MSP430G2112IPW14R 16-bit Low-Power Microcontroller, TSSOP-14 (IPW14R)

  • Low-power microcontroller core provides deterministic control and extended battery runtime for small embedded systems.
  • Flexible peripheral set reduces external components, simplifying BOM and speeding development for constrained projects.
  • Compact 14-pin package minimizes board footprint, enabling denser PCB layouts in size-sensitive designs.
  • Ideal for wireless sensor nodes, this MCU handles sampling, low-power sleep, and occasional radio bursts efficiently.
  • MSP430G2112IPW14R undergoes TI production tests and qualification, ensuring consistent operation across temperature ranges.
SKU: MSP430G2112IPW14R Category: Brand:
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MSP430G2112IPW14R Overview

The MSP430G2112IPW14R is a low?power 16?bit microcontroller platform intended for simple embedded tasks and battery?sensitive designs. To ensure specification?grade accuracy in sourcing and design, this description follows only the referenced product sheet. The datasheet contains full electrical characteristics, pinout, memory, clock, and packaging details required by engineers and sourcing specialists. For sourcing and manufacturer reference, consult IC Manufacturer and attach the official product sheet so the technical content can be completed to specification and validated for procurement and design decisions.

MSP430G2112IPW14R Technical Specifications

Parameter Value
CPU core See official datasheet for core architecture and clock ranges
Operating voltage Refer to device electrical ratings in the product sheet
Maximum current consumption Specified in datasheet under operating modes
Memory (Flash/RAM) Documented per device variant in the product documentation
Package type Identified by the IPW14R marking; consult mechanical drawing
Temperature range Available in datasheet; review for industrial or commercial grading
I/O count Pin and port assignments listed in the official pinout table
Peripherals Detailed in the sheet (timers, ADC, serial interfaces as applicable)

MSP430G2112IPW14R Key Features

  • Low?power MCU core ?? supports energy?efficient operation for battery?driven applications.
  • Compact package ?? small form factor suited to space?constrained boards and higher PCB densities.
  • Integrated peripherals ?? on?chip timers and serial interfaces reduce external components and BOM cost.
  • Design conformity ?? electrical and mechanical specifications are defined in the official product sheet for reliable system integration.

Typical Applications

  • Battery?powered sensor nodes where ultra?low standby current extends service life and reduces maintenance intervals.
  • Simple human?machine interfaces that require debouncing, LED driving, and a small number of digital inputs and outputs.
  • Industrial monitoring endpoints that need robust low?power behavior and a deterministic interrupt/timer architecture for sampling.
  • Consumer electronic controls where a compact package and integrated peripherals cut PCB area and component count.

MSP430G2112IPW14R Advantages vs Typical Alternatives

The device targets minimal power consumption and small board footprint compared with many 8? or 32?bit alternatives. Its integrated peripherals and compact IPW14R package reduce external circuitry and assembly cost. For simple control and sensing tasks, the architecture delivers fewer cycles per instruction and lower active and standby currents, which matters for battery life and thermal budgets. Refer to the official datasheet for direct numerical comparisons against competing devices and to validate claims for your specific operating conditions.

MSP430G2112IPW14R Brand Info

MSP430G2112IPW14R is part of the MSP430 family from Texas Instruments. The brand is known for low?power microcontrollers and extensive development tools. Texas Instruments provides comprehensive documentation, reference designs, and software support for MSP430 devices to accelerate development and reduce time to market.

FAQ

What package is IPW14R?

The exact mechanical drawing and pin dimensions for the IPW14R package are published in the device mechanical datasheet. Consult that sheet to confirm pad layout and board keep?out requirements before PCB design.

Where are electrical limits listed?

Absolute maximum ratings, recommended operating conditions, and electrical characteristics are all included in the official datasheet. Use those sections to verify voltage, current, and timing constraints for safe operation.

How do I confirm memory size?

Memory configuration and available RAM/Flash are specified per part number in the product documentation. Cross?check the device marking and datasheet table that lists memory sizes for each variant.

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Is development support available?

Development tools, IDE support, and example code for MSP430 family devices are provided by the vendor. Review the vendor support pages and the device-specific user guide for toolchain compatibility.

How to validate in my design?

Validate by reviewing the full datasheet sections on timing, power modes, thermal performance, and recommended PCB footprint. Run hardware bring?up and measure currents across intended operating modes to confirm expected behavior.

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