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Comparing: SK hynix H9TQ27ADFTMC vs AMD Radeon HD 7310 IGPU VRAM Disk

In this comparison, we analyze two Disks: SK hynix H9TQ27ADFTMC and AMD Radeon HD 7310 IGPU VRAM Disk, using synthetic benchmark tests to evaluate their overall performance. This side-by-side comparison helps users understand which hardware delivers better value, speed, and efficiency based on standardized testing. Whether you're building a new system or upgrading an existing one, this benchmark-driven evaluation offers valuable insights to guide your decision.

Hardware Image
SK hynix H9TQ27ADFTMC
Type:Disks
Model:SK hynix H9TQ27ADFTMC
Capacity:32GB
Interface:eMMC
See benchmark from SK hynix H9TQ27ADFTMC
Hardware Image
AMD Radeon HD 7310 IGPU VRAM Disk
Type:Disks
Model:Radeon HD 7310 IGPU VRAM Disk
Capacity:128MB
Interface:DDR3
See benchmark from Radeon HD 7310 IGPU VRAM Disk

Specification Comparison Table

This specification comparison presents technical details of several devices or components to help you understand the key differences between each option. Use this table as a reference to determine which device best suits your needs.

Specification SK hynix H9TQ27ADFTMC AMD Radeon HD 7310 IGPU VRAM Disk
Brand SK hynix -
Format eMMC 5.1 VRAM Disk
Capacity 32GB 128MB
Interface eMMC DDR3

Submission Comparison Table

This submission comparison table displays the number and details of benchmark data submissions from various devices or components. This information helps you understand the performance based on the benchmarks that have been tested, as well as providing an overview of the consistency and popularity of the available benchmark results.


Submission Comparison Chart

This chart visualizes the benchmark scores comparison between two hardware devices based on submitted data.


Media Gallery

A collection of photos of tested hardware. These images can help you identify the physical form, model, and variant of the hardware in question. These photos are from our own documentation, and if they are not available we may not be able to document them.


About Hardware SK hynix H9TQ27ADFTMC

SK hynix H9TQ27ADFTMC is an eMMC (embedded MultiMediaCard) based storage chip designed for mobile devices and embedded systems. With NAND Flash technology, it offers an efficient and power-efficient internal storage solution for devices with light to medium computing needs. It has become a common choice in entry-level smartphones, tablets, and Internet of Things (IoT) devices, thanks to its combination of sufficient capacity, high endurance, and long-term stable performance.

As an internal chip, the H9TQ27ADFTMC comes in a small yet reliable package, combining the controller and flash memory in a single unit for easy integration in consumer devices. One of the main advantages of eMMC storage like this is low power consumption and better data access latency compared to traditional SD card-based storage.

The test was conducted on an OPPO A5s device, a smartphone with a MediaTek Helio P35 (MT6765) processor, 3GB of RAM, and 32GB of internal storage. The operating system used was Android 8 with the ColorOS 5.2 interface. The test was conducted after the device had been in use for more than four years, so performance results may have decreased due to NAND Flash degradation over time.

In testing using the Cross Platform Disk Test (Mobile), the read speed of 114.31 MB/s and write speed of 13.07 MB/s were obtained. These results show that despite its age, the eMMC's read performance is still quite good for activities such as opening applications, loading the system, and streaming light content.

As a first-in-class internal storage solution, the SK hynix H9TQ27ADFTMC is suitable for devices that require fixed (non-removable) internal storage capacity with high efficiency, low cost, and sufficient endurance for daily use. Although its write speed is not as fast as more modern UFS technology, eMMC remains a popular choice due to its stability and ease of integration in many low- to mid-end devices.

Device: OPPO A5s
CPU: MediaTek MT6765 Helio P35
RAM: 3GB
Storage: 32GB
OS: Android 8, ColorOS 5.2

* The test was conducted after the device was approximately 4 years old, perhaps the performance has decreased

Sunday, 08 September 2019 11:02:46 | Update: 1 month ago


About Hardware AMD Radeon HD 7310 IGPU VRAM Disk

The AMD Radeon HD 7310 is an integrated GPU (iGPU) based on the Terascale 2 architecture embedded in some early generation E1 series APUs, such as the AMD E1-1200. With 80 Stream Processors, this GPU is designed for light tasks such as video playback, basic computing, and casual gaming with low graphics settings. Despite being an entry-level GPU and being quite old, the Radeon HD 7310 is still able to operate well for basic needs and certain technical experiments.

In this test using an HP 1000 1b05au device paired with an AMD E1-1200 processor, 4GB DDR3 RAM, and Windows 7 operating system, an interesting experiment was conducted by converting part of the VRAM allocation into a VRAMDisk using specialized GPU RAM Drive software.

VRAMDisk is a method that utilizes VRAM capacity as high-speed temporary storage, just like RAMDisk but with graphics memory. In this configuration, of the total VRAM of 384MB (plus shared memory), about 128MB was set aside to be used as a VRAMDisk. Despite the small capacity, the read and write speeds were quite surprising:

  • CrystalDiskMark:
    • Read: 393.23 MB/s
    • Write: 393.66 MB/s

This figure shows that even using an older generation GPU with DDR3 memory and a 128-bit interface, the VRAM still has enough bandwidth for light cache tasks or fast storage experiments. This technology is not intended for daily use, but it can be an interesting alternative for technical purposes, testing, or short-term local access speeds of small files.

Given its limitations-both in terms of VRAM capacity, iGPU performance, and modern driver support-the AMD Radeon HD 7310 is definitely not an option for gaming or heavy workloads right now. However, experiments like this VRAMDisk show that legacy devices can still be creatively utilized in certain contexts, especially in resource-constrained environments.

Device test (testbed) :

Device: HP 1000 1b05au
Software: GPU Ram Drive
CPU: AMD E1-1200
GPU: AMD Radeon HD 7310 (Integrated)
RAM: 4GB DDR3 Single Channel 2 DIMM 1066MHz
OS: Windows 7

Wednesday, 26 December 2012 14:27:32 | Update: 1 month ago