About Cabling Installation & Maintenance

Our mission: Bringing practical business and technical intelligence to today's structured cabling professionals

For more than 30 years, Cabling Installation & Maintenance has provided useful, practical information to professionals responsible for the specification, design, installation and management of structured cabling systems serving enterprise, data center and other environments. These professionals are challenged to stay informed of constantly evolving standards, system-design and installation approaches, product and system capabilities, technologies, as well as applications that rely on high-performance structured cabling systems. Our editors synthesize these complex issues into multiple information products. This portfolio of information products provides concrete detail that improves the efficiency of day-to-day operations, and equips cabling professionals with the perspective that enables strategic planning for networks’ optimum long-term performance.

Throughout our annual magazine, weekly email newsletters and 24/7/365 website, Cabling Installation & Maintenance digs into the essential topics our audience focuses on.

  • Design, Installation and Testing: We explain the bottom-up design of cabling systems, from case histories of actual projects to solutions for specific problems or aspects of the design process. We also look at specific installations using a case-history approach to highlight challenging problems, solutions and unique features. Additionally, we examine evolving test-and-measurement technologies and techniques designed to address the standards-governed and practical-use performance requirements of cabling systems.
  • Technology: We evaluate product innovations and technology trends as they impact a particular product class through interviews with manufacturers, installers and users, as well as contributed articles from subject-matter experts.
  • Data Center: Cabling Installation & Maintenance takes an in-depth look at design and installation workmanship issues as well as the unique technology being deployed specifically for data centers.
  • Physical Security: Focusing on the areas in which security and IT—and the infrastructure for both—interlock and overlap, we pay specific attention to Internet Protocol’s influence over the development of security applications.
  • Standards: Tracking the activities of North American and international standards-making organizations, we provide updates on specifications that are in-progress, looking forward to how they will affect cabling-system design and installation. We also produce articles explaining the practical aspects of designing and installing cabling systems in accordance with the specifications of established standards.

Cabling Installation & Maintenance is published by Endeavor Business Media, a division of EndeavorB2B.

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VeriSilicon Launches Ultra-Low Power OpenGL ES GPU with Hybrid 3D/2.5D Rendering for Wearables

GCNano3DVG GPU IP introduces content-aware rendering to maximize efficiency in wearable applications

VeriSilicon (688521.SH) today announced the launch of GCNano3DVG, a new ultra-low power graphics processing unit (GPU) IP designed specifically for wearable and other compact, battery-powered devices requiring dynamic graphics rendering. Featuring both 3D and 2.5D graphics rendering capabilities, GCNano3DVG delivers an optimal balance between visual performance and power efficiency, making it ideal for a wide range of applications including smartwatches, smart bracelets, and AI/AR glasses.

VeriSilicon’s GCNano3DVG IP combines optimized hardware pipelines with a lightweight and configurable software stack to deliver efficient, low-power graphics processing. It features separate rendering pipelines for 3D and 2.5D graphics, accelerating the rendering of complex scenes composed of 3D objects and vector graphics. These pipelines are fine-tuned for improved performance, power, and area (PPA). Additionally, the unified command engine and multiple CPU-GPU synchronization mechanisms further reduce system overhead, while DDR-less configurations utilizing Static Random-Access Memory (SRAM) or Pseudo-Static Random-Access Memory (PSRAM) offer a cost-effective and low-power solution for embedded graphics processing.

GCNano3DVG supports VeriSilicon’s GLLite and VGLite Application Programming Interfaces (APIs) for 3D and 2.5D/2D graphics rendering. The GLLite driver is highly configurable, providing full OpenGL ES 2.0 compliance with an optional runtime OpenGL Shading Language (GLSL) shader compiler, or operating in OpenGL ES 1.1 fixed-function pipeline mode for minimal memory usage. It also supports rendering of Khronos’ Graphics Library Transmission Format (glTF), enabling efficient handling of 3D assets for modern applications. The VGLite driver is compatible with popular vector graphics libraries such as LVGL and NanoVG. GLLite and VGLite APIs can be used flexibly and synchronously within a single application, providing versatile and high-performance graphics solutions across diverse embedded use cases.

“As wearable applications continue to expand, the demand for more immersive user interfaces featuring 3D-rendered content is growing, while ultra-low power consumption is still expected,” said Weijin Dai, Chief Strategy Officer, Executive Vice President, and General Manager of the IP Division at VeriSilicon. “To address these demands, we designed a hybrid GPU architecture built upon our ultra-low power Nano 3D and Nano 2.5D GPU technologies. This innovation enables efficient rendering of mixed 3D and 2.5D content with minimal power consumption.”

VeriSilicon’s GCNano3DVG GPU IP is now available for licensing. For more information or collaboration inquiries, please visit www.verisilicon.com/en/ContactUs.

About VeriSilicon

VeriSilicon is committed to providing customers with platform-based, all-around, one-stop custom silicon services and semiconductor IP licensing services leveraging its in-house semiconductor IP. For more information, please visit: www.verisilicon.com

Featuring both 3D and 2.5D graphics rendering capabilities, GCNano3DVG delivers an optimal balance between visual performance and power efficiency, making it ideal for a wide range of applications including smartwatches, smart bracelets, and AI/AR glasses.

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