Driving Analog Mixed Signal Verification through Verilog-AMS
Sri Chandra
Abstract
Sri Chandra
Abstract
The complexity of today's SoCs and applications are driving the need for faster and more accurate mixed signal verification. Additionally the percentage of analog content in mixed-signal designs is increasing rapidly. This requires a change in mindset: no longer can the analog and digital modules be verified independantly. For these reasons Accellera has been leading the development of the Verilog-AMS standard, to enable accurate mixed signal design verification of systems containing thousands of analog/digital interface connections. The presentation will discuss the recent language enhancements that have been driven by the Verilog-AMS technical committee, to make system level analysis of analog and mixed signal designs much more efficient and accurate.
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The complexity of today's SoCs and applications are driving the need for faster and more accurate mixed signal verification. Additionally the percentage of analog content in mixed-signal designs is increasing rapidly. This requires a change in mindset: no longer can the analog and digital modules be verified independantly. For these reasons Accellera has been leading the development of the Verilog-AMS standard, to enable accurate mixed signal design verification of systems containing thousands of analog/digital interface connections. The presentation will discuss the recent language enhancements that have been driven by the Verilog-AMS technical committee, to make system level analysis of analog and mixed signal designs much more efficient and accurate.
Key concepts: Mixed-signal integrated circuit, Computer science, Verilog, Analog signal, SIGNAL (programming language), Interface (matter), Mindset, Computer architecture