MSP430F2013TN Overview
The MSP430F2013TN is an ultra?low?power, 16?bit microcontroller designed for simple control and sensing tasks. It combines a compact instruction set with several on?chip peripherals to reduce board count and energy use. The device supports low operating voltages and multiple low?power modes to extend battery life in portable systems. Engineers and sourcing teams can compare its balance of minimal memory footprint, basic timers and analog support to find the right fit for cost?sensitive embedded designs. Learn more via IC Manufacturer.
MSP430F2013TN Technical Specifications
| CPU | 16?bit RISC core |
| Maximum clock | Up to 16 MHz |
| Operating voltage | 1.8 V to 3.6 V |
| Flash memory | 2 KB |
| RAM | 128 bytes |
| ADC | 10?bit ADC available |
| Timers | 16?bit Timer_A |
| I/O package | 14?pin DIP (TN) |
| Temperature range | -40 ??C to +85 ??C |
| Low?power modes | Multiple LPMs for ultra?low current draw |
MSP430F2013TN Key Features
- 16?bit core ?? delivers higher data throughput than 8?bit alternatives for control loops and arithmetic.
- Low operating voltage ?? supports 1.8?C3.6 V systems, enabling direct battery operation and fewer power rails.
- Integrated ADC ?? on?chip 10?bit conversion simplifies sensor interfaces and reduces external component count.
- Small flash and RAM ?? 2 KB flash and 128 B RAM allow compact firmware for cost?sensitive designs.
- 16?bit timer ?? hardware timer provides precise timing and PWM without heavy CPU intervention.
- Multiple low?power modes ?? extend battery life for portable and remote applications compared with higher?power MCUs.
- Through?hole TN package ?? easier prototyping and hand soldering versus fine?pitch surface?mount parts.
Typical Applications
- Battery?powered sensor modules where low quiescent current and a small code footprint extend service life and reduce BOM cost for simple acquisition tasks.
- Simple handheld instruments that require precise timing and analog inputs while keeping component count and power consumption to a minimum for longer battery runtime.
- Industrial controls with basic I/O and analog monitoring where rugged temperature range and through?hole mounting simplify replacement and maintenance.
- Appliance user interfaces and motor control endpoints that benefit from a 16?bit timer and modest program memory for control algorithms and debouncing.
MSP430F2013TN Advantages vs Typical Alternatives
The device combines a 16?bit core and on?chip analog and timer resources in a very small flash and RAM profile. Compared with many 8?bit MCUs, it offers more arithmetic headroom and native 16?bit operations while keeping power lower than larger 32?bit parts. Its 1.8?C3.6 V range and multiple low?power modes make it better suited for battery?powered and energy?sensitive applications. The TN through?hole package simplifies prototyping and field service when compared to fine?pitch surface?mount alternatives.
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MSP430F2013TN Brand Info
The MSP430F2013TN is part of Texas Instruments’ MSP430 family of ultra?low?power microcontrollers. TI positions these devices for energy?efficient embedded systems where low active and standby currents are critical. The family emphasizes simple architectures, integrated analog peripherals, and broad ecosystem support for tools and development.
FAQ
What package does it use?
The device is offered in a through?hole TN package suitable for prototyping and simple PCBs. This package makes hand soldering and socketing easier than fine?pitch surface?mount alternatives.
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What voltage range is supported?
It operates from 1.8 V up to 3.6 V, enabling direct connection to single?cell lithium or multiple alkaline configurations without additional regulators in many designs.
How much program memory is available?
The microcontroller provides 2 KB of on?chip flash memory for application code. This size is suitable for compact firmware, simple control loops and basic peripherals handling.
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Does it have an analog input?
Yes, the device includes a 10?bit analog?to?digital converter on?chip. This reduces the need for external ADC devices when reading sensors and simplifies board layout.
Is it suitable for low?temperature environments?
Rated for industrial operation from -40 ??C to +85 ??C, the part is appropriate for many outdoor and industrial deployments that demand reliable operation across wide temperature swings.



