MSP430F2012IRSAT Overview
The MSP430F2012IRSAT is an ultra-low-power, 16-bit microcontroller optimized for compact industrial and battery-powered designs. It combines a single 16-bit CPU with onboard non-volatile memory and essential analog and timer peripherals in a 20-pin tape-and-reel package. The device supports low-voltage operation and industrial temperature range, making it suitable for smaller sensor nodes, portable instruments, and control interfaces. For sourcing and supplier details see IC Manufacturer.
MSP430F2012IRSAT Technical Specifications
| CPU Architecture | 16-bit RISC |
| Flash Memory | 2 KB |
| SRAM | 128 B |
| GPIO Pins | 16 I/O pins |
| Timer | 16-bit Timer_A (one module) |
| Operating Voltage | 1.8 V to 3.6 V |
| Clock | Internal DCO up to 16 MHz |
| Package | 20-pin TSSOP, tape-and-reel |
| Temperature Range | -40 ??C to +85 ??C (industrial) |
| Supply Type | Single supply |
MSP430F2012IRSAT Key Features
- Single 16-bit CPU with balanced instruction set for efficient control and data handling.
- 2 KB of on-chip Flash memory enables compact firmware and faster development cycles.
- 128 B of SRAM provides immediate data storage for runtime variables and stack.
- 16 general-purpose I/O pins allow direct interface to sensors, indicators, and simple buses.
- 16-bit Timer_A supports pulse-width modulation and precise interval timing for control tasks.
- Low-voltage operation (1.8?C3.6 V) improves compatibility with single-cell battery and low-power supplies.
- Industrial temperature rating ensures reliable operation across a wider range than consumer-grade parts.
- Compact 20-pin package reduces board area and lowers BOM cost in space-constrained systems.
Typical Applications
- Battery-powered sensor nodes where ultra-low-power sleep and compact 2 KB flash permit months or years of field operation without frequent maintenance.
- Portable medical or measurement instruments that need a 16-bit controller with small footprint and robust industrial temperature tolerance for varied environments.
- Simple motor or actuator control in industrial interfaces that require 16-bit timing precision and multiple digital I/Os for direct switching and sensing.
- Human-machine interfaces such as keypads and simple displays where efficient GPIO usage and a single 16-bit core reduce component count and cost.
MSP430F2012IRSAT Advantages vs Typical Alternatives
The part delivers a focused set of resources with lower system complexity than larger microcontrollers. Compared with 8-bit alternatives, it offers higher instruction density and wider arithmetic ranges using a 16-bit CPU. Versus larger 32-bit MCUs, it provides lower power use, smaller flash footprint, and lower unit cost. Its industrial temperature rating and 20-pin package make it easier to integrate into compact control modules while keeping board area and BOM lower than many competitors.
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MSP430F2012IRSAT Brand Info
The MSP430F2012IRSAT is part of the MSP430 family by Texas Instruments. TI is a global semiconductor company known for mixed-signal and low-power microcontrollers. The MSP430 line emphasizes energy efficiency and compact integration for embedded and industrial applications.
FAQ
What is the core architecture?
The device uses a 16-bit RISC core. This architecture provides compact code and efficient control over peripherals, which improves performance per clock compared with many 8-bit designs.
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What memory sizes are available?
On-chip non-volatile memory is 2 KB of flash and volatile RAM is 128 bytes. These sizes are targeted at small control programs and compact firmware footprints.
Which package and mounting option apply?
The unit ships in a 20-pin TSSOP package and is supplied in tape-and-reel format for automated assembly and high-volume placement processes.
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What voltage range does it accept?
The device operates from 1.8 V to 3.6 V single-supply. This allows direct use with single-cell lithium or other low-voltage power sources commonly used in portable systems.
Is it rated for industrial temperatures?
Yes. The specified temperature range covers -40 ??C to +85 ??C, making it suitable for industrial environments and applications with wider thermal swings.



