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AMD Ryzen 7 8840HS

AMD Ryzen 7 8840HS

Detailed Overview of the AMD Ryzen 7 8840HS Laptop Processor

The AMD Ryzen 7 8840HS processor is an impressive addition to AMD's lineup, designed for high-performance laptops. With its eight cores and sixteen threads, it is tailored for power users who demand efficiency and speed, whether for gaming, multimedia, or professional applications. In this article, we will delve into various aspects of the Ryzen 7 8840HS, including its architecture, performance benchmarks, power consumption, and more.

1. Architecture and Process Technology

Core Configuration

The AMD Ryzen 7 8840HS features a robust architecture with:

- Cores: 8 (P-Cores)

- Threads: 16

- Max Turbo Frequency (P): 5.1 GHz

The Ryzen 7 series utilizes AMD's Zen 4 microarchitecture, built on a 7nm process technology. This results in improved performance and power efficiency compared to its predecessors. The 8840HS processor is designed to handle intensive tasks by distributing workloads across its multiple cores and threads effectively.

Integrated Graphics

One significant advantage of this processor is its integrated GPU (iGPU), which enhances graphics performance for light gaming and multimedia tasks without the need for a dedicated graphics card. The iGPU features AMD’s RDNA 2 architecture, offering decent performance for casual gaming and video playback.

2. Power Consumption and Thermal Design Power (TDP)

The AMD Ryzen 7 8840HS has a TDP of 35W, making it a power-efficient choice for high-performance laptops. This low TDP allows manufacturers to design thinner and lighter devices without sacrificing performance. The efficient power consumption also contributes to lower cooling requirements, enabling quieter operation and longer battery life.

3. Performance: Real-World Testing

Office Work

In office applications, the Ryzen 7 8840HS excels at multitasking. Tasks such as document editing, spreadsheet manipulation, and video conferencing are handled seamlessly. Benchmarks show that it outperforms many Intel counterparts in tasks requiring multiple threads, such as large Excel files and data processing.

Multimedia

For multimedia tasks, including video editing and rendering, the Ryzen 7 8840HS demonstrates strong performance. Applications like Adobe Premiere Pro benefit from the additional cores and threads, resulting in faster rendering times and smoother playback of high-resolution content.

Gaming

When it comes to gaming, the Ryzen 7 8840HS stands out. While it may not rival top-tier dedicated GPUs, it performs well in mid-range settings for modern titles. Gamers can expect decent frame rates in popular games, especially when paired with a capable graphics card. The Turbo mode allows the processor to boost its clock speed to 5.1 GHz when needed, delivering extra performance during demanding gaming scenarios.

4. Use Cases: Who Needs This Processor?

Gaming

The Ryzen 7 8840HS is an excellent choice for gamers who want a portable device without compromising on performance. It can handle both gaming and streaming simultaneously, making it suitable for content creators and gamers alike.

Professional Work

For professionals in fields such as graphic design, video editing, and software development, the Ryzen 7 8840HS provides the necessary power to handle resource-intensive applications efficiently. Its multi-threading capabilities make it ideal for tasks such as compiling code or rendering graphics.

Everyday Tasks

For everyday users, this processor offers more than enough power for web browsing, social media, and office applications. Its efficiency ensures smooth operation without excessive energy consumption.

5. Battery Life: Impact of Power Consumption

The power consumption of the AMD Ryzen 7 8840HS significantly influences battery life. Thanks to its 35W TDP, laptops equipped with this processor can achieve impressive battery longevity, especially when combined with power-efficient displays and battery technologies.

Energy-Saving Technologies

AMD has incorporated several energy-saving technologies into its processors, such as:

- AMD Cool’n’Quiet: Dynamically adjusts CPU frequency and voltage based on workload, reducing power consumption during light tasks.

- Sleep States: Efficient power management during idle periods, allowing the processor to enter low-power states when not in use.

These features help extend laptop battery life, making the Ryzen 7 8840HS a suitable choice for users who require long-lasting performance on the go.

6. Comparison with Competitors

AMD Competitors

In AMD's lineup, the Ryzen 7 5800HS and Ryzen 9 6900HS are closest to the 8840HS. While the 5800HS offers slightly lower performance due to fewer cores, the 6900HS provides additional power but at a higher TDP, impacting battery life.

Intel Competitors

Against Intel's offerings, such as the Core i7-12700H, the Ryzen 7 8840HS often matches or exceeds performance in multi-threaded tasks. However, Intel's architecture may have an edge in single-threaded applications, making it crucial for users to consider their specific needs.

Apple M1/M2

When compared to Apple's M1 and M2 chips, the Ryzen 7 8840HS holds its ground in multi-core performance, but Apple's processors often excel in energy efficiency and integrated graphics performance. Users focused on battery life and seamless integration with macOS might prefer Apple's offerings.

7. Pros and Cons

Advantages

- High Performance: With 8 cores and 16 threads, the 8840HS delivers excellent performance across various applications.

- Power Efficiency: The 35W TDP allows for efficient designs and longer battery life.

- Integrated Graphics: The RDNA 2-based iGPU supports light gaming and multimedia tasks without a dedicated GPU.

Disadvantages

- Single-Core Performance: While improved, it may not match the single-thread performance of Intel's latest offerings.

- Thermal Management: High-performance tasks can generate heat, necessitating efficient cooling solutions in laptop designs.

8. Recommendations for Laptop Selection

When choosing a laptop with the AMD Ryzen 7 8840HS, consider the following:

Types of Devices

- Ultrabooks: Ideal for users needing portability and battery life, look for a model with good cooling to handle high-performance tasks.

- Gaming Laptops: Ensure the laptop includes a dedicated GPU for optimal gaming performance, as the integrated graphics may not suffice for high-end gaming.

- Workstations: For professionals, select a model with ample RAM and storage to maximize the performance of demanding applications.

Key Features to Consider

- Cooling Solutions: Look for laptops with efficient cooling systems to maintain performance during intensive tasks.

- Display Quality: A high-resolution display enhances the experience for both gaming and multimedia tasks.

- Battery Life: Opt for models boasting long battery life, especially for users on the go.

9. Conclusion: Who Should Choose the Ryzen 7 8840HS?

The AMD Ryzen 7 8840HS is an outstanding choice for a range of users, from gamers and content creators to professionals requiring robust performance for demanding applications. Its balance of power efficiency and performance makes it suitable for both portable devices and high-performance laptops.

In summary, the Ryzen 7 8840HS provides exceptional multi-core performance, integrated graphics capabilities, and efficient energy use, making it a compelling option for anyone looking to invest in a high-performance laptop. Whether you’re gaming, working, or simply browsing, this processor promises a satisfying experience.

Top Laptop/Mobile CPU: 84

기초적인

라벨 이름
AMD
플랫폼
Laptop
출시일
December 2023
모델명
?
인텔 프로세서 번호는 프로세서 브랜드, 시스템 구성, 시스템 수준 벤치마크와 함께 컴퓨팅 요구 사항에 적합한 프로세서를 선택할 때 고려해야 할 여러 요소 중 하나일 뿐입니다.
Ryzen 7 8840HS
코어 아키텍처
Hawk Point
주조소
TSMC
세대
Ryzen 7 (Zen 4 (Hawk Point))

CPU 사양

전체 코어 개수
?
코어는 단일 컴퓨팅 구성 요소(다이 또는 칩)에 있는 독립적인 중앙 처리 장치의 수를 설명하는 하드웨어 용어입니다.
8
전체 스레드 개수
?
해당하는 경우 인텔® 하이퍼 스레딩 기술은 성능 코어에서만 사용할 수 있습니다.
16
성능 코어
8
성능 코어 기본 주파수
3.3 GHz
성능 코어 터보 주파수
?
Intel® 터보 부스트 기술에서 파생된 최대 P-코어 터보 주파수.
5.1 GHz
L1 캐시
64 KB per core
L2 캐시
8 MB
L3 캐시
16 MB
잠금 해제된 곱셈기
No
곱셈기
33.0
버스 주파수
100MHz
소켓
?
소켓은 프로세서와 마더보드 사이의 기계적, 전기적 연결을 제공하는 구성 요소입니다.
AMD Socket FP8
제조 공정
?
리소그래피는 집적 회로를 제조하는 데 사용되는 반도체 기술을 말하며, 반도체 위에 구축된 형상의 크기를 나타내는 나노미터(nm) 단위로 보고됩니다.
4 nm
전력 소비
15 W
최고 온도
?
접합 온도는 프로세서 다이에서 허용되는 최대 온도입니다.
100°C
PCIe 버전
?
PCI Express는 고속 직렬 컴퓨터 확장 버스 표준으로, 고속 컴포넌트를 연결하는 데 사용되며, AGP, PCI 및 PCI-X와 같은 이전 표준을 대체합니다. 처음 출시 이후 여러 번의 개정과 개선이 이루어졌습니다. PCIe 1.0은 2002년에 처음 도입되었으며, 높은 대역폭에 대한 요구를 충족시키기 위해 시간이 지남에 따라 후속 버전이 출시되었습니다.
4.0
명령 집합
?
명령 집합은 CPU 내부에 저장된 하드 프로그램으로, CPU 작동을 안내하고 최적화합니다. 이러한 명령 집합을 통해 CPU는 더 효율적으로 작동할 수 있습니다. Intel 진영의 8086 명령 집합, ARM 진영의 RISC 명령 집합과 같은 다양한 명령 집합이 있는 CPU를 설계하는 제조사가 많습니다. x86, ARM v8, MIPS는 모두 명령 집합 코드입니다. 명령 집합은 확장 가능하며, 예를 들어, x86은 64비트 지원을 추가하여 x86-64를 만들었습니다. 특정 명령 집합과 호환되는 CPU를 개발하는 제조사는 명령 집합 특허 소유자로부터 권한이 필요합니다. 대표적인 예로는 Intel이 AMD에게 권한을 부여, 후자가 x86 명령 집합과 호환되는 CPU를 개발할 수 있게 한 경우가 있습니다.
x86-64
트랜지스터 개수
25 billions

메모리 사양

메모리 유형
?
인텔® 프로세서는 단일 채널, 듀얼 채널, 삼중 채널 및 플렉스 모드의 네 가지 유형으로 제공됩니다. 다중 메모리 채널을 지원하는 제품에서 채널당 다중 DIMM을 장착하는 경우 지원되는 최대 메모리 속도가 낮아질 수 있습니다.
DDR5-5600,LPDDR5x-7500
최대 메모리 크기
?
최대 메모리 크기는 프로세서가 지원하는 최대 메모리 용량을 나타냅니다.
256GB
최대 메모리 채널
?
메모리 채널 수는 실제 적용을 위한 대역폭 작동을 나타냅니다.
2
최대 메모리 대역폭
?
Max Memory bandwidth is the maximum rate at which data can be read from or stored into a semiconductor memory by the processor (in GB/s).
89.6 GB/s
ECC 메모리 지원
Yes

GPU 사양

통합 그래픽스
?
통합 GPU는 CPU 프로세서에 통합된 그래픽스 코어를 지칭합니다. 프로세서의 강력한 연산 능력과 지능적인 전력 효율 관리를 활용하여, 더 낮은 전력 소비로 뛰어난 그래픽 성능과 부드러운 응용 프로그램 경험을 제공합니다.
True
GPU 기본 주파수
1500 MHz
GPU 최대 동적 주파수
2700 MHz
실행 유닛
?
The Execution Unit is the foundational building block of Intel’s graphics architecture. Execution Units are compute processors optimized for simultaneous Multi-Threading for high throughput compute power.
12
최대 해상도
7680x4320 - 60 Hz
그래픽스 성능
8.12 TFLOPS

여러 가지 잡다한

PCIe 레인 수
20

Geekbench 6

싱글 코어
2063
멀티 코어
10273

성능

318.3
MB/Sec
File Compression
938.5
9.06
Routes/Sec
Navigation
60.8
43
Pages/Sec
HTML5 Browser
176.7
45.7
MPixels/Sec
PDF Renderer
300.9
31.9
Images/Sec
Photo Library
180.7
9.72
KLines/Sec
Clang
88.4
144.6
Pages/Sec
Text Processing
259.4
71.8
MB/Sec
Asset Compression
580.2
64.5
Images/Sec
Object Detection
180.5
10.3
Images/Sec
Background Blur
45.3
63.8
MPixels/Sec
Horizon Detection
401.4
117.6
MPixels/Sec
Object Remover
816
79.6
MPixels/Sec
HDR
344.7
21.6
Images/Sec
Photo Filter
75.7
2100
KPixels/Sec
Ray Tracer
19800
62.6
KPixels/Sec
Structure from Motion
369.5
싱글 코어
멀티 코어

Geekbench 5

싱글 코어
1861
멀티 코어
10608

Passmark CPU

싱글 코어
3755
멀티 코어
26135

다른 CPU와 비교

35%
59%
89%
지난 1년 동안 35% CPU보다 낫습니다
지난 3년 동안 59% CPU보다 낫습니다
89% CPU보다 낫습니다

SiliconCat 등급

84
당사 웹사이트의 Laptop/Mobile CPU 중에서 84위를 차지했습니다
328
당사 웹사이트의 모든 CPU 중에서 328위를 차지했습니다
Geekbench 6 싱글 코어
Ryzen 7 PRO 8840U
AMD, April 2024
2251
Core i5-1245U
Intel, February 2022
2154
Ryzen 7 8840HS
AMD, December 2023
2063
Ryzen 7 7735U
AMD, January 2023
1957
Xeon Platinum 8368Q
Intel, April 2021
1850
Geekbench 6 멀티 코어
Core 7 240H
Intel, December 2024
12108
Core i5-1340PE
Intel, January 2023
11111
Ryzen 7 8840HS
AMD, December 2023
10273
Core i9-9920X X-series
Intel, October 2018
9627
Core i7-12650H
Intel, January 2022
9005
Geekbench 5 싱글 코어
Ryzen 9 7900X3D
AMD, January 2023
2243
1970
Ryzen 7 8840HS
AMD, December 2023
1861
Core i5-14400F
Intel, January 2024
1755
Core i7-1265UE
Intel, January 2022
1685
Geekbench 5 멀티 코어
Xeon Silver 4410T
Intel, January 2023
12608
Core Ultra 7 155H
Intel, December 2023
11592
Ryzen 7 8840HS
AMD, December 2023
10608
Core i7-1360P
Intel, January 2023
9811
Xeon E7-4890 v2
Intel, January 2014
9204
Passmark CPU 싱글 코어
Core i5-14500T
Intel, January 2024
3939
Core i7-14650HX
Intel, January 2024
3844
Ryzen 7 8840HS
AMD, December 2023
3755
Core Ultra 7 165U
Intel, December 2023
3660
Core i9-11900KF
Intel, March 2021
3555
Passmark CPU 멀티 코어
Ryzen 9 8945HS
AMD, December 2023
28913
Ryzen 7 PRO 8840HS
AMD, April 2024
27510
Ryzen 7 8840HS
AMD, December 2023
26135
Xeon Gold 5415+
Intel, January 2023
25012
Core Ultra 5 135H
Intel, December 2023
23765

관련 CPU 비교