ESP32-S31:320MHz 双核 RV32IMAFCP+CLIC,512KB SRAM,千兆以太网,802.11ax,61个GPIO
ESP32-S31: Dual-Core RISC-V SoC with Wi-Fi 6, Bluetooth 5.4, and Advanced HMI

原始链接: https://www.espressif.com/en/news/ESP32_S31_Release

意法半导体发布了ESP32-S31,这是一款专为高级物联网应用设计的强大系统级芯片 (SoC)。这款多功能芯片具有双核Wi-Fi 6 + 蓝牙5.4 + IEEE 802.15.4 + 以太网连接,支持Thread、Zigbee和Matter等协议,可无缝集成到各种物联网生态系统中。 ESP32-S31 具有 320MHz 双核 RISC-V 微控制器,拥有充足的内存(512KB SRAM,可扩展PSRAM)和宽数据路径,可有效处理多媒体和AI/ML任务。它还包括强大的HMI功能,具有摄像头和LCD接口,以及专用的图像处理硬件加速。 安全性是关键重点,具有安全启动、加密和可信执行环境等功能。该芯片由意法半导体的ESP-IDF、ESP-Matter和ESP-GMF框架支持,并与ESP Private Agents和LLMs兼容,用于AI驱动的应用。 ESP32-S31非常适合智能家电、扬声器和工业自动化,为下一代物联网设备提供全面的解决方案。

## ESP32-S31:意法半导体的新RISC-V SoC 意法半导体发布了ESP32-S31,这是一款具有Wi-Fi 6和蓝牙5.4的双核RISC-V SoC。该消息引发了关于意法半导体命名规范的讨论,一些人觉得这些命名令人困惑。 用户们讨论了该芯片的MMU,指出它是一种外围实现,而不是完全集成的,缺乏真正的进程隔离。人们将其与STM32和英特尔类似的命名策略以及即将推出的具有MMU的RISC-V芯片(如Baochip 1x)进行了比较。 对话还涉及了功耗效率、Linux兼容性(受缺乏MMU的限制)以及强大的软件支持的可用性(ESP-IDF受到赞扬)。人们对在关键基础设施中使用国产芯片的安全隐患表示担忧,但反驳观点强调了明确证明后门存在的难度。最后,用户们讨论了使用ESP32芯片与替代方案的成本效益,特别是考虑到它们尽管存在潜在的安全风险,但已被广泛采用。
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原文

Espressif Systems (688018.SH) proudly announces the upcoming release of ESP32-S31, a high-performance dual-core Wi-Fi 6 + Bluetooth 5.4 + IEEE 802.15.4 + Ethernet System-on-Chip (SoC). Building on Espressif's proven track record, this versatile SoC addresses the growing demand for advanced IoT applications including consumer and industrial appliances, smart speakers, voice-controlled devices, and automation systems requiring comprehensive wireless connectivity, edge AI capabilities, rich HMI, and robust security features.

ESP32-S31 delivers comprehensive wireless connectivity by combining Wi-Fi 6 (802.11ax) in 2.4 GHz band, Bluetooth 5.4 with both Bluetooth LE (Low Energy) and Classic (BR/EDR) support, plus an IEEE 802.15.4 radio enabling Thread and Zigbee protocols for diverse IoT applications. ESP32-S31 will provide a seamless support for Matter protocol over Wi-Fi as well as Thread radio. 

Wi-Fi 6 brings enhanced transmission efficiency and reduced power consumption for battery-powered devices. Bluetooth 5.4 adds LE Audio for high-quality wireless audio streaming, direction finding for precise location services, and Bluetooth Mesh 1.1 for scalable device communications, while Classic (BR/EDR) ensures compatibility with legacy audio devices and low-latency, high-throughput applications. 

Also, the integrated 1000 Mbps Ethernet MAC, provides high-bandwidth wired connectivity for IoT applications. 

ESP32-S31 includes a powerful dual-core, 32-bit RISC-V microcontroller running at 320MHz with MMU support, 60 GPIO pins, providing exceptional processing performance and design flexibility. One core features a wide 128-bit data path with SIMD instructions, enabling fast parallel processing. The SoC offers ample memory resources including 512 KB SRAM and support for high-speed 250 MHz 8-bit DDR PSRAM with concurrent flash and PSRAM access. Multiple dedicated SPI interfaces (up to Octal SPIallow for flexible external memory expansion and together with the wide SIMD data path, make ESP32-S31 ideal for memory-intensive multimedia and AI/ML workloads at the edge. 

 

The ESP32-S31 provides comprehensive human-machine interface capabilities with a DVP camera interface (8 to 16-bit), versatile LCD support (8 to 24-bit parallel display) with hardware color space conversion, and up to 14 capacitive touch sensing channels. Dedicated hardware accelerators including JPEG codec, 2D graphics acceleration using PPA, and 2D-DMA enable efficient image processing and display updates. 

ESP32-S31 delivers versatile audio capabilities with Bluetooth 5.4 LE Audio enabling high-quality, low-power streaming and Bluetooth Classic (BR/EDR) ensuring broad compatibility. Dual I2S controllers with hardware-level Bluetooth audio synchronization provide precise timing and minimal latency, eliminating software-based synchronization complexity. 

The ESP32-S31 prioritizes comprehensive security with robust hardware-based protection mechanisms designed to meet stringent industry requirements. It incorporates secure key management using RAM-based PUF (Physically Unclonable Functions), secure boot, flash and PSRAM encryption, digital signature peripheral, cryptographic hardware acceleration, and protections against side-channel attacks and power glitch manipulation. A Trusted Execution Environment (TEE) with Access Permission Management (APM) enables software isolation for secure multi-application deployment. 

ESP32-S31 includes a rich set of peripherals including USB OTG (high speed), TWAI (CAN 2.0 compatible), Ethernet MAC (1000Mbps), along with standard interfaces such as I2C, I2S, SPI, UART, LED PWM, ADC, SDIO, Timers, and DMA. 

ESP32-S31 will be supported through Espressif's open-source IoT Development Framework ESP-IDF, ESP-Matter (for Matter devices) and ESP-GMF (for multimedia applications)ESP32-S31 will also be usable as a connectivity co-processor with its support in ESP-Hosted and ESP-AT frameworks. ESP32-S31 will also work with ESP Private Agents platform as well as directly with common LLMs to build client devices that run or interact with AI agents to create voice-enabled and intelligent applications.   

The ESP32-S31's comprehensive feature set makes it ideal for smart appliances, smart speakers, voice-controlled devices, smart home hubs, industrial automation systems, and multimedia IoT applications requiring advanced connectivity and processing capabilities.

If you are interested in the ESP32-S31 series of SoCs, you can contact Espressif's customer support team to request samples or receive further assistance—they will respond as quickly as possible. 

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