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The first, the SSD 510, used an SATA 6 Gigabit per second interface to reach speeds of up to 500 MB/s. [14] The drive, which uses a controller from Marvell Technology Group, [15] was released using 34 nm NAND Flash and came in capacities of 120 GB and 250 GB. The second product announcement, the SSD 320, is the successor to Intel's earlier X25-M.
DDR4 RAM operates at a voltage of 1.2 V and supports frequencies between 800 and 1600 MHz (DDR4-1600 through DDR4-3200). Compared to DDR3, which operates at 1.5 V with frequencies from 400 to 1067 MHz (DDR3-800 through DDR3-2133), DDR4 offers better performance and energy efficiency .
DDR4 replaced DDR3 on the Intel X99 LGA 2011 platform, aka Haswell-E, and is also used in AMD's Threadripper platform. [16] DDR3 quad-channel architecture is used in the AMD G34 platform and in the aforementioned Intel CPUs prior to Haswell.
Top and bottom sides of a 100GB Intel DC S3700 SATA SSD and a 120GB Intel 535 mSATA SSD. Flash memory, a key component in modern SSDs, was invented in 1980 by Fujio Masuoka at Toshiba. [ 132 ] [ 133 ] Flash-based SSDs were patented in 1989 by the founders of SanDisk , [ 134 ] which released its first product in 1991: a 20 MB SSD for IBM laptops ...
DDR4 ECC: 256 GB 2x PCIe x16 Gen 3, up to 300 W: USB 3.0 Precision T5610 [42] 2013 Dual LGA 2011: Xeon E5-2600 v2 QPI: Intel C602 RDIMM ECC: 128 GB 2x PCIe x16 Gen 3, up to 300 W: USB 3.0 Precision T5600 [43] 2012 Dual LGA 2011: Xeon E5-2600 family 64-bit, up to eight-cores QPI: Intel C600 DDR3 ECC RDIMM (Quad Channel) 128 GB 2x PCIe x16 Gen 3 ...
1 M.2 2280 SSD, 1 2.5" HDD 65 or 90 W Power Adapter Small Form Factor (SFF) 7040 to 7070 ... DDR4 3200 / DDR5 4400 128 GB MT, SFF Based on OptiPlex 7000 —