目次
1.要旨
2.市場ダイナミクス
2.1.市場促進要因と機会
2.2.市場の阻害要因と課題
2.3.市場動向
2.3.1.XXXX
2.3.2.XXXX
2.3.3.XXXX
2.3.4.XXXX
2.3.5.XXXX
2.4.コビッド19効果
2.5.サプライチェーン分析
2.6.政策と規制の枠組み
2.7.業界専門家の見解
3.調査方法
3.1.二次調査
3.2.一次データ収集
3.3.市場形成と検証
3.4.報告書作成、品質チェック、納品
4.市場構造
4.1.市場への配慮
4.2.前提条件
4.3.制限事項
4.4.略語
4.5.情報源
4.6.定義
5.経済・人口統計
6.車載用カメラの世界市場展望
6.1.市場規模(金額ベース
6.2.地域別市場シェア
6.3.市場規模および予測、地域別
6.4.市場規模および予測:ビュータイプ別
6.5.市場規模・予測:車両タイプ別
6.6.市場規模・予測:技術別
6.7.市場規模・予測:アプリケーションタイプ別
6.8.市場規模・予測:販売チャネル別
7.北米車載カメラ市場展望
7.1.市場規模:金額別
7.2.国別市場シェア
7.3.市場規模および予測、ビュータイプ別
7.4.市場規模・予測:車両タイプ別
7.5.市場規模・予測:技術別
7.6.市場規模・予測:アプリケーションタイプ別
7.7.市場規模・予測:販売チャネル別
7.8.米国の車載カメラ市場展望
7.8.1.市場規模:金額別
7.8.2.ビュータイプ別市場規模・予測
7.8.3.車両タイプ別市場規模・予測
7.8.4.技術別の市場規模・予測
7.8.5.アプリケーションタイプ別市場規模・予測
7.8.6.販売チャネル別市場規模・予測
7.9.カナダの車載カメラ市場展望
7.9.1.金額別市場規模
7.9.2.ビュータイプ別市場規模および予測
7.9.3.車両タイプ別市場規模・予測
7.9.4.技術別の市場規模・予測
7.9.5.アプリケーションタイプ別市場規模・予測
7.9.6.販売チャネル別市場規模・予測
7.10.メキシコ車載カメラ市場展望
7.10.1.金額別市場規模
7.10.2.ビュータイプ別市場規模・予測
7.10.3.車両タイプ別市場規模・予測
7.10.4.技術別の市場規模・予測
7.10.5.アプリケーションタイプ別市場規模・予測
7.10.6.販売チャネル別の市場規模・予測
8.欧州車載カメラ市場展望
8.1.金額別市場規模
8.2.国別市場シェア
8.3.市場規模および予測、ビュータイプ別
8.4.市場規模・予測:車両タイプ別
8.5.市場規模・予測:技術別
8.6.市場規模・予測:アプリケーションタイプ別
8.7.市場規模・予測:販売チャネル別
8.8.ドイツの車載カメラ市場展望
8.8.1.市場規模:金額別
8.8.2.ビュータイプ別市場規模・予測
8.8.3.車両タイプ別市場規模・予測
8.8.4.技術別の市場規模・予測
8.8.5.アプリケーションタイプ別市場規模・予測
8.8.6.販売チャネル別市場規模・予測
8.9.イギリスの車載カメラ市場展望
8.9.1.金額別市場規模
8.9.2.ビュータイプ別市場規模および予測
8.9.3.車両タイプ別市場規模・予測
8.9.4.技術別の市場規模・予測
8.9.5.アプリケーションタイプ別市場規模・予測
8.9.6.販売チャネル別市場規模・予測
8.10.フランス車載カメラ市場展望
8.10.1.金額別市場規模
8.10.2.ビュータイプ別市場規模および予測
8.10.3.車両タイプ別市場規模・予測
8.10.4.技術別の市場規模・予測
8.10.5.アプリケーションタイプ別市場規模・予測
8.10.6.販売チャネル別の市場規模・予測
8.11.イタリアの車載カメラ市場展望
8.11.1.金額別市場規模
8.11.2.ビュータイプ別市場規模および予測
8.11.3.車両タイプ別市場規模・予測
8.11.4.技術別の市場規模・予測
8.11.5.アプリケーションタイプ別市場規模・予測
8.11.6.販売チャネル別市場規模・予測
8.12.スペインの車載カメラ市場展望
8.12.1.市場規模:金額別
8.12.2.ビュータイプ別市場規模・予測
8.12.3.車両タイプ別市場規模・予測
8.12.4.技術別の市場規模・予測
8.12.5.アプリケーションタイプ別市場規模・予測
8.12.6.販売チャネル別市場規模・予測
8.13.ロシア車載カメラ市場展望
8.13.1.金額別市場規模
8.13.2.ビュータイプ別市場規模及び予測
8.13.3.車両タイプ別市場規模・予測
8.13.4.技術別の市場規模・予測
8.13.5.アプリケーションタイプ別市場規模・予測
8.13.6.販売チャネル別の市場規模・予測
9.アジア太平洋地域の車載カメラ市場展望
9.1.金額別市場規模
9.2.国別市場シェア
9.3.市場規模および予測、ビュータイプ別
9.4.市場規模・予測:車両タイプ別
9.5.市場規模・予測:技術別
9.6.市場規模・予測:アプリケーションタイプ別
9.7.市場規模・予測:販売チャネル別
9.8.中国車載カメラ市場展望
9.8.1.市場規模:金額別
9.8.2.ビュータイプ別市場規模および予測
9.8.3.車両タイプ別市場規模・予測
9.8.4.技術別の市場規模・予測
9.8.5.アプリケーションタイプ別市場規模・予測
9.8.6.販売チャネル別市場規模・予測
9.9.日本の車載カメラ市場展望
9.9.1.金額別市場規模
9.9.2.ビュータイプ別市場規模・予測
9.9.3.車両タイプ別市場規模・予測
9.9.4.技術別の市場規模・予測
9.9.5.アプリケーションタイプ別市場規模・予測
9.9.6.販売チャネル別市場規模・予測
9.10.インドの車載カメラ市場展望
9.10.1.金額別市場規模
9.10.2.ビュータイプ別市場規模及び予測
9.10.3.車両タイプ別市場規模・予測
9.10.4.技術別の市場規模・予測
9.10.5.アプリケーションタイプ別市場規模・予測
9.10.6.販売チャネル別市場規模・予測
9.11.オーストラリア車載カメラ市場展望
9.11.1.金額別市場規模
9.11.2.ビュータイプ別市場規模および予測
9.11.3.車両タイプ別市場規模・予測
9.11.4.技術別の市場規模・予測
9.11.5.アプリケーションタイプ別市場規模・予測
9.11.6.販売チャネル別市場規模・予測
9.12.韓国の車載カメラ市場展望
9.12.1.市場規模:金額別
9.12.2.ビュータイプ別市場規模および予測
9.12.3.車両タイプ別市場規模・予測
9.12.4.技術別の市場規模・予測
9.12.5.アプリケーションタイプ別市場規模・予測
9.12.6.販売チャネル別の市場規模・予測
10.南米の車載カメラ市場展望
10.1.金額別市場規模
10.2.国別市場シェア
10.3.市場規模および予測、ビュータイプ別
10.4.市場規模および予測:車両タイプ別
10.5.市場規模・予測:技術別
10.6.市場規模・予測:アプリケーションタイプ別
10.7.市場規模・予測:販売チャネル別
10.8.ブラジルの車載カメラ市場展望
10.8.1.市場規模:金額別
10.8.2.ビュータイプ別市場規模および予測
10.8.3.車両タイプ別市場規模・予測
10.8.4.技術別の市場規模・予測
10.8.5.アプリケーションタイプ別市場規模・予測
10.8.6.販売チャネル別市場規模・予測
10.9.アルゼンチン車載カメラ市場展望
10.9.1.市場規模:金額別
10.9.2.ビュータイプ別市場規模及び予測
10.9.3.車両タイプ別市場規模・予測
10.9.4.技術別の市場規模・予測
10.9.5.アプリケーションタイプ別市場規模・予測
10.9.6.販売チャネル別市場規模・予測
10.10.コロンビアの車載カメラ市場展望
10.10.1.金額別市場規模
10.10.2.ビュータイプ別市場規模及び予測
10.10.3.車両タイプ別市場規模・予測
10.10.4.技術別の市場規模・予測
10.10.5.アプリケーションタイプ別市場規模・予測
10.10.6.販売チャネル別の市場規模・予測
11.中東・アフリカ車載カメラ市場展望
11.1.金額別市場規模
11.2.国別市場シェア
11.3.市場規模および予測、ビュータイプ別
11.4.市場規模・予測:車両タイプ別
11.5.市場規模・予測:技術別
11.6.市場規模・予測:アプリケーションタイプ別
11.7.市場規模・予測:販売チャネル別
11.8.UAE車載カメラ市場展望
11.8.1.市場規模:金額別
11.8.2.ビュータイプ別市場規模・予測
11.8.3.車両タイプ別市場規模・予測
11.8.4.技術別の市場規模・予測
11.8.5.アプリケーションタイプ別市場規模・予測
11.8.6.販売チャネル別市場規模・予測
11.9.サウジアラビアの車載カメラ市場展望
11.9.1.金額別市場規模
11.9.2.ビュータイプ別市場規模・予測
11.9.3.車両タイプ別市場規模・予測
11.9.4.技術別の市場規模・予測
11.9.5.アプリケーションタイプ別市場規模・予測
11.9.6.販売チャネル別市場規模・予測
11.10.南アフリカの車載カメラ市場展望
11.10.1.金額別市場規模
11.10.2.ビュータイプ別市場規模および予測
11.10.3.車両タイプ別市場規模・予測
11.10.4.技術別の市場規模・予測
11.10.5.アプリケーションタイプ別市場規模・予測
11.10.6.販売チャネル別の市場規模・予測
12.競争環境
12.1.競合ダッシュボード
12.2.主要企業の事業戦略
12.3.主要プレーヤーの市場シェアの洞察と分析、2022年
12.4.主要プレーヤーの市場ポジショニングマトリックス
12.5.ポーターの5つの力
12.6.会社概要
12.6.1.ロバート・ボッシュ GmbH
12.6.1.1.会社概要
12.6.1.2.会社概要
12.6.1.3.財務ハイライト
12.6.1.4.地理的洞察
12.6.1.5.事業セグメントと業績
12.6.1.6.製品ポートフォリオ
12.6.1.7.主要役員
12.6.1.8.戦略的な動きと展開
12.6.2.ゼット・エフ・フリードリヒスハーフェン
12.6.3.ヴァレオS.A.
12.6.4.コンチネンタルAG
12.6.5.マグナ・インターナショナル
12.6.6.パナソニック株式会社
12.6.7.株式会社デンソー
12.6.8.株式会社ストンカム
12.6.9.株式会社ジェンテックス
12.6.10.パイオニア株式会社
12.6.11.オムニビジョン・テクノロジーズ
12.6.12.Blaupunkt GmbH
12.6.13.ヴェオニア
12.6.14.京セラ株式会社
12.6.15.テレダイン・テクノロジーズ・インコーポレーテッド
13.戦略的提言
14.付録
14.1.よくある質問
14.2.注意事項
14.3.関連レポート
15.免責事項
図表一覧
図1:車載カメラの世界市場規模(億ドル)、地域別、2023年・2029年
図2: 市場魅力度指数(2029年地域別)
図3:市場魅力度指数(セグメント別) 2029年
図4:車載用カメラの世界市場規模(金額ベース)(2018年、2023年、2029年)(単位:億米ドル
図5:車載カメラの世界地域別市場シェア(2023年)
図6:北米の車載カメラ市場規模:金額ベース(2018年、2023年、2029F)(単位:億米ドル)
図7:北米の車載カメラ市場 国別シェア(2023年)
図8: 米国の車載カメラ市場規模(2018年、2023年、2029F) (単位:億米ドル)
図9:カナダの車載カメラ市場規模:金額(2018年、2023年、2029F)(単位:億米ドル)
図10: メキシコの車載用カメラの市場規模(2018年、2023年、2029F) (単位:億米ドル)
図11: 欧州の車載カメラ市場規模(2018年、2023年、2029F) (単位:億米ドル)
図12: 欧州車載カメラ市場 国別シェア(2023年)
図13:ドイツの車載カメラ市場規模:金額(2018年、2023年、2029F)(単位:億米ドル)
図14:イギリスの車載カメラ市場規模:金額(2018年、2023年、2029F)(単位:億米ドル)
図15:フランスの車載用カメラの市場規模(2018年、2023年、2029F)(単位:億ドル)
図16:イタリアの車載用カメラの市場規模(2018年、2023年、2029F)(単位:億ドル)
図17: スペインの車載用カメラの市場規模(2018年、2023年、2029F) (単位:億米ドル)
図18: ロシアの車載用カメラの市場規模 (2018年、2023年、2029年) (単位:億米ドル)
図19: アジア太平洋地域の車載カメラ市場規模:金額(2018年、2023年、2029年) (単位:億米ドル)
図20:アジア太平洋地域の車載カメラ市場 国別シェア(2023年)
図21: 中国の車載カメラ市場規模(2018年、2023年、2029F) (単位:億米ドル)
図22:日本の車載カメラ市場規模:金額ベース(2018年、2023年、2029F)(単位:億米ドル)
図23:インドの車載カメラ市場規模(2018年、2023年、2029F)(単位:億米ドル)
図24: オーストラリアの車載用カメラの市場規模(2018年、2023年、2029F) (単位:億米ドル)
図25:韓国の車載カメラ市場規模:金額(2018年、2023年、2029F)(単位:億米ドル)
図26:南米の車載カメラ市場規模:金額(2018年、2023年、2029F)(単位:億米ドル)
図27:南米の車載カメラ市場 国別シェア(2023年)
図28: ブラジルブラジルの車載カメラ市場規模:金額(2018年、2023年、2029F)(単位:億米ドル)
図29: アルゼンチンアルゼンチン車載カメラ市場規模:金額(2018年、2023年、2029F)(単位:億米ドル)
図30: コロンビアコロンビアの車載カメラ市場規模:金額(2018年、2023年、2029F)(単位:億米ドル)
図31:中東・アフリカ自動車用カメラ市場規模:金額(2018年、2023年、2029F)(単位:億米ドル)
図32:中東・アフリカ自動車用カメラ市場の国別シェア(2023年)
図33:UAEの車載用カメラ市場規模:金額(2018年、2023年、2029F)(単位:億米ドル)
図34:サウジアラビアの自動車用カメラ市場規模:金額(2018年、2023年、2029F) (単位:億米ドル)
図35:南アフリカの自動車用カメラ市場規模:金額(2018年、2023年、2029F) (単位:億米ドル)
図36:上位5社の競争ダッシュボード(2023年
図37:主要企業の市場シェア(2023年主要企業の市場シェア(2023年
図38:車載カメラ世界市場のポーターの5つの力
表一覧
表1:車載カメラの世界市場スナップショット(セグメント別)(2023年・2029年)(単位:億米ドル
表2:車載カメラ市場の影響要因(2023年
表3:上位10カ国の経済スナップショット(2022年
表4:その他の主要国の経済スナップショット(2022年
表5:外国通貨から米ドルへの平均為替レート
表6:車載用カメラの世界市場規模・地域別予測(2018~2029F)(単位:億米ドル)
表7:車載用カメラの世界市場規模・予測:ビュータイプ別(2018~2029F)(単位:億米ドル)
表8:車載用カメラの世界市場規模・予測:車種別(2018~2029F) (単位:億米ドル)
表9:車載用カメラの世界市場規模・予測:技術別(2018~2029F)(単位:億米ドル)
表10:車載用カメラの世界市場規模・予測:アプリケーションタイプ別(2018~2029F)(単位:億米ドル)
表11:車載用カメラの世界市場規模・予測:販売チャネル別(2018~2029F) (単位:USD Billion)
表12:北米の車載カメラ市場規模・予測:ビュータイプ別(2018~2029F)(単位:億米ドル)
表13:北米の車載カメラ市場規模・予測:車種別(2018~2029F)(単位:億米ドル)
表14:北米の車載カメラ市場規模・予測:技術別(2018~2029F)(単位:億米ドル)
表15:北米の車載カメラ市場規模・予測:アプリケーションタイプ別(2018~2029F)(単位:億米ドル)
表16:北米の車載カメラ市場規模・予測:販売チャネル別(2018~2029F) (単位:USD Billion)
表17:米国の車載カメラ市場規模・予測:ビュータイプ別(2018年~2029F)(単位:億米ドル)
表18:米国の車載カメラ市場規模・予測:車種別(2018年~2029F) (単位:億米ドル)
表19:米国の車載カメラ市場規模・予測:技術別(2018年~2029F) (単位:億米ドル)
表20:米国の車載カメラ市場規模・予測:アプリケーションタイプ別(2018年~2029F)(単位:億米ドル)
表21:アメリカ車載カメラ市場規模・予測:販売チャネル別(2018年~2029F) (単位:USD Billion)
表22:カナダの車載カメラ市場規模・予測:ビュータイプ別(2018~2029F) (単位:億米ドル)
表23:カナダの車載カメラ市場規模・予測:車種別(2018年~2029F) (単位:億米ドル)
表24:カナダの車載カメラ市場規模・予測:技術別(2018年~2029F)(単位:億米ドル)
表25:カナダの車載カメラ市場カナダの車載カメラ市場規模・予測:アプリケーションタイプ別(2018~2029F)(単位:億米ドル)
表26:カナダの車載カメラ市場規模・予測:販売チャネル別(2018~2029F) (単位:億米ドル)
表27:メキシコ車載カメラ市場規模・予測:ビュータイプ別(2018~2029F) (単位:億米ドル)
表28:メキシコ車載カメラ市場規模・予測:車種別(2018~2029F) (単位:億米ドル)
表29:メキシコの車載カメラ市場メキシコの車載カメラ市場規模・予測:技術別(2018~2029F) (単位:億米ドル)
表30:メキシコの車載カメラ市場メキシコの車載カメラ市場規模・予測:用途タイプ別(2018~2029F)(単位:億米ドル)
表31:メキシコの車載カメラ市場メキシコの車載カメラ市場規模・予測:販売チャネル別(2018~2029F) (単位:億米ドル)
表32:欧州車載カメラ市場規模・予測:ビュータイプ別(2018~2029F) (単位:億米ドル)
表33:欧州車載カメラ市場規模・予測:車種別(2018~2029F) (単位:億米ドル)
表34:欧州車載カメラ市場規模・予測:技術別(2018~2029F) (単位:億米ドル)
表35:欧州車載カメラ市場規模・予測:アプリケーションタイプ別(2018~2029F)(単位:億米ドル)
表36:欧州車載カメラ市場規模・予測:販売チャネル別(2018~2029F)(単位:億米ドル)
表37:ドイツ車載カメラ市場規模・予測:ビュータイプ別(2018~2029F) (単位:億米ドル)
表38:ドイツ車載カメラ市場規模・予測:車種別(2018~2029F) (単位:億米ドル)
表39:ドイツの車載カメラ市場ドイツの車載カメラ市場規模・予測:技術別(2018~2029F) (単位:億米ドル)
表40:ドイツの車載カメラ市場規模・予測:アプリケーションタイプ別(2018~2029F)(単位:億米ドル)
表41:ドイツの車載カメラ市場ドイツの車載カメラ市場規模・予測:販売チャネル別(2018~2029F)(単位:億米ドル)
表42:イギリス車載カメラ市場規模・予測:ビュータイプ別(2018~2029F) (単位:億米ドル)
表43:イギリスの車載用カメラ市場規模・予測:車種別(2018~2029F) (単位:億米ドル)
表44:イギリスの車載カメラ市場規模・予測:技術別(2018~2029F) (単位:億米ドル)
表45:イギリスの車載カメラ市場規模・予測:アプリケーションタイプ別(2018~2029F)(単位:億米ドル)
表46:イギリスの車載カメラ市場規模・予測:販売チャネル別(2018~2029F) (単位:億米ドル)
表 47:フランス車載カメラ市場規模・予測:ビュータイプ別(2018~2029F) (単位:億米ドル)
表48:フランス車載用カメラの市場規模・予測:車両タイプ別(2018~2029F) (単位:億米ドル)
表49:フランスの車載カメラ市場フランス車載用カメラの市場規模・予測:技術別(2018~2029F) (単位:億米ドル)
表50:フランス車載用カメラの市場規模・予測:用途タイプ別(2018~2029F)(単位:億米ドル)
表51:フランスの車載カメラ市場フランス車載用カメラの市場規模・予測:販売チャネル別(2018~2029F) (単位:億米ドル)
表 52: イタリアイタリアの車載用カメラ市場規模・予測:ビュータイプ別(2018~2029F) (単位:億米ドル)
表53:イタリアの車載用カメラ市場規模・予測:車種別(2018~2029F) (単位:億米ドル)
表54:イタリアの車載カメラ市場規模・予測:技術別(2018~2029F) (単位:億米ドル)
表55:イタリアの車載カメラ市場イタリアの車載カメラ市場規模・予測:用途タイプ別(2018~2029F) (単位:億米ドル)
表56:イタリアの車載カメラ市場イタリアの車載用カメラ市場規模・予測:販売チャネル別 (2018〜2029F) (単位:億米ドル)
表57:スペインの車載カメラ市場規模・予測:ビュータイプ別(2018~2029F) (単位:億米ドル)
表58:スペインの車載用カメラ市場規模・予測:車種別(2018~2029F) (単位:億米ドル)
表59:スペインの車載カメラ市場規模・予測:技術別(2018~2029F) (単位:億米ドル)
表60:スペインの車載カメラ市場規模・予測:用途タイプ別(2018~2029F)(単位:億米ドル)
表61:スペインの車載カメラ市場スペインの車載カメラ市場規模・予測:販売チャネル別(2018~2029F) (単位:億米ドル)
表62:ロシア車載用カメラ市場規模・予測:ビュータイプ別(2018~2029F) (単位:億米ドル)
表63:ロシアの車載カメラ市場ロシア車載用カメラ市場規模・予測:車両タイプ別 (2018~2029F)(単位:億米ドル)
表64:ロシアの車載カメラ市場ロシア車載用カメラの市場規模・予測:技術別 (2018~2029F)(単位:億米ドル)
表65:ロシアの車載カメラ市場ロシア車載カメラ市場規模・予測:アプリケーションタイプ別(2018~2029F)(単位:億米ドル)
表 66:ロシア車載カメラ市場規模・予測:販売チャネル別 (2018~2029F)(単位:億米ドル)
表67:アジア太平洋地域の車載カメラ市場規模・予測:ビュータイプ別(2018~2029F) (単位:億米ドル)
表68:アジア太平洋地域の車載用カメラの市場規模・予測:車種別(2018~2029F) (単位:億米ドル)
表69:アジア太平洋地域の車載カメラ市場規模・予測:技術別(2018~2029F)(単位:億米ドル)
表70:アジア太平洋地域の車載カメラ市場規模・予測:アプリケーションタイプ別(2018~2029F)(単位:億米ドル)
表71:アジア太平洋地域の車載カメラ市場アジア太平洋地域の車載用カメラの市場規模・予測:販売チャネル別(2018~2029F)(単位:億米ドル)
表72:中国 車載カメラ市場規模・予測:ビュータイプ別(2018~2029F) (単位:億米ドル)
表73:中国車載カメラ市場規模・予測:車両タイプ別(2018~2029F) (単位:億米ドル)
表74:中国の車載カメラ市場規模・予測:技術別(2018~2029F) (単位:億米ドル)
表75:中国の車載カメラ市場規模・予測:アプリケーションタイプ別(2018~2029F)(単位:億米ドル)
表76:中国の車載カメラ市場規模・予測:販売チャネル別(2018~2029F) (単位:億米ドル)
表77:日本の車載カメラ市場規模・予測:ビュータイプ別(2018~2029F)(単位:億米ドル)
表78:日本の車載カメラ市場規模・予測:車種別(2018~2029F) (単位:億米ドル)
表79:日本の車載カメラ市場規模・予測:技術別(2018~2029F) (単位:億米ドル)
表80:日本の車載カメラ市場日本の車載カメラ市場規模・予測:アプリケーションタイプ別(2018~2029F)(単位:億米ドル)
表81:日本の車載カメラ市場規模・予測:販売チャネル別(2018~2029F) (単位:億米ドル)
表82:インドの車載カメラ市場規模・予測:ビュータイプ別(2018~2029F)(単位:億米ドル)
表83:インドの車載カメラ市場規模・予測:車種別(2018~2029F)(単位:億米ドル)
表84:インドの車載用カメラの市場規模推移と予測インドの車載カメラ市場規模・予測:技術別(2018~2029F) (単位:億米ドル)
表85:インドの車載カメラ市場規模・予測インドの車載カメラ市場規模・予測:アプリケーションタイプ別(2018~2029F) (単位:億米ドル)
表86:インドの車載カメラ市場規模・予測:販売チャネル別(2018~2029F)(単位:億米ドル)
表87:オーストラリア車載カメラ市場規模・予測:ビュータイプ別(2018~2029F) (単位:億米ドル)
表88:オーストラリアの車載用カメラ市場規模・予測:車両タイプ別(2018年~2029F) (単位:億米ドル)
表89:オーストラリアの車載カメラ市場規模・予測:技術別(2018~2029F)(単位:億米ドル)
表90:オーストラリアの車載カメラ市場規模・予測オーストラリア車載用カメラの市場規模・予測:アプリケーションタイプ別(2018~2029F) (単位:億米ドル)
表91:オーストラリア車載カメラ市場規模・予測:販売チャネル別(2018~2029F) (単位:億米ドル)
表92:韓国 車載用カメラの市場規模・予測:ビュータイプ別(2018~2029F) (単位:億米ドル)
表93:韓国の車載カメラ市場規模・予測:車種別(2018~2029F)(単位:億米ドル)
表94:韓国の車載カメラ市場規模・予測:技術別(2018~2029F) (単位:億米ドル)
表95:韓国の車載カメラ市場規模・予測:アプリケーションタイプ別(2018~2029F) (単位:億米ドル)
表96:韓国の車載カメラ市場規模・予測:販売チャネル別(2018~2029F)(単位:億米ドル)
表 97:南米の車載カメラ市場規模・予測:ビュータイプ別(2018~2029F)(単位:億米ドル)
表98:南米の車載カメラ市場規模・予測:車種別(2018~2029F) (単位:億米ドル)
表99:南米の車載カメラ市場規模・予測:技術別(2018~2029F) (単位:億米ドル)
表100:南米の車載カメラ市場規模・予測:アプリケーションタイプ別(2018~2029F)(単位:億米ドル)
表101:南米の車載カメラ市場規模・予測:販売チャネル別(2018~2029F)(単位:億米ドル)
表102:ブラジルの車載カメラ市場規模・予測:ビュータイプ別(2018~2029F)(単位:億米ドル)
表103:ブラジル車載カメラ市場規模・予測:車種別(2018~2029F) (単位:億米ドル)
表104:ブラジルの車載カメラ市場規模・予測:技術別(2018~2029F) (単位:億米ドル)
表105:ブラジルの車載カメラ市場規模・用途タイプ別予測(2018~2029F) (単位:億米ドル)
表106:ブラジル車載カメラ市場規模・予測:販売チャネル別(2018~2029F)(単位:億米ドル)
表107:アルゼンチンアルゼンチン車載カメラ市場規模・予測:ビュータイプ別(2018~2029F)(単位:億米ドル)
表108:アルゼンチン車載カメラ市場規模・予測:車種別(2018~2029F) (単位:億米ドル)
表109:アルゼンチンの車載カメラ市場規模・予測:技術別(2018~2029F) (単位:億米ドル)
表110:アルゼンチンの車載カメラ市場規模・予測:用途タイプ別(2018~2029F)(単位:億米ドル)
表111:アルゼンチンの車載カメラ市場アルゼンチン車載カメラ市場規模・予測:販売チャネル別(2018~2029F) (単位:億米ドル)
表112:コロンビアの車載カメラ市場規模・予測:ビュータイプ別(2018~2029F)(単位:億米ドル)
表113:コロンビアの車載カメラ市場規模・予測:車種別(2018~2029F) (単位:億米ドル)
表114:コロンビアの車載カメラ市場規模推移と予測:技術別(2018~2029F) (単位:億米ドル)
表115:コロンビアの車載カメラ市場規模・予測:用途タイプ別(2018~2029F)(単位:億米ドル)
表116:コロンビアの車載カメラ市場規模推移と予測:販売チャネル別(2018~2029F) (単位:億米ドル)
表117:中東・アフリカ車載用カメラの市場規模・予測:ビュータイプ別(2018~2029F) (単位:億米ドル)
表118:中東・アフリカ自動車用カメラの市場規模・予測:車種別(2018~2029F)(単位:億米ドル)
表119:中東・アフリカの車載カメラ市場規模・予測:技術別(2018~2029F)(単位:億米ドル)
表120:中東・アフリカ:車載用カメラの市場規模・予測:用途タイプ別(2018~2029F)(単位:億米ドル)
表121:中東・アフリカ自動車用カメラの市場規模・予測:販売チャネル別(2018~2029F) (単位:億米ドル)
表122:アラブ首長国連邦の車載用カメラ市場規模・予測:ビュータイプ別(2018~2029F)(単位:億米ドル)
表123:アラブ首長国連邦の車載カメラ市場アラブ首長国連邦の車載用カメラ市場規模・予測:車両タイプ別(2018~2029F) (単位:億米ドル)
表124:アラブ首長国連邦の車載カメラ市場アラブ首長国連邦の車載用カメラ市場規模・予測:技術別(2018~2029F) (単位:億米ドル)
表125:アラブ首長国連邦の車載カメラ市場アラブ首長国連邦の車載用カメラ市場規模・予測:用途タイプ別(2018~2029F) (単位:億米ドル)
表126:アラブ首長国連邦の車載カメラ市場アラブ首長国連邦の自動車用カメラ市場規模・予測:販売チャネル別(2018~2029F) (単位:億米ドル)
表127:サウジアラビアの車載カメラ市場規模・予測:ビュータイプ別(2018~2029F)(単位:億米ドル)
表128:サウジアラビアの車載用カメラ市場規模・予測:車種別(2018~2029F) (単位:億米ドル)
表129:サウジアラビアの車載カメラ市場サウジアラビアの車載カメラ市場規模・予測:技術別(2018~2029F) (単位:億米ドル)
表130:サウジアラビアの車載カメラ市場規模・予測:用途タイプ別(2018~2029F)(単位:億米ドル)
表131:サウジアラビアの車載カメラ市場規模・予測:販売チャネル別(2018~2029F) (単位:億米ドル)
表132:南アフリカの車載用カメラ市場規模・予測:ビュータイプ別(2018~2029F)(単位:億米ドル)
表133:南アフリカの車載用カメラ市場規模・予測:車種別(2018~2029F)(単位:億米ドル)
表134:南アフリカの車載カメラ市場南アフリカの車載カメラ市場規模・予測:技術別(2018~2029F) (単位:億米ドル)
表135:南アフリカの車載カメラ市場規模・予測:アプリケーションタイプ別(2018~2029F)(単位:億米ドル)
表136:南アフリカの車載用カメラ市場規模・予測:販売チャネル別(2018~2029F) (単位:億米ドル)
According to the research report "Global Automotive Camera Market Outlook, 2029," published by Bonafide Research, the Global Automotive Camera market was valued at more than USD 9.68 Billion in 2023, and expected to reach a market size of more than USD 18.68 Billion by 2029 with the CAGR of 11.83%. Factors such as increasing penetration of safety systems in vehicles and a high degree of competition among vendors for providing value-added services and products that cater to customer needs are likely to contribute to enhanced development in the market. However, high installation costs and malfunctioning camera components like sensors, modules, etc., are projected to act as potential challenges over the forecast period. In March 2020, BMW launched plug-in hybrid 330e and 330e drive. Its ADAS includes active cruise control with stop and go, which can accelerate and slow automatically to maintain the desired speed set by the driver. It also has standard features such as active guard, frontal collision warning, city collision mitigation, and lane departure warning. Autonomous vehicles will heavily rely on automotive cameras as a crucial component of their sensor suite, providing high-resolution images and video feeds that enable the vehicle's AI system to detect and respond to its surroundings. Automotive cameras will play a vital role in enhancing the safety and efficiency of autonomous vehicles by providing a 360-degree view of the vehicle's surroundings, detecting obstacles, and enabling features like lane departure warning, blind spot detection, and automatic emergency braking. The integration of cameras with AI algorithms will enable autonomous vehicles to interpret visual data, make informed decisions, and react accordingly, ensuring a safe and smooth driving experience. In April 2024, Hyundai (South Korea) announced plans to conduct a major self-driving test in South Korea, featuring a L4 autonomous vehicle based on the Hyundai Ioniq 5. The test will cover 37.3 miles in Incheon, generating valuable data for commercialization and mass production. The Ioniq 5 is equipped with a mirror camera and a monocular camera, among other cameras, from Hyundai Mobis (South Korea).
Market Drivers
• Increasing Demand for Advanced Driver Assistance Systems: The primary driver of the automotive camera market is the escalating demand for ADAS, which includes features such as lane departure warning, collision avoidance, and blind spot detection. These systems rely heavily on camera technology to enhance vehicle safety and improve the driving experience. Governments worldwide are implementing stringent safety regulations that mandate the inclusion of ADAS features in new vehicles, leading to a surge in the adoption of automotive cameras. For instance, regulations requiring rear-view cameras have become common, further boosting market growth. As consumers become more safety-conscious, the demand for vehicles equipped with these advanced systems is expected to continue rising, thereby driving the automotive camera market.
• Rise of Autonomous Vehicles: The second major driver is the rapid development and testing of autonomous vehicles, which rely on sophisticated camera systems for perception and object detection. Autonomous vehicles require high-resolution cameras to navigate complex environments and make real-time decisions. As the automotive industry progresses towards fully autonomous driving, the demand for advanced camera technologies will witness substantial growth. This shift towards automation is prompting manufacturers to invest heavily in camera systems that can provide the necessary data for safe and efficient vehicle operation.
Market Challenges
• Regulatory Compliance: While regulatory mandates are a significant driver of growth, they also present challenges for manufacturers. Compliance with various safety standards can be complex and costly, particularly for companies operating in multiple regions with differing regulations. Ensuring that automotive cameras meet these stringent requirements while maintaining affordability is a critical challenge for OEMs and suppliers in the industry.
• Technological Integration: The integration of advanced camera systems with existing vehicle architectures poses another challenge. As vehicles become more technologically sophisticated, ensuring seamless communication between cameras and other vehicle systems (such as ADAS and infotainment) is essential. This requires significant investment in research and development, as well as collaboration among various stakeholders, including camera manufacturers, automotive OEMs, and software developers.
Market Trends
Advancements in Camera Technology: Technological advancements are transforming the automotive camera market. Innovations such as higher resolution cameras, enhanced low-light performance, and advanced image processing capabilities are becoming standard. These improvements enable better object detection, recognition, and tracking, thereby enhancing the overall safety and performance of vehicles. The development of AI-based cameras is also gaining traction, as they can analyze real-time data to improve the functionality of ADAS and support autonomous driving capabilities.
Growing Importance of Safety Features: There is a notable trend towards prioritizing safety features in vehicles, driven by consumer demand and regulatory pressures. As consumers become more aware of the benefits of advanced safety technologies, they are more likely to choose vehicles equipped with these features. This trend is particularly evident in the increasing adoption of ADAS technologies, which rely on automotive cameras for effective operation. Consequently, manufacturers are focusing on integrating more safety features into their vehicles to meet consumer expectations and comply with regulatory requirements.
Based on the report, the view type is segmented into Rear View, Front View, Side View and Surround View. Rear View leads the market due to regulatory mandates aimed at enhancing vehicle safety.
The rise of rear-view cameras in the automotive industry can be largely attributed to significant regulatory changes implemented globally to improve vehicle safety. Governments have recognized the alarming statistics surrounding back-over incidents, which often result in serious injuries or fatalities, particularly involving children and the elderly. In response, many countries, including the United States, have enacted laws requiring all new vehicles to be equipped with rear-view cameras. For example, the National Highway Traffic Safety Administration (NHTSA) in the U.S. mandated that all passenger vehicles must include rear-view cameras by 2018. This regulation has not only standardized safety features across the automotive landscape but has also created a robust market for rear-view camera systems. The result is a surge in demand as manufacturers are compelled to integrate these systems into their vehicles to comply with safety standards. The growing trend toward electric and autonomous vehicles (EVs and AVs) is another factor driving the rear-view camera market. As these vehicles often come equipped with sophisticated ADAS, rear-view cameras play a crucial role in enhancing safety and supporting automated functions like self-parking and obstacle detection. The integration of rear-view cameras with other safety features, such as parking sensors and automated parking systems, has made them an essential component of modern vehicles. This convergence of technologies not only improves vehicle safety but also enhances the overall functionality of the vehicle, making it more appealing to consumers.
Based on the report, the vehicle type is segmented into Passenger Car, Light Commercial Vehicle, Electric Vehicles (EVs), Heavy Commercial Vehicle. Passenger Car leads due to the increasing adoption of advanced driver assistance systems and the growing consumer demand.
The integration of ADAS technologies in passenger vehicles has become increasingly prevalent in recent years. These systems, which rely heavily on camera inputs, provide a wide range of safety and convenience features, such as lane departure warning, blind spot detection, forward collision warning, and parking assistance. As consumers become more safety-conscious, the demand for vehicles equipped with ADAS has surged, driving the adoption of automotive cameras in the passenger car segment. Moreover, the growing trend towards electric and autonomous vehicles (EVs and AVs) has further boosted the demand for automotive cameras in passenger cars. EVs and AVs often come equipped with sophisticated ADAS, which require multiple cameras strategically positioned around the vehicle to provide comprehensive situational awareness. As the adoption of EVs and AVs continues to rise, the need for advanced camera systems in passenger vehicles will only increase. The increasing affordability of advanced safety features has made them more accessible to a broader range of consumers. As automotive manufacturers continue to integrate ADAS into their mid-range and entry-level passenger car models, the market for automotive cameras has expanded significantly. This trend has been particularly evident in emerging markets, where the growing middle-class population and rising disposable incomes have fueled the demand for vehicles with advanced safety features. Many countries have enacted laws requiring the installation of rear-view cameras in all new vehicles to enhance safety and reduce the risk of back-over incidents. These regulations have standardized the inclusion of automotive cameras across the passenger car segment, contributing to its market dominance.
Based on the report, the technology type is segmented into Digital, Infrared and Thermal. Digital leads the market due to its ability to provide high-resolution imaging, advanced processing capabilities, and essential integration with advanced driver assistance systems.
The automotive camera market is rapidly evolving, with digital technology at its forefront, primarily driven by the increasing demand for safety and driver assistance features in vehicles. Digital cameras offer significant advantages over traditional analog systems, including superior image quality, faster processing speeds, and enhanced functionality. These features are crucial for the effective operation of ADAS, which rely on real-time data from cameras to assist drivers in various situations, such as parking, lane keeping, and collision avoidance. As consumers become more safety-conscious, the demand for vehicles equipped with these advanced systems has surged, propelling the growth of digital automotive cameras. For instance, in the United States, the NHTSA has mandated that all new passenger vehicles must include rear-view cameras to reduce the risk of back-over accidents. This regulatory push has created a robust market for digital cameras, as they are the preferred choice for meeting these safety standards. Recent innovations have led to the development of high-resolution cameras capable of capturing detailed images in various lighting conditions, including low-light environments. These advancements enhance the effectiveness of ADAS, enabling features such as night vision and improved object detection. For example, the introduction of new CMOS image sensors with higher megapixel counts allows for better clarity and precision in monitoring the vehicle's surroundings. As manufacturers continue to invest in research and development, the capabilities of digital cameras are expected to expand further, solidifying their position in the automotive camera market.
Based on the report, the application type is segmented into ADAS (Lane Assistance, Collision Avoidance, and Blind Spot Detection), Park Assist System and Others (Driver Monitoring Systems).
ADAS leads due to the increasing emphasis on vehicle safety, regulatory mandates, and consumer demand for enhanced driving experiences.
The automotive landscape is undergoing a transformative shift, with ADAS technologies becoming a cornerstone of modern vehicle design and functionality. This shift is largely driven by the urgent need to improve road safety, as statistics indicate that a significant percentage of traffic accidents are attributable to human error. ADAS aims to mitigate these risks by utilizing camera systems to provide real-time data and feedback to drivers, enhancing their situational awareness and enabling proactive safety measures. For instance, lane assistance systems utilize cameras to monitor lane markings and provide alerts or corrective steering inputs if the vehicle begins to drift out of its lane. Similarly, collision avoidance systems rely on cameras to detect potential hazards, triggering automatic braking or evasive maneuvers to prevent accidents. This proactive approach to safety is resonating with consumers, who are increasingly prioritizing safety features when purchasing vehicles. Modern automotive cameras are equipped with high-resolution imaging capabilities, advanced processing algorithms, and enhanced connectivity features that allow them to operate effectively in various environmental conditions. These innovations enable cameras to perform complex tasks such as recognizing traffic signs, detecting pedestrians, and assessing distances to other vehicles with remarkable accuracy. The rising trend of electrification and automation in the automotive sector is driving the demand for ADAS technologies. As manufacturers develop electric and autonomous vehicles, the need for sophisticated camera systems that can facilitate safe and efficient driving becomes paramount.
Based on the report, the distribution channel is segmented into OEM and Aftermarket. OEM leads the market due to their ability to integrate advanced camera systems seamlessly into vehicle designs, ensuring optimal performance and safety.
OEMs play a crucial role in driving the growth of the automotive camera market by leveraging their expertise in vehicle engineering and design. They work closely with camera manufacturers and technology providers to develop customized solutions that cater to the specific needs of their vehicle platforms. This collaboration allows OEMs to incorporate advanced camera systems into their vehicles in a way that enhances overall functionality, safety, and user experience. For instance, OEMs can strategically position cameras around the vehicle to provide comprehensive situational awareness, enabling features like blind spot detection, lane departure warning, and 360-degree surround view parking assistance. By optimizing the placement and integration of these cameras, OEMs ensure that they operate effectively and provide reliable data to the vehicle's ADAS and autonomous driving systems. This level of integration is essential for achieving the desired performance and safety standards set by OEMs and regulatory bodies. OEMs also contribute to the growth of the automotive camera market by investing in research and development to stay ahead of the curve. They work closely with camera manufacturers and technology providers to develop next-generation camera systems that offer enhanced performance, reliability, and functionality. For example, OEMs are exploring the integration of artificial intelligence (AI) and machine learning algorithms into camera systems to enable advanced object recognition, pedestrian detection, and traffic sign interpretation. These advancements not only improve the effectiveness of ADAS but also pave the way for more sophisticated autonomous driving capabilities. By continuously innovating and pushing the boundaries of what automotive cameras can achieve, OEMs are shaping the future of the industry and driving the adoption of these technologies.
Asia Pacific is leading the automotive camera industry primarily due to its robust vehicle production capabilities, increasing adoption of advanced safety systems, and significant government support for automotive innovation.
The Asia Pacific region, particularly countries like China, Japan, and South Korea, is at the forefront of the automotive camera market, projected to be the largest by 2030. This dominance can be attributed to several interrelated factors that create a conducive environment for growth in this sector. First and foremost, the sheer volume of vehicle production in Asia Pacific is unparalleled. China, as the largest automotive market globally, has seen a consistent rise in vehicle sales, with millions of passenger cars sold annually. This high production rate naturally leads to an increased demand for automotive cameras, which are integral components in modern vehicles equipped with advanced driver-assistance systems (ADAS) and safety features. As consumers become more safety-conscious, the demand for vehicles equipped with advanced safety technologies, such as lane departure warnings, collision avoidance systems, and parking assist features, has surged. This shift in consumer preference has prompted automotive manufacturers to integrate more sophisticated camera systems into their vehicles. For instance, the implementation of active safety systems, which utilize cameras for functions like blind spot detection and adaptive cruise control, has become a standard offering in many new models. The Asia Pacific automotive camera market is particularly influenced by the increasing installation of these safety systems in mid-range vehicles, making advanced safety technology accessible to a broader audience.For example, China has upgraded its New Car Assessment Program (NCAP) to enhance safety standards, which has directly influenced the demand for automotive cameras. The regulatory environment encourages manufacturers to innovate and adopt advanced technologies, thereby fostering a competitive landscape that benefits the automotive camera industry.
• In March 2024, ZF Friedrichshafen AG (Germany) acquired a 6% stake in the South Korean software company StradVision, an artificial intelligence-based vision processing technology for autonomous vehicles and ADAS. The acquisition extends ZF’s autonomous driving perception and sensor fusion capabilities.
• In January 2024, Valeo (France) collaborated with Teledyne FLIR LLC (US), part of Teledyne Technologies Incorporated, to bring thermal imaging technology to the automotive industry to enhance the safety of road users.
• In January 2024, Continental AG (Germany) unveiled Face Authentication Display, a two-stage access control system based on biometric user recognition, which uses special camera systems mounted externally on the vehicle’s B-pillar and behind the driver display console. With biometric face authentication, the vehicle unlocks and starts upon detecting a registered user while enabling driver monitoring for enhanced safety.
• In December 2023, Valeo (France) launched the first remanufactured windshield-mounted video camera at Valeo's Circular Electronics Lab.
• In October 2023, Denso Corporation (Japan) collaborated with Koito Manufacturing Co., Ltd. (Japan) to develop a system to improve the object recognition rate of vehicle image sensors at night.
• In September 2023, Robert Bosch GmbH (Germany) launched standalone camera heads at the IAA Mobility 2023. It enables ADAS functionality from SAE levels 0 to 4 and includes 3 and 8 MP versions that are scalable up to 12 MP. The standalone camera heads include a tele camera, front and rear cameras, a camera wing-back, a camera wing front, and a new range camera.
Considered in this report
• Historic year: 2018
• Base year: 2023
• Estimated year: 2024
• Forecast year: 2029
Aspects covered in this report
• Automotive Camera market Outlook with its value and forecast along with its segments
• Various drivers and challenges
• On-going trends and developments
• Top profiled companies
• Strategic recommendation
By View Type
• Rear View
• Front View
• Side View
• Surround View
By Vehicle Type
• Passenger Car
• Light Commercial Vehicle
• Electric Vehicles (EVs)
• Heavy Commercial Vehicle
By Technology
• Digital
• Infrared
• Thermal
By Application Type
• ADAS (Lane Assistance, Collision Avoidance, Blind Spot Detection)
• Park Assist System
• Others (Driver Monitoring Systems)
By Sales Channel
• OEMs
• Aftermarket
The approach of the report:
This report consists of a combined approach of primary and secondary research. Initially, secondary research was used to get an understanding of the market and list the companies that are present in it. The secondary research consists of third-party sources such as press releases, annual reports of companies, and government-generated reports and databases. After gathering the data from secondary sources, primary research was conducted by conducting telephone interviews with the leading players about how the market is functioning and then conducting trade calls with dealers and distributors of the market. Post this; we have started making primary calls to consumers by equally segmenting them in regional aspects, tier aspects, age group, and gender. Once we have primary data with us, we can start verifying the details obtained from secondary sources.
Intended audience
This report can be useful to industry consultants, manufacturers, suppliers, associations, and organizations related to the Automotive Camera industry, government bodies, and other stakeholders to align their market-centric strategies. In addition to marketing and presentations, it will also increase competitive knowledge about the industry.
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