GENE-ADP6 – An 3.5-inch SBC with Intel 12th Gen Alder Lake-P processor, DDR5 RAM

AAEON GENE-ADP6 is a 3.5-inch SBC equipped with a choice of Intel 12th Gen Alder Lake-P (and Alder Lake-U) processors and the first from the company to support DDR5 memory, of which up to 64GB can be installed through two SO-DIMM sockets. The single board computer also supports SATA and NVMe storage, up to two 8K displays (and up to four independent displays), 2.5GbE networking, USB 3.2 ports, four RS232/RS422/RS485 interfaces, and further expansion through three M.2 sockets for wireless connectivity (WiFi, 5Gm, 4G LTE…) as well as the already mentioned NVMe SSD storage. GENE-ADP6 SBC specifications: Intel Alder Lake-P SoC (one or the other) Core i7-1270PE 12-core/16-thread processor @ 3.30GHz / 4.50GHz (Turbo) with 96EU Intel Xe graphics – PBP: 28W, up to 64W MTP Core i7-1265UE 10-core/12-thread processor @ 3.50GHz / 4.70GHz (Turbo) with 96EU Intel Xe graphics – PBP: 15W, up 55W MTP Core i5-1250PE 12-core/16-thread processor […]

Banana Pi BPI-R3 WiFi 6 router board features MediaTek Filogic 830/MT7986 SoC

I first noticed the MediaTek MT7986 WiFi router processor in Linux 5.17 changelog. MT7986 is the codename for MediaTek Filogic 830 quad-core Cortex-A53 processor designed for Wi-Fi 6/6E routers with up to 6 Gbps bandwidth, and two 2.5Gbps Ethernet interfaces. Banana Pi BPI-R3 is a router board based on Filogic 830/MT7986A that offers an upgrade to the company’s Banana Pi BPI-R2 board powered by a MediaTek MT7623A quad-core Cortex-A7 processor or even the Banana Pi BPI-R64 board based on a MediaTek MT7622 dual-core Arm Cortex-A53 SoC. Banana Pi BPI-R3 specifications: SoC – MediaTek MT7986A (Filogic 830) quad-core Arm Cortex A53 processor with hardware acceleration engines for Wi-Fi offloading and networking System Memory – 2GB DDR RAM Storage – 8GB eMMC flash, MicroSD card socket, support for M.2 NVMe SSD Networking 2x 2.5GbE SFP cages, 5x Gigabit Ethernet ports (1x WAN + 4x LAN) via MT7531AE 7-port switch WiFi 6 4×4 […]

Khadas Edge2 Arm mini PC

MangoPi MQ Quad SBC – Allwinner H616 meets Raspberry Pi Zero W form factor

MangoPi MQ Quad is an Allwinner H616 quad-core Arm Cortex-A53 SBC following Raspberry Pi Zero W form factor, and the company’s earlier MangoPi MQ Pro RISC-V SBC featuring the Allwinner D1 processor. The MangoPi MQ Quad also comes with 1GB RAM, a mini HDMI output, two USB Type-C ports, WiFI 4 and Bluetooth connectivity, a microSD card, as well a 40-pin Raspberry Pi-compatible GPIO header and an FPC connector with USB, Ethernet, and more GPIOs for expansion. MangoPi MQ Quad specifications: SoC – Allwinner H616 quad-core Cortex-A53 @ 1.5GHz with Mali-G31 MP2 GPU with OpenGL 3.2, Vulkan 1.1, OpenCL 2.0 API support System Memory – 1GB DDR3L Storage – MicroSD card slot, a footprint for SPI flash (on the bottom of the board) Video Output – Mini HDMI 2.0 port up to 4Kp60 Connectivity – 802.11 b/g/n WiFi 4 and Bluetooth 4.2 via RTL8723DS; ceramic and u.FL antennas included USB […]

WiCAN ESP32-C3 CAN Bus platform is available in USB-CAN and OBD-II form factors (Crowdfunding)

WiCAN is an ESP32-C3 CAN bus adapter that works over USB, Wi-Fi, and Bluetooth LE, and designed for car hacking and general CAN bus development. The device is available in USB-CAN and OBD-II form factors and comes with firmware that works with RealDash to create nice-looking dashboards with the data. RealDash can be installed on Android, iOS, and Windows 10 operating systems. WiCAN specifications: Wireless module – ESP32-C3-MINI-1 with ESP32-C3 RISC-V microcontroller with 2.4GHz WiFI 4 and Bluetooth 5.0 connectivity, 4 MB flash, PCB antenna CAN 2.0 A/B interface up to 1 Mbps Host interface WiCAN-OBD – OBD-II connector WiCAN-USB – Mini USB port for USB-to-UART up to 6 Mbps Power Supply WiCAN-ODB – 7.5V to 16V (Vbat) WiCAN-USB – 7.5V to 36V via screw-terminal connector Power Consumption – <= 1 mA in battery-saving mode The CAN Bus adapter also supports firmware updates over WiFi, and can be used either […]

TinyMaix is a lightweight machine learning library for microcontrollers

Sipeed TinyMaix open-source machine learning library is designed for microcontrollers, and lightweight enough to run on a Microchip ATmega328 MCU found in the Arduino UNO board and its many clones. Developed during a weekend hackathon, the core code of TinyMax is about 400 lines long, with a binary size of about 3KB, and low RAM usage, enabling it to run the MNIST handwritten digit classification on an ATmega320 MCU with just 2KB SRAM and 32KB flash. TinyMax highlights Small footprint Core code is less than 400 lines (tm_layers.c+tm_model.c+arch_O0.h), code .text section less than 3KB Low RAM consumption, with the MNIST classification running on less than 1KB RAM Support INT8/FP32 model, convert from keras h5 or tflite. Support multi-architecture acceleration: ARM SIMD/NEON, MVEI, RV32P, RV64V (32-bit & 64-bit RISC-V vector extensions) User-friendly interfaces, just load/run models Supports full static memory config MaixHub Online Model Training support coming soon Sipeed says there […]

Renesas RZ/A3UL Cortex-A55 CPU runs RTOS for HMI with quick startup times

Renesas RZ/A3UL is a single-core Cortex-A55 processor clocked at up to 1 GHz designed to run FreeRTOS or Azure RTOS on high-definition (1280×800) HMI solutions requiring quick startup times such as industrial equipment, home appliances, office automation equipment, audio equipment, and POS terminals. The new RZ/A3UL processor family has the same peripheral functions and package pin assignments as the RZ/G2UL (Arm Cortex-A55/M33) and RZ/Five (RISC-V) families targeting Linux-based HMI applications. Renesas also designed a SMARC 2.1 compliant System-on-Module (SoM) based on the Renesas RZ/A3UL microprocessor to speed up time to market. Renesas RS/A3UL specifications: CPU – Single-core Arm Cortex-A55 processor @ up to 1.0 GHz with 32KB I-cache with parity, 32KB D-cache with ECC, 256KB L3 cache with ECC Internal Memory – 128KB SRAM with ECC Memory & Storage I/F 16-bit DDR4-1600 or DDR3L-1333 memory interfaces with in-line ECC; up to 4GB RAM Octal Peripheral Interface (OPI) for flash or […]

Intel Arc Graphics Technology

Golioth ESP-IDF SDK connects ESP32 boards to the Golioth Cloud

Golioth have released an open-source “ESP-IDF SDK” to let ESP32 hardware connect to their Golioth Cloud, extending existing support from the existing Zephyr SDK. We previously covered the Golioth IoT development platform with a Zephyr SDK supporting nRF9160 and ESP32-C3 (officially), as well as over 100 other platforms, that aims to make it easier for hardware developers to connect things to the internet without needing to know how to use AWS IoT, Azure IoT, or the other cloud services. While in theory, it would be possible to keep using the Zephyr SDK on ESP32 hardware, the ESP-IDF framework is the main tool of Espressif Systems, and they will release new code to that ecosystem first. So even though Espressif Systems have another team that is bringing many of the same features to Zephyr, the changes will be implemented in the ESP-ID framework first. The Golioth ESP-IDF SDK will be able […]

OSM Size M SiP Integrates STM32MP1 MPU for industrial & IoT applications

ARIES Embedded MSMP1 OSM-compatible system-in-package (SiP) based on STM32MP1 CortexA7/M4 microcontroller for Industrial and IoT applications follows the company’s MSRZG2UL and MSRZFive OSM-compatible SiPs with Renesas Arm or RISC-V microprocessor introduced a few months ago. But instead of coming in the ultra-compact 30×30 mm OSM Size S form factor, the new MSMP1 complies with the larger 45x30mm OSM Size M form factor with a total of 476 contacts to allow for more I/Os. The SiP also integrates 512 MB to 4 GB DDR3L RAM, and 4 to 64 GB eMMC flash. MSMP1 SIP specifications: SoC – STMicro STM32MP1 single or dual-core Arm Cortex-A7 processor up to 800MHz, with Arm Cortex-M4 real-time core up to 209MHz, Vivante GPU compatible with OpenGL ES 2.0 System Memory – 512MB – 4GB DDR3L RAM Storage – 4GB – 64GB eMMC NAND Flash 476-contact LGA with Networking – Gigabit Ethernet USB – USB 2.0 Host/OTG […]

Khadas VIM4 SBC