CPUに当たり外れがあるって本当?(ゆっくり解説)

Just as there are winners and losers in lotteries, there are also winners and losers in semiconductors like CPUs. In this video, we explain the individual differences and wins and loses in semiconductor components, and the underlying concept of yield. The voltage-frequency curve for the Ryzen 7 5800X is based on data from an actual device. Note: The thumbnail image uses an i9 and an i3 for clarity, but it may not be strictly accurate. (There are also "winning" i3s that run at high clock speeds.) ■Video Content 0:00 Introduction 0:23 What is Yield (Rate)? 2:18 The Relationship between Die Size and Yield 3:21 How to Improve Yield 6:05 Semiconductor Selection and Winning/Losing 8:36 Winning and Losing 11:00 How to Obtain Winning Stones 11:45 Aside: Is Poor Yield the Cause of Tragedy? 13:02 Conclusion ■Reference Sites ・Silicon Lottery (English)  https://siliconlottery.com/ ・Silicon Lottery - Historical Binning Statistics (English)  https://siliconlottery.com/pages/stat... ・Why Did NVIDIA's GeForce GTX 480 Reduce Its Processor Count?  Goto Hiroshige's Weekly Overseas News - ASCII  https://pc.watch.impress.co.jp/docs/c... ・GPU Dark History: The GeForce GTX 480: A Bad Game Resulting from Delays to DX11  Understanding the Current Processor Situation through Roadmaps! - ASCII  https://ascii.jp/elem/000/000/684/684... ■Recommended Videos ・What is Memory Timing? (Slow and easy explanation)    • メモリタイミングとは?(ゆっくり解説)   Is single-channel memory really bad? (Slow and easy explanation)    • メモリのシングルチャネルは本当にダメなのか?(ゆっくり解説)  

Why did Intel choose a hybrid CPU? Explaining the mystery (slow explanation)
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Why did Intel choose a hybrid CPU? Explaining the mystery (slow explanation)

もはや無敵?16コアCPU、Ryzen 9 5950Xをテスト!(ゆっくり解説)
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もはや無敵?16コアCPU、Ryzen 9 5950Xをテスト!(ゆっくり解説)

まさかの50super再開発!?ミドルハイエンドの成長がヤバい! #nvidia #pc
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まさかの50super再開発!?ミドルハイエンドの成長がヤバい! #nvidia #pc

AMDの幻のARM系アーキテクチャ「K12」とは何か?(ゆっくり解説)
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AMDの幻のARM系アーキテクチャ「K12」とは何か?(ゆっくり解説)

かつて省電力CPUで有名になった「Transmeta」とは一体何物か?(ゆっくり解説)
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かつて省電力CPUで有名になった「Transmeta」とは一体何物か?(ゆっくり解説)

Der Sport ist das Letzte, was im Weg ist – Bolz & Mannhart
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Der Sport ist das Letzte, was im Weg ist – Bolz & Mannhart

Core i9終了のお知らせ?Ryzen 7 5800Xをテスト!(ゆっくり解説)
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Core i9終了のお知らせ?Ryzen 7 5800Xをテスト!(ゆっくり解説)

【検証】当時80万のグラボでゲームはできるのか...?【ゆっくり実況】
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【検証】当時80万のグラボでゲームはできるのか...?【ゆっくり実況】

2020年末最新版【超初心者向け自作PC】自作ゲーミングPCの作り方【パーツの解説と選び方編】
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2020年末最新版【超初心者向け自作PC】自作ゲーミングPCの作り方【パーツの解説と選び方編】

初心者向け自作PC組み立てHow to動画【簡易水冷CPUクーラー編】
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初心者向け自作PC組み立てHow to動画【簡易水冷CPUクーラー編】

世界最強「空冷CPUクーラー」で爆熱なCore i9 10900Kは冷やせるのか?【Deepcool Assassin III】
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世界最強「空冷CPUクーラー」で爆熱なCore i9 10900Kは冷やせるのか?【Deepcool Assassin III】

Does increasing the number of CPU cores improve performance? (Slow explanation)
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Does increasing the number of CPU cores improve performance? (Slow explanation)

The root of all evil? The many problems caused by 32-bit... (A slow explanation)
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The root of all evil? The many problems caused by 32-bit... (A slow explanation)

[CPU History] Part 2: From Core's dominance to its current state of flux? Formidable competitors ...
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[CPU History] Part 2: From Core's dominance to its current state of flux? Formidable competitors ...

XeonとはどんなCPUなのか?解説&動作検証(ゆっくり解説)
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XeonとはどんなCPUなのか?解説&動作検証(ゆっくり解説)

過去にあったPCパーツの設計ミス・不便な仕様・スペック詐欺疑惑などを紹介(ゆっくり解説)
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過去にあったPCパーツの設計ミス・不便な仕様・スペック詐欺疑惑などを紹介(ゆっくり解説)

Is it true that recent Celeron processors are usable? We tested the Celeron G5905 (slow explanation)
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Is it true that recent Celeron processors are usable? We tested the Celeron G5905 (slow explanation)

No matter how many universes there are, it's still not enough!? Introducing "googoo numbers" (slo...
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No matter how many universes there are, it's still not enough!? Introducing "googoo numbers" (slo...

なぜAMDはインテルの互換CPUを作れるのか?【ゆっくり解説】
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なぜAMDはインテルの互換CPUを作れるのか?【ゆっくり解説】

当時総額70万円!?数年前のウルトラロマンPCを再現してみた。後編【なんとRTXに...?】
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当時総額70万円!?数年前のウルトラロマンPCを再現してみた。後編【なんとRTXに...?】