Texas Instruments MSP430FR2433IRGER: Ultra Düşük Güçlü MCU, 20 Pinli VQFN Paketi

The MSP430FR2433IRGER??s 16 – bit RISC core delivers efficient processing, cutting power use for battery – dependent devices.
16KB FRAM enables fast, low – energy data storage, critical for real – time apps needing frequent updates.
20 – pin VQFN package (4x4mm) saves board space, ideal for compact industrial sensors and wearables.
In IoT nodes, its 0.6??A standby current extends battery life by 35% vs. flash – based MCUs, reducing maintenance.
Backed by TI??s MSP430Ware?, speeding up development with pre – built libraries and tools.

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MSP430FR2433IRGER: Texas Instruments?? FRAM – Powered Microcontroller for Energy – Efficient Designs

Bu MSP430FR2433IRGER is a standout in Texas Instruments?? (TI) MSP430? FRAM microcontroller family, engineered for ultra – low – power performance in energy – constrained applications. With a 16 – bit RISC CPU and ferroelectric random – access memory (FRAM), it blends processing power, flexibility, and efficiency. From industrial sensors to portable medical devices, this MCU empowers engineers to build longer – lasting, space – saving systems. Explore more TI semiconductors at IC Üreticisi.

Technical Specifications of MSP430FR2433IRGER

Category Details
CPU & Clock 16 – bit RISC core, up to 16MHz operating frequency
Hafıza 16KB FRAM (non – volatile), 1KB SRAM
Güç Tüketimi Active mode: 150??A/MHz; Standby mode (with RTC): 0.6??A
Paket 20 – pin VQFN (4x4mm), very thin quad flat no – lead
Peripherals Operating Range
1x 16 – bit timer, 1x UART, 1x SPI, 1x I2C Temperature: -40??C to 85??C
10 – bit ADC (8 channels) Supply voltage: 1.8V to 3.6V

Advantages of MSP430FR2433IRGER Over Alternatives

Compared to traditional flash – based MCUs, the MSP430FR2433IRGER offers key benefits. Its FRAM technology allows 100x faster write speeds than flash, using 90% less power during data storage??vital for applications like environmental sensors that log data frequently.

Its ultra – low standby current (0.6??A) outperforms most 8 – bit and 16 – bit competitors, extending battery life in portable devices by months. The 4x4mm VQFN package also reduces board space by up to 40% versus larger packages, a boon for miniaturized designs like smart wearables.

TI??s robust support??including Code Composer Studio? IDE and reference designs??simplifies integration, cutting development time by weeks.

Typical Applications of MSP430FR2433IRGER

Endüstriyel Otomasyon

In factory sensor nodes monitoring pressure or temperature, its low power and 16 – bit processing enable continuous data collection without frequent battery swaps, reducing downtime.

Nesnelerin İnterneti (IoT)

Perfect for smart home devices (e.g., humidity sensors), its compact size and efficient power use allow seamless integration into small enclosures, with long – lasting operation.

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Tıbbi Cihazlar

In portable health monitors (e.g., blood glucose meters), the MSP430FR2433IRGER??s low power consumption and reliable data storage ensure accurate readings with minimal recharging.

Sıkça Sorulan Sorular (SSS)

How does FRAM in the MSP430FR2433IRGER improve performance?

FRAM combines non – volatility (retains data without power) with RAM – like speed, enabling fast, low – energy data writes. This is crucial for applications needing frequent updates, such as real – time industrial monitors, where delays or high power use would harm performance.

What makes the 20 – pin VQFN package beneficial for design?

The 4x4mm VQFN package has a small footprint and excellent thermal conductivity, making it ideal for space – constrained designs. Its no – lead design simplifies PCB assembly, reducing manufacturing costs while improving reliability in vibration – prone environments like factories.

Can the MSP430FR2433IRGER operate in harsh temperatures?

Yes, it functions reliably from -40??C to 85??C, suitable for industrial and outdoor applications. This wide range ensures consistent performance in cold warehouses or hot manufacturing floors.

Which development tools work with this MCU?

It??s fully compatible with TI??s Code Composer Studio? IDE, MSP430Ware? software library, and the MSP – EXP430FR2433 launchpad. These tools provide code examples, debuggers, and simulators to speed up prototyping.

Is this MCU suitable for battery – powered devices?

Absolutely. With 0.6??A standby current and 150??A/MHz active mode, it minimizes power draw. In battery – powered IoT sensors, this translates to 6?C12 months of operation on a single coin cell, reducing maintenance costs.

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