Uploaded October 2025 | Updated September 2026, 2 weeks ago
** Apologies... I found that the audio in this video is playing out of one channel only. Here's the corrected video with corrected audio track: youtu.be/0IRuidWLD3A
Learn how to design a real computer with KiCad High-Speed PCB Design — the latest hands-on course from Tech Explorations. In this project-based course, you’ll build a complete carrier board for the LattePanda Mu (Intel N100) compute module from schematic to manufactured PCB.
You’ll go beyond simple Arduino or ESP32 boards and master the same design principles used in professional embedded systems — including USB 3.0, HDMI, Gigabit Ethernet, and impedance-controlled differential pairs.
💡 You’ll learn:
• How to design a professional PCB stack-up and control signal integrity
• Differential pair routing for USB 3.0 and HDMI
• Grounding and power strategies that work in real-world designs
• Multi-sheet schematic management and DFM preparation
• Complete fabrication file generation for manufacturing
🎁 Launch offer: Get 30% OFF with coupon code HIGHSPEED30
Valid until November 10, 2025 (AEST).
If you prefer Udemy, the same coupon is valid until October 31, 2025 (PDT).
👉 Learn more and enrol via the blog post: https://txplo.re/speed_pcb
In this introductory video, I explain what you’ll achieve in the KiCad High-Speed PCB Design course. You’ll learn how to design and manufacture a complete LattePanda Mu carrier board step by step — managing multi-sheet schematics, applying impedance control, routing high-speed signals, and preparing your design for production. This lecture gives you a preview of the skills and techniques you’ll master as you learn to design a real, professional-grade computer board.
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** Apologies... I found that the audio in this video is playing out of one channel only. Here's the corrected video with corrected audio track: youtu.be/0IRuidWLD3A
Learn how to design a real computer with KiCad High-Speed PCB Design — the latest hands-on course from Tech Explorations. In this project-based course, you’ll build a complete carrier board for the LattePanda Mu (Intel N100) compute module from schematic to manufactured PCB.
You’ll go beyond simple Arduino or ESP32 boards and master the same design principles used in professional embedded systems — including USB 3.0, HDMI, Gigabit Ethernet, and impedance-controlled differential pairs.
💡 You’ll learn:
• How to design a professional PCB stack-up and control signal integrity
• Differential pair routing for USB 3.0 and HDMI
• Grounding and power strategies that work in real-world designs
• Multi-sheet schematic management and DFM preparation
• Complete fabrication file generation for manufacturing
🎁 Launch offer: Get 30% OFF with coupon code HIGHSPEED30
Valid until November 10, 2025 (AEST).
If you prefer Udemy, the same coupon is valid until October 31, 2025 (PDT).
👉 Learn more and enrol via the blog post: https://txplo.re/speed_pcb
In this introductory video, I explain what you’ll achieve in the KiCad High-Speed PCB Design course. You’ll learn how to design and manufacture a complete LattePanda Mu carrier board step by step — managing multi-sheet schematics, applying impedance control, routing high-speed signals, and preparing your design for production. This lecture gives you a preview of the skills and techniques you’ll master as you learn to design a real, professional-grade computer board.
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