TI AM5729 Powered BeagleBone-AI Comes with TI C66x DSP and EVE Cores

BeagleBone-AI

Launched in 2013, BeagleBone Black is still one of the most popular hobbyist board thanks to its many I/Os, software support, and affordable price with being the cheapest board around those days. But it looks like we’ll soon have a new version that allows to experiment with artificial intelligence workloads. BeagleBone-AI is powered by Texas Instruments AM5729 SoC equipped with TI C66x digital-signal-processor (DSP) cores and embedded-vision-engine (EVE) cores supported through a TIDL (Texas Instruments Deep Learning) machine learning OpenCL API. BeagleBone-AI preliminary specifications: SoC – TI AM5729 dual core Cortex-A15 processor featuring 4 PRUs, Dual core C66x DSP, and 4 EVEs System Memory – 1GB RAM Storage – 16GB on-board eMMC flash with high-speed interface Networking – Gigabit Ethernet and high-speed WiFi SB – 1x USB type-C for power and superspeed dual-role controller, 1x USB type-A host Expansion – BeagleBone Black (BBB) compatible headers Dimensions – 86.4 x 53.4 […]

Qualcomm Robotics RB3 Development Platform is Powered by Snapdragon 845 SoC

96Boards TurboX 845 SoM

[Update: The board is now known as “Qualcomm Robotics RB3 Development Platform” instead of DragonBoard 845c”, the rest of the article is unchanged] Qualcomm Snapdragon 845 is one of the fastest Arm processors found in consumer devices, and if you ever wanted a development platform with access to various I/Os, you’d have to go with fairly expensive kits (>$1,000) such as Intrinsyc Open-Q 845 HDK. The good news is that there’s now a cheaper Snapdragon 845 development board, compliant with 96Boards CE specifications, thanks to Thundercomm’s Robotics DragonBoard 845c that combines with processor with 4GB RAM, 64GB UFS storage, and the usual 96boards ports and expansion headers. Robotics DragonBoard 845c specifications: SoC – Qualcomm Snapdragon 845 with 8x custom 64-bit ARMv8 CPUs up to 2.8 GHz Adreno 630 GPU  with support for OpenGL ES 3.2 + AEP, DX next, Vulkan 2, OpenCL 2.0 full profile, and RenderScript Hexagon 685 DSP […]

MINIX NEO Z83-4U Review – Part 1: Unboxing and Teardown

MINIX NEO Z83-4U Package

MINIX NEO Z83-4U Ubuntu mini PC was unveiled just a few days ago as the first mini PC from MINIX HK running a Linux operating systems, namely Ubuntu 18.04. The company has sent me a sample for evaluation, so as usual, I’ll first have a look at the hardware in the first part of the review, before reporting my experience with the mini PC in a few weeks. MINIX NEO Z83-4U Unboxing The company has done away with the black and green package for their Android TV boxes and Windows mini PC, and instead went with a purple and (Ubuntu) orange package. I already wrote the specifications in the announcement post, but here they are again on the back of the package. The main difference, in terms of terms, against MINIX NEO Z83-4 Pro (Windows 10 Pro) mini PC is that the storage has been upgraded to 64GB flash since […]

NXP i.MX 8M Nano is a Power-optimized Arm Cortex-A53/M7 Processor

NXP i.MX 8M Nano

NXP introduced their first 14nm i.MX processor at Embedded World 2018 last year with i.MX 8 Mini processor equipped with up to four Cortex A53 cores clocked at 2.0 GHz and one real-time Cortex-M4 cores clocked at 400+ MHz, and optional 1080p video output and decoding/encoding. The company has now added another 14nm member to their i.MX 8M family with NXP i.MX 8M Nano family also featuring four Cortex-A53 cores at up to 1.5 GHz, but replacing the Cortex-M4 by a more powerful Cortex-M7 core clocked at up to 600 MHz. The processor is also power-optimized for less than 2W total dynamic power (TDP) and sub-watt in many IoT edge applications. NXP i.MX 8M Nano key features and specifications: Application cores – One to four Arm Cortex-A53 cores up to 1.5 GHz per core; 32KB L1-I Cache/ 32 KB L1-D Cache; 512 KB L2 Cache Real-time core – Arm Cortex-M7 […]

Octavo Systems Unveils OSD32MP15x STM32MP1 SiP (System-in-Package)

Octavo Systems OSD32MP15X STM32MP1 SiP

STMicro STM32MP1 is one of the most interesting microprocessor recently announced, as it should allow a relatively easy upgrade path for projects based on the traditional STM32 Cortex-M4 microcontrollers, thanks to backward compatibility, and the extra one or two Arm Cortex-A7 cores enabling Linux support. We’ve already seen several upcoming evaluation and development boards based on STM32MP157 processor including STMicro’s own discovery kits and evaluation platform, as well as Arrow Electronics Avenger96 board fitted with a tiny 29x29mm SoM.  But I suspect we could see even more compact designs soon, as Octavo Systems has now unveiled OSD32MP15x system-in-package with STM32MP15x MPU, up to 1GB RAM, 4K EEPROM, STPMIC1 power management IC, two oscillators, and over 100 passive components all brought together into a 18x18mm package. Octavo Systems OSD32MP15x system-in-package main components and specifications: MPU (MicroProcessor Unit) – STMicroelectronics STM32MP15x with Dual Arm Cortex-A7 @ 650MHz, Arm Cortex-M4 real-time core @ […]

Systems-on-Module Market Update – An Interview with Toradex CMO

Daniel Lang Toradex CMO

I’ve been interviewing Daniel Lang, Toradex Chief Marketing Officer (CMO), over email just before Embedded World 2019, to learn a bit more about the system-on-module market, and what’s ahead. CNXSoft: We’ve already covered several Toradex systems-on-module and development kits on CNX Software, but for readers who may not know Toradex yet, could you provide a short description of what the company does in the embedded systems space? Daniel Lang: Thanks for having me. Toradex builds high reliable Arm-based System on Modules. Our focus is to make the life of developers easier and to reduce the complexity and time-to-market. We sell hardware, but most of our engineering resources focus on Software and Support. Our products are used in areas such as Industrial Automation, Medical, Transportation, Test and Measurement, Building Automation and many more. CNXSoft: Could you explain why / what type of customers go the SoM route instead of designing for […]

MINIX NEO Z83-4U Ubuntu 18.04 Mini PC Launched for $180

MINIX NEO Z83-4U Ubuntu Mini PC

Introduced in 2016, MINIX NEO Z83-4 was an Intel Cherry Trail Windows 10 (Home) mini PC powered by Intel Atom x5-Z8300 processor coupled with 4GB RAM and 32GB flash, which was followed by MINIX NEO Z83-4 Pro the next year with basically the same hardware specifications but based on Atom X5-Z8350 processor running Windows 10 Pro instead. The company has now launched another version with MINIX NEO Z83-4U model that comes with 64GB storage, and more importantly comes pre-loaded with Ubuntu 18.04, a rarity in today’s low power mini PC world. MINIX NEO Z83-4U Ubuntu mini PC specifications with bold highlights showing differences against NEO Z83-4 Pro model: SoC – Intel Atom x5-Z8350 “Cherry Trail” quad core processor @ 1.44 GHz / 1.92 GHz (Turbo) with 12 EU Intel Graphics HD graphics 400 @ 200 / 500 MHz (2W SDP) System Memory –  2 or 4GB DDR3L Storage – 64 […]

Renesas RZ/G2 64-Bit MPUs Target Industrial Applications Leveraging SLTS Linux

RZ/G2M 96 Development Kit

Renesas RZ/G1 Cortex-A15/A7 processor series was introduced in 2016 targeting industrial human machine interface, and RZ/G1M was one the the first processors supported by the industrial-grade CIP Super Long-Term Support (SLTS) Linux kernel – as part of Renesas RZ/G Linux Platform – with commitment of over 10 years of support. The company has now launched a 64-bit version of the industrial processors with Renesas RZ/G2 family featuring up to eight Cortex-A53/A57 cores and supported by RZ/G Linux Platform for long term Linux support. Renesas RZ/G2 family is now comprised of four SKUs with the following key features and specifications. RZ/G2 Series RZ/G2E RZ/G2N RZ/G2M RZ/G2H Economical Mid-Range (Pin Compatible) Highest Performance CPU (64-bit ARMv8A) 2x Cortex-A53 @ 1.2GHz L1, L2 Parity/ECC 2x Cortex-A57 @ 1.5GHz L1, L2 Parity/ECC 2x Cortex-A57 @ 1.5GHz 4x Cortex-A53 @ 1.2GHz L1, L2 Parity/ECC 4x Cortex-A57 @ 1.5GHz 4x Cortex-A53 @ 1.2GHz L1, L2 Parity/ECC […]

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