AMD Ryzen 5 3400G Review
While the big brother’s may be hogging all of the attention, the 3400G aims to offer Ryzen performance on a budget but how does it fare?

Product on Review: AMD Ryzen 5 3400G
Manufacturer: AMD
Street Price: GBP £139.99 / USD $149.99
AMD have been enjoying their time in the limelight these past couple of weeks with the incredible success of their latest Zen 2 architecture, but can we all spare a little time for the other end of the market? AMD also launched the Ryzen 3 3200G and Ryzen 5 3400G APUs, the latter of which we’ll examine today.
These two CPUs are the direct replacements for the Ryzen 3 2200G and Ryzen 5 2400G, as you might’ve guessed, but they don’t utilise the latest Zen 2 7nm architecture, instead remaining on the 12nm FinFET process from Zen+. This helps AMD keep the price down while manufacturing tweaks and optimisations help to increase base and boost frequencies.
The AMD Ryzen 5 3400G sports four CPU cores with SMT (Simultaneous multithreading) for a total of eight threads. Base CPU clocks sit at 3.7GHz with boost speeds up to 4.2GHz when conditions are optimal.
Alongside the CPU cores, there’s a small GPU capable of basic gaming and GPU acceleration in specific programs. The same Vega 11 GPU, with 11 graphics cores, has been turbocharged from 1250MHz in the 2400G to 1400MHz in the 3400G.
Pricing on the Ryzen 5 3400G is paramount, at £139/$149 with good deals to be found on previous generation CPUs and the Ryzen 5 3600 being around £40/$50 more, while on the new 7nm architecture and sporting another 4 threads. Does the 3400G offer a cost-efficient route into the AM4 eco-system? Let’s find out.
AMD on Ryzen:
Technical Specifications
# of CPU Cores: 4
# of Threads: 8
Max Boost Clock: 4.2GHz
Base Clock: 3.7GHz
Thermal Solution: Wraith Spire
PCI Express Version: 3.0 x8
CMOS: 12nm FinFET
Package: AM4
Total L2 Cache: 2MB
Total L3 Cache: 4MB
TDP: 65W
Zen+ Revisions
Zen+ Revisions
Zen, early in 2017, set an astounding starting block for AMD to build from. Today we get to see the fruits of their labour, with a full year of adjustments, tweaks and experience to improve their CPU range with Zen+.
The 12LP Process from GLOBALFOUNDRIES
The 12nm lithography of Zen+ improves on last year’s 14nm FinFET process, seeing improvements of 10-15% over preceding nodes. This helps to extend clock speeds and reduces the current required to perform a specific task. This delivers improved performance in all the ways that enthusiast customers requested: latency, overclocking, memory speed and clock speeds.
We also see a drop in core voltage across the operating range, vs. 14nm FinFET, as well as improved all-core overclocks.
L1, L2 and L3 cache all see improvements in latency, around 13%, 34% and 16% respectively. This should contribute to a system-wide performance improvement, ensuring the CPU can execute tasks more effectively.
AMD SenseMI Technology
AMDs Ryzen CPUs have a grid of interconnected sensors, monitoring every aspect of performance; they’re accurate to 1mA, 1mV, 1mW and 1°C and are monitored 1000 times every second, to ensure the optimal performance is attained at all times. These sensors feed information to the Infinity Fabric control loop, the “brain” of the CPU, making decisions based on information available to it right now, and predicting future workloads and operating conditions.
This smart grid of sensors allows Zen+ CPUs to fine-tune performance and power characteristics of the cores, manage cache pre-fetches and perform AI-based branch prediction.
Understanding these sensors is crucial to understanding how the CPU behaves.
Precision Boost 2
With AMDs first Gen Ryzen processors, we saw Precision Boost introduced for the first time, continually monitoring all aspects of the CPU, in real time, to ensure the optimal clock speeds and boost frequencies are applied at all times. However, this technology only applied when two of the 16 cores were “taxed” in lightly threaded applications.
Precision Boost 2 improves on this idea. AMD noticed that scenarios existed where 3 or more cores were in use, yet the overall workload was relatively small. This previously resulted in a huge drop in core frequency, when no imminent issues were actually present.
Thermal, electrical and utilisation headroom has been analysed in-depth, arriving at Precision Boost 2.
When a limit is encountered, in terms of power draw or heat generation, Precision Boost 2 will dither within the frequency range, in 25MHz increments, to attain a core frequency that is manageable at that exact moment in time. The process is continuous, with the CPU adjusting parameters 1000 times per second to ensure the Ryzen 2nd Gen CPU runs at the optimal core speed for any given task.
Precision Boost 2, then, could be considered as being greedy or opportunistic – if the clock speeds are there and they won’t cause any imminent problems to the thermals or power draw, the CPU will boost its frequency to as close to the 4.3GHz Boost Clock as possible.
Extended Frequency Range 2 (XFR2)
Now that you have a grasp of Precision Boost 2, XFR2 is aimed at the enthusiast who earns improved processing power by allowing the CPU a nicer place to live, for lack of a better term. Precision Boost 2 operates within a specific window, but that specification is conservative to allow for warmer or more humid climates, which would hamper CPU performance somewhat.
The thermal environment within a PC case is something the user can influence easily, usually by increasing airflow with the addition of fans, or purchasing a high-performance heatsink for the CPU; even running the PC within an air-conditioned room. These improvements will widen the thermal envelope and allow higher frequencies for longer periods of time, pushing the onus onto power delivery instead.
Essentially, if you can largely remove one of the two major contributing factors towards clock speed degradation, you will likely end up with a faster CPU.
These architecture improvements allows greater performance in a huge range of scenarios by allowing the CPU to run at the highest clock speed possible, providing it’s inside the thermal/electrical/load envelope, regardless of the number of cores and threads active. The improvements in moderately-threaded applications, such as games, could be as big as 500MHz when compared to the 1800X.
Improved Memory Support
Perhaps one of the largest issues with the Ryzen launch was memory compatibility issues, with expensive, high-performance memory sticks sometimes not working at all, or if they did, they had to be run at a much lower frequency than advertised on the packet.
With Ryzen 2000 series CPUs, memory support has been increased from DDR4-2667MHz to DDR4-2933MHz. This is something everyone expected from the 2nd Gen Ryzen launch due to the Infinity Fabric’s reliance on memory speed.
Better support for high-speed memory kits should provide a boost to cross-core and cross-CCX communication, improving CPU performance more than you would usually see on an Intel system, for example.
Packaging & Product
The 3400G arrives in a similar box to the 2400G but it sports the brand new design that is being used for the Ryzen 3000-series CPUs. That could be thought of as a little misleading when bearing in mind the Zen+ architecture used within the CPU.The reverse side of the packet doesn’t give a massive amount of information, more just a summary if anything.
Included inside is the Wraith Spire CPU cooler featuring a 4-pin PWM fan and pre-applied thermal paste.
Test Setup & Software
For the purpose of testing AMD Ryzen 9 3900X we used the MSI Prestige X570 Creation – this motherboard is a strong offering and provides us with a good platform to analyse performance.CPU being tested
AMD Ryzen 5 3400G (3.7GHz – 4.2GHz Boost) Zen+
TEST SETUP
Cooling be quiet! Dark Rock 4
Motherboard ASRock X570 Taichi
Memory 32GB Corsair Vengeance LPX 3000MHz
Graphics Radeon RX 480 8GB
Storage Corsair LX 512GB SSD
PSU Corsair RM 1000 80 Plus Gold Certified PSU
BENCHMARKS
Cinebench R15 – CPU/OpenGL Score
x264 HD 4.0 – 1st and 2nd pass encoding
SiSoftware SANDRA – CPU & Memory benchmarks
POV-RAY – CPU benchmarks
TrueCrypt – CPU benchmarks
AIDA64 – CPU benchmarks & Memory
PCMark 8 – Creative & Photoshop
PCMark 10 – Extended
3DMark FireStrike – 3D Benchmark
3DMark TimeSpy – 3D Benchmark
Games – Rise of the Tomb Raider & Total War: WARHAMMER
OTHER SOFTWARE
Temperature Analysis: Core Temp
Stress Testing Software: AIDA64 Stability Test
CPU Specification Monitoring: CPU-Z
Temperatures & Overclocking
Temperatures:To measure temperatures we run the CPU at its stock clock speeds and hit it with an AIDA64 Stability Test load for 20 minutes.
Overclocking
With the 2200G and 2400G, breaking the 4GHz barrier required some luck with the Silicon Lottery as well as some skill with things like LLC (Load Line Calibration). With the addition of another year of process optimisations as well as a 4.2GHz Boost Clock, we wanted to set our targets close to that.
With a massive thanks to the AMD Ryzen Master which makes overclocking much more accessible and easier to understand than the traditional method of BIOS adjustments, we found that our ceiling was 4250MHz in all of our tests but that it would fail within PC Mark 10. Backing the clocks down to 4225MHz, across all 8 threads, found that the CPU was fully stable and passed all of our overclocking tests without a hitch.
We were happy to have broken the 4.2GHz Boost Clock across all 8 threads, where typically the 4.2GHz would only apply to a single thread.
Voltage barely required a bump and temperatures were well within control.
All in all, we found the 3400G to be relatively decent for overclocking, unlocking some additional performance for free.
Benchmarks: Power Consumption
Ray Tracing Performance – POV-Ray 3.7
This product allows users to build their custom 3D worlds with excellent quality despite their computer’s hardware. It has adjustable options for levels of radiance, refraction, and reflection. Calculation time may vary depending on the computer model, but PovRay can adapt to many computer builds, and is supported by the open source community.
AES Encryption Performance – TrueCrypt 7.1a
Encoding Performance – x264 HD
Processing Features Performance – AIDA64
AIDA64 Product PageMemory Transfer Performance – AIDA64
AIDA64 Product PageThe Memory Latency benchmark measures the typical delay when the CPU reads data from system memory. Memory latency time means the penalty measured from the issuing of the read command until the data arrives to the integer registers of the CPU.
Processing Power Performance – Cinebench R15
Bandwidth Performance – SiSoftware SANDRA
Image Editing Performance – PCMark 8 Photoshop
PCMark 8 Product PageOverall System Performance – PCMark 10
PCMark 10 features a comprehensive set of tests that cover the wide variety of tasks performed in the modern workplace. With a range of performance tests, custom run options, and the new Battery Life Profile, PCMark 10 is the complete PC benchmark for the modern office.
VR Performance – VRMark
3D Performance – 3DMark
Gaming Performance – Tomb Raider & Total War: WARHAMMER
Gaming Performance (iGPU) Rise of the Tomb Raider, DOTA 2 & CS:GO
Conclusion
Landing in stores for less than its predecessor helps the 3400G impress its value upon the market, offering console-levels of gaming performance, where 720p and 1080p are still common despite their “4K capability”. That value is only bolstered by falling costs in several different sectors including RAM and SSDs. Investing into a Ryzen 5 3400G, B450 motherboard, 16GB of 3000MHz RAM and a 500GB SSD, providing you can find a cost-efficient case and power supply, you can get up and running with a capable gaming PC for around the cost of a PS4 Pro or Xbox One X (£400).The Zen+ optimisations are clearly evident with the 3400G beating the 2400G in every test we threw at it, and convincingly so at that. When paired to our AMD Radeon RX480 GPU performance was comparable to CPUs such as the 8700K and even the 3800X/3900X, providing considerable evidence as to the ability to use the iGPU (Integrated Graphics Processing Unit) at first and then add a discrete GPU further down the line, when budget will allow.
Overclocking was super easy via the AMD Ryzen Master utility with only a basic understanding of what is what. We managed to overclock the CPU to 4225MHz across all four cores, higher than the single-core Boost frequency at stock, which helped to give a bump in almost all of our tests, furthering its impact upon some much more expensive CPUs.
This CPU is quite clearly aimed towards a budget-focussed individual; if said individual happens to have gaming in mind, a look on the second-hand market can find an abundance of discrete AMD GPUs being sold relatively cheaply, largely as a hangover of the crypto currency boom of 2018; pair a bargain RX 570 to an AMD Ryzen 3 1000 or 2000-series CPU and you’ll find your gaming performance is almost an order of magnitude better with little to no negative effects on productivity work.
The AMD Ryzen 5 2400G made a lot of sense in the early months of 2018, during a GPU price crisis, but now that we’re past the silly pricing from both AMD and NVIDIA, not so much. There’s still a place in the market but it’s much more niche.
+ Low cost entry to the AM4 platform
+ Improved memory performance
+ Reasonable overclocking potential
+ Offers a viable upgrade path via the AM4 socket
+ Great value for those who seek a low power system
Neutral
+- A niche product
Cons
– Only PCI-E 3.0 x8
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