct measurement of analog sensors with reduced external components and improved accuracy.
  • On?chip Flash and SRAM ?? simplifies design and shortens development time by combining code and data memory in one device.
  • Rich peripheral set ?? multiple timers and I/O reduce external glue logic and support deterministic real?time control.

Typical Applications

  • Battery?powered data logger systems that require long battery life, deterministic timing and on?board ADC for sensor inputs with minimal external circuitry.
  • Industrial sensor nodes where low power, reliable analog conversion and a compact package reduce BOM cost and printed circuit board area.
  • Portable medical instrumentation that needs precise analog measurements, stable operation across temperature and compact on?board memory.
  • Motor control and power management controllers where efficient real?time response and integrated timers reduce component count and system complexity.

MSP430FE427IPMR Advantages vs Typical Alternatives

The device pairs a 16?bit RISC core with integrated analog and memory, offering more on?chip integration than many comparable 8? or 32?bit microcontrollers in the same power envelope. Its lower standby and active currents yield longer run times for battery systems versus higher?power alternatives. With 64 KB of on?chip Flash and built?in ADC, designers can replace multiple discrete parts, lowering board area and total system cost while retaining comparable processing capability.

MSP430FE427IPMR Brand Info

The MSP430FE427IPMR is part of the MSP430 microcontroller family from Texas Instruments. Texas Instruments is known for embedded processing and analog integration. The MSP430 line emphasizes ultra?low power consumption and integrated analog peripherals for industrial and portable applications.

FAQ

What core architecture is used?

The device uses a 16?bit RISC CPU core typical of the MSP430 family. This architecture balances instruction efficiency and low power for real?time embedded control tasks.

What is the operating voltage range?

The microcontroller operates across a low?voltage range suitable for battery and single?rail systems, enabling flexible power?supply design and energy?efficient operation in portable applications.

Does it include onboard ADC?

Yes, the device includes a multi?channel ADC with 12?bit resolution. This supports accurate sensor interfacing without requiring external converters, simplifying system design.

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产品中间询盘

Which temperature range is supported?

The part supports the industrial temperature range, allowing deployment in factory floors, outdoor enclosures and other environments that require reliable operation from cold to hot conditions.

How does memory support development?

With on?chip Flash and SRAM, the MCU gives developers sufficient nonvolatile storage for firmware and runtime storage for variables, helping reduce external memory and lowering bill of materials.

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