AMD

AMD A9-9425 SoC

AMD processor specifications and benchmark scores

2
Cores
2
Threads
3.7
GHz Boost
15W
TDP
Integrated GPU

At a Glance

AMD
Cores / Threads 2C / 2T
Boost Clock 3.7 GHz
Base Clock 3.1 GHz
TDP 15W
Architecture Excavator
Socket AMD Socket FT4
nm
Process 28 nm
Released May 2016

AMD A9-9425 SoC Specifications

A9-9425 SoC Core Configuration

Processing cores and threading

The AMD A9-9425 SoC features 2 physical cores and 2 threads, which directly impacts multi-threaded performance in CPU benchmarks. More cores allow the processor to handle parallel workloads efficiently, improving performance in video editing, 3D rendering, and multitasking scenarios. Thread count determines how many simultaneous tasks the CPU can process, with higher thread counts benefiting productivity applications and content creation workflows.

Cores
2
Threads
2
SMP CPUs
1

A9-9425 SoC Clock Speeds

Base and boost frequencies

Clock speed is a critical factor in A9-9425 SoC benchmark performance, measured in GHz. The base clock represents the guaranteed operating frequency, while the boost clock indicates maximum single-core performance under optimal conditions. Higher clock speeds translate to faster single-threaded performance, which is essential for gaming and applications that don't fully utilize multiple cores. The A9-9425 SoC by AMD can dynamically adjust its frequency based on workload and thermal headroom.

Base Clock
3.1 GHz
Boost Clock
3.7 GHz
Multiplier
31x

AMD's A9-9425 SoC Cache Hierarchy

L1, L2, L3 cache sizes

Cache memory is ultra-fast storage built directly into the A9-9425 SoC processor die. L1 cache provides the fastest access for frequently used data, while L2 and L3 caches offer progressively larger storage with slightly higher latency. Larger cache sizes significantly improve CPU benchmark scores by reducing memory access times. The A9-9425 SoC's cache configuration is optimized for both gaming performance and productivity workloads, minimizing data fetch delays during intensive computations.

L1 Cache
160 KB
L2 Cache
1 MB (shared)

Excavator Architecture & Process

Manufacturing and design details

The AMD A9-9425 SoC is built on AMD's 28 nm manufacturing process, which determines power efficiency and thermal characteristics. Smaller process nodes allow for more transistors in the same space, enabling higher performance per watt. The architecture defines how the processor handles instructions and manages data flow, directly impacting benchmark results across different workload types. Modern CPU architectures like the one in A9-9425 SoC incorporate advanced branch prediction and out-of-order execution for optimal performance.

Architecture
Excavator
Codename
Stoney Ridge
Process Node
28 nm
Foundry
GlobalFoundries
Transistors
1,200 million
Die Size
125 mm²
Generation
A9 (Stoney Ridge)

Excavator Instruction Set Features

Supported CPU instructions and extensions

The A9-9425 SoC by AMD supports various instruction set extensions that enable optimized performance for specific workloads. SIMD instructions like SSE and AVX accelerate multimedia, scientific computing, and AI workloads by processing multiple data points simultaneously. Features like AES-NI provide hardware-accelerated encryption, while AVX-512 (if supported) enables advanced vector processing for data centers and high-performance computing. These instruction sets are critical for software compatibility and performance in modern applications.

MMX
SSE
SSE2
SSE3
SSSE3
SSE4A
SSE4.1
SSE4.2
AES
AVX
AVX2
FMA3
BMI1
BMI2
SHA
AMD64
AMD-V

A9-9425 SoC Power & Thermal

TDP and power specifications

The AMD A9-9425 SoC has a TDP (Thermal Design Power) of 15W, indicating the cooling solution required for sustained operation. TDP affects both system power consumption and the type of cooler needed. Lower TDP processors are ideal for compact builds and laptops, while higher TDP chips typically offer better sustained performance in demanding CPU benchmarks. Understanding power requirements helps ensure your system can deliver consistent performance without thermal throttling.

TDP
15W
Tj Max
90°C
Configurable TDP
10 W

AMD Socket FT4 Platform & Socket

Compatibility information

The A9-9425 SoC uses the AMD Socket FT4 socket, which determines motherboard compatibility. Choosing the right platform is essential for building a system around this processor. The socket type also influences available features like PCIe lanes, memory support, and upgrade paths. When comparing CPU benchmarks, ensure you're looking at processors compatible with your existing or planned motherboard to make informed purchasing decisions.

Socket
AMD Socket FT4
PCIe
Gen 3, 8 Lanes(CPU only)
Package
BGA
DDR5

AMD Socket FT4 Memory Support

RAM compatibility and speeds

Memory support specifications for the A9-9425 SoC define which RAM types and speeds are compatible. Faster memory can significantly improve CPU benchmark performance, especially in memory-intensive applications and gaming. The memory controller integrated into the A9-9425 SoC determines maximum supported speeds and channels. Dual-channel or quad-channel memory configurations can double or quadruple memory bandwidth, providing noticeable performance gains in content creation and scientific workloads.

Memory Type
DDR4
Memory Bus
Single-channel
Memory Bandwidth
17.1 GB/s

AMD's A9-9425 SoC Integrated Graphics

Built-in GPU specifications

The AMD A9-9425 SoC includes integrated graphics, eliminating the need for a dedicated GPU in basic computing scenarios. Integrated graphics are ideal for office productivity, video playback, and light gaming. While not designed for demanding GPU benchmarks, the iGPU in the A9-9425 SoC provides hardware video encoding and decoding capabilities. This makes the processor suitable for compact builds, HTPCs, and systems where power efficiency is prioritized over gaming performance.

iGPU
Radeon R5 3CU
Graphics Model
Radeon R5 3CU

A9-9425 SoC Product Information

Release and pricing details

The AMD A9-9425 SoC is manufactured by AMD and represents their commitment to delivering competitive CPU performance. Understanding the release date and pricing helps contextualize benchmark comparisons with other processors from the same generation. Launch pricing provides a baseline for evaluating value, though street prices often differ. Whether you're building a new system or upgrading, the A9-9425 SoC by AMD offers a specific balance of performance, features, and cost within AMD's product lineup.

Manufacturer
AMD
Release Date
May 2016
Market
Mobile
Status
End-of-life
Part Number
AM9425AYN23AC

A9-9425 SoC Benchmark Scores

No benchmark data available for this CPU.

About AMD A9-9425 SoC

The AMD A9-9425 SoC is a dual-core mobile processor built on the 28nm Excavator architecture, released in May 2016 and now end-of-life. It sits at the 50th percentile of all CPUs in the database, meaning it is exactly median in performance among the entire tracked population. With a 15W TDP, it targets low-power notebooks, and its integrated Radeon R5 graphics with 3 compute units makes it a basic multimedia and light-gaming chip. The data shows a processor that is adequate for everyday tasks but limited by its two threads and single-channel memory interface.

Benchmark Performance

The fact pack lists no specific benchmark scores; the average benchmark score is recorded as 0, indicating that no standardized performance tests have been submitted or aggregated for this part. However, the percentileVsAllCpus field gives a value of 50, which places the A9-9425 exactly at the median of all CPUs in the database. This means it outperforms half of the processors tracked and is outperformed by the other half. For a dual-core, dual-thread part from 2016, this median position is plausible: it is not a high-end chip, but it is also not at the bottom of the barrel.

The core configuration is 2 cores and 2 threads, meaning no simultaneous multithreading (SMT) is present. The base clock is 3.10 GHz and the boost clock is 3.70 GHz. These clocks are relatively high for a low-power part, suggesting that single-threaded performance is a strength relative to other chips in its TDP class. The L1 cache is 160 KB, and the L2 cache is 1 MB shared between the two cores. The small L2 size may limit performance in workloads that reuse large datasets, but for typical office tasks the effect is minimal.

Given the absence of benchmark numbers, the percentile rank is the only quantitative performance indicator. The 50th percentile implies that the A9-9425 is a middle-of-the-road processor, not a standout in either direction. In practical terms, it should handle web browsing, document editing, and media playback without difficulty, but it will struggle with multi-threaded applications that can use more than two threads.

Power and Thermals

The TDP is 15 watts, a figure that places the A9-9425 in the low-power mobile segment. This TDP class is typical for thin-and-light laptops and fanless designs. The 28nm process node from GlobalFoundries is not the most modern, but the low core count and modest clocks keep power consumption in check. The die size is 125 mm², and the chip contains 1,200 million transistors.

A 15W TDP implies that a simple cooling solution is sufficient—likely a small heatsink with a low-speed fan, or even a passive cooler in some chassis. The data does not specify a particular cooler size or type, but the power envelope is low enough that thermal throttling should be rare under normal workloads. For a laptop user, this means quiet operation and long battery life, though sustained heavy loads may cause the boost clock to drop if the cooling solution is inadequate.

Who Should Consider It

The A9-9425 is suited for basic computing tasks. Its dual-core design with a 3.70 GHz boost clock handles single-threaded workloads like word processing, spreadsheet work, and web browsing with ease. The integrated Radeon R5 graphics with 3 compute units can drive a 1080p display and accelerate video playback, making it a viable option for media consumption. Light gaming is possible—titles that are not CPU-intensive and do not require high-end graphics can run at lower settings.

It is not recommended for multi-threaded productivity such as video editing, 3D rendering, or software compilation. The lack of SMT means only two threads are available, which will bottleneck modern applications that expect at least four threads. The single-channel memory interface (17.1 GB/s bandwidth) further limits performance in memory-heavy tasks. For users who need a secondary laptop for travel, a basic home machine, or a child’s first computer, the A9-9425 can suffice. However, given its end-of-life status, it is only relevant in refurbished or legacy systems.

How It Compares

The fact pack provides no nearestRivals data, so there are no specific rival names or delta percentages to report. The only comparative metric is the percentileVsAllCpus value of 50. This indicates that the A9-9425 is exactly in the middle of the entire CPU performance distribution. In the absence of rival scores, the percentile serves as a general benchmark: it is not a low-end chip, but it is also not competitive with modern quad-core or higher processors.

Given its 2016 release and dual-core architecture, the A9-9425 would likely be outperformed by contemporary budget processors from Intel and AMD, but the fact pack does not include such comparisons. The median percentile suggests that it is roughly equivalent to other mid-range processors of its era, but without specific data, any further positioning is speculative. The data simply says it is average.

Platform and Compatibility

The A9-9425 uses the AMD Socket FT4, a low-power mobile socket. This socket is not shared with desktop platforms, so the chip is exclusively for laptops and mini-PCs. The memory support is DDR4, but only in single-channel mode, with a maximum bandwidth of 17.1 GB/s. This is a notable limitation for memory-intensive applications, as dual-channel configurations offer higher throughput.

The CPU provides 8 PCIe Gen 3 lanes. This is enough for a single discrete GPU or an NVMe SSD, but it limits expansion options. The processor does not support ECC memory. The multiplier is locked, so overclocking is not possible. The production status is end-of-life, meaning AMD no longer manufactures this chip. Consequently, there is no upgrade path within the FT4 socket; users cannot swap in a faster processor without changing the motherboard and possibly the memory.

FAQ

Q: How many cores and threads does the AMD A9-9425 have?

A: It has 2 cores and 2 threads, meaning no hyper-threading or SMT support.

Q: What is the boost clock speed?

A: The boost clock is 3.70 GHz, while the base clock is 3.10 GHz.

Q: Does it have integrated graphics?

A: Yes, it includes a Radeon R5 GPU with 3 compute units.

Q: What memory type does it support?

A: It supports DDR4 memory in single-channel mode, with a bandwidth of 17.1 GB/s.

Q: What is the TDP?

A: The thermal design power is 15 watts.

Q: Is the processor overclockable?

A: No, the multiplier is locked, so overclocking is not supported.

Single-Thread vs Multi-Thread Behavior

The A9-9425’s architecture is heavily skewed toward single-threaded performance. With only two physical cores and no SMT, the processor can execute exactly two threads simultaneously. The boost clock of 3.70 GHz is respectable for a low-power chip, and it indicates that the silicon is capable of high frequency operation when only one or two cores are active. This makes the processor responsive in everyday tasks that rely on single-thread speed, such as opening applications, scrolling web pages, and running legacy software.

Multi-threaded performance, on the other hand, is constrained by the core count. A dual-core, dual-thread design cannot scale beyond two threads, so any application that uses more than two threads will see diminishing returns. The shared 1 MB L2 cache may also cause contention when both cores are busy. The 50th percentile rank likely reflects a balance: it is not terrible at multi-threading because the high clocks help, but it is far from competitive with modern quad-core parts. For users who run mostly single-threaded workloads, the A9-9425 will feel adequate; for those who need parallel processing, it will be a bottleneck. The data shows a clear split: strong single-thread capability, weak multi-thread throughput.

The Intel Equivalent of A9-9425 SoC

Looking for a similar processor from Intel? The Intel Core i5-6350HQ offers comparable performance and features in the Intel lineup.

Intel Core i5-6350HQ

Intel • 4 Cores

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