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> but I don't see any $39 128GB SLC SSDs being made, nor $13 ~40GB SLC SSDs Shouldn’t it be 2^3 times more expensive than TLC? IOW a $104 128GB SLC SSD or a $1
by smartbit 4y ago
> but I don't see any $39 128GB SLC SSDs being made, nor $13 ~40GB SLC SSDs
Shouldn’t it be 2^3 times more expensive than TLC? IOW a $104 128GB SLC SSD or a $13 16GB SLC SSD.
Edit: guess you’re right userbinator
- userbinator 4y agoNo. Each cell in TLC stores three bits (and has 8 actual voltage levels, hence the misnomer), and thus TLC should either be a third of the cost of SLC at the same density, or three times the density as SLC for the same cost.
- drtgh 4y agoNAND cell modes: SLC 1-bit per cell, MLC 2-bit, TLC 3-bit, QLC 4-bit. And those cell modes are usually determined by the firmware/hardware controller of the NAND memory. The more bits stored per cell, the greater is the degradation. SLC-mode requires in average 2.2 times more erase cycles than MLC to achieve the same error rate [1]. So the differences in prices make it look as if some manufacturers are playing with us... [1] https://www.researchgate.net/publication/254005562_Software_controlled_cell_bit-density_to_improve_NAND_flash_lifetime https://www.researchgate.net/publication/254005562_Software_... PS: QLC-mode is the worst in all terms, the highest degradation and lower speed.
- vbezhenar 4y agoDoes it mean that with "raw" flash it's possible to use it in either mode? I guess it should not be impossible to create DIY SSD?
- ilyt 4y agoIt's essentially charging a cell to a level on write and measuring the voltage on read. So technically it's up to firmware to decide, assuming the hardware have stuff (ADC/DAC etc.) to handle it would be possible.