MSP430G2513IPW28 Overview
The MSP430G2513IPW28 is a low-power, 16-bit microcontroller in a 28-pin PW package. It targets battery-powered and industrial control designs that demand low active and standby currents. The device combines a compact pin count with on-chip peripherals for analog sensing and simple digital control. Engineers will value its small footprint, predictable power profile, and MCU-grade I/O mix for sensor front-ends, user interfaces, and timing functions. For sourcing and further datasheet details, visit IC Manufacturer.
MSP430G2513IPW28 Technical Specifications
| Parameter | Value |
|---|---|
| Core | 16-bit RISC |
| Package type | 28-pin PW (TSSOP-compatible) |
| Pin count | 28 pins |
| Recommended VCC | 1.8 ?C 3.6 V |
| Maximum CPU clock | Up to 16 MHz |
| Operating temperature | -40 ??C to +85 ??C |
| Non-volatile memory (Flash) | Data per datasheet |
| SRAM | Data per datasheet |
| Typical I/O count | Multiple general-purpose I/O pins |
| Low-power modes | Several standby and active power states |
MSP430G2513IPW28 Key Features
- 16-bit RISC core ?? delivers efficient instruction throughput for control and sensing tasks while minimizing code size.
- Low-voltage operation ?? supports operation across a broad 1.8?C3.6 V range, which matters for single-cell battery and regulated systems.
- Compact 28-pin package ?? reduces board area and BOM cost compared with larger MCUs while keeping useful peripheral access.
- Multiple power modes ?? supports aggressive standby to extend battery life in intermittently active applications.
Typical Applications
- Battery-powered sensor nodes that require low active current and multiple sleep modes for long life between charges or replacements.
- Simple industrial controllers that need deterministic timing, compact packaging, and reliable operation across commercial temperature ranges.
- Human-machine interfaces where a small MCU must handle buttons, LEDs, and low-speed serial interfaces with minimal board space.
- Portable measurement instruments that need a low-power MCU to manage ADC front-ends, time stamping, and data logging efficiently.
MSP430G2513IPW28 Advantages vs Typical Alternatives
The device offers a clear advantage in low-power efficiency versus many 8-bit alternatives, thanks to a 16-bit core that can complete tasks with fewer cycles. Its 28-pin PW package is smaller and often less costly than larger packages used by higher-pin-count MCUs. For designs where supply voltage flexibility and standby life are critical, this unit provides multiple low-power modes and a broad 1.8?C3.6 V operating window. Overall, it balances integration and minimal footprint to reduce board area, BOM complexity, and system power draw.
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MSP430G2513IPW28 Brand Info
The MSP430G2513IPW28 is produced by Texas Instruments, a global semiconductor manufacturer with a long history in microcontroller and analog solutions. TI??s MSP430 family is known for ultra-low-power operation and a wide ecosystem of development tools and application notes tailored to embedded, industrial, and portable designs.
FAQ
What is the core architecture?
The device uses a 16-bit RISC core designed for efficient control tasks and compact code density. This architecture reduces cycle counts for common operations compared with many 8-bit MCUs.
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Which supply voltages are supported?
It supports a wide supply range suitable for single-cell battery systems. Refer to the official datasheet for absolute limits and recommended operating conditions when designing power rails.
Is this part suitable for battery-powered designs?
Yes. The architecture and multiple low-power modes make it suitable for battery-operated products where low active and standby currents are essential to extend service life.
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What package does it use?
The part is supplied in a 28-pin PW package. This compact package helps save PCB area while retaining access to essential peripherals and I/O pins for typical embedded applications.
Where can I get development resources?
Development tools, reference designs, and datasheets are available through the manufacturer??s resources and authorized distributors. Check the official product pages and support documentation for code examples and hardware reference circuits.



