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Transforming Industrial and Automotive Manufacturing

Divergent Technologies developed a digital production system that can revolutionize automotive and industrial scale manufacturing. Divergent uses new manufacturing solutions and their Divergent Adaptive Production System (DAPS™) software to make […]

The post Transforming Industrial and Automotive Manufacturing appeared first on HPCwire.




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How to defend democracy — and fight autocracy | Leopoldo Lopez

Seventy-two percent of the world's population lives under some sort of autocratic rule, says freedom fighter Leopoldo Lopez. In a rousing call to defend democracy worldwide, he shares the story of his imprisonment and exile for leading the movement against Venezuela's authoritarian regime — and shares his vision for uniting across borders to champion freedom and stamp out autocracy.




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UK Design Firm Uses SolidWorks to Help Snowboarding Helmet Become Hit in Auto Racing

Curventa and RuRoc Adapt Original Design for Formula One Pit Crew Safety Wear




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Autodesk, Inc. and Dassault Systèmes SolidWorks Corp. Settle Lawsuit




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SolidWorks to sponsor elite automotive engineering teams in Formula SAE and Formula Student design competitions

Formula SAE and Formula Student teams increasingly demand SolidWorks software for its ease of use and integrated design analysis




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SolidWorks brings design flexibility, streamlined product development, and system stability to ATW automotive division

Leading assembly automation and testing company to standardize on SolidWorks Office Professional, securely manage design data with PDMWorks




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SolidWorks Corporation eliminates compatibility problem for AutoCAD users

New DWGgateway plug-in allows any version of AutoCAD to read and write any DWG file




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Meikle Automation purchases 55 licenses of SolidWorks software for multi-industry machine design

Software will foster supply chain efficiency through better customer, partner, supplier communication




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New auto seat, designed in SolidWorks, would help crash victims walk away

Sliding 'Counter-Balanced Motion' seat's performance in crash tests precisely matched COSMOSWorks analysis




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DWGgateway software provides free alternative to new AutoCAD upgrades

More than 100,000 AutoCAD software users download free compatibility solution from SolidWorks Corporation




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SOLIDWORKS and COSMOS software boost success of student engineers in international 'Formula' auto racing competitions

Top-placing teams cite software's short learning curve and focus on designing better products




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BÖWE BELL + HOWELL accelerates new automated mail sorting system design with SOLIDWORKS software

Long-established firm designs new processing systems four times faster, and with 70 percent less rework than with its previous software




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Small auto racing parts maker does big business using SOLIDWORKS software

Hardbar USA can work efficiently with partners around the block or around the world




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SMW Autoblok gets grip on streamlined product design with SOLIDWORKS 3D CAD software

Global workholding product supplier increases sales, reduces development time and costs, and designs better products with 3D CAD software




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Medical instrument maker uses SOLIDWORKS, COSMOSFloWorks to refine first automated glucose measurement system

New product for intensive care units automates costly and time-consuming nursing work




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Kinematic Automation Uses SolidWorks to Automate the Manufacturing of Life-Saving Diagnostic Products

Medical industry manufacturer reducing R&D costs, time to market, and scrap by up to 50 percent




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Donkervoort Automobielen BV Improves Design, Cuts Costs with SolidWorks Simulation

World-Class Sports Car Manufacturer Reduces Number of Prototypes by Half for Newly Redesigned, Hand-crafted D8 GTO




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pester pac automation GmbH Transforms Technical Documentation with 3DVIA Composer

Interactive 3D manuals increase customer appreciation and satisfaction




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iPhones on iOS 18.1 will automatically reboot and lock down after being idle for a while

A hidden feature in iOS 18.1 will automatically reboot a locked iPhone when it is asleep but hasn't been unlocked for a while, presumably as a security measure.


The feature has been identified as an "inactivity reboot," and is similar to a feature found on Macs. The Mac version, known as "hibernation mode," saves the state of the device to disk when put to sleep, in case the power fails or the battery runs out before the user can return to the machine.

By flushing the last state of the device, iPhone users are better protected from forensic searches by law enforcement or other entities. The change also makes it more difficult for anyone to break into the device using brute-force or other methods.

The reboot timer is not reliant on charging or network functions, and is only tied to inactivity since the last unlock. This means the reboot will take place after a period of time, even if network connections are not maintained.


Continue Reading on AppleInsider | Discuss on our Forums




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Supply chain leak hints at two potential Apple home automation releases set for 2026

An Apple supplier may have been tapped to build an Apple-designed smart home camera and future health-focused AirPods, according to analyst Ming-Chi Kuo.


Tapo smart cameras compatible with Apple HomeKit

After Apple abandoned the decade-long Apple Car project, rumors suggested Apple would increase investments in the smart home and AI. While Apple Intelligence has been released to the public, there has been little evidence of Apple's new commitment to the smart home beyond rumors of a smart monitor.

A new supply chain-based rumor from analyst Ming-Chi Kuo suggests an Apple supplier named Goertek has been tapped with orders for two products due in 2026. The first is a smart home camera, and the second is a set of AirPods with more health-focused features.


Rumor Score: ???? Possible


Continue Reading on AppleInsider | Discuss on our Forums




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Antique 1948 Tucker automobile repaired by Penn College students garners honor

A 1948 Tucker repaired by students at Pennsylvania College of Technology earned honors at the recent Antique Automobile Club of America’s Eastern Division National Fall Meet in Hershey. The vehicle won the First Junior Award, meaning it was ranked the best among all cars judged for the first time in its class: limited production and prototype vehicles through 1998.




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La Autoridad de Vivienda anuncia el lanzamiento de un programa piloto de informes de alquileres en todo el estado

El programa ofrece a los inquilinos la oportunidad de mejorar su calificación crediticia sin endeudarse más, simplemente pagando el alquiler.   Dover, Del., 9 de enero de 2022 – El Programa Piloto de Notificación sobre Alquileres de Inquilinos de Delaware es un nuevo programa financiado por la Ley del Plan de Rescate Estadounidense y en […]



  • Delaware State Housing Authority

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Stellar Blade to Get Nier: Automata DLC, Photo Mode and More in New Update This Month

Stellar Blade is getting a Nier: Automata DLC on November 20, developer Shift Up has announced. The game will get special items from the world of Nier Automata and an in-game shop as part of the collaboration. The update will also add a photo mode, new outfits and more features.




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Shaan Shares His Opinion On The Frequency Of Autotune Implementation In Present Times

On an earlier occasion, Shaan had taken a dig at new-age singers highlighting how they have shifted to "minimalistic" songs




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Report Finds Gender Disparity in Auto Insurance Premiums, Women Charged More for Same Coverage

Legislative effort to end rating practice announced Insurance Commissioner Trinidad Navarro and the Consumer Federation of America (CFA) today released Gender Disparities in Auto Insurance Pricing, a new report that shows many women are being charged more by auto insurers based solely on their gender. Data shows that many Delaware women pay more per year […]




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Voting Alert: Automatically Registered Voters May Declare Their Political Party Affiliation at the Primary Election

The Delaware Department of Elections is informing voters that automatically registered voters may declare their party at the State Primary Election, September 10, 2024. Delaware is a Closed Primary State, meaning that only voters affiliated with the Democratic or Republican parties may vote in their party’s Primary Election. Eligible Voters must vote at their assigned Polling Place, and Polling Places are open from 7 a.m. – 8 p.m. on Primary Election Day.



  • Department of Elections
  • Department of Elections - Kent County Office
  • Department of Elections - New Castle County Office
  • Department of Elections - State Election Commissioner
  • Department of Elections - Sussex County Office

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SAS Customer Intelligence 360: Automated explanation and supervised segmentation

One of the wonderful aspects about my client-facing role at SAS is the breadth of audiences that I get to work with. No matter where you fall on this list: Data engineer. Business or marketing analyst. Citizen data scientist. Data scientist. Statistician. Executive. One topic is certain: We all love [...]

SAS Customer Intelligence 360: Automated explanation and supervised segmentation was published on Customer Intelligence Blog.




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Automate the creation of a range attribute map in SAS

In SAS, range attribute maps enable you to specify the range of values that determine the colors used for graphical elements. There are various examples that use the GTL to define a range attribute map, but fewer examples that show how to use a range attribute map with PROC SGPLOT. [...]

The post Automate the creation of a range attribute map in SAS appeared first on The DO Loop.




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Navigating Chiplet-Based Automotive Electronics Design with Advanced Tools and Flows

In the rapidly evolving landscape of automotive electronics, traditional monolithic design approaches are giving way to something more flexible and powerful—chiplets. These modular microchips, which are themselves parts of a whole silicon system, offer unparalleled potential for improving system performance, reducing manufacturing costs, and accelerating time-to-market in the automotive sector. However, the transition to working with chiplets in automotive electronics is not without its challenges.

Designers must now grapple with a new set of considerations, such as die-to-die interconnect standards, complex processes, and the integration of diverse IPs. Advanced toolsets and standardized design approaches are required to meet these challenges head-on and elevate the potential of chiplets in automotive innovation. In the following discourse, we will explore in detail the significance of chiplets in the context of automotive electronics, the obstacles designers face when working with this paradigm, and how Cadence comprehensive suite of IPs, tools, and flows is pioneering solutions to streamline the chiplet design process.

Unveiling Chiplets in Automotive Electronics

For automotive electronics, chiplets offer a methodology to modularize complex functionalities, integrate different chiplets into a package, and significantly enhance scalability and manufacturability. By breaking down semiconductor designs into a collection of chiplets, each fulfilling specific functions, automotive manufacturers can mix and match chiplets to rapidly prototype new designs, update existing ones, and specialize for the myriad of use cases found in vehicles today.

The increasing significance of chiplets in automotive electronics comes as a response to several industry-impacting phenomena. The most obvious among these is the physical restriction of Moore's Law, as large die sizes lead to poor yields and escalating production costs. Chiplets with localized process specialization can offer superior functionality at a more digestible cost, maintaining a growth trajectory where monolithic designs cannot. Furthermore, chiplets support the assembly of disparate technologies onto a single subsystem, providing a comprehensive yet adaptive solution to the diverse demands present in modern vehicles, such as central computing units, advanced driver-assistance systems (ADAS), infotainment units, and in-vehicle networks. This chiplet-based approach to functional integration in automotive electronics necessitates intricate design, optimization, and validation strategies across multiple domains.

The Complexity Within Chiplets

Yet, with the promise of chiplets comes a series of intricate design challenges. Chiplets necessitate working across multiple substrates and technologies, rendering the once-familiar 2-dimensional design space into the complex reality of multi-layered, sometimes even three-dimensional domains. The intricacies embedded within this design modality mandate devoting considerable attention to partitioning trade-offs, signal integrity across multiple substrates, thermal behavior of stacked dies, and the emergence of new assembly design kits to complement process design kits (PDKs).

To effectively address these complexities, designers must wield sophisticated tools that facilitate co-design, co-analysis, and the creation of a robust virtual platform for architectural exploration. Standardizations like the Universal Chip Interconnect Express (UCIe) have been influential, providing a die-to-die interconnect foundation for chiplets that is both standardized and automotive-ready. The availability of UCIe PHY and controller IP from Cadence and other leading developers further eases the integration of chiplets in automotive designs.

The Role of Foundries and Packaging in Chiplets

Foundries have also pivoted their services to become a vital part of the chiplet process, providing specialized design kits that cater to the unique requirements of chiplets. In tandem, packaging has morphed from being a mere logistical afterthought to a value-added aspect of chiplets. Organizations now look to packaging to deliver enhanced performance, reduced power consumption, and the integrity required by the diverse range of technologies encompassed in a single chip or package. This shift requires advanced multiscale design and analysis strategies that resonate across a spectrum of design domains.

Tooling Up for Chiplets with Cadence

Cadence exemplifies the rise of comprehensive tooling and workflows to facilitate chiplet-based automotive electronics design. Their integrations address the challenges that chiplet-based SoCs present, ensuring a seamless design process from the initial concept to production. The Cadence suite of tools is tailored to work across design domains, ensuring coherence and efficiency at every step of the chiplet integration process.

For instance, Cadence Virtuoso RF subflows have become critical in navigating radio frequency (RF) challenges within the chiplets, while tools such as the Integrity 3D-IC Platform and the Allegro Advanced Multi-Die Package Design Solution have surfaced to enable comprehensive multi-die package designs. The Integrity Signal Planner extends its capabilities into the chiplet ecosystem, providing a centralized platform where system-wide signal integrity can be proactively managed. Sigrity and Celsius, on the other hand, offer universally applicable solutions that take on the challenges of chiplets in signal integrity and thermal considerations, irrespective of the design domain. Each of these integrated analysis solutions underscores the intricate symphony between technology, design, and packaging essential in unlocking the potential of chiplets for automotive electronics.

Cadence portfolio includes solutions for system analysis, optimization, and signoff to complement these domain-specific tools, ensuring that the challenges of chiplet designs don't halt progress toward innovative automotive electronics. Cadence enables designers to engage in power- and thermal-aware design practices through their toolset, a necessity as automotive systems become increasingly sophisticated and power-efficient.

A Standardized Approach to Success with Chiplets

Cadence’s support for UCIe underscores the criticality of standardized approaches for heterogeneous integration by conforming to UCIe standards, which numerous industry stakeholders back. By co-chairing the UCIe Automotive working group, Cadence ensures that automotive designs have a universal and standardized Die-to-Die (D2D) high-speed interface through which chiplets can intercommunicate, unleashing the true potential of modular design.

Furthermore, Cadence champions the utilization of virtual platforms by providing transaction-level models (TLMs) for their UCIe D2D IP to simulate the interaction between chiplets at a higher level of abstraction. Moreover, individual chiplets can be simulated within a chiplet-based SoC context leveraging virtual platforms. Utilizing UVM or SCE-MI methodologies, TLMs, and virtual platforms serve as first lines of defense in identifying and addressing issues early in the design process before physical silicon even enters the picture.

Navigating With the Right Tools

The road to chiplet-driven automotive electronics is one paved with complexity, but with a commitment to standards, it is a path that promises significant rewards. By leveraging Cadence UCIe Design and Verification IP, tools, and methodologies, automotive designers are empowered to chart a course toward chiplets and help to establish a chiplet ecosystem. With challenges ranging from die-to-die interconnect to standardization, heterogeneous integration, and advanced packaging, the need for a seamless integrated flow and highly automated design approaches has never been more apparent. Companies like Cadence are tackling these challenges, providing the key technology for automotive designers seeking to utilize chiplets for the next-generation E/E architecture of vehicular technology.

In summary, chiplets have the potential to revolutionize the automotive electronics industry, breathing new life into the way vehicles are designed, manufactured, and operated. By understanding the significance of chiplets and addressing the challenges they present, automotive electronics is poised for a paradigm shift—one that combines the art of human ingenuity with the power of modular and scalable microchips to shape a future that is not only efficient but truly intelligent.

Learn more about how Cadence can help to enable automakers and OEMs with various aspects of automotive design.




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How Cadence Is Revolutionizing Automotive Sensor Fusion

The automotive industry is currently on the cusp of a radical evolution, steering towards a future where cars are not just vehicles but sophisticated, software-defined vehicles (SDV). This shift is marked by an increased reliance on automation and a significant increase in the use of sensors to improve safety and reliability. However, the increasing number of sensors has led to higher compute demands and poses challenges in managing a wide variety of data. The traditional method of using separate processors to manage each sensor's data is becoming obsolete. The current trends necessitate a unified processing system that can deal with multimodal sensor data, utilizing traditional Digital Signal Processing (DSP) and AI-driven algorithms. This approach allows for more efficient and reliable sensor fusion, significantly enhancing vehicle perception. Developers often face difficulties adhering to stringent power, performance, area, and cost (PPAC) and timing constraints while designing automotive SoCs.

Cadence, with its groundbreaking products and AI-powered processors, is enabling designers and automotive manufacturers to meet the future sensor fusion demands within the automotive sector. At the recent CadenceLive Silicon Valley 2024, Amol Borkar, product marketing director at Cadence, showcased the company's dedication and forward-thinking solutions in a captivating presentation titled "Addressing Tomorrow’s Sensor Fusion Needs in Automotive Computing with Cadence." This blog aims to encapsulate the pivotal takeaways from the presentation. If you missed the chance to watch this presentation live, please click here to watch it.

Significant Trends in the Automotive Market – Industry Landscape

We are witnessing a revolution in automotive technology. Innovations like occupant and driver monitoring systems (OMS, DMS), 4D radar imaging, LiDAR technology, and 360-degree view are pushing the boundaries of what's possible, leading us into an era of remarkable autonomy levels—ranging from no feet or hands required to eventually no eyes needed on the road.

Sensor Fusion and Increasing Processing Demands—Sensor fusion effectively integrates data from different sensors to help vehicles understand their surroundings better. Its main benefit is in overcoming the limitations of individual sensors. For example, cameras provide detailed visual information but struggle in low-light or lousy weather. On the other hand, radar is excellent at detecting objects in these conditions but lacks the detail that cameras provide. By combining the data from multiple sensors, automotive computing can take advantage of their strengths while compensating for their weaknesses, resulting in a more reliable and robust system overall.

 

One thing to note is that the increased number of sensors produces various data types, leading to more pre-processing.

On-Device Processing—As the industry moves towards autonomy, there is an increasing need for on-device data processing instead of cloud computing to enable vehicles to make informed decisions. Embracing on-device processing is a significant advancement for facilitating real-time decisions and avoiding round-trip latency.

AI Adoption—AI has become integral to automotive applications, driving safety, efficiency, and user experience advancements. AI models offer superior performance and adaptability, making future-proofing a crucial consideration for automotive manufacturers. AI significantly enhances sensor fusion algorithms, offering scalability and adaptability beyond traditional rule-based approaches. Neural networks enable various fusion techniques, such as early fusion, late fusion, and mid-fusion, to optimize the integration and processing of sensor data.

Future Sensor Fusion Needs

Automotive architectures are continually evolving. With current trends and AI integration into radar and sensor fusion applications, SoCs should be modular, flexible, and programmable to meet market demands.

Heterogeneous Architecture- Today's vehicles are loaded with various sensors, each with a unique processing requirement. Running the application on the most suitable processor is essential to achieve the best PPA. To meet such requirements, modern automotive solutions require a heterogeneous compute approach, integrating domain-specific digital signal processors (DSPs), neural processing units (NPUs), central processing unit (CPU) clusters, graphics processing unit (GPU) clusters, and hardware accelerator blocks. A balanced heterogeneous architecture gives the best PPA solution.

Flexibility and Programmability- The industry has come a long way from using computer vision algorithms such as HOG (Histogram Oriented Gradient) to detect people and objects, HAR classifier to detect faces, etc., to CNN and LSTM-based AI to Transformer models and graphical neural networks (GNN). AI has evolved tremendously over the last ten years and continues to evolve. To keep up with the evolving rate of AI, SoC design must be flexible and programmable for updates if needed in the future.

Addressing the Sensor Fusion Needs with Cadence

Cadence offers a complete suite of hardware and software products to address the increasing compute requirements in automotive. The comprehensive portfolio of Tensilica products built on the robust 32-bit RISC architecture caters to various automotive CPU and AI needs. What makes them particularly appealing is their scalability, flexibility, and configurability, offering many options to meet diverse needs.

 

The Xtensa family of products offers high-quality, power-efficient CPUs. Tensilica family also includes AI processors like Neo NPUs for the best power, performance, and area (PPA) for AI inference on devices or more extensive applications. Cadence also offers domain-specific products for DSPs such as HIFI DSPs, specialized DSPs and accelerators for radar and vision-based processing, and a general-purpose family of products for floating point applications.

The ConnX family offers a wide range of DSPs, from compact and low-power to high-performance, optimized for radar, lidar, and communications applications in ADAS, autonomous driving, V2X, 5G/LTE/4G, wireless communications, drones, and robotics. Tensilica's ISO26262 certification ensures compliance with automotive safety standards, making it a trusted partner for advanced automotive solutions. The Cadence NeuroWeave Software Development Kit (SDK) provides customers with a uniform, scalable, and configurable ML interface and tooling that significantly improves time to market and better prepares them for a continuously evolving AI market. Cadence Tensilica offers an entire ecosystem of software frameworks and compilers for all programming styles.

Tensilica's comprehensive software stack supports programming for DSPs, NPUs, and accelerators using C++, OpenCL, Halide, and various neural network approaches. Middleware libraries facilitate applications such as SLAM, radar processing, and Eigen libraries, providing robust support for automotive software development.

Conclusion

Cadence’s Tensilica products offer a development toolchain and various IPs tailored for the automotive industry, covering audio, vision, radar, unified DSPs, and NPUs. With ISO certification and a robust partner ecosystem, Tensilica solutions are designed to meet the future needs of automotive computing, ensuring safety, efficiency, and innovation.

Learn More

 

 




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Automotive Revolution with Ethernet Base-T1

The automotive industry revolutionized the definition of a vehicle in terms of safety, comfort, enhanced autonomy, and internet connectivity. With this trend, the automotive industry rapidly adopted automotive Ethernet such as 10Base-T1, 100Base-T1, and in some cases, 1000Base-T1. 

Faster Speed (than CAN-FD), Scalability, embedded security protocols (like MacSec), cost and energy efficiency, and simple yet redundant network made Ethernet an obvious choice over CAN(FD) and FlexRay.  

      

Ethernet 10Base-T1 

10BASE-T1S is defined under IEEE with 802.3cg. The S in 10BASE-T1S stands for a short distance. 10BASE-T1S uses a multidrop topology, where each node connects to a single cable. Multidrop topology eliminates the need for switches and, as a result, fewer cables/less cost. The primary goal of 10BASE-T1S is a deterministic transmission on a collision-free multidrop network. 10BASE-T1S cables use a pair of twisted wires. As per IEEE, at least eight nodes can connect to each, but more connections are feasible.   

The Physical Layer Collision Avoidance [PLCA] protocol ensures that it uses the entire 10 Mbps bandwidth. In 10BaseTs, Reconciliation Sublayer provides optional Physical Layer Collision Avoidance (PLCA) capabilities among participating stations. Using PLCA-enabled Physical Layers in CSMA/CD half-duplex shared-medium networks can provide enhanced bandwidth and improved access latency under heavily loaded traffic conditions. The working principle of PLCA is that transmit opportunities on a mixing segment are granted in sequence based on a node ID unique to the local collision domain (set by the management entity). 10BASE-T1S also supports an arbitration scheme that guarantees consistent node access to the media within a predefined time.  

The 10BASE-T1S PHY is intended to cover the low-speed/low-cost applications in the industrial and automotive environment. A large number of pins (16) required by the MII interface is one of the significant cost factors that must be addressed to fulfill this objective. The 10BASE-T1S "Transceiver" solution is suited for embedded systems where the digital portion of the PHY is fully integrated, e.g., into an MCU or an Ethernet switch core, leaving only the analog portion (the transceiver) into a separate IC. 

Ethernet 100Base-T1/1000Base-T1 

100Base-T1 and 1000Base-T1 can be used for audio/video information. With Higher bandwidth capacity, 100Base-T1/ 1000Base-T1 paired with AVB (Audio video bridging) can be used for car infotainment systems. 100Base-T1/1000Base-T1 paired with time-sensitive networking [TSN] protocol can be used to fulfill the automotive industry's mission-critical, time-sensitive, and deterministic latency needs. 

 PTP Over MacSec  

With today's automotive network, all the Electronic Control Units connected require timing accuracy and network synchronization, Precision Time Protocol (PTP), defined in IEEE 1588, provides synchronized clocks throughout a network.  While maintaining the timing accuracy for mission-critical applications, protecting the vehicle network from vulnerable threats is mandatory, and PTP over MacSec provides the consolidated solution.  

With the availability of the Cadence Verification IP for 10/100/1000BaseT1 and TSN, adopters can start working with these specifications immediately, ensuring compliance with the standard and achieving the fastest path to IP and SoC verification closure. The 10/100/1000GBaseT1 and TSN provide a full-stack solution, including support to the PHY, MAC, and TSN layers with a comprehensive coverage model and protocol checkers. Ethernet BaseT1 and TSN VIP covers all features required for complete coverage verification closure. More details are available in the Ethernet Verification IP portfolio. 

Krunal 




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Allegro X APD : Tip of the Week: ‘Auto-blank other rats’ feature

When working on a complex design, it is common to have very many net ratlines. Quantities like 1000 ratlines are possible. It can result in a cluttered view while routing. Therefore, it is useful to make all other ratlines invisible while routing interactively. You would like to make all ratlines visible again when each route action is completed.

You can easily do this by enabling the Auto-blank other rats option during routing. When enabled, all rats other than the primary ones are suppressed during the Add Connect command.




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Is it possible to automatically exclude registers or wires that are not used from toggle coverage?

Hello,

I have a question about toggle coverage.

In my case, there are many unused registers or wires that are affecting the toggle coverage score negatively.

Is it possible to automatically exclude registers or wires that are not used from toggle coverage?

My RTL code is as follows, Is it possible to automatically disable tb.top1.b and tb.top1.c without using an exclude file?

module top1;

  reg a;

  reg b;

  reg [31:0] c;

  initial

  begin

  #1 a=1'b0;

  #1 a=1'b1;

  #1 a=1'b0;

  end

endmodule

module tb;

  top1 top1();

endmodule




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Auto-Coloring Waves in Simvision?

Hello,

First, I had something working that broke in the past few versions that I've been meaning to get working again. There was some setting I recall in the GUI that allowed me to have inputs be placed in the waveform viewer with yellow traces, and output signals with orange traces to match the name colors. How can I set this to happen in the .simvisionrc file?

Second, I would like to add something to my .simvisionrc file to go through foreach signal and depending on key locations based on the signal's Path.Name (mainly the model and design areas) such that if the path contains "mon", then to auto-set the trace and name colors to something such as cyan. I'd like to have loops for various key areas of the design to color-code the signals.

Third, I am interested if there is a possibility of coloring names/traces foregound colors to based on which position they are in the waveform viewer to make banding, ideally such that every three (or whatever) are one color (or a color mutation, adding some gray to signals colorized by the auto-coloring mentioned already, etc) that allows for the signal names/traces to be colorized along with the built-in optional black/gray background banding.

Thanks in advance




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help with automating adding CLP files to DRA files

Question for forum:
I’m currently working on a code to automatically add CLP files to DRA files and then add two classes called “APPROVED” and “CLP”. To do this manually you have to open a DRA file, click file import subdrawing and choose the clp file with the same name as dra. (path already set). You then set the clp to position x 0 0. And then click on Set Up > Subclasses > Package geometry and type in “Approved” and “Clp.”
So far we’ve recorded the macros in Allegro for all of these actions. The macros correspond to one specific file name and we want to apply this to numerous files. To do this we created a python program that locates all of the specified CLP and DRA files, and if they have a matching name, runs a for loop that puts each file name into a stored variable that runs a loop for each file. We converted this script into batch and then added a function that we thought would run Allegro macros from batch.
In order to get the script working, we need to have an allegro batch command that will run the script without opening the Allegro start popup, or closing the popup when it appears.  We need to do this to run any script from starting Allegro.
I’ve done another similar program in batch where I made a for loop for each dra file and within the loop there was a batch a2dxf command that converted all dra files to dxf files. Is there a similar batch command for adding clp files to position 0 0 and/ or adding classes? If anyone has done something similar please let me know!
Thank you very much for the help.
Jen




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X-FAB's Innovative Communication and Automotive Designs: Powered by Cadence EMX Planar 3D Solver

Using the EMX solver, X-FAB design engineers can efficiently develop next-generation RF technology for the latest communication standards (including sub-6GHz 5G, mmWave, UWB, etc.), which are enabling technologies for communications and electric vehicle (EV) wireless applications. (read more)




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Serbia's automotive companies drive inward investment

Foreign investment into Serbia is growing at a healthy pace thanks to its attractive automotive manufacturing industry and highly regarded free zones.




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Brexit uncertainty drives auto industry towards Germany

Tesla's decision part of broader trend of investment into Germany at UK's expense.




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CEE ‘key for automotive R&D’

Western European carmakers should consider an R&D footprint in CEE, says McKinsey.




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Automated Deployment of PHP Application using Github Push.

Nowadays most of my side projects are managed with Github. It has more advantages and flexibility to manage file versions. I am following a different webhook system to automatically deploy my old PHP projects. Not sure about the standards, but the following solution is an alternative approach that may solve your deployment problem for every Github push.





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Cypress UI Automation End to End Testing

UI automation is the most important part of the CI/CD(continuous integration and continuous delivery) process. Integration testing helps you to avoid manual regression testing and improve the application quality. In this post I will explain how to implement UI automation testing to existing Angular projects using the Cypress tool, this is a great alternative for Protractor. Take a look at the video tutorials for better understanding.





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New Technologies and New Modes of Production Disrupt China's Automotive Industry

New Technologies and New Modes of Production Disrupt China's Automotive Industry New Technologies and New Modes of Production Disrupt China's Automotive Industry
Anonymous (not verified) Thu, 04/02/2020 - 10:25

East-West Wire

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News, Commentary, and Analysis
East-West Wire

The East-West Wire is a news, commentary, and analysis service provided by the East-West Center in Honolulu. Any part or all of the Wire content may be used by media with attribution to the East-West Center or the person quoted. To receive East-West Center Wire media releases via email, subscribe here.

For links to all East-West Center media programs, fellowships and services, see www.eastwestcenter.org/journalists.

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East-West Wire

Tagline
News, Commentary, and Analysis
East-West Wire

The East-West Wire is a news, commentary, and analysis service provided by the East-West Center in Honolulu. Any part or all of the Wire content may be used by media with attribution to the East-West Center or the person quoted. To receive East-West Center Wire media releases via email, subscribe here.

For links to all East-West Center media programs, fellowships and services, see www.eastwestcenter.org/journalists.

Explore




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German auto and engineering workers to get 5.5% wage rise after union negotiations

German auto and engineering workers to get 5.5% wage rise after union negotiations




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to write an autobiographical essay for a scholarship

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