3/5/2023 0 Comments Delete subcircuit icircuit![]() ![]() One area of exploratory compromise is using components that might be difficult or impossible to come by. Thus I think it's important to duplicate this computer in such a way as to map out(or design) the intended real-world solution. The power of using software like SimulIDE would simply be lost if a circuit was engineered to only function inside SimulIDE. If the goal was just to play with an emulated bread board computer it would be much simpler to whip up something along the lines of the Virtual Apollo Guidance Computer software. I was thinking about it and the answer is more philosophical than logical. some of these bugs might be solved in later versions. the program should never come to this code if there are not connectors in both pins.īut again. This is a good chance to test, fix and improve simulide capabilities.įixing that will hide the real problem. To get your project working eficiently in simulide will probably require some more fixes and new components. If not you can end up with a huge circuit that will be too slow to simulate. I guess you are working in a complex project with many subcircuits, i think you should try to use the simplest and fastest subcircuits you can, better if you use fast single components instead of gate-level subcircuits. Think that 2 of the 3 555 are just for debouncing purposes, switches in simulide don't bounce, so these 555 are not needed to get the same functionality.Īttached all files needed working for last svn commit (trunk).Īny gate-level subcircuit for this task will be very complex. I did a simplified version of your 555 based clock and the corresponding subcircuit, very simple and working well. I think you should definetly try last svn commit (trunk). There is also implemented a new much easier system to create packages and subcircuits. This issue and some other issues in subcircuits are solved in last svn commit (trunk). You are right, 555 was not working in subcircuits. ![]()
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