Intel Core Ultra 5 125U

Intel Ultra 5 Ultra Series 1 Logo

Key Details for Intel Core Ultra 5 125U

  • memory

    Total Core No.

    12
  • screenshot_monitor

    Max. Frequency

    4.3 Ghz
  • width_normal

    Technology

    7 nm
  • storage

    No of Threads

    14
  • developer_board

    iGPU

    Intel Graphics
  • hub

    NPU

    Intel AI Boost
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Detail Specification of Intel Core Ultra 5 125U

General specs of Intel Core Ultra 5 125U

General

Brand

?The manufacturer or company that produces the processor, such as Intel or AMD. The brand often signifies the processor's architecture and overall quality.
Intel

Code Name

?An internal name used by the manufacturer during the development of a processor architecture. It often indicates the generation or specific design of the processor.
Meteor Lake-U

Series Name

?The marketing name given to a specific family of processors within a brand's lineup, such as Intel Core i7 or AMD Ryzen 5. Series names help categorize processors based on performance and target market.
Intel Core Ultra Series 1

Model Name

?The marketing name given to a specific family of CPUs within a brand's lineup, such as 'Intel Ultra 5' or 'Intel Ultra 7'. Model names help categorize CPUs based on performance and target market.
Intel Core Ultra 5

Instruction Set

?The set of commands that a processor understands and can execute. Different instruction sets support varying levels of performance and compatibility with software.
X86

Launch Date

12/2023

Vertical

?The intended market segment or use case for the processor, such as desktop, laptop, server, or embedded systems. It indicates the processor's design and features tailored for specific applications.
Laptop
Cpu specs of Intel Core Ultra 5 125U

CPU

Total No. of Cores

?The total number of physical processing units within the processor. More cores allow the processor to handle multiple tasks simultaneously, enhancing multitasking performance.
12

No. of P-Cores

?The number of Performance cores (P-cores) within the processor. P-cores are designed for high-performance tasks and demanding applications.
2

P-Cores Base Frequency

?The standard operating speed of the Performance cores (P-cores), measured in gigahertz (GHz). It indicates the P-cores' baseline performance level.
1.3 Ghz

P-Cores Boost Frequency

?The maximum speed a P-core can reach under heavy load, measured in gigahertz (GHz). It represents the P-cores' peak performance capability.
4.3 Ghz

No. of E-Cores

?The number of Efficiency cores (E-cores) within the processor. E-cores are designed for power efficiency and handling background tasks.
8

E-Cores Base Frequency

?The standard operating speed of the E-cores, measured in gigahertz (GHz). It indicates the E-cores' baseline performance level.
0.8 Ghz

E-Cores Boost Frequency

?The maximum speed an E-core can reach under heavy load, measured in gigahertz (GHz). It represents the E-cores' peak performance capability.
3.6 Ghz

No of LE-Cores

?The number of Low Energy cores (LE-cores) within the processor. LE-cores are designed for very low power consumption and handling extremely light tasks.
2

LE-Cores Base Frequency

?The standard operating speed of the LE-cores, measured in gigahertz (GHz). It indicates the LE-cores' baseline performance level.
0.7 Ghz

LE-Cores Boost Frequency

?The maximum speed an LE-core can reach under heavy load, measured in gigahertz (GHz). It represents the LE-cores' peak performance capability.
2.1 Ghz

No. of Threads

?The number of virtual processing units a core can handle simultaneously. Threads enable a single core to process multiple instruction streams, enhancing efficiency.
14

L1 Cache

?The smallest and fastest cache memory level, located closest to the processor cores. It stores frequently accessed data for rapid retrieval.
112 KB (per core)

L2 Cache

?A mid-level cache memory that provides a larger storage capacity than L1 cache. It stores data that is less frequently accessed than L1 but more frequently than L3.
2 MB (per core)

L3 Cache

?The largest and slowest cache memory level shared by all processor cores. It stores data that is less frequently accessed than L2 but still needed for efficient operation.
12 MB (shared)

L1 Cache(E-core)

?The L1 cache memory dedicated to the Efficiency cores (E-cores). It stores frequently accessed data for rapid retrieval by the E-cores.
96 KB (per core)

L2 Cache(E-core)

?The L2 cache memory dedicated to the Efficiency cores (E-cores). It provides a larger storage capacity than the E-cores' L1 cache.
2 MB (per module)

Multiplier

?A factor that determines the processor's clock speed by multiplying the base clock frequency. It influences the overall operating speed of the processor.
13x

Unlocked Multiplier

?Indicates that the processor's multiplier can be adjusted, allowing for overclocking to increase performance beyond the default specifications.
No
Perfomance score of Intel Core Ultra 5 125U

Perfomance Score

Cinebench R23 (Single core)

?Measures a CPU's single-core performance using Cinema 4D's rendering engine
1523

Cinebench R23 (Multi core)

?Multi-Core: Evaluates a CPU's multi-core performance, utilizing all cores for rendering
8424

Cinebench 2024 (Single Core)

?Tests single-core efficiency using Redshift rendering engine
88

Cinebench 2024 (Multi Core)

?Assesses multi-core performance with Redshift rendering over a 10-minute test
602

Geekbench 6 (Single Core)

?Benchmarks a CPU's single-threaded performance in real-world tasks
2187

Geekbench 6 (Multi Core)

?Measures multi-core processing power across various workloads
9324
Power consumption and socket information of Intel Core Ultra 5 125U

Package

Technology

?The process used to create the processor, measured in nanometers (nm). Smaller manufacturing processes typically result in more efficient and powerful processors.
7 nm

Base Power Consumption

?The typical power consumption of the processor under normal operating conditions, measured in Watts (W). It indicates the processor's energy efficiency.
15 watt

Max. Power Consumption

?The maximum amount of power the processor can consume under heavy load, measured in Watts (W). It represents the processor's peak power usage.
57 watt

Socket

?The physical interface on the motherboard where the processor is installed. The socket type determines compatibility between the processor and motherboard.
FCBGA2049

Max. Temperature

?The maximum safe operating temperature for the processor, measured in degrees Celsius (°C). Exceeding this temperature can lead to performance degradation or damage.
110°C
IGPU Details information of Intel Core Ultra 5 125U

IGPU

IGPU Name

?The specific name given to the integrated Graphics Processing Unit (IGPU) by the processor manufacturer. It identifies the IGPU's architecture and capabilities.
Intel Graphics

Base Frequency

?The standard operating speed of the IGPU, measured in megahertz (MHz). It indicates the IGPU's baseline graphics processing power.
300 MHz

Boost Frequency

?The maximum speed the IGPU can reach under heavy graphics load, measured in megahertz (MHz). It represents the IGPU's peak graphics performance.
1.85 GHz

Shading Units

?The number of processing units within the IGPU responsible for rendering graphics. More shading units generally result in better graphics performance.
512

TMUs

?Texture Mapping Units (TMUs) are processing units within the IGPU that apply textures to 3D surfaces. More TMUs improve the realism and detail of rendered graphics.
32

ROPs

?Render Output Units (ROPs) are processing units within the IGPU that handle the final stage of rendering, converting pixel data into an image. More ROPs improve the frame rate and image quality.
16

Execution Units

?The number of parallel processing cores within the IGPU. These units execute graphics instructions, and a higher number typically indicates better graphics performance.
64

IGPU Power

?The overall graphics processing capability of the integrated GPU. This is measured by how well it can handle graphical tasks, such as video playback and light gaming.
1.89 TFLOPS
Details of NPU in Intel Core Ultra 5 125U

NPU

NPU Name

?The specific name given to the Neural Processing Unit (NPU) by the processor manufacturer. It identifies the NPU's architecture and AI processing capabilities.
Intel AI Boost

NPU TOPS

?The processing power of the NPU, measured by how fast it can perform AI and machine learning operations. Higher NPU performance leads to faster AI-powered features.
11 Tops
Memory support, max resolution support, features details of Intel Core Ultra 5 125U

Display & Memory Support

Memory Support

?The types and speeds of RAM that the processor is compatible with. It specifies the maximum amount and speed of RAM that can be used with the processor.
Up to LPDDR5/x 7467 MT/s
Up to DDR5 5600 MT/s

Max. Display Resolution Support

?The highest resolution that the processor's integrated graphics or the processor in conjunction with a dedicated GPU can output to a display. It indicates the maximum visual fidelity the processor can support.
7680 x 4320 @ 60Hz

Features

PCIe 4, Thr. Director, DL Boost, AI Boost, vPro Essen., MMX, SSE, SSE2, SSE3, SSSE3, SSE4.1, SSE4.2, AES, AVX, AVX2, AVX-VNNI, FMA3, SHA

Product Link

Intel

Overview: Intel Core Ultra 5 125U Processor

The Intel Core Ultra 5 125U, powered by the Meteor Lake-U architecture, is a highly efficient processor designed to meet the needs of ultraportable laptops. Featuring a hybrid 12-core configuration, integrated Intel Graphics, and advanced AI capabilities, this processor provides a seamless balance between energy efficiency and solid performance. Its 7nm manufacturing process ensures exceptional thermal regulation and power optimization for lightweight laptop designs.

Features and Specifications

Core Design and Multitasking Efficiency

  • Total Cores: 12 (2 Performance Cores (P-Cores) + 8 Efficiency Cores (E-Cores) + 2 Low-Efficiency Cores (LE-Cores))
    • P-Cores:
      • Base Frequency: 1.3 GHz
      • Boost Frequency: 4.3 GHz
    • E-Cores:
      • Base Frequency: 0.8 GHz
      • Boost Frequency: 3.6 GHz
    • LE-Cores:
      • Base Frequency: 0.7 GHz
      • Boost Frequency: 2.1 GHz

The processor’s hybrid architecture enhances multitasking by allocating P-Cores to performance-intensive tasks, such as creative software, E-Cores to intermediate workloads, and LE-Cores to background processes, ensuring smooth and energy-efficient operation.

Intel Graphics Integration

  • Base Frequency: 300 MHz
  • Boost Frequency: 1.85 GHz
  • Shading Units: 512
  • TMUs: 32
  • ROPs: 16
  • IGPU Power: 1.89 TFLOPS

Intel Graphics ensures smooth visual rendering for casual gaming, streaming, and creative workflows. With enhanced shading and rendering capabilities, users experience vibrant and detailed multimedia.

Memory and Display Support

  • Memory Compatibility:
    • LPDDR5/x (up to 7467 MT/s)
    • DDR5 (up to 5600 MT/s)
  • Maximum Display Resolution: 7680 x 4320 @ 60Hz

The processor supports high-speed memory technologies and 8K display resolutions, enabling professionals and casual users alike to enjoy fluid multitasking and stunning visuals for presentations, media playback, and creative applications.

Thermal Management and Energy Efficiency

  • Base Power Consumption: 15 watts
  • Maximum Power Consumption: 57 watts

Developed using a 7nm manufacturing process, the Intel Core Ultra 5 125U achieves exceptional energy efficiency, ensuring laptops remain cool and battery-efficient while delivering consistent performance.

AI Optimization

  • Neural Processing Unit (NPU): Intel AI Boost
  • Performance Power: 11 TOPS

Intel AI Boost optimizes multitasking and system intelligence, delivering real-time enhancements for AI-driven applications such as voice recognition, intelligent system adjustments, and seamless multitasking.

Use Cases for Intel Core Ultra 5 125U

1. Lightweight Productivity Laptops

This processor’s compact and energy-efficient design makes it ideal for ultraportable laptops focused on basic productivity and extended battery life.

2. Multimedia and Streaming

With Intel Graphics, users can enjoy high-definition streaming, casual gaming, and immersive visuals for media playback, making it perfect for everyday entertainment.

3. Efficient Multitasking Machines

The hybrid core setup enables users to manage diverse workflows, such as running productivity apps, browsing the web, and engaging in virtual collaboration, without performance drops.

4. AI-Powered System Optimization

Intel AI Boost enhances multitasking efficiency, enabling laptops to adapt to users’ needs with real-time performance adjustments and smarter AI-driven features.

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