Samsung Exynos 9825 Samsung Exynos 9825
Qualcomm Snapdragon 652 Qualcomm Snapdragon 652
VS

Comparision Samsung Exynos 9825 vs Qualcomm Snapdragon 652

Samsung Exynos 9825

WINNER
Samsung Exynos 9825

Rating: 59 points
Qualcomm Snapdragon 652

Qualcomm Snapdragon 652

Rating: 17 points
Grade
Samsung Exynos 9825
Qualcomm Snapdragon 652
Interfaces and communications
6
8
Memory specification
3
2
Performance
10
9
Benchmark tests
5
1

Top specs and features

AnTuTu test score

Samsung Exynos 9825: 521905 Qualcomm Snapdragon 652: 98513

Memory frequency

Samsung Exynos 9825: 2133 MHz Qualcomm Snapdragon 652: 933 MHz

4G support

Samsung Exynos 9825: Available Qualcomm Snapdragon 652: Available

Technological process

Samsung Exynos 9825: 7 nm Qualcomm Snapdragon 652: 28 nm

GPU base clock

Samsung Exynos 9825: 600 MHz Qualcomm Snapdragon 652: 600 MHz

Description

Samsung Exynos 9825 - 8 - core processor, clocked at 2730 GHz. Qualcomm Snapdragon 652 is equipped with 8 cores clocked at 1800 MHz. The maximum frequency of the first processor is 2.73 GHz. The second is capable of overclocking to 1.8 GHz.

Samsung Exynos 9825 consumes 9 Watt and Qualcomm Snapdragon 652 There is no data Watt.

As for the graphics core. Samsung Exynos 9825 is equipped with Mali G76 MP12. The second uses Adreno 510. The first operates at a frequency of 600 MHz. Qualcomm Snapdragon 652 operates at 600 MHz.

Regarding processor memory. Samsung Exynos 9825 may support DDR4. The maximum memory capacity is 12 GB. And its throughput is 31 GB/s. Qualcomm Snapdragon 652 works with DDR3. The maximum amount of memory can be 4. At the same time, the throughput reaches 15 GB/s

Let's move on to performance testing in benchmarks. In the AnTuTu benchmark, Samsung Exynos 9825 scored 521905 points out of 988414 possible points. In the GeekBench 5 (Multi-Core) benchmark, it scored 2499 points out of a possible 16511 points. Qualcomm Snapdragon 652 in Antutu received 98513 points. And GeekBench 5 (Multi-Core) scored 934 points .

Results.

Why Samsung Exynos 9825 is better than Qualcomm Snapdragon 652

  • AnTuTu test score 521905 против 98513 , more on 430%
  • Memory frequency 2133 MHz против 933 MHz, more on 129%
  • Technological process 7 nm против 28 nm, less by -75%
  • Maximum processor frequency 2.73 GHz против 1.8 GHz, more on 52%
  • L1 cache size 512 KB против 256 KB, more on 100%
  • Memory Bandwidth 31 GB/s против 15 GB/s, more on 107%
  • Max. Memory 12 GB против 4 GB, more on 200%
  • DirectX 12 против 11.1 , more on 8%

Samsung Exynos 9825 vs Qualcomm Snapdragon 652: highlights

Samsung Exynos 9825
Samsung Exynos 9825
Qualcomm Snapdragon 652
Qualcomm Snapdragon 652
Interfaces and communications
Vulcan version
The Vulkan version indicates supported features and functionality, and may include bug fixes and performance improvements introduced in recent API updates. Show more
1.1
max 1.1
Average: 1.1
1
max 1.1
Average: 1.1
Camera resolution (max)
24
max 200
Average: 69
21
max 200
Average: 69
8K video recording
60 FPS
max 60
Average: 36.7 FPS
FPS
max 60
Average: 36.7 FPS
H.265
Supports a video compression standard that provides more efficient use of bandwidth and higher video quality than previous standards such as H.264.
Available
Available
H.264
H.264 (or AVC) is a video coding standard that provides efficient, high quality video compression.
Available
Available
VP9
VP9 is an open video coding standard that provides efficient video compression with high image quality.
Available
There is no data
MP3
lossy audio format that allows you to compress audio files with minimal loss in sound quality. Mobile processors support decoding and playback of MP3 files, allowing the user to enjoy music and audio files on their devices. Show more
Available
Available
WAV
An uncompressed audio file format that provides high quality audio and preserves all the details of the audio recording. Mobile processors support playback and processing of WAV files, which allows users to listen and record audio without losing quality. Show more
Available
Available
AIFF
An uncompressed audio file format that provides high quality sound and retains all the details of the original recording.
Available
Available
MP4
A media container format used to store video, audio, and other media files.
Available
Available
CAF
Available
Available
GPS
Available
Available
GLONASS
GLONASS is a global navigation and positioning system developed by Russia.
Available
Available
eMMC version
standard flash memory format that is integrated directly into the SoC. Newer versions of eMMC provide faster data transfer speeds, faster app loading, and better overall device performance. Show more
3
max 5.1
Average: 2.7
max 5.1
Average: 2.7
WiFi Version
Indicates the supported version of the Wi-Fi wireless standard. Newer versions of Wi-Fi provide faster data transfer rates, more stable connections, and improved Wi-Fi network performance. Show more
6
max 6
Average: 5.2
5
max 6
Average: 5.2
4G support
LTE is located on a system on a chip (SoC). Built-in cellular-type LTE allows you to download much faster than older 3G technologies.
Available
Available
Intel® AES-NI Commands
AES is needed to speed up encryption and decryption.
Available
Available
Memory specification
Memory frequency
RAM may be faster to increase system performance.
2133 MHz
max 7500
Average: 1701 MHz
933 MHz
max 7500
Average: 1701 MHz
Memory Bandwidth
This is the rate at which the device stores or reads information.
31 GB/s
max 77
Average: 24.1 GB/s
15 GB/s
max 77
Average: 24.1 GB/s
Max. Memory
The largest amount of RAM memory.
12 GB
max 64
Average: 17.1 GB
4 GB
max 64
Average: 17.1 GB
RAM version (DDR)
Indicates the type and speed of RAM used to temporarily store data and perform tasks on the device. Newer versions of DDR, such as DDR4 or DDR5, provide faster data transfer rates and better overall system performance. Show more
4
max 5
Average: 3.5
3
max 5
Average: 3.5
Performance
Number of Cores
The more cores, the more parallel tasks can be completed in a shorter time. This improves productivity and multitasking quickly, such as launching applications, performing calculations, and more. Show more
8
max 16
Average: 6.4
8
max 16
Average: 6.4
GPU
GPU that is responsible for graphics processing, including displaying images, videos, and performing complex graphics calculations. A more powerful and advanced GPU delivers better graphics performance, higher frame rates, and better visual realism. Show more
Mali G76 MP12
Adreno 510
GPU architecture
The architecture of the GPU has an impact on the performance, power consumption, and functionality of the GPU. There are many different GPU architectures developed by different manufacturers such as NVIDIA, Qualcomm, ARM, and others. Show more
Bifrost
Adreno 500
GPU shaders
Refers to the parts of the GPU that are responsible for processing graphics and effects. The more shader units in the GPU, the higher the performance and graphics capabilities. Show more
192
max 1536
Average: 122.4
128
max 1536
Average: 122.4
CPU base frequency
The base frequency of a processor in mobile processors (SoCs) indicates its default operating frequency when the load on the processor does not require increased performance. The base frequency determines the base speed of the processor and affects the overall performance of the device. Show more
2730 MHz
max 3200
Average: 922.4 MHz
1800 MHz
max 3200
Average: 922.4 MHz
Data acquisition rate
Refers to the rate at which the processor can retrieve information from memory or other external data sources.
2000 MBits/s
max 3000
Average: 812.6 MBits/s
300 MBits/s
max 3000
Average: 812.6 MBits/s
Data download speed
Refers to the rate at which data is transferred between various system components such as memory, CPU, GPU, and others.
316 Mbit/s
max 1280
Average: 176.3 Mbit/s
150 Mbit/s
max 1280
Average: 176.3 Mbit/s
Hyper-threading
A technology that allows a single physical processor to execute multiple threads of tasks at the same time.
Not available
Not available
64-bit
The processor supports data and instruction processing with 64-bit width. This allows you to process more data and perform more complex calculations compared to 32-bit processors. Show more
Available
Available
Maximum processor frequency
When the processor's speed drops below its limit, it can jump to a higher clock speed to improve performance.
2.73 GHz
max 4.4
Average: 2.4 GHz
1.8 GHz
max 4.4
Average: 2.4 GHz
L2 cache size
An L2 cache with a large amount of scratchpad memory allows you to increase the speed of the processor and the overall performance of the system.
2 MB
max 14
Average: 1.6 MB
MB
max 14
Average: 1.6 MB
L1 cache size
A large amount of L1 memory accelerates results in the CPU and system performance settings
512 KB
max 2048
Average: 158.4 KB
256 KB
max 2048
Average: 158.4 KB
Multiplier Unlocked
Some processors have an unlocked multiplier, thanks to which they work faster and improve the quality in games and other applications.
Not available
Not available
L3 cache size
A large amount of L3 memory accelerates results in the CPU and system performance settings
4 MB
max 30
Average: 4.9 MB
MB
max 30
Average: 4.9 MB
FLOPS
The measurement of processing power of a processor is called FLOPS.
625 TFLOPS
max 2272
Average: 262.9 TFLOPS
161 TFLOPS
max 2272
Average: 262.9 TFLOPS
Benchmark tests
AnTuTu test score
AnTuTu is a popular mobile benchmark that is used to evaluate the performance and compare various aspects of mobile processors and systems on a chip (SoC). Show more
521905
max 988414
Average: 324226.4
98513
max 988414
Average: 324226.4
GeekBench 5 Single-Core score
The result of testing the performance of the processor in single-threaded mode using the GeekBench 5 benchmark. It measures the performance of a single processor core when performing various tasks. Show more
729
max 1986
Average: 490.3
269
max 1986
Average: 490.3
GeekBench 5 Multi-Core test score
GeekBench 5 Multi-Core is a benchmark that measures the multi-threaded performance of mobile processors and systems on a chip (SoC). The higher the value of this indicator, the more powerful the processor and the better it copes with the execution of several tasks at the same time. Show more
2499
max 16511
Average: 1759.3
934
max 16511
Average: 1759.3

FAQ

How many points does Samsung Exynos 9825 and Qualcomm Snapdragon 652 score in benchmarks?

In the Antutu benchmark, Samsung Exynos 9825 scored 521905 points. Qualcomm Snapdragon 652 scored 98513 points.

How many cores does the processor have?

Samsung Exynos 9825 has 8 cores. Qualcomm Snapdragon 652 has 8 cores.

Does the processor support NAVIC?

Samsung Exynos 9825 There is no data.

How many transistors are there in processors?

Samsung Exynos 9825 has 8500 million transistors. Qualcomm Snapdragon 652 has 1000 million transistors.

What GPU is installed on Samsung Exynos 9825 and Qualcomm Snapdragon 652?

Samsung Exynos 9825 uses Mali G76 MP12. Processor Qualcomm Snapdragon 652 has graphics core Adreno 510 installed.

How fast are the processors?

Samsung Exynos 9825 is clocked at 2730 MHz. Qualcomm Snapdragon 652 operates at 1800 MHz.

What kind of RAM is supported?

Samsung Exynos 9825 supports DDR4. Qualcomm Snapdragon 652 supports DDR3.

What is the maximum frequency of processors?

Samsung Exynos 9825 has a maximum frequency of 2.73 Hz. The maximum frequency for Qualcomm Snapdragon 652 reaches 1.8 GHz.

How much energy do they consume?

The power consumption of Samsung Exynos 9825 can be up to 9 Watts. Qualcomm Snapdragon 652 has up to 9 Watts.