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INTEL Xeon E-2186G 3.80GHz CPU Tray

Intel (0675901520713 / CM8068403379918) - Bus bandwidth: 8 - Intel Secure Key Technology version: 1.00 - Maximum number of PCI Express lanes: 16 - On-board graphics adapter DirectX version: 12

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Intel Xeon E‑2186G 3.80GHz CPU Tray

The Intel Xeon E‑2186G is a high‑performance server and workstation processor built on Intel’s Coffee Lake architecture. Designed for demanding workloads, it delivers robust compute power, advanced graphics capabilities, and enterprise‑grade reliability—all within a compact 37.5 mm × 37.5 mm package that plugs directly into the LGA 1151 (Socket H4) platform.

Core Architecture & Performance

The processor features 6 physical cores and 12 threads, thanks to Intel’s Hyper‑Threading technology. This configuration allows simultaneous execution of multiple tasks, improving multitasking efficiency in virtualized environments or multi‑threaded applications.

  • Base Frequency: 3.80 GHz – the guaranteed minimum operating speed under normal conditions.
  • Maximum Turbo Frequency: 4.70 GHz – dynamic boost that activates when thermal and power headroom permit, providing peak performance for single‑threaded or lightly threaded workloads.
  • Thermal Design Power (TDP): 95 W – a balanced power envelope suitable for dense server racks while maintaining efficient cooling requirements.
  • Idle States: Supported – the processor can enter low‑power idle states to conserve energy when workloads are light or paused.

Cache & Memory Subsystem

The E‑2186G incorporates a generous 12 MB Smart Cache, which is shared across all cores. This intelligent cache architecture dynamically allocates space based on workload demands, reducing latency and improving data throughput.

  • Memory Channels: Dual‑channel DDR4 support.
  • Supported Memory Speed: Up to 2666 MHz.
  • Maximum Supported RAM: 128 GB (64 GB per channel), enabling large in‑memory databases, virtualization stacks, or memory‑intensive scientific computations.

Integrated Graphics & Video Acceleration

The processor embeds the Intel UHD Graphics P630, a powerful integrated GPU that supports modern graphics APIs and high‑resolution displays. This eliminates the need for a discrete graphics card in many server or workstation scenarios.

  • Graphics Output: eDP, DP, HDMI, DVI – versatile connectivity to monitors and external displays.
  • 4K Support: Yes – capable of driving multiple 4K displays simultaneously.
  • DirectX Version: 12.0 – enabling advanced rendering features for professional visualization workloads.
  • OpenGL Version: 4.5 – suitable for scientific visualization and CAD applications.
  • Maximum Graphics Adapter Memory: 128 GB (shared with system memory).

PCI Express & I/O Capabilities

The E‑2186G offers flexible PCIe configurations, supporting up to 16 lanes of PCIe 3.0. This allows high‑bandwidth connections for SSDs, network adapters, or additional GPUs.

  • PCI Express Lanes: 16 (configurable as 1×16, 2×8, or 1×8+2×4).
  • CEM Revision: 3.0 – ensuring compatibility with modern motherboard designs.
  • Bus Speed: 8 GT/s (DMI 3) – facilitating efficient communication between the CPU and chipset.

Advanced Security & Reliability Features

Built for enterprise environments, the processor incorporates a suite of security technologies that protect data integrity and confidentiality.

  • EAX‑NIST (Intel Trusted Execution Technology): Yes – provides hardware‑based isolation for secure code execution.
  • Intel Secure Key: Version 1.00 – a true random number generator used for cryptographic operations.
  • Intel Optane Memory Support: Yes – enabling faster storage tiers and improved I/O performance.
  • ECC (Error‑Correcting Code) Memory: Supported – critical for maintaining data integrity in mission‑critical workloads.
  • Execute Disable Bit: Yes – prevents execution of code from non‑executable memory regions, mitigating buffer overflow attacks.

Instruction Set & Software Optimizations

The processor supports a comprehensive set of instruction sets that accelerate a wide range of applications.

  • AVX2.0: Advanced Vector Extensions for high‑performance scientific and financial calculations.
  • SSE4.1 & SSE4.2: Streaming SIMD Extensions for legacy software compatibility.
  • Intel Quick Sync Video: Hardware video encoding/decoding acceleration, reducing CPU load during media processing.
  • Intel Clear Video Technology: Enhances display quality and reduces latency for high‑resolution content.

Manufacturing Process & Architecture

The E‑2186G is fabricated using Intel’s 14 nm process technology, balancing power efficiency with performance density. It belongs to the Coffee Lake family, which introduced architectural improvements over previous generations, such as increased core counts and enhanced cache hierarchies.

Target Use Cases

This processor is ideal for:

  • Enterprise Servers: Virtualization hosts, database servers, or application delivery platforms that demand high core counts and reliable memory support.
  • Workstations: Professional content creation, CAD/CAM, and scientific computing requiring robust CPU performance coupled with integrated graphics for visualization tasks.
  • Edge Computing & IoT Gateways: Compact form factor and efficient power consumption make it suitable for edge deployments that still need substantial compute capability.

Conclusion

The Intel Xeon E‑2186G 3.80GHz CPU Tray delivers a compelling blend of core density, memory bandwidth, integrated graphics, and enterprise security features. Its Coffee Lake architecture ensures compatibility with existing LGA 1151 motherboards while providing the performance headroom required for modern server and workstation workloads.


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Tags INTEL Xeon E-2186G
Identifiers
Brand Intel

Intel is a computer chip manufacturer that also produces motherboard chipsets, network interface controllers and other integrated circuits. It is the world's largest semiconductor company.
MPN Intel CM8068403379918
ID 18370152
Dimensions / Weight
Key Features
Box
Indicates whether a product is supplied in a closed box or container. A value of "Yes" means the item comes with protective packaging; a value of "No" indicates it does not.
No
Bus bandwidth
The maximum frequency at which a system bus can transfer data, expressed in hertz (Hz). It indicates the theoretical throughput capability of the bus and allows users to compare performance across different processors or components.
8
Bus Type
The interface or communication bus that a component uses to connect with other parts of a system, such as PCI Express, USB, SATA, or legacy buses like FSB and QPI. It indicates the protocol and physical connection used for data transfer between devices.
DMI3
Bus type units
The interface speed or bandwidth specification of a computer component, such as a processor or memory bus. Common units include GT/s (giga‑transfers per second) for PCIe lanes and MHz for clock frequencies. It indicates the maximum data transfer rate that the component can achieve under ideal conditions.
GT/s
Component for
Specifies the type of device or system that the product is intended to be used with, such as a PC, server, notebook, surveillance system, or other electronic equipment. The value represents a single category and can be used to filter or group products by their target platform.
Server/Workstation
Cooler included
Indicates whether the product comes with a cooling solution included in its package. A value of "Yes" means a cooler (air, liquid, or passive) is supplied; a value of "No" means no cooler is provided and must be purchased separately.
No
Discrete graphics adapter
Indicates whether the product includes a dedicated graphics adapter (discrete GPU) separate from any integrated graphics. A value of "Yes" means a discrete GPU is present, while "No" indicates only integrated graphics are available.
No
Discrete graphics adapter model Not available
ECC
Indicates whether the memory module or component supports Error‑Correcting Code (ECC) for detecting and correcting single-bit errors during operation. A value of "Yes" means ECC is enabled, allowing automatic correction of data corruption; a value of "No" indicates no ECC support.
Yes
Embedded options available
Indicates whether the product includes embedded options such as firmware features, hardware modules or configuration settings that are built into the device and available for use without external accessories.
No
Enhanced intel speedstep technology Yes
Execute disable bit
Indicates whether the processor’s Execute Disable bit is enabled, allowing the CPU to prevent execution of code from memory regions marked as non-executable.
Yes
Graphics output
A list of the video output connectors and protocols that a device can provide for transmitting visual signals, such as HDMI, DisplayPort, VGA, or USB‑C based outputs. Each entry indicates a distinct connector type or version (e.g., "HDMI 2.1", "DP 1.4"). This attribute helps users identify which displays or external devices the product can support.
eDP/DP/HDMI/DVI
Idle states
A list of the various low‑power or standby modes that a device can enter to conserve energy when not actively performing tasks.
Yes
Intel 64
Indicates whether the processor is compatible with the Intel® 64 architecture, enabling it to run operating systems and applications designed for x86‑64 processors.
Yes
Intel clear video technology
Indicates whether the product incorporates Intel’s Clear Video HD technology, a hardware feature that enhances video playback and capture quality by providing smoother motion, reduced artifacts, and improved color accuracy.
Yes
Intel enhanced halt state
Indicates whether the processor includes Intel’s Enhanced Halt State feature, which allows the CPU to enter a low‑power idle mode when not actively executing instructions, thereby reducing energy consumption without compromising performance.
Yes
Intel optane memory
Indicates whether the product includes support for Intel Optane memory, a technology that uses non‑volatile storage to accelerate system performance by caching frequently used data and improving boot times.
Yes
Intel Secure Key Technology version
The specific version number of Intel Secure Key technology supported by the processor, indicating the generation and capabilities of the secure key feature set.
1.00
Intel trusted execution technology
Indicates whether the product incorporates Intel’s Trusted Execution Technology, a security feature that creates isolated execution environments to protect sensitive code and data from tampering or unauthorized access.
Yes
Intel TSX-NI
Indicates the specific version of Intel Transactional Synchronization Extensions – No Interlock (TSX‑NI) supported by a processor, which determines its capability for efficient transaction processing and concurrency control.
Yes
Launch date
The calendar date on which a product was first made available to the public or released for sale. It is expressed in the format YYYY-MM-DD and can be used to filter, sort, or display the launch timeline of the item.
Q3'18
Market segment
The target market segment for a product, such as "Business", "Home", or "Small‑medium business". This attribute helps customers quickly identify the intended user group and typical use case of the item.
SRV
Maximum graphics adapter memory
The amount of dedicated video memory available on a graphics adapter or GPU, expressed as a data size such as megabytes (MB) or gigabytes (GB). It indicates how much information the GPU can store for textures, frame buffers and other rendering tasks, affecting performance in gaming, 3D applications and high‑resolution displays.
128 GB
Maximum internal memory
The largest amount of internal random‑access memory that a device can support, expressed as a data size such as megabytes or gigabytes. It indicates the maximum capacity for active processes and multitasking performance.
65536 MB
Maximum number of PCI Express lanes
The total count of PCI Express lanes available on a device or component, indicating the maximum number of high‑speed communication channels that can be used simultaneously for peripherals such as graphics cards, storage devices, and networking adapters.
16
Maximum on-board graphics adapter memory
The maximum amount of dedicated video memory that the integrated graphics adapter built into a device can provide, expressed as a data size (e.g., megabytes or gigabytes). This value indicates how much graphical processing power is available for rendering, gaming, and other GPU‑intensive tasks.
64 GB
Memory channels
The configuration of memory channels supported by a device, indicating how many independent memory paths the system can use for data transfer (e.g., Dual‑channel, Quad‑channel). This attribute helps users understand the potential bandwidth and performance characteristics of the memory subsystem.
Dual-channel
Memory clock speeds supported by processor
The set of operating frequencies that a processor can run at, expressed in hertz (Hz). Values are typically listed as individual frequencies or ranges separated by commas, indicating the base clock and any boost or turbo options available for the CPU.
2666 MHz
Memory types supported by processor
A list of the types of memory modules that a device can use, such as DDR4 SDRAM, LPDDR3, or other compatible standards. Each entry represents a distinct memory technology supported by the hardware.
DDR4-SDRAM
On-board graphics adapter
The model name or number of the integrated graphics adapter built into a device, such as a laptop, desktop, or motherboard. It identifies the specific GPU variant used for rendering and video processing, allowing users to compare visual performance and compatibility across products.
Yes
On-board graphics adapter 4K support
Indicates whether the device’s integrated graphics adapter can output a 4K resolution (3840×2160) image or video. A value of "Yes" means the hardware and drivers support 4K playback or rendering; "No" indicates that 4K is not supported.
Yes
On-board graphics adapter base frequency
The clock speed at which the integrated graphics processor runs under normal conditions, expressed in hertz (Hz). It indicates how many cycles per second the GPU performs and is useful for comparing visual performance across devices that use an on‑board graphics solution.
350 MHz
On-board graphics adapter DirectX version
The version number of the DirectX graphics API supported by a device, indicating its graphical capabilities and compatibility with software that relies on specific DirectX features.
12.0
On-board graphics adapter ID
The unique identifier of the integrated graphics adapter built into a device, typically expressed as a hexadecimal string such as "0x5916" or a numeric code like "1916". This value allows users and systems to distinguish between different GPU models and versions across laptops, desktops, and motherboards.
0x3E96
On-board graphics adapter model
The model name or number of the integrated graphics adapter built into a device, such as a laptop or motherboard. It identifies the specific GPU variant used for rendering and video processing, allowing users to compare visual performance and compatibility across products.
Intel UHD Graphics P630
On-board graphics adapter OpenGL version
The specific version of the OpenGL graphics API supported by a device, indicating its rendering capabilities and compatibility with software that relies on this standard.
4.5
PCI Express CEM Revision
The PCI Express Common Extensible Module (CEM) revision indicates the version of the PCI Express specification supported by a device or component. It is expressed as a numeric value such as 2.0, 3.0, or 4.0 and determines compatibility with PCIe devices and the maximum achievable bandwidth.
3.0
PCI Express configurations
A textual description of how PCI Express lanes are distributed across the available slots or interfaces in a device. The value typically lists groups of lanes separated by commas, where each group may contain a number of lanes and optional ‘+’ signs to indicate combined lanes that share the same speed (e.g., "1x16", "2x8", "1x8+2x4"). This attribute helps users understand the bandwidth capacity and compatibility of expansion slots.
1x16,2x8,1x8+2x4
Processor ARK ID
The Processor ARK ID is a numeric identifier assigned by Intel to each processor model. It uniquely distinguishes one CPU from another and can be used to look up detailed specifications, compatibility information, or firmware updates for that specific chip.
134855
Processor boost frequency
The maximum operating frequency that a processor can reach when its turbo or boost feature is active, expressed in hertz (Hz). This value indicates the peak performance capability of the CPU under load and helps users compare how fast a processor can run beyond its base clock speed.
4.7 GHz
Processor brand name
The name of the company that designs and produces the central processing unit used in a device, such as Intel, AMD or Qualcomm. It identifies the manufacturer so users can quickly see which brand’s processors are supported by the product.
Intel Xeon
Processor cache
The amount of internal memory reserved for a processor’s cache, expressed in units such as megabytes (MB) or gigabytes (GB). This value indicates how much data the CPU can store locally to accelerate access and improve performance.
12 MB
Processor cache type
The type or level of the internal cache memory in a processor, such as L1, L2, L3, or Smart Cache. This attribute indicates the hierarchical structure and naming convention used by the CPU manufacturer to describe its cache organization.
Smart Cache
Processor codename Coffee Lake
Processor cores
The total number of physical processing units in a single central processing unit (CPU). This value indicates how many independent tasks the CPU can handle simultaneously, influencing multitasking and parallel performance.
6
Processor family
The processor family identifies the group or series of CPU models that share a common architecture, design, and performance characteristics. It helps users compare processors across brands and generations by indicating the underlying technology used in the chip.
Intel Xeon E
Processor frequency
The fundamental operating frequency of a processor, expressed in hertz (Hz). It indicates the speed at which the CPU runs under normal conditions and is typically reported in gigahertz (GHz) or megahertz (MHz). This value helps users compare performance potential across different models.
3.8 GHz
Processor lithography
The lithography process defines the minimum feature size that can be etched onto a semiconductor chip, expressed in nanometers (nm). It indicates the manufacturing technology generation and influences performance, power consumption, and integration density of the processor.
14 nm
Processor manufacturer
The company that designs and produces the central processing unit (CPU) used in a device. This value identifies the brand of the processor, such as Intel, AMD, Qualcomm, or ARM Holdings, allowing users to assess compatibility, performance expectations, and support resources.
Intel
Processor model
Identifies the exact model of the central processing unit used in a device, including brand and numeric designation such as "Intel Core i5-8250U" or "AMD Ryzen 7 3700X". This value allows users to distinguish between different processor families, generations, and performance levels.
E-2186G
Processor package size
The overall dimensions of a processor’s physical package, expressed as length × width × height in millimetres or inches. It indicates the size that must fit within a motherboard socket or mounting area and helps users compare compatibility across different CPU models.
37.5 x 37.5 mm
Processor socket
The physical connector used by a processor to attach to a motherboard or other compatible platform. Common examples include LGA 1151, BGA 1440, Socket AM4, and LGA 1200. This attribute indicates the exact socket designation required for proper CPU installation and compatibility.
LGA 1151 (Socket H4)
Product family
The maximum clock frequency at which a processor operates, expressed in megahertz (MHz) or gigahertz (GHz). This value indicates the speed of the CPU and allows users to compare performance across different models.
Intel Xeon Processors
Product Type
Indicates the general classification or type of an item, such as "laptop", "projector", "router" or "paint". It helps users quickly identify the nature of the product and compare similar items across categories.
Processor
Scalability
The maximum number of CPU sockets that a product can support. It indicates how many processor units can be installed simultaneously in the system, which affects overall processing capacity and scalability.
1S
Status Launched
Stepping
Der CPU‑Stepping bezeichnet die interne Version eines Prozessormodells, die bei jeder neuen Fertigungsrunde geändert wird. Er gibt an, welche Revision des Chips verwendet wurde und kann Einfluss auf Leistung, Energieverbrauch oder Kompatibilität haben.
U0
Supported instruction sets
A list of processor instruction set extensions that a CPU can execute, such as AVX, AVX2, SSE4.1, SSE4.2, and AVX‑512. Each value represents an individual extension or group of extensions supported by the hardware.
AVX 2.0,SSE4.1,SSE4.2
Thermal monitoring technologies Yes

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