MSP430FR2310IPW16 Overview
The MSP430FR2310IPW16 is a low-power, 16-pin FRAM microcontroller built around a 16-bit MSP430 core. It targets battery-powered and space-constrained industrial applications that need more write endurance and faster nonvolatile updates than typical flash-based parts. The device combines a compact 16-pin package with multiple GPIOs, integrated timers, and ultra-low-power modes to extend battery life. Designers benefit from FRAM’s fast write speeds and high write-cycle endurance. For product sourcing and additional device family details visit IC Manufacturer.
MSP430FR2310IPW16 Technical Specifications
| Parameter | Value |
|---|---|
| Core | MSP430 16-bit RISC |
| Maximum CPU Clock | 16 MHz |
| Nonvolatile Memory | 2 KB FRAM |
| RAM | 128 bytes |
| Operating Voltage | 1.8 V to 3.6 V |
| General-Purpose I/O | Up to 12 pins |
| Package | 16-pin VSSOP (PW) |
| Operating Temperature | -40 ??C to +85 ??C |
| Timers | 16-bit timer (1) |
| Low-Power Modes | Multiple LPM states for deep sleep |
MSP430FR2310IPW16 Key Features
- 16-bit MSP430 core: Balanced performance with lower code size for control and sensing tasks.
- FRAM nonvolatile memory: Fast write speeds and high endurance allow frequent data logging without wear concerns.
- Ultra-low-power operation: Multiple low-power modes and reduced active current extend battery life in portable designs.
- Compact 16-pin package: Small PCB footprint supports space-constrained industrial and consumer products.
Typical Applications
- Battery-powered sensor nodes that require frequent nonvolatile logging and tight energy budgets for months or years of operation.
- Utility metering and portable measurement instruments where high write endurance and rapid nonvolatile updates reduce maintenance needs.
- Industrial control endpoints with limited PCB space that need deterministic timing, low power modes, and reliable nonvolatile storage.
- Consumer wearables and handheld devices that demand compact packages, low standby current, and frequent configuration updates.
MSP430FR2310IPW16 Advantages vs Typical Alternatives
The device stands out versus many flash-based microcontrollers by offering FRAM for faster, lower-energy writes and far greater write endurance. In compact 16-pin form factors it provides more integrated nonvolatile capability than similar-sized flash parts. The 16-bit core delivers efficient code density, while the wide supply range and multiple low-power modes improve compatibility across 1.8?C3.6 V systems. For designs where frequent parameter updates, long-term data logging, or minimal power draw matter, this device often reduces system complexity and increases reliability compared to conventional flash-based MCU alternatives.
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MSP430FR2310IPW16 Brand Info
The MSP430FR2310IPW16 is produced by Texas Instruments. Texas Instruments is a major semiconductor manufacturer known for mixed-signal products and MCU families. The MSP430 family emphasizes low power and robust peripheral integration for embedded control, measurement, and battery-powered applications. TI offers development tools, documentation, and reference designs to speed evaluation and integration.
FAQ
What memory type does it use?
This device uses FRAM (Ferroelectric RAM) for nonvolatile program and data storage. FRAM supports fast writes and a high number of write cycles compared with typical flash memory, which benefits frequent logging and in-field parameter updates.
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What package and pin count are available?
The product comes in a 16-pin package (VSSOP/PW option). That compact package helps reduce PCB area in space-constrained designs while still providing multiple GPIOs and essential peripherals for control tasks.
Which voltage range does it support?
It operates across a wide supply range from 1.8 V to 3.6 V. This allows direct use with common battery chemistries and single-supply systems without the need for complex power conversion.
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What development tools are recommended?
Texas Instruments supplies software tools and examples. Engineers commonly use TI Code Composer Studio or compatible toolchains to compile, debug, and program code. TI also provides documentation and application notes for quicker integration.
Is it suitable for low-power battery designs?
Yes. The MSP430 architecture includes several low-power modes and low active current draw. Combined with FRAM’s low write energy, the device is well-suited for long-life battery-powered and energy-harvesting applications.



