"When a printed circuit board (PCB) includes a power plane that is near to signal traces or other power planes, there is a significant risk of energy transfer between parts of the system. Not only does this coupling lead to power switching noise being transferred into data signals, it also means that power supply systems may demonstrate additional resonances that are not seen in the individual components. This can affect the power integrity of the PCB and may reduce its speed or reliability. This paper will explore some of the potential power integrity issues that can affect a PCB and explain how simulation can be used to help reduce these effects."
Source: Analyzing Power Integrity Issues from Power Plane Interactions - White Paper
'via Blog this'
Wednesday, May 4, 2016
Analyzing Power Integrity Issues from Power Plane Interactions
Tuesday, May 3, 2016
Product how-to: HSPICE accurately analyzes gigabit circuits like DDR4 & USB3 | EDN
Monday, May 2, 2016
Design Rules| Hughes Circuits
Support | Hughes Circuits:
Hughes Circuits has design rules that can be downloaded and imported into popular CAD tools like PADs and Altium.
'via Blog this'
Hughes Circuits has design rules that can be downloaded and imported into popular CAD tools like PADs and Altium.
'via Blog this'
Wednesday, April 27, 2016
NanoClear Stencil Coating | Electronic Stencil Treatment - Aculon
NanoClear Stencil Coating | Electronic Stencil Treatment - Aculon:
'via Blog this'
NanoClear Stencil Treatment
Aculon, an award-winning & proven supplier to the stencil industry, introduces Aculon NanoClear®, the best-in-class stencil treatment technology that improves print quality, increases efficiency, lowers total costs and enhances printing with small apertures.
'via Blog this'
Subscribe to:
Posts (Atom)

