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Intel Core i7-13700HX vs AMD Ryzen 7 4800U |
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Processor comparisons 13-11-2022 For example you can't decide which CPU to buy, you can make a choice after reading the detailed tests Intel Core i7-13700HX vs AMD Ryzen 7 4800U and decide which is better for games or normal use for streaming, video editing, programming, rendering, machine learning. Here you can find all information from many benchmarks or real video editing and streaming tests. A careful review of all the specifications, so that it can be easier to understand, is made by the table. From the comparison video, you can get the results of joint testing in synthetic type tests such as GeekBench 6, 5.2, Blender, Prime95, PassMark, SuperPi, Furmark, WPrime, MATLAB, VeraCrypt, DaVinci Resolve Studio, Gears 5, Dolphin Emulator, AIDA64, Cinebench 23 (20, 15), PCMark 10, Handbrake, 7zip, UserBenchmark, 3DMark, RealBench, World of Tanks enCore Benchmark, Blender. Gaming performance of processors in: - Call of Duty: Modern Warfare and Warzone
- Valorant
- DOOM: Eternal
- Borderlands 3
- Fallout 76
- Overwatch
- Fortnite
- Watch Dogs Legion
- Red Dead Redemption 2
- Grand Theft Auto V
- Valheim
- Apex Legends
- Cyberpunk 2077
- World of Warcraft: Shadowlands
- Death Stranding
- Last Man Standing
- Rainbow Six Siege
- Assassin's Creed Valhalla
- Halo Infinite
After reading the results of all benchmarks and videos, you already be able to understand which processor is better to buy for gaming AMD Ryzen 7 4800U or Intel Core i7-13700HX.
Summary benchmark resultsAs a percentage of the maximum value based on a sample from the entire base of all processors Processor Benchmark
Core i7-13700HX | 61% |
Ryzen 7 4800U | 55% | This parameter shows the performance of the processors in single-threaded and multi-threaded mode. In this comparison, Core i7-13700HX is 9% better than Ryzen 7 4800U. The data source is several popular tests. Detailed information can be found below.
Gaming performance Summary result of all game benchmarks.Core i7-13700HX | 59% |
Ryzen 7 4800U | 54% | The maximum result in this parameter is 100 percent, which is the performance of the most powerful processor currently available. And it is clear that this is a server processor, on which no one will run games. Because this processor costs several tens of thousands of dollars. Therefore, if you think that the selected CPU has a little game result, just look at the FPS that it produces in real games in the final table below. List of other games in which CPU comparisons were performed: NBA 2K20, Counter-Strike: Global Offensive (CS GO), Microsoft Flight Simulator, DOTA 2A, PlayerUnknown's Battlegrounds (PUBG), The Witcher 3: Wild Hunt, League of Legends (LOL), Horizon Zero Dawn, Control, Half-Life: Alyx, Ghostrunner, Monster Hunter World, Battlefield V, Resident Evil 7 Biohazard, Metro Exodus, Forza Horizon 4, Shadow of the Tomb Raider, Hitman 3.
Gaming benchmarkFortnite | 105.4 | 95.6 | Valorant | 119.7 | 108.6 | Cyberpunk 2077 | 67.0 | 60.8 | Apex Legends | 112.5 | 102.1 | Call of Duty Warzone | 89.8 | 81.5 | Overwatch | 97.0 | 88.0 | Red Dead Redemption 2 | 82.6 | 75.0 | DOOM Eternal | 59.9 | 54.3 | Warzone | 93.4 | 84.7 | Assassin's Creed | 100.6 | 91.3 | Valheim | 99.4 | 90.2 | The numbers in this table indicate the maximum FPS that was received on the device with the corresponding processor. Depending on the configuration of the computer (RAM size and Video Card) and graphics quality settings (Ultra, Medium, Normal), the results may differ quite significantly. We recommend that you better study the results of the Cinebench, GeekBench and Passmark becnmarks. The tested computers not only did they have different video cards and different amounts of RAM. But users also tested them at different screen resolutions: FullHD, 2K or 4K. So the game benchmark data is approximate. But all video cards met the average system requirements of games. To be sure exactly how much performance the processor will be in games, if you compare it in one assembly with the video card that is installed in your computer.
Power consumption
Core i7-13700HX | 140% |
Ryzen 7 4800U | 260% | To make a finishing resolution on which processor is better, you should also consider the generation of its core. It is clear that the newer the generation, the better the performance of the processor in games and benchmarks, as well as its energy efficiency. In this case the Ryzen 7 4800U is more energy efficient than the Core i7-13700HX as it consumes less power: 55W vs. 15W. Power consumption is especially important for laptops. Also, when choosing a processor cooling system, it will be useful to know its TDP. You need to buy a cooler that has the TDP data specified in the specification was greater than the TDP of the compared processor.
Software benchmarksFor example you want to use the processor not only for gaming, but also for video rendering or video editing, machine learning, programming, streaming, then first of all you need to pay attention to the performance in multi-threaded mode. In this mode, to reach maximum efficiency, the processor uses all cores and threads that it has. You will learn this data from the benchmark tables below. Before using the data from these tests, be sure to make sure that the software that you are going to use on your computer can work in multi-threaded mode. Since there are still many programs that use only one core to work, and all the benefit of multi-core mode are unused. Cinebench 23, 20 an 15 The results of this benchmark show Single-threaded and Multi-threaded CPU performance | Intel Core i7-13700HX |
AMD Ryzen 7 4800U | Cinbench 15 Single-core | 351 | 197 | Cinbench 15 Multi-core | 3488 | 1712 | Cinbench 20 Single-core | 572 | 472 | Cinbench 20 Multi-core | 7728 | 3847 | Cinbench 23 Single-core | 1971 | 1235 | Cinbench 23 Multi-core | 22196 | 10156 |
Passmark This popular benchmark displays Multi-threaded and Single-threaded processor performance | Intel Core i7-13700HX |
AMD Ryzen 7 4800U | Single-Core | 1803 | 2579 | Multi-Core | 37816 | 17366 |
GeekBench 6, 5.2 This benchmark shows Multi-threaded and Single-threaded processor performance | Intel Core i7-13700HX |
AMD Ryzen 7 4800U | Single-Core | 2313 | 1170 | Multi-Core | 17022 | 7449 |
Comparison of specifications
In the specification comparison table, the processor release date and overclocking capability will be the most useful. The later the processor is released, the longer it will last you. And the easier it will be to upgrade the system in the future. The same benefits from the presence of overclocking. If the processor can be overclocked, thereby increasing its performance, then it will continue to maintain maximum FPS even in new games. The savings are obvious! Accordingly, there is no longer a need to buy a new CPU to enjoy the games any longer.
| Intel Core i7-13700HX |
AMD Ryzen 7 4800U | Announcement date | November 12, 2022 | April 01, 2020 | Type | Laptop | Laptop | Socket | FCBGA1744 | FP6 | Core name | Raptor Lake | Renoir | Architecture | x86 | Zen 2 | Generation | 13 | 2 | Turbo Frequency | 5 MHz | 4.2 MHz | Frequency | 2.6 MHz | 1.8 MHz | Cores | 16 | 8 | Threads | 24 | 16 | Bus rate | 16 GT/s | | Bit | 64 | 64 | Lithography | 7 nm | | Transistors count | 14200 millions | 5400 millions | Power consumption (TDP) | 55 W | 15 W | Memory type | Up to DDR5 5600 MT/s Up to DDR4 3200 MT/s | | Max. Memory | 128 Gb | | Memory Frequency | 6500 | | Memory bandwidth | 89.6 GB/s | | L1 cache | 2 MB | | L2 cache | 8 MB | | L3 cache | 30 MB | | Overclocking | No | No | Supports ECC | Yes | No | Part number | | | In this comparison block, you should pay attention to the differences in clock speed and the number of cores. Here Core i7-13700HX is 30% better than Ryzen 7 4800U in terms of CPU frequency. Another difference is that Core i7-13700HX has 8 more core than Ryzen 7 4800U. Also keep in mind that high CPU frequency affects battery life through power consumption (relevant for laptops).
Result:
The number of parameters for which Intel Core i7-13700HX is better: 35
The number of parameters for which AMD Ryzen 7 4800U is better: 3 Although it should be realized that all the number that you have looked at here do not mean that taking them into account you should totally trust a simple comparison of these figures. Better to watch the testing video and read the opinion of of people who bought Intel Core i7-13700HX and AMD Ryzen 7 4800U before deciding which processor to buy for gaming and which not.
Intel Core i7-13700HX Processor Comparisons • Vs Core i7-12850HX • Vs EPYC 7313P • Vs Xeon Gold 6248R • Vs EPYC 7313 • Vs Ryzen 9 3950X • Vs Xeon W-3275M • Vs Ryzen 9 5900X • Vs Apple M2 Pro • Vs EPYC 7343 • Vs Ryzen Threadripper PRO 3955WX • Vs EPYC 73F3 • Vs EPYC 7272 • Vs Apple M2 Max • Vs Core i5-13500 • Vs Core i7-12700KF • Vs Core i7-12700K • Vs Core i5-13600 • Vs EPYC 7452 • Vs EPYC 7413 • Vs Ryzen 9 5950X • Vs Ryzen 5 7600X • Vs EPYC 7443 • Vs EPYC 7453 • Vs EPYC 7443P • Vs Core i9-12900TE • Vs Core i9-12900E • Vs Core i9-12900T • Vs EPYC 74F3 • Vs Ryzen 7 7700X • Vs Core i9-12900 • Vs Core i5-12600KF • Vs Core i5-12600K • Vs Core i7-12800H • Vs Core i5-13400 • Vs Xeon Gold 6242R • Vs Ryzen 9 PRO 6950H • Vs Ryzen Threadripper PRO 3945WX • Vs Ryzen 9 5900 • Vs Apple M1 Max • Vs EPYC 72F3 • Vs Core i7-12800HL • Vs Ryzen 9 PRO 6950HS • Vs Xeon Platinum 8260M • Vs Core i9-10980XE • Vs Core i7-12700HL • Vs Ryzen 7 PRO 6850H • Vs Ryzen 9 5800X • Vs Ryzen 9 3900XT • Vs Ryzen 7 PRO 6850HS • Vs Ryzen 9 3900X • Vs Core i7-12700 • Vs Ryzen 9 5800 • Vs Apple M1 Pro • Vs Core i7-12700E • Vs Core i7-12650HX • Vs Ryzen Threadripper 2990WX • Vs Core i7-12700F • Vs Core i9-9980XE • Vs Xeon W-3175X • Vs Core i9-9990XE • Vs Core i9-12900HX • Vs Core i5-12600H • Vs Ryzen 9 6900HX • Vs Ryzen 7 PRO 6850U • Vs Ryzen 5 PRO 6650HS • Vs Ryzen 9 6900HS • Vs Core i9-12900HK • Vs Core i9-12900H • Vs Ryzen 9 6980HX • Vs Ryzen 5 PRO 6650U • Vs Core i7-12700H • Vs Core i9-11980HK • Vs Ryzen 7 6800H • Vs Core i7-12650H • Vs Core i9-12950HX • Vs Ryzen 9 6980HS • Vs Ryzen 7 6800HS • Vs Ryzen 5 PRO 6650H • Vs Core i9-11950H • Vs Ryzen 9 5980HX • Vs Ryzen 7 Pro 5850U • Vs Ryzen 7 5800HS • Vs Ryzen 7 4800HS • Vs Ryzen 9 4900U • Vs Ryzen 7 5825U • Vs Core i5-12450HX • Vs Ryzen 9 5980HS • Vs Ryzen 7 PRO 5875U • Vs Ryzen 9 4900HS • Vs Ryzen 7 5700U • Vs Ryzen 5 6600U • Vs Ryzen 9 4900H • Vs Core i5-1250P • Vs Ryzen 9 5900HX • Vs Ryzen 7 5800H • Vs Ryzen 5 5600H • Vs Core i5-12450H • Vs Ryzen 5 6600HS • Vs Ryzen 5 6600H • Vs Ryzen 7 6800U • Vs Ryzen 5 PRO 5675U • Vs Core i5-12500H • Vs Ryzen 7 4800H • Vs Ryzen 9 5900HS • Vs Core i7-1270P • Vs Core i5-1155G7 • Vs Core i7-1260P • Vs Ryzen 7 5800 • Vs Core i5-12600HX • Vs Core i7-11850H • Vs Ryzen 7 Extreme Edition • Vs Core i7-1280P • Vs Ryzen 7 5800U • Vs Core i7-13700H • Vs Core i9-13900HK • Vs Core i9-13900HX • Vs Core i5-13600HX • Vs Core i9-13950HX • Vs Core i7-1360P • Vs Core i5-1350P • Vs Core i5-1340P • Vs Core i5-13500HX • Vs Core i9-13980HX • Vs Core i9-13900T • Vs Core i5-13600H • Vs Core i5-13500H • Vs Core i5-13505H • Vs Core i5-1335U • Vs Core i5-1334U • Vs Core i5-13420H • Vs Core i5-13450HX • Vs Core i7-1355U • Vs Core i7-1365U • Vs Core i3-1315U • Vs Core i3-1305U • Vs Core i7-1370P • Vs Core i7-13620H • Vs Core i7-13650HX • Vs Core i7-13705H • Vs Core i7-13800H • Vs Core i7-13850HX • Vs Core i9-13900H • Vs Core i9-13905H
AMD Ryzen 7 4800U Processor Comparisons • Vs Core i5-11400T • Vs Ryzen 7 2700X • Vs Ryzen 5 3600 • Vs Ryzen 5 5600H • Vs Core i7-10700 • Vs Core i5-11500T • Vs Ryzen 5 PRO 3600 • Vs Core i5-11600T • Vs Ryzen 7 Extreme Edition • Vs Core i7-9800X • Vs Xeon W-1290T • Vs Ryzen 5 3600X • Vs Xeon E5-2697R v4 • Vs Xeon E5-2680R v4 • Vs Core i5-11400F • Vs Core i9-9900K • Vs Ryzen 5 3600XT • Vs Core i9-9900KF • Vs Core i5-11400 • Vs Ryzen 7 4800HS • Vs Ryzen 7 4800H • Vs Ryzen 9 4900H • Vs Core i5-11500 • Vs Core i7-7900X • Vs Core i7-10700K • Vs Core i9-9900KS • Vs Core i7-10700KF • Vs Core i5-11600 • Vs Ryzen 9 4900HS • Vs Ryzen 7 4700G • Vs Core i7-7820X • Vs Core i7-10700F • Vs Core i7-11800H • Vs Core i9-10900T • Vs Core i7-10870H • Vs Core i7-10875H • Vs Ryzen 7 2700 • Vs Ryzen 5 5600HS • Vs Ryzen 5 4600H • Vs Ryzen 5 PRO 4400GE • Vs Ryzen 5 5600U • Vs Core i5-10600K • Vs Ryzen 7 1700 • Vs Core i7-9700K • Vs Ryzen 5 4600HS • Vs Ryzen 5 5500U • Vs Xeon W-2235 • Vs Ryzen 5 2600X • Vs Core i5-10600 • Vs Core i7-8700K • Vs Ryzen 5 4600U • Vs Ryzen 7 4700U • Vs Ryzen 5 PRO 2600 • Vs Ryzen 5 2600E • Vs Core i7-9700 • Vs Ryzen 5 3500X • Vs Core i5-10500 • Vs Ryzen 5 2600 • Vs Core i7-10700T • Vs Core i7-8700 • Vs Core i7-6950X • Vs Ryzen Threadripper 1900X • Vs Core i9-9900 • Vs Ryzen 7 PRO 2700X • Vs Core i9-10980HK • Vs Ryzen 5 PRO 4650G • Vs Core i9-10885H • Vs Ryzen 5 PRO 4400G • Vs Core i9-10880H • Vs Ryzen 7 1800X • Vs Core i5-10600KF • Vs Ryzen 5 PRO 4650GE • Vs Core i7-9700KF • Vs Ryzen 5 4600GE • Vs Ryzen 7 PRO 1700X • Vs Core i7-8086K • Vs Ryzen 7 PRO 4750U • Vs Ryzen 7 PRO 2700 • Vs Ryzen 7 1700X • Vs Core i9-10900TE • Vs Core i9-10900E • Vs Core i5-11320H • Vs Core i5-11400H • Vs Xeon W-11855M • Vs Core i7-12700H • Vs Core i3-1210U • Vs Core i3-1220P • Vs Ryzen 5 PRO 5675U • Vs Ryzen 3 PRO 5475U • Vs Ryzen 5 PRO 5650GE • Vs Core i7-1265UE • Vs Core i7-1255UL • Vs Core i5-1235UL • Vs Core i5-1245UL • Vs Core i5-1245UE • Vs Core i3-1215UL • Vs Core i3-1215UE • Vs Core i3-1220PE • Vs Core i3-N305 • Vs Core i3-N300 • Vs Apple M2 • Vs Core i7-13700H • Vs Core i9-13900HX • Vs Core i5-13600HX • Vs Core i7-1360P • Vs Core i5-1350P • Vs Core i5-1340P • Vs Core i5-13500HX • Vs Core i9-13980HX • Vs Core i9-13900F • Vs Core i5-13600H • Vs Core i5-13500H • Vs Core i5-13505H • Vs Core i5-1335U • Vs Core i5-1334U • Vs Core i5-13420H • Vs Core i5-13450HX • Vs Core i7-1355U • Vs Core i7-1365U • Vs Core i3-1315U • Vs Core i3-1305U • Vs Core i7-1370P • Vs Core i7-13650HX • Vs Core i7-13800H • Vs Core i7-13850HX • Vs Ryzen 5 5625C • Vs Ryzen 7 5825C • Vs Ryzen 7 3700C • Vs Ryzen 7 3750H • Vs Ryzen 5 3500C • Vs Ryzen 7 7745HX • Vs Ryzen 5 7645HX • Vs Ryzen 9 7940HS • Vs Ryzen 5 7640HS • Vs Ryzen 5 7535HS • Vs Ryzen 7 7735U • Vs Ryzen 5 7535U • Vs Ryzen 3 7330U • Vs Ryzen 7 PRO 6860Z
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