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techfoogle · 1 year
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diginiam · 2 years
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Nowadays, processors are a necessity for any software development project. But which processor is the best for software development?
This blog looks at all the relevant factors and ranks the processors from best to worst based on those factors.
So whether you are a beginner or an experienced programmer, read on for advice on choosing the best CPUs for software development in 2022!
I have a new computer that will most support coding and software development (Java scripts).
Here need this software to perform other tasks like graphic design and software. I did extensive research, and based on what I found, the best CPU for Virtualization my purpose was the Intel Core i5-12600K.
I think. There is probably a costly machine out there that beats that one in most respects, but in my budget, I think it is everything I want: 10 cms. It is multitasking, 3. GHz. Is PC gaming an acceptable choice?
When picking the best CPU for coding, there are a variety of factors to take into account. Clock speed is not an essential factor for most consumers.
For gaming, however, clock speed is still vital, and the more cores available, the better for intensive workloads. Clock speeds on the fastest CPUs in a given processor line will be the greatest.
Entry-level computers are designed with Intel CPUs in the Core i3 and i7 series. High-end gaming laptops and coding laptops are best performed with i9 processors. For basic applications, AMD offers the Athlon and Ryzen lines.
More cores in newer CPUs provide enhanced performance. They are ideal for hard-core coding because they have a stronger memory than their predecessors.
To code successfully, you need a good CPU. Here are the best CPU for software development in 2022. Make the right choice and start coding today!
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munafekideal · 9 days
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Top CPUs for Gaming in 2024
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techwargr · 11 days
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Intel Διακόπτει Οριστικά Τη Σειρά "K" 13ης Γενιάς Core "Raptor Lake" CPUs!
New Post has been published on https://www.techwar.gr/958/intel-diakoptei-oristika-ti-seira-k-13is-genias-core-raptor-lake-cpus/
Intel Διακόπτει Οριστικά Τη Σειρά "K" 13ης Γενιάς Core "Raptor Lake" CPUs!
Σε μια αιφνιδιαστική κίνηση, η Intel ανακοίνωσε την άμεση διακοπή της σειράς “K” 13ης γενιάς Core (Raptor Lake) CPUs, γνωστών και ως μοντέλα με ξεκλείδωτο πολλαπλασιαστή. Η απόφαση, που επηρεάζει CPUs όπως οι Core i9-13900KS, Core i9-13900K, Core i9-13900KF, Core i7-13700K, Core i7-13700KF, Core i5-13600K και Core i5-13600KF, έρχεται ύστερα από περίπου 1.5 χρόνο κυκλοφορίας τους.
Σύμφωνα με την επίσημη ανακοίνωση αλλαγής προϊόντος της Intel, η τελευταία ημερομηνία για την παραγγελία των εν λόγω CPUs ορίζεται στις 24 Μαΐου 2024, ενώ η αποστολή στους προμηθευτές αναμένεται να ολοκληρωθεί έως τις 28 Ιουνίου 2024. Μετά από αυτήν την ημερομηνία, η διαθεσιμότητα των CPUs “Raptor Lake” K-series αναμένεται να μειωθεί δραστικά, ενώ οι τιμές, μέχρι εξάντλησης των αποθεμάτων, ενδέχεται να αυξηθούν σημαντικά.
Η αιτία για την αιφνιδιαστική αυτή απόφαση της Intel παραμένει ασαφής. Ίσως η εταιρεία να εστιάζει πλέον στην προώθηση της 14ης γενιάς “Meteor Lake” CPUs, ή ίσως να αντιμετώπισε προβλήματα παραγωγής ή ζήτησης με τα “Raptor Lake” K-series.
Ανεξάρτητα από τα αίτια, η διακοπή της σειράς “Raptor Lake” K-series φέρνει μαζί της τόσο αρνητικές όσο και θετικές επιπτώσεις. Από τη μία, οι λάτρεις του overclocking και οι απαιτητικοί χρήστες χάνουν μια επιλογή υψηλής απόδοσης. Από την άλλη, η κίνηση αυτή ίσως οδηγήσει σε πτώση των τιμών για τα υπόλοιπα “Raptor Lake” CPUs, ενώ παράλληλα ανοίγει τον δρόμο για την άφιξη των “Arrow Lake” CPUs, της 15ης γενιάς Core.
Πληροφορίες για την 15η γενιά Core “Arrow Lake”:
Φημολογείται ότι η 15η γενιά Core “Arrow Lake” CPUs, γνωστή και ως “Core Ultra 2xx-series”, θα παρουσιαστεί επίσημα στην έκθεση Computex τον Ιούνιο. Η σειρά αναμένεται να περιλαμβάνει CPUs με έως και 8x πυρήνες Performance και 16x πυρήνες Efficiency, κατασκευασμένους με την τεχνολογία Intel 20A. Επιπλέον, η Intel φημολογείται ότι εγκαταλείπει την τεχνική HyperThreading.
Συνολικά, η διακοπή της σειράς “Raptor Lake” K-series αποτελεί μια σημαντική εξέλιξη για την αγορά CPUs. Ας παραμείνουμε συντονισμένοι για να δούμε ποια θα είναι η επόμενη κίνηση της Intel.
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govindhtech · 1 month
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Micron’s Mind-Blowing 256GB DDR5-8800 Sticks OR Unveiled
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This week, Micron said that samples of its 256 GB multiplexer combination (MCR) DIMMs, the company’s largest memory modules to date, have started. Targeting next-generation servers, these new DDR5-based MCRDIMMs are specifically designed to work with Intel’s Xeon Scalable ‘Granite Rapids’ CPUs, which are expected to accommodate up to 12 or 24 memory slots per socket. When these modules are used, datacenter computers with 3 TB or 6 TB of memory may be enabled. The total ranks of these modules allow for DDR5-8800 effect data speeds.
Sanjay Mehrotra, CEO of Micron, said in prepared comments for the company’s earnings conference this week, “we also started sampling our 256 GB MCRDIMM module, which further enhances performance and increases DRAM content per server.”
At NVIDIA’s GTC conference, where server manufacturers and consumers alike are busy creating new servers for the next generation of AI accelerators, Micron not only announced a sample of these modules but also showcased them. Somehow, our friends at Tom’s Hardware were able to take a few images of Micron’s DDR5-8800 MCR DIMMs, which have 256 GB of capacity.
Micron seems to offer two variations of their 256 GB DDR5-8800 MCRDIMMs: a standard-height module that uses 2Hi stacked packages and a larger module with 80 DRAM chips spread on both sides. Both are designed to support various server configurations, with the standard-height MCRDIMM addressing 1U systems, and are based on monolithic 32 Gb DDR5 ICs. Roughly 20W of power is used by the taller variant, which is expected given that a 128 GB DDR5-8000 RDIMM uses roughly 10W while in DDR5-4800 mode. I’m not sure how much power the version using the 2Hi packages needs, but I would assume it would be a little hotter and more difficult to cool.
Dual-rank memory modules called Multiplexer Combined Ranks (MCR) DIMMs include a unique buffer that enables both ranks to function concurrently. By allowing the two physical ranks to function as separate modules operating in parallel, this buffer essentially doubles the performance of a single module by enabling the concurrent retrieval of 128 bytes of data from both ranks per clock cycle (as opposed to 64 bytes per cycle for regular memory modules). Of course, the buffer operates with the host at a very fast data transfer rate to send the obtained data to the host CPU since it maintains the physical interface of normal DDR5 modules, which is 72 bits. These rates, which in this instance approach 8800 MT/s, are higher than the typical DDR5 requirements.
Although MCR DIMMs add a little bit of complexity to memory modules compared to standard RDIMMs, they improve the memory subsystem’s performance and capacity without adding extra memory modules, which makes server motherboard construction simpler. These modules have the potential to be very important in allowing the next generation of servers to manage applications that are becoming more and more demanding, especially in the AI space.
Indeed, Micron has unveiled a brand-new line of DDR5 high-capacity memory sticks with astounding 256GB of memory and DDR5-8800 speeds. These MCRDIMM modules are intended for use with next-generation servers, particularly those that have high memory requirements, like AI systems.
These new 256GB DDR5-8800 Sticks have the following important features
Huge capacity
Each stick has 256GB, which is a lot more than what is presently on the market.
High speed
They can transfer data at DDR5-8800 speeds very quickly.
Double-height design
Not all computers can accommodate these because they are physically bigger than memory sticks.
20 watts of power consumption
within reasonable bounds, though it is a little higher than some other DDR5 memory sticks.
Variety of flavors
Various tastes To support various server configurations, Micron is providing both standard and double-height versions of these MCRDIMMs.
Overall, the speed and capacity of these new Micron memory sticks represent a major improvement. For data centers and other applications where a large amount of memory and processing power are needed, they are ideal.
Micron 256GB DDR5-8800 Sticks Specs
SpecValueCapacity256 GB per DIMMSpeedDDR5-8800Power ConsumptionAround 20 wattsTypeDDR5 MCR DIMM (Dual Rank Memory with Multiplexer Combined Ranks)VariantsTall (80 chips) and Standard Height
FAQS
What is the capacity of the 256GB DDR5-8800 Sticks?
The memory sticks are the largest DDR5 memory module that Micron has manufactured to date, with a staggering capacity of 256GB.
What is the speed of the 256GB DDR5-8800 Sticks?
The memory sticks have a speed of DDR5-8800, which is pretty quick. This implies that they have a high data transfer rate, which is crucial for demanding applications like high-performance computing and artificial intelligence.
What form factor do the memory sticks use?
The memory sticks are taller than typical DDR4 memory modules since they are double-height modules. They contain a lot more memory chips, which explains why. Not all computers can accommodate them.
Are there different variations of these memory sticks available?
 Indeed, Micron provides these memory sticks in a variety of flavors; however, specifics regarding the variants are not yet available. There might be versions that are only one height or modules with varying capacities.
Read more on govindhtech.com
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digitalcreationsllc · 5 months
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New SLAM Attack Steals Sensitive Data From AMD, Future Intel CPUs
The SLAM attack exploits hardware features in upcoming CPUs from Intel, AMD, and Arm to obtain the root password hash from kernel memory, highlighting potential security vulnerabilities.
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phonemantra-blog · 5 months
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There are still a few years left before such a memory is released. HBM4 memory will appear on the market only in a few years, but it has already become known that its appearance may be associated with a small revolution in the field of semiconductor production. Hynix is ​​reportedly working with Nvidia and other manufacturers on technology that will allow HBM4 memory chips to be placed directly on the computing chip. [caption id="attachment_83411" align="aligncenter" width="600"] CPUs and GPUs[/caption] Now HBM memory is placed on the same substrate as the CPU or GPU, but next to it. Placing memory on the CPU/GPU will not only change the way logic and memory devices are typically connected, it will also change the way they are manufactured. This will change the way CPUs and GPUs are made. In fact, this is approximately the same as AMD's 3D V-Cache, only with a different type of memory. SK Hynix has now begun recruiting specialists to design logic semiconductors such as CPUs and GPUs and is discussing its HBM4 integration design method with several companies without its own manufacturing capabilities, including Nvidia. It is likely that Hynix and Nvidia will initially jointly develop a specific GPU, and then TSMC will produce this chip and immediately place HBM4 memory on top. Considering the type of memory, we are clearly talking about specialized accelerators for AI or data centers. [caption id="attachment_83412" align="aligncenter" width="385"] CPUs and GPUs[/caption] Hynix took on this idea for a reason. The thing is that HBM4 memory will use a 2048-bit interface to connect to host processors, so the latter will be extremely complex and expensive. A direct connection between memory and CPU/GPU will simply be cheaper. However, it is too early to draw any conclusions, since on the way to such implementation there is a very banal problem - heating. The consumption of the Nvidia H100 accelerator is very high, and in a few years such solutions can consume much more. Memory also consumes a lot, and when all this is placed next to each other, there are no problems with cooling. And when a “sandwich” is created, the heating increases significantly with a smaller area of ​​the final crystal. Perhaps Nvidia accelerators in a few years will initially be designed exclusively for liquid cooling.
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laurentgiret · 6 months
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AMD unveiled today its new Ryzen Threadripper 7000 Series CPUs, which will launch on November 21 alongside the Ryzen Threadripper PRO 7000 WX-Series chips for professional workstations.
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da4rkmann3rd · 8 months
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NSFW book!
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emergingtechnews · 11 months
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Intel Discloses New Details On Meteor Lake VPU Block, Lays Out Vision For Client AI
While the first systems based on Intel’s forthcoming Meteor Lake (14th Gen Core) systems are still at least a few months out – and thus just a bit too far out to show off at Computex – Intel is already laying the groundwork for Meteor Lake’s forthcoming launch. For this year’s show, in what’s very quickly become an AI-centric event, Intel is using Computex to lay out their vision of client-side…
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techfoogle · 2 months
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diginiam · 3 months
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on-ae · 10 months
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there's a girl living in your computer
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hw4computers · 1 year
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Why don't we have 128 Bit Computers Yet?
The primary reason we don’t have 128-bit computers yet is that there is currently no significant need for them. The vast majority of computing tasks can be accomplished with the 32-bit and 64-bit architectures that are currently in use. Even high-performance computing tasks such as scientific simulations and data processing can generally be handled by existing 64-bit systems. Another factor is…
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show-your-needs · 1 year
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Best Cpus For Gaming And Streaming For All Needs
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Are yоu tired оf lagging аnd stuttering during yоur gaming аnd streaming sessions?
Look no furthеr than our еxpеrt review оf thе best CРUs for gaming аnd streaming.
We'vе scоured thе markеt аnd found thе tоp-rated рroducts that will take yоur рerformance to thе next level.
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