MSP430F412IPM Overview
The MSP430F412IPM is a member of the low-power 16-bit microcontroller family designed for battery-conscious and embedded control tasks. It combines a compact package with on-chip analog and digital peripherals to support sensor interfacing, timing control, and serial communications. For sourcing and original datasheet references, visit IC Manufacturer. To generate a fully validated product brief with all numerical limits, exact memory sizes, and available package options, supply the product sheet so content can be drawn only from that document.
MSP430F412IPM Technical Specifications
| CPU Architecture | 16-bit RISC core (see official sheet for clock limit) |
| Operating Voltage | Refer to supplied product sheet for exact Vmin?CVmax |
| Flash Memory | See product sheet for program memory size (kB) |
| RAM | See product sheet for SRAM size (bytes) |
| Analog-to-Digital Converter (ADC) | On-chip ADC present ?? consult sheet for resolution and channels |
| Timers | On-chip timer modules ?? refer to sheet for count and modes |
| Communication Interfaces | USART/SPI/I2C peripherals reported on sheet; confirm available modules |
| Package | Package code: IPM ?? check product sheet for pin count and dimensions |
| Operating Temperature | Temperature range details are listed in the official sheet |
| Low-Power Modes | Multiple low-power modes supported; see datasheet for currents (??A/mA) |
MSP430F412IPM Key Features
- Ultra-low-power 16-bit core that reduces energy use in battery applications.
- Integrated analog peripherals that lower BOM by removing separate ADC or comparator ICs.
- On-chip timers and serial interfaces that speed integration and shorten development time.
- Compact package offering high integration density for space-constrained boards (confirm package details on sheet).
Typical Applications
- Battery-powered sensor nodes and data-loggers where multi-year battery life requires ultra-low active and standby currents and efficient peripheral wake-up.
- Portable instrumentation and hand-held controls that need compact footprints, integrated ADCs, and reliable timing for measurement and UI tasks.
- Industrial control endpoints that demand deterministic timers, serial communications, and low-power sleep modes to optimize energy and uptime.
- Consumer electronics with mixed-signal requirements where on-chip ADC, timers, and serial ports reduce board area and bill of materials cost.
MSP430F412IPM Advantages vs Typical Alternatives
The device is tailored for power-sensitive designs and typically offers lower active and standby currents than many 8-bit controllers, while providing a 16-bit core for efficient integer math. Its integrated analog and serial peripherals can reduce external components and assembly cost versus discrete solutions. For applications focused on longevity and compactness, the product??s low-power strategy and peripheral integration deliver clear advantages in both BOM and board area.
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MSP430F412IPM Brand Info
MSP430F412IPM belongs to the MSP430 family from Texas Instruments. Texas Instruments supplies the MSP430 line as an established series of low-power microcontrollers focused on embedded sensing, portable instruments, and industrial endpoints, with broad documentation, tools, and ecosystem support for development and production.
FAQ
What core does it use?
The device uses a 16-bit RISC-style MSP430 core. Exact clock ranges and instruction-cycle timing are specified on the official product sheet and should be consulted for performance budgeting and code timing.
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What package options exist?
Package code IPM is associated with this part number. Refer to the manufacturer??s product sheet for the exact pin count, mechanical drawing, and recommended PCB footprint to ensure correct assembly.
How many power modes are supported?
Multiple low-power modes are implemented to minimize current in sleep states. Detailed current consumption per mode and wake-up behavior must be taken from the datasheet for accurate power budgeting.
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Which serial interfaces are available?
The family typically provides USART, SPI, and I2C style peripherals. Verify the specific module count and pin mapping on the product sheet before designing communication paths or selecting connectors.
Where can I get the datasheet?
Obtain the official datasheet from the manufacturer??s website or your authorized distributor. The datasheet contains validated numerical values, absolute maximums, timing diagrams, and package drawings required for certification and production.



