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The primary goal of your traces is to carry signals throughout your board without losses. To do this properly, you
Today’s PCBs contain many transmission lines. Combine this with increased clock frequencies and data rates and the result is a critical challenge to high-speed design. Neglecting these dynamics can undermine product development by compromising performance, power consumption, EMC/EMI compliance, and more - leading to delayed design cycles and opening gaps that can be exploited by your competition. Hone your high-speed design skills by joining us as we discuss the typical transmission lines encountered in today’s designs, the PCB variables that affect impedance, as well as how to create, calculate, and design transmission lines in Altium Designer. Learn how to maximize the built in SIMBEOR® engine by Simberian to craft impedance profiles and manage transmission lines in your designs. This Live Webinar recording covers the following: Current trends in electronics development PCB transmission line model and impedance calculations Transmission line with specified impedance in Altium Designer Don’t pass up on this opportunity to experience the industry’s best in class design experience!
Altium Designer 20 ushers in a whole new era of possibilities and amongst them is a truly game-changing Interactive Routing
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Series and parallel termination are the most common resistive termination options for digital signaling. The reason is that resistance is
If you work in the electronics industry or in research, there’s a chance that simulations are a regular part of
The knee frequency has nothing to do with signal bandwidth, but it has everything to do with channel bandwidth.
Let’s all agree to stop using the PCB critical length rule in high-speed PCB design.