MSP430FR6005IPZ Overview
The MSP430FR6005IPZ is a low-power, FRAM-based microcontroller from a mainstream MSP430 family. It combines a 16-bit MSP430 CPU core with non-volatile FRAM memory and integrated peripheral functions to support energy-sensitive embedded designs. The device targets applications that need more write endurance and faster write speeds than typical flash-based MCUs. For exact pinout, memory size, electrical limits and timing, attach the product data sheet or consult the authoritative component listing at IC Manufacturer.
MSP430FR6005IPZ Technical Specifications
| Parameter | Value / Note |
|---|---|
| CPU core | 16-bit MSP430 instruction set |
| Non-volatile memory type | FRAM (ferroelectric RAM) |
| Maximum operating voltage | Refer to supplied datasheet for exact VCC range |
| Operating temperature range | Refer to product sheet for industrial temperature limits |
| Package code | IPZ ?? see datasheet for mechanical drawing and pin count |
| Peripherals | On-chip analog and digital peripherals (see datasheet for counts) |
| Low-power modes | Multiple MSP430 low-power states for standby and active efficiency |
| Data retention and endurance | FRAM provides high endurance and fast write cycles versus flash |
| Typical clock/frequency support | Refer to datasheet for maximum CPU clock and oscillator options |
MSP430FR6005IPZ Key Features
- 16-bit MSP430 core ?? delivers tight code density and deterministic execution for control tasks.
- FRAM non-volatile memory ?? supports fast, byte-level writes and higher write endurance than flash, reducing field maintenance.
- Ultra-low-power operation ?? multiple low-power modes to extend battery life in portable and sensor applications.
- Integrated analog and digital peripherals ?? reduces BOM and PCB area by combining timers, serial interfaces, and ADC functionality on-chip.
Typical Applications
- Battery-powered sensor nodes and remote telemetry where low quiescent current and fast FRAM writes extend operating life and responsiveness.
- Consumer and wearable devices that need durable non-volatile storage for frequent configuration or logging without sacrificing power efficiency.
- Industrial control endpoints requiring reliable non-volatile memory for firmware updates, calibration data and high write endurance in harsh environments.
- Energy meters and metering converters where long-term data logging and frequent small writes demand FRAM advantages over flash-based alternatives.
MSP430FR6005IPZ Advantages vs Typical Alternatives
The FRAM-based MSP430 device offers clear benefits compared with many flash-based microcontrollers. It provides faster write speeds and significantly higher write endurance, which reduces wear-out risk for frequent small writes. The 16-bit MSP430 architecture offers smaller code size and lower active energy for control tasks, while integrated analog peripherals reduce external parts count. In systems where power budget and memory write cycles matter, FRAM devices present a more reliable and maintenance-friendly option.
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MSP430FR6005IPZ Brand Info
The MSP430FR6005IPZ is produced by Texas Instruments, a leading supplier of analog and embedded processing solutions. TI??s MSP430 line focuses on low-power microcontrollers and system-level integration for industrial, consumer, and metering markets. The brand emphasizes long-term availability and broad design support including reference designs and development tools.
FAQ
What core does this MCU use?
The device implements the 16-bit MSP430 CPU architecture. This core is optimized for low-power control tasks and offers compact code density for embedded firmware.
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Is the non-volatile memory FRAM?
Yes. The MCU family uses FRAM technology for non-volatile storage. FRAM enables fast, low-energy writes and higher endurance than typical flash memory.
Where can I find pinout and mechanical drawings?
Pinout, package mechanical drawings and recommended PCB land patterns are included in the official product data sheet and package mechanical specifications available from the manufacturer.
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Does it support multiple low-power modes?
Yes. MSP430 devices provide several low-power operating modes to minimize standby current and optimize energy use for different runtime scenarios.
How to confirm electrical ratings and timing?
Electrical limits, absolute maximum ratings, recommended operating conditions, and timing parameters are all published in the datasheet and should be consulted before finalizing designs.



