The SoC Leopard Pro Core Compiler from Socle Improves SoC Design Flow Efficiency
In the past, the SoC design platform was developed through manual integration and verification of IP according to the needs of customers. It takes long time and plenty of manpower & resource. The merit of SoC Leopard Pro Core Compiler is Socle has integrated and verified its all IPs in advance, so it’s easy to generate SoC platform source code and complete verification & development environment speedily based on customers’ demand. Customers can use the source code and development environment to integrate their own IPs and create custom-made SoC directly, or choose different basic IPs combination in source code flexibly – even collocating with other IPs like AHB2PCI Bridge, USB2.0 device, MAC, etc. – according to their product features. With the contents modification of configuration file, it’s possible to compile the core for customers needing and integrate & verify IPs automatically for reducing any risk of schedule delay and mistake caused by manual modification of IPs. And it can shorten the period of SoC platform core development from 4 ~ 6 weeks to 1 ~ 2 weeks. The best SoC design can be easily achieved through the combination of SoC Leopard Pro Core Compiler and ARM926EJ Silicon Compiler, both from Socle.
“The SoC platform compiler from Socle is an enhancement in SoC design flow. In the era of consumer electronics with shorter product lifetime, the only one way to provide customers with best cost-performance ratio and competitive edges is developing more efficient output method for SoC design,” said Mr. David Lyou, Socle President. “This is also the goal to encourage Socle working hard always in professional SoC design service field.”
About Socle
Socle has devoted itself to the professional design platform solutions and design services of SoC for many years. The major R&D team of Socle consists of many well-experienced SoC design engineers, who come from world’s high-technology companies. With strong design team and core technologies, Socle services not only some important system and IC design companies, but also those located in America, Korea, and China. Socle provides world-leading IP and SoC design platform solution & design service, and breaks the threshold of SoC design with its boasting technologies – “SoC Design Implementation Platform” and “SoC Hardware Design Platform” – to enhance the integration capability of SoC. The mature design platform solutions and professional design services from Socle will extremely increase the successful chance and competitiveness of your SoC. www.socle-tech.com
|
Related News
- Dolphin Design chooses DEFACTO's SoC Compiler 9.0: a turnkey methodology to reduce project costs and increase team efficiency
- Socle Adopts Platform Core Compiler to Accelerate Customer SoC Design
- Defacto's SoC Compiler 10.0 is Released
- Defacto's SoC Compiler Certified ISO26262
- Synopsys, Ansys and Keysight Accelerate 5G/6G SoC Designs with New mmWave Reference Flow for TSMC Process Technology
Breaking News
- Arteris Joins Intel Foundry Accelerator Ecosystem Alliance Program to Support Advanced Semiconductor Designs
- SkyeChip Joins Intel Foundry Accelerator IP Alliance
- Siemens and Intel Foundry advance their collaboration to enable cutting-edge integrated circuits and advanced packaging solutions for 2D and 3D IC
- Cadence Expands Design IP Portfolio Optimized for Intel 18A and Intel 18A-P Technologies, Advancing AI, HPC and Mobility Applications
- Synopsys and Intel Foundry Propel Angstrom-Scale Chip Designs on Intel 18A and Intel 18A-P Technologies
Most Popular
- QuickLogic Delivers eFPGA Hard IP for Intel 18A Based Test Chip
- Siemens collaborates with TSMC to drive further innovation in semiconductor design and integration
- Aion Silicon Joins Intel Foundry Accelerator Design Services Alliance to Deliver Next-Generation Custom SoCs at Scale
- TSMC Unveils Next-Generation A14 Process at North America Technology Symposium
- BOS Semiconductors to Partner with Intel to Accelerate Automotive AI Innovation
![]() |
E-mail This Article | ![]() |
![]() |
Printer-Friendly Page |