STMicroelectronics STM32WB35CEU6A Dual-Core Wireless MCU, 48-LQFP Package

  • Integrates a dual-core processor enabling efficient wireless communication and application processing.
  • Features advanced RF capabilities supporting reliable long-range connectivity for IoT devices.
  • Compact LQFP64 package reduces board footprint, aiding in space-constrained designs.
  • Ideal for smart home sensors, providing low-latency data transmission and responsive control.
  • Designed with robust quality standards ensuring stable operation in varied environmental conditions.
模拟器件公司 - 徽标
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STM32WB35CEU6A Overview

The STM32WB35CEU6A is a highly integrated dual-core wireless microcontroller designed for advanced industrial and consumer applications. It combines an Arm? Cortex?-M4 core with a Cortex?-M0+ core dedicated to wireless protocol management, enabling robust and power-efficient Bluetooth 5.0 and IEEE 802.15.4 connectivity. With 512 KB of Flash memory and 128 KB of RAM, this device supports complex application processing and secure wireless communications. Its compact 48-pin UFQFPN package optimizes board space, while extensive peripherals and low-power modes make it ideal for battery-operated systems. This MCU is available through 集成电路制造商 and suits next-generation IoT and smart device designs.

STM32WB35CEU6A Technical Specifications

参数规格
核心 1Arm Cortex-M4, 64 MHz
核心 2Arm Cortex-M0+, 32 MHz (Wireless)
闪存512 KB
内存128 KB
无线协议Bluetooth 5.0, IEEE 802.15.4
包装类型48-pin UFQFPN
工作电压1.7 V 至 3.6 V
温度范围-40°C 至 +85°C
安全功能Cryptographic acceleration, True Random Number Generator
通信接口USART, SPI, I2C, USB, ADC

STM32WB35CEU6A Key Features

  • 双核架构 The Cortex-M4 core handles application processing, while the Cortex-M0+ core manages wireless communication, improving system efficiency and responsiveness.
  • Bluetooth 5.0 and IEEE 802.15.4 support: Enables reliable, low-power wireless connectivity for IoT and smart home devices, ensuring compatibility with modern communication standards.
  • Low-power operation: Multiple power modes allow extended battery life critical for portable and remote applications.
  • Robust security features: Integrated cryptographic acceleration and a true random number generator safeguard data integrity and secure communication.

典型应用

  • Wireless sensor networks and industrial automation systems requiring reliable, low-power Bluetooth and 802.15.4 wireless connectivity with integrated processing capabilities.
  • Smart home devices including lighting controls and security systems that benefit from secure, energy-efficient wireless communication.
  • Wearable electronics that demand compact size, extended battery life, and secure Bluetooth connectivity.
  • Medical monitoring equipment where wireless data transmission and low power consumption are critical for device effectiveness and patient safety.

STM32WB35CEU6A Advantages vs Typical Alternatives

This microcontroller stands out with its integrated dual-core design separating application and wireless tasks, enhancing performance and power efficiency. Compared to typical single-core solutions, it offers advanced Bluetooth 5.0 and IEEE 802.15.4 support in a compact package, combined with robust security features, making it a reliable choice for industrial and IoT applications where precision, low power, and secure wireless communication are paramount.

STM32WB35CEU6A Brand Info

The STM32WB35CEU6A is part of the STM32WB series developed by STMicroelectronics, a global leader in semiconductor solutions. STMicroelectronics specializes in high-performance microcontrollers and wireless connectivity modules tailored for IoT, industrial, and consumer applications. The STM32WB family is recognized for integrating dual Arm Cortex cores and advanced wireless stacks, delivering scalable, secure, and energy-efficient platforms that accelerate product development and innovation.

常见问题

What wireless protocols does this microcontroller support?

This device supports Bluetooth 5.0 and IEEE 802.15.4 wireless protocols, enabling it to handle a wide range of low-power wireless communication needs such as mesh networking and standard Bluetooth connections.

How does the dual-core architecture benefit system design?

The dual-core configuration separates application processing on the Cortex-M4 from wireless communication on the Cortex-M0+, improving system responsiveness, reducing latency, and optimizing power consumption for

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