So sánh snap 450 và p60 năm 2024

Qualcomm Snapdragon 710/ 660 và MeiaTek Helio P60, đây là 3 chipset tầm trung mạnh nhất thời điểm hiện tại. trong bài viết này mình sẽ cùng so sánh lại 3 con chip này.

Để đánh giá tổng quan về một chipset ta đi sâu vào CPU, GPU, camera, các kết nối, các công nghệ được thích hợp. Để bạn có cái nhìn kỹ hơn trước khi chọn mua một chiếc Smartphone.

CPU

Đem so sánh Snapdragon 710 > Snapdragon 660 > Helio P60.

Trong 3 con chip Snapdragon 710 sẽ có CPO mạnh hơn 20% so với 660 đang được sử dụng trên Xiaomi Mi 6X, tốc độ duyệt web 25%, load ứng dụng nhanh hơn 15%.

Snapdragon 660 mạnh hơn Helio P60 do được sử dụng đến 8 nhân Kryo 260 xung nhịp cao hơn so với 4 nhân Cortex A73 và 4 nhân Cortex A53.

GPU

GPU sếp hạng lần lượt là Snapdragon 710 > Snapdragon 660 > Helio P60

Snapdragon 710 trang bị GPU Adreno 616 mới nhất dành cho những Smartphone tầm trung hiệu suất đồ họa cao hơn 35% so với GPU Adreno 512 trên chipset cũ Snapdragon 660.

Helio P60 hỗ trợ GPU Mali G72 MP3 chỉ đáp ứng đủ như cầu chơi game ở mức đồ họa khá mà thôi.

Hiệu Quả trên thiết bị

Snapdragon 710 được sản xuất theo tiến trình 10nm công nghệ FinFet của Samsung, Điều đó giúp Snapdragon 710 mang nhiều công nghệ mới và khả năng tiết kiệm điện tốt hơn ( và cũng lưu ý rằng đây là con chip đầi tiên sản xuất theo tiến tronfh 10nm). Đem so với Snapdragon 660 con chip Snap 710 sẽ tốt hơn 40% so với khả năng quay video 4k và 20% về khả năng phát video trực tuyến.

Snapdragon 710 trang bị sạc nhanh Quick Charge 4.0+, tốt hơn so với Snapdragon 660 chỉ là Quick Charge 4.0 và Helio P60 chỉ là công nghệ sạc nhanh Pump Express thế hệ 4. Chi tiết thời gian sạc:

  • Quick Charge 4.0 sạc 15 phút được 50%.
  • Quick Charge 4.0+, sạc nhanh hơn 15% so với chuẩn Quick Charge 4.0.
  • Pump Express 4.0 chỉ có thể sạc đầy 75% trong vòng 30 phút.

Các kết nối

Snapdragon 710 được trang bị bên trong chip mạng vô cùng "bá đạo" Qualcomm Snapdragon X15 LTE tốc độ tải xuống tối đa 800Mbps tốc độ tải lên là 150 Mbps.

Snapragon 660 chỉ trang bị Qualcomm Snapdragon X12 LTE có tốc độ tải xuống 600 Mbps và tải lên là 150 Mbps bằng với X15 LTE.

Helio P60 hỗ trợ tải xuống chuẩn Cat.7/ tốc độ tải lên chuẩn Cat.13

Trên cả hai chip của Snapdragon đều trang bị Bluetooth 5.0. Đối với Helio P60 dừng lại ở Bluetooth 4.1

Đối với công nghệ khác: Snapdragon 710 vượt trội hơn hẳn so với 2 chip còn lại với màn hình hỗ trợ tối đa lên tới 2K+, MÁY ẢNH ĐƠN 32Mp và 20Mp dối với camera kép.

Snapdragon 660 và P60 chỉ Full HD+, tuy nhiên P20 vẫn có điểm vượt trội hơn về camera dối với 660, thậm chí là Snapdrgon 710.

Kết Luận:

Cả 3 con chip này thì đều có hiệu xuất mạnh gần là tốt nhất về cả GPU và CPU. Tuy nhiên Snapdragon 710 sẽ có phần nhỉnh vượt trội hơn hẳn. Và cũng vô cùng dễ hiểu vì đây là mẫu Chipset mới ra mắt đánh dấu cột mốc cho dòng 7XX của Qualcomm.

A 32-bit operating system can only support up to 4GB of RAM. 64-bit allows more than 4GB, giving increased performance. It also allows you to run 64-bit apps.

With integrated graphics you don’t need to buy a separate graphics card.

Small semiconductors provide better performance and reduced power consumption. Chipsets with a higher number of transistors, semiconductor components of electronic devices, offer more computational power. A small form factor allows more transistors to fit on a chip, therefore increasing its performance.

The clock speed of the graphics processing unit (GPU).

The fifth-generation wireless technology delivers higher speeds and lower latency than the previous, fourth-generation tech.

GPU turbo

Unknown. Help us by suggesting a value. (Qualcomm Snapdragon 653)

When the GPU is running below its limitations, it can boost to a higher clock speed in order to give increased performance.

DirectX is used in video games, with newer versions supporting better graphics and features. The latest version is DirectX 12 Ultimate, which includes support for ray tracing, mesh shaders, and variable rate shading (VRS).

OpenGL ES is used for games on mobile devices such as smartphones. Newer versions support better graphics.

Some apps use OpenCL to apply the power of the graphics processing unit (GPU) for non-graphical computing. Newer versions introduce more functionality and better performance.

Performance

The CPU speed indicates how many processing cycles per second can be executed by a CPU, considering all of its cores (processing units). It is calculated by adding the clock rates of each core or, in the case of multi-core processors employing different microarchitectures, of each group of cores.

More threads result in faster performance and better multitasking.

Using big.LITTLE technology, a chip can switch between two sets of processor cores to maximize performance and battery life. For example, when playing a game the more powerful cores will be used to increase performance, whereas checking email will use the less powerful cores to maximize battery life.

Heterogeneous Multi-Processing (HMP) is a more advanced version of big.LITTLE technology. In this setup, a processor can utilize all cores at the same time, or just a single core for low-intensity tasks. This can provide powerful performance or increased battery life respectively.

turbo clock speed

Unknown. Help us by suggesting a value. (MediaTek Helio P60)

Unknown. Help us by suggesting a value. (Qualcomm Snapdragon 653)

When the CPU is running below its limitations, it can boost to a higher clock speed in order to give increased performance.

L2 cache

Unknown. Help us by suggesting a value. (MediaTek Helio P60)

Unknown. Help us by suggesting a value. (Qualcomm Snapdragon 653)

A larger L2 cache results in faster CPU and system-wide performance.

L1 cache

Unknown. Help us by suggesting a value. (Qualcomm Snapdragon 653)

A larger L1 cache results in faster CPU and system-wide performance.

clock multiplier

Unknown. Help us by suggesting a value. (MediaTek Helio P60)

Unknown. Help us by suggesting a value. (Qualcomm Snapdragon 653)

The clock multiplier controls the speed of the CPU.

L3 cache

Unknown. Help us by suggesting a value. (MediaTek Helio P60)

Unknown. Help us by suggesting a value. (Qualcomm Snapdragon 653)

A larger L3 cache results in faster CPU and system-wide performance.

Memory

It can support faster memory, which will give quicker system performance.

DDR (Double Data Rate) memory is the most common type of RAM. Newer versions of DDR memory support higher maximum speeds and are more energy-efficient.

The maximum amount of memory (RAM) supported.

This is the maximum rate that data can be read from or stored into memory.

More memory channels increases the speed of data transfer between the memory and the CPU.

eMMC version

Unknown. Help us by suggesting a value. (Qualcomm Snapdragon 653)

A higher version of eMMC allows faster memory interfaces, having a positive effect on the performance of a device. For example, when transferring files from your computer to the internal storage over USB.

Error-correcting code memory can detect and correct data corruption. It is used when is it essential to avoid corruption, such as scientific computing or when running a server.

Features

The system on a chip (SoC) has an integrated LTE cellular chip. LTE is capable of downloading at faster speeds than older, 3G technology.

This is the maximum download speed supported. In reality, the download speed will usually be lower, as it will be affected by other factors (such as your home/mobile network speeds).

This is the maximum upload speed supported. In reality, the upload speed will usually be lower, as it will be affected by other factors (for example your home/mobile network speeds).

A technology integrated into the processor to secure the device for use with features such as mobile payments and streaming video using digital rights management (DRM).

Multithreading technology (such as Intel's Hyperthreading or AMD's Simultaneous Multithreading) provides increased performance by splitting each of the processor's physical cores into virtual cores, also known as threads. This way, each core can run two instruction streams at once.

NX bit helps protect the computer from malicious attacks.

NEON provides acceleration for media processing, such as listening to MP3s.

VFP version

Unknown. Help us by suggesting a value. (Qualcomm Snapdragon 653)

Vector Floating-Point (VFP) is used by the processor to deliver increased performance in areas such as digital imaging.

front-end width

Unknown. Help us by suggesting a value. (MediaTek Helio P60)

Unknown. Help us by suggesting a value. (Qualcomm Snapdragon 653)

The CPU can decode more instructions per clock (IPC), meaning that the CPU performs better

Benchmarks

Geekbench 6 result (single)

Unknown. Help us by suggesting a value. (MediaTek Helio P60)

Unknown. Help us by suggesting a value. (Qualcomm Snapdragon 653)

Geekbench 6 is a cross-platform benchmark that measures a processor's single-core performance. (Source: Primate Labs, 2024)

Geekbench 6 result (multi)

Unknown. Help us by suggesting a value. (MediaTek Helio P60)

Unknown. Help us by suggesting a value. (Qualcomm Snapdragon 653)

Geekbench 6 is a cross-platform benchmark that measures a processor's multi-core performance. (Source: Primate Labs, 2024)

Geekbench 5 is a cross-platform benchmark that measures a processor's single-core performance. (Source: Primate Labs, 2024)

Geekbench 5 is a cross-platform benchmark that measures a processor's multi-core performance. (Source: Primate Labs, 2024)

PassMark result

Unknown. Help us by suggesting a value. (Qualcomm Snapdragon 653)

This benchmark measures the performance of the CPU using multiple threads.

This benchmark measures the performance of the CPU using a single thread.

PassMark result (overclocked)

Unknown. Help us by suggesting a value. (MediaTek Helio P60)

Unknown. Help us by suggesting a value. (Qualcomm Snapdragon 653)

This benchmark measures the performance of the CPU when it is overclocked.

Miscellaneous

DirectX is used in games, with newer versions supporting better graphics.

Bluetooth is a wireless technology standard that allows data transfers between devices placed in close proximity, using short-wavelength, ultra-high frequency radio waves. Newer versions provide faster data transfers.

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