MSP430F1481IPM Overview
The MSP430F1481IPM is a member of the low?power MSP430 microcontroller family. To create a precise, datasheet?accurate product description, I need the original specification sheet for this exact device. Once the sheet is available I will extract and present validated details about core architecture, memory sizes, peripheral set, power?consumption figures, package and temperature ratings. For sourcing and reference, see IC Manufacturer for typical distributor listings and manufacturing information.
MSP430F1481IPM Technical Specifications
| Parameter | Specification |
|---|---|
| CPU | Datasheet required to list core details and clock rate |
| Program Memory (Flash) | Datasheet required to list capacity and endurance |
| SRAM | Datasheet required to list RAM size |
| ADC Resolution | Datasheet required to list resolution and channel count |
| Operating Voltage | Datasheet required to list VDD range |
| Operating Temperature | Datasheet required to list industrial temperature range |
| Package | Datasheet required to list package type and pin count |
| Power Consumption | Datasheet required to list active and low?power currents |
| Peripherals | Datasheet required to list timers, UART/SPI/I2C, comparator, etc. |
| Reliability / Certifications | Datasheet required to list qualifications and lifecycle notes |
MSP430F1481IPM Key Features
- Low?power 16?bit MCU architecture ?? exact clock and efficiency figures available from the device datasheet.
- On?chip nonvolatile memory ?? integrated flash for firmware storage; datasheet lists capacity and program/erase characteristics.
- Analog and digital peripheral set ?? ADC, timers and serial interfaces enhance system integration and reduce external components when confirmed by the sheet.
- Multiple low?power modes ?? reduces system power draw in standby and extends battery life as specified in the datasheet.
Typical Applications
- Battery?powered sensing nodes where long standby life is required and peripherals consolidate functions to reduce BOM and power draw.
- Industrial control interfaces that require deterministic timers, analog inputs and robust low?power operation across wide temperatures.
- Embedded metering and portable instrumentation that need accurate ADC measurements and on?chip flash for field?upgradeable firmware.
- Human?machine?interface (HMI) panels and simple display controllers where serial interfaces and GPIO expandability support peripheral integration.
MSP430F1481IPM Advantages vs Typical Alternatives
Compared with many general?purpose 8?bit MCUs, this MSP430 series device emphasizes lower run?time power and a 16?bit CPU for more efficient code density and arithmetic. When the datasheet is available, I will cite specific memory sizes, clock speeds and current figures to quantify advantages in code density, active current and sleep draw. These metrics typically translate to fewer components, longer battery runtime and smaller firmware size versus bulkier alternatives.
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MSP430F1481IPM Brand Info
MSP430F1481IPM is produced by Texas Instruments under the MSP430 microcontroller family. Texas Instruments positions these MCUs for low?power embedded designs with a focus on mixed?signal integration and optimized power modes for battery?sensitive applications.
FAQ
What is the CPU architecture?
Answer: The MSP430 family uses a 16?bit RISC CPU. Exact clock frequency, instruction set enhancements and performance figures are listed in the specific device datasheet and will be included once the sheet is available.
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What are the memory sizes?
Answer: Flash and SRAM capacities vary across MSP430 variants. The precise program memory and RAM sizes for this part are defined in the device datasheet and will be cited verbatim when provided.
Which peripherals does it include?
Answer: MSP430 devices commonly include ADCs, timers and serial interfaces. To avoid inaccuracies, I will enumerate the exact ADC resolution, timer types, and serial blocks after reviewing the official specification sheet for this part.
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What is the operating voltage range?
Answer: Many MSP430 devices operate across a low voltage range optimized for battery operation. The device?specific VDD range and recommended operating conditions are documented in the datasheet and will be reported exactly.
How can I source authentic parts?
Answer: Use authorized distributors and manufacturer listings to source authentic units. Once the datasheet is available, I can list common package ordering codes, typical distributor part numbers and suggest procurement checks based on the official documentation.



