MSP430FR2111IPW16 16-bit FRAM Microcontroller in IPW16 Package

  • The MSP430FR2111IPW16 is an ultra-low-power microcontroller that extends battery life.
  • Deterministic low-power modes reduce active duty-cycle, improving energy efficiency significantly.
  • Compact footprint saves board space, enabling smaller products, easier assembly.
  • In remote sensor nodes, reduced power draw extends field operation.
  • Manufactured to industry quality standards, ensuring consistent operation in deployments.
SKU: MSP430FR2111IPW16 Category: Brand:
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产品上方询盘

MSP430FR2111IPW16 Overview

This request requires the official specification sheet to generate an accurate, data-driven product description for MSP430FR2111IPW16. To ensure technical precision for engineers and sourcing specialists, I will use only the values and tables contained in the provided document. Upload the official datasheet or specification sheet so the content can be written strictly from that source. Once the sheet is available I will produce a detailed overview, specifications table, features, applications, comparative advantages, brand introduction and FAQ that reference only the supplied data and include the anchor IC Manufacturer exactly once.

MSP430FR2111IPW16 Technical Specifications

Parameter Value
Supply voltage Refer to supplied sheet
Core Refer to supplied sheet
Nonvolatile memory Refer to supplied sheet
RAM Refer to supplied sheet
Package Refer to supplied sheet
Operating temperature Refer to supplied sheet
Maximum clock Refer to supplied sheet
Peripherals Refer to supplied sheet

MSP430FR2111IPW16 Key Features

  • Single-core MCU capability ?? Exact core type and benefit will be listed from the official sheet to support system-level decisions.
  • Nonvolatile memory integration ?? The FRAM capacity and endurance details improve code and data retention; exact numbers will be supplied from the document.
  • Low-power operation ?? Power modes and current consumption data will be quoted directly from the sheet to highlight battery-life impacts.
  • Peripheral integration ?? On-chip timers, analog and digital interfaces increase integration; specific peripheral counts and capabilities will be included from the datasheet.

Typical Applications

  • Battery-powered sensing and measurement nodes where low standby current and nonvolatile data logging extend operational lifetime and reduce maintenance needs.
  • Industrial monitoring endpoints that require robust nonvolatile storage and low power to survive long-duration deployments with infrequent maintenance.
  • Simple control panels and user interfaces that benefit from integrated peripherals and FRAM for fast nonvolatile writes and high write endurance.
  • Point-of-sale or handheld devices where compact package, nonvolatile code storage and low power allow smaller batteries and longer duty cycles.

MSP430FR2111IPW16 Advantages vs Typical Alternatives

FRAM-based MSP430 devices typically offer faster nonvolatile writes and higher endurance compared with conventional flash-based microcontrollers. With integrated low-power modes and on-chip peripherals, this device can reduce BOM count and lower system power compared with discrete-memory solutions. Exact numerical advantages, such as FRAM capacity, write endurance, active and standby currents, and available peripherals, will be cited from the supplied datasheet to quantify benefits versus typical alternatives.

MSP430FR2111IPW16 Brand Info

The MSP430 family is produced by Texas Instruments, a leading semiconductor manufacturer known for microcontrollers and analog ICs. The MSP430 line emphasizes ultra-low power consumption and flexible mixed-signal integration. For the MSP430FR2111IPW16, I will provide a concise brand-aligned introduction that references only the official product sheet once that document is provided.

FAQ

What is the supply voltage range?

The supply voltage range and electrical characteristics are specified in the official datasheet. Provide the specification sheet and I will extract the exact minimum, typical and maximum voltage values and any recommended decoupling guidelines.

How much nonvolatile memory is included?

FRAM capacity and related endurance figures are documented in the product sheet. Once the sheet is available I will list the exact FRAM size, program/erase endurance and any capacity options for sourcing decisions.

What package and pin count does it use?

Package type, pin count and recommended PCB land pattern are given in the mechanical section of the datasheet. Supply the document and I will include the exact package code, dimensions and thermal pad details.

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产品中间询盘

What peripherals are available on-chip?

Peripheral blocks such as timers, ADCs, communication interfaces and port counts are enumerated in the datasheet. With the official sheet I will produce a clear list of peripherals and their counts for system architects.

Where can I get the detailed datasheet?

Attach the official product specification sheet or a link to the manufacturer??s datasheet. After receiving it I will create a complete, spec-accurate product description and comparisons strictly based on that source.

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