HiSilicon Kirin 710 Benchmark, Test and specs

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The HiSilicon Kirin 710 has 8 cores with 8 threads and is based on the 5. gen of the HiSilicon Kirin series. The processor was released in Q3/2018. The HiSilicon Kirin 710 scores 322 points in the Geekbench 5 single-core benchmark. In the Geekbench 5 multi-core benchmark, the result is 1,384 points.
HiSilicon Kirin 710

CPU lineage

The segment in which we have classified the HiSilicon Kirin 710. Here you can see if it is a desktop processor or a mobile processor or which processor may be the successor of the HiSilicon Kirin 710.

Name: HiSilicon Kirin 710
Family: HiSilicon Kirin (29)
CPU group: HiSilicon Kirin 710 (1)
Architecture: Cortex-A73 / Cortex-A53
Segment: Mobile
Generation: 5
Predecessor: --
Successor: --

CPU Cores and Base Frequency

The HiSilicon Kirin 710 has 8 CPU cores and can calculate 8 threads in parallel. The clock frequency of the HiSilicon Kirin 710 is 2.20 GHz. The number of CPU cores greatly affects the speed of the processor and is an important performance indicator.

CPU Cores / Threads: 8 / 8
Core architecture: hybrid (big.LITTLE)
A-Core: 4x Cortex-A73
B-Core: 4x Cortex-A53
Hyperthreading / SMT: No
Overclocking: No
A-Core Frequency: 2.20 GHz
B-Core Frequency: 1.70 GHz

Internal Graphics

The HiSilicon Kirin 710 has integrated graphics, called iGPU for short. Specifically, the HiSilicon Kirin 710 uses the ARM Mali-G51 MP4, which has 128 texture shaders and 8 execution units. The iGPU uses the system's main memory as graphics memory and sits on the processor's die.

GPU name: ARM Mali-G51 MP4
GPU frequency: 0.65 GHz
GPU (Turbo): 1.00 GHz
Compute units: 8
Shader: 128
Hardware Raytracing: No
Release date: Q2/2018
Max. displays: 2
Generation: Bifrost 1
Direct X: 11
Technology: 12 nm
Max. GPU Memory: 4 GB
Frame Generation: No

Hardware codec support

A photo or video codec that is accelerated in hardware can greatly accelerate the working speed of a processor and extend the battery life of notebooks or smartphones when playing videos.

h265 / HEVC (8 bit): Decode / Encode
h265 / HEVC (10 bit): No
h264: Decode / Encode
VP8: Decode / Encode
VP9: Decode / Encode
AV1: No
AVC: Decode / Encode
VC-1: Decode / Encode
JPEG: Decode / Encode

Memory & PCIe

The processor can use up to 6 GB memory in 2 (Dual Channel) memory channels. The maximum memory bandwidth is --. The memory type as well as the amount of memory can greatly affect the speed of the system.

Memory type: Memory bandwidth:
LPDDR4
LPDDR3
--
--
Max. Memory: 6 GB
Memory channels: 2 (Dual Channel)
ECC: No
PCIe:
PCIe Bandwidth: --

Thermal Management

The thermal design power (TDP for short) of the processor is 5 W. The TDP specifies the necessary cooling solution that is required to cool the processor sufficiently. The TDP usually gives a rough idea of the actual power consumption of the CPU.

TDP (PL1 / PBP): 5 W
TDP (PL2): --
TDP up: --
TDP down: --
Tjunction max.: --

Technical details

The HiSilicon Kirin 710 is made in 12 nm. The smaller the manufacturing process of a CPU, the more modern and energy-efficient it is. Overall, the processor has 1.00 MB cache. A large cache can greatly speed up the processor's speed in some cases such as games.

Technology: 12 nm
Chip design: Chiplet
Socket: --
L2-Cache: --
L3-Cache: 1.00 MB
AES-NI: No
Operating systems: Android
Virtualization: None
Instruction set (ISA): Armv8-A (64 bit)
ISA extensions: --
Release date: Q3/2018
Release price: --
Part Number: --
Documents: --

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Benchmark results

Verified Benchmark results
The benchmark results for the HiSilicon Kirin 710 have been carefully checked by us. We only publish benchmark results that have been created by us or that have been submitted by a visitor and then checked by a team member. All results are based on and fullfill our benchmark guidelines.


Geekbench 5, 64bit (Single-Core)

Geekbench 5 is a cross plattform benchmark that heavily uses the systems memory. A fast memory will push the result a lot. The single-core test only uses one CPU core, the amount of cores or hyperthreading ability doesn't count.
AMD A6-4400M AMD A6-4400M
2C 2T @ 3.20 GHz
324
Apple A8 Apple A8
2C 2T @ 1.50 GHz
324
Intel Pentium T4400 Intel Pentium T4400
2C 2T @ 2.20 GHz
324
HiSilicon Kirin 710 HiSilicon Kirin 710
8C 8T @ 2.20 GHz
322
Qualcomm Snapdragon 636 Qualcomm Snapdragon 636
8C 8T @ 1.80 GHz
322
AMD A10-7300 AMD A10-7300
4C 4T @ 3.20 GHz
322
MediaTek Helio X25 MediaTek Helio X25
10C 10T @ 2.50 GHz
320

Geekbench 5, 64bit (Multi-Core)

Geekbench 5 is a cross plattform benchmark that heavily uses the systems memory. A fast memory will push the result a lot. The multi-core test involves all CPU cores and taks a big advantage of hyperthreading.
Intel Pentium D1508 Intel Pentium D1508
2C 4T @ 2.60 GHz
1387
Intel Celeron G4900T Intel Celeron G4900T
2C 2T @ 2.80 GHz
1386
Intel Celeron N4100 Intel Celeron N4100
4C 4T @ 2.40 GHz
1385
HiSilicon Kirin 710 HiSilicon Kirin 710
8C 8T @ 2.20 GHz
1384
Intel Core i3-4100M Intel Core i3-4100M
2C 4T @ 2.50 GHz
1384
Intel Core i5-5250U Intel Core i5-5250U
2C 4T @ 2.50 GHz
1378
Intel Core i5-8200Y Intel Core i5-8200Y
2C 4T @ 2.80 GHz
1376

Geekbench 6 (Single-Core)

Geekbench 6 is a benchmark for modern computers, notebooks and smartphones. What is new is an optimized utilization of newer CPU architectures, e.g. based on the big.LITTLE concept and combining CPU cores of different sizes. The single-core benchmark only evaluates the performance of the fastest CPU core, the number of CPU cores in a processor is irrelevant here.
Intel Core i3-2310M Intel Core i3-2310M
2C 4T @ 2.10 GHz
350
Intel Core i3-2312M Intel Core i3-2312M
2C 4T @ 2.10 GHz
350
Qualcomm Snapdragon 660 non LTE Qualcomm Snapdragon 660 non LTE
8C 8T @ 2.20 GHz
350
HiSilicon Kirin 710 HiSilicon Kirin 710
8C 8T @ 2.20 GHz
348
MediaTek MT8173 MediaTek MT8173
4C 4T @ 1.80 GHz
348
Intel Pentium B940 Intel Pentium B940
2C 2T @ 2.00 GHz
347
Intel Celeron J4115 Intel Celeron J4115
4C 4T @ 2.50 GHz
340

Geekbench 6 (Multi-Core)

Geekbench 6 is a benchmark for modern computers, notebooks and smartphones. What is new is an optimized utilization of newer CPU architectures, e.g. based on the big.LITTLE concept and combining CPU cores of different sizes. The multi-core benchmark evaluates the performance of all of the processor's CPU cores. Virtual thread improvements such as AMD SMT or Intel's Hyper-Threading have a positive impact on the benchmark result.
Intel Core i5-2540M Intel Core i5-2540M
2C 4T @ 2.60 GHz
1216
Intel Core i7-3555LE Intel Core i7-3555LE
2C 4T @ 2.50 GHz
1214
Apple A10 Fusion Apple A10 Fusion
4C 4T @ 2.34 GHz
1207
HiSilicon Kirin 710 HiSilicon Kirin 710
8C 8T @ 2.20 GHz
1206
Intel Core i3-2130 Intel Core i3-2130
2C 4T @ 3.40 GHz
1197
Intel Core i3-5005U Intel Core i3-5005U
2C 4T @ 2.00 GHz
1197
Intel Core i3-3225 Intel Core i3-3225
2C 4T @ 3.30 GHz
1195

iGPU - FP32 Performance (Single-precision GFLOPS)

The theoretical computing performance of the internal graphics unit of the processor with simple accuracy (32 bit) in GFLOPS. GFLOPS indicates how many billion floating point operations the iGPU can perform per second.
AMD A4-4300M AMD A4-4300M
AMD Radeon HD 7420G @ 0.66 GHz
168
Intel Celeron G1820 Intel Celeron G1820
Intel HD Graphics (Haswell GT1) @ 1.05 GHz
168
Intel Celeron G1820T Intel Celeron G1820T
Intel HD Graphics (Haswell GT1) @ 1.05 GHz
168
HiSilicon Kirin 710 HiSilicon Kirin 710
ARM Mali-G51 MP4 @ 1.00 GHz
166
HiSilicon Kirin 710A HiSilicon Kirin 710A
ARM Mali-G51 MP4 @ 1.00 GHz
166
Qualcomm Snapdragon 630 Qualcomm Snapdragon 630
Qualcomm Adreno 508 @ 0.65 GHz
163
Intel Core i7-2610UE Intel Core i7-2610UE
Intel HD Graphics 3000 @ 0.85 GHz
163

AnTuTu 9 Benchmark

The AnTuTu 9 benchmark is very well suited to measuring the performance of a smartphone. AnTuTu 9 is quite heavy on 3D graphics and can now also use the "Metal" graphics interface. In AnTuTu, memory and UX (user experience) are also tested by simulating browser and app usage. AnTuTu version 9 can compare any ARM CPU running on Android or iOS. Devices may not be directly comparable when benchmarked on different operating systems.

In the AnTuTu 9 benchmark, the single-core performance of a processor is only slightly weighted. The rating is made up of the multi-core performance of the processor, the speed of the working memory, and the performance of the internal graphics.
MediaTek Helio P90 MediaTek Helio P90
8C 8T @ 2.20 GHz
239467
MediaTek Helio G80 MediaTek Helio G80
8C 8T @ 2.00 GHz
231640
MediaTek Helio G85 MediaTek Helio G85
8C 8T @ 2.00 GHz
226311
HiSilicon Kirin 710 HiSilicon Kirin 710
8C 8T @ 2.20 GHz
224605
Qualcomm Snapdragon 662 Qualcomm Snapdragon 662
8C 8T @ 2.00 GHz
209877
MediaTek Helio P70 MediaTek Helio P70
8C 8T @ 2.10 GHz
204326
MediaTek Helio P60 MediaTek Helio P60
8C 8T @ 2.00 GHz
204036

AnTuTu 8 Benchmark

The AnTuTu 8 Benchmark measures the performance of a SoC. AnTuTu benchmarks the CPU, GPU, Memory as well as the UX (User Experience) by simulating browser and app usage. AnTuTu can benchmark any ARM CPU that runs under Android or iOS. Devices may not be directly compareable if the benchmark has been performed under different operating systems.

In the AnTuTu 8 benchmark, the single-core performance of a processor is only slightly weighted. The evaluation consists of the multi-core performance of the processor, the speed of the RAM and the performance of the internal graphics.
MediaTek Helio G88 MediaTek Helio G88
8C 8T @ 2.00 GHz
207365
MediaTek Helio G80 MediaTek Helio G80
8C 8T @ 2.00 GHz
202364
Qualcomm Snapdragon 675 Qualcomm Snapdragon 675
8C 8T @ 2.00 GHz
197689
HiSilicon Kirin 710 HiSilicon Kirin 710
8C 8T @ 2.20 GHz
196747
Qualcomm Snapdragon 712 Qualcomm Snapdragon 712
8C 8T @ 2.30 GHz
195433
MediaTek Helio G70 MediaTek Helio G70
8C 8T @ 2.00 GHz
189653
UNISOC T700 UNISOC T700
8C 8T @ 1.80 GHz
188599

Benchmarks





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