AMD Ryzen Embedded V3C16 vs Qualcomm Snapdragon 636

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CPU comparison with benchmarks


AMD Ryzen Embedded V3C16 CPU1 vs CPU2 Qualcomm Snapdragon 636
AMD Ryzen Embedded V3C16 Qualcomm Snapdragon 636

CPU comparison

In this CPU comparison, we compare the AMD Ryzen Embedded V3C16 and the Qualcomm Snapdragon 636 and use benchmarks to check which processor is faster.

We compare the AMD Ryzen Embedded V3C16 6 core processor released in Q3/2022 with the Qualcomm Snapdragon 636 which has 8 CPU cores and was introduced in Q4/2017.
AMD Ryzen Embedded V (16) Family Qualcomm Snapdragon (102)
AMD Ryzen Embedded V3000 (5) CPU group Qualcomm Snapdragon 636 (1)
3 Generation 5
Rembrandt (Zen 3+) Architecture Kryo 260
Desktop / Server Segment Mobile
AMD Ryzen Embedded V2516 Predecessor --
-- Successor --

CPU Cores and Base Frequency

The AMD Ryzen Embedded V3C16 is a 6 core processor with a clock frequency of 2.00 GHz (3.80 GHz). The processor can compute 12 threads at the same time. The Qualcomm Snapdragon 636 clocks with 1.80 GHz, has 8 CPU cores and can calculate 8 threads in parallel.

AMD Ryzen Embedded V3C16 Characteristic Qualcomm Snapdragon 636
6 Cores 8
12 Threads 8
normal Core architecture hybrid (big.LITTLE)
Yes Hyperthreading No
No Overclocking ? No
2.00 GHz (3.80 GHz)
6x Zen 3
A-Core 1.80 GHz
4x Kryo 260 Gold
-- B-Core 1.60 GHz
4x Kryo 260 Silver

Artificial Intelligence and Machine Learning

Processors with the support of artificial intelligence (AI) and machine learning (ML) can process many calculations, especially audio, image and video processing, much faster than classic processors. Algorithms for ML improve their performance the more data they have collected via software. ML tasks can be processed up to 10,000 times faster than with a classic processor.

AMD Ryzen Embedded V3C16 Characteristic Qualcomm Snapdragon 636
-- AI hardware Qualcomm AI engine
-- AI specifications Hexagon DSP

Internal Graphics

Graphics (iGPU) integrated into the processor not only enable image output without having to rely on a dedicated graphics solution, but can also efficiently accelerate video playback.

no iGPU GPU Qualcomm Adreno 509
GPU frequency 0.72 GHz
-- GPU (Turbo) 0.72 GHz
-- GPU Generation 5
Technology 14 nm
Max. displays 0
-- Compute units --
-- Shader 128
No Hardware Raytracing No
No Frame Generation No
-- Max. GPU Memory --
-- DirectX Version 12.1

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.

no iGPU GPU Qualcomm Adreno 509
No Codec h265 / HEVC (8 bit) Decode
No Codec h265 / HEVC (10 bit) No
No Codec h264 Decode
No Codec VP9 Decode
No Codec VP8 Decode
No Codec AV1 No
No Codec AVC No
No Codec VC-1 Decode
No Codec JPEG Decode

Memory & PCIe

Up to 64 GB of memory in a maximum of 2 memory channels is supported by the AMD Ryzen Embedded V3C16, while the Qualcomm Snapdragon 636 supports a maximum of 8 GB of memory with a maximum memory bandwidth of 10.6 GB/s enabled.

AMD Ryzen Embedded V3C16 Characteristic Qualcomm Snapdragon 636
DDR5-4800 Memory
64 GB Max. Memory 8 GB
2 (Dual Channel) Memory channels 2 (Dual Channel)
76.8 GB/s Max. Bandwidth 10.6 GB/s
Yes ECC No
3.00 MB L2 Cache --
16.00 MB L3 Cache --
4.0 PCIe version --
20 PCIe lanes --
39.4 GB/s PCIe Bandwidth --

Thermal Management

The AMD Ryzen Embedded V3C16 has a TDP of 15 W. The TDP of the Qualcomm Snapdragon 636 is --. System integrators use the TDP of the processor as a guide when dimensioning the cooling solution.

AMD Ryzen Embedded V3C16 Characteristic Qualcomm Snapdragon 636
15 W TDP (PL1 / PBP) --
-- TDP (PL2) --
25 W TDP up --
10 W TDP down --
105 °C Tjunction max. --

Technical details

The AMD Ryzen Embedded V3C16 has 19.00 MB cache and is manufactured in 6 nm. The cache of Qualcomm Snapdragon 636 is at 0.00 MB. The processor is manufactured in 14 nm.

AMD Ryzen Embedded V3C16 Characteristic Qualcomm Snapdragon 636
6 nm Technology 14 nm
Chiplet Chip design Chiplet
x86-64 (64 bit) Instruction set (ISA) Armv8-A (64 bit)
SSE4a, SSE4.1, SSE4.2, AVX2, FMA3 ISA extensions --
FP7r2 Socket --
AMD-V, SVM Virtualization None
Yes AES-NI No
Windows 10, Windows 11, Linux Operating systems Android
Q3/2022 Release date Q4/2017
-- Release price --
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Rate these processors

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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 Ryzen Embedded V3C16 AMD Ryzen Embedded V3C16
6C 12T @ 3.80 GHz
0 (0%)
Qualcomm Snapdragon 636 Qualcomm Snapdragon 636
8C 8T @ 1.80 GHz
322 (100%)

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.
AMD Ryzen Embedded V3C16 AMD Ryzen Embedded V3C16
6C 12T @ 3.00 GHz
0 (0%)
Qualcomm Snapdragon 636 Qualcomm Snapdragon 636
8C 8T @ 1.80 GHz
1369 (100%)

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.
AMD Ryzen Embedded V3C16 AMD Ryzen Embedded V3C16
6C 12T @ 3.80 GHz
0 (0%)
Qualcomm Snapdragon 636 Qualcomm Snapdragon 636
8C 8T @ 1.80 GHz
292 (100%)

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.
AMD Ryzen Embedded V3C16 AMD Ryzen Embedded V3C16
6C 12T @ 3.00 GHz
0 (0%)
Qualcomm Snapdragon 636 Qualcomm Snapdragon 636
8C 8T @ 1.80 GHz
1078 (100%)

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 Ryzen Embedded V3C16 AMD Ryzen Embedded V3C16
@ 0.00 GHz
0 (0%)
Qualcomm Snapdragon 636 Qualcomm Snapdragon 636
Qualcomm Adreno 509 @ 0.72 GHz
184 (100%)

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.
AMD Ryzen Embedded V3C16 AMD Ryzen Embedded V3C16
6C 12T @ 2.00 GHz
0 (0%)
Qualcomm Snapdragon 636 Qualcomm Snapdragon 636
8C 8T @ 1.80 GHz
149536 (100%)

Estimated results for PassMark CPU Mark

Some of the CPUs listed below have been benchmarked by CPU-monkey. However the majority of CPUs have not been tested and the results have been estimated by a CPU-monkey’s secret proprietary formula. As such they do not accurately reflect the actual Passmark CPU mark values and are not endorsed by PassMark Software Pty Ltd.
AMD Ryzen Embedded V3C16 AMD Ryzen Embedded V3C16
6C 12T @ 3.00 GHz
0 (0%)
Qualcomm Snapdragon 636 Qualcomm Snapdragon 636
8C 8T @ 1.80 GHz
2117 (100%)

Devices using this processor

AMD Ryzen Embedded V3C16 Qualcomm Snapdragon 636
Unknown Unknown

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