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Snapdragon X Elite X1E-78-100

Key Details for Snapdragon X Elite X1E-78-100
- memory
Total Core No.
12 - screenshot_monitor
Max. Frequency
3.4 Ghz - width_normal
Technology
4nm - storage
No of Threads
8 - developer_board
iGPU
Qualcomm Adreno X1 - hub
NPU
Qualcomm Hexagon NPU
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Detail Specification of Snapdragon X Elite X1E-78-100
General | |
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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. | Qualcomm |
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. | Oryon |
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. | Snapdragon X Elite |
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. | X Elite X1E |
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. | ARMv9 |
Launch Date | 10/2023 |
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 | |
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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. | 12 |
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. | 3.4 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. | 3.4 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. | 8 |
L1 Cache?The smallest and fastest cache memory level, located closest to the processor cores. It stores frequently accessed data for rapid retrieval. | |
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. | Total 42 MB (shared) |
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. | |
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. | 34x |
Unlocked Multiplier?Indicates that the processor's multiplier can be adjusted, allowing for overclocking to increase performance beyond the default specifications. | No |
Perfomance Score | |
---|---|
Cinebench R23 (Single core)?Measures a CPU's single-core performance using Cinema 4D's rendering engine | 1902 |
Cinebench R23 (Multi core)?Multi-Core: Evaluates a CPU's multi-core performance, utilizing all cores for rendering | 12538 |
Cinebench 2024 (Single Core)?Tests single-core efficiency using Redshift rendering engine | 108 |
Cinebench 2024 (Multi Core)?Assesses multi-core performance with Redshift rendering over a 10-minute test | 903 |
Geekbench 6 (Single Core)?Benchmarks a CPU's single-threaded performance in real-world tasks | 2608 |
Geekbench 6 (Multi Core)?Measures multi-core processing power across various workloads | 13047 |
Package | |
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Technology?The process used to create the processor, measured in nanometers (nm). Smaller manufacturing processes typically result in more efficient and powerful processors. | 4nm |
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. | 12 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. | 80 watt |
Socket?The physical interface on the motherboard where the processor is installed. The socket type determines compatibility between the processor and motherboard. | Custom |
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. |
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. | Qualcomm Adreno X1 |
Base Frequency?The standard operating speed of the IGPU, measured in megahertz (MHz). It indicates the IGPU's baseline graphics processing power. | 500 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. | 1200 MHz |
Shading Units?The number of processing units within the IGPU responsible for rendering graphics. More shading units generally result in better graphics performance. | 1536 |
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. | 48 |
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. | 6 |
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. | 6 |
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. | 3.8 TFLOPS |
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. | Qualcomm Hexagon NPU |
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. | 45 TOPS |
Display & Memory Support | |
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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. | LPDDR5x - 8448 MT/s (Up to 64 GB) |
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. | 3840 × 2160 @ 120Hz |
Features | Dual Micro NPU, Qualcomm Spectra ISP, Qualcomm Aqstic Audio, Qualcomm Smart Transmit technology, Qualcomm Wideband Envelope Tracking, Qualcomm AI-Enhanced Signal Boost adaptive antenna tuning, Qualcom® 5G PowerSave |
Product Link | Qualcomm |
Overview: Snapdragon X Elite X1E-78-100 Processor
The Snapdragon X Elite X1E-78-100, unveiled in October 2023, is a high-performing 12-core processor based on the advanced Oryon architecture. Designed for modern laptops, it seamlessly integrates exceptional multitasking capabilities with energy-efficient operation enabled by its 4nm manufacturing process. Equipped with Qualcomm Adreno X1 Graphics, compatibility with LPDDR5x memory, and the intelligent Qualcomm Hexagon NPU, this processor is perfect for gamers, creators, and professionals seeking cutting-edge computing power.
Features and Specifications
Core Configuration for Superior Multitasking
- Total Cores: 12 Performance Cores (P-Cores)
- Base Frequency: 3.4 GHz
- Boost Frequency: 3.4 GHz
The processor’s 12-core architecture ensures flawless execution of resource-intensive tasks, including gaming, video rendering, and multitasking workflows. Its consistent base and boost frequencies provide dependable speed and efficiency for a range of applications.
Qualcomm Adreno X1 Graphics for Stunning Visuals
- Base Frequency: 500 MHz
- Boost Frequency: 1200 MHz
- Shading Units: 1536
- TMUs: 48
- ROPs: 6
- IGPU Power: 3.8 TFLOPS
Integrated Qualcomm Adreno X1 Graphics offers smooth rendering and vibrant visuals, making it suitable for media playback, gaming, and creative projects. With 3.8 TFLOPS of power, users can experience immersive and fluid graphics performance across multiple platforms.
Memory and Display Compatibility
- Memory Support: LPDDR5x – Up to 8448 MT/s (Up to 64 GB)
- Maximum Display Resolution: 3840 × 2160 @ 120Hz
The processor supports high-speed LPDDR5x memory, enabling rapid data handling and efficient multitasking. Compatibility with 4K displays at 120Hz ensures sharp and seamless visuals, ideal for professional editing and gaming scenarios.
AI Optimization with Qualcomm Hexagon NPU
- Neural Processing Unit (NPU): Qualcomm Hexagon NPU
- Performance Power: 45 TOPS
The integrated Qualcomm Hexagon NPU delivers intelligent multitasking and system optimizations. With 45 TOPS of performance, it powers advanced AI-driven tasks such as machine learning, voice recognition, and automated system enhancements.
Energy Efficiency and Compact Thermal Design
- Base Power Consumption: 12 watts
- Maximum Power Consumption: 80 watts
Manufactured using the 4nm process, the processor combines energy efficiency with reliable thermal regulation, ensuring sustained functionality during high-demand workloads.
Use Cases for Snapdragon X Elite X1E-78-100
1. Professional Laptops for Advanced Workflows
The processor’s 12-core design guarantees smooth multitasking, supporting productivity tools, virtual collaboration, and resource-heavy professional applications.
2. Gaming Systems for Immersive Experiences
With Qualcomm Adreno X1 Graphics, the processor delivers realistic visuals and responsive gameplay, catering to gaming enthusiasts seeking high-quality performance.
3. Creative Workstations for Content Creation
Its robust processing and advanced graphics capabilities make it ideal for tasks such as video editing, graphic design, and 3D rendering, ensuring consistent and accurate results for creators.
4. AI-Enhanced Devices for Smart Computing
The Qualcomm Hexagon NPU powers AI-driven functionalities, enabling seamless machine learning, intelligent optimizations, and innovative multitasking solutions.
5. Media and Entertainment Systems
Support for 120Hz 4K displays ensures smooth and detailed visuals, making this processor perfect for streaming, media playback, and immersive entertainment setups.
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