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萩原良昭(76歳)個人活動の紹介です
( 2024年8月26日(月) 8:00 a.m. 現在 )
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日本の産業のコメとして戦略的に重要な半導体電子部品の基本知識
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(0)はじめに
(1)金属と絶縁体の違い
(2)半導体の基本特性
(3)single接合型のダイオードの整流特性
(4)double 接合型バイポーラトランジスタの電流増幅特性
(5)triple 接合型サイリスター型の理想的な高速Switch動作特性
(6)MOS型のトランジスタの電流増幅特性
(7)CMOS型インバータ回路の省エネ特性
(8)超光感度のCMOS型イメージセンサーの特性
(9)P+PNPP+接合の double接合型の新型太陽電池の構造とその動作原理
イメージセンサーと太陽電池の動作原理_萩原良昭.html
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従来のシングル接合型電池の構造と動作原理.pdf
ダブル接合型Pinned Photodiode型太陽電池の構造と動作原理.pdf
Conventional_Single_Single_Junction_type_and_Double_Junction_Pinned_Photodiode_type_Solar_Cells.pdf
Pinned_Photodiode_type_Solar_Cellの構造解析_C言語プログラムと数値計算結果.pdf
Smart_AI_Robot_Vision_Image_Sensor_also_works_as_Solar_Cell.pdf
P+PNN-PP+_Double_Junction_Pinned_Photodiode_type_Solar_Cell_空乏層近似による数値計算の解析結果.pdf
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2024_02_01_半導体とは?萩原良昭.pdf
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INDEX(003)
新型の太陽電池構造の「公開原理試作の実現」の為の活動応援資金募集のご案内説明資料です.html
Pinned_Photodiode_type_Solar_Cell_defined_in_JPA2020_131313_by_Yoshiaki_Hagiwara.pdf
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2024_02_28_Pinned_Photodiode_type_Solar_Cell.pdf
2023_10_21_Pinned_Photodiode型太陽電池の提案_萩原良昭.pdf
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Pinned_Photodiode_Double_Junction_type_Solar_Cell_JPA2020_131313_Tutorial_Slides_by_Yoshiaki_Hagiwara.pdf
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Difference_of_Pinned_Photodiode_and_Buried_Photodiode.pdf
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2023_10_15_Double_Junction_type_Solar_Cell_Yoshiaki_Hagiwara_1.pdf
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2023_10_15_Double_Junction_type_Solar_Cell_Yoshiaki_Hagiwara_2.pdf
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2023_10_11_Thin-Film_Schottky_Barrier_type_Solar_Cell_Yoshiaki_Hagiwara_C.pdf
2023_10_02_Pinned_Photodiode_type_Solar_Cell_by_Yoshiaki_Hagiwara_AIPS_2020_10_02.pdf
2020_10_01_Pinned_Photodiode_type_Solar_Cell_by_Yoshiaki_Hagiwara_AIPS_A.pdf
2020_10_01_Pinned_Photodiode_type_Solar_Cell_by_Yoshiaki_Hagiwara_AIPS_B.pdf
2020_08_01_Pinned_Photodiode_type_Solar_Cell_by_Yoshiaki_Hagiwara_AIPS.pdf
Pinned_Photodiode_type_Solar_Cell_by_Yoshiaki_Hagiwara_AIPS_A.pdf
2023_10_01_Pinned_Photodiode_type_Solar_Cell_see_JPA2020_131313_Yoshiaki_Hagiwara.pdf
Yoshiaki Daimon Hagiwara,
President,
Artificial Intelligent Partner Systems (AIPS) consortium
Publication_List_by_Yoshiaki_Hagiwara.html
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Return to Top Home Page of Yoshiaki Hagiwara (AIPS)
http://www.aiplab.com
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