STM32WB06CCF7TR Overview
The STM32WB06CCF7TR is a high-performance dual-core wireless microcontroller designed for robust connectivity and low-power applications. It integrates a 32-bit Arm? Cortex?-M0+ core dedicated to network protocol processing alongside a Cortex-M4 core optimized for user application tasks. This device supports multiple wireless standards including Bluetooth 5.0 and IEEE 802.15.4, making it ideal for IoT and smart device development. With embedded Flash and RAM, comprehensive security features, and flexible power management, it enables efficient design integration in compact and energy-sensitive industrial applications. Available through IC Manufacturer, it is engineered to accelerate time-to-market with reliable performance.
STM32WB06CCF7TR Technical Specifications
| Parameter | Specification |
|---|---|
| Core 1 | Arm Cortex-M4, up to 64 MHz |
| Core 2 | Arm Cortex-M0+, 32 MHz |
| Flash Memory | 192 KB embedded |
| RAM | 64 KB SRAM |
| Wireless Protocols | Bluetooth 5.0, IEEE 802.15.4 |
| Operating Voltage | 1.7 V to 3.6 V |
| Package | 7 x 7 mm, 48-pin WLCSP |
| Operating Temperature | -40??C to +85??C |
| Security Features | Secure boot, AES-128 encryption |
| Power Consumption | Down to 2.5 ??A in Stop mode |
STM32WB06CCF7TR Key Features
- Dual-core architecture: Separates wireless stack processing from application tasks, improving performance and reducing latency for real-time applications.
- Multi-protocol wireless support: Enables Bluetooth 5.0 and IEEE 802.15.4 connectivity for versatile IoT device integration and extended communication options.
- Low power consumption: Advanced power management modes allow ultra-low power operation, extending battery life in portable and wearable devices.
- Enhanced security: Provides hardware-accelerated cryptographic functions and secure boot to protect against unauthorized access and firmware tampering.
Typical Applications
- Wireless sensor networks requiring robust and reliable data transmission with low power consumption in industrial automation systems.
- Smart home devices leveraging Bluetooth and IEEE 802.15.4 protocols for seamless inter-device communication and remote control.
- Wearable health monitors benefiting from low power consumption and integrated security for safe, continuous operation.
- Asset tracking and management solutions utilizing multi-protocol wireless capabilities for real-time location data and status monitoring.
STM32WB06CCF7TR Advantages vs Typical Alternatives
This microcontroller offers significant advantages including a dedicated dual-core design that improves system efficiency by offloading protocol processing, reducing latency, and increasing throughput. Its comprehensive wireless protocol support enhances device interoperability. With integrated security features and ultra-low power modes, it outperforms many alternatives by combining reliability, energy efficiency, and robust connectivity in a compact package optimized for demanding industrial and IoT environments.
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STM32WB06CCF7TR Brand Info
The STM32WB06CCF7TR is part of the STM32WB series from STMicroelectronics, a leading global semiconductor company specializing in microcontrollers and wireless solutions. STMicroelectronics is recognized for delivering high-quality embedded processing and connectivity products tailored for IoT, industrial, and consumer applications. The STM32WB family is engineered to simplify wireless product development by integrating advanced dual-core architectures with secure connectivity options, backed by extensive software ecosystem support and development tools.
FAQ
What wireless protocols are supported by this microcontroller?
The device supports Bluetooth 5.0 and IEEE 802.15.4 wireless protocols, enabling it to communicate in a variety of IoT and wireless sensor network applications. This multi-protocol capability provides flexibility for developers targeting different wireless standards.
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How does the dual-core architecture benefit application performance?
The dual-core architecture separates the wireless stack processing on the Cortex-M0+ core from the main application running on the Cortex-M4 core. This division reduces processing delays and enhances overall system






