Ultra high density standard cell library SESAME uHD-BTF to enrich Dolphin Integration’s panoply at TSMC 90 nm eF and uLL

Grenoble, France – July 28, 2014 ---- Dolphin Integration are proud to announce the availability of the ultra high density standard cell library at 90 nm LP eFlash and uLL which comes to complete the panoply offering in this node.

Thanks to its Reduced Cell Stem Library (RCSL) architecture, SESAME uHD-BTF allows logic designers to:

  • reduce the die cost
  • 6 track library versus 7 track library at 90 nm
  • Up to 15% smaller after P&R thanks to “spinner cells” (pulsed latches) compensating any congestion risk
  • Extend battery life
  • 30% less consuming thanks to the homogeneous optimization allowed by the reduced number of cells

For more information about the:           

Featured Video
Jobs
Senior Principal Software Engineer for Autodesk at San Francisco, California
Machine Learning Engineer 3D Geometry/ Multi-Modal for Autodesk at San Francisco, California
Principal Engineer for Autodesk at San Francisco, California
Mechanical Manufacturing Engineering Manager for Google at Sunnyvale, California
Equipment Engineer, Raxium for Google at Fremont, California
Manufacturing Test Engineer for Google at Prague, Czechia, Czech Republic
Upcoming Events
World Architecture Festival 2024 at Marina Bay Sands Singapore - Nov 6 - 8, 2024
Dimensions User Conference 2024 at The Venetian Resort Las Vegas NV - Nov 11 - 13, 2024
Greenbuild 2024 at Pennsylvania Convention Center Philadelphia PA - Nov 12 - 15, 2024
Digital Construction North (DCN) 2024 at Manchester Central. Manchester United Kingdom - Nov 13, 2024



© 2024 Internet Business Systems, Inc.
670 Aberdeen Way, Milpitas, CA 95035
+1 (408) 882-6554 — Contact Us, or visit our other sites:
TechJobsCafe - Technical Jobs and Resumes EDACafe - Electronic Design Automation GISCafe - Geographical Information Services  MCADCafe - Mechanical Design and Engineering ShareCG - Share Computer Graphic (CG) Animation, 3D Art and 3D Models
  Privacy PolicyAdvertise