MSP430F2132IRTVT Overview
The MSP430F2132IRTVT is a low-power 16-bit mixed-signal microcontroller from the MSP430 family optimized for energy-efficient control and sensing tasks. Designed for battery-operated and industrial endpoints, it combines a compact pinout with integrated analog and digital peripherals for simple system integration. For sourcing, technical reference, and verified ordering information visit IC Manufacturer. To create a precise technical datasheet-style product description with exact numerical specs, I need the specific product sheet for the MSP430F2132IRTVT to ensure all parameters and package details match the factory document.
MSP430F2132IRTVT Technical Specifications
| Parameter | Value / Source |
|---|---|
| Core CPU | See product datasheet for exact 16-bit RISC core details |
| Operating voltage | See product datasheet |
| Maximum clock frequency | See product datasheet |
| Flash memory | See product datasheet |
| SRAM | See product datasheet |
| Analog peripherals | See product datasheet (ADC, comparator, reference details) |
| Timers and communication | See product datasheet (Timer_A, USI/serial modules) |
| Package and pins | See product datasheet (IRTVT package and pin count) |
| Operating temperature | See product datasheet |
| Power modes | See product datasheet (low-power and standby modes) |
MSP430F2132IRTVT Key Features
- Low-power 16-bit CPU ?? enables longer battery life in portable and energy-sensitive applications.
- Integrated analog peripherals ?? on-chip ADC and comparator reduce external component count and PCB area.
- Compact package ?? small footprint supports dense board layouts and cost-effective manufacturing.
- Multiple low-power modes ?? allows duty-cycling and power gating to optimize overall system energy consumption.
Typical Applications
- Sensor nodes and wireless endpoints that require low standby current and simple mixed-signal interfacing for long battery life in field deployments.
- Battery-powered handheld instruments where compact MCU integration, analog inputs, and multiple low-power modes extend runtime and reduce BOM.
- Industrial monitoring and simple control loops that need a reliable 16-bit MCU with on-chip timers and analog functions for deterministic behavior.
- Consumer appliances and remote controls that benefit from a small microcontroller with integrated peripherals to lower cost and improve time-to-market.
MSP430F2132IRTVT Advantages vs Typical Alternatives
The device offers a balance of low active and standby power compared with many generic 8-bit MCUs, while providing wider analog integration than minimal microcontrollers. Its 16-bit architecture gives more efficient integer math and lower code size for certain control algorithms versus typical 32-bit options in ultra-low-power use cases. Because pin-count and peripheral mix are optimized for embedded sensing and control, integration can reduce external BOM and board area, improving system reliability and lowering overall solution cost.
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MSP430F2132IRTVT Brand Info
The MSP430 series is a long-standing microcontroller family from Texas Instruments, focused on ultra-low-power embedded applications. This product line emphasizes efficient power modes, integrated analog peripherals, and a compact footprint. For official technical support, licensing, and supply details consult the manufacturer??s product page and the device datasheet published by Texas Instruments.
FAQ
What core architecture does it use?
It uses a 16-bit RISC-style MSP430 core. The architecture is intended for low-power embedded control and efficient integer processing in compact firmware.
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Where can I find exact memory sizes?
Refer to the official product datasheet for verified Flash and SRAM sizes. The datasheet lists exact memory map, available program memory, and reserved regions.
Which package does IRTVT denote?
The full package designation and pin count are specified on the device ordering information page in the datasheet and should be consulted for PCB footprint and assembly planning.
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How to verify operating voltage and temperature?
Operating voltage range and ambient temperature ratings are defined in the electrical characteristics and ordering information sections of the manufacturer datasheet; use those values for system-level design.
Can I get reference designs or evaluation board details?
Reference designs, example schematics, and evaluation modules are typically listed on the manufacturer website and in technical notes; consult the manufacturer resources for proven layouts and firmware examples.



