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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.
2 nm process; 3 nm process; 5 nm process; 7 nm process; 10 nm process; 14 nm process; 22 nm process; 32 nm process; 45 nm process; 65 nm process; 90 nm process; 130 nm process; 180 nm process; 250 nm process; 350 nm process; 600 nm process; 800 nm process; 1 μm process; 1.5 μm process; 3 μm process; 6 μm process; 10 µm process
The reduction to 65 nm reduced the existing 230 mm 2 die based on the 90 nm process to half its current size, about 120 mm 2, greatly reducing IBM's manufacturing cost as well. On 12 March 2007, IBM announced that it started producing 65 nm Cells in its East Fishkill fab. The chips produced there are apparently only for IBMs own Cell blade ...
Cell BE 65 nm, same as above but manufactured on a 65 nm process PowerXCell 8i, same as above but with enhanced double precision SPEs and support for DDR-RAM Supercomputer
The POWER6 has approximately 790 million transistors and is 341 mm 2 large fabricated on a 65 nm process. A notable difference from POWER5 is that the POWER6 executes instructions in-order instead of out-of-order. This change often requires software to be recompiled for optimal performance, but the POWER6 still achieves significant performance ...
The PowerXCell is manufactured on a 65 nm process, and adds support for up to 32 GB of slotted DDR2 memory, as well as dramatically improving double-precision floating-point performance on the SPEs from a peak of about 12.8 GFLOPS to 102.4 GFLOPS total for eight SPEs, which, coincidentally, is the same peak performance as the NEC SX-9 vector ...
reengineered P6-based microarchitecture used in Intel Core 2 and Xeon microprocessors, built on a 65 nm process, supporting x86-64 level SSE instruction and macro-op fusion and enhanced micro-op fusion with a wider front end and decoder, larger out-of-order core and renamed register, support loop stream detector and large shadow register file.
Yonah is the code name of Intel's first generation 65 nm process CPU cores, based on cores of the earlier Banias (130 nm) / Dothan (90 nm) Pentium M microarchitecture.Yonah CPU cores were used within Intel's Core Solo and Core Duo mobile microprocessor products.