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PCB design for high current

PCB Design for High Current: Prioritizing Safety

PCB design for high current presents heat management, trace width, and connection challenges. Read our suggested solutions here.
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Blog
T flipflop1

T Flip-Flop SPICE Model: Explained

This blog will discuss the information needed to create a T Flip-Flop SPICE Model and how to model it efficiently with the PSpice Modeling Application.
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Blog
JernberPI Sept Fig1

Jernberg PI #7: PDN Design- The Case of the Missing PDN Owner

As technology trends towards smaller, faster, cheaper, the challenges around good PDN design are getting more difficult. But who is responsible for the PDN design?
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Figure 2 0

Jernberg PI #6: Your PDNs Other Job – Closing the Loop with the Return Path

Creating an uninterrupted return path flow will ensure your PDN is sufficient both in delivery and its ability to provide adequate returns.
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Blog
1

Jernberg PI #5: The Case Of the Noisy PDN

Fast interfaces and switching speeds are becoming commonplace and with that comes increased noise, amplifying any problems within the power delivery network. Products today are the direct result...
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Picture7

Jernberg PI #4: Meeting On-time Power Requirements All the Time

Achieving a robust and functioning power distribution network isn’t difficult, if we provide both the capacity and responsiveness needed at each device. Previous articles addressed capacity...
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Reviewing your PCB layout should include an accurate 3D visual inspection.

Insights on How to Review a PCB Layout

Knowing how to review a PCB layout effectively is a significant asset for optimizing your board development and avoiding unnecessary costs and waste.
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jkflipflop

JK Flip-Flop SPICE Model: Explained

This blog will discuss the information needed to create a JK Flip-Flop SPICE Model and how to model it efficiently with the PSpice Modeling Application.
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Blog
MicrosoftTeams image 1

Jernberg PI #3: The Case of the Unresponsive PDN

Placement of decoupling capacitors and size as well as loop inductance directly affects the responsiveness of the Power Delivery Network.
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EMA Design Automation