MSP430FR6007IPZR 16-bit FRAM Microcontroller in IPZR Package

  • MSP430FR6007IPZR microcontroller delivers low-power control for responsive battery-operated systems reliably.
  • Key spec: ultra-low power consumption, extending battery runtime significantly reliably.
  • Small package minimizes board-space, easing compact product integration in constrained.
  • Ideal for wireless sensor nodes; extends uptime and simplifies control.
  • Manufactured to standards with built-in error detection for reliable operation.
SKU: MSP430FR6007IPZR Category: Brand:
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MSP430FR6007IPZR Overview

The MSP430FR6007IPZR is a member of the MSP430 FRAM microcontroller family. This part number identifies a low-power, 16-bit control-class MCU designed for efficient embedded tasks and nonvolatile data retention. For exact silicon options, memory sizes, package type, and electrical limits, consult the official product sheet. For sourcing and supplier details, visit IC Manufacturer. I can produce a full, specification-accurate product description once the official datasheet or product specification sheet is uploaded for reference.

MSP430FR6007IPZR Technical Specifications

Parameter Value / Note
Core 16?bit MSP430 CPU ?? see datasheet for exact clock rates and performance
Nonvolatile Memory FRAM type ?? refer to product sheet for capacity in bytes
SRAM / RAM On?chip volatile memory ?? refer to datasheet for size
Operating Voltage Device supply range documented on the specification sheet
Operating Temperature Industrial and commercial ranges listed in the official datasheet
Package Package code IPZR ?? see datasheet for package outline, pin count, and dimensions
Peripherals Integrated peripherals described on the product sheet (timers, ADC, I/O, etc.)
Packaging Reel/tube options and ordering codes are listed in the manufacturer documentation
ESD and Reliability Qualification and ratings appear in the datasheet and device marking guide

MSP430FR6007IPZR Key Features

  • 16?bit MSP430 CPU ?? enables compact code and efficient control loops for embedded tasks.
  • FRAM nonvolatile memory ?? provides fast, low?energy writes and high write endurance compared with traditional flash.
  • Low power modes ?? multiple standby and active states allow long battery life in duty?cycled systems.
  • Integrated peripherals ?? on?chip timers, GPIO and analog blocks reduce external component count and board area.

Typical Applications

  • Battery?powered sensor nodes that need nonvolatile logging and long run time through aggressive low?power modes for months or years.
  • Industrial control panels where FRAM retention and endurance improve reliability over repeated configuration changes and data logging.
  • Consumer appliances that require fast nonvolatile parameter storage and low active?power for better user experience and lower standby drain.
  • Medical or metering endpoints that must retain calibration and measurement history without power and support compact PCB integration.

MSP430FR6007IPZR Advantages vs Typical Alternatives

The device uses FRAM, which typically yields faster write speeds and higher write endurance than Flash alternatives. This drives fewer system design compromises when frequent nonvolatile updates are needed. The 16?bit MSP430 core offers lower code size and simpler control logic compared with wider 32?bit MCUs in many sensing and control roles. Combined with integrated analog and timer peripherals, the part reduces BOM and board area versus solutions that require external memory or separate analog ICs.

MSP430FR6007IPZR Brand Info

The part belongs to the MSP430 family from Texas Instruments. Texas Instruments is a global semiconductor manufacturer known for mixed?signal and embedded processing products. The MSP430 line targets ultra?low?power applications and offers FRAM variants for robust nonvolatile storage and energy?efficient embedded control.

FAQ

What is the package type?

Package details for the IPZR suffix are defined in the device datasheet and mechanical drawing. Consult the official product sheet for pin count, package dimensions, and land pattern recommendations before PCB layout.

How much FRAM does it include?

FRAM capacity varies by exact device variant and ordering code. Refer to the published device summary table in the datasheet to confirm the documented FRAM size for this part number.

What supply voltage does it require?

The valid supply voltage range and recommended decoupling practices are specified in the electrical characteristics section of the datasheet. Use those values for regulator selection and power?rail design.

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Are development resources available?

Vendor documentation typically lists available development kits, reference designs, and software libraries for the MSP430 family. Check the manufacturer website and the product page for boards and code examples.

Where can I get the full datasheet?

The official datasheet and ordering guide are available from the component manufacturer??s product page and authorized distributor listings. Use the exact part number to access the correct revision and packaging notes.

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