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MSP430F2012IPW

In Stock 27685 pcs Reference Price(In US Dollars)
1+
$1.2538
Manufacturer Part Number:
MSP430F2012IPW
Manufacturer / Brand
Texas Instruments
Part of Description:
IC MCU 16BIT 2KB FLASH 14TSSOP
Datasheets:
MSP430F2012IPW(1).pdfMSP430F2012IPW(2).pdfMSP430F2012IPW(3).pdfMSP430F2012IPW(4).pdf
Lead Free Status / RoHS Status:
ROHS3 Compliant
Stock Condition:
New original, 27685 pcs Stock Available.
ECAD Model:
Ship From:
Hong Kong
Shipment Way:
DHL/Fedex/TNT/UPS

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Part Number MSP430F2012IPW
Manufacturer / Brand Texas Instruments
Stock Quantity 27685 pcs Stock
Category Integrated Circuits (ICs) > Embedded - Microcontrollers
Description IC MCU 16BIT 2KB FLASH 14TSSOP
Lead Free Status / RoHS Status: ROHS3 Compliant
RFQ MSP430F2012IPW Datasheets MSP430F2012IPW Details PDF
MSP430F2012IPW Details PDF for FR.pdf
MSP430F2012IPW Details PDF for KR.pdf
MSP430F2012IPW Details PDF for DE.pdf
MSP430F2012IPW Details PDF for IT.pdf
MSP430F2012IPW Details PDF for ES.pdf
Voltage - Supply (Vcc/Vdd) 1.8V ~ 3.6V
Supplier Device Package 14-TSSOP
Speed 16MHz
Series MSP430F2xx
RAM Size 128 x 8
Program Memory Type FLASH
Program Memory Size 2KB (2K x 8 + 256B)
Peripherals Brown-out Detect/Reset, POR, PWM, WDT
Package / Case 14-TSSOP (0.173", 4.40mm Width)
Package Tube
Oscillator Type Internal
Operating Temperature -40°C ~ 85°C (TA)
Number of I/O 10
Mounting Type Surface Mount
EEPROM Size -
Data Converters A/D 8x10b
Core Size 16-Bit
Core Processor MSP430 CPU16
Connectivity I²C, SPI
Base Product Number MSP430F2012

Packaging & ESD

Industry-standard static shielding packaging is used for electronic components.Anti-static, light-transparent materials allow easy identification of ICs and PCB assemblies.
The packaging structure provides electrostatic protection based on Faraday cage principles.This helps protect sensitive components from static discharge during handling and transportation.


All products are packed in ESD-safe anti-static packaging. Outer packaging labels include part number, brand, and quantity for clear identification. Goods are inspected prior to shipment to ensure proper condition and authenticity.

ESD protection is maintained throughout packing, handling, and global transportation. Secure packaging provides reliable sealing and resistance during transit. Additional cushioning materials are applied when required to protect sensitive components.

QC(Part Testing by IC Components)Quality Warranty

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Shipment charges: (Reference DHL and FedEX)
Weight(KG): 0.00kg-1.00kg Price(USD$) : USD$60.00
Weight(KG): 1.00kg-2.00kg Price(USD$) : USD$80.00
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MSP430F2012IPW Product Details:

The MSP430F2012IPW is a sophisticated 16-bit microcontroller from Texas Instruments' MSP430F2xx series, designed to address the growing demand for ultra-low-power embedded applications while maintaining robust functionality. This integrated circuit represents a comprehensive solution for battery-powered and energy-sensitive applications where extended operational life is critical.

This microcontroller operates on the MSP430 CPU16 core architecture, running at speeds up to 16MHz with an internal oscillator, eliminating the need for external timing components and reducing overall system complexity. The device incorporates 2KB of flash program memory organized as 2K x 8 plus an additional 256 bytes, providing ample space for application code storage, while 128 x 8 bytes of RAM ensures sufficient working memory for data processing and temporary storage operations.

The MSP430F2012IPW addresses several key design challenges in modern embedded systems, particularly power consumption optimization, space constraints, and integration complexity. Its ultra-low-power architecture enables applications to operate for extended periods on battery power, while the compact 14-TSSOP surface-mount package measuring 0.173 inches (4.40mm) in width makes it ideal for space-constrained designs. The wide operating voltage range of 1.8V to 3.6V provides flexibility in power supply design and compatibility with various battery configurations.

Key peripheral integration includes brown-out detection and reset functionality, power-on reset (POR), pulse-width modulation (PWM) capabilities, and a watchdog timer (WDT) for system reliability. The device features an 8-channel, 10-bit analog-to-digital converter, enabling direct interface with analog sensors and signals without requiring external conversion circuitry. Ten general-purpose I/O pins provide sufficient connectivity for most applications, while integrated SPI and I²C communication interfaces facilitate connection to external devices and sensors.

The microcontroller's primary advantages include exceptional power efficiency, integrated analog capabilities, robust peripheral set, and simplified system design through reduced external component requirements. The internal oscillator eliminates crystal requirements, while the comprehensive peripheral integration reduces bill-of-materials costs and board space requirements. The wide operating temperature range of -40°C to 85°C ensures reliable operation in harsh environmental conditions.

This device finds extensive application in portable medical devices, wireless sensor networks, smart meters, home automation systems, industrial monitoring equipment, battery-powered measurement instruments, and IoT edge devices. Its combination of low power consumption, analog capabilities, and communication interfaces makes it particularly suitable for remote sensing applications and battery-operated systems requiring long operational life.

The MSP430F2012IPW is RoHS3 compliant, ensuring environmental compliance for commercial applications. The device is available in tube packaging with quantities of 2700 units, making it suitable for both prototyping and volume production requirements.

Equivalent and alternative models include the MSP430F2013IPW offering additional memory and peripherals, the MSP430F2011IPW providing a more compact solution with reduced I/O count, and the MSP430G2553 from the Value Line series offering similar functionality at a lower cost point. Other alternatives include the STM32L0 series from STMicroelectronics, particularly the STM32L011F4 and STM32L031F6, which provide ARM Cortex-M0+ architecture with comparable power consumption characteristics. Microchip's PIC16LF series, including the PIC16LF1823 and PIC16LF1503, offer similar 8-bit alternatives with low-power operation. For applications requiring more processing power, the MSP430FR2xx FRAM-based series provides non-volatile memory advantages, while the CC430 series combines MSP430 functionality with integrated wireless transceivers for RF applications.

MSP430F2012IPW Key Technical Attributes

Manufacturer Part Number: MSP430F2012IPW

Main Category: Integrated Circuits (ICs)

Embedded Microcontroller, 16-bit MCU, 2KB Flash, 14-TSSOP package

MSP430F2012IPW Packing Size

The MSP430F2012IPW is packaged in a 14-TSSOP (Thin Shrink Small Outline Package) with a width of 0.173" (4.40mm). This surface-mount IC comes in tubes and adopts a compact form, making it ideal for high-density PCB assemblies. The package supports 10 I/O pins and is well-suited for automated manufacturing environments. Its thermal characteristics are optimized for reliable operation between -40°C and +85°C, ensuring stable electrical performance. The device’s pin configuration is industry-standard for MSP430 series microcontrollers, providing compatibility and ease of use.

MSP430F2012IPW Application

The MSP430F2012IPW microcontroller is widely adopted in industrial automation, portable measurement equipment, digital sensors, embedded control systems, and battery-powered devices. Its low-power architecture and on-chip analog integration make it particularly suitable for power-critical and miniature applications, such as utility meters, medical instrumentation, and portable data loggers.

MSP430F2012IPW Features

This device includes a powerful MSP430 16-bit CPU, running at frequencies up to 16MHz for high-speed embedded processing. It incorporates 2KB of FLASH program memory (2k x 8 + 256B) for firmware storage, along with 128 x 8 SRAM for runtime data operations. The MCU integrates advanced peripherals such as an 8-channel 10-bit ADC, internal oscillator, and enhanced serial communication modules supporting I2C and SPI protocols. Brown-out detect/reset (BOR), power-on reset (POR), pulse-width modulation (PWM), and watchdog timer (WDT) functionalities are all embedded for robust system protection and performance. Its voltage operating range from 1.8V to 3.6V facilitates low-power consumption, making it especially suitable for battery-operated systems. The chip supports up to 10 general-purpose I/O pins, maximizing flexibility for designers. The presence of an internal oscillator ensures accurate timing while reducing the need for external components, contributing to a smaller application footprint.

MSP430F2012IPW Quality and Safety Features

The MSP430F2012IPW is compliant with RoHS3 standards, guaranteeing the absence of hazardous substances and supporting green electronics initiatives. Integrated brown-out and power-on reset ensure safe boot and operation, protecting the system from voltage drops and unexpected restarts. Robust watchdog timer support safeguards operations from firmware failures, adding a further layer of operational security.

MSP430F2012IPW Compatibility

This microcontroller is fully supported within Texas Instruments' MSP430F2xx series ecosystem, providing seamless compatibility with TI’s development tools, software stacks, and reference designs. The 14-TSSOP pinout is industry-standard, allowing for drop-in replacement in compatible sockets or PCBs, and ensuring interoperability with legacy and current embedded designs.

MSP430F2012IPW Datasheet PDF

For the most thorough and authoritative technical reference, our website hosts the official datasheet for the MSP430F2012IPW. Customers are encouraged to download the datasheet directly from this page to get complete details on programming, electrical characteristics, and application guidelines.

Quality Distributor

IC-Components proudly stands as a premium distributor for Luminary Micro/Texas Instruments products. As a trusted and authorized source, we deliver only quality-assured, authentic components from the original manufacturer. For competitive quotes, reliable sourcing, and instant stock verification, we invite customers to request a quote for the MSP430F2012IPW directly on our website today—your efficient partner in electronic component supply!

Frequently Asked Questions

What are the key considerations for selecting the MSP430F2012IPW microcontroller in a low-power sensor application?
When designing a low-power sensor system, ensure that the MSP430F2012IPW’s ultra-low-power modes, 16MHz processing speed, and internal oscillator are compatible with your power budget. Utilize its brown-out reset and WDT features to enhance reliability, and verify that its 1.8V to 3.6V supply voltage range aligns with your power supply design. The 2KB Flash and 128-byte RAM should also meet your memory requirements for firmware and data buffering.
How does the 14-TSSOP package impact the PCB layout and thermal considerations for the MSP430F2012IPW?
The 14-TSSOP package (0.173", 4.40mm width) offers a compact footprint suitable for space-constrained designs. For optimal thermal management and reliable operation, ensure proper creepage and clearance in the PCB layout, and consider the TSSOP’s thermal dissipation characteristics, especially in industrial environments with elevated temperatures up to 85°C.
Can the MSP430F2012IPW operate reliably across the full -40°C to 85°C temperature range in industrial applications?
Yes, the MSP430F2012IPW is specified to operate within -40°C to 85°C, making it suitable for industrial environments. However, ensure that your design includes proper temperature management, such as adequate PCB layout, airflow, and possibly conformal coating, to preserve long-term reliability in these conditions.
Is the internal oscillator sufficient for timing requirements in precision embedded control applications using the MSP430F2012IPW?
The internal oscillator provides a stable clock up to 16MHz, suitable for many control tasks. For applications requiring high timing precision or synchronization, consider implementing an external crystal or clock source, but for general purposes, the internal oscillator typically suffices.
What should I consider when replacing the MSP430F2012IPW with a different microcontroller in an existing design?
When replacing the MSP430F2012IPW, evaluate differences in package size, pin configuration, voltage requirements (1.8V–3.6V), peripheral sets, and clock architecture. Compatibility of I/O voltage levels, available peripherals, and power consumption profiles are critical factors. Additionally, verify if the new device offers similar or better reliability and whether firmware migration is straightforward.
How suitable is the MSP430F2012IPW for battery-powered applications requiring extended operation?
The MSP430F2012IPW's ultra-low-power modes, combined with a 16MHz core and small memory footprint, make it well-suited for battery-powered devices. Optimize firmware to leverage sleep modes, and ensure the supply voltage remains within the 1.8V to 3.6V range to maximize battery life.
Are there any specific design constraints related to the SPI connectivity of the MSP430F2012IPW?
The MSP430F2012IPW features an SPI interface, but confirm the maximum frequency your external SPI devices can handle and match voltage levels. During PCB design, implement proper signal integrity measures, such as impedance-controlled traces and decoupling capacitors, to ensure reliable data exchange.
What are the risks of using the MSP430F2012IPW in a high-reliability industrial environment?
Although RoHS3 compliance ensures environmental standards, consider factors such as humidity, temperature fluctuations, and mechanical stress. Use appropriate PCB coatings, proper grounding, and filtering to mitigate risks like signal noise and electrostatic discharge. Also, verify the device’s supply voltage and power handling capabilities for your scenario.
How does the 2KB Flash memory of the MSP430F2012IPW influence firmware update strategies in field deployments?
The 2KB FLASH limits the size of firmware; plan your code size carefully. For over-the-air or field updates, ensure that the firmware upgrade process includes validation and failsafe mechanisms to prevent bricking the device. Use external memory expansion if additional space is necessary.
Can the MSP430F2012IPW’s 10 I/O pins support my sensor and actuator interfacing needs?
With 10 general-purpose I/O pins, the MSP430F2012IPW can support multiple sensors and actuators, but ensure your interface requires do not exceed this count. Prioritize I/O pin assignments during design, and consider multiplexing or external expanders if additional I/O is needed for your application.
What are the advantages and limitations of using the MSP430F2012IPW’s internal ADCs for precise analog measurements?
The internal 8-channel, 10-bit ADCs provide sufficient resolution for many sensor measurements and simplify design. However, for applications requiring higher accuracy or faster sampling, external ADCs might be necessary. Proper analog smoothing and PCB layout practices are essential to minimize noise and achieve reliable readings.
How can I ensure long-term operation and stability of the MSP430F2012IPW in harsh industrial conditions?
Beyond meeting temperature specifications, implement robust power supply filtering, adequate decoupling, and protection against voltage transients. Regular calibration and using firmware watchdog timers can help maintain operational integrity over the device’s lifespan.
Is it possible to extend the functionality of the MSP430F2012IPW by adding external peripherals, and what are the considerations?
Yes, the device supports SPI and other standard interfaces. When adding peripherals, verify compatibility of voltage levels, ensure proper cable routing, and account for potential signal integrity issues. You may also need external level shifters for devices operating at different voltages.
How should I approach firmware development and debugging for the MSP430F2012IPW?
Use supported development tools such as MSP430 IDE and debugging interfaces that support the MSP430 CPU16 core. Consider implementing trace and breakpoints, and develop modular code to facilitate troubleshooting within the 2KB Flash memory constraints.
For cost-sensitive designs, how does the MSP430F2012IPW compare with other microcontrollers with similar features?
The MSP430F2012IPW offers competitive pricing due to its small package and integrated features, suitable for low-power, cost-sensitive embedded applications. When comparing alternatives, consider total system cost, power consumption, peripheral features, and ease of migration to ensure the best fit for your application.

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