射频(RF)设计在高频下运行,因此需要精密的布局和布线以防止出现信号完整性问题。 RF PCB布局有时可能还包含带有数字元件的线段,精密的布局有助于防止RF和数字信号之间发生干扰。浏览我们的资源库,了解有关RF PCB设计、布局、布线和信号完整性的更多信息。
Explore how 5G and 6G technologies are reshaping RF components, PCBs, and packaging, driving innovations in speed, integration, and thermal performance.
Transform RF design with Ultra HDI technology that boosts performance, improves signal integrity, and solves thermal challenges for high-frequency applications.
Copper roughness is perhaps the one factor creating the greatest uncertainty in transmission line impedance. Yes, different solvers have different
High frequency capacitors, resistors, and inductors are eventually dominated by parasitics. Here's what data sheets can tell you about these components and how to simulate them.
Series and parallel termination are the most common resistive termination options for digital signaling. The reason is that resistance is
在传输线上的信号在传播过程中会遭受损失,但是这些损失在PCB传输线方程中很少出现。阅读这份传输线分析的终极指南,学习如何设计传输线以达到损失目标。