MSP430FR2310IPW20 Overview
The description below is prepared to be strictly derived from the original specification sheet for the MSP430FR2310IPW20. To produce an accurate, validated product page that uses only sheet-sourced facts, attach the official specification sheet or paste its content. Once the sheet is available, I will convert the documented electrical ratings, package data, memory sizes, peripheral sets, operating ranges, and DC/AC characteristics into concise, engineer-focused copy. For sourcing and reference links, the authoritative supplier entry can be found at IC Manufacturer.
MSP430FR2310IPW20 Technical Specifications
| Parameter | Value (from sheet) |
|---|---|
| Device family / core | See attached specification |
| Memory type | See attached specification |
| Package / pins | IPW ?? 20 pins (refer to sheet) |
| Operating voltage | Refer to datasheet ratings |
| Max CPU clock | Refer to specification |
| Typical active current | See electrical characteristics |
| Low-power modes | Documented in device sheet |
| Peripherals (GPIO, timers, serial) | List and counts in datasheet |
MSP430FR2310IPW20 Key Features
- FRAM-based nonvolatile memory ?? low-latency, high-endurance storage when present; check sheet for exact capacity and endurance numbers.
- Ultra-low-power architecture ?? multiple low-power modes that reduce energy use in standby and active states according to the electrical specifications.
- 16-bit RISC processing ?? compact instruction set and efficient code density to optimize throughput per clock when validated by the datasheet.
- Compact 20-pin package ?? small footprint for tight PCB layouts; package mechanical and thermal data are included in the specification sheet.
Typical Applications
- Battery-powered sensing nodes where ultra-low standby current and nonvolatile program/data retention reduce maintenance and extend field life.
- Human?Cmachine interface controllers that need small package size and reliable nonvolatile storage for calibration and user settings.
- Industrial monitors that require robust nonvolatile memory and low-power sleep modes to maintain data integrity during power interruptions.
- Compact consumer devices where a minimal-pin microcontroller with FRAM and low quiescent current supports long battery run-time and frequent data logging.
MSP430FR2310IPW20 Advantages vs Typical Alternatives
The MSP430FR2310IPW20 can offer lower nonvolatile write latency and higher endurance when equipped with FRAM, compared with flash-based microcontrollers of similar pin count. The small 20-pin package enables more compact PCB designs than many 28-pin alternatives. The MSP430 architecture typically delivers efficient code density for control tasks and multiple low-power modes that reduce average system energy. Exact comparative numbers for memory size, current consumption, and clock speeds should be taken directly from the official specification sheet to support sourcing and BOM decisions.
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MSP430FR2310IPW20 Brand Info
The MSP430FR2310IPW20 belongs to the MSP430 family, a long-standing line of ultra-low-power 16-bit microcontrollers designed for embedded control and sensing applications. The family emphasizes energy efficiency, compact packages, and nonvolatile FRAM options to support frequent data logging and configuration retention without external memory.
FAQ
What is the package type?
Package details and mechanical drawings are listed in the official specification sheet. The IPW suffix indicates a 20-pin package; consult the sheet for footprint, pinout, and thermal data before PCB layout.
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How much nonvolatile memory is available?
The exact FRAM size and endurance metrics are specified in the device datasheet. Refer to the memory map and electrical-characteristics tables in the sheet for definitive capacity and write-cycle information.
What are the operating voltage limits?
Operating voltage range, recommended supply conditions, and absolute maximum ratings appear in the electrical specifications. Use those sheet values to design the power-supply and decoupling network for reliable operation.
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Which peripherals are included?
Peripheral list and counts (GPIO pins, timers, serial interfaces, comparator/ADC presence) are enumerated in the datasheet. Confirm the peripherals you require by matching them to the exact device revision in the sheet.
Where can I find the full electrical characteristics?
The complete set of DC and AC electrical characteristics, thermal limits, and recommended operating conditions are published in the official datasheet. Use those tables to derive margins, decoupling, and clocking strategies for production designs.



