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HomeProductsIntegrated Circuits (ICs)Specialized ICsMSP430F2416TPNR
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MSP430F2416TPNR - Texas Instruments

Manufacturer Part Number
MSP430F2416TPNR
Manufacturer
Texas Instruments
Allelco Part Number
41D-MSP430F2416TPNR
Warranty
1 Year Allelco Warranty - Find out more
Stock Status:
15,270 pcs available, New & Original
Parts Description
LQFP-80
Data sheet
-
Category
Integrated Circuits (ICs) > Specialized ICs
RoHs Status
Our certification
In stock: 15270

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Quantity

Specifications

MSP430F2416TPNR Tech Specifications
Texas Instruments - MSP430F2416TPNR technical specifications, attributes, parameters and parts with similar specifications to Texas Instruments - MSP430F2416TPNR

Product Attribute Attribute Value
Part Number MSP430F2416TPNR
Package LQFP-80
Description LQFP-80
Stock Condition Get 15270 pcs available quantity at Allelco
Payment PayPal / TT / Credit Card / Western Union
Allelco Certifications ESD / ISO 9001 / ISO 13485 / ISO 28000
Product Attribute Attribute Value
Manufacturer Texas Instruments
RoHs Status -
Warranty 100% Perfect Functions
Transport port Hong Kong
Shipping by DHL / FedEx / UPS / TNT / SF Express
RFQ Email info@allelco.com

Parts Introduction

Manufacturer Part Number

MSP430F2416TPNR

Manufacturer

Texas Instruments

Introduction

The MSP430F2416 is a 16-bit ultra-low-power microcontroller from Texas Instruments, featuring a powerful MSP430 CPU core, a rich set of peripherals, and extensive on-chip memory. It is designed for a wide range of embedded applications that require low power consumption, high performance, and flexible I/O capabilities.

Product Features and Performance

16-bit MSP430 CPU core running at up to 16MHz

92KB of Flash program memory and 4KB of RAM

Integrated peripherals including I2C, IrDA, LIN bus, SCI, SPI, and UART/USART

Brown-out detection, DMA, POR, PWM, and watchdog timer

64 I/O pins for flexible connectivity

8-channel, 12-bit analog-to-digital converter (ADC)

Internal oscillator for reduced system cost and complexity

Product Advantages

Extremely low power consumption, ideal for battery-powered applications

Robust peripheral set for a wide range of embedded control and monitoring applications

Flexible I/O options for easy system integration

Scalable performance and memory options within the MSP430F2xx series

Key Reasons to Choose This Product

Proven MSP430 architecture with excellent energy efficiency

Comprehensive on-chip peripherals for versatile system design

Extensive development ecosystem and tools support from Texas Instruments

Cost-effective solution for cost-sensitive embedded applications

Quality and Safety Features

Industrial temperature range support (-40°C to 105°C)

Robust design for reliable operation in harsh environments

Compliance with relevant industry standards and regulations

Compatibility

Compatible with other MSP430F2xx series microcontrollers for easy migration and scalability

Application Areas

Portable and battery-powered devices

Industrial automation and control systems

Metering and monitoring applications

Healthcare and medical equipment

Home and building automation

Product Lifecycle

The MSP430F2416 is an active product in the Texas Instruments portfolio. There are several equivalent or alternative models available within the MSP430F2xx series, such as the MSP430F2412, MSP430F2413, and MSP430F2418. Customers are advised to contact our website's sales team for more information on the availability and suitability of these alternative options.

Frequently Asked Questions(FAQ)

How does the MSP430F2416TPNR compare to other 16-bit microcontrollers in terms of power efficiency and peripheral integration for battery-powered applications?
The MSP430F2416TPNR is optimized for ultra-low-power operation, typical active current consumption at 16MHz is under 1mA when running from main memory. Its integrated peripherals—including a 12-bit ADC with eight channels, multiple USART interfaces supporting UART, SPI, SCI, LINbus, I2C, and IrDA—reduce external component count compared to discrete solutions. When paired with its 1.8V to 3.6V operating range and support for low-voltage brown-out detection, the device offers a favorable balance between processing performance and energy efficiency, making it suitable for long-life sensor nodes or portable instrumentation.
What are the key differences in program memory configuration between the MSP430F2416TPNR and similar MSP430F2xx family variants?
Unlike some MSP430F2xx devices that offer 64KB or 128KB of flash, the MSP430F2416TPNR provides 92KB (92K x 8 + 256B) of non-volatile program storage, which includes an additional 256 bytes dedicated to information memory for calibration data, security settings, or system configuration. This larger flash capacity allows for more complex firmware implementations while maintaining compatibility with the MSP430F2xx instruction set architecture. The combination of 92KB flash and 4KB RAM gives designers sufficient code space for advanced control algorithms without requiring external memory components.
Can the MSP430F2416TPNR be used in automotive-grade temperature environments, and what design precautions should be taken?
The MSP430F2416TPNR operates reliably from -40°C to +105°C, meeting industrial temperature requirements but not the full AEC-Q100 automotive qualification. For applications requiring automotive certification, additional validation may be necessary. Designers should consider derating clock speed near temperature extremes, ensuring stable power supply regulation, and verifying oscillator stability across the full temperature range. The internal oscillator remains accurate within ±1% over temperature when calibrated using factory-programmed trim values, which are stored in the 256-byte information block.
How many digital input/output pins does the MSP430F2416TPNR support, and how are they allocated among functional blocks?
The MSP430F2416TPNR features 64 general-purpose I/O lines distributed across its 80-pin LQFP package. These are organized into port vectors including P1–P7, with each port offering up to 8 bits. Several pins serve dual functions such as PWM outputs, comparator inputs, or ADC channels, depending on configuration. Careful pin planning is required when implementing high-speed communication protocols like SPI or UART, as certain pins have fixed assignments for clock, data, or interrupt signals. The device supports wake-up from low-power modes via any I/O pin, enhancing flexibility in power-sensitive designs.
What is the significance of the 256-byte information memory block included in the MSP430F2416TPNR’s flash architecture?
The 256-byte information memory segment is reserved for system-level data such as device calibration constants, unique ID values, fuse settings, or bootloader configurations. It resides in a separate address space from user code and is protected by hardware write-locking mechanisms. This separation ensures that critical parameters remain intact even if the main flash region undergoes corruption or reprogramming. During manufacturing, Texas Instruments programs factory calibration data into this region, enabling accurate analog-to-digital conversion and oscillator trimming without external components.
How does the MSP430F2416TPNR handle real-time communication protocols like LINbus or IrDA, and what hardware resources are consumed?
The MSP430F2416TPNR implements LINbus and IrDA functionality through dedicated USART modules configured in asynchronous mode with automatic baud rate detection and framing support. Each protocol shares the same physical UART interface but uses software or hardware multiplexing to avoid conflicts. LINbus requires precise timing tolerance (±2%), which the internal DCO can maintain with proper calibration. IrDA operates at reduced speeds up to 115.2 kbps and uses pulse-width modulation for infrared signal generation. These features enable robust point-to-point communication while preserving CPU cycles for application logic.
What are the recommended layout considerations when mounting the MSP430F2416TPNR on a PCB for optimal noise immunity?
Due to its mixed-signal capabilities—including an 8-channel 12-bit ADC—the MSP430F2416TPNR benefits from careful analog and digital partitioning on the PCB. Ground planes should be solid beneath the IC, with analog return paths isolated from noisy digital currents. Power rails must include bulk capacitance (e.g., 10 µF tantalum) near VCC and decoupling capacitors (0.1 µF ceramic) placed within 5 mm of each power pin. Clock traces should be kept short and shielded if routed adjacent to sensitive analog inputs. Thermal vias under the exposed pad improve heat dissipation and electrical grounding, especially during sustained high-speed operation.
In what scenarios would the MSP430F2416TPNR outperform an ARM Cortex-M0+ based microcontroller despite lower raw processing power?
The MSP430F2416TPNR excels in ultra-low-power embedded systems where duty cycling dominates total energy budget. For example, in wireless sensor networks powered by coin-cell batteries, the MSP430’s ability to wake from LPM3 (less than 1 µA) in microseconds enables years of operation between replacements. While an ARM Cortex-M0+ may offer higher peak throughput, its static leakage current and wake-up latency make it less efficient for intermittent tasks. Additionally, the MSP430’s integrated peripherals reduce board complexity, lowering cost and increasing reliability—critical factors in mass-market consumer electronics or industrial monitoring devices.
How does the MSP430F2416TPNR support DMA transfers, and what impact does this have on CPU utilization in data-intensive applications?
The MSP430F2416TPNR includes a DMA controller capable of offloading memory transactions from the CPU16 core. For instance, during ADC conversions, the DMA can automatically transfer sampled data to RAM without CPU intervention, reducing interrupt frequency and freeing cycles for algorithm execution. This is particularly beneficial in continuous sampling applications such as motor feedback loops or environmental sensing arrays. However, unlike more advanced MCUs, the MSP430 DMA has limited channel count and lacks scatter-gather capabilities, so complex multi-source streaming may still require CPU coordination.
What programming and debugging tools are officially supported for the MSP430F2416TPNR, and what development workflow do they enable?
Texas Instruments provides the Code Composer Studio (CCS) IDE and the MSP-FET debugger/programmer as primary tools for the MSP430F2416TPNR. CCS integrates C/C++ compilation, real-time variable monitoring, and flash programming via JTAG or Spy-Bi-Wire (SBW). The MSP-FET supports in-circuit debugging and flash reprogramming without removing the device, streamlining iterative development. Additionally, the MSP430Ware software library offers pre-tested driver routines for common peripherals, accelerating firmware portability across MSP430F2xx family members.
How does the MSP430F2416TPNR manage voltage supervision and reset sequencing during power-up or brownout events?
The MSP430F2416TPNR incorporates a built-in Power-On Reset (POR), Brown-Out Detect (BOD), and watchdog timer (WDT). The BOD monitors VCC and triggers a reset if voltage drops below approximately 1.8V–2.7V, depending on configuration. Users can select BOD levels via software to match application needs. On power-up, the WDT is initially enabled in watchdog mode, requiring periodic clearing to prevent unintended resets. Proper initialization sequences must disable the WDT early in startup code to avoid masking legitimate faults.
What packaging options are available for the MSP430F2416TPNR, and how does the Tape & Reel (TR) format affect automated assembly?
The MSP430F2416TPNR is offered in standard 80-LQFP (12x12 mm) surface-mount package with a 0.5mm pitch. The Tape & Reel (TR) variant facilitates automated pick-and-place manufacturing by presenting parts in continuous carrier tape conforming to EIA-481 standards. Components are oriented correctly with cover tape sealing pockets, ensuring reliable feeding through reflow ovens. This packaging is ideal for high-volume production runs and aligns with RoHS3 compliance and MSL 3 handling guidelines, allowing up to 168 hours of exposure before mandatory baking.

Customer Reviews

Evaluation: 10 Articles

  • Nath***rooks
    Jun 11, 2026

    Installed this power component in a converter board. Output remained stable under different load conditions and thermal performance was better than expected.

  • Dani***alkerTech
    Jun 1, 2026

    Product works, but setup took more effort than expected. Once configured the MCU ran reliably, although documentation support felt older compared with newer platforms. Fine for maintenance projects.

  • Yuki***aka88
    May 26, 2026

    信号通信プロジェクトでこのRS-485トランシーバーを使用しました。設置は簡単で、長距離ケーブルでも通信は安定していました。消費電力も、以前使用していたものより低くなっています。

  • Stev***aker
    May 20, 2026

    Solid diode for power rectification. Works well in switching circuits.

  • Bran***Lewis
    May 11, 2026

    Compact FPGA with good performance. Suitable for basic signal processing tasks.

  • Oliv***arris
    May 7, 2026

    Reliable I/O expander. Works well in embedded control applications.

  • Jess***Jones
    Apr 17, 2026

    It offers good value for the price, and the specifications match the description. I’ve been using it for two days with no issues, and I’ll definitely buy it again if I need it in the future.

  • Mich***Smith
    Apr 17, 2026

    Shipping was on time, the component pins are neatly aligned, and I tested 10 of them with a multimeter—all readings were within the specified range. Highly recommended.

  • Aman***arris
    Apr 3, 2026

    It was great—the entire process, from placing the order to receiving the package, went very smoothly. The components were consistent, the price was fair, and I had a very pleasant shopping experience.

  • Mike***nch
    Apr 3, 2026

    Better than expected! The resistance and capacitance readings were spot-on, and it passed the test on the first try. The service was reliable, and the packaging was thoughtful—I highly recommend it.

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Shipment

Delivery Time

In-stock items can be shipped within 24 hours. Some parts will be arranged for delivery within 1-2 days from the date all items arrive at our warehouse. And Allelco ships order once a day at about 17:00, except Sunday. Once the goods are shipped, the estimated delivery time depends on the shipping methods and Delivery destination. The table below shows are the logistic time for some common countries.

Delivery Cost

  1. Use your express account for shipment if you have one.
  2. Use our account for the shipment. Refer to the table below for the approximate charges.
(Different time frame / countries / package size has different price.)

Delivery Method

  1. Global Common Shipment by DHL / UPS / FedEx / TNT / EMS / SF we support.
  2. Others more shipping ways, please get in touch with your customer manager.

Common Countries Logistic Time Reference
Region Country Logistic Time(Day)
America United States 5
Brazil 7
Europe Germany 5
United Kingdom 4
Italy 5
Oceania Australia 6
New Zealand 5
Asia India 4
Japan 4
Middle East Israel 6
DHL & FedEx Shipment Charges Reference
Shipment charges(KG) Reference DHL(USD$)
0.00kg-1.00kg USD$30.00 - USD$60.00
1.00kg-2.00kg USD$40.00 - USD$80.00
2.00kg-3.00kg USD$50.00 - USD$100.00
Note:
The above table is for reference only. There may have some data bias for the uncontrollable factors.
Contact us if you have any questions.
  • QC (Quality Warranty)
  • Payment Support
  • Packaging
  • Certifications & Memberships

QC (Quality Warranty)

Allelco is committed to exceeding customer expectations through customer service excellence, order accuracy, and on-time delivery.
This is achieved through our commitment to the continual improvement of our processes, services, and products.


Strict quality inspection builds a solid foundation for electronic component quality.
  1. Visual inspection
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Packaging

Electrostatic Discharge Protection and Handling

All electrostatic-sensitive components are handled in accordance with electrostatic discharge control procedures. The products are hermetically sealed in anti-static safe packaging to prevent electrostatic damage. Appropriate labeling is also applied for identification and traceability. This ensures product integrity during storage, handling and transportation.


ESD

Certifications & Memberships

Third-party certified, strict quality control. Our certification
  • ISO 9001: 2015
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  • ISO 14001: 2015
  • ISO 28000: 2007
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  • IPC
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Texas Instruments

MSP430F2416TPNR

Texas Instruments
41D-MSP430F2416TPNR

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