A 189 Year Old Limitation on Inductor Size Has Been Broken (2018)
11–20 of 55 posts
Re: A 189 Year Old Limitation on Inductor Size Has Been Broken (2018)
#12What medium is paid access now? Do they pay the content creators?
Well, it's a register wall, not a pay wall. Agree it's annoying. The real annoying part to me is that Google seems to treat it the same as freely available no-registration content.
Re: A 189 Year Old Limitation on Inductor Size Has Been Broken (2018)
#13Earlier quoted context omitted.
But it's a good start, no? And the theory has been proven as sound. I'm guessing/hoping they'll target the higher ranges soon.
Its a material that basically gives electrons "inertia" which acts like an inductance derived from magnetic fields. There is a time constant to it, which determines at what frequency range it starts contributing to the inductance value. To make it useful for power electronics they would have to push out this time constant by at least 4 orders of magnitude, I don't believe the theoretical material properties support t…
Re: A 189 Year Old Limitation on Inductor Size Has Been Broken (2018)
#14What's the big picture here? What are the uses for smaller inductors?
Re: A 189 Year Old Limitation on Inductor Size Has Been Broken (2018)
#15Earlier quoted context omitted.
But it's a good start, no? And the theory has been proven as sound. I'm guessing/hoping they'll target the higher ranges soon.
Its a material that basically gives electrons "inertia" which acts like an inductance derived from magnetic fields. There is a time constant to it, which determines at what frequency range it starts contributing to the inductance value. To make it useful for power electronics they would have to push out this time constant by at least 4 orders of magnitude, I don't believe the theoretical material properties support t…
Re: A 189 Year Old Limitation on Inductor Size Has Been Broken (2018)
#16Re: A 189 Year Old Limitation on Inductor Size Has Been Broken (2018)
#17It mentions 50 percent greater inductance than a a regular coil. Which is great, but would only reduce the size by a third. I imagine this has some use cases that would merit the higher cost (graphene is expensive, right?). But probably not many.
Re: A 189 Year Old Limitation on Inductor Size Has Been Broken (2018)
#18The medium article links to a nature article which explains in depth: https://www.nature.com/articles/s41928-017-0010-z This seems like an interesting development, but the performance gain appears to be limited to low value inductors in the 10's of GHz range. Those inductors are already very small and easily integrated on RF ICs. If you want to miniaturize electronics you need to miniaturize the inductors used in pow…
One of the major limitations of existing planar spiral inductors is that their external magnetic fields will couple them to other nearby inductors creating a transformer. The big space saving for these could be the ability to lay down snake shaped inductors next to each other with very low coupling. Do they mention this in the article?
[1] I was unable to read the full article.
Re: A 189 Year Old Limitation on Inductor Size Has Been Broken (2018)
#19The medium article links to a nature article which explains in depth: https://www.nature.com/articles/s41928-017-0010-z This seems like an interesting development, but the performance gain appears to be limited to low value inductors in the 10's of GHz range. Those inductors are already very small and easily integrated on RF ICs. If you want to miniaturize electronics you need to miniaturize the inductors used in pow…