Re-examining the DDR4 gaming gap with Intel’s LGA 1700 CPUs in mid-2026 — performance drops of 14% on average, and up to 25% in some games

DDR4 vs DDR5
(Image credit: Tom's Hardware)

Unless you already have a kit of DDR5, or deep pockets for PC hardware, you’re stuck right now. Despite seeing some of the best CPUs for gaming released just in the past year, the DDR5 tax represents a major hurdle to building or upgrading your PC. Intel’s LGA 1700 CPUs hold an unintended solution, offering support for both DDR4 and DDR5. We wanted to see if this on-ramp to a next-gen platform was really as smooth as it looks at first glance.

The idea is simple. If you already have a DDR4 kit, you can upgrade to a relatively new CPU while keeping the door open for a transition to DDR5 without buying a new chip. It’s inexpensive, and a bit more of a practical solution than upgrading to DDR5 with a single DIMM and worrying about pairing it with another later.

Our testing shows how much of a performance difference there is with DDR4 in games. We’re focused on games here for a few reasons. First, in non-gaming applications, memory speed is highly dependent on the specific workload you’re running. Games, despite using different engines, are largely similar workloads that stress the hardware in similar ways. Further, those workloads are continually evolving as new games, new technologies, and new hardware targets are released.

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We kept our testing focused on Intel’s LGA 1700 CPUs because they’re the only options that give us a true apples-to-apples comparison between DDR4 and DDR5. We don’t have any AMD CPUs in our test pool because there aren’t any chips that support both DDR4 and DDR5. This isn’t intended to be a competitive analysis between AMD and Intel. That conversation opens up a much broader conversation about total platform cost.

Testing DDR4 vs. DDR5 on Intel’s LGA 1700 CPUs

To test DDR4 and DDR5’s gaming performance, we ran Intel’s main LGA 1700 stack through a 15-game gauntlet of benchmarks. Notably, we don’t have results for the Core i9-12900K, as our sample has a janky memory controller that won’t boot on DDR5 systems. You can read a full breakdown of how (and why) we tested in the way we did in the section below.

We ran all of the games through our 16-game benchmark suite, though we cut Doom: The Dark Ages from the results here. An update for the game rolled out mid-way through testing and skewed our results, so we’re omitting it. The 15 remaining games still paint a clear picture of the performance difference between DDR4 and DDR5.

As usual, we tested with the RTX 5090 Founder’s Edition at 1080p with a mixture of High and Ultra settings. We test at 1080p to maximize the differences between CPUs, and it remains the most widely-used resolution for gaming. Deltas between CPUs will decrease as the resolution climbs and the GPU becomes a larger influence in performance.

Below is our geomean from testing across the suite. Given that we’re looking to compare a single CPU’s performance with DDR4 and DDR5, we’ve highlighted some CPUs with the same color (13700K is always dark red, for instance, while 14700K is always dark blue).

DDR4 vs DDR5

(Image credit: Tom's Hardware)

The chart above is a bit difficult to parse, mainly because we’re often jumping several entries to get to a comparison point. For the stack of chips we tested, here’s a clearer overview of the performance difference with DDR4:

Swipe to scroll horizontally

CPU

DDR4 % Difference

Core i9-14900K

-14%

Core i7-14700K

-13.2%

Core i5-14600K

-13.1%

Core i9-13900K

-11.3%

Core i7-13700K

-13.5%

Core i5-13600K

-11.4%

Core i7-12700K

-9.3%

Core i5-12600K

-9.5%

As we’ll get into with the individual game tests below, the drop in performance between DDR4 and DDR5 can be much larger than the comparison in our geomean (and, in turn, smaller in other games). What’s important for the overall performance drop is the trend as we move to newer chips. You can see a 9% drop grow to 14%, as DDR4 becomes a more significant bottleneck when the processor it’s feeding becomes more powerful.

That trend is one of the main driving forces behind our look at DDR4 and DDR5 gaming performance today. We looked at DDR4 and DDR5 performance extensively near the Alder Lake launch, and even more recently last year, evaluating performance across a wide range of applications. The testing here is focused solely on gaming to answer a critical question of building a PC today: Are you really giving up that much gaming performance with DDR4?

The answer is, yes, you’re giving up around 11% to 14% of your gaming performance overall when the memory is the only variable that changes. That’s a consistent drop, as well. Older titles care see less of a benefit from DDR5 generally, but we saw a steady decrease of around 11-14% across the games we tested, with some titles pushing above a 20% drop.

DDR4 vs DDR5

(Image credit: Tom's Hardware)

007 First Light is the newest game we tested, and it outpaces our averages. The 14900K sees a 16.5% drop with DDR4, while the 13600K drops 12.7% of its performance. Especially among the most powerful CPUs here, you can see DDR4 level off performance in a way that’s undesirable. The 14900K, for instance, is just 1.7% faster than the 13900K with DDR4, but it’s 4.6% faster with DDR5.

DDR4 vs DDR5

(Image credit: Tom's Hardware)

Similarly, in Crimson Desert, you can see the 13700K lose 13.7% of its performance with DDR4, and the 14600K drop 13.2% of its performance. It’s worth noting that neither of these games are particularly sensitive to memory speed. You can see in our recent Ryzen 7 5800X3D re-review that even a boost from 3D V-Cache doesn’t give CPUs with a robust memory chain an automatic advantage.

DDR4 vs DDR5

(Image credit: Tom's Hardware)

Perhaps the most consequential of the newer games we tested is Marvel Rivals, not only because it shows a much larger gap between DDR4 and DDR5, but also because it’s the most-played game in our test suite by a long shot (short of Counter-Strike 2). For weaker chips like the 12600K, the gap is 13.9%, just slightly above our geomean. For the more powerful 14700K, however, it shows a gap of 25.3%. Even the 14600K drops 17.4% of its performance with DDR4.

DDR4 vs DDR5

(Image credit: Tom's Hardware)

Counter-Strike 2 is less extreme, perhaps as a consequence of having such a high floor for average frame rates. You can see that the Alder Lake chips don’t care much about DDR4, with the Core i7-12700K performing identically across both memory standards. That gap grows with more powerful CPUs, however, with the 14700K creeping up toward a 10% delta.

DDR4 vs DDR5

(Image credit: Tom's Hardware)

In Spider-Man 2, we can see more consistent drops across the stack of chips we tested, with most CPUs dropping around 18% of their average performance with DDR4. That’s true even on the weaker 12700K, which lost 15% of its performance. The 14900K, meanwhile, was 18.7% slower with DDR4.

DDR4 vs DDR5

(Image credit: Tom's Hardware)

Even in an older, GPU-heavy title like Cyberpunk 2077, we can see a consistent drop. You can see in this game that we become completely bound by the GPU at the top of the rankings, but that’s a level these chips can’t hit when paired with DDR4. The 14700K drops about 14% of its performance, and the 13600K, about 13% of its performance.

You can browse through our remaining benchmarks using the gallery above, but most games tell a similar story. The gap between DDR4 and DDR5 persists, of course, but there’s another angle to look at the data. DDR4 flattens off performance, creating a bottleneck with faster CPUs. That could be justification for buying a weaker chip if you can only afford DDR4 memory right now.

DDR4 vs DDR5

(Image credit: Tom's Hardware)

Outside of performance, one important aspect of using a DDR4 system compared to DDR5 is power consumption. With DDR4, power consumption of the CPU increases, as you can see in the chart above. The jump is generally only a few watts, but it’s worth noting nonetheless. In games, we’re well below the operating temperature of all the chips in our test pool, but when pushing toward maximum power draw, DDR4 will post yet another limitation.

How (and why) we tested DDR4 vs. DDR5 now

DDR5 is way too expensive, and Intel’s LGA 1700 CPUs represent a unique value proposition given the unprecedented increases in memory prices over the past several months. The idea is that you can upgrade to a newer platform while sticking with DDR4, giving you a stopgap for an eventual DDR5 upgrade. It seems Intel recognizes this value proposition, as well, as it’s reportedly slated to launch Raptor Lake Next CPUs on the LGA 1700 socket.

We tested the main stack of chips, short of the Core i9-12900K, as described above. We didn’t test variants like KS releases to keep our testing focused, as well as lower-end SKUs like the 12100F or 14400. The memory controllers in these lower-end chips are weaker, sustaining lower DDR5 speeds, so expect less of a difference in performance with them.

Below, you can see the test benches we used. In addition to keeping hardware consistent, we use a frozen OS image with an identical software stack. We’re running the same version of the same apps on the same OS update, with identical drivers.

In the BIOS, we enabled XMP for both kits of memory. We also tested with Resizeable BAR turned on, and Virtualization-Based Security (VBS) turned off. Most motherboard vendors off a profile with the power limits removed on Intel CPUs, which can push the processor outside of warrantied specifications. We stuck with the default “Performance” profile for our testing here.

Swipe to scroll horizontally

Intel LGA 1700 (Raptor Lake, Alder Lake)

Row 0 - Cell 1

Motherboard

MSI MPG Z790 Carbon Wi-Fi

RAM

2x16GB G.Skill Trident Z Neo RGB DDR5-7200

Intel LGA 1700 DDR4 (Raptor Lake, Alder Lake)

Row 3 - Cell 1

Motherboard

MSI MPG Z690 Edge Wi-Fi DDR4

RAM

4x8GB G.Skill Trident Z RGB DDR4-3200

All Systems

Row 6 - Cell 1

Gaming CPU

Nvidia GeForce RTX 5090 Founder’s Edition

Cooler

Corsair iCue Link H150i RGB

Storage

2TB Sabrent Rocket 4 Plus

PSU

MSI MPG A1000GS, Gigabyte UD1000GM PG5 V2

Other

Arctic MX-4 TIM, Windows 11 Pro, Alamengda open test bench

Is DDR4 still worth it?

It makes sense that we’ve seen a shift back toward DDR4. Although DDR4 prices have risen in lockstep with DDR5 prices, they started from a much lower base. A kit of DDR4 today is not much more expensive than a DDR5 kit of similar capacity a year ago. And, with estimates that the memory shortage could persist through 2030, there’s a strong argument for going with a DDR4 system if you’re in need of an upgrade.

The performance trade-off alone isn’t as big of a problem as it appears at first glance. You’re going to lose about 15% of your average gaming performance with Intel’s LGA 1700 CPUs (particularly Raptor Lake chips). You’ll spend more than twice as much on a 32GB kit of DDR5-6000 as you will on a 32GB kit of DDR4-3200, as you can see in our RAM price tracker. And, you might already have a DDR4 kit, cutting that cost completely out of an upgrade. Dollars spent for performance gained, DDR4 makes complete sense.

However, performance isn’t the only factor at play, and that’s the unfortunate reality of using a DDR4 platform right now. It’s a dead end, both for performance and upgrade potential. As we saw in our recent testing of the Ryzen 7 5800X3D, there’s a performance wall in games with DDR4, one which the 5800X3D often runs up against. The memory is a bottleneck, and it doesn’t seem like there’s a way around that problem without upgrading to DDR5.

We also aren’t seeing any new DDR4 CPUs, at least right now. AMD re-released the Ryzen 7 5800X3D, and there are murmurs of Raptor Lake Next. But given the current landscape, we don’t expect a CPU that will radically change the performance you can get out of a DDR4 platform.

Instead of sticking with DDR4 for a better CPU, the best course of action right now is to bite the bullet on DDR5 and buy a weaker CPU, particularly if gaming performance is your main concern. Given that memory prices are out of control, there are excellent deals on DDR5 CPUs right now, allowing you to offset the cost of an upgrade and giving you a kit of DDR5 to carry forward in future builds.

As an example, AMD’s recently-released Ryzen 7 7700X3D is $80 cheaper than the re-released Ryzen 7 5800X3D, despite coming in nearly 20% faster in average gaming performance. The $230 Ryzen 5 7600X3D shows similar gains, and it’s even more affordable.

In Intel’s camp, the Core Ultra 7 270K Plus and Core Ultra 5 250K Plus represent some of the best all-around value in the CPU world right now, with compelling gaming performance and chart-topping application performance, all for around $300.

You will spend more on a cheaper CPU and a kit of DDR5. There’s no indication that the memory shortage is ending soon, however. We’ve actually seen prices continue to increase despite the surge leveling off. Opting for DDR5 today buys you better gaming performance, but more importantly, it gives you a kit of memory that you can continue to use as new CPUs and platforms are released.

Jake Roach
Senior Analyst, CPUs

Jake Roach is the Senior CPU Analyst at Tom’s Hardware, writing reviews, news, and features about the latest consumer and workstation processors.

  • mitch074
    It is slightly disingenuous to use DDR4-3200 and DDR5-7200 : one is the 'sweet spot' from way back in 2018, the other is top of the line O/C from right now. DDR4-3600 vs. DDR5-6000 would make a lot more sense.
    Reply
  • usertests
    mitch074 said:
    It is slightly disingenuous to use DDR4-3200 and DDR5-7200 : one is the 'sweet spot' from way back in 2018, the other is top of the line O/C from right now. DDR4-3600 vs. DDR5-6000 would make a lot more sense.
    "Anyone running less than DDR5-8000 should be stripped of their right to vote."
    -Some guy
    Reply
  • Gururu
    mitch074 said:
    It is slightly disingenuous to use DDR4-3200 and DDR5-7200 : one is the 'sweet spot' from way back in 2018, the other is top of the line O/C from right now. DDR4-3600 vs. DDR5-6000 would make a lot more sense.
    Not really. Because the testing is only with games, and its been pretty much shown ad nauseam that games aren't greatly impacted (DDR4 3200 vs 3600, DDR5 6000 vs 7200) with the frequency, not sure we'd see a significant difference if he had used your suggestion.
    Reply
  • mhrde
    I'm surprised nobody looked at the number of memory sticks in the test setup and focused entirely on MT/s. The DDR5 rig is 2x16, the DDR4 rig is 4x8!!! Seeing that I am beginning to doubt that the 12th gen CPUs will show any very meaningful delta if the RAM kits were somewhat comparable physically, given that their memory controllers are reportedly weaker and might have struggled more with the 4 sticks of RAM.
    Reply
  • Gururu
    mhrde said:
    I'm surprised nobody looked at the number of memory sticks in the test setup and focused entirely on MT/s. The DDR5 rig is 2x16, the DDR4 rig is 4x8!!! Seeing that I am beginning to doubt that the 12th gen CPUs will show any very meaningful delta if the RAM kits were somewhat comparable physically, given that their memory controllers are reportedly weaker and might have struggled more with the 4 sticks of RAM.
    That's a good point. The test probably should have been more comparable with this and @mitch074 suggestion. However, I am looking at other tests comparing DDR4 and DDR5 in games, and the results are similar or within margin of error.
    Reply
  • mhrde
    Gururu said:
    That's a good point. The test probably should have been more comparable with this and @mitch074 suggestion. However, I am looking at other tests comparing DDR4 and DDR5 in games, and the results are similar or within margin of error.
    Let's put a positive spin on this: Intel increased cache and memory controller capability to improve performance generation over generation, widening the gap intentionally, but not to kill DDR4, but where there was potential to do so meaningfully. I bought my hardware new a year ago dirt cheap from today's perspective: Intel Core i7-12700, 2x16 @ 3600 MT/s, Intel Arc B580. I'm obviously not a gamer. But I am amazed at how well it is holding up and continues benefiting from Xe architecture development. I do agree, though, that if you are a serious gamer, the time to build a DDR4 system has passed a while ago, and I would probably not get new parts for such a system nowadays.
    Reply
  • User of Computers
    mhrde said:
    I'm surprised nobody looked at the number of memory sticks in the test setup and focused entirely on MT/s. The DDR5 rig is 2x16, the DDR4 rig is 4x8!!! Seeing that I am beginning to doubt that the 12th gen CPUs will show any very meaningful delta if the RAM kits were somewhat comparable physically, given that their memory controllers are reportedly weaker and might have struggled more with the 4 sticks of RAM.
    If the IMC can handle 4x8 DDR4 without issue at its rated clocks, which it can, there's no reason that I can think of that would prevent this being a fair comparison. If the IMC had "struggled" with the DDR4 it wouldn't have been stable or worked all that well,
    Reply
  • mhrde
    User of Computers said:
    If the IMC can handle 4x8 DDR4 without issue at its rated clocks, which it can, there's no reason that I can think of that would prevent this being a fair comparison. If the IMC had "struggled" with the DDR4 it wouldn't have been stable or worked all that well,
    I think I was very careful in my remarks and would place 'might have struggled' from a performance perspective a quiet but far cry from instability. Quite the opposite: They worked quite well, so imagine what DDR4 could have done in an optimal configuration... Looking at how people complain about a single RAM stick configuration for their Stream Machine, dismissing daisy-chained RAM sticks as irrelevant in a comparison of RAM generations, which others agreed might have skewed results a little bit, is not much supported by the absence of a system crash, in my humble opinion. But yeah, it's beautiful to see that 12th gen Intel handles a 4x8 @ 3200 MT/s configuration without crashing. Point taken.
    Reply
  • Dr3ams
    Because of the high price of RAM, many users can't afford to care much about the gap between DDR4 and DDR5.
    Reply
  • bill001g
    Maybe the game developers need to wake up and start to optimize their code like they did years ago. Now days they just churn out content and expect the hardware advancements to bail them out.

    The game developers need to realize that if people have to buy DDR5 based machines they will not have as much money left over to buy games. Someone wanting to play their game will think twice if the game costs $30 but they have to spend $500 for memory first.
    Reply