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商品コード MM09138074895S
出版日 2024/3/18
MarketsandMarkets
英文232 ページグローバル

人工衛星用太陽電池材料市場 - 材料タイプ別、用途別、軌道別、地域別:世界市場規模・市場予測レポート(〜2030年)

Satellite Solar Cell Materials Market by Material Type (Silicon, Copper Indium Gallium Selenide (CIGS), Gallium Arsenide (GaAs)), Application (Satellite, Rovers, Space Stations), Orbit (LEO, MEO, GEO, HEO, Polar Orbit), & Region - Global Forecast to 2030


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商品コード MM09138074895S◆2025年3月版も出版されている時期ですので、お問い合わせ後すぐに確認いたします。
出版日 2024/3/18
MarketsandMarkets
英文 232 ページグローバル

人工衛星用太陽電池材料市場 - 材料タイプ別、用途別、軌道別、地域別:世界市場規模・市場予測レポート(〜2030年)

Satellite Solar Cell Materials Market by Material Type (Silicon, Copper Indium Gallium Selenide (CIGS), Gallium Arsenide (GaAs)), Application (Satellite, Rovers, Space Stations), Orbit (LEO, MEO, GEO, HEO, Polar Orbit), & Region - Global Forecast to 2030



全体要約

人工衛星用太陽電池材料市場は2024年に4400万XX米ドルから2030年までに9600万XX米ドルに達すると予測されており、 CAGRは13.7%です。最も成長が著しいのはガリウムヒ素(GaAs)セグメントで、これは高い効率と放射線耐性を誇り、宇宙環境に適しているためです。また、ガリウムヒ素ソーラーセルは高温環境でも安定した性能を示し、限られたペイロードの中でより多くの電力を生成できます。さらに、宇宙ステーション用途も2024年において市場シェアの2番目に大きいカテゴリーで、科学研究や技術進歩のための安定した電力供給が求められています。

また、低軌道(LEO)における人工衛星用太陽電池材料市場は、CAGRが13.9%と急成長を遂げています。これは通信や地球観測などの目的のために、軽量で信頼性の高いソーラーセルの需要が高まっているためです。アジア太平洋地域は、2024年には市場が最も成長する地域となり、中国やインド、日本の宇宙プログラムが需要を牽引しています。市場の主要企業には、SPECTROLAB、AZUR SPACE Solar Power GmbH、ROCKET LAB USAなどが含まれています。

関連する質問

9600万USD(2030年)

13.7%(2024年から2030年)

SPECTROLAB, AZUR SPACE Solar Power GmbH, ROCKET LAB USA, Sharp Corporation, CESI S.p.A, Thales Alenia Space, AIRBUS, MicroLink Devices, Inc., Mitsubishi Electric Corporation, Northrop Grumman

宇宙探査と人工衛星展開の増加, 高効率ガリウム亜arsenide(GaAs)太陽電池の需要, 小型衛星プラットフォームの発展


概要

衛星用太陽電池材料市場は、2024年の4400万米ドルから2030年までに9600万米ドルに達する見込みで、年平均成長率(CAGR)は13.7%です。ガリウムひ素(GaAs)セグメントは、宇宙アプリケーションに最適な特性の独自の組み合わせにより、衛星用太陽電池材料市場で最も成長が速いカテゴリーです。GaAs太陽電池は、従来のシリコンベースのセルよりも高い効率と優れた放射線耐性を持ち、過酷な宇宙環境での衛星の電力供給に最適です。優れた性能により、衛星は小型で軽量な太陽光パネルを使用してより多くの電力を生み出すことができ、制限されたペイロード能力のミッションにとって重要です。さらに、GaAs太陽電池は高温環境での優れた性能を示しており、長期間の太陽光照射にさらされた後でも安定した運用を保証します。衛星技術が進歩し、より高い効率と信頼性が求められる中、GaAs太陽電池はその優れた性能特性からますます好まれ、セグメントの大幅な成長を促進しています。加えて、GaAs太陽電池の効率をさらに改善し、製造コストを削減することを目指した研究開発の取り組みが、衛星用太陽電池材料市場におけるセグメントの急成長を持続させると期待されています。
「用途別に見ると、宇宙ステーションは2024年において2番目に大きな市場シェアを占めます。」
宇宙ステーション用の衛星用太陽電池材料市場は、重要な側面により急速に拡大しています。まず、国際宇宙ステーション(ISS)などの宇宙ステーションの利用が増加することに伴い、信頼性が高く効率的な発電システムの需要が高まっています。宇宙ステーションは、機器や実験を継続的に運営するために太陽電池からの電力を必要としています。さらに、有人ミッションの増加や新たな軌道プラットフォームの構築を含む宇宙ステーション技術の進展が、変化する電力要件を満たすためのより高度で能力のある太陽電池材料への需要を引き起こしています。加えて、宇宙活動の商業化の進展や民間の宇宙ステーション、住居の開発が、このセグメントにおける太陽電池の需要をさらに押し上げています。その結果、宇宙研究、技術開発、宇宙探査の努力における宇宙ステーションの任務の範囲の拡大と重要性の増加により、宇宙ステーション用市場における衛星用太陽電池材料の重要な成長が見られています。
LEOは、予測期間中に、価値の面で衛星ソーラーセル材料市場でCAGR 13.9%で最も急速に成長すると期待されています。
低軌道(LEO)セクターにおける衛星用太陽電池材料の市場は、いくつかの重要な理由から最も急速に拡大しています。まず、通信、地球観測、リモートセンシングなどのさまざまな目的での低軌道における衛星コンステレーションの拡大に伴い、太陽電池の需要が大きくなっています。これらのコンステレーションでは、複数の衛星が近接して運用されるため、宇宙機の総質量を最小限に抑えつつ、電力要件を満たすために軽量で信頼性が高く効率的な太陽電池が求められています。さらに、小型衛星プラットフォームの開発や衛星の小型化の進展により、LEOでの展開が増加し、小型衛星設計に特化した太陽電池の必要性が高まっています。また、宇宙研究における持続可能性や再生可能エネルギー源への関心の高まりにより、低軌道(LEO)ミッションにおいて太陽光発電の利用が広がっています。
「地域に基づくと、アジア太平洋は2024年における衛星用ソーラーセル材料市場で最も成長が早い市場でした。」
アジア太平洋地域では、重要な要因により、衛星ソーラーセル材料の市場が最も迅速に拡大しています。まず、地域の急速な経済成長と技術革新の結果、宇宙研究および衛星技術開発への投資が急増しています。通信、ナビゲーション、地球観測、科学研究のための衛星展開を中心とする中国、インド、日本などの国々の野心的な宇宙プログラムは、ソーラーセル材料に対する大きな需要を生み出しています。さらに、アジア太平洋地域には衛星の開発と設置を専門とする企業が多数存在し、これによりソーラーセルの需要が高まっています。また、地域の有利な法的枠組みや衛星開発や宇宙研究を支援する政府のプログラムが、市場拡大にとって有利な環境を作り出しています。
いくつかのセグメントおよびサブセグメントの市場規模を特定し確認する過程で、広範な一次インタビューが行われました。一次インタビューの参加者のプロフィールの内訳は以下の通りです:
• 会社タイプ別:Tier 1 - 40%、Tier 2 - 30%、Tier 3 - 30%
• 役職別:Cレベル - 20%、ディレクターレベル - 10%、その他 - 70%
地域別:北米 - 30%、ヨーロッパ - 30%、アジア太平洋 - 20%、中東およびアフリカ - 10%、南米 - 10%
この市場の主要なプレーヤーは、SPECTROLAB(アメリカ)、AZUR SPACE Solar Power GmbH(ドイツ)、ROCKET LAB USA(アメリカ)、シャープ株式会社(日本)、CESI S.p.A(ミラノ)、タレス・アレーニア・スペース(フランス)、エアバス(フランス)、マイクロリンク・デバイセズ(アメリカ)、三菱電機株式会社(日本)、ノースロップ・グラマン(アメリカ)などです。
調査範囲
この報告書は、衛星ソーラーセル材料市場を材料タイプ、用途、軌道、地域に基づいてセグメント化しています。また、さまざまな地域における市場の総価値の推定を提供します。主要な業界プレーヤーの詳細な分析が行われ、彼らのビジネス概要、製品・サービス、主要戦略、新製品の発売、拡張、および衛星ソーラーセル材料市場に関連する合併・買収についての洞察が提供されています。
このレポートを購入する主なメリット
この調査報告書は、産業分析(産業トレンド)、主要プレイヤーの市場ランキング分析、企業プロフィールなど、さまざまな分析レベルに焦点を当てています。これらは、衛星ソーラーセル材料市場の競争環境、新興および高成長セグメント、高成長地域、そして市場のドライバー、制約、機会、課題に対する全体的な視点を提供します。
レポートは以下のポイントに関する洞察を提供します:
• 主要ドライバーの分析: 宇宙探査と衛星の展開の増加。
・マーケット浸透:世界の衛星用太陽電池材料市場の主要プレーヤーが提供する衛星用太陽電池材料に関する包括的な情報。
• 製品開発/革新:新しい技術、研究開発活動、及び衛星太陽電池材料市場における新製品の発売に関する詳細な洞察。
市場開発:有望な新興市場に関する包括的な情報 - レポートは、地域ごとの衛星ソーラーセル材料市場を分析しています。
市場の多様化:新製品、未開拓地域、そしてグローバルな衛星太陽電池材料市場における最近の動向に関する包括的な情報。
• 競争評価:衛星太陽電池材料市場における主要プレーヤーの市場シェア、戦略、製品、および製造能力の詳細な評価です。

※以下の目次にて、具体的なレポートの構成をご覧頂けます。ご購入、無料サンプルご請求、その他お問い合わせは、ページ上のボタンよりお進みください。

目次

  • 1 イントロダクション 28

    • 1.1 調査の目的 28
    • 1.2 市場の定義 28
    • 1.3 包含・除外事項 29
    • 1.4 市場範囲 29
      • 1.4.1 対象地域 30
      • 1.4.2 対象年 30
    • 1.5 通貨 31
    • 1.6 対象の単位 31
    • 1.7 制約 31
    • 1.8 ステークホルダー 31
  • 2 調査手法 32

    • 2.1 リサーチデータ 32
      • 2.1.1 二次データ 33
        • 2.1.1.1 二次情報の主要データ 33
      • 2.1.2 一次データ 33
        • 2.1.2.1 一次データソース 34
        • 2.1.2.2 人工衛星用太陽電池材料の主要メーカー 34
        • 2.1.2.3 専門家インタビューの内訳 35
        • 2.1.2.4 業界についての主な考察 35
    • 2.2 ベース数値計算 36
      • 2.2.1 アプローチ<num1>:供給サイド分析 36
      • 2.2.2 アプローチ<num1>:需要サイド分析 36
    • 2.3 予測数値算出 36
      • 2.3.1 供給サイド 36
      • 2.3.2 需要サイド 37
    • 2.4 市場規模予測 37
      • 2.4.1 ボトムアップアプローチ 38
      • 2.4.2 トップダウンアプローチ 38
    • 2.5 データのトライアンギュレーション 39
    • 2.6 前提 40
    • 2.7 リセッション時のインパクト 40
    • 2.8 成長予測 41
    • 2.9 リスク評価 41
  • 3 エグゼクティブサマリー 42

  • 4 更なる考察 47

    • 4.1 人工衛星用太陽電池材料市場プレイヤーにとって魅力的な事業機会 47
    • 4.2 人工衛星用太陽電池材料の市場、材料タイプ別 47
    • 4.3 人工衛星用太陽電池材料の市場、用途別 48
    • 4.4 人工衛星用太陽電池材料の市場、軌道別 48
    • 4.5 人工衛星用太陽電池材料の市場、国別 49
  • 5 市場概要 50

    • 5.1 イントロダクション 50
    • 5.2 市場ダイナミクス 50
      • 5.2.1 促進要因 51
        • 5.2.1.1 高まる宇宙探査と衛星配備 51
        • 5.2.1.2 太陽電池効率の技術的進歩 51
        • 5.2.1.3 政府による支援と投資 52
      • 5.2.2 抑制要因 53
        • 5.2.2.1 太陽電池の重量とサイズの制限 53
        • 5.2.2.2 厳しい規制とコンプライアンス基準 53
      • 5.2.3 市場機会 54
        • 5.2.3.1 宇宙基盤インフラへの投資の増加 54
        • 5.2.3.2 持続可能なエネルギー源に対する需要の高まり 54
      • 5.2.4 課題 55
        • 5.2.4.1 過酷な宇宙環境と宇宙用太陽電池の限られた供給量 55
        • 5.2.4.2 人工衛星用太陽電池材料の高コスト 56
  • 6 業界トレンド 57

    • 6.1 イントロダクション 57
    • 6.2 顧客ビジネスに影響するトレンド/ディスラプション 57
    • 6.3 価格分析 58
    • 6.4 サプライチェーン分析 60
      • 6.4.1 原材料調達先 61
      • 6.4.2 メーカー 61
      • 6.4.3 流通業者 61
      • 6.4.4 エンドユーザー 61
    • 6.5 エコシステムマッピング 62
    • 6.6 投資ランドスケープ人工衛星用太陽電池材料市場 63
    • 6.7 技術分析 64
    • 6.8 特許分析 66
      • 6.8.1 イントロダクション 66
      • 6.8.2 調査手法 66
      • 6.8.3 ドキュメントタイプ 66
      • 6.8.4 考察 67
      • 6.8.5 特許の状況 67
      • 6.8.6 司法観点の分析 68
      • 6.8.7 トップ企業 / 候補 68
      • 6.8.8 主要な特許リスト 69
    • 6.9 取引分析・貿易分析 73
      • 6.9.1 輸入シナリオ 73
      • 6.9.2 輸出シナリオ 74
    • 6.10 2024-25年の主な会議とイベント 74
      • 6.10.1 規制当局、政府機関、その他組織 75
    • 6.11 ポーターのファイブフォース分析 77
      • 6.11.1 新規参入の脅威 78
      • 6.11.2 代替品の脅威 79
      • 6.11.3 サプライヤーの交渉力 79
      • 6.11.4 買い手の交渉力 79
      • 6.11.5 マクロ経済指標 80
    • 6.12 主なステークホルダーと購入基準 81
      • 6.12.1 購買プロセスにおける主要ステークホルダー 81
      • 6.12.2 購買基準 82
    • 6.13 ケーススタディ 82
  • 7 人工衛星用太陽電池材料の市場、材料タイプ別 85

    • 7.1 イントロダクション 86
    • 7.2 シリコン 88
      • 7.2.1 予測期間中、シリコン・セグメントが市場を支配 88
    • 7.3 銅インジウムガリウムセレン化物(CIGS) 88
      • 7.3.1 高効率レベル、低照度下での卓越した性能を提供 88
    • 7.4 ガリウムヒ素(GaAs) 89
      • 7.4.1 GaAsは予測期間中に最も高い成長を記録 89
    • 7.5 その他材料タイプ 89
      • 7.5.1 リン化インジウムガリウム(インギャップ) 89
      • 7.5.2 ゲルマニウム(GE) 90
  • 8 人工衛星用太陽電池材料の市場、軌道別 91

    • 8.1 イントロダクション 92
    • 8.2 低軌道(LEO) 94
      • 8.2.1 予測期間中、LEOセグメントが最も高いCAGRを記録 94
    • 8.3 中軌道(MEO) 94
    • 8.4 静止軌道(ジオ) 95
      • 8.4.1 GEO衛星用太陽電池アレイに必要な堅牢な材料 95
    • 8.5 高度楕円軌道(heo) 95
      • 8.5.1 Heo衛星に必要な先端材料と技術 95
    • 8.6 極軌道 96
  • 9 人工衛星用太陽電池材料の市場、用途別 97

    • 9.1 イントロダクション 98
    • 9.2 衛星 100
    • 9.3 ルーバーズ 101
    • 9.4 宇宙ステーション 101
      • 9.4.1 宇宙ステーションの運用に不可欠な衛星用ソーラーアレイ 101
    • 9.5 その他の用途 102
  • 10 人工衛星用太陽電池材料の市場、地域別 103

    • 10.1 イントロダクション 104
    • 10.2 アジア太平洋 106
      • 10.2.1 リセッション時のインパクト 107
      • 10.2.2 中国 112
        • 10.2.2.1 宇宙開発への今後の投資が市場の成長を促進 112
      • 10.2.3 日本 113
        • 10.2.3.1 衛星打ち上げの増加で太陽電池の需要が高まる 113
      • 10.2.4 インド 114
      • 10.2.5 韓国 115
      • 10.2.6 その他のアジア太平洋 117
    • 10.3 ヨーロッパ 118
      • 10.3.1 リセッション時のインパクト 119
      • 10.3.2 ドイツ 124
      • 10.3.3 英国 125
        • 10.3.3.1 宇宙ベースの活動に対する政府からの支援の増加が市場を牽引 125
      • 10.3.4 フランス 127
      • 10.3.5 イタリア 128
        • 10.3.5.1 衛星打ち上げ計画が市場を牽引 128
      • 10.3.6 スペイン 129
      • 10.3.7 ロシア 130
      • 10.3.8 その他のヨーロッパ 131
    • 10.4 北米 132
      • 10.4.1 リセッション時のインパクト 133
      • 10.4.2 米国 138
      • 10.4.3 カナダ 139
      • 10.4.4 メキシコ 140
    • 10.5 その他の地域 141
      • 10.5.1 リセッション時のインパクト 142
      • 10.5.2 ブラジル 146
      • 10.5.3 南アフリカ 147
      • 10.5.4 その他の地域のその他 148
  • 11 競合情勢 150

    • 11.1 イントロダクション 150
    • 11.2 主要プレイヤーの戦略 150
    • 11.3 市場シェア分析 152
      • 11.3.1 主要プレイヤーランキング <num4>年 152
      • 11.3.2 主要プレイヤーの市場シェア 152
        • 11.3.2.1 SPECTROLAB (US) 153
        • 11.3.2.2 AZUR SPACE SOLAR POWER GMBH (GERMANY) 153
        • 11.3.2.3 ROCKET LAB USA (US) 153
        • 11.3.2.4 SHARP CORPORATION (JAPAN) 154
        • 11.3.2.5 CESI S.P.A (ITALY) 154
    • 11.4 収益分析 154
    • 11.5 企業評価マトリックス 155
      • 11.5.1 STARS 155
      • 11.5.2 EMERGING LEADERS 155
      • 11.5.3 PERVASIVE PLAYERS 155
      • 11.5.4 PARTICIPANTS 155
      • 11.5.5 企業フットプリント 157
    • 11.6 スタートアップ/中小企業評価マトリックス 160
      • 11.6.1 PROGRESSIVE COMPANIES 160
      • 11.6.2 RESPONSIVE COMPANIES 160
      • 11.6.3 DYNAMIC COMPANIES 160
      • 11.6.4 STARTING BLOCKS 160
      • 11.6.5 競合ベンチマーキング 162
        • 11.6.5.1 人工衛星用太陽電池材料市場:主要新興企業/SMEの競合ベンチマーキング 163
    • 11.7 VALUATION AND FINANCIAL METRICS OF KEY SATELLITE SOLAR CELL MATERIAL VENDORS 167
    • 11.8 COMPETITIVE SCENARIO AND TRENDS 168
      • 11.8.1 製品展開 168
      • 11.8.2 ディール 169
      • 11.8.3 拡大 176
  • 12 企業プロファイル 178

    • 12.1 主要企業 178
      • 12.1.1 SPECTROLAB 178
      • 12.1.2 MITSUBISHI ELECTRIC CORPORATION 182
      • 12.1.3 NORTHROP GRUMMAN 186
      • 12.1.4 SHARP CORPORATION 190
      • 12.1.5 AZUR SPACE SOLAR POWER GMBH 194
      • 12.1.6 THALES ALENIA SPACE 199
      • 12.1.7 ROCKET LAB USA 204
      • 12.1.8 CESI S.P.A 208
      • 12.1.9 AIRBUS 211
      • 12.1.10 MICROLINK DEVICES, INC 216
    • 12.2 他の有力企業 218
      • 12.2.1 REDWIRE CORPORATION 218
      • 12.2.2 ASCENT SOLAR TECHNOLOGIES, INC 219
      • 12.2.3 N.P.C. NEW PRODUCTION CONCEPT S.R.L. (SPACEMIND) 220
      • 12.2.4 GOMSPACE 221
      • 12.2.5 AAC CLYDE SPACE 222
      • 12.2.6 SPACETECH 223
      • 12.2.7 MMA DESIGN LLC 224
      • 12.2.8 DHV TECHNOLOGY 225
      • 12.2.9 KONGSBERG NANOAVIONICS 226
      • 12.2.10 PUMPKIN, INC 227
      • 12.2.11 ENDUROSAT 228
      • 12.2.12 SIERRA SPACE CORPORATION 229
      • 12.2.13 MPOWER TECHNOLOGY 230
      • 12.2.14 SHANGHAI FULLSUNS ENERGY TECHNOLOGY CO., LTD 231
  • 13 付録 232

    • 13.1 ディスカッションガイド 232
    • 13.2 ナレッジストア 235
    • 13.3 カスタマイズオプション 237
    • 13.4 関連レポート 237
    • 13.5 執筆者の詳細 238

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Description

The satellite solar cells materials market is projected to reach USD 96 million by 2030, at a CAGR of 13.7% from USD 44 million in 2024. The Gallium Arsenide (GaAs) segment is the fastest-growing category in the satellite solar cell materials market, owing to its unique combination of features that make it ideal for space applications. GaAs solar cells have higher efficiency and better radiation resistance than typical silicon-based cells, making them excellent for powering satellites in hostile space settings. Their better performance enables satellites to generate more electricity using smaller and lighter solar arrays, which is crucial for missions with limited payload capacity. Furthermore, GaAs solar cells have shown exceptional performance in high-temperature environments, ensuring consistent operation even after extended exposure to sunshine. As satellite technology progresses and the desire for more efficiency and dependability grows, GaAs solar cells are increasingly being favoured for their superior performance features, driving significant growth in the segment. Moreover, ongoing research and development efforts aimed at further improving GaAs solar cell efficiency and reducing manufacturing costs are expected to sustain the segment's rapid growth in the satellite solar cells materials market. “Space Station, by application, accounts for the second-largest market share in 2024.” The market for satellite solar cell materials is expanding quickly in the space station application segment because of a number of important aspects. First off, there is a growing need for dependable and effective power production systems as a result of the growing use of space stations, like the International Space Station (ISS), for scientific study, technological progress, and international cooperation. Space stations require power from solar cells in order to run their equipment and experiments continuously. Furthermore, the need for more advanced and competent solar cell materials to fulfil changing power requirements is being driven by developments in space station technology, including the growth of crewed missions and the construction of new orbital platforms. Moreover, the increasing commercialization of space operations, the development of private space stations, and habitats are further boosting demand for solar cells in this segment. As a result, the Space station application segment is experiencing significant growth in the satellite solar cells materials market, driven by the expanding scope and increasing importance of space station missions in scientific research, technology development, and space exploration endeavors. “LEO is expected to be the fastest growing at CAGR 13.9% for satellite solar cell materials market during the forecast period, in terms of value.” The market for materials for satellite solar cells is expanding at the quickest rate in the Low Earth Orbit (LEO) sector for a number of important reasons. To begin with, there is a significant need for solar cells due to the expansion of satellite constellations in low Earth orbit (LEO) for a range of purposes including communication, Earth observation, and remote sensing. Because multiple satellites must operate in close proximity to each other in these constellations, lightweight, dependable, and effective solar cells are needed to provide power requirements while minimizing the total mass of the spacecraft. Furthermore, LEO deployments have increased due to the development of small satellite platforms and improvements in satellite miniaturization, which has increased the need for solar cells that are tailored for small satellite designs. Solar power is also becoming more widely used in low earth orbit (LEO) missions due to the growing emphasis on sustainability and renewable energy sources in space research. “Based on region, Asia Pacific was the fastest growing market for satellite solar cells materials market in 2024.” The market for materials for satellite solar cells is expanding at the quickest rate in Asia Pacific because of a number of important considerations. First, there is a surge in investments in space research and satellite technology development as a result of the region's fast economic expansion and technological innovation. The ambitious space programs of nations like China, India, and Japan, which are centered on satellite deployments for communication, navigation, Earth observation, and scientific research, are creating a large demand for solar cell materials. In addition, there are numerous businesses in Asia Pacific that specialize in the development and installation of satellites, which increases demand for solar cells. An atmosphere that is favorable for market expansion is also created by the region's favorable legislative framework and government programmes that assist satellite development and space research. In the process of determining and verifying the market size for several segments and subsegments identified through secondary research, extensive primary interviews were conducted. A breakdown of the profiles of the primary interviewees is as follows: • By Company Type: Tier 1 - 40%, Tier 2 - 30%, and Tier 3 - 30% • By Designation: C-Level - 20%, Director Level - 10%, and Others - 70% • By Region: North America - 30%, Europe -30%, Asia Pacific - 20%, Middle East & Africa - 10%, and South America-10% The key players in this market are SPECTROLAB (US), AZUR SPACE Solar Power GmbH(Germany), ROCKET LAB USA (US), Sharp Corporation (Japan), CESI S.p.A (Milan), Thales Alenia Space (France), AIRBUS (France), MicroLink Devices, Inc. (US), Mitsubishi Electric Corporation (Japan), Northrop Grumman (US),etc. Research Coverage This report segments the market for the satellite solar cell materials market on the basis of Material type, application, Orbit and region. It provides estimations for the overall value of the market across various regions. A detailed analysis of key industry players has been conducted to provide insights into their business overviews, products & services, key strategies, new product launches, expansions, and mergers & acquisitions associated with the market for the satellite solar cells materials market. Key benefits of buying this report This research report is focused on various levels of analysis — industry analysis (industry trends), market ranking analysis of top players, and company profiles, which together provide an overall view of the competitive landscape, emerging and high-growth segments of the satellite solar cell materials market; high-growth regions; and market drivers, restraints, opportunities, and challenges. The report provides insights on the following pointers: • Analysis of key drivers: Rising Space Exploration and Satellite Deployment. • Market Penetration: Comprehensive information on the satellite solar cell materials market offered by top players in the global satellite solar cells materials market. • Product Development/Innovation: Detailed insights on upcoming technologies, research & development activities, and new product launches in the satellite solar cell materials market. • Market Development: Comprehensive information about lucrative emerging markets — the report analyzes the markets for the satellite solar cell materials market across regions. • Market Diversification: Exhaustive information about new products, untapped regions, and recent developments in the global satellite solar cell materials market. • Competitive Assessment: In-depth assessment of market shares, strategies, products, and manufacturing capabilities of leading players in the satellite solar cell materials market.

Table of Contents

  • 1 INTRODUCTION 28

    • 1.1 STUDY OBJECTIVES 28
    • 1.2 MARKET DEFINITION 28
    • 1.3 INCLUSIONS & EXCLUSIONS 29
    • 1.4 MARKET SCOPE 29
      • 1.4.1 REGIONS COVERED 30
      • 1.4.2 YEARS CONSIDERED 30
    • 1.5 CURRENCY CONSIDERED 31
    • 1.6 UNITS CONSIDERED 31
    • 1.7 LIMITATIONS 31
    • 1.8 STAKEHOLDERS 31
  • 2 RESEARCH METHODOLOGY 32

    • 2.1 RESEARCH DATA 32
      • 2.1.1 SECONDARY DATA 33
        • 2.1.1.1 Key data from secondary sources 33
      • 2.1.2 PRIMARY DATA 33
        • 2.1.2.1 Primary data sources 34
        • 2.1.2.2 Key satellite solar cell material manufacturers 34
        • 2.1.2.3 Breakdown of interviews with experts 35
        • 2.1.2.4 Key industry insights 35
    • 2.2 BASE NUMBER CALCULATION 36
      • 2.2.1 APPROACH 1: SUPPLY-SIDE ANALYSIS 36
      • 2.2.2 APPROACH 2: DEMAND-SIDE ANALYSIS 36
    • 2.3 FORECAST NUMBER CALCULATION 36
      • 2.3.1 SUPPLY SIDE 36
      • 2.3.2 DEMAND SIDE 37
    • 2.4 MARKET SIZE ESTIMATION 37
      • 2.4.1 BOTTOM-UP APPROACH 38
      • 2.4.2 TOP-DOWN APPROACH 38
    • 2.5 DATA TRIANGULATION 39
    • 2.6 ASSUMPTIONS 40
    • 2.7 RECESSION IMPACT 40
    • 2.8 GROWTH FORECAST 41
    • 2.9 RISK ASSESSMENT 41
  • 3 EXECUTIVE SUMMARY 42

  • 4 PREMIUM INSIGHTS 47

    • 4.1 ATTRACTIVE OPPORTUNITIES FOR PLAYERS IN SATELLITE SOLAR CELL MATERIALS MARKET 47
    • 4.2 SATELLITE SOLAR CELL MATERIALS MARKET, BY MATERIAL TYPE 47
    • 4.3 SATELLITE SOLAR CELL MATERIALS MARKET, BY APPLICATION 48
    • 4.4 SATELLITE SOLAR CELL MATERIALS MARKET, BY ORBIT 48
    • 4.5 SATELLITE SOLAR CELL MATERIALS MARKET, BY COUNTRY 49
  • 5 MARKET OVERVIEW 50

    • 5.1 INTRODUCTION 50
    • 5.2 MARKET DYNAMICS 50
      • 5.2.1 DRIVERS 51
        • 5.2.1.1 Rising space exploration and satellite deployment 51
        • 5.2.1.2 Technological advancements in solar cell efficiency 51
        • 5.2.1.3 Support and investments by governments 52
      • 5.2.2 RESTRAINTS 53
        • 5.2.2.1 Restrictions on weight and size of solar cells 53
        • 5.2.2.2 Stringent regulatory and compliance standards 53
      • 5.2.3 OPPORTUNITIES 54
        • 5.2.3.1 Increasing investment in space-based infrastructure 54
        • 5.2.3.2 Growing demand for sustainable energy sources 54
      • 5.2.4 CHALLENGES 55
        • 5.2.4.1 Harsh space environment and limited supply of space-grade solar cells 55
        • 5.2.4.2 High cost of satellite solar cell materials 56
  • 6 INDUSTRY TRENDS 57

    • 6.1 INTRODUCTION 57
    • 6.2 TRENDS/DISRUPTIONS IMPACTING CUSTOMERS' BUSINESSES 57
      • 6.2.1 REVENUE SHIFT AND NEW REVENUE POCKETS FOR SATELLITE SOLAR CELL MATERIAL MANUFACTURERS 57
    • 6.3 PRICING ANALYSIS 58
      • 6.3.1 AVERAGE SELLING PRICE TREND, BY REGION 58
      • 6.3.2 AVERAGE SELLING PRICE TREND, BY MATERIAL TYPE 59
      • 6.3.3 AVERAGE SELLING PRICE TREND OF KEY PLAYERS, BY TOP THREE MATERIAL TYPES 59
    • 6.4 SUPPLY CHAIN ANALYSIS 60
      • 6.4.1 RAW MATERIAL SUPPLIERS 61
      • 6.4.2 MANUFACTURERS 61
      • 6.4.3 DISTRIBUTORS 61
      • 6.4.4 END USERS 61
    • 6.5 ECOSYSTEM MAPPING 62
    • 6.6 INVESTMENT LANDSCAPE: SATELLITE SOLAR CELL MATERIALS MARKET 63
    • 6.7 TECHNOLOGY ANALYSIS 64
    • 6.8 PATENT ANALYSIS 66
      • 6.8.1 INTRODUCTION 66
      • 6.8.2 METHODOLOGY 66
      • 6.8.3 DOCUMENT TYPE 66
      • 6.8.4 INSIGHTS 67
      • 6.8.5 LEGAL STATUS OF PATENTS 67
      • 6.8.6 JURISDICTION ANALYSIS 68
      • 6.8.7 TOP COMPANIES/APPLICANTS 68
      • 6.8.8 LIST OF MAJOR PATENTS 69
    • 6.9 TRADE ANALYSIS 73
      • 6.9.1 IMPORT SCENARIO 73
      • 6.9.2 EXPORT SCENARIO 74
    • 6.10 KEY CONFERENCES & EVENTS IN 2024-25 74
      • 6.10.1 REGULATORY BODIES, GOVERNMENT AGENCIES, AND OTHER ORGANIZATIONS 75
    • 6.11 PORTER'S FIVE FORCES ANALYSIS 77
      • 6.11.1 THREAT OF NEW ENTRANTS 78
      • 6.11.2 THREATS OF SUBSTITUTES 79
      • 6.11.3 BARGAINING POWER OF SUPPLIERS 79
      • 6.11.4 BARGAINING POWER OF BUYERS 79
      • 6.11.5 MACROECONOMIC INDICATORS 80
    • 6.12 KEY STAKEHOLDERS AND BUYING CRITERIA 81
      • 6.12.1 KEY STAKEHOLDERS IN BUYING PROCESS 81
      • 6.12.2 BUYING CRITERIA 82
    • 6.13 CASE STUDY 82
      • 6.13.1 CASE STUDY ABOUT RADIATION-INDUCED DEGRADATION OF III-V PHOTOVOLTAIC CELLS FOR SPACE APPLICATIONS 82
      • 6.13.2 CASE STUDY ABOUT PHOTOVOLTAICS-DRIVEN POWER PRODUCTION CAN SUPPORT HUMAN EXPLORATION ON MARS 83
      • 6.13.3 CASE STUDY ABOUT SPACE-BASED SOLAR POWER 84
  • 7 SATELLITE SOLAR CELL MATERIALS MARKET, BY MATERIAL TYPE 85

    • 7.1 INTRODUCTION 86
    • 7.2 SILICON 88
      • 7.2.1 SILICON SEGMENT TO DOMINATE MARKET DURING FORECAST PERIOD 88
    • 7.3 COPPER INDIUM GALLIUM SELENIDE (CIGS) 88
      • 7.3.1 OFFERS HIGH EFFICIENCY LEVELS, EXCEPTIONAL PERFORMANCE IN LOW-LIGHT CONDITIONS 88
    • 7.4 GALLIUM ARSENIDE (GAAS) 89
      • 7.4.1 GAAS TO REGISTER HIGHEST GROWTH DURING FORECAST PERIOD 89
    • 7.5 OTHER MATERIAL TYPES 89
      • 7.5.1 INDIUM GALLIUM PHOSPHIDE (INGAP) 89
      • 7.5.2 GERMANIUM (GE) 90
  • 8 SATELLITE SOLAR CELL MATERIALS MARKET, BY ORBIT 91

    • 8.1 INTRODUCTION 92
    • 8.2 LOW EARTH ORBIT (LEO) 94
      • 8.2.1 LEO SEGMENT TO REGISTER HIGHEST CAGR DURING FORECAST PERIOD 94
    • 8.3 MEDIUM EARTH ORBIT (MEO) 94
      • 8.3.1 MARKET CHARACTERIZED BY DEMAND FOR MATERIALS RESILIENT TO HARSH RADIATION ENVIRONMENT 94
    • 8.4 GEOSTATIONARY ORBIT (GEO) 95
      • 8.4.1 ROBUST MATERIALS REQUIRED FOR SOLAR ARRAYS FOR SATELLITES IN GEO 95
    • 8.5 HIGHLY ELLIPTICAL ORBIT (HEO) 95
      • 8.5.1 ADVANCED MATERIALS AND TECHNOLOGIES REQUIRED FOR HEO SATELLITES 95
    • 8.6 POLAR ORBIT 96
      • 8.6.1 POLAR ORBIT SEGMENT TO ACCOUNT FOR LARGEST MARKET SHARE DURING FORECAST PERIOD 96
  • 9 SATELLITE SOLAR CELL MATERIALS MARKET, BY APPLICATION 97

    • 9.1 INTRODUCTION 98
    • 9.2 SATELLITES 100
      • 9.2.1 SATELLITES SEGMENT TO ACCOUNT FOR LARGEST MARKET SHARE DURING FORECAST PERIOD 100
    • 9.3 ROVERS 101
      • 9.3.1 DEMAND FOR SATELLITE SOLAR CELL MATERIALS TO WITNESS SIGNIFICANT GROWTH IN ROVER APPLICATION 101
    • 9.4 SPACE STATIONS 101
      • 9.4.1 SATELLITE SOLAR ARRAYS CRITICAL IN OPERATION OF SPACE STATIONS 101
    • 9.5 OTHER APPLICATIONS 102
  • 10 SATELLITE SOLAR CELL MATERIALS MARKET, BY REGION 103

    • 10.1 INTRODUCTION 104
    • 10.2 ASIA PACIFIC 106
      • 10.2.1 RECESSION IMPACT 107
      • 10.2.2 CHINA 112
        • 10.2.2.1 Upcoming investments in space exploration to drive growth of market 112
      • 10.2.3 JAPAN 113
        • 10.2.3.1 Increasing satellite launches to fuel demand for PV cells 113
      • 10.2.4 INDIA 114
        • 10.2.4.1 Investments in space exploration, including launch of rovers and satellites, to drive market 114
      • 10.2.5 SOUTH KOREA 115
        • 10.2.5.1 Increasing demand from defense sectors to drive satellite solar cell materials market 115
      • 10.2.6 REST OF ASIA PACIFIC 117
    • 10.3 EUROPE 118
      • 10.3.1 RECESSION IMPACT 119
      • 10.3.2 GERMANY 124
        • 10.3.2.1 Government investments in space sector, including establishment of spaceports, to drive market 124
      • 10.3.3 UK 125
        • 10.3.3.1 Increasing support from government for space-based activities to drive market 125
      • 10.3.4 FRANCE 127
        • 10.3.4.1 Rising investments in earth mapping and enhanced communication to propel market 127
      • 10.3.5 ITALY 128
        • 10.3.5.1 Projected satellite launches to drive market 128
      • 10.3.6 SPAIN 129
        • 10.3.6.1 Surge in satellite launches dedicated to research, defense, and communication to drive market 129
      • 10.3.7 RUSSIA 130
        • 10.3.7.1 Surge in launches of satellites for military to boost demand for satellite solar cell materials 130
      • 10.3.8 REST OF EUROPE 131
    • 10.4 NORTH AMERICA 132
      • 10.4.1 RECESSION IMPACT 133
      • 10.4.2 US 138
        • 10.4.2.1 Thriving space ecosystem to propel demand for space-grade solar cell materials 138
      • 10.4.3 CANADA 139
        • 10.4.3.1 Government investments in space industry to influence satellite solar cell materials market 139
      • 10.4.4 MEXICO 140
        • 10.4.4.1 Government initiatives to invest in satellite technologies to drive market in Mexico 140
    • 10.5 REST OF WORLD 141
      • 10.5.1 RECESSION IMPACT 142
      • 10.5.2 BRAZIL 146
        • 10.5.2.1 Increased demand for satellites for earth observation and military applications to drive demand 146
      • 10.5.3 SOUTH AFRICA 147
        • 10.5.3.1 Growing investments in satellite technologies to drive market in South Africa 147
      • 10.5.4 OTHERS IN REST OF WORLD 148
  • 11 COMPETITIVE LANDSCAPE 150

    • 11.1 INTRODUCTION 150
    • 11.2 STRATEGIES ADOPTED BY KEY PLAYERS 150
      • 11.2.1 OVERVIEW OF STRATEGIES ADOPTED BY KEY SATELLITE SOLAR CELL MATERIAL MANUFACTURERS 150
    • 11.3 MARKET SHARE ANALYSIS 152
      • 11.3.1 RANKING OF KEY MARKET PLAYERS, 2023 152
      • 11.3.2 MARKET SHARE OF KEY PLAYERS 152
        • 11.3.2.1 SPECTROLAB (US) 153
        • 11.3.2.2 AZUR SPACE SOLAR POWER GMBH (GERMANY) 153
        • 11.3.2.3 ROCKET LAB USA (US) 153
        • 11.3.2.4 SHARP CORPORATION (JAPAN) 154
        • 11.3.2.5 CESI S.P.A (ITALY) 154
    • 11.4 REVENUE ANALYSIS 154
    • 11.5 COMPANY EVALUATION MATRIX 155
      • 11.5.1 STARS 155
      • 11.5.2 EMERGING LEADERS 155
      • 11.5.3 PERVASIVE PLAYERS 155
      • 11.5.4 PARTICIPANTS 155
      • 11.5.5 COMPANY FOOTPRINT 157
    • 11.6 STARTUP/SME EVALUATION MATRIX 160
      • 11.6.1 PROGRESSIVE COMPANIES 160
      • 11.6.2 RESPONSIVE COMPANIES 160
      • 11.6.3 DYNAMIC COMPANIES 160
      • 11.6.4 STARTING BLOCKS 160
      • 11.6.5 COMPETITIVE BENCHMARKING 162
        • 11.6.5.1 Satellite solar cell materials market: Competitive benchmarking of key startups/SMEs 163
    • 11.7 VALUATION AND FINANCIAL METRICS OF KEY SATELLITE SOLAR CELL MATERIAL VENDORS 167
    • 11.8 COMPETITIVE SCENARIO AND TRENDS 168
      • 11.8.1 PRODUCT LAUNCHES 168
      • 11.8.2 DEALS 169
      • 11.8.3 EXPANSIONS 176
  • 12 COMPANY PROFILES 178

    • 12.1 KEY PLAYERS 178
      • 12.1.1 SPECTROLAB 178
      • 12.1.2 MITSUBISHI ELECTRIC CORPORATION 182
      • 12.1.3 NORTHROP GRUMMAN 186
      • 12.1.4 SHARP CORPORATION 190
      • 12.1.5 AZUR SPACE SOLAR POWER GMBH 194
      • 12.1.6 THALES ALENIA SPACE 199
      • 12.1.7 ROCKET LAB USA 204
      • 12.1.8 CESI S.P.A 208
      • 12.1.9 AIRBUS 211
      • 12.1.10 MICROLINK DEVICES, INC 216
    • 12.2 OTHER PLAYERS 218
      • 12.2.1 REDWIRE CORPORATION 218
      • 12.2.2 ASCENT SOLAR TECHNOLOGIES, INC 219
      • 12.2.3 N.P.C. NEW PRODUCTION CONCEPT S.R.L. (SPACEMIND) 220
      • 12.2.4 GOMSPACE 221
      • 12.2.5 AAC CLYDE SPACE 222
      • 12.2.6 SPACETECH 223
      • 12.2.7 MMA DESIGN LLC 224
      • 12.2.8 DHV TECHNOLOGY 225
      • 12.2.9 KONGSBERG NANOAVIONICS 226
      • 12.2.10 PUMPKIN, INC 227
      • 12.2.11 ENDUROSAT 228
      • 12.2.12 SIERRA SPACE CORPORATION 229
      • 12.2.13 MPOWER TECHNOLOGY 230
      • 12.2.14 SHANGHAI FULLSUNS ENERGY TECHNOLOGY CO., LTD 231
  • 13 APPENDIX 232

    • 13.1 DISCUSSION GUIDE 232
    • 13.2 KNOWLEDGESTORE: MARKETSANDMARKETS’ SUBSCRIPTION PORTAL 235
    • 13.3 CUSTOMIZATION OPTIONS 237
    • 13.4 RELATED REPORTS 237
    • 13.5 AUTHOR DETAILS 238

TABLE 1 AVERAGE SELLING PRICE, BY REGION, 2020-2030 (PRICE PER WATT) TABLE 2 AVERAGE SELLING PRICE TREND, BY MATERIAL TYPE, 2020-2030 (PRICE PER WATT) TABLE 3 AVERAGE SELLING PRICE, BY MATERIAL TYPE, 2023 (PRICE PER WATT) TABLE 4 SATELLITE SOLAR CELL MATERIALS MARKET: ROLE IN ECOSYSTEM TABLE 5 KEY TECHNOLOGIES IN SATELLITE SOLAR CELL MATERIALS MARKET TABLE 6 COMPLEMENTARY TECHNOLOGIES IN SATELLITE SOLAR CELL MATERIALS MARKET TABLE 7 ADJACENT TECHNOLOGIES IN SATELLITE SOLAR CELL MATERIALS MARKET TABLE 8 GRANTED PATENTS ACCOUNT FOR 35.1% OF ALL PATENTS TABLE 9 LIST OF MAJOR PATENTS FOR SATELLITE SOLAR CELL MATERIALS MARKET TABLE 10 MAJOR PATENTS IN SATELLITE SOLAR CELL MATERIALS MARKET TABLE 11 SATELLITE SOLAR CELL MATERIALS MARKET: DETAILED LIST OF CONFERENCES AND EVENTS TABLE 12 NORTH AMERICA: LIST OF REGULATORY BODIES, GOVERNMENT AGENCIES, AND OTHER ORGANIZATIONS TABLE 13 EUROPE: LIST OF REGULATORY BODIES, GOVERNMENT AGENCIES, AND OTHER ORGANIZATIONS TABLE 14 ASIA PACIFIC: LIST OF REGULATORY BODIES, GOVERNMENT AGENCIES, AND OTHER ORGANIZATIONS TABLE 15 REST OF THE WORLD: LIST OF REGULATORY BODIES, GOVERNMENT AGENCIES, AND OTHER ORGANIZATIONS TABLE 16 SATELLITE SOLAR CELL MATERIALS MARKET: PORTER'S FIVE FORCES ANALYSIS TABLE 17 PROJECTED REAL GDP GROWTH (ANNUAL PERCENTAGE CHANGE) OF KEY COUNTRIES, 2018-2025 TABLE 18 INFLUENCE OF STAKEHOLDERS ON BUYING PROCESS FOR TOP 3 APPLICATIONS TABLE 19 KEY BUYING CRITERIA FOR TOP 3 APPLICATIONS TABLE 20 SATELLITE SOLAR CELL MATERIALS MARKET, BY MATERIAL TYPE, 2020-2023 (USD MILLION) TABLE 21 SATELLITE SOLAR CELL MATERIALS MARKET, BY MATERIAL TYPE, 2024-2030 (USD MILLION) TABLE 22 SATELLITE SOLAR CELL MATERIALS MARKET, BY MATERIAL TYPE, 2020-2023 (MW) TABLE 23 SATELLITE SOLAR CELL MATERIALS MARKET, BY MATERIAL TYPE, 2024-2030 (MW) TABLE 24 SATELLITE SOLAR CELL MATERIALS MARKET, BY ORBIT, 2020-2023 (USD MILLION) TABLE 25 SATELLITE SOLAR CELL MATERIALS MARKET, BY ORBIT, 2024-2030 (USD MILLION) TABLE 26 SATELLITE SOLAR CELL MATERIALS MARKET, BY ORBIT, 2020-2023 (MW) TABLE 27 SATELLITE SOLAR CELL MATERIALS MARKET, BY ORBIT, 2024-2030 (MW) TABLE 28 SATELLITE SOLAR CELL MATERIALS MARKET, BY APPLICATION, 2020-2023 (USD MILLION) TABLE 29 SATELLITE SOLAR CELL MATERIALS MARKET, BY APPLICATION, 2024-2030 (USD MILLION) TABLE 30 SATELLITE SOLAR CELL MATERIALS MARKET, BY APPLICATION, 2020-2023 (MW) TABLE 31 SATELLITE SOLAR CELL MATERIALS MARKET, BY APPLICATION, 2024-2030 (MW) TABLE 32 SATELLITE SOLAR CELL MATERIALS MARKET, BY REGION, 2020-2023 (USD MILLION) TABLE 33 SATELLITE SOLAR CELL MATERIALS MARKET, BY REGION, 2024-2030 (USD MILLION) TABLE 34 SATELLITE SOLAR CELL MATERIALS MARKET, BY REGION, 2020-2023 (MW) TABLE 35 SATELLITE SOLAR CELL MATERIALS MARKET, BY REGION, 2024-2030 (MW) TABLE 36 ASIA PACIFIC: SATELLITE SOLAR CELL MATERIALS MARKET, BY COUNTRY, 2020-2023 (USD MILLION) TABLE 37 ASIA PACIFIC: SATELLITE SOLAR CELL MATERIALS MARKET, BY COUNTRY, 2024-2030 (USD MILLION) TABLE 38 ASIA PACIFIC: SATELLITE SOLAR CELL MATERIALS MARKET, BY COUNTRY, 2020-2023 (MW) TABLE 39 ASIA PACIFIC: SATELLITE SOLAR CELL MATERIALS MARKET, BY COUNTRY, 2024-2030 (MW) TABLE 40 ASIA PACIFIC: SATELLITE SOLAR CELL MATERIALS MARKET, BY MATERIAL TYPE, 2020-2023 (USD MILLION) TABLE 41 ASIA PACIFIC: SATELLITE SOLAR CELL MATERIALS MARKET, BY MATERIAL TYPE, 2024-2030 (USD MILLION) TABLE 42 ASIA PACIFIC: SATELLITE SOLAR CELL MATERIALS MARKET, BY MATERIAL TYPE, 2020-2023 (MW) TABLE 43 ASIA PACIFIC: SATELLITE SOLAR CELL MATERIALS MARKET, BY MATERIAL TYPE, 2024-2030 (MW) TABLE 44 ASIA PACIFIC: SATELLITE SOLAR CELL MATERIALS MARKET, BY ORBIT, 2020-2023 (USD MILLION) TABLE 45 ASIA PACIFIC: SATELLITE SOLAR CELL MATERIALS MARKET, BY ORBIT, 2024-2030 (USD MILLION) TABLE 46 ASIA PACIFIC: SATELLITE SOLAR CELL MATERIALS MARKET, BY APPLICATION, 2020-2023 (USD MILLION) TABLE 47 ASIA PACIFIC: SATELLITE SOLAR CELL MATERIALS MARKET, BY APPLICATION, 2024-2030 (USD MILLION) TABLE 48 CHINA: SATELLITE SOLAR CELL MATERIALS MARKET, BY APPLICATION, 2020-2023 (USD MILLION) TABLE 49 CHINA: SATELLITE SOLAR CELL MATERIALS MARKET, BY APPLICATION, 2024-2030 (USD MILLION) TABLE 50 JAPAN: SATELLITE SOLAR CELL MATERIALS MARKET, BY APPLICATION, 2020-2023 (USD MILLION) TABLE 51 JAPAN: SATELLITE SOLAR CELL MATERIALS MARKET, BY APPLICATION, 2024-2030 (USD MILLION) TABLE 52 INDIA: SATELLITE SOLAR CELL MATERIALS MARKET, BY APPLICATION, 2020-2023 (USD MILLION) TABLE 53 INDIA: SATELLITE SOLAR CELL MATERIALS MARKET, BY APPLICATION, 2024-2030 (USD MILLION) TABLE 54 SOUTH KOREA: SATELLITE SOLAR CELL MATERIALS MARKET, BY APPLICATION, 2020-2023 (USD MILLION) TABLE 55 SOUTH KOREA: SATELLITE SOLAR CELL MATERIALS MARKET, BY APPLICATION, 2024-2030 (USD MILLION) TABLE 56 REST OF ASIA PACIFIC: SATELLITE SOLAR CELL MATERIALS MARKET, BY APPLICATION, 2020-2023 (USD MILLION) TABLE 57 REST OF ASIA PACIFIC: SATELLITE SOLAR CELL MATERIALS MARKET, BY APPLICATION, 2024-2030 (USD MILLION) TABLE 58 EUROPE: SATELLITE SOLAR CELL MATERIALS MARKET, BY COUNTRY, 2020-2023 (USD MILLION) TABLE 59 EUROPE: SATELLITE SOLAR CELL MATERIALS MARKET, BY COUNTRY, 2024-2030 (USD MILLION) TABLE 60 EUROPE: SATELLITE SOLAR CELL MATERIALS MARKET, BY COUNTRY, 2020-2023 (MW) TABLE 61 EUROPE: SATELLITE SOLAR CELL MATERIALS MARKET, BY COUNTRY, 2024-2030 (MW) TABLE 62 EUROPE: SATELLITE SOLAR CELL MATERIALS MARKET, BY MATERIAL TYPE, 2020-2023 (USD MILLION) TABLE 63 EUROPE: SATELLITE SOLAR CELL MATERIALS MARKET, BY MATERIAL TYPE, 2024-2030 (USD MILLION) TABLE 64 EUROPE: SATELLITE SOLAR CELL MATERIALS MARKET, BY MATERIAL TYPE, 2020-2023 (MW) TABLE 65 EUROPE: SATELLITE SOLAR CELL MATERIALS MARKET, BY MATERIAL TYPE, 2024-2030 (MW) TABLE 66 EUROPE: SATELLITE SOLAR CELL MATERIALS MARKET, BY ORBIT, 2020-2023 (USD MILLION) TABLE 67 EUROPE: SATELLITE SOLAR CELL MATERIALS MARKET, BY ORBIT, 2024-2030 (USD MILLION) TABLE 68 EUROPE: SATELLITE SOLAR CELL MATERIALS MARKET, BY APPLICATION, 2020-2023 (USD MILLION) TABLE 69 EUROPE: SATELLITE SOLAR CELL MATERIALS MARKET, BY APPLICATION, 2024-2030 (USD MILLION) TABLE 70 GERMANY: SATELLITE SOLAR CELL MATERIALS MARKET, BY APPLICATION, 2020-2023 (USD MILLION) TABLE 71 GERMANY: SATELLITE SOLAR CELL MATERIALS MARKET, BY APPLICATION, 2024-2030 (USD MILLION) TABLE 72 UK: SATELLITE SOLAR CELL MATERIALS MARKET, BY APPLICATION, 2020-2023 (USD MILLION) TABLE 73 UK: SATELLITE SOLAR CELL MATERIALS MARKET, BY APPLICATION, 2024-2030 (USD MILLION) TABLE 74 FRANCE: SATELLITE SOLAR CELL MATERIALS MARKET, BY APPLICATION, 2020-2023 (USD MILLION) TABLE 75 FRANCE: SATELLITE SOLAR CELL MATERIALS MARKET, BY APPLICATION, 2024-2030 (USD MILLION) TABLE 76 ITALY: SATELLITE SOLAR CELL MATERIALS MARKET, BY APPLICATION, 2020-2023 (USD MILLION) TABLE 77 ITALY: SATELLITE SOLAR CELL MATERIALS MARKET, BY APPLICATION, 2024-2030 (USD MILLION) TABLE 78 SPAIN: SATELLITE SOLAR CELL MATERIALS MARKET, BY APPLICATION, 2020-2023 (USD MILLION) TABLE 79 SPAIN: SATELLITE SOLAR CELL MATERIALS MARKET, BY APPLICATION, 2024-2030 (USD MILLION) TABLE 80 RUSSIA: SATELLITE SOLAR CELL MATERIALS MARKET, BY APPLICATION, 2020-2023 (USD MILLION) TABLE 81 RUSSIA: SATELLITE SOLAR CELL MATERIALS MARKET, BY APPLICATION, 2024-2030 (USD MILLION) TABLE 82 REST OF EUROPE: SATELLITE SOLAR CELL MATERIALS MARKET, BY APPLICATION, 2020-2023 (USD MILLION) TABLE 83 REST OF EUROPE: SATELLITE SOLAR CELL MATERIALS MARKET, BY APPLICATION, 2024-2030 (USD MILLION) TABLE 84 NORTH AMERICA: SATELLITE SOLAR CELL MATERIALS MARKET, BY COUNTRY, 2020-2023 (USD MILLION) TABLE 85 NORTH AMERICA: SATELLITE SOLAR CELL MATERIALS MARKET, BY COUNTRY, 2024-2030 (USD MILLION) TABLE 86 NORTH AMERICA: SATELLITE SOLAR CELL MATERIALS MARKET, BY COUNTRY, 2020-2023 (MW) TABLE 87 NORTH AMERICA: SATELLITE SOLAR CELL MATERIALS MARKET, BY COUNTRY, 2024-2030 (MW) TABLE 88 NORTH AMERICA: SATELLITE SOLAR CELL MATERIALS MARKET, BY MATERIAL TYPE, 2020-2023 (USD MILLION) TABLE 89 NORTH AMERICA: SATELLITE SOLAR CELL MATERIALS MARKET, BY MATERIAL TYPE, 2024-2030 (USD MILLION) TABLE 90 NORTH AMERICA: SATELLITE SOLAR CELL MATERIALS MARKET, BY MATERIAL TYPE, 2020-2023 (MW) TABLE 91 NORTH AMERICA: SATELLITE SOLAR CELL MATERIALS MARKET, BY MATERIAL TYPE, 2024-2030 (MW) TABLE 92 NORTH AMERICA: SATELLITE SOLAR CELL MATERIALS MARKET, BY ORBIT, 2020-2023 (USD MILLION) TABLE 93 NORTH AMERICA: SATELLITE SOLAR CELL MATERIALS MARKET, BY ORBIT, 2024-2030 (USD MILLION) TABLE 94 NORTH AMERICA: SATELLITE SOLAR CELL MATERIALS MARKET, BY APPLICATION, 2020-2023 (USD MILLION) TABLE 95 NORTH AMERICA: SATELLITE SOLAR CELL MATERIALS MARKET, BY APPLICATION, 2024-2030 (USD MILLION) TABLE 96 US: SATELLITE SOLAR CELL MATERIALS MARKET, BY APPLICATION, 2020-2023 (USD MILLION) TABLE 97 US: SATELLITE SOLAR CELL MATERIALS MARKET, BY APPLICATION, 2024-2030 (USD MILLION) TABLE 98 CANADA: SATELLITE SOLAR CELL MATERIALS MARKET, BY APPLICATION, 2020-2023 (USD MILLION) TABLE 99 CANADA: SATELLITE SOLAR CELL MATERIALS MARKET, BY APPLICATION, 2024-2030 (USD MILLION) TABLE 100 MEXICO: SATELLITE SOLAR CELL MATERIALS MARKET, BY APPLICATION, 2020-2023 (USD MILLION) TABLE 101 MEXICO: SATELLITE SOLAR CELL MATERIALS MARKET, BY APPLICATION, 2024-2030 (USD MILLION) TABLE 102 ROW: SATELLITE SOLAR CELL MATERIALS MARKET, BY COUNTRY, 2020-2023 (USD MILLION) TABLE 103 ROW: SATELLITE SOLAR CELL MATERIALS MARKET, BY COUNTRY, 2024-2030 (USD MILLION) TABLE 104 ROW: SATELLITE SOLAR CELL MATERIALS MARKET, BY COUNTRY, 2020-2023 (MW) TABLE 105 ROW: SATELLITE SOLAR CELL MATERIALS MARKET, BY COUNTRY, 2024-2030 (MW) TABLE 106 ROW: SATELLITE SOLAR CELL MATERIALS MARKET, BY MATERIAL TYPE, 2020-2023 (USD MILLION) TABLE 107 ROW: SATELLITE SOLAR CELL MATERIALS MARKET, BY MATERIAL TYPE, 2024-2030 (USD MILLION) TABLE 108 ROW: SATELLITE SOLAR CELL MATERIALS MARKET, BY MATERIAL TYPE, 2020-2023 (MW) TABLE 109 ROW: SATELLITE SOLAR CELL MATERIALS MARKET, BY MATERIAL TYPE, 2024-2030 (MW) TABLE 110 ROW: SATELLITE SOLAR CELL MATERIALS MARKET, BY ORBIT, 2020-2023 (USD MILLION) TABLE 111 ROW: SATELLITE SOLAR CELL MATERIALS MARKET, BY ORBIT, 2024-2030 (USD MILLION) TABLE 112 ROW: SATELLITE SOLAR CELL MATERIALS MARKET, BY APPLICATION, 2020-2023 (USD MILLION) TABLE 113 ROW: SATELLITE SOLAR CELL MATERIALS MARKET, BY APPLICATION, 2024-2030 (USD MILLION) TABLE 114 BRAZIL: SATELLITE SOLAR CELL MATERIALS MARKET, BY APPLICATION, 2020-2023 (USD MILLION) TABLE 115 BRAZIL: SATELLITE SOLAR CELL MATERIALS MARKET, BY APPLICATION, 2024-2030 (USD MILLION) TABLE 116 SOUTH AFRICA: SATELLITE SOLAR CELL MATERIALS MARKET, BY APPLICATION, 2020-2023 (USD MILLION) TABLE 117 SOUTH AFRICA: SATELLITE SOLAR CELL MATERIALS MARKET, BY APPLICATION, 2024-2030 (USD MILLION) TABLE 118 OTHERS IN REST OF WORLD: SATELLITE SOLAR CELL MATERIALS MARKET, BY APPLICATION, 2020-2023 (USD MILLION) TABLE 119 OTHERS IN REST OF WORLD: SATELLITE SOLAR CELL MATERIALS MARKET, BY APPLICATION, 2024-2030 (USD MILLION) TABLE 120 SATELLITE SOLAR CELL MATERIALS MARKET: DEGREE OF COMPETITION TABLE 121 COMPANY APPLICATION FOOTPRINT (10 COMPANIES) TABLE 122 COMPANY COMPONENT FOOTPRINT (10 COMPANIES) TABLE 123 COMPANY MATERIAL TYPE FOOTPRINT (10 COMPANIES) TABLE 124 COMPANY REGION FOOTPRINT (10 COMPANIES) TABLE 125 SATELLITE SOLAR CELL MATERIALS MARKET: DETAILED LIST OF KEY STARTUPS/SMES TABLE 126 STARTUPS/SMES APPLICATION FOOTPRINT (14 COMPANIES) TABLE 127 STARTUPS/SMES COMPONENT FOOTPRINT (14 COMPANIES) TABLE 128 STARTUPS/SMES MATERIAL FOOTPRINT (14 COMPANIES) TABLE 129 STARTUPS/SMES REGION FOOTPRINT (14 COMPANIES) TABLE 130 SATELLITE SOLAR CELL MATERIALS MARKET: PRODUCT LAUNCHES (2021-2024) TABLE 131 SATELLITE SOLAR CELL MATERIALS MARKET: DEALS (2020-2023) TABLE 132 SATELLITE SOLAR CELL MATERIALS MARKET: EXPANSIONS (2022-2023) TABLE 133 SPECTROLAB: COMPANY OVERVIEW TABLE 134 SPECTROLAB: PRODUCTS/SERVICES/SOLUTIONS OFFERED TABLE 135 SPECTROLAB: DEALS (2020-2023) TABLE 136 MITSUBISHI ELECTRIC CORPORATION: COMPANY OVERVIEW TABLE 137 MITSUBISHI ELECTRIC CORPORATION: PRODUCTS/SOLUTIONS/SERVICES OFFERED TABLE 138 MITSUBISHI ELECTRIC CORPORATION: DEALS (2020-2023) TABLE 139 MITSUBISHI ELECTRIC CORPORATION: OTHER DEVELOPMENTS TABLE 140 NORTHROP GRUMMAN: COMPANY OVERVIEW TABLE 141 NORTHROP GRUMMAN: PRODUCTS/SERVICES/SOLUTIONS OFFERED TABLE 142 NORTHROP GRUMMAN: DEALS (2020-2023) TABLE 143 NORTHROP GRUMMAN: OTHER DEVELOPMENTS TABLE 144 SHARP CORPORATION: COMPANY OVERVIEW TABLE 145 SHARP CORPORATION: PRODUCTS/SERVICES/SOLUTIONS OFFERED TABLE 146 SHARP CORPORATION: PRODUCT LAUNCHES TABLE 147 AZUR SPACE SOLAR POWER GMBH: COMPANY OVERVIEW TABLE 148 AZUR SPACE SOLAR POWER GMBH: PRODUCTS/SERVICES/SOLUTIONS OFFERED TABLE 149 AZUR SPACE SOLAR POWER GMBH: DEALS (2020-2023) TABLE 150 THALES ALENIA SPACE: COMPANY OVERVIEW TABLE 151 THALES ALENIA SPACE: PRODUCTS/SERVICES/SOLUTIONS OFFERED TABLE 152 THALES ALENIA SPACE: PRODUCT LAUNCHES TABLE 153 THALES ALENIA SPACE: DEALS (2020-2023) TABLE 154 THALES ALENIA SPACE: OTHER DEVELOPMENTS TABLE 155 ROCKET LAB USA: COMPANY OVERVIEW TABLE 156 ROCKET LAB USA: PRODUCTS/SERVICES/SOLUTIONS OFFERED TABLE 157 ROCKET LAB USA: PRODUCT LAUNCHES TABLE 158 ROCKET LAB USA: DEALS (2020-2023) TABLE 159 CESI S.P.A.: COMPANY OVERVIEW TABLE 160 CESI S.P.A.: PRODUCTS/SERVICES/SOLUTIONS OFFERED TABLE 161 CESI S.P.A.: DEALS (2020-2023) TABLE 162 AIRBUS: COMPANY OVERVIEW TABLE 163 AIRBUS: PRODUCTS/SERVICES/SOLUTIONS OFFERED TABLE 164 AIRBUS: DEALS TABLE 165 MICROLINK DEVICES, INC.: COMPANY OVERVIEW TABLE 166 MICROLINK DEVICES, INC.: PRODUCTS/SERVICES/SOLUTIONS OFFERED TABLE 167 MICROLINK DEVICES, INC.: OTHER DEVELOPMENTS TABLE 168 REDWIRE CORPORATION: COMPANY OVERVIEW TABLE 169 ASCENT SOLAR TECHNOLOGIES, INC.: COMPANY OVERVIEW TABLE 170 N.P.C. NEW PRODUCTION CONCEPT S.R.L.(SPACEMIND): COMPANY OVERVIEW TABLE 171 GOMSPACE: COMPANY OVERVIEW TABLE 172 AAC CLYDE SPACE: COMPANY OVERVIEW TABLE 173 SPACETECH: COMPANY OVERVIEW TABLE 174 MMA DESIGN LLC: COMPANY OVERVIEW TABLE 175 DHV TECHNOLOGY: COMPANY OVERVIEW TABLE 176 KONGSBERG NANOAVIONICS: COMPANY OVERVIEW TABLE 177 PUMPKIN, INC.: COMPANY OVERVIEW TABLE 178 ENDUROSAT: COMPANY OVERVIEW TABLE 179 SIERRA SPACE CORPORATION: COMPANY OVERVIEW TABLE 180 MPOWER TECHNOLOGY: COMPANY OVERVIEW TABLE 181 SHANGHAI FULLSUNS ENERGY TECHNOLOGY CO., LTD.: COMPANY OVERVIEW

FIGURE 1 SATELLITE SOLAR CELL MATERIALS MARKET SEGMENTATION FIGURE 2 SATELLITE SOLAR CELL MATERIALS MARKET: RESEARCH DESIGN FIGURE 3 MARKET SIZE ESTIMATION METHODOLOGY: REVENUE OF MARKET PLAYERS FIGURE 4 SATELLITE SOLAR CELL MATERIALS MARKET: DATA TRIANGULATION FIGURE 5 SILICON SEGMENT TO DOMINATE MARKET BETWEEN 2024 AND 2030 FIGURE 6 SATELLITE APPLICATION TO LEAD MARKET BETWEEN 2024 AND 2030 FIGURE 7 POLAR ORBIT SEGMENT TO LEAD MARKET BETWEEN 2024 AND 2030 FIGURE 8 NORTH AMERICA TO DOMINATE MARKET DURING FORECAST PERIOD FIGURE 9 RISING SPACE EXPLORATION AND SATELLITE DEPLOYMENTS TO DRIVE MARKET FIGURE 10 GALLIUM ARSENIDE TO BE FASTEST-GROWING SEGMENT DURING FORECAST PERIOD FIGURE 11 SATELLITE TO BE FASTEST-GROWING SEGMENT DURING FORECAST PERIOD FIGURE 12 LEO TO BE FASTEST-GROWING SEGMENT DURING FORECAST PERIOD FIGURE 13 FRANCE TO BE FASTEST-GROWING MARKET DURING FORECAST PERIOD FIGURE 14 SATELLITE SOLAR CELL MATERIALS MARKET: DRIVERS, RESTRAINTS, OPPORTUNITIES, AND CHALLENGES FIGURE 15 REVENUE SHIFT IN SATELLITE SOLAR CELL MATERIALS MARKET FIGURE 16 SATELLITE SOLAR CELL MATERIALS MARKET: AVERAGE SELLING PRICE TREND, BY REGION FIGURE 17 AVERAGE SELLING PRICE TREND OF KEY PLAYERS, BY TOP THREE MATERIAL TYPES FIGURE 18 SATELLITE SOLAR CELL MATERIALS MARKET: SUPPLY CHAIN ANALYSIS FIGURE 19 SIGNIFICANT INVESTOR DEALS AND FUNDING WITNESSED IN 2021 FIGURE 20 PATENT PUBLICATION TRENDS, 2014-2023 FIGURE 21 US JURISDICTION REGISTERED HIGHEST NUMBER OF PATENTS FIGURE 22 SAMSUNG REGISTERED HIGHEST NUMBER OF PATENTS FIGURE 23 IMPORT OF SATELLITE SOLAR CELL MATERIALS, BY COUNTRY (2019-2022) FIGURE 24 EXPORT OF SATELLITE SOLAR CELL MATERIALS, BY COUNTRY (2019-2022) FIGURE 25 SATELLITE SOLAR CELL MATERIALS MARKET: PORTER'S FIVE FORCES ANALYSIS FIGURE 26 INFLUENCE OF STAKEHOLDERS IN BUYING PROCESS FOR TOP 3 APPLICATIONS FIGURE 27 KEY BUYING CRITERIA FOR TOP 3 APPLICATIONS FIGURE 28 SILICON TO DOMINATE MARKET DURING FORECAST PERIOD FIGURE 29 POLAR ORBIT TO ACCOUNT FOR LARGEST MARKET SHARE DURING FORECAST PERIOD FIGURE 30 SATELLITES SEGMENT TO DOMINATE MARKET DURING FORECAST PERIOD FIGURE 31 ASIA PACIFIC TO BE FASTEST-GROWING MARKET DURING FORECAST PERIOD FIGURE 32 ASIA PACIFIC: SATELLITE SOLAR CELL MATERIALS MARKET SNAPSHOT FIGURE 33 EUROPE: SATELLITE SOLAR CELL MATERIALS MARKET SNAPSHOT FIGURE 34 NORTH AMERICA: SATELLITE SOLAR CELL MATERIALS MARKET SNAPSHOT FIGURE 35 RANKING OF TOP FIVE PLAYERS IN SATELLITE SOLAR CELL MATERIALS MARKET, 2023 FIGURE 36 SHARE OF KEY PLAYERS IN SATELLITE SOLAR CELL MATERIALS MARKET, 2023 FIGURE 37 REVENUE ANALYSIS OF KEY PLAYERS, 2020-2024 FIGURE 38 SATELLITE SOLAR CELL MATERIALS MARKET: COMPANY EVALUATION MATRIX, 2023 FIGURE 39 SATELLITE SOLAR CELL MATERIALS MARKET: COMPANY FOOTPRINT FIGURE 40 SATELLITE SOLAR CELL MATERIALS MARKET: STARTUPS/SMES EVALUATION MATRIX, 2022 FIGURE 41 EV/EBITDA OF KEY VENDORS FIGURE 42 YEAR-TO-DATE (YTD) PRICE TOTAL RETURN AND 5-YEAR STOCK BETA OF KEY VENDORS FIGURE 43 SPECTROLAB: COMPANY SNAPSHOT FIGURE 44 MITSUBISHI ELECTRIC CORPORATION: COMPANY SNAPSHOT FIGURE 45 NORTHROP GRUMMAN: COMPANY SNAPSHOT FIGURE 46 SHARP CORPORATION: COMPANY SNAPSHOT FIGURE 47 AZUR SPACE SOLAR POWER GMBH: COMPANY SNAPSHOT FIGURE 48 THALES ALENIA SPACE: COMPANY SNAPSHOT FIGURE 49 ROCKET LAB USA: COMPANY SNAPSHOT FIGURE 50 AIRBUS: COMPANY SNAPSHOT

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