Intel Celeron 3865U
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已发布
Q1/2017
Intel Celeron 3865U

处理器 Intel Celeron 3865U, 规格和基准

1686 在总排名中CPU的位置!
Intel Celeron 3865U 处理器安装在 BGA 1356 插槽的主板上,工作频率为 1.80 GHz。Intel Celeron 3865U 共有 2 个核心。发布日期:Q1/2017。TDP 为 15 W。此评测将提供 Intel Celeron 3865U 处理器的所有技术规格和详细数据。了解一切,以确定游戏或软件是否可以在 Intel Celeron 3865U 上运行。

规格

技术数据
CPU Family and Group

This section provides a comprehensive overview of the processors generation and family, explaining the specific market segment it is designed for. It covers key details such as the CPUs position within its product lineup, its intended use cases (e.g., consumer, server, or workstation), and how its generation compares to previous models.

  • 分段
    Mobile
  • 系列
  • 一代人
    7
  • CPU组
    Intel Celeron 3000
  • 过去的模式
    --
  • Successor
    --
CPU Technical Specs

Intel Celeron 3865U. This section highlights key performance parameters of the processor, including the number of cores, threads, and clock speeds (base and boost frequencies). These metrics directly impact multitasking capabilities and overall system performance in both single-threaded and multi-threaded applications.

  • 頻率
    1.80 GHz
  • CPU核数
    2
  • 涡轮增压 (1核)
    没有涡轮增压
  • CPU线程
    2
  • Turbo (2 Cores)
    没有涡轮增压
  • 超线程
    没有
  • 超频
    没有
  • 核心架构
    normal
  • A core
    --
  • B core
    --
  • C core
    --
IGPU

This section provides details on the integrated graphics capabilities of the processor. It covers the architecture, performance characteristics, and supported technologies (e.g., DirectX, OpenGL), which are essential for systems without dedicated GPUs or for mobile devices that require energy-efficient graphics processing.

  • GPU名称
    Intel HD Graphics 610
  • GPU frequency
    0.30 GHz
  • GPU (Turbo)
    0.90 GHz
  • 执行单位
    12
  • 着色器
    96
  • Max. GPU Memory
    32 GB
  • Max. displays
    3
  • 一代人
    9.5
  • DirectX Version
    12
  • 技术过程
    14 nm
  • 发布日期
    Q3/2016
硬件编解码器支持

This section covers the built-in hardware codec support for video and image processing. The processor’s ability to handle codecs like H.264, HEVC, and VP9 directly influences its performance in tasks such as video playback, editing, and streaming. This hardware acceleration ensures smoother media handling with lower CPU utilization.

  • h265 / HEVC (8 bit)
    Decode / Encode
  • h265 / HEVC (10 bit)
    Decode / Encode
  • h264
    Decode / Encode
  • VP9
    Decode / Encode
  • VP8
    Decode / Encode
  • AV1
    没有
  • AVC
    Decode / Encode
  • VC-1
    Decode
  • JPEG
    Decode / Encode
Memory Specs & PCI

This section breaks down the technical characteristics of the memory supported by the processor, including the types (e.g., DDR4, DDR5), number of memory channels, and maximum supported memory speed. It also covers PCI Express support, which determines the bandwidth available for GPUs, SSDs, and other peripherals, critical for high-performance systems.

  • 存储器类型
    DDR3L-1600 SO-DIMMDDR4-2133LPDDR3-1866
  • 最大内存
    32 GB
  • ECC
    没有
  • 记忆通道
    2
  • PCIe版本
    2.0
  • PCIe通道
    10
加密

This section focuses on the hardware-based security technologies integrated into the processor. These include encryption support features such as AES-NI, Intel SGX, and AMD Secure Memory Encryption, which provide robust protection for sensitive data and help mitigate cybersecurity risks.

  • AES-NI
能源消耗
  • TDP (PL1)
    15 W
  • TDP up
    --
  • TDP (PL2)
    --
  • TDP down
    --
  • 最高温度
    100 °C
* 见下文
Technologies and Extensions

This section explains the underlying technologies that enable the processor to deliver high performance. It includes details about the manufacturing process (e.g., 7nm, 10nm), supported instruction sets (e.g., AVX, SSE), and virtual machine extensions that enhance compatibility and efficiency across various workloads.

  • 指令集(ISA)
    x86-64 (64 bit)
  • 虚拟化
    VT-x, VT-x EPT, VT-d
  • ISA扩展
    SSE4.1, SSE4.2
  • L2-Cache
    --
  • L2-Cache
    2.00 MB
  • 建筑学
    Kaby Lake U
  • 技术过程
    14 nm
  • 插座
    BGA 1356
  • 发布日期
    Q1/2017
  • Part Number
    --
所有排名中的位置

共同立场 Intel Celeron 3865U 在流行的基准测试中的CPU,用于与其他型号进行比较.

  • Cinebench R15 (Single-Core)
    945 place
  • Cinebench R15 (Multi-Core)
    994 place
  • Geekbench 5, 64bit (Single-Core)
    1196 place
  • Geekbench 5, 64bit (Multi-Core)
    1392 place
  • iGPU - FP32 Performance (Single-precision GFLOPS)
    1409 place
  • Geekbench 3, 64bit (Single-Core)
    665 place
  • Geekbench 3, 64bit (Multi-Core)
    765 place
  • Estimated results for PassMark CPU Mark
    1234 place

基准

性能测试 CPU

Compare the benchmark scores of Intel Celeron 3865U with other processors to gauge its real-world performance across various tasks..

These tests encompass tasks such as mathematical calculations, 3D rendering, cryptocurrency mining, and performance evaluations in both single-core and multi-core modes.

Cinebench R15 (Single-Core)
Cinebench R15 SC对台式电脑或笔记本电脑的计算模块施加压力,使其达到极限,并准确确定硬件的关键性能参数。
73
73
73
71
Intel Celeron 3865U
Cinebench R15 (Multi-Core)
Cinebench R15 MC对台式电脑或笔记本电脑的计算模块施加压力,使其达到极限,并准确确定硬件的关键性能参数。
142
141
140
139
Intel Celeron 3865U
Geekbench 5, 64bit (Single-Core)
Geekbench 5 SC是一个流行的跨平台性能测试,适用于密集使用系统内存的桌面或移动处理器。
449
446
442
441
Intel Celeron 3865U
Geekbench 5, 64bit (Multi-Core)
Geekbench 5 MC是一个流行的跨平台性能测试,适用于密集使用系统内存的桌面或移动处理器。
793
786
786
783
Intel Celeron 3865U
iGPU - FP32 Performance (Single-precision GFLOPS)
iGPU的性能--游戏中的内部GPU
173
173
173
173
Intel Celeron 3865U
Geekbench 3, 64bit (Single-Core)
一个CPU核心的Geekbench 3 SC,包括模拟真实3D场景的压力测试,适用于Windows、Mac、Linux、Ansroid、iOS。
1862
1858
1856
1849
Intel Celeron 3865U
Geekbench 3, 64bit (Multi-Core)
Geekbench 3 MC使用多核和超线程,包括模拟Windows、Mac、Linux、Ansroid、iOS的真实3D场景的压力测试。
3246
3241
3240
3234
Intel Celeron 3865U
Estimated results for PassMark CPU Mark
PassMark是一个测试套件,执行复杂的数学计算,以确定文件压缩、加密和物理相关任务的CPU性能。
1921
1907
1906
1903
Intel Celeron 3865U

同义词

在性能方面,类似的处理器。

在技术数据处理人员中与之相似的是 Intel Celeron 3865U.

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*

PL1 - The power limit (in watts) generated by the processor (or GPU) during sustained, standard operation. It represents the typical thermal output during normal workloads.

PL2 - Represents the maximum power limit under heavy load or overclocking conditions. It indicates the thermal output during peak performance.

These values are essential for determining the optimal cooling system and power supply required to maintain stable performance.

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