STM32WBA62PGI6 Overview
The STM32WBA62PGI6 is a high-performance dual-core microcontroller integrating an Arm? Cortex?-M33 core for application processing and a Cortex-M0+ core dedicated to network processing, optimized for advanced wireless connectivity. Designed specifically for industrial and consumer IoT applications, it combines ultra-low power consumption with robust security features and extensive peripheral support. This device supports Bluetooth 5.2 and IEEE 802.15.4 standards, enabling reliable wireless communication in complex environments. Engineered for seamless integration and scalability, it offers a flexible memory architecture and advanced analog peripherals, making it ideal for a wide range of connected embedded systems. Available through IC Manufacturer, this microcontroller delivers comprehensive solutions for next-generation wireless applications.
STM32WBA62PGI6 Technical Specifications
| Parameter | Specification |
|---|---|
| Core Architecture | Dual-core: Arm Cortex-M33 (64 MHz) + Cortex-M0+ (32 MHz) |
| Flash Memory | 512 KB |
| RAM | 128 KB SRAM |
| Wireless Protocols | Bluetooth 5.2 Low Energy, IEEE 802.15.4 |
| Operating Voltage | 1.7 V to 3.6 V |
| Package Type | LQFP-64 (10 x 10 mm) |
| Communication Interfaces | UART, SPI, I2C, USB 2.0 FS, CAN |
| Security Features | TrustZone, AES-128 accelerator, True Random Number Generator |
| Timers and ADC | Multiple timers, 12-bit ADC, Comparators |
| Temperature Range | -40 ??C to +85 ??C |
STM32WBA62PGI6 Key Features
- Dual-core architecture: Separates application and network processing, enhancing overall system efficiency and responsiveness by offloading wireless stack tasks to the Cortex-M0+ core.
- Advanced wireless connectivity: Supports Bluetooth 5.2 and IEEE 802.15.4, enabling versatile and reliable low-power communication for IoT and industrial networks.
- Robust security mechanisms: Hardware-based TrustZone, AES encryption, and a true random number generator ensure secure data handling and protect against cyber threats.
- Low power consumption: Optimized for battery-powered applications with flexible power modes, enabling extended operational life in wireless sensor networks and portable devices.
Typical Applications
- Industrial IoT devices requiring secure wireless communication and real-time data processing in harsh environments.
- Smart home and building automation systems leveraging Bluetooth and IEEE 802.15.4 wireless protocols.
- Wearable electronics and health monitoring devices benefiting from ultra-low power consumption and integrated security.
- Asset tracking and sensor networks needing reliable connectivity with minimal maintenance.
STM32WBA62PGI6 Advantages vs Typical Alternatives
This microcontroller stands out by integrating dual-core processing tailored for wireless and application tasks, providing superior power efficiency and system responsiveness compared to single-core alternatives. Its comprehensive security features and support for both Bluetooth 5.2 and IEEE 802.15.4 protocols offer enhanced connectivity and protection, making it a reliable choice for complex IoT designs. Additionally, the flexible memory and peripheral set facilitate seamless integration, reducing development time and cost.
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STM32WBA62PGI6 Brand Info
Manufactured by STMicroelectronics, a global leader in semiconductor solutions, this device belongs to the STM32 wireless family known for innovation in low-power microcontrollers with integrated connectivity. STMicroelectronics provides extensive ecosystem support including development tools, software stacks, and reference designs to accelerate product development. The STM32WBA series reflects the company??s commitment to delivering advanced wireless solutions that meet stringent industrial and consumer application requirements.
FAQ
What wireless standards does the STM32WBA62PGI6 support?
This device supports Bluetooth 5.2 Low Energy and IEEE 802.15.4 protocols, enabling it to handle a wide range of wireless communication needs including mesh networking and low-power sensor connectivity.
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How does the dual-core architecture benefit system design?
The dual-core design






