Tiny Titan
tinytitan.github.io
Tiny Titan
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Re: Tiny Titan
#2Re: Tiny Titan
#3Re: Tiny Titan
#4More descriptive title, e.g. ‘Tiny Titan, a $1,000 classroom supercomputer’ would be helpful.
Re: Tiny Titan
#5Re: Tiny Titan
#6https://github.com/rcarmo/raspi-cluster
Using Pi 3 boards would quadruple the number of cores and yield a 600% increase in thanks to the slightly faster default clock rate...
Re: Tiny Titan
#7This is still using original Series Bs... which are essentially obsolete by now. I stopped using them around 2 years ago: https://github.com/rcarmo/raspi-cluster Using Pi 3 boards would quadruple the number of cores and yield a 600% increase in thanks to the slightly faster default clock rate...
Re: Tiny Titan
#8This is still using original Series Bs... which are essentially obsolete by now. I stopped using them around 2 years ago: https://github.com/rcarmo/raspi-cluster Using Pi 3 boards would quadruple the number of cores and yield a 600% increase in thanks to the slightly faster default clock rate...
They're not actually trying to build a high-powered computing cluster, just demonstrate how one works.
But using one with old B boards could be excruciatingly slow at times, which is why I just had to upgrade mine - it’s since become a lot more productive in the sense that my tests take around 5 minutes instead of a whole hour :)
Re: Tiny Titan
#9More descriptive title, e.g. ‘Tiny Titan, a $1,000 classroom supercomputer’ would be helpful.
How does this cost $1,000? The budget is clearly not being used efficiently. The only computing part, the 9 RPi's are 315$ all together. So what, 685$ of plastic and accessories. Hmm....
Re: Tiny Titan
#10Why not just use virtual machines to sub out the RPis? Without the curriculum, it's not clear what they're trying to teach here. Assembly? Networking? Administration of the RPis?