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Intel Celeron G6900 3.4 GHz Alder Lake, LGA 1700 - processor, boxed

Tillverkare: INTEL
ID: BX80715G6900
7690€ Visa Moms 0% Visa Moms 25,5%
Beräknad leverans: 26.11
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Produktspecifikation
Beskrivning
På lager i butiker
Leverans
Prisutveckling
Tekniska data
OpenCL-version2.1
StatusLaunched
LanseringsdatumQ1'22
Processor
ProcessorG6900
ProcessortillverkareIntel
ProcessorfamiljIntel Celeron
Lådacheckmark
ProcessorsockelLGA 1700
StegningH0
Processorkärnor2
Processortrådar2
Processorns driftlägen64-bit
Processorns cache4 MB
BusstypDMI4
Processorfrekvens3,4 GHz
Processorns kodnamnAlder Lake
Processorns cachetypSmart Cache
Minnesbandbredd som stöds av processorn (max)76.8 GB/s
ARK-ID för processor96163
ProcessorgenereringIntel® Celeron G Series
Minne
Minnesbandbredd (max)76.8 GB/s
MinneskanalerDubbla kanaler
Högsta internminne som stöds av processorn128 GB
Minnestyper som stöds av processornDDR4-SDRAM, DDR5-SDRAM
Vikt & dimension
Processorns förpackningsstorlek45 x 37.5 mm
Miljökrav
T-junction100 ° C
Förpackning
FörpackningstypDetaljhandelsförpackning
Övriga egenskaper
Maximalt internminne128 GB
GrafikutgångeDP 1.4b, DP 1.4a, HDMI 2.1
Grafiken
Ombord grafikkort modellIntel UHD Graphics 710
Diskret grafikkortsmodellEj tillgänglig
Ombord grafikkortcheckmark
Basfrekvens för inbyggt grafikkort300 MHz
Högsta dynamiska frekvens för inbyggt grafikkort1300 MHz
Antal utgångar som stöds av inbyggt grafikkortEmbedded DisplayPort (eDP) 1.4b, DisplayPort 1.4a, HDMI 2.1
Högsta upplösning för inbyggt grafikkort (DisplayPort)7680 x 4320 pixlar
Antal exekveringsenheter16
Grafik enhets-ID0x4693
Högsta upplösning för inbyggt grafikkort (eDP – Integrated Flat Panel)5120 x 3200 pixels
Uppdateringsfrekvens vid högsta upplösning för inbyggt grafikkort (eDP – Integrated Flat Panel)120 hz
Uppdateringsfrekvens vid högsta upplösning för inbyggt grafikkort (DisplayPort)60 hz
Uppdateringsfrekvens vid högsta upplösning för inbyggt grafikkort (HDMI)60 hz
Antal skärmar som stöds (inbyggt grafikkort)4
Högsta upplösning för inbyggt grafikkort (HDMI)4096 x 2160 pixlar
DirectX-version på inbyggt grafikkort12.0
OpenGL-version på inbyggt grafikkort4.5
Diskret grafikkortcross
Processor specialfunktioner
Intel® Hyper Threading Technology (Intel® HT Technology)cross
Intel® Turbo Boost Technologycross
Intel® Quick Sync Video Technologycheckmark
Intel® Clear Video HD Technology (Intel® CVT HD)checkmark
Intel® AES nya instruktioner (Intel® AES-NI)checkmark
Förstärkt Intel Speedstep Technologycheckmark
Intel® VT-x med utökad Sida Tabeller (EPT)checkmark
Intel® Secure Keycheckmark
Intel® 64checkmark
Intel® OS Guardcheckmark
Intel® Virtualization Technology for Directed I/O (VT-d)checkmark
Intel Virtualization Technology (VT-x)checkmark
Intel® Turbo Boost Max Technology 3.0cross
Intel® Optane™ Memory Readycheckmark
Intel® Speed Shift-teknikcheckmark
Egenskaper
Stödda instruktionssetSSE4.1, SSE4.2, AVX 2.0
PCI Express-kortplatser version5.0, 4.0
Execute Disable Bit-säkerhetcheckmark
Idle statercheckmark
Termiska övervakningsteknikcheckmark
Skalbarhet1S
CPU konfiguration (max)1
Inbäddade alternativcross
PCI Express konfigurationer1x16+1x4, 2x8+1x4
Högsta antal PCI Express-platser20
MarknadssegmentSkrivbord
EAN5032037238755
Garanti3 år

Intel® Deep Learning Boost (Intel® DL Boost)
A new set of embedded processor technologies designed to accelerate AI deep learning 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® 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 acceleration for memory intensive virtualized applications. Extended Page Tables in Intel® Virtualization Technology platforms reduces the memory and power overhead costs and increases battery life through hardware optimization of page table management.

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.

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.

Enhanced Intel SpeedStep® Technology
Enhanced Intel SpeedStep® Technology is an advanced means of enabling high performance while meeting the power-conservation needs of mobile systems. Conventional Intel SpeedStep® Technology switches both voltage and frequency in tandem between high and low levels in response to processor load. Enhanced Intel SpeedStep® Technology builds upon that architecture using design strategies such as Separation between Voltage and Frequency Changes, and Clock Partitioning and Recovery.

Thermal Monitoring Technologies
Thermal Monitoring Technologies protect the processor package and the system from thermal failure through several thermal management features. An on-die Digital Thermal Sensor (DTS) detects the core's temperature, and the thermal management features reduce package power consumption and thereby temperature when required in order to remain within normal operating limits.

Intel® Volume Management Device (VMD)
Intel® Volume Management Device (VMD) provides a common, robust method of hot plug and LED management for NVMe-based solid state drives.

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.

Secure Key
Intel® Secure Key consists of a digital random number generator that creates truly random numbers to strengthen encryption algorithms.

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® Boot Guard
Intel® Device Protection Technology with Boot Guard helps protect the system’s pre-OS environment from viruses and malicious software attacks.

Mode-based Execute Control (MBE)
Mode-based Execute Control can more reliably verify and enforce the integrity of kernel level code.

Intel® Control-Flow Enforcement Technology
CET - Intel Control-flow Enforcement Technology (CET) helps protect against the misuse of legitimate code snippets through return-oriented programming (ROP) control-flow hijacking attacks.

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