HiSilicon Kirin 620
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Released
Q1/2015
HiSilicon Kirin 620

Processor HiSilicon Kirin 620, specifications and benchmarks

HiSilicon Kirin 620 Processor is being reviewed, the release of which was held in Q1/2015. Here are all the HiSilicon Kirin 620’s specifications and performance estimation in benchmark. We offer to study all the data and compare it with a competing model. The base clock frequency of the model is 1.20 GHz, total of cores is 4. The CPU supports LPDDR3 and is installed in the motherboard on Socket N/A. The TDP for CPU is .

Specifications

Technical data

Legacy catalog specifications; the original verification date is not recorded.

CPU generation and family
  • CPU group
    HiSilicon Kirin 620
  • Family
    HiSilicon Kirin
  • Generation
    3
  • Name
    HiSilicon Kirin 620
  • Predecessor
    —
  • Segment
    Mobile
  • Successor
    —
CPU Cores and Base Frequency
  • A-Core
    —
  • B-Core
    —
  • Base Frequency
    1.2 GHz
  • C-Core
    —
  • Core architecture
    normal
  • CPU Cores
    4
  • CPU Threads
    4
  • Hyperthreading / SMT
    No
  • Overclocking
    No
  • Turbo Frequency (1 Core)
    1.2 GHz
  • Turbo Frequency (4 Cores)
    1.2 GHz
Internal Graphics
  • DirectX Version
    0
  • Execution units
    4
  • Generation
    Utgard
  • GPU Frequency
    530 MHz
  • GPU name
    ARM Mali-450 MP4
  • GPU Turbo
    530 MHz
  • Max. displays
    1
  • Max. GPU Memory
    —
  • Release date
    2012
  • Shader
    64
  • Technology
    28nm
Hardware codec support
  • AV1
    No
  • H.264 / AVC
    No
  • h265 / HEVC (8 bit)
    No
  • h265 / HEVC (10 bit)
    No
  • JPEG
    No
  • VC-1
    No
  • VP8
    No
  • VP9
    No
Memory & PCIe
  • ECC
    No
  • Max. Memory
    —
  • Memory channels
    1
  • Memory type
    LPDDR3
  • PCIe lanes
    —
  • PCIe version
    —
Encryption
  • AES-NI
    No
Thermal Management
  • Maximum Operating Temperature
    —
  • TDP (PL1, legacy label)
    —
  • TDP (PL2)
    —
  • TDP down
    —
  • TDP up
    —
Technical details
  • Architecture
    Cortex-A53
  • Instruction set (ISA)
    ARMv8-A64 (64 bit)
  • ISA extensions
    —
  • L2-Cache
    —
  • L3-Cache
    —
  • Part Number
    —
  • Release date
    Q1/2015
  • Socket
    —
  • Technology
    28 nm
  • Virtualization
    None
Positions in all rankings

Common positions HiSilicon Kirin 620 CPU in popular benchmarks, for comparison with other models.

  • Geekbench 5, 64bit (Single-Core)
    1293 place
  • Geekbench 5, 64bit (Multi-Core)
    1234 place
  • iGPU - FP32 Performance (Single-precision GFLOPS)
    1682 place

Benchmarks

Performance tests CPU

Compare the scores of popular benchmarks HiSilicon Kirin 620 with other processors to understand the real speed of the CPU when processing content.

Tests include mathematical calculations, creation of 3D models, cryptocurrency mining, tests in single and multi-core modes.

These are saved results from the earlier catalog. Measurement dates and test configurations were not recorded. Models with no comparable results are omitted.

Recent models: test results with identified primary sources — Cinebench R23 · Cinebench R20 · Cinebench R15

Geekbench 5, 64bit (Single-Core)
Geekbench 5 SC is a popular cross-platform performance test for desktop or mobile processors that uses system memory intensively

Higher values are better in this metric.

102
HiSilicon Kirin 620
108
106
Geekbench 5, 64bit (Multi-Core)
Geekbench 5 MC is a popular cross-platform performance test for desktop or mobile processors that uses system memory intensively

Higher values are better in this metric.

505
HiSilicon Kirin 620
531
528
iGPU - FP32 Performance (Single-precision GFLOPS)
The performance of the iGPU - the internal GPU in games

Higher values are better in this metric.

32 GFLOPS
HiSilicon Kirin 620
41 GFLOPS
41 GFLOPS

Comparable benchmark results are required to suggest performance alternatives.

*

PL1 is the sustained processor power limit; PL2 is the short-term turbo power limit. They are not measured performance or efficiency.

The values are used to select the optimal cooling system and power supply.

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