I think, what's what the big trip up is gonna be? Is honestly not not getting voltage out. If we're doing AC and that kind of stuff. And that way, we can actually just make a sine wave. Yeah, that's, that's probably going to serve us but likeĪ fast digital analog converter. I know it sounds more like we need a discreet, like a DAC.
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It can swing the full negative 35 to positive 35. Right? Well, okay, something we got to remember this power supply. Okay, so a gain of 3.3 times to 35 volts. I think something that because on the digital end, we're gonna have 3.3 volt max. Or, you know, if you put a let's say, we had a signal that we applied 10 times gain, you could put 3.5 volts and get 35. That's gonna be a little hard to do, right? And so, you know, if you put 35 volts in, it would spit 35 volts out, We don't necessarily have to, we could always feed it a full scale signal and have a gain of one. And so there's nothing particularly special there, we can apply game to it. Yep, it's powered by positive negative 35 volts. Will? Okay, so let's, let's take a step back and look at this, the op amp design it basically, it's an inverting op amp configuration, just a really massive op amp on the output. So what's gonna be the best way for giving the OP? What does the op amp want to do are? Our output So now we're just trying to come up with, I guess, a scheme, you know, is it? Are we doing zero to five volts? Are we doing negative 10? To positive 10? Or what? We just don't know yet? Right? Well, okay, so the digital side is going to have to create some kind of analog signal to pass off to the power op amps. Okay, so let's say it's, I guess the first thing go for is let's talk about how do we control the voltage outputs of the device at the op amp? And so it's going to be what signal? Do we have to give the op amp from the digital side? To do our varying voltage? No, doesn't but at least gives us some, some where to start. So it really doesn't even tell us a whole lot. This is for some I've sent Oh, it's just the op amps and some resistors. I pulled a schematic that has maybe 10 parts on it. Build, talking about how the digital and analog interface is going to work. So as we were talking about last week is we're going to do a kind of live discussion of our super simple power supply. Hello, and welcome to the macro fad engineering podcast. The internet turned it from an innocent teenage to a something a little more obscene in 24 hours. Speaking of the internet ruining things, Microsoft created a new AI called TayTweets to help improve their automated call responses.Current winner of the poll is “RRS Boaty McBoatface”. There is an internet poll to vote on the new name of a $288M Arctic research vessel.
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Blinky party balloons are the way for the future! This material is flexable and bonds to silicon. Researchers at the Center for Neuroprosthetics at the École Polytechnique Fédérale de Lausanne (Parker couldn’t pronounce this) developed a partially solid and partially liquid alloy made from gallium and gold.Microchip changed the MPLAB logo again.One is the bridge and programs the second MCU. HEX file into a “thumb drive” style drive. Microchip publishes USB Mass Storage Loader that allows programing PICs by dropping the.Smallest BJT Parker can find is the 2SCR523V1T2L which is a DFN style package with a physical size is 0.8mm x 0.6mm x 0.35mm. Parker wants to try to build a discrete 555 timer inspired from Stephen’s opamp.The files can be found on the MacroFab github account. The opamp is designed for audio applications and Stephen wants to build a guitar effect pedal with them.
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He still needs to draw up the mechanical drawing to send off to the machine shop. Parker has the 3D layout of the Super Simple Power Supply and the FX Dev board enclosure done.Stephen has a new blog post about the Super Simple Power Supply.MultiSim has been a huge part in simulating the power supply design. Stephen and Parker do a live discussion on how the digital and analog side of the Super Simple Power Supply will interface with each other.