IP and SDK accelerate on-device and edge AI design, says Cadence

AI IP and software tools to address the escalating demand for on-device and edge AI processing have been unveiled by Cadence. The scalable Cadence Neo neural processing units (NPUs) deliver a range of AI performance in a low-energy footprint, said the company and this is claimed to bring new levels of performance and efficiency to AI SoCs.
The Neo NPUs deliver up to 80TOPS performance in a single core, in order to support both classic and new generative AI models. They can also offload AI/ML execution from any host processor, including application processors, general-purpose microcontrollers and DSPs. This is achieved with a simple and scalable AMBA AXI interconnect.
Cadence has also introduced the NeuroWeave software development kit (SDK) which it said provides developers with a “one-tool” AI software solution across Cadence AI and Tensilica IP products for no-code AI development.
“While most of the recent attention on AI has been cloud-focused, there are an incredible range of new possibilities that both classic and generative AI can enable on the edge and within devices,” pointed out Bob O’Donnell, president and chief analyst at TECHnalysis Research. For these intuitive, intelligent devices to be realised will need a flexible, scalable combination of hardware and software solutions with a range of power requirements and compute performance, “all while leveraging familiar tools” he believed. “New chip architectures that are optimised to accelerate ML models and software tools with seamless links to popular AI development frameworks are going to be incredibly important parts of this process,” he added.
The Neo NPUs are suitable for power-sensitive devices as well as high-performance systems with a configurable architecture. SoC architects will be able to integrate an optimal AI inferencing solution in a range of products, including intelligent sensors, IoT and mobile devices, cameras, hearables/wearables, PCs, AR/VR headsets and advanced driver-assistance systems (ADAS). New hardware and performance enhancements and key features/capabilities include:
The single core NPUs are scalable from 8GOPS to 80TOPS, with further extension to hundreds of TOPS with multi-core devices, said Cadence. They support 256 to 32K MACs per cycle, allowing SoC architects to optimise embedded AI to meet power, performance and area (PPA) tradeoffs.
Offloading of inferencing tasks from any host processor (e.g., DSPs, general-purpose microcontrollers or application processors) significantly improves system performance and power, said Cadence.
Support for Int4, Int8, Int16 and FP16 data types across a wide set of operations that form the basis of CNN, RNN and transformer-based networks allows flexibility in neural network performance and accuracy tradeoffs while the NPUs offer up to 20 times higher performance than the first-generation Cadence AI IP, with two to five time the inferences per second per area (IPS/mm2) and five to 10 times the inferences per second per Watt (IPS/W)

Upgrades to the common software toolchain include the NeuroWeave software development kit (SDK). Providing customers with a uniform, scalable and configurable software stack across Tensilica DSPs, controllers and Neo NPUs to address all target applications, the NeuroWeave SDK streamlines product development and enables an easy migration as design requirements evolve. It supports many industry-standard domain-specific ML frameworks, including TensorFlow, ONNX, PyTorch, Caffe2, TensorFlow Lite, MXNet and JAX for automated end-to-end code generation, together with Android Neural Network Compiler; TF Lite Delegates for real-time execution and TensorFlow Lite Micro for microcontroller-class devices.
The Neo NPUs and the NeuroWeave SDK are expected to be in general availability beginning in December 2023.

http://www.cadence.com

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Radar test system simulates driving scenarios for ADS and autonomous cars

At next week’s European Microwave Week (EuMW 2023), Rohde & Schwarz will introduce a radar test system which simulates driving scenarios for testing radar-based advanced driver assistance systems (ADAS) and radar sensors used in automated driving cars over the air.

New options for the company’s R&S AREG800A automotive radar echo generator and the R&S QAT100 antenna array generate “extremely short distances” for the artificial objects, and therefore enables realistic autonomous braking tests with the smallest distance possible, claimed Rohde & Schwarz. 

The radar test system can be used for radar object simulation, from single sensor tests to 360 degree environments, covering 76 to 81GHz for automotive radar sensors. Its scalability and adaptability allow a range of ADAS traffic scenarios to be electronically generated along the whole testing lifecycle.

It also enables tests currently performed in real-world test drives to be relocated to the lab, enabling errors to be detected at an early stage and delivering significant cost savings.

The R&S AREG800A automotive radar echo generator operates as a backend and the R&S QAT100 antenna array acts as a frontend in the systems which can be used in benchtop development, hardware-in-the-loop and vehicle-in-the-loop. For production, the R&S AREG800A automotive radar echo generator operates as a backend and the R&S AREG8-24/81S/D antenna is a frontend. 

The AREG800A is claimed to provide a higher instantaneous bandwidth to improve the distance resolution. With the mmW remote frontends R&S AREG8-81S/D, the instantaneous bandwidth will be extended from 4.0 to 5GHz, offering a future proof solution so that the users can measure their automotive radars using a higher bandwidth.

A new feature for near object range allows minimum distance of one or more artificial objects to be reduced down to the airgap value of the radar under test.

For the R&S QAT100 a new option is R&S QAT-B1 Enhanced Flatness. It contains a detailed characterisation of each antenna of the QAT frontends. With this option, the accuracy of the amplitude flatness of all antennas is improved when operated with R&S AREG800A.

http://www.rohde-schwarz.com

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STM32H5 discovery kit builds a case for secure, smart, connected devices

Support for Secure Manager, a turnkey SoC which integrates core security services certified and maintained by ST is included in the STM32H5 discovery kit by STMicroelectronics.
The development board is for creating diverse applications with the company’s STM32H5 microcontrollers. The STM32H5 devices are intended for high performance processing and advanced security in a wide range of applications, including smart sensors, smart appliances, industrial controllers, networking equipment, personal electronics and medical devices. 

The STM32H573I-DK discovery kit enables developers to explore all the integrated features of the STM32H5, such as analogue peripherals, timers, the ST ART (Adaptive Real-Time) accelerator, media interfaces and mathematical accelerators. This makes it easy to evaluate new designs for industrial programmable logic controllers (PLC), motor drives, and smart controllers for appliances, for example, air conditioners, refrigerators and washing machines. Other potential applications include alarm controllers, communication hubs and smart lighting controls.
The STM32H573I-DK Discovery kit is a development board that includes an STM32H5 microcontroller, colour touch display, digital microphone, and interfaces such as USB, Ethernet, and Wi-Fi. The board also features an audio codec, flash memory, and headers for connecting expansion shields and daughterboards.
To simplify the development process, the STM32CubeH5 microcontroller software package consolidates all the necessary components required to develop an application on the STM32H5, including examples and application code. The package is fully integrated into the STM32Cube ecosystem, which contains additional software to assist with application development. ST also offers the STM32CubeMX tool for configuring and initialising the microcontroller.
The STM32H5 microcontroller features the Arm Cortex-M33 embedded microcontroller core running at 250MHz and is the first microcontroller to support ST’s Secure Manager SoC security solutions. The microcontrollers combine Arm TrustZone security with ST’s STM32Trust framework to provide trusted storage, cryptography, attestation and updates. They embed side-channel protected hardware cryptographic accelerators and target recognised security certifications, PSA Certified Level 3 and GlobalPlatform SESIP3.
ST has created the STM32H573I-DK Discovery kit with examples showing how to use the security services and integrated all the necessary software tools and support in the STM32Cube development ecosystem.
The Discovery kit as well as the H5 Nucleo Board Nucleo-H563ZI are available now available from ST’s eStore and authorised distributors.

https://www.st.com

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Arduino board meets EU Cyber Resilience Act requirements 

The Arduino Portena X8 is claimed to be the first system on module (SoM) to meet all the requirements of the EU’s Cyber Resilience Act, on receipt. 

It uses Foundries.io’s security technology to meet provisions such as provides capabilities making the Arduino Portenta X8 the industry’s first system-on-module (SoM) to meet all the requirements of the European Union’s Cyber Resilience Act (CRA) on shipment to a customer. 

The CRA mandates a minimum set of security features for all IoT devices marketed in Europe from 2025. The legislation requires device OEMs to build in functionality to secure each device, its software and its connections. The OEM must also be able to rapidly identify and fix any exposures to a known vulnerability in any production device in the field, for the full lifespan of those devices. 

Foundries.io provides cloud-native development and deployment DevOps solutions for secure IoT and edge devices and has provided hardware and software security and operational features required for compliance with the CRA for the lifetime of each device for the Portenta X8 SoM.

Developers who use the Portenta X8 SoM can manage device authentication, secure storage, provisioning, a software bill of materials (SBoM) and over-the-air (OTA) updating, in a single, cloud-based user environment. The system is secure against all known forms of cyber-attack and malware, said foundries.iom and enables rapid, device-specific responses to emerging common vulnerabilities and exposures (CVE) notices. 

Arduino said it has met the requirements of the CRA by building the Linux microPlatform (LmP) and FoundriesFactory DevOps product from Foundries.io into the Portenta X8 SoM. To maintain Linux distribution Arduino develops and provides updates to the Linux microPlatform operating system using the secure The Update Framework (TUF) -compliant OTA updating utility in the FoundriesFactory product. 

The Portenta X8 offers secure boot, a trusted execution environment, remote attestation, key installation, cloud authentication, TUF-compliant secure OTA updating and an SBoM that is automatically generated after every software update.

The X8 Board Manager tool provides a visual interface that ensures a user experience familiar to users of the Arduino EE development environment. 

Fabio Violante, CEO of Arduino, said: “When deploying Linux-based edge devices, security cannot be an afterthought. That’s why we designed the Arduino Portenta X8 giving the highest priority to security features, end to end. This spans from hardware and firmware to the Linux distribution and device management with FoundriesFactory technology. This allowed us to be naturally CRA-compliant from the very beginning.”

John Weil, chief marketing officer of Foundries.io, said: ‘Normally, SoM manufacturers supply their boards with a sample Linux distribution that is not maintained after shipment to the customer, and with none of the security infrastructure such as an SBoM tool and OTA update utility required to maintain device security for life. 

“The Portenta X8 has become the first SoM to provide a straightforward path to full compliance with the EU’s CRA, right out-of-the-box”. 

https://foundries.io/.

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