Uploaded March 2025 | Updated September 2026, 1 week ago
Building a multiple power supply that fits into a single unit is a challenging task, much like going on a long hike.
I built one and am sharing my experience with you in this video.
The final result is a bit crude, but it works very well.
Why can this be considered the ultimate power supply? Because it features multiple adjustable outputs across three different units.
A total of four outputs, one of which is dual, provide the following voltages: 0-60V adjustable, 0-24V adjustable, +/-12V or 15V (dual), and 5V or 3.3V.
The maximum current is 10A for the 60V switching unit, with 83% efficiency, while the linear 24V supports 6.5A.
This provides a fully functional power supply for the laboratory. It allows for low-power output for control
circuits and high-power output for other testing purposes.
Questions? Watch the Q&A video here: youtu.be/OiGNj1KLx-8
Full series of #Electronics:
youtube.com/playlist?list=PLwbCeSU2Kq_zORt4un2iQ3JUYxzWF3cTJ
All technical details, including schematics, on my website: accidentalscience.com/19/The%20Ultimate%20Power%20Supply.html
Website: accidentalscience.com
Building a multiple power supply that fits into a single unit is a challenging task, much like going on a long hike.
I built one and am sharing my experience with you in this video.
The final result is a bit crude, but it works very well.
Why can this be considered the ultimate power supply? Because it features multiple adjustable outputs across three different units.
A total of four outputs, one of which is dual, provide the following voltages: 0-60V adjustable, 0-24V adjustable, +/-12V or 15V (dual), and 5V or 3.3V.
The maximum current is 10A for the 60V switching unit, with 83% efficiency, while the linear 24V supports 6.5A.
This provides a fully functional power supply for the laboratory. It allows for low-power output for control
circuits and high-power output for other testing purposes.
Questions? Watch the Q&A video here: youtu.be/OiGNj1KLx-8
Full series of #Electronics:
youtube.com/playlist?list=PLwbCeSU2Kq_zORt4un2iQ3JUYxzWF3cTJ
All technical details, including schematics, on my website: accidentalscience.com/19/The%20Ultimate%20Power%20Supply.html
Website: accidentalscience.com








![How to spot a fault in a circuit, like a pro : hands on electronics [1]
In this video I show the method to find out a fault on an electronic circuit board. In the specific case we have an ESC (Electronic Speed Control) that is used to control a washing machine motor (used to drive the spindle of a lathe) and somewhere in the circuit there is a faulty contact. It turns out it was a bad soldering that caused an uncertain contact, making the motor to start and stop randomly. The video shows the procedure to spot the exact point where the fault is present.
Wonder how to #faultfinding without schematic? Watch this video too: https://youtu.be/yjxuMwLN7zI
For more related/complementary content over my videos please visit my website accidentalscience.com.
Watch the full series of electronics: https://www.youtube.com/watch?v=ye9dguKy_Cs&list=PLwbCeSU2Kq_zORt4un2iQ3JUYxzWF3cTJ
Follow me on Facebook or Instagram
Website: https://accidentalscience.com How to spot a fault in a circuit, like a pro : hands on electronics [1]](https://i.ytimg.com/vi/ye9dguKy_Cs/mqdefault.jpg)

