This seems like a terrible use of helium from a sustainability perspective. There are some things that helium is truly essential for, like low temperature cryogenics and neutron detection. Our supply is finite and largely tied to natural gas reserves. When helium leaks out it floats into space and is gone forever. Why does the atmosphere in the drive absolutely have to be helium? Why not any other mix of inert gases…
my first thought was what happens when it leaks out?
Toshiba Unveils First FC-MAMR HDD: 18 TB, Helium Filled
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Re: Toshiba Unveils First FC-MAMR HDD: 18 TB, Helium Filled
#12Re: Toshiba Unveils First FC-MAMR HDD: 18 TB, Helium Filled
#13I remember hearing somewhere that helium will slowly leak through whatever vessel you try to contain it with. I wonder if that (is true, and if so whether it) imposes some kind of maximum life on these drives. Or maybe this is only hydrogen that is this problematic.
No expert, but it seems to make sense that helium is particularly hard to contain based on molecular diameter: Hydrogen 2.75 Angstroms Helium 2.18 Argon 3.67 Oxygen 3.64 Nitrogen 3.64 “Air” 3.74
Re: Toshiba Unveils First FC-MAMR HDD: 18 TB, Helium Filled
#14This seems like a terrible use of helium from a sustainability perspective. There are some things that helium is truly essential for, like low temperature cryogenics and neutron detection. Our supply is finite and largely tied to natural gas reserves. When helium leaks out it floats into space and is gone forever. Why does the atmosphere in the drive absolutely have to be helium? Why not any other mix of inert gases…
Backblaze did a blog post about helium drives in 2018: https://www.backblaze.com/blog/helium-filled-hard-drive-fail... Some interesting stuff in there, like the SMART data element for helium status. And this quote, after they had 3 years in with helium drives: "To date only one HGST drive has reported a value of less than 100, with multiple readings between 94 and 99." But, then, later, this quote: "My prediction is…
can't you check their follow-up reports they've posted? I believe that they break out AFR numbers by drive model so it shouldn't be too hard to separate out the helium drives from the normal drives.
Re: Toshiba Unveils First FC-MAMR HDD: 18 TB, Helium Filled
#15I remember hearing somewhere that helium will slowly leak through whatever vessel you try to contain it with. I wonder if that (is true, and if so whether it) imposes some kind of maximum life on these drives. Or maybe this is only hydrogen that is this problematic.
No expert, but it seems to make sense that helium is particularly hard to contain based on molecular diameter: Hydrogen 2.75 Angstroms Helium 2.18 Argon 3.67 Oxygen 3.64 Nitrogen 3.64 “Air” 3.74
Re: Toshiba Unveils First FC-MAMR HDD: 18 TB, Helium Filled
#16Earlier quoted context omitted.
No expert, but it seems to make sense that helium is particularly hard to contain based on molecular diameter: Hydrogen 2.75 Angstroms Helium 2.18 Argon 3.67 Oxygen 3.64 Nitrogen 3.64 “Air” 3.74
Fascinating - I had expected helium to be a larger molecule than hydrogen.
Edit: Oops. Still relevant since it's H2 in play here, but yes, not hyrdrogen vs helium.
Re: Toshiba Unveils First FC-MAMR HDD: 18 TB, Helium Filled
#17Can someone explain why this FC-MAMR tech is significant?
Re: Toshiba Unveils First FC-MAMR HDD: 18 TB, Helium Filled
#18Earlier quoted context omitted.
No expert, but it seems to make sense that helium is particularly hard to contain based on molecular diameter: Hydrogen 2.75 Angstroms Helium 2.18 Argon 3.67 Oxygen 3.64 Nitrogen 3.64 “Air” 3.74
Fascinating - I had expected helium to be a larger molecule than hydrogen.
Re: Toshiba Unveils First FC-MAMR HDD: 18 TB, Helium Filled
#19This seems like a terrible use of helium from a sustainability perspective. There are some things that helium is truly essential for, like low temperature cryogenics and neutron detection. Our supply is finite and largely tied to natural gas reserves. When helium leaks out it floats into space and is gone forever. Why does the atmosphere in the drive absolutely have to be helium? Why not any other mix of inert gases…
Re: Toshiba Unveils First FC-MAMR HDD: 18 TB, Helium Filled
#20Can someone explain why this FC-MAMR tech is significant?
By heating up a small dot on the disk, that small section will change it's bits easier. As such, we can shove more bits into the same area.
Energy-assist hard drives is the next step, leading to more and more bits in a smaller area.