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Comparison Intel Core i5 Alder Lake i5-12400F OEM vs Intel Core i5 Coffee Lake Refresh i5-9400F OEM

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Intel Core i5 Alder Lake i5-12400F OEM
Intel Core i5 Coffee Lake Refresh i5-9400F OEM
Intel Core i5 Alder Lake i5-12400F OEMIntel Core i5 Coffee Lake Refresh i5-9400F OEM
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Main
Hybrid architecture, which implies a combination of high-performance (Performance-cores) and energy-efficient (Efficient-core) cores. Support for DDR5 standard and PCI Express 5.0 interface.
Performance-cores are high-performance cores capable of simultaneously executing up to two computation threads. Efficient-core — energy-efficient cores do not support Hyper-Threading and are designed to handle background workloads.
Disabled graphics core.
Stepping: CM8068403358819 - U0, CM8068403875509 - P0, CM8068403875510 - R0.
SeriesCore i5Core i5
Code nameAlder LakeCoffee Lake Refresh
SocketIntel LGA 1700Intel LGA 1151 v2
Lithography10 nm14 nm
In box  
Cores and Threads
Cores6 cores6 cores
Performance6 cores
Threads12 threads6 threads
Multithreading
Speed
Clock speed2.9 GHz
Performance-core Base2.5 GHz
TurboBoost / TurboCore4.1 GHz
Performance-core Max4.4 GHz
Cache
L1 cache384 KB
L2 cache1536 KB
L3 cache18 MB9 MB
Specs
IGPis absentis absent
Front side bus8 GT/s
TDP65 W65 W
Thermal Dissipation Max(TDP)117 W
InstructionSSE4.1, SSE4.2, AVX2MMX, SSE, SSE2, SSE2, SSSE3, SSE4.1, SSE4.2, EM64T, AES, AVX, AVX2
Multiplier29
PCI Express5.03.0
Max. operating temperature100 °С100 °С
Passmark CPU Mark19770 score(s)12502 score(s)
Geekbench 421531 score(s)
Cinebench R15973 score(s)
Memory
Max. RAM128 GB128 GB
Max. DDR4 speed3200 MHz2666 MHz
Max. DDR5 speed4800 MHz
Channels22
Added to E-Catalogjanuary 2022january 2019
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Intel CM8071504555318

Intel® Deep Learning Boost (Intel® Dl Boost):- A New Set Of Embedded Processor Technologies Designed To Accelerate Ai Deep Le... morearning Use Cases. It Extends Intel Avx-512 With A New Vector Neural Network Instruction (Vnni) That Significantly Increases Deep Learning Inference Performance Over Previous Generations.Intel® Optane™ Memory Supported:- Intel® Optane™ Memory Is A Revolutionary New Class Of Non-Volatile Memory That Sits In Between System Memory And Storage To Accelerate System Performance And Responsiveness. When Combined With The Intel® Rapid Storage Technology Driver, It Seamlessly Manages Multiple Tiers Of Storage While Presenting One Virtual Drive To The Os, Ensuring That Data Frequently Used Resides On The Fastest Tier Of Storage. Intel® Optane™ Memory Requires Specific Hardware And Software Configuration.Intel® Speed Shift Technology:- Intel® Speed Shift Technology Uses Hardware-Controlled P-States To Deliver Dramatically Quicker Responsiveness With Single-Threaded, Transient (Short Duration) Workloads, Such As Web Browsing, By Allowing The Processor To More Quickly Select Its Best Operating Frequency And Voltage For Optimal Performance And Power Efficiency.Intel® Turbo Boost Technology:- Intel® Turbo Boost Technology Dynamically Increases The Processor´s Frequency As Needed By Taking Advantage Of Thermal And Power Headroom To Give You A Burst Of Speed When You Need It, And Increased Energy Efficiency When You Don'T.Intel® Hyper-Threading Technology:- Intel® Hyper-Threading Technology (Intel® Ht Technology) Delivers Two Processing Threads Per Physical Core. Highly Threaded Applications Can Get More Work Done In Parallel, Completing Tasks Sooner.Intel® Virtualization Technology (Vt-X):- Intel® Virtualization Technology (Vt-X) Allows One Hardware Platform To Function As Multiple Virtual Platforms. It Offers Improved Manageability By Limiting Downtime And Maintaining Productivity By Isolating Computing Activities Into Separate Partitions.Intel® Virtualization Technology For Directed I/O (Vt-D):- Intel® Virtualization Technology For Directed I/O (Vt-D) Continues From The Existing Support For Ia-32 (Vt-X) And Itanium® Processor (Vt-I) Virtualization Adding New Support For I/O-Device Virtualization. Intel Vt-D Can Help End Users Improve Security And Reliability Of The Systems And Also Improve Performance Of I/O Devices In Virtualized Environments.Intel® Virtualization Technology For Directed I/O (Vt-D):- Intel® Virtualization Technology For Directed I/O (Vt-D) Continues From The Existing Support For Ia-32 (Vt-X) And Itanium® Processor (Vt-I) Virtualization Adding New Support For I/O-Device Virtualization. Intel Vt-D Can Help End Users Improve Security And Reliability Of The Systems And Also Improve Performance Of I/O Devices In Virtualized Environments.Intel® Vt-X With Extended Page Tables (Ept):- Intel® Vt-X With Extended Page Tables (Ept), Also Known As Second Level Address Translation (Slat), Provides
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Intel Core i5-12400F processor 18 MB Smart Cache CM8071504555318

Intel Virtualization Technology for Directed I/O (VT-d) Intel Virtualization Technology for Directed I/O (VT-d) continues fr... moreom the existing support for IA-32 (VT-x) and Itanium processor (VT-i) virtualization adding new support for I/O-device virtualization. Intel VT-d can help end users improve security and reliability of the systems and also improve performance of I/O devices in virtualized environments. Intel Virtualization Technology (VT-x) Intel Virtualization Technology (VT-x) allows one hardware platform to function as multiple virtual platforms. It offers improved manageability by limiting downtime and maintaining productivity by isolating computing activities into separate partitions. Intel 64 Intel 64 architecture delivers 64-bit computing on server workstation desktop and mobile platforms when combined with supporting software. Intel 64 architecture improves performance by allowing systems to address more than 4 GB of both virtual and physical memory. Cache CPU Cache is an area of fast memory located on the processor. Intel Smart Cache refers to the architecture that allows all cores to dynamically share access to the last level cache. Intel AES New Instructions Intel AES New Instructions (Intel AES-NI) are a set of instructions that enable fast and secure data encryption and decryption. AES-NI are valuable for a wide range of cryptographic applications for example: applications that perform bulk encryption/decryption authentication random number generation and authenticated encryption. Idle States Idle States (C-states) are used to save power when the processor is idle. C0 is the operational state meaning that the CPU is doing useful work. C1 is the first idle state C2 the second and so on where more power saving actions are taken for numerically higher C-states. Intel Turbo Boost Technology Intel Turbo Boost Technology dynamically increases the processor's frequency as needed by taking advantage of thermal and power headroom to give you a burst of speed when you need it and increased energy efficiency when you dont. Max Turbo Frequency Max Turbo Frequency is the maximum single-core frequency at which the processor is capable of operating using Intel Turbo Boost Technology and if present Intel Turbo Boost Max Technology 3.0 and Intel Thermal Velocity Boost. Frequency is typically measured in gigahertz (GHz) or billion cycles per second. Execute Disable Bit Execute Disable Bit is a hardware-based security feature that can reduce exposure to viruses and malicious-code attacks and prevent harmful software from executing and propagating on the server or network. Intel Hyper-Threading Technology Intel Hyper-Threading Technology (Intel HT Technology) delivers two processing threads per physical core. Highly threaded applications can get more work done in parallel completing tasks sooner. Instruction Set An instruction set refers to the basic set of commands and instructions that a microprocessor
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Intel Intel Core i5-12400F processor 18 MB Smart Cache CM8071504555318

Intel® Core™ i5 i5-12400F 18 MB Smart Cache LGA 1700 Processor cores: 6 64-bit Maximum internal memory supported by processor... more: 128 GB DDR4-SDRAM, DDR5-SDRAM Intel® Virtualization Technology for Directed I/O (VT-d)Intel® Virtualization Technology for Directed I/O (VT-d) continues from the existing support for IA-32 (VT-x) and Itanium® processor (VT-i) virtualization adding new support for I/O-device virtualization. Intel VT-d can help end users improve security and reliability of the systems and also improve performance of I/O devices in virtualized environments.Intel® Virtualization Technology (VT-x)Intel® Virtualization Technology (VT-x) allows one hardware platform to function as
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Intel 126466

Specifications:Processor: - Processor Manufacturer: Intel- Processor Generation: 12th Generation Intel® Core™ I5- Processor M... moreodel: I5-12400f- Processor Family: Intel® Core™ I5- Number Of Processor Cores: 6- Processor Socket: Lga 1700- Number Of Execution Threads: 12- Operating Processor Mode: 64 Bit- Performance Cores: 6- Turbo Processor Frequency: 4.4ghz- Performance Core Acceleration Frequency: 4.4ghz- Performance Core Base Frequency: 2.5ghz- Processor Cache: 18mb- Processor Cache Type: Smart Cache- Processor Base Power: 65w- Max Turbo Power: 117w- Bus Types: Dmi4- Maximum Number Of Dmi Lanes: 8- Memory Bandwidth Supported By The Processor (Max): 76.8gb/SMemory:- Maximum Internal Memory Supported By The Processor: 128gb- Types Of Memory Supported By The Processor: Ddr4-Sdram, Ddr5-Sdram- Memory Channels: Dual Channel- Memory Bandwidth (Max): 76.8gb/SFeatures:- Execute Disable Bit: Yes- Idle States: Yes- Intel Thermal Monitoring Technology: Yes- Market Segment: Desk- Terms Of Use: Pc/Client/Tablet- Maximum Number Of Pci Express Buses: Twenty- Pci Express Entries Version: 5.0, 4.0- Pci Express Configurations: 1x16+1x4, 2x8+1x4- Instruction Set Supported: Sse4.1, Sse4.2, Avx 2.0- Scalability: 1s- Cpu Configuration (Maximum): 1- Dmi (Direct Media Interface) Revision: 4.0Special Features Of The Processor:- Intel Hyper-Threading: Yes- Intel® Turbo Boost Technology: 2.0- Intel® Aes New Instructions (Intel® Aes-Ni): Yes- Intel Enhanced Speedstep Technology: Yes- Intel® Speed Shift Technology: Yes- Intel® Gaussian & Neural Accelerator (Intel® Gna) 3.0: Yes- Intel® Control-Flow Enforcement Technology (Cet): Yes- Intel® Vt-X With Extended Page Tables (Ept): Yes- Intel® Secure Key: Yes- Intel® Os Guard: Yes- Intel® 64: Yes- Intel® Virtualization Technology (Vt-X): Yes- Intel® Virtualization Technology For Directed I/O (Vt-D): Yes- Supports Intel Optane Technology: Yes- Intel® Bootguard: Yes- Intel® Deep Learning Boost (Intel® Dl Boost): Yes- Intel® Volume Management Device (Vmd): Yes- Mode-Based Execution Control (Mbe): Yes- Intel® Standard Management (Ism): YesEnvironmental Conditions:- T-Intersection: 100°CWeight And Measurements:- Cpu Size: 45x37.5mmOther Features:- Maximum Internal Memory: 128gb
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Intel Intel Core i5-12400F processor 18 MB Smart Cache CM8071504650609

Intel® Core™ i5 i5-12400F 18 MB Smart Cache LGA 1700 Processor cores: 6 64-bit Maximum internal memory supported by processor... more: 128 GB DDR4-SDRAM, DDR5-SDRAM Intel® Virtualization Technology for Directed I/O (VT-d)Intel® Virtualization Technology for Directed I/O (VT-d) continues from the existing support for IA-32 (VT-x) and Itanium® processor (VT-i) virtualization adding new support for I/O-device virtualization. Intel VT-d can help end users improve security and reliability of the systems and also improve performance of I/O devices in virtualized environments.Intel® Virtualization Technology (VT-x)Intel® Virtualization Technology (VT-x) allows one hardware platform to function as
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Code name

This parameter characterizes, firstly, the technical process (see above), and secondly, some features of the internal structure of processors. A new (or at least updated) codename is introduced to the market with each new CPU generation; chips of the same architecture are "coevals", but may belong to different series (see above). At the same time, one generation can include both one and several code names.

Here are the most common Intel codenames today: Cascade Lake-X (10th gen), Comet Lake (10th gen), Comet Lake Refresh (10th generation), Rocket Lake (11th generation), Alder Lake (12th generation), Raptor Lake (13th generation), Raptor Lake Refresh (14th generation).

For AMD, this list includes Zen+ Picasso, Zen2 Matisse, Zen2 Renoir, Zen3 Vermeer, Zen3 Cezanne, Zen4 Raphael, Zen4 Phoenix and Zen5 Granite Ridge.

Socket

The type of connector (socket) for installing the processor on the motherboard. For normal compatibility, it is necessary that the CPU and motherboard match the socket type; before buying one and the other, this point should be clarified separately

The following sockets are relevant for Intel processors today: 1150, 1155, 1356, 2011, 2011 v3, 2066, 1151, 1151 v2, 3647, 1200, 1700, 1851.

In turn, AMD processors are equipped with the following types of connectors: <AM3/AM3+, FM2/FM2+, AM4, AM5, TR4/TRX4, WRX8.

Lithography

The technical process by which the CPU is manufactured.

The parameter is usually specified by the size of the individual semiconductor elements (transistors) that make up the processor integrated circuit. The smaller their size, the more advanced the technical process is considered: miniaturization of individual elements allows you to reduce heat generation, reduce the overall size of the processor and at the same time increase its flow Rate. CPU manufacturers are trying to move towards reducing the technical process, and the newer the processor, the lower the numbers you can see at this point.

The technical process is measured in nanometers (nm). In the modern arena of central processors, solutions made using the 7 nm, 10 nm, 12 nm process technology predominate, high-end CPU models are manufactured using the 4 nm and 5 nm process technology, 14 nm and 22 nm solutions are still afloat, and are rapidly fading into the background, but 28 nm and 32 nm occur periodically.

Performance

Number of high-performance Performance Cores (or P-Cores) in Intel processors since 12th generation (Alder Lake). P-cores have support for Hyper-Threading and take on the execution of resource-intensive tasks of the first plan. Those. they are directly responsible for the performance level of the processor as a whole.

Threads

The number of instruction streams that the processor can execute at the same time.

Initially, each physical core (see "Number of cores") was intended to execute one thread of instructions, and the number of threads corresponded to the number of cores. However, there are many processors today that support Hyper-threading or SMT (see below) and can run two threads on each core at once. In such models, the number of threads is twice the number of cores — for example, 8 threads will be indicated in a quad-core chip.

In general, a higher number of threads, other things being equal, has a positive effect on speed and efficiency, but increases the cost of the processor.

Multithreading

Processor support for Hyper-threading.

Hyper-threading is actually a variant of simultaneous multithreading (SMT) developed by Intel and used in its chips since 2002. This technology is used to optimize the load on each physical processor core. Its key principle (simplified) is that each such core is defined by the system as 2 logical cores — for example, the system “sees” a dual-core processor as a quad-core one. At the same time, each physical core constantly switches between two logical cores, in fact, between two threads of commands: when a delay occurs in one thread (for example, in case of an error or while waiting for the result of the previous instruction), the core does not idle, but starts executing the second thread commands. Thanks to this technology, the response time of the processor is reduced, and in server systems, stability is increased with numerous connected users.

In AMD processors, a similar function is used under the original name SMT (see below).

Clock speed

The number of cycles per second that the processor produces in its normal operating mode. A clock is a single electrical impulse used to process data and synchronize the processor with the rest of the computer system. Different operations may require fractions of a clock or several clocks, but anyway, the clock frequency is one of the main parameters characterizing the performance and speed of the processor — all other things being equal, a processor with a higher clock frequency will work faster and better cope with significant loads. At the same time, it should be taken into account that the actual performance of the chip is determined not only by the clock frequency, but also by a number of other characteristics — from the series and architecture (see the relevant paragraphs) to the number of cores and support for special instructions. So it makes sense to compare by clock frequency only chips with similar characteristics belonging to the same series and generation.

Performance-core Base

The base clock speed of high-performance P-cores for Intel processors on a hybrid architecture.

TurboBoost / TurboCore

The maximum processor clock speed that can be reached when running in Turbo Boost or Turbo Core overclocking mode.

The name "Turbo Boost" is used for the overclocking technology used by Intel, "Turbo Core" for the solution from AMD. The principle of operation in both cases is the same: if some cores are not used or work under a load below the maximum, the processor can transfer part of the load from the loaded cores to them, thus increasing computing power and performance. Operation in this mode is characterized by an increase in the clock frequency, and it is indicated in this case.

Note that we are talking about the maximum possible clock frequency — modern CPUs are able to regulate the operating mode depending on the situation, and with a relatively low load, the actual frequency may be lower than the maximum possible. See "Clock frequency" for the general meaning of this parameter.
Intel Core i5 Alder Lake often compared
Intel Core i5 Coffee Lake Refresh often compared