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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 speeds are advertised as double the base clock rate due ...
Memory type DDR4-3200, 2 slots DDR5-5600, 2 slots DDR4-3200, 2 slots Memory capacity Up to 2×32 GB at time of purchase: Up to 2x48 GB at time of purchase 1× GB Storage 1x M.2 2280, Up to 4 TB WD SN850X at time of purchase: 256 GB NVMe: Cooling 28 W rated dissipation, 2×5 mm heatpipe and 65 mm fan: 30 W rated dissipation, 1x10 mm heatpipe and ...
A mid-range model has a quad-core i7-4702HQ CPU, 3200×1800 PPS (similar to IPS) touchscreen, 16 GiB RAM, GT 750M GDDR5 GPU, a 1 TB HDD with 32 GiB SSD cache, and a 61 Wh battery. The high-end edition is mostly the same as the mid-range model but replaces the HDD with a 512 GB mSATA SSD and adds a larger 91 Wh battery in place of the 2.5" drive.
DDR3 memory chips are being made commercially, [11] and computer systems using them were available from the second half of 2007, [12] with significant usage from 2008 onwards. [13] Initial clock rates were 400 and 533 MHz, which are described as DDR3-800 and DDR3-1066 (PC3-6400 and PC3-8500 modules), but 667 and 800 MHz, described as DDR3-1333 ...
Dynamic random-access memory (dynamic RAM or DRAM) is a type of random-access semiconductor memory that stores each bit of data in a memory cell, usually consisting of a tiny capacitor and a transistor, both typically based on metal–oxide–semiconductor (MOS) technology. While most DRAM memory cell designs use a capacitor and transistor ...
As with earlier memory generations, faster DDR3 memory became available after the release of the initial versions. DDR3-2000 memory with 9-9-9-28 latency (9 ns) was available in time to coincide with the Intel Core i7 release in late 2008, [ 19 ] while later developments made DDR3-2400 widely available (with CL 9–12 cycles = 7.5–10 ns), and ...
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