MKW36A512VFT4R Bluetooth 5.0 MCU Microcontroller in QFN48 Package

  • This microcontroller enables efficient processing for embedded systems, enhancing overall device performance and responsiveness.
  • Equipped with ample memory capacity, it supports complex applications and data handling with improved speed and stability.
  • The compact LGA package reduces board space, facilitating integration into small or densely packed electronic designs.
  • Ideal for IoT devices requiring low power consumption and reliable wireless communication in various environments.
  • Manufactured to meet stringent quality standards, ensuring consistent operation and long-term reliability in critical applications.
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MKW36A512VFT4R Overview

The MKW36A512VFT4R is a highly integrated wireless microcontroller designed for advanced IoT and industrial applications. Featuring a 32-bit ARM Cortex-M0+ core, it offers efficient processing combined with robust Bluetooth 5.0 Low Energy connectivity. This device supports a rich set of peripherals and flexible memory options, enabling developers to build reliable, low-power wireless systems. Its compact 48-pin package makes it suitable for space-constrained designs. Engineers and sourcing specialists will appreciate the balance of performance, power efficiency, and seamless RF integration provided by this solution from IC Manufacturer.

MKW36A512VFT4R Technical Specifications

Parameter Specification
Core ARM Cortex-M0+ 32-bit
Operating Frequency Up to 48 MHz
Flash Memory 512 KB
RAM 128 KB SRAM
Wireless Connectivity Bluetooth 5.0 Low Energy
Operating Voltage 1.7 V to 3.6 V
Package 48-pin LQFP
Temperature Range -40??C to +85??C
Interfaces UART, SPI, I2C, ADC, DAC
Low Power Modes Multiple low-power modes including sleep and deep sleep

MKW36A512VFT4R Key Features

  • ARM Cortex-M0+ core: Delivers efficient 32-bit processing performance with low power consumption, enabling responsive and energy-efficient applications.
  • Bluetooth 5.0 Low Energy support: Ensures reliable wireless connectivity with extended range and higher data throughput, critical for modern IoT ecosystems.
  • 512 KB Flash and 128 KB SRAM: Provides ample memory for complex applications and firmware updates without compromising system responsiveness.
  • Comprehensive peripheral set: Includes UART, SPI, I2C, ADC, and DAC interfaces for versatile sensor integration and communication options.
  • Wide operating voltage range: Supports flexible power supply designs from 1.7 V to 3.6 V, optimizing battery life in portable devices.
  • Multiple low-power modes: Enables extended operation in battery-powered applications by minimizing energy consumption during idle periods.
  • Compact 48-pin LQFP package: Facilitates integration into space-constrained designs without sacrificing functionality.

MKW36A512VFT4R Advantages vs Typical Alternatives

This device stands out by combining a high-performance ARM Cortex-M0+ core with integrated Bluetooth 5.0 Low Energy in a single compact package. Its extended memory and flexible peripheral set offer superior integration compared to typical microcontrollers lacking wireless capabilities. The wide voltage range and advanced low-power modes provide enhanced energy efficiency, making it ideal for battery-operated industrial and IoT applications requiring reliable connectivity and optimized power consumption.

Typical Applications

  • Industrial wireless sensor networks: Provides secure and low-power Bluetooth connectivity for real-time data acquisition and control in harsh environments, enabling predictive maintenance and automation.
  • Wearable health and fitness devices: Supports compact designs with long battery life and reliable wireless communication for continuous monitoring and data transfer.
  • Smart home automation: Enables seamless integration of sensors and actuators with Bluetooth Low Energy connectivity for responsive control and monitoring.
  • Asset tracking systems: Facilitates real-time location and status monitoring through efficient wireless communication and low energy consumption.

MKW36A512VFT4R Brand Info

Manufactured by a leading semiconductor company specializing in embedded processing and wireless connectivity solutions, this product exemplifies the company??s commitment to delivering high-performance, energy-efficient microcontrollers for industrial and IoT markets. The device benefits from extensive ecosystem support, including development tools, software stacks, and technical resources, enabling rapid prototyping and deployment in wireless applications.

FAQ

What wireless protocols are supported by this microcontroller?

The device supports Bluetooth 5.0 Low Energy, providing advanced features such as extended range, higher throughput, and improved coexistence with other wireless technologies. This makes it suitable for modern IoT devices requiring reliable and efficient wireless communication.

What are the power consumption characteristics of this microcontroller?

It includes multiple low-power modes designed to minimize energy usage during idle or sleep states. The flexible operating voltage range from 1.7 V to 3.6 V also allows optimization of power consumption for battery-operated applications, extending operational life significantly.

What types of interfaces does it provide for sensor integration?

The microcontroller offers a variety of communication interfaces including UART, SPI, and I2C, along with analog peripherals such as ADC and DAC. This versatility supports integration with a wide range of sensors and external components for diverse application needs.

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Is the device suitable for industrial temperature ranges?

Yes, it supports operation between -40??C and +85??C, making it suitable for many industrial and outdoor applications where environmental conditions can be demanding and temperature variations are common.

What development resources are available for this product?

Extensive software development kits, example projects, and hardware evaluation boards are provided by the manufacturer. These resources facilitate rapid design cycles, debugging, and deployment, reducing time-to-market for new wireless embedded solutions.

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