MSP430G2413IN20 Overview
The MSP430G2413IN20 is a low-power, 16?bit microcontroller in a 20?pin PDIP package optimized for simple embedded control tasks. It combines a compact set of analog and digital peripherals with a low?voltage operating range and multiple low?power modes for battery?sensitive applications. The device is suited for cost?sensitive designs that need a small footprint, basic ADC and timer functions, and reliable GPIO control. For sourcing and additional technical resources, visit IC Manufacturer.
MSP430G2413IN20 Technical Specifications
| Core | 16?bit RISC CPU |
| Package | 20?pin PDIP (IN20) |
| Operating voltage | 1.8 V to 3.6 V |
| Maximum clock | up to 16 MHz |
| Program memory (Flash) | 2 KB |
| RAM | 256 B |
| ADC | 10?bit ADC (single ADC module) |
| Timers | 16?bit Timer_A with capture/compare |
| Serial interface | USI (universal serial interface) |
| GPIO | Up to 16 general?purpose I/O pins |
| Operating temperature | ?40 ??C to +85 ??C |
| Supply current | Low?power standby and active modes (??A to mA class) |
MSP430G2413IN20 Key Features
- Single 16?bit CPU core that delivers efficient control and simple code portability across MSP430 designs.
- Integrated 10?bit ADC for direct sensor interfacing, reducing external component count and system cost.
- Multiple low?power modes that maximize battery life in portable or energy?harvesting applications.
- 16?bit Timer_A with capture/compare for precise timing, PWM generation, and event measurement.
- Universal Serial Interface (USI) enabling simple UART/SPI/I2C?style communications with minimal firmware overhead.
- 20?pin PDIP package that simplifies prototyping and replacement in legacy socketed designs.
Typical Applications
- Low?power sensor nodes and environmental monitors that need compact control, ADC sampling, and long battery life in a small PDIP footprint.
- Handheld measurement tools and portable instrumentation where simple UI, ADC conversion, and timer functions are required without high system cost.
- Industrial control interfaces and relay controllers that use GPIO, timer events, and serial links to manage discrete I/O and basic telemetry.
- Consumer appliances and fitness devices needing a low?power MCU for button handling, simple display driving, and occasional ADC reads.
MSP430G2413IN20 Advantages vs Typical Alternatives
The device stands out for low?power operation and a 16?bit CPU that offers more compact code than 8?bit controllers. Compared with larger MCUs, it requires fewer external components thanks to its on?chip ADC and timer, which helps reduce BOM cost and board area. The PDIP 20 package provides easier prototyping and field replacement versus surface?mount only parts. Overall, it balances minimal resource needs with reliable peripheral integration for many control and sensing tasks.
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MSP430G2413IN20 Brand Info
The MSP430G2413IN20 is produced by Texas Instruments, a long?established semiconductor manufacturer. TI??s MSP430 family focuses on ultra?low?power microcontrollers for embedded control. This part follows the MSP430 design emphasis on energy efficiency, simple peripherals, and wide ecosystem support including development tools and reference designs.
FAQ
What is the voltage range?
The device operates from 1.8 V to 3.6 V. This range supports common single?cell lithium and standard low?voltage supply rails found in battery powered designs and embedded systems.
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How many GPIO pins are available?
Up to 16 general?purpose I/O pins are exposed in the 20?pin package. These pins can be configured for digital I/O, peripheral functions, and event capture depending on the application needs.
Does it include an ADC?
Yes, the microcontroller includes a 10?bit ADC module suitable for basic analog sensor measurement, enabling direct interfacing to thermistors, light sensors, and other moderate?resolution inputs.
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What communications are supported?
Serial communications are provided via a USI module which can implement UART?like, SPI?like, or simple I2C?like interfaces in software and firmware, enabling flexible peripheral connectivity.
Is this device suitable for low?power designs?
Yes. It features several low?power modes and a design focused on minimizing active and standby currents, making it well suited for battery?operated and energy?sensitive applications where every microampere matters.



