How to design an Interlaken to SPI-4.2 bridge
By Farhad Shafai (Sarance Technologies) and Sri Purisai (Altera)
May 30 2007 (16:34 PM), Courtesy of Programmable Logic DesignLine
The future of networking is about higher bandwidth and lower power. More and more applications, such as video, continue to drive the bandwidth demands placed on networking equipment. At the same time, networking equipment must deliver these higher bandwidths without a dramatic increase in power consumption. Every aspect of a system is affected by these requirements and – specifically for chip-to-chip interconnect technology – traditional solutions fail to meet these demands.
Interlaken is a relatively new chip-to-chip interconnect technology develop by Cisco Systems and Cortina Systems to help pave the way for the future of networking. Interlaken is based on low-power high-speed serial links and it is designed to be easily scalable to any bandwidth. It can meet the demand of today's 20 Gbps and tomorrow's 100 Gbps system by providing the following features:
- Low pin-count, low-power serial connectivity
- Channelized protocol
- Robust error checking and management
- Low protocol overhead
To read the full article, click here
Related Semiconductor IP
- Interlaken Verification IP
- Interlaken Verification IP
- Interlaken Synthesizable Transactor
- INTERLAKEN IIP
- Interlaken Verification IP
Related Articles
- How to manage changing IP in an evolving SoC design
- How to Elevate RRAM and MRAM Design Experience to the Next Level
- How to Design Secure SoCs: Essential Security Features for Digital Designers
- How to design secure SoCs, Part II: Key Management
Latest Articles
- A Secure dToF LiDAR SoC with Dual-Domain Fingerprinting and Event-Driven AFE Circuit Achieving Sensor-Level Attack Resilience
- ZTA-Q: an Open-source RISC-V Platform for Accurate Quantized CNN Inference
- Automated Pre-Silicon Verification of High-Speed DDR5 and LPDDR5/6 Memory Controllers: Closed-Loop Timing, Mode Register, and PHY Synchronization in UVM
- U-Sonic: An Open-Source 8-Channel Ultrasound Transmit IP in a 130 nm RISC-V SoC
- S-ALSA: Co-Design of Adiabatic Logic-based Sensing and Balanced Bit-Cells for Secure and Energy-Efficient MRAM