MSP430FG4616IPZ 16-Bit Microcontroller IPZ Package

  • MSP430FG4616IPZ delivers microcontroller control and efficient low-power embedded processing capability.
  • High-resolution timers enable precise control, improving response and deterministic timing.
  • Compact SMD footprint minimizes board space, easing dense PCB layout.
  • Fits sensor nodes, enabling extended battery life and dependable data.
  • Production-tested silicon provides long-term stability and predictable system operation reliability.
SKU: MSP430FG4616IPZ Category: Brand:
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产品上方询盘

MSP430FG4616IPZ Overview

The MSP430FG4616IPZ is a low?power, 16?bit microcontroller from the MSP430 family. It combines a 16?bit RISC CPU with on?chip Flash and RAM, a 12?bit ADC, multiple timers, serial interfaces, and low?power operating modes. The device targets battery?sensitive industrial control, sensing and metering tasks that need precise analog conversion and tight power budgets. For sourcing and additional technical resources visit IC Manufacturer.

MSP430FG4616IPZ Technical Specifications

Parameter Value
CPU core 16?bit RISC
Flash memory 16 KB
RAM 512 B
ADC resolution 12?bit
Maximum clock frequency 25 MHz
Operating voltage 1.8 V to 3.6 V
Operating temperature ?40 ??C to 85 ??C
Package pins 64 pins
DMA channels 3 channels
ADC sampling rate 200 ksps (typical)

MSP430FG4616IPZ Key Features

  • Single 16?bit CPU delivering compact code density and efficient arithmetic for control tasks.
  • 12?bit ADC for higher resolution analog sensing, reducing the need for external converters.
  • On?chip Flash and RAM reduce board area and system cost through integrated nonvolatile and working memory.
  • Multiple timers and a DMA controller enable deterministic real?time control with less CPU overhead.

Typical Applications

  • Battery?powered industrial sensors where low active and standby current extend runtime and reduce service intervals, and precise ADC conversion supports measurement accuracy.
  • Precision metering equipment that needs integrated 12?bit conversion, reliable timing, and on?chip memory for logging and calibration data storage.
  • Embedded motor control and actuation systems requiring deterministic timers, DMA?assisted peripheral handling, and a compact 16?bit execution core for control algorithms.
  • Portable test instruments where small package size, 1.8?C3.6 V operation, and mixed?signal integration reduce BOM cost and simplify board layout.

MSP430FG4616IPZ Advantages vs Typical Alternatives

The device offers a balanced mix of low power and integrated analog mixed with moderate on?chip memory. Compared to 8?bit alternatives, the 16?bit core delivers more efficient math and tighter control loops. Versus higher?end 32?bit MCUs, it consumes less power and reduces BOM by integrating a 12?bit ADC and DMA. These tradeoffs make it well suited where energy efficiency, analog accuracy, and deterministic timing matter most.

MSP430FG4616IPZ Brand Info

The MSP430FG4616IPZ is part of the MSP430 microcontroller family from Texas Instruments. TI positions MSP430 devices for ultralow?power embedded designs, offering comprehensive development tools, reference documentation, and a wide partner ecosystem to support industrial and portable applications.

FAQ

What is the core architecture?

The device uses a 16?bit RISC core designed for code density and efficient integer math. The architecture supports low?power modes and optimized instruction timing for real?time control.

What analog capability does it include?

It integrates a 12?bit ADC suitable for medium?resolution measurement. The ADC reduces the need for external converters in sensor and metering applications with typical sample rates up to 200 ksps.

What voltage range does it support?

Supply operation spans 1.8 V to 3.6 V, allowing use with single?cell lithium systems and common 3.3 V rails in industrial and portable designs.

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产品中间询盘

What environments is it rated for?

The device supports industrial temperature operation from ?40 ??C to 85 ??C, making it suitable for a wide range of fielded equipment and sensing applications.

How does it handle peripheral offload?

On?chip DMA and multiple timers enable offloading of repetitive data movement and timing tasks from the CPU. This lowers active CPU time and improves overall energy efficiency for continuous monitoring systems.

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