MSP430FR6007IPZ Overview
The MSP430FR6007IPZ is a low-power 16-bit microcontroller family member that requires its full datasheet for precise specifications. This summary focuses on what is needed to write accurate design, sourcing, and application content. To deliver correct numerical specs, pinouts, memory sizes, and electrical characteristics, I need the official product sheet. Once supplied, I will extract concrete values and produce a complete, verified product description, tables, and application guidance. For sourcing and reference visit IC Manufacturer.
MSP430FR6007IPZ Technical Specifications
| Parameter | Value (see product sheet) |
|---|---|
| Core architecture | MSP430 16-bit CPU ?? refer to the product sheet for exact core variant |
| Non-volatile memory | FRAM capacity as listed in the datasheet |
| SRAM / RAM | On-chip RAM size per the datasheet |
| Maximum operating voltage | Supply voltage range specified in the product sheet |
| Operating temperature range | Temperature limits shown on the official sheet |
| Package type | Package code and pin count as specified on the datasheet |
| Peripherals | Integrated timers, ADCs, communication interfaces listed in the sheet |
| Power modes / current consumption | Low-power mode currents and active currents listed in the datasheet |
| Clock sources | Internal and external clock options detailed in the product sheet |
| ESD / reliability ratings | Manufacturer test and qualification values in the datasheet |
MSP430FR6007IPZ Key Features
- 16-bit MSP430 core ?? provides efficient control and quick interrupt response for real-time tasks.
- FRAM nonvolatile memory ?? enables high write endurance and fast write speeds for frequent data logging.
- Low-power operation ?? supports extended battery life through multiple low-power modes and low active currents.
- Integrated peripherals ?? on-chip timers, ADC, and serial interfaces reduce BOM and simplify board design.
Typical Applications
- Battery-powered sensor nodes requiring long life and frequent nonvolatile data updates; ideal where low sleep current matters and fast nonvolatile writes are required.
- Portable medical instruments that need reliable nonvolatile storage and predictable power consumption for safety and certification.
- Industrial monitoring endpoints that collect and log data frequently and must survive many write cycles without external EEPROM.
- Smart meters and utility devices where nonvolatile logging, low energy profiles, and simple serial communications reduce overall system cost.
MSP430FR6007IPZ Advantages vs Typical Alternatives
The device stands out by combining a 16-bit MSP430 core with FRAM technology, which offers more write endurance and faster writes than typical EEPROM-based alternatives. It requires fewer external components thanks to integrated peripherals. For designs that prioritize long battery life, the lower standby and active currents provide clear efficiency advantages. When compared to flash-based microcontrollers, the FRAM approach improves reliability for frequent logging and reduces latency for nonvolatile operations.
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MSP430FR6007IPZ Brand Info
The MSP430FR6007IPZ belongs to the MSP430 family, a well-established line of low-power microcontrollers from Texas Instruments. Texas Instruments is known for robust documentation, wide distribution, and long-term availability. Use the official TI product page and datasheet to confirm electrical characteristics, package options, and ordering codes for precise procurement and design integration.
FAQ
What memory type does it use?
The product uses FRAM nonvolatile memory technology. For capacity, endurance, and specific layout details, refer to the official product sheet where the exact FRAM size and characteristics are listed.
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Which core and instruction set are supported?
The device is based on the MSP430 16-bit CPU family. The datasheet provides the exact core variant, instruction set details, and any enhancements for interrupt handling and low-power operation.
What are the key low-power modes?
Multiple low-power modes are implemented to minimize standby and active currents. See the product sheet for numeric current values, wake-up latencies, and recommended low-power usage patterns for battery-powered designs.
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How are peripherals integrated?
On-chip peripherals typically include timers, ADCs, and serial interfaces to reduce external component count. The datasheet lists the exact peripheral set, pin mappings, and electrical interfaces for system integration.
Where can I get pinout and package details?
Pinout, mechanical drawings, and package ordering codes are published in the official datasheet and packaging addendum. Use those files for PCB footprint, thermal, and assembly planning.



