MSP430G2132IRSA16T Overview
The MSP430G2132IRSA16T is a member of the MSP430 ultra?low?power microcontroller family. To generate an accurate, specification?level product description and comparison, I need to extract the numeric and feature data directly from the product sheet. Share the original product sheet or paste its content and I will produce a complete, verified description suitable for engineering and sourcing teams. For reference or uploading use the manufacturer’s portal at IC Manufacturer.
MSP430G2132IRSA16T Technical Specifications
| Parameter | Value |
|---|---|
| Core architecture | Data available on provided sheet |
| Operating voltage | Data available on provided sheet |
| Maximum clock frequency | Data available on provided sheet |
| Program memory | Data available on provided sheet |
| RAM | Data available on provided sheet |
| Package type / pins | Data available on provided sheet |
| Analog peripherals (ADC resolution) | Data available on provided sheet |
| Timers / communication modules | Data available on provided sheet |
| Operating temperature range | Data available on provided sheet |
| Typical power modes | Data available on provided sheet |
MSP430G2132IRSA16T Key Features
- 16?bit core capability that typically yields efficient code density and lower cycle counts for control tasks.
- Low?power modes enable longer battery life in portable or energy?harvested systems when configured correctly.
- Integrated timers and I/O reduce external component count and simplify PCB routing for compact designs.
- On?chip analog support such as ADC (refer to sheet) helps minimize external ADC components and improves system integration.
Typical Applications
- Battery?powered sensing nodes where ultra?low standby current and efficient wake cycles extend operational life for months or years.
- Portable instrumentation requiring compact microcontrollers with integrated analog and timing peripherals to reduce BOM and board space.
- Industrial control and sensing interfaces that need deterministic low?power wake timing and reliable timer/capture compare functions.
- Consumer electronics with tight power budgets and cost targets, where integrated peripherals reduce external parts and simplify firmware.
MSP430G2132IRSA16T Advantages vs Typical Alternatives
The MSP430G2132IRSA16T family typically competes on low power, integrated analog and compact packaging. Compared with higher?power 8?/32?bit alternatives, it usually offers lower standby currents and simpler peripheral sets that lower BOM and firmware complexity. For applications prioritizing battery life and minimized external components, the device often provides a better integration balance. Exact numeric advantages depend on the sheet??s electrical and timing specifications.
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MSP430G2132IRSA16T Brand Info
The MSP430G2132IRSA16T is part of the MSP430 product line from Texas Instruments. This family emphasizes ultra?low power operation and compact microcontroller solutions for embedded control, sensing, and low?energy applications. Refer to the official Texas Instruments documentation for validated designs, software libraries, and ordering codes.
FAQ
What package options exist?
Package options and the exact mechanical drawings are listed on the product sheet. The sheet includes ordering codes, pinouts and recommended PCB footprint data for each package variant.
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How is power consumption documented?
Power consumption figures, including active currents and multiple low?power mode currents, are presented in the electrical characteristics section of the product sheet and depend on clock frequency and supply voltage.
Where to find recommended operating conditions?
The recommended operating voltage, temperature ranges and related derating guidelines are in the datasheet??s recommended operating conditions table and absolute maximum ratings section.
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Which development tools support this device?
Supported development tools, debug interfaces and software libraries are documented by the vendor. The product sheet references compatible toolchains and application notes for evaluation and programming.
How to obtain validated reference designs?
Validated reference designs, application notes and recommended circuits are provided by the manufacturer and referenced from the product sheet. These resources speed integration and ensure recommended component selections.



