MSP430F2013TPWR 16-bit Low-Power Microcontroller MCU, TSSOP

  • Ultra-low-power microcontroller core extends battery life in portable designs.
  • 16-bit CPU performance balances code density and deterministic control tasks.
  • Small footprint saves board space; ideal for compact, low-power assemblies.
  • MSP430F2013TPWR streamlines sensor-node telemetry, reducing sleep current and response times.
  • Production-tested silicon and vendor support ensure robust operation in field.
SKU: MSP430F2013TPWR Category: Brand:
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MSP430F2013TPWR Overview

The MSP430F2013TPWR is an ultra-low-power, 16?bit microcontroller in a 20?pin TSSOP package. It combines a compact instruction set CPU with integrated timing and analog peripherals for simple control tasks and battery?powered designs. Typical strengths include low active and standby currents, a small flash and RAM footprint suited to cost?sensitive systems, and a package for automated assembly. See full parts and ordering information at IC Manufacturer.

MSP430F2013TPWR Technical Specifications

Core16?bit RISC CPU
Package20?pin TSSOP (TPWR)
Operating voltage1.8 V to 3.6 V
CPU clockUp to 16 MHz (DCO calibrated)
Flash memory2 KB on?chip
RAM128 bytes on?chip
ADC10?bit successive approximation ADC
Timers16?bit Timer_A (capture/compare)
I/OUp to 16 general?purpose I/O pins
Temperature range?40 ??C to +85 ??C
Low?power modesMultiple LPM states for standby and stop
Reset and watchdogOn?chip watchdog and POR

MSP430F2013TPWR Key Features

  • One core 16?bit RISC CPU that delivers compact code density and efficient integer math for control algorithms.
  • On?chip ADC (10?bit) for direct sensor interfacing, reducing external parts and board area.
  • Low?power modes that cut current draw in standby and extend battery life for portable and remote devices.
  • Integrated Timer_A with capture/compare to enable precise PWM and event timing without external timers.

Typical Applications

  • Battery?powered metering and sensing nodes where sub?milliamp standby and compact flash/RAM reduce BOM and extend run time.
  • Portable handheld controllers that need a small 20?pin footprint, low quiescent current, and on?chip ADC for user inputs and sensors.
  • Industrial status monitors that require simple timed control, reliable watchdog reset, and operation across standard industrial temperatures.
  • Consumer devices with simple user interfaces, light or motor control, and low system cost enabled by integrated timers and ADC.

MSP430F2013TPWR Advantages vs Typical Alternatives

The device favors minimal BOM and low energy use versus larger microcontrollers. With a 16?bit core and on?chip ADC and timer, it reduces the need for external analog or timing ICs. Compared to higher?pin or higher?memory alternatives, it offers cost and board?space savings while keeping essential peripherals. The TSSOP?20 (TPWR) package supports automated assembly, making it a practical choice for moderate?volume production and tight mechanical envelopes.

MSP430F2013TPWR Brand Info

The MSP430F2013TPWR is a member of the MSP430 family from Texas Instruments. The MSP430 line emphasizes ultra?low power operation and wide adoption in embedded control. Texas Instruments provides design resources, tools, and application notes to simplify integration and firmware development for this class of microcontrollers.

FAQ

What package does it use?

The device is supplied in a 20?pin TSSOP package indicated by the TPWR suffix. This package is suitable for automated soldering and small board layouts, while keeping thermal performance and pin accessibility for typical control signals.

What voltage range is supported?

It operates from 1.8 V up to 3.6 V, enabling direct connection to common single?cell lithium and regulated 3.3 V supplies. Designers should follow recommended decoupling and reset circuitry per the manufacturer guidelines.

Does it have an ADC?

Yes. The device includes an on?chip 10?bit ADC suitable for analog sensor inputs and basic measurement tasks. On?chip conversion reduces the need for external ADC parts in many low?cost applications.

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How many I/O pins are available?

There are up to 16 general?purpose I/O pins exposed from the 20?pin package. Pins can be used for digital control, timing signals, and ADC inputs depending on the selected pin function mapping.

Is it suitable for battery operation?

Yes. The microcontroller supports multiple low?power modes and low active currents that make it appropriate for battery?powered and energy?harvesting applications where long standby life is essential.

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