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Every time Intel® announces the availability of new processors, in this case for gaming- oriented desktop configurations , many users ask the following question: is it worth upgrading my PC?
Generational
leaps go hand in hand with advances in microarchitecture and the chip
manufacturing process, alternating both so that the manufacturer can improve
the energy efficiency and performance of its processors without affecting
availability.
In this
way, the new 11th generation Intel® Core ™, known by its code name as Rocket
Lake-S, improve the IPC value (instructions per clock cycle) by 19% compared to
the previous ones, assuming a higher number of arithmetic operations in the
same clock cycle.
Using the
14nm manufacturing process with fewer CPU cores has allowed the company more
space on the silicon wafer to deliver a hybrid architecture, integrating the
Intel® Xe Gen12 graphics from the 10nm FitFET process. , which are much more
advanced and efficient.
What may be a step
backward in total CPU core count for some is offset by an increase in IPC
efficiency, with graphics performance not previously seen in previous
generations with Intel® UHD.
Intel uses
the X3 cores of the CPUs of its 11th generation Tiger Lake laptop chips, as
well as the most advanced Tiger Lake media engine with which to increase the
PCI Express 4.0 up to a maximum of 20 lines and to be able to decode following
codecs generation like the AV1.
This makes
them especially efficient in aspects such as image rendering and transcoding,
achieving an extra performance in graphics that reaches 50% in many of the
situations that are aligned with the reproduction of games.
The new Intel
Core ™ i9 and Core ™ i7 series is made up of processors with 8 cores
and 16 threads whose speeds reach 5.3 GHz for the most demanding in the gaming
section.
Below that
are the Core ™ i5 with 6 cores and 12 threads, or the Core ™ i3 with 4 cores
and 8 threads as a cheaper option, all of them with speeds that can scale up to
4.4 GHz thanks to the deployment of technologies such as Intel® Turbo Boost or
HyperThreading.
Deep Learning improves the use of instructions
For the new family of
processors to achieve a double-digit performance improvement, it is crucial
that the chip can handle new algorithms, for which Deep Learning Boost technology,
also known as DL Boost, comes into play.
For the first time,
Intel is equipping its desktop processors with the ability to work with AVX-512
512-bit vector instructions, a technology inherited from the range of server
chips that gives it greater computing power.
In
essence, these libraries also allow complex mathematical calculations to be
processed like simple neural network calculations, increasing performance and
freeing the processor from arduous tasks to reduce power consumption.
Flexible overclocking
Beyond the stated
performance, PC gaming enthusiasts are in luck as this new 11th generation
Intel® Core ™ offers an improved overclocking experience ,
with the ability to adjust a multitude of parameters.
From the
outset, this family of chips formally adopts system RAM memory overclocking ,
applicable in real time and in a transparent way for the user. Under
Windows interface, we can adjust power, speed or voltage parameters, taking the
machine to the maximum of its possibilities.
Intel®
XMP-compliant memory modules of the type DDR4-3200 come with default optimal
settings so that motherboards can detect and adjust them to take full advantage
of the hardware with an immediate impact on the overall performance of the
computer.
Many current games
with titles like Civilization VI, Assassin's Creed Odyssey or Horizon Zero Dawn
consume large system resources. If you are one of those whos play,
broadcast and record your games simultaneously in multitasking mode, this new
generation of processors is designed for you.
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