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The 65 nm process is an advanced lithographic node used in volume CMOS semiconductor fabrication. Printed linewidths (i.e. transistor gate lengths) can reach as low as 25 nm on a nominally 65 nm process, while the pitch between two lines may be greater than 130 nm.
There are multiple possible date associated with a process node. The template uses the year of the first commercial production of a processor or memory chip as the reference date, rather than announcement, first experimental chip, first manufacturing prototypes, logic chips, etc.
The technology used a 32 nm SOI process, two CPU cores per module, and up to four modules, ranging from a quad-core design costing approximately US$130 to a $280 eight-core design. Ambarella Inc. announced the availability of the A7L system-on-a-chip circuit for digital still cameras, providing 1080p60 high-definition video capabilities in ...
In CPU fabrications, a die shrink always involves an advance to a lithographic node as defined by ITRS (see list). For GPU and SoC manufacturing, the die shrink often involves shrinking the die on a node not defined by the ITRS, for instance, the 150 nm, 110 nm, 80 nm, 55 nm, 40 nm and more currently 8 nm nodes, sometimes referred to as "half-nodes".
Process variation is the naturally occurring variation in the attributes of transistors (length, widths, oxide thickness) when integrated circuits are fabricated.The amount of process variation becomes particularly pronounced at smaller process nodes (<65 nm) as the variation becomes a larger percentage of the full length or width of the device and as feature sizes approach the fundamental ...
The new six-input LUT represented a tradeoff between better handling of increasingly complex combinational functions, at the expense of a reduction in the absolute number of LUTs per device. The Virtex-5 series is a 65 nm design fabricated in 1.0 V, triple-oxide process technology. [22] [23]
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65 nm 463 4 / 1 2007 PowerPC BGP: IBM: 850 MHz 90 nm 208 4 / 1 2008 Phenom: AMD: 1.8–2.6 GHz 65 nm 450 2, 3, 4 / 1 2008 z10: IBM: 4.4 GHz 65 nm 993 4 / 7 2008 PowerXCell 8i: IBM: 2.8–4.0 GHz 65 nm 250 1+8 / 1 2008 SPARC64 VII: Fujitsu: 2.4–2.88 GHz 65 nm 600 4 / 1 2008 Atom: Intel: 0.8–1.6 GHz 65–45 nm 47 1 / 1 2008 Core i7: Intel: 2. ...