STM32WB15CCU7 Overview
The STM32WB15CCU7 is a highly integrated dual-core wireless microcontroller designed for advanced industrial and IoT applications. Featuring a 32-bit Arm Cortex-M4 core running at up to 64 MHz alongside a Cortex-M0+ core dedicated to Bluetooth 5 and IEEE 802.15.4 wireless protocols, it enables robust processing and efficient wireless communication. With 256 KB of Flash memory and 64 KB of RAM, this device supports complex firmware and real-time operating systems. Its rich peripheral set, low power consumption modes, and advanced security features make it ideal for smart metering, asset tracking, and home automation. This product is offered by IC Manufacturer.
STM32WB15CCU7 Technical Specifications
Parameter | Specification |
---|---|
Core 1 | Arm Cortex-M4, 64 MHz |
Core 2 | Arm Cortex-M0+, Wireless protocol support |
Flash Memory | 256 KB |
RAM | 64 KB |
Wireless Protocols | Bluetooth 5.0, IEEE 802.15.4 |
Operating Voltage | 1.7 V to 3.6 V |
Temperature Range | -40??C to +85??C |
Package | UFBGA73, 7×7 mm |
Security Features | Hardware cryptographic accelerators, Secure firmware installation |
STM32WB15CCU7 Key Features
- Dual-core architecture: Combines a Cortex-M4 for application processing with a Cortex-M0+ dedicated to managing Bluetooth 5 and IEEE 802.15.4, enabling efficient multitasking and optimized wireless operations.
- Advanced wireless connectivity: Supports Bluetooth 5.0 for enhanced range and throughput, plus IEEE 802.15.4 for mesh networking, crucial for low-power and reliable IoT communications.
- Low power consumption: Multiple power-saving modes extend battery life, critical for portable and remote sensor applications.
- Robust security: Includes hardware cryptographic accelerators and secure boot features, ensuring data integrity and protection against unauthorized access.
Typical Applications
- Industrial IoT devices requiring reliable wireless connectivity and secure data transfer, such as smart sensors and asset tracking systems.
- Home automation products including smart lighting and HVAC controls that benefit from Bluetooth mesh networking and low power operation.
- Wearable electronics that demand a compact form factor, energy efficiency, and robust wireless performance.
- Smart metering solutions leveraging the device??s integrated security and dual-core processing for accurate data handling and communication.
STM32WB15CCU7 Advantages vs Typical Alternatives
This device offers a unique combination of dual-core processing and integrated Bluetooth 5 alongside IEEE 802.15.4, providing enhanced wireless versatility over typical single-core microcontrollers. Its low power design and advanced security features ensure reliable operation in demanding industrial environments. The compact UFBGA73 package supports high-density applications, delivering superior integration and performance compared to conventional wireless MCUs.
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STM32WB15CCU7 Brand Info
The STM32WB15CCU7 is part of STMicroelectronics?? STM32WB family, a line of wireless microcontrollers tailored for Internet of Things and industrial applications. Known for innovation in microcontroller technology, STMicroelectronics combines robust processing cores with state-of-the-art wireless connectivity and security. The STM32WB series integrates Bluetooth 5 and IEEE 802.15.4 standards with low power consumption and scalable performance, making it a preferred choice for engineers designing connected devices requiring reliability and flexibility.
FAQ
What wireless protocols does the STM32WB15CCU7 support?
The device supports Bluetooth 5.0, which provides improved range and data throughput, as well as IEEE 802.15.4, enabling mesh networking capabilities. This dual-protocol support allows developers to implement versatile wireless communication solutions in a single device.
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How does the dual-core architecture benefit application development?
The dual-core design separates application processing and wireless protocol management, with the Cortex-M4 handling user applications and the Cortex-M0+ dedicated to radio operations. This separation enhances system efficiency,