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This white paper covers how the shift to modular design bridges the gap between development and things, revolutionizing hardware design.
Traditional 2D PCB-centric design processes are constraining today’s highly competitive product development processes. As products become smaller, faster, lighter with more complex shapes the development process must evolve to accommodate a product-centric perspective. The 3D convergence of chip/package/ board design with MCAD is the foundation of a product-centric design process. - Read more...
This white paper explores the benefits of product-centric design and how it differs from current-generation PCB-centric processes and tools.- Read more...
A new approach to creating initial design architectures, increasing engineering productivity, and reducing risk in product development. - Read more...
Intellectual property (IP) theft is an ever-present danger to companies who subcontract manufacturing to electronic manufacturing services (EMS) providers.- Read more...
This White Paper investigates what approaches exist for increasing engineering productivity, and identifies steps that can be taken to find a better balance between engineering management tasks and effective use of engineering development time.- Read more...
Working in 3D for the first time, Renishaw’s PCB designers noticed a host of benefits, including fixing housing fit issues upfront and easier component placement.
System level PCB engineering from concept to manufacture.
Read what the world is saying about CR-8000 and CR-5000.
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Engineers continue to embrace programmable logical devices within their product designs in numerous applications across a wide range of industries. With FPGAs incorporating embedded processors, memory blocks and DSP functions, they are an attractive, low-cost option for many designs.
In the design and production of electronic products, manufacturability checks are difficult to perform manually and are often made after the design process has been completed.
Traditional two dimensional design tools often fall short when it comes to studyingthe structure and routability of the advanced packages required for today’scomplex designs.
CR-8000 Circuit DR Navi helps design teams consolidate engineering expertise
and best practices into a central repository integrated with the design
Design Force fully leverages the latest industry hardware and software capabilities, allowing users to design in a native 3D environment, obtaining optimal performance by utilizing native 64-bit, multi-threading, multi-core processors.
Comprehensive system co-design recognizes the interaction between chip, package, and board data to reduce complexity, size and cost of the overall system. Zuken’s Design Force native 3D chip, package and board co-design enables optimization of the chip-package-board interface throughout the design flow to
address these market advantages.
Design Gateway is Zuken’s platform for logical circuit design and verification of single and multi-board system-level electronic designs.
The use of common library data throughout the whole design cycle is an essential element of the CR-5000 constraints-driven, right-by-construction methodology.
System Planner is a system-level design environment for architecture of electronics systems and products. It enables engineers to optimize form, fit and function of single and multi-board systems, maximizing design reuse and eliminating the need to reenter up-front planning data into the design tools during detailed design.
Board Viewer allows users to share and review native design information to enhance communication during product development. Board Viewer supports native design data from the following: CR-5000 Board Designer (.pcb, .pnl), Footprint data (.ftp), CR-8000 Design Force (.dsgn)
Component Editor (.ftp), CR-8000 DFM Center (.fpr) CR-8000 DFM Elements (.mdgn).