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BTW, Corrections to this video are at the bottom of the description. Intro 0:00 Unboxing 1:11 DevBoard 3:04 How to Order 3:20 Pots 3:42 Jacks 3:50 DIP Switch 4:14 Codec Chip on Dev Board 0:43 Tap Tempo 4:44 Program Select Knob 4:56 Programmer 5:30 Bare Chips 6:19 Sound Demos 7:50 Cathedral Reverb 9:25 Delay 9:54 Chorus 10:59 Auto Wah 11:42 Who this board is for 12:04 FXCore Social Media 12:44 If you like this video, please buy me a coffee, so I can keep making more! https://www.buymeacoffee.com/diydsp Main Forum: http://experimentalnoize.com/forum/ Subreddits: / fxcore Facebook Group: / 293398245750164 Discord (by request) Order in the USA: http://www.experimentalnoize.com/prod... Order in England: https://www.profusionplc.com/parts/fx... Other important subreddits: / diydsp / diyinstruments Other people making pedals: Greenhouse Effects https://www.gheffects.com/ Axoloti, for a GUI instead of programming in Assembly https://axoloti.com http://community.axoloti.com/ Akso, a speed upgraded Axoloti https://zrna.org/akso https://forum.zrna.org/ Corrections (from manufacturer ExperimentalNoize): 1. The good news is there's one more potentiometer input than I said in the video. If you go back you can even see where I failed to count to 6 instead of 5 2. The amount of memory is same as FV-1. Now I don't know what made me think that. I only quickly glanced over the data sheet and must have been made some assumption about the length of the address space based on a few numbers? I don't know, but anyway, now you have it from an authoritive source that the amounts of RAM are the same. (And as to whether the additional CPU power of the FXCore will allow some simple compression algorithms remains to be seen...) 3. The chip is apparently capable of accessing all four inputs and outputs *at the same time*. !! I don't know even know what to do with all the extra power yet...