CPU Performance

To start testing off I went with a rendering-focused benchmark with the always popular Blender. This benchmark was recently updated so our result list is smaller here. I have all three tests stacked together so we can see an overall of them altogether. Blender loves the higher core counts so the older 3900X did well here. The 12900K still tops this chart but the 7700X is surprisingly next up in this short list with its 8 cores and high clock speeds. The 7600X outperforms the 12600K and the prior Intel flagship i9-11900K as well.

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Continuing with the video encoding theme I also have Handbrake which is an open-source transcoder. For this test I am taking a 4k video down to 1080p 30 FPS, the results are the average FPS of that task. The 7700X did well at 109.6 FPS and the 7600X did 92.4 FPS. That was enough to put the 7700X just a hair ahead of the 12600K but the 12900K is way out in front on this test.

 

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For the always popular Cinebench, I ran the three most recent versions. These are once again rendering and the latest R23 test is the most relevant for current applications but I love being able to see how everything compares in some of the older tests as well. In R15 the 7700X is up near the top with the high core count CPUs which is impressive given it just has 8 cores. The 7600X on the other hand is tied right with the 12600K which has 6 performance cores and 4 e cores. For the R15 single-core test, however, both Zen 4 CPUs are way out ahead with their high clock speeds and IPC performance. For Cinebench R20 both are at the top again in the single-core test with a big gap between even the 7600X and the 12900K. The Cinebench R20 multi-core test still has the 12900K with its 8 p cores and 8 e cores way out in front. The 7700X did have enough to outperform everything else though and the 7600X is tied up with the 11900K. Then in the latest Cinebench R23, the multi-core test is similar again with the 12900K out in front, the 7700X, then the old 3900X with its 12 cores as the top three. The 7600X sits ahead of the 11900K but behind the 12600K. The single core results in R23 on the other hand have both Zen 4 CPUs out in front once again. 

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Next up we have ray tracing focused rendering benchmarks. Here I tested the CPUs in POV-Ray and V-Ray. POV-Ray was also tested with a single core and across all of the cores. In POC-Ray the 12900K is out in front by a big margin for the multi-core test with the 7700X the next closest tested and the 7600X is back behind the 12600K but the single core performance has both way out ahead. In V-Ray, the 12900K is up top with the old 7980XE and its 18 cores still lingering up at the top but the 7700X overcame the rest of the high core count CPUs to be behind it. The 7600X is behind the 12600K and its 10 cores and ahead of the 11900K.

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I also tested using the CPUz’s built-in benchmark which does run on a single thread and with all threads. I think this is the only result that shows the 12900K ahead in a single-threaded test but just behind it is the 7700X and then the 7600X. The multi-thread CPUz test on the other hand mixes in more of the old high core count CPUs up at the top putting the 7700X behind the 3900X. The 7600X on the other hand is sitting ahead of the 9900K and just behind the 5700X with its two extra cores.

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Next, we have wPrime which is a classic overclocking benchmark that calculates pi out to 1024 million digits and is timed. This is a multi-thread heavy test which has the older high core count CPUs still all over the top of the charts but the 7700X did extremely well here given its 8 cores sitting behind the 3900X and ahead of the 10900K with its 10 cores even. The 7600X is then behind the 9900K and ahead of the 3700X.

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7 Zip is another open-source program, this time for compressing and decompressing all of your files. Here I have run the benchmark and we have three results. The combined MIPS is a combination of compressing and decompressing performance. Then I have it broken down between the two. This workload likes extra cores which can be seen with the CPUs that are up at the top being some of the older high core count CPUs that I have tested in the past. The 7700X came in behind the 12900K with its 16 cores and ahead of the old 7980XE and its 18 cores showing that with enough clock speed and IPC performance you can overcome the advantage that lots of cores can get you in 7 Zip performance. The 7600X with two fewer cores did well as well sitting up ahead of the 10900K. The decompressing and compressing numbers were similar overall but they do show both CPUs having a harder time with the decompressing than compressing.

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Jetstream 2 is a compilation benchmark that takes a long list of HTML5 and Java in-browser tests and runs them all three times and puts together an overall score. I love this benchmark because let's be honest, most people are using their browser more than any other game or program. Jetstream gives some interesting results sometimes though but it tends to prefer high IPC or single-core performance and there are some situations where it prefers lower core count CPUs which we can see here with the 7700X and 7600X with their high IPC and clock speeds just demolishing everything else. 

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For Passmark Performance Test I took a look at both the older version 9 and the newer version 10. On both, I only look at the overall CPU score which takes a few different synthetic benchmarks and combines the results to put together an overall score. The Zen 4 CPUs as well as the Intel i9-12900K are way out ahead of all of the other CPUs tested in Passmark 9. In Passmark Performance Test 10 the 7600X drops down behind the 3900X which has 12 cores but is out ahead of the 5700X and others.

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PCMark 10 is a great test because it tests things like video calls, browser performance, excel, and word performance to give an idea of real-world performance. It tends to like higher clock speeds which you can see all of the 5 GHz CPUs up at the top. The two Zen 4 CPUs which both have higher than 5 GHz boost clocks did well here with the 7700X out in front over the 12900K and the 7600X just behind the 12900K.

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We recently added even more real-world testing with the UL Procyon Benchmarks which are as real-world as they can get using the actual programs that you would use in each test. There are three overall benchmarks, first is the Office Productivity Benchmark which uses Microsoft Office 365 to test actual performance in word, excel, PowerPoint, and outlook. The second benchmark is the Photo Editing Benchmark which is run using the latest version of Photoshop as well as Lightroom Classic to look at photo editing performance. Then the last test is the Video Editing Benchmark which uses the latest version of Adobe Premiere Pro to test video editing performance. I have all three scores stacked together to get an overall look at the performance. Both Zen 4 CPUs did extremely well here with the 7700X and its extra cores topping out the chart but what is most impressive here is that you can see better performance in Photoshop, Office, Lightroom, and Premiere Pro than the much more expensive i9-12900K with even just the Ryzen 5 7600X!

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Moving the focus over towards gaming my next test is using Dolphin 5.0 Benchmark. Dolphin 5.0 is a Wii emulator and like most emulators, it doesn’t care about high core counts at all. In fact, it only runs two in total. Clock speeds are king here and you can see just how much the impressive max boosts help with the 7700X and 7600X with both topping the chart.

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Before diving into game testing I wanted to check out synthetic performance using 3DMark. I tested with the older DX11 Fire Strike test as well as the newer DX12 Time Spy. I also added the new 3DMark CPU Profile benchmark into the mix as well which does a good job of showing the full range of thread counts that you might see being used in games as well as a max threads option that does everything above 16 threads. In the Fire Strike test, the 7700X stands way out ahead of the 7600X with its extra cores with a score sitting way out in front of the 12600K which also has 10 cores (6p cores and 4 e cores), and with the 12900K still out ahead of it. The 7600X on the other hand is sitting right in with the 10900K and ahead of last generations 5700X. Time Spy has the 7700X up near the top behind the 12900K again but the 7600X with its lower core count didn’t do as well with it sitting between the 5700X and the 11600K. The last 3DMark test was the newer CPU profile which runs the same test over and over at different thread counts and maps out the performance overall. The 7700X was the second fastest here with the 12900K of course in the lead and the 7600X sits above the 5700X at max threads but behind the 12600K.

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For in-game performance testing, I ran them through a variety of new and old games. TF2 for example is a very old game at this point but is also extremely CPU dependent which makes it a good option to check out for older source-based games. Game results for both the Ryzen 7 7700X and the Ryzen 5 7600X did extremely well, especially in TF2 where they are not only at the top but gave a 17-27 FPS jump over Intel’s flagship 12900K. The higher base clock speeds of the 7600X showed with it being faster than the 7700X in five out of nine of the tests. Both CPUs traded blows with the much more expensive 12900K except for Dirt 5 where they struggled and the 7700X struggled more than the 7600X. 

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I did also run both CPUs through a few tests using AIDA64, specifically, I wanted to check out cache performance, memory performance, and how the CPUs handle single and double precision and different integers. The 7700X and the 7600X both show an improvement in all of the cache tests when compared to the 5700X, especially with each having lowered latency in each test. Having DDR5 helped with the memory bandwidth coming from the 5700X with read performance jumping from 47858 MB/s to 58755 MB/s (7700X to 5700X) and write performance was a lot more significant going from 28760 MB/s to 80120 MB/s. The integer IOPS performance had a decent jump at 16 and 32 bits but is a huge improvement at 64 bit as well.

AIDA64

L1 Cache Read

L1 Cache Write

L1 Cache Latency

L2 Cache Read

L2 Cache Write

L2 Cache Latency

AMD Ryzen R7 2700X

999.43 GB/s

502.50 GB/s

1.0 ns

978.03 GB/s

495.12 GB/s

2.8 ns

AMD Ryzen R5 2600X

768.13 GB/s

388.05 GB/s

1.0 ns

729.37 GB/s

366.01 GB/s

2.9 ns

Ryzen 5 2400G

485.01 GB/s

238.29 GB/s

1.0 ns

459.80 GB/s

232.20 GB/s

3.1 ns

Ryzen 3 2200G

460.55 GB/s

227.41 GB/s

1.1 ns

352.84 GB/s

177.56 GB/s

3.3 ns

Intel i7-8700K

1595.6 GB/s

803.65 GB/s

0.9 ns

640.37 GB/s

397.14 GB/s

2.6 ns

Intel i5-8400

1417.2 GB/s

710.79 GB/s

1.0  ns

543.81 GB/s

352.90 GB/s

3.1 ns

Intel Core i9-7980XE

3758.3 GB/s

1896.7 GB/s

1.1 ns

1671.7 GB/s

1069.9 GB/s

5.6 ns

Intel Core i9-7960X

3532.3 GB/s

1785.2 GB/s

1.0 ns

1571.6 GB/s

1003.5 GB/s

5.1 ns

Intel Core i7-7820X

1969.9 GB/s

995.02 GB/s

1.0 ns

884.63 GB/s

574.74 GB/s

5.6 ns

Intel Core i5-7640X

1044.8 GB/s

31888 GB/s

1.0 ns

397.26 GB/s

247.00 GB/s

2.9 ns

Intel Core i9-7900X

2418.5 GB/s

709.16 GB/s

1.0 ns

1037.3 GB/s

521.94 GB/s

5.2 ns

Intel Core i7-7740X

1102.7 GB/s

561.25 GB/s

0.9 ns

424.55 GB/s

304.30 GB/s

2.7 ns

Intel i7-6900K

1963.9 GB/s

999.59 GB/s

1.0 ns

710.28 GB/s

310.34 GB/s

4.1 ns

Intel i7-7700K

1114.6 GB/s

560.82 GB/s

0.9 ns

415.45 GB/s

285.97 GB/s

2.7 ns

Intel i7-5960X

1748.5 GB/s

874.60 GB/s

1.2 ns

623.08 GB/s

272.77 GB/s

3.5 ns

AMD Ryzen R7 1800X

917.46 GB/s

460.16 GB/s

1.1 ns

831.95 GB/s

446.37 GB/s

4.7 ns

AMD Ryzen R7 1700X

867.89 GB/s

435.33 GB/s

1.2 ns

809.29 GB/s

419.38 GB/s

5.0 ns

AMD Ryzen R7 1700

793.90 GB/s

398.12 GB/s

1.3 ns

742.92 GB/s

389.73 GB/s

5.4 ns

AMD Ryzen R5 1600X

689.47 GB/s

345.95 GB/s

1.1 ns

630.99 GB/s

334.93 GB/s

4.7 ns

AMD Ryzen R5 1500X

446.84 GB/s

224.01 GB/s

1.1 ns

306.82 GB/s

211.58 GB/s

11.8 ns

AMD Ryzen R5 2600

685.38 GB/s

344.05 GB/s

1 ns

669.28 GB/s

333.5 GB/s

3.1 ns

AMD Ryzen R7 2700X

849.91 GB/s

426.09 GB/s

1 ns

837.76 GB/s

418.75 GB/s

3.0 ns

Intel i7-8086K

1596.4 GB/s

803.56 GB/s

0.9 ns

623.36 GB/s

423.53 GB/s

2.6 ns

Intel i9-9900K

2375.6 GB/s

1195.4 GB/s

0.8 ns

907.65 GB/s

626.34 GB/s

2.4 ns

AMD Ryzen 9 3900X

3098.6 GB/s

1551.4 GB/s

0.9 ns

1545.3 GB/s

1416.8 GB/s

2.8 ns

AMD Ryzen 7 3700X

2133.2 GB/s

1072.9 GB/s

0.9 ns

1069.1 GB/s

993.49 GB/s

2.8 ns

AMD Ryzen 5 3600X

1547.4 GB/s

779.24 GB/s

1.0 ns

777.62 GB/s

745.30 GB/s

2.8 ns

AMD Ryzen 3 3400G

508.97 GB/s

253.87 GB/s

1.0 ns

490.26 GB/s

247.04 GB/s

3.0 ns

AMD Ryzen 3 3300X

1080.5 GB/s

541.50 GB/s

0.9 ns

541.84 GB/s

530.50 GB/s

2.7 ns

AMD Ryzen 3 3100

965.85 GB/s

484.67 GB/s

1.0 ns

485.55 GB/s

460.71 GB/s

3.1 ns

Intel i5-10600K

1676.6 GB/s

840.87 GB/s

0.8 ns

662.98 GB/s

452.67 GB/s

2.5 ns

Intel i9-10900K

3162.1 GB/s

1586.7 GB/s

0.8 ns

1201.8 GB/s

759.97 GB/s

2.4 ns

AMD Ryzen 5 5600X

1721.4 GB/s

869.69 GB/s

0.9 ns

851.89 GB/s

831.97 GB/s

2.6 ns

Intel i9-11900K

4542.8 GB/s

2299.3 GB/s

1.0 ns

1413.2 GB/s

691.62 GB/s

2.5 ns

Intel i5-11600K

3412.3 GB/s

1724.9 GB/s

1.0 ns

960.91 GB/s

526.76 GB/s

2.7 ns

Intel i9-12900K

2310.0 GB/s

1438.7 GB/s

1.0 ns

1233.5 GB/s

562.72 GB/s

2.9 ns

Intel i5-12600K

1461.1 GB/s

971.78 GB/s

1.1 ns

846.4 GB/s

360.51 GB/s

3.2 ns

AMD Ryzen 5 4500

1561.9 GB/s

784.1 GB/s

1.0 ns

785.34 GB/s

751.61 GB/s

2.9 ns

AMD Ryzen 5 5600

1646.6 GB/s

831.24 GB/s

0.9 ns

832.43 GB/s

767.22 GB/s

2.7 ns

AMD Ryzen 7 5700X

2267.8 GB/s

1157.8 GB/s

0.9 ns

1147.6 GB/s

1026.1 GB/s

2.6 ns

AMD Ryzen 7 7700X

2722.9 GB/s

1381 GB/s

0.7 ns

1361.1 GB/s

1305.1 GB/s

2.7 ns

AMD Ryzen 5 7600X

1996.3 GB/s

1019.3 GB/s

0.7 ns

1020.9 GB/s

999.93 GB/s

2.6 ns

 

AIDA64

L3 Cache Read

L3 Cache Write

L3 Cache Latency

Memory Read

Memory Write

Memory Latency

AMD Ryzen R7 2700X

414.95 GB/s

417.71 GB/s

8.8 ns

50214 MB/s

48578 MB/s

65.0 ns

AMD Ryzen R5 2600X

429.09 GB/s

323.83 GB/s

9.1 ns

50273 MB/s

48346 MB/s

65.5 ns

Ryzen 5 2400G

222.96 GB/s

181.60 GB/s

9.6 ns

45967 MB/s

47850 MB/s

66.6 ns

Ryzen 3 2200G

137.30 GB/s

171.20 GB/s

10.2 ns

35567 MB/s

36240 MB/s

118.4 ns

Intel i7-8700K

337.00 GB/s

213.67 GB/s

11.0 ns

38421 MB/s

40175 MB/s

57.9 ns

Intel i5-8400

270.89 GB/s

186.82 GB/s

13.0 ns

38096 MB/s

40549 MB/s

59.8 ns

Intel Core i9-7980XE

229.61 GB/s

118.40 GB/s

21.0 ns

77004 MB/s

68888 MB/s

73.4 ns

Intel Core i9-7960X

220.22 GB/s

121.04 GB/s

19.8 ns

79416 MB/s

71554 MB/s

74.9 ns

Intel Core i7-7820X

114.40 GB/s

103.57 GB/s

19.2 ns

76049 MB/s

73759 MB/s

71.6 ns

Intel Core i5-7640X

228.31 GB/s

163.86 GB/s

11.1 ns

30786 MB/s

31888 MB/s

68.5 ns

Intel Core i9-7900X

124.16 GB/s

106.78 GB/s

21.2 ns

76856 MB/s

72856 MB/s

72.8 ns

Intel Core i7-7740X

287.01 GB/s

186.67 GB/s

21.2 ns

38455 MB/s

40596 MB/s

53.2 ns

Intel i7-6900K

243.96 GB/s

195.41 GB/s

14.6 ns

66786 MB/s

68130 MB/s

61.9 ns

Intel i7-7700K

234.50 GB/s

188.70 GB/s

10.4 ns

38498 MB/s

40448 MB/s

52.7 ns

Intel i7-5960X

260.72 GB/s

184.92 GB/s

15.3 ns

66108 MB/s

49545 MB/s

62.8 ns

AMD Ryzen R7 1800X

388.18 GB/s

386.01 GB/s

12.4 ns

44031 MB/s

43425 MB/s

81.8 ns

AMD Ryzen R7 1700X

369.75 GB/s

350.31 GB/s

12.9 ns

44493 MB/s

43749 MB/s

78.3 ns

AMD Ryzen R7 1700

334.36 GB/s

332.12 GB/s

14.2 ns

45343 MB/s

43777 MB/s

82.6 ns

AMD Ryzen R5 1600X

386.48 GB/s

326.86 GB/s

12.3 ns

44452 MB/s

43918 MB/s

83.7 ns

AMD Ryzen R5 1500X

306.82 GB/s

211.58 GB/s

11.8 ns

44289 MB/s

43746 MB/s

83.1 ns

AMD Ryzen R5 2600

381.16 GB/s

320.56 GB/s

9.8 ns

50385 MB/s

48499 MB/s

66.5 ns

AMD Ryzen R7 2700

357.51 GB/s

356.71 GB/s

9.4 ns

50088 MB/s

48343 MB/s

65.9 ns

Intel i7-8086K

380.04 GB/s

243.73 GB/s

10.9 ns

39069 MB/s

40675 MB/s

56.2 ns

Intel i9-9900K

302.01 GB/s

221.1 GB/s

11.0 ns

39682 MB/s

41015 MB/s

51.1 ns

AMD Ryzen 9 3900X

1014.4 GB/s

836.39 GB/s

11.5 ns

53981 MB/s

52271 MB/s

70.7 ns

AMD Ryzen 7 3700X

611.53 GB/s

573.21 GB/s

10.2 ns

51498 MB/s

28739 MB/s

67.3 ns

AMD Ryzen 5 3600X

584.93 GB/s

538.45 GB/s

10.4 ns

50769 MB/s

28736 MB/s

68.9 ns

AMD Ryzen 3 3400G

233.57 GB/s

193.62 GB/s

9.3 ns

49936 MB/s

53502 MB/s

67.1 ns

AMD Ryzen 3 3300X

322.13 GB/s

321.33 GB/s

11.1 ns

51435 MB/s

28743 MB/s

66.4 ns

AMD Ryzen 3 3100

374.11 GB/s

343.53 GB/s

11.8 ns

50246 MB/s

28734 MB/s

71.1 ns

Intel i5-10600K

361.35 GB/s

238.47 GB/s

10.5 ns

43340 MB/s

43430 MB/s

48.2 ns

Intel i9-10900K

407.66 GB/s

245.94 GB/s

11.4 ns

44972 MB/s

43808 MB/s

50.5 ns

AMD Ryzen 5 5600X

276.24 GB/s

298.84 GB/s

11.0 ns

50972 MB/s

28772 MB/s

59.2 ns

Intel i9-11900K

330.32 GB/s

213.28 GB/s

11.4 ns

44919 MB/s

43343 MB/s

51.8 ns

Intel i5-11600K

319.10 GB/s

198.57 GB/s

11.4 ns

43953 MB/s

43468 MB/s

55.6 ns

Intel i9-12900K

678.84 GB/s

418.11 GB/s

19.8 ns

71418 MB/s

72395 MB/s

82.0 ns

Intel i5-12600K

598.86 GB/s

292.09 GB/s

21.4 ns

65416 MB/s

71336 MB/s

87.8 ns

AMD Ryzen 5 4500

350.05 GB/s

571.19 GB/s

10.5 ns

52683 MB/s

53191 MB/s

82.8 ns

AMD Ryzen 5 5600

445.8 GB/s

437.73 GB/s

11.9 ns

48444 MB/s

28753 MB/s

70.9 ns

   AMD Ryzen 7 5700X

501.53 GB/s

526.11 GB/s

11.5 ns

47858 MB/s

28760 MB/s

68.2 ns

AMD Ryzen 7 7700X

887.95 GB/s

901.2 GB/s

10.1 ns

58755 MB/s

80120 MB/s

70 ns

AMD Ryzen 5 7600X

847.43 GB/s

847.61 GB/s

10.5 ns

54720 MB/s

80771 MB/s

69.5 ns

 

AIDA64

Single-Precision FLOPS

Double Precision FLOPS

AES-256

24-bit Integer IOPS

32-bit Integer IOPS

64-bit Integer IOPS

AMD Ryzen R7 2700X

507.9 GFLOPS

253.9 GFLOPS

70514 MB/s

127.7 GIOPS

127.7 GIOPS

64.22 GIOPS

AMD Ryzen R5 2600X

383.2 GFLOPS

191.4 GFLOPS

51932 MB/s

95.82 GIOPS

95.82 GIOPS

48.15 GIOPS

Ryzen 5 2400G

235.9 GFLOPS

117.8 GFLOPS

32388 MB/s

58.94 GIOPS

58.98 GIOPS

29.67 GIOPS

Ryzen 3 2200G

225.8 GFLOPS

112.6 GFLOPS

27603 MB/s

56.32 GIOPS

56.32 GIOPS

28.30 GIOPS

Intel i7-8700K

825.0 GFLOPS

412.5 GFLOPS

29406 MB/s

370.0 GIOPS

370.0 GIOPS

51.55 GIOPS

Intel i5-8400

728.8 GFLOPS

364.5 GFLOPS

25192 MB/s

323.5 GIOPS

323.5 GIOPS

45.55 GIOPS

Intel Core i9-7980XE

1831 GFLOPS

915.5 GFLOPS

69377 MB/s

821.2 GIOPS

821.3 GIOPS

121.6 GIOPS

Intel Core i9-7960X

1681 GFLOPS

840.6 GFLOPS

65409 MB/s

754.0 GIOPS

753.9 GIOPS

114.7 GIOPS

Intel Core i7-7820X

944.9 GFLOPS

472.5 GFLOPS

36420 MB/s

423.7 GIOPS

423.7 GIOPS

63.85 GIOPS

Intel Core i5-7640X

536.5 GFLOPS

268.2 GFLOPS

18547 MB/s

238.1 GIOPS

138.1 GIOPS

33.53 GIOPS

Intel Core i9-7900X

1148 GFLOPS

574.5 GFLOPS

45506 MB/s

515.1 GIOPS

515.0 GIOPS

79.76 GIOPS

Intel Core i7-7740X

575.4 GFLOPS

287.8 GFLOPS

20503 MB/s

258.1 GIOPS

258.0 GIOPS

35.97 GIOPS

Intel i7-6900K

1023 GFLOPS

511.7 GFLOPS

36340 MB/s

255.9 GIOPS

255.9 GIOPS

63.96 GIOPS

Intel i7-7700K

575.7 GFLOPS

287.9 GFLOPS

20519 MB/s

258.0 GIOPS

258.0 GIOPS

35.98 GIOPS

Intel i7-5960X

895.5 GFLOPS

447.7 GFLOPS

31783 MB/s

223.9 GIOPS

223.9 GIOPS

55.97 GIOPS

AMD Ryzen R7 1800X

472.4 GFLOPS

236.2 GFLOPS

64016 MB/s

118.1 GIOPS

118.1 GIOPS

59.03 GIOPS

AMD Ryzen R7 1700X

446.8 GFLOPS

223.4 GFLOPS

61730 MB/s

111.7 GIOPS

111.7 GIOPS

55.84 GIOPS

AMD Ryzen R7 1700

408.5 GFLOPS

204.3 GFLOPS

56811 MB/s

102.1 GIOPS

102.1 GIOPS

51.05 GIOPS

AMD Ryzen R5 1600X

354.9 GFLOPS

177.5 GFLOPS

49340 MB/s

88.74 GIOPS

88.73 GIOPS

44.34 GIOPS

AMD Ryzen R5 1500X

229.8 GFLOPS

114.8 GFLOPS

31983 MB/s

57.43 GIOPS

57.45 GIOPS

28.72 GIOPS

AMD Ryzen R5 2600

351 GFLOPS

175.4 GFLOPS

48939 MB/s

88.03 GIOPS

88.02 GIOPS

44.01 GIOPS

AMD Ryzen R7 2700

434.3 GFLOPS

217.2 GFLOPS

60336 MB/s

108.6 GIOPS

108.6 GIOPS

54.68 GIOPS

Intel i7-8086K

824.9 GFLOPS

412.5 GFLOPS

29397 MB/s

369.9 GIOPS

369.9 GIOPS

51.55 GIOPS

Intel i9-9900K

1226 GFLOPS

613.0 GFLOPS

45542 MB/s

550.0 GIOPS

549.8 GIOPS

79.79 GIOPS

AMD Ryzen 9 3900X

1546 GFLOPS

772.1 GFLOPS

106943 MB/s

385.7 GIOPS

385.7 GIOPS

96.57 GIOPS

AMD Ryzen 7 3700X

1078 GFLOPS

537.8 GFLOPS

74474 MB/s

271.0 GIOPS

271.2 GIOPS

67.77 GIOPS

AMD Ryzen 5 3600X

799.5 GFLOPS

400.0 GFLOPS

55456 MB/s

198.6 GIOPS

198.6 GIOPS

49.64 GIOPS

AMD Ryzen 3 3400G

257.2 GFLOPS

128.5 GFLOPS

35736 MB/s

64.16 GIOPS

64.16 GIOPS

32.25 GIOPS

AMD Ryzen 3 3300X

551.6 GFLOPS

276.1 GFLOPS

38176 MB/s

138.7 GIOPS

138.7 GIOPS

34.65 GIOPS

AMD Ryzen 3 3100

497.6 GFLOPS

248.7 GFLOPS

34946 MB/s

124.4 GIOPS

124.4 GIOPS

31.09 GIOPS

Intel i5-10600K

863.8 GFLOPS

431.9 GFLOPS

30782 MB/s

387.2 GIOPS

386.9 GIOPS

53.99 GIOPS

Intel i9-10900K

1632 GFLOPS

815.7 GFLOPS

58163 MB/s

731.3 GIOPS

731.2 GIOPS

102.0 GIOPS

AMD Ryzen 5 5600X

891.9 GFLOPS

445.8 GFLOPS

61623 MB/s

709.6 GIOPS

709.7 GIOPS

55.72 GIOPS

Intel i9-11900K

1068 GFLOPS

534.2 GFLOPS

164966 MB/s

547.0 GIOPS

547.0 GIOPS

182.7 GIOPS

Intel i5-11600K

838.7 GFLOPS

419.4 GFLOPS

123767 MB/s

429.3 GIOPS

429.3 GIOPS

143.4 GIOPS

Intel i9-12900K

695.7 GFLOPS

247.9 GFLOPS

140499 MB/s

400.6 GIOPS

400.6 GIOPS

166.2 GIOPS

Intel i5-12600K

432.5 GFLOPS

216.2 GFLOPS

86470 MB/s

252.7 GIOPS

252.7 GIOPS

96.22 GIOPS

AMD Ryzen 5 4500

806 GFLOPS

402.6 GFLOPS

56578 MB/s

201.5 GIOPS

201.3 GIOPS

50.35 GIOPS

AMD Ryzen 5 5600

853.2 GFLOPS

426.2 GFLOPS

107839 MB/s

675.8 GIOPS

679.6 GIOPS

53.38 GIOPS

AMD Ryzen 7 5700X

1158 GFLOPS

577.9 GFLOPS

137459 MB/s

919.1 GIOPS

912.9 GIOPS

74.38 GIOPS

AMD Ryzen 7 7700X

1392 GFLOPS

694.6 GFLOPS

192730 MB/s

1205 GIOPS

1205 GIOPS

602.4 GIOPS

AMD Ryzen 5 7600X

1046 GFLOPS

523.1 GFLOPS

147661 MB/s

912.5 GIOPS

912.5 GIOPS

456.4 GIOPS

 

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