MSP430I2031TRHBT Overview
The MSP430I2031TRHBT is a low-power, 16-bit microcontroller offering a balance of energy efficiency and real-time control features for industrial embedded designs. It provides a compact package and an optimized instruction set for deterministic performance in battery-powered and mains-operated systems. The device is suited for sensor hubs, portable instruments, and control nodes that require reduced power draw and reliable timing. For procurement and additional manufacturer resources visit IC Manufacturer.
MSP430I2031TRHBT Technical Specifications
| Parameter | Value |
|---|---|
| CPU Architecture | 16-bit RISC |
| Supply Voltage | 1.8?C3.6 V |
| Maximum Clock Frequency | Up to 16 MHz |
| Operating Temperature Range | -40 ??C to +85 ??C |
| Package Type | Surface-mount tape & reel |
| Typical Active Current | Low-??A class (device optimized for ultra-low-power) |
| Pin Count (typical) | 20 pins (compact footprint) |
| Programming Interface | Standard debug/programming header compatibility |
| Package Quantity (Tape & Reel) | 2500 units (reel packaging typical) |
MSP430I2031TRHBT Key Features
- 16-bit RISC core with a compact instruction set that reduces code size and improves execution efficiency.
- Ultra-low supply voltage range down to 1.8 V, which matters for battery-run systems and energy harvesting designs.
- Low active current enabling longer battery life compared to many 8-bit controllers in similar roles.
- Compact surface-mount package and tape-and-reel delivery, simplifying automated assembly and high-volume sourcing.
Typical Applications
- Battery-powered sensor nodes for industrial monitoring where long standby life and periodic wake cycles preserve battery capacity over months to years.
- Portable medical instruments that require precise timing, low power consumption, and a compact PCB footprint for handheld use.
- Smart metering and energy-management endpoints that demand deterministic control, low standby draw, and reliable field deployment.
- Consumer and industrial control panels where a small microcontroller provides timers, GPIO control, and low-power sleep modes for efficient operation.
MSP430I2031TRHBT Advantages vs Typical Alternatives
Compared with many 8-bit or higher-power 32-bit alternatives, this device delivers a stronger balance of power efficiency and deterministic performance. Its 16-bit core achieves lower code density and faster control-loop response than typical 8-bit parts, while consuming far less energy than many 32-bit MCUs under similar tasks. The compact package and tape-and-reel option reduce BOM footprint and assembly cost versus larger form factors. These combined traits make the part especially competitive for designs prioritizing long battery life and compact PCB area.
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MSP430I2031TRHBT Brand Info
The MSP430 family is produced by Texas Instruments, a global semiconductor supplier known for analog and embedded processing solutions. This part follows the brand’s focus on ultra-low-power microcontrollers and a mature ecosystem of development tools, software libraries, and documentation to accelerate product design and qualification.
FAQ
What is the core architecture?
The device uses a 16-bit RISC core designed for compact code and efficient control. This architecture yields lower instruction counts and faster real-time handling than many 8-bit controllers.
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What supply voltage is required?
It operates across a low-voltage range suitable for modern battery systems. The device supports typical embedded supply rails found in portable and industrial designs.
Is tape-and-reel packaging available?
Yes. The suffix indicates surface-mount tape-and-reel packaging suited for automated pick-and-place assembly and high-volume manufacturing runs.
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What temperature range does it support?
The product is specified for industrial operating range, covering common commercial and industrial ambient temperatures for field-deployed controls and sensors.
Which development tools are supported?
Development leverages standard toolchains and debug/programming headers common to the MSP430 ecosystem, enabling rapid prototyping and integration with existing firmware assets.



