Viewpoint: More to IP reuse than software tweaks
EE Times (02/25/2009 11:50 AM EST)
As long as the process technologists continue to make it practical to deploy an increasing number of gates, creative design engineers will find ambitious new ways to use those gates to build competitive advantage.
Platform-based design with heavy IP reuse will continue to proliferate as more functionality is included into tomorrow's chip, but differentiation through software alone falls short of power and performance requirements.
Leading edge semiconductor and consumer products companies will continue to differentiate their products beyond IP reuse with proprietary functionality implemented in hardware. In order to maintain their competitive edge, they increasingly turn to higher levels of abstraction and synthesis for creating these proprietary hardware blocks.
While it is certainly true that platform-based design and IP reuse reduces effort compared to creating new hardware in RTL, assembling existing IP blocks is not a complete strategy for creating new SoCs comprising tens of millions of gates. Ways to create custom hardware more efficiently than handwriting RTL are also needed.
To read the full article, click here
Related Semiconductor IP
- Root of Trust (RoT)
- Fixed Point Doppler Channel IP core
- Multi-protocol wireless plaform integrating Bluetooth Dual Mode, IEEE 802.15.4 (for Thread, Zigbee and Matter)
- Polyphase Video Scaler
- Compact, low-power, 8bit ADC on GF 22nm FDX
Related White Papers
- Defining platform-based design
- Tools For Reprogrammability -> Platform-based design ups productivity
- Platform-Based Design: The Pragmatic Solution for SoCs
- Platform-Based Design Propels Growth in Europe
Latest White Papers
- Monolithic 3D FPGAs Utilizing Back-End-of-Line Configuration Memories
- Reimagining AI Infrastructure: The Power of Converged Back-end Networks
- 40G UCIe IP Advantages for AI Applications
- Recent progress in spin-orbit torque magnetic random-access memory
- What is JESD204C? A quick glance at the standard