スイッチギアの世界市場概観、2023-28年Global Switch Gear Market Overview, 2023-28 スイッチギアは、電流の流れを制御し、過負荷や短絡から回路を保護する電気機器の総称です。サーキットブレーカ、ヒューズ、ディスコネクトスイッチ、リレーなど、さまざまなコンポーネントが含まれます。これら... もっと見る
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サマリースイッチギアは、電流の流れを制御し、過負荷や短絡から回路を保護する電気機器の総称です。サーキットブレーカ、ヒューズ、ディスコネクトスイッチ、リレーなど、さまざまなコンポーネントが含まれます。これらのコンポーネントが連携して配電を調整し、電力が安全に目的地に届くようにします。スイッチギヤシステムは、故障した回路を隔離し、火災や感電死などの電気事故を防止することで、電気安全を確保するために極めて重要です。電力供給の信頼性は、スイッチギヤの品質と性能に左右されます。家庭、企業、病院、データセンター、産業にとって、中断のない電力供給は不可欠です。送電網では、スイッチギアは発電所から消費者への配電、制御、保護に不可欠です。スイッチギヤ業界は、安全で効率的な配電を確保する上で重要な役割を果たしています。家庭や企業から産業やインフラに至るまで、配電の中核をなすスイッチギヤシステムは、電気障害から保護し、エネルギーのシームレスな流れを確保します。世界的な電力需要の増加に伴い、スイッチギヤ業界は21世紀の課題に対応するために急速に進化しています。モノのインターネット(IoT)が加わったことで、スイッチギアはよりインテリジェントになり、潜在的な故障を予測し、事前に是正措置を取るようになっている。その他の利点としては、リアルタイムの情報と可視性の向上が挙げられ、システム全体の信頼性と効率を高めている。住宅や商業ビルでは多くの電力を使用しており、スマート・スイッチギアを追加することでエネルギーを節約し、電気料金を大幅に削減することができる。例えばシュナイダーエレクトリックは、スマートグリッドに対応し、より信頼性が高く、安全で、使い方が簡単な高圧開閉器の製品ラインを発表した。エネルギー需要の増加に伴い、信頼性が高く安定した送配電ネットワークが不可欠となっている。停電の減少や老朽化した電力系統インフラの復旧を目指す世界各地の新たな政策は、市場に潜在的な成長機会をもたらしている。温度、圧力、湿度などの極端な外部条件や地下水漏れは、屋外に配備された電気開閉装置の性能に影響を及ぼす可能性のある重要な要素の一部である。その結果、規制機関は大気条件に対処するための厳しい規範と要件を策定し、信頼性と実現可能性を高めることになった。Bonafide Research社の調査レポート「スイッチギヤの世界市場概要、2023-28年」によると、市場は2022年の1,264億4,000万米ドルから2028年には1,750億米ドルを超えると予測されている。同市場は2023-28年までに年平均成長率6.02%で成長すると予測されている。複雑な変電所では、スイッチギヤ機器は基本的に揮発性の高い環境条件下での可変動作電圧に耐えるために採用される。また、安全で信頼性の高い運転のための発電所など、新しい産業構造の開発が市場の成長を促進すると予想される。再生可能エネルギー開発への投資の増加や、新技術を支援する有利な政府政策が、業界の状況を押し上げると予想される。スイッチギアは、老朽化し使い過ぎた機器が故障しそうになると、監視技術を使って保守担当者に警告を発し、問題や改善の機会に関するデータをリアルタイムで提供することで、保守担当者がより適切な判断を下せるようにする。上記の限界以外にも、温度や湿度などの環境変数や地下水の浸透など、特に屋外に設置されたスイッチギヤの電気ネットワークの動作に影響を与える可能性のあるものがあります。スイッチギアは、住宅、商業、工業、公益事業などさまざまな用途で、運用の安全性、費用対効果、継続性を確保するために利用されています。スイッチギアは一般的に低、中、高電圧システムで使用され、負荷センターと発電所間の不安定な動作電圧ネットワークに対応しています。変流器、変圧器、アイソレータ、スイッチ、リレー、サーキットブレーカ、ヒューズ、その他の装置は、スイッチング装置の一例である。送電・配電ネットワークの規模が大きくなるにつれて、スイッチング機器の必要性も高まっている。地方における電気の急速な発展は、エネルギー発電の増加と相まって、幅広い電気機器の需要を増大させた。遠隔地へのエネルギー供給に対する地域政府の目標の増加や、この産業への投資の増加が、市場拡大に寄与すると予測されるスイッチギヤ市場の主な動向である。スイッチギヤ産業は、エネルギーインフラや再生可能エネルギー源への投資によって活性化されている。発展途上のアジア太平洋諸国における農村インフラ投資が市場価値を押し上げると予想されている。例えば、Saubhagya Schemeとしても知られるPradhan Mantri Sahaj Bijli Har Ghar Yojanaは、すべての家庭に電力を供給することを目的としたインド政府の取り組みである。このような開発が開閉装置の需要を牽引している。地域別では、中東・アフリカ(MEA)地域が世界のスイッチギヤ市場で大きな成長を遂げている。MEA地域では、都市化、工業化、人口増加の増加により、大幅なインフラ整備が行われている。新しいビル、商業施設、産業施設、発電所の建設に伴い、スイッチギアを含む信頼性が高く効率的な配電システムへの需要が高まっている。MEA地域では、人口と産業基盤の拡大により電力需要が増大している。電力需要の増加に伴い、信頼性の高い配電を確保するための堅牢な配電盤システムに対する需要も増加している。MEA地域の多くの国は、太陽光発電や風力発電などの再生可能エネルギー源に投資しています。開閉器は、こうした断続的なエネルギー源を送電網に統合し、クリーンなエネルギーの安定的かつ効率的な配電を確保する上で重要な役割を果たしています。MEA地域の各国政府は、エネルギーインフラを改善し、電化率を高めるための政策やイニシアチブを実施しています。これには、エネルギー効率と安全基準を満たすための、信頼性の高い最新のスイッチギア・ソリューションへの投資も含まれる。MEA地域では、石油・ガス、製造、建設などさまざまな産業が成長している。これらの産業は高度な電気インフラを必要とするため、高品質のスイッチギアが不可欠です。MEA地域の農村部や遠隔地では、電化の取り組みが進められており、以前は送電網がなかった地域にも電力が供給されています。開閉器システムはこうした電化プロジェクトに不可欠であり、安全で信頼性の高い配電を保証している。MEA地域の一部では政治が安定しているため、外国からの投資や国際企業が集まっている。その結果、信頼性の高い電気インフラとスイッチギヤの需要が高まっている。環境の持続可能性に対する意識が高まり、温室効果ガスの排出を削減する必要性が高まっているため、国際的な環境規制に準拠したガス絶縁開閉装置(GIS)など、環境に優しい開閉装置技術の採用が進んでいる。空気絶縁開閉装置(AIS)は、いくつかの魅力的な利点があるため、世界の開閉装置市場で成長を遂げている。まず、AISは費用対効果が高いことで有名であり、配電のニーズに対して経済的なソリューションを求める公益事業や産業にとって魅力的な選択肢となっている。さらに、AISは他の代替品とは異なり、絶縁媒体として温室効果ガスを使用しないため、環境に優しい。これは、持続可能で環境に優しい慣行への世界的なシフトと一致しており、二酸化炭素排出量の削減を懸念する人々にとってAISは好ましい選択肢となっています。AISはまた、その信頼性でも知られており、さまざまな用途で信頼できる性能を発揮してきた長い実績が、その成長にさらに貢献している。設置やメンテナンスが簡単で、複雑な部品がないため、ユーザーフレンドリーで利用しやすい選択肢となっている。さらに、AISは極端な温度から過酷な屋外環境まで、幅広い環境条件に耐えることができるため、汎用性が高く、さまざまな用途に適している。これらすべての要因が相まって、配電のための信頼性が高く、コスト効率が高く、環境に優しいソリューションとして、世界市場で空気絶縁開閉器の採用が増加している。中電圧開閉器は、いくつかの理由から世界の開閉器市場で大きな成長を遂げている。世界的な電力需要の増加に伴い、信頼性が高く効率的な配電システムが求められています。通常1kVから40kVの電圧範囲で動作する中電圧スイッチギアは、様々な産業、商業ビル、インフラへの安全で安定した配電を確保する上で重要な役割を果たしている。再生可能エネルギー源の導入が進み、スマートグリッドが開発されるにつれて、中電圧開閉器は、太陽光や風力などの電源からの変動する電力供給を統合・管理するために不可欠なものとなっています。さらに、エネルギー効率と環境への配慮が重視され、より環境に優しい高圧開閉器ソリューションの開発が進められています。送電網の信頼性を高め、漏電から保護し、エネ ルギー損失を削減できることから、持続可能で堅牢なインテ リジェント配電ソリューションを求める電力会社や産業界に とって好ましい選択肢となっており、これが世界規模での高圧ス イッチギア市場の成長に寄与している。主な理由の1つは、特に不動産が割高な人口密度の高い都市部では、スペースを最適化する必要があることです。屋内スイッチギアはスペース効率が高く、専用の屋外構造物を必要としないため、スペースが限られている公益事業や産業にとって魅力的な選択肢となる。さらに、屋内開閉器は、天候、汚染、破壊行為などの環境要因に対して優れた保護を提供し、機器の信頼性と寿命を保証します。また、外部要素から保護されているため、保守や操作も容易です。さらに、極端な天候や不正アクセスなど、潜在的に危険な状況にさらされる機会を最小限に抑えることができるため、安全性とセキュリティが世界的に重視されており、屋内開閉器の成長に拍車をかけている。屋内開閉器システムの柔軟性と適応性は、その優れた保護性能と信頼性と相まって、さまざまな用途に好まれる選択肢として位置付けられ、世界の開閉器市場における成長を後押ししている。世界の開閉器市場における産業用開閉器の成長は、さまざまな分野で産業化と自動化が進んでいることに起因している。産業界の電力への依存度が高まり、信頼性が高く効率的な配電システムが重要となっている。産業用スイッチギアは、産業環境特有の要求を満たすように設計されており、堅牢な構造、高い耐障害性、高度な保護メカニズムなどの機能を備えています。産業の進化と拡大に伴い、高負荷に対応し、ダウンタイムを最小限に抑えるスイッチギヤへの需要が急増しています。さらに、スマート技術の統合とインダストリー4.0のコンセプトの採用により、産業用アプリケーションスイッチギアは、効率的で接続された産業プロセスに対するニーズの高まりに合わせて、強化された監視、診断、予測メンテナンス機能を提供するように進化しています。さらに、業界の規制と安全基準はより厳しくなっており、最新かつ準拠したスイッチギアソリューションの採用を促進している。全体として、産業界における電力への依存度の高まりと、信頼性と安全性への要求が、世界市場における産業用スイッチギヤの成長を後押ししている:急速な都市化、特に新興国では、配電網を含む新しいインフラの必要性が高まっている。都市の拡大とスマートシティの開発には、信頼性が高く効率的な電気システムが必要である。そのため、重要なインフラを支える最新のスイッチギヤ技術に対する需要が高まっている:輸送の電化:電気自動車(EV)や充電インフラを含む輸送の電化は、開閉器産業にとって重要な原動力である。EVの普及と充電インフラの必要性の高まりにより、電気グリッドのアップグレードと、グリッドへの負荷と需要の増加を管理するための高度なスイッチギアの統合が必要となる:COVID-19パンデミックや自然災害のような事象によって引き起こされるような世界的なサプライチェーンの混乱は、スイッチギア産業に制約をもたらす可能性がある。原材料、部品、製造施設の入手が困難になると、生産の遅れやコスト増につながる可能性がある:インフラの老朽化と改修の課題:多くの地域では、既存の電気インフ ラが老朽化し、交換や改修の必要性が生じている。既存施設のスイッチギヤのアップグレードや交換は、コスト高で複雑なものになる可能性があり、ダウンタイムの延長や、サービスの中断を最小限に抑えるための慎重な計画が必要になることが多い:持続可能性は、スイッチギヤ業界の顕著な傾向である。これには、より環境に優しい絶縁ガスや絶縁材料の開発を通じて、スイッチギアが環境に与える影響を低減する取り組みが含まれる。また、温室効果ガスの排出を最小限に抑えるため、エネルギー効率と開閉器システムにおける損失の削減にも焦点が当てられている:サイバーセキュリティと強靭性:開閉装置システムのデジタル化と接続性の増大に伴い、業界ではサイバーセキュリティ対策を強化する傾向が見られる。サイバー脅威から開閉装置を保護し、サイバー攻撃に対する重要インフラの回復力を確保することが、関心の高まりとなっている。COVID-19の影響COVID-19の大流行は、スイッチギヤ業界にいくつかの重大な影響を与えた。パンデミックの初期段階において、業界はサプライチェーンの混乱に直面し、操業停止や制限によって部品や材料の生産と納入に遅れが生じた。このような混乱は、安全衛生対策による労働力の減少も相まって、開閉器メーカーに難題をもたらす結果となった。さらに、建設やインフラを含む様々な分野でのプロジェク トの遅延やキャンセルにより、新規設置や投資が減少し、スイッチギ ア製品の需要に影響を与えた。しかし、パンデミックによって信頼性と回復力のある電気インフラの重要性が浮き彫りになったため、電力供給の継続性を確保することに重点が置かれるようになり、業界ではデジタル・スマートグリッド技術の採用が推進された。スイッチギヤ・メーカーはまた、施錠中の物理的な現場訪問の限界に対処するため、遠隔監視とメンテナンス・ソリューションへの関心の高まりに直面した。競争環境市場の主要プレーヤーは、市場での地位を維持・強化するため、さまざまな戦略的取り組みに積極的に取り組んでいる。エネルギー効率が高く、コンパクトで環境に優しい製品へのニーズなど、市場の進化する需要に応える必要性から、製品の革新と改良のための研究開発に多額の投資を行っている。各社はまた、公益事業、産業、商業、住宅など、さまざまな分野にわたる幅広い用途に対応するため、製品ポートフォリオを拡大している。スマートグリッドや再生可能エネルギーの導入拡大に対応するため、先進的なシステムを開発している企業もある。戦略的提携やパートナーシップも一般的で、各社は互いの強みを生かし、地理的範囲を拡大し、新市場に参入している。M&Aもまた、市場シェアの拡大、新技術の獲得、競争力の強化のために用いられている戦略である。主な市場プレーヤーには、シーメンスAG、ABB、シュナイダーエレクトリックSE、イートン・コーポレーションplc、三菱電機株式会社、株式会社東芝、ゼネラル・エレクトリック・カンパニー、株式会社日立製作所、現代電気株式会社、株式会社ヒョースンコーポレーションなどがある、Hyundai Electric, Hyosung Corporation, CG Power and Industrial Solutions Limited, Hubbell Incorporated, Powell Industries, Legrand SA, Larsen & Toubro Limited, Havells India Ltd, 富士電機, WEG SA, Panasonic Holdings Corporation and Bharat Heavy Electrical LimitedKey Developments- 2023年4月、Havells India Ltd.はスウェーデンの技術系新興企業Blixt Tech ABとの戦略的提携を発表し、ソリッド・ステート・サーキット・ブレーカー(SSCB)技術を国内市場に投入する。- 2023年4月、シーメンスは8DAB 40で持続可能なブルーGISポートフォリオを拡大した。40.5kVまでの一次配電ネットワーク用の開閉器は、GWP<1のクリーンエアーを絶縁媒体として使用し、気候に優しく、フッ素系ガスを全く使用していない。- 2023年2月、Toshiba Transmission & Distribution Systems Private Limited(TTDI)は、ゴアのXeldemにある最新の2X500MVA変電所、AlamuruとKodamuruにある400kV電圧レベルの太陽光・風力再生可能プロジェクトのプーリング変電所までの送配電網の開発・強化向けに、400kVの23ユニットと220kVの9ユニットのガス絶縁開閉装置を受注したと発表した。- 2023年2月、ABBインディアはナーシクにガス絶縁開閉装置を製造する工場を稼動させると発表した。同社は、配電、スマートシティ、データセンター、輸送(地下鉄、鉄道)、トンネル、港湾、高速道路、その他のインフラ開発など、さまざまな業界の顧客にサービスを提供することを目指している。新施設では、一次および二次GISの製造が予定されている。本レポートで考察されている地域:-地理的:地域:世界基準年:2022年基準年:2022年2023年- 2028年予測2028年当レポートの対象範囲:-スイッチギヤの世界市場、その価値と予測、セグメント-様々な促進要因と課題-現在進行中のトレンドと開発-トップ企業-戦略的提言当レポートの対象地域:-北米-欧州-アジア太平洋-南米-中東・アフリカ絶縁別:-ガス絶縁スイッチギヤ-空気絶縁スイッチギヤ-その他の絶縁スイッチギヤ電圧レベル別:-低電圧スイッチギヤ-中電圧スイッチギヤ-その他の絶縁スイッチギヤ- 低電圧開閉器- 中電圧開閉器- 高電圧開閉器設置場所別:- 屋内設置- 屋外設置エンドユーザー別:- 送電・配電公益事業- 産業- 商業・住宅- その他のエンドユーザー本レポートのアプローチ:本レポートは、一次調査と二次調査を組み合わせたアプローチで構成されている。まず二次調査は、市場を把握し、市場に参入している企業をリストアップするために行われました。二次調査は、プレスリリースや企業の年次報告書などの第三者情報源、政府発行の報告書やデータベースの分析から構成される。二次情報源からデータを収集した後、一次調査は、市場がどのように機能しているかについて主要プレーヤーに電話インタビューを行い、市場のディーラーや流通業者と取引コールを行うことによって実施された。その後、消費者を地域別、階層別、年齢層別、性別に均等にセグメンテーションし、消費者への一次調査を開始した。一次データを入手した後は、二次ソースから入手した詳細の検証を開始した。対象読者:本レポートは、業界コンサルタント、メーカー、サプライヤー、開閉装置業界関連団体・組織、政府機関、その他関係者が市場中心の戦略を立てる際に役立ちます。マーケティングやプレゼンテーションに加え、この業界に関する競合知識を高めることもできます。***ご注意:ご注文確認後、レポートのお届けまでに48時間(2営業日)かかります。目次Table of Contents1. Executive Summary 2. Market Dynamics 2.1. Market Drivers & Opportunities 2.2. Market Restraints & Challenges 2.3. Market Trends 2.4. Covid-19 Effect 2.5. Supply chain Analysis 2.6. Policy & Regulatory Framework 2.7. Industry Experts Views 3. Research Methodology 3.1. Secondary Research 3.2. Primary Data Collection 3.3. Market Formation & Validation 3.4. Report Writing, Quality Check & Delivery 4. Market Structure 4.1. Market Considerate 4.2. Assumptions 4.3. Limitations 4.4. Abbreviations 4.5. Sources 4.6. Definitions 5. Economic /Demographic Snapshot 6. Global Switchgears Market Outlook 6.1. Market Size By Value 6.2. Market Share By Region 6.3. Market Size and Forecast, By Geography 6.4. Market Size and Forecast, By Based on Insulation 6.5. Market Size and Forecast, By Voltage Level 6.6. Market Size and Forecast, By Based on Installation 6.7. Market Size and Forecast, By Based on End User 7. North America Switchgears Market Outlook 7.1. Market Size by Value 7.2. Market Share by Country 7.3. Market Size and Forecast, By Based on Insulation 7.4. Market Size and Forecast, By Voltage Level 7.5. Market Size and Forecast, By Based on Installation 7.6. Market Size and Forecast, By Based on End User 8. Europe Switchgears Market Outlook 8.1. Market Size By Value 8.2. Market Share By Country 8.3. Market Size and Forecast, By Based on Insulation 8.4. Market Size and Forecast, By Voltage Level 8.5. Market Size and Forecast, By Based on Installation 8.6. Market Size and Forecast, By Based on End User 9. Asia-Pacific Switchgears Market Outlook 9.1. Market Size By Value 9.2. Market Share By Country 9.3. Market Size and Forecast, By Based on Insulation 9.4. Market Size and Forecast, By Voltage Level 9.5. Market Size and Forecast, By Based on Installation 9.6. Market Size and Forecast, By Based on End User 10. South America Switchgears Market Outlook 10.1. Market Size By Value 10.2. Market Share By Country 10.3. Market Size and Forecast, By Based on Insulation 10.4. Market Size and Forecast, By Voltage Level 10.5. Market Size and Forecast, By Based on Installation 10.6. Market Size and Forecast, By Based on End User 11. Middle East & Africa Switchgears Market Outlook 11.1. Market Size By Value 11.2. Market Share By Country 11.3. Market Size and Forecast, By Based on Insulation 11.4. Market Size and Forecast, By Voltage Level 11.5. Market Size and Forecast, By Based on Installation 11.6. Market Size and Forecast, By Based on End User 12. Competitive Landscape 12.1. Competitive Dashboard 12.2. Business Strategies Adopted by Key Players 12.3. Key Players Market Share Insights and Analysis, 2022 12.4. Key Players Market Positioning Matrix 12.5. Porter's Five Forces 12.6. Company Profile 12.6.1. Siemens AG 12.6.1.1. Company Snapshot 12.6.1.2. Company Overview 12.6.1.3. Financial Highlights 12.6.1.4. Geographic Insights 12.6.1.5. Business Segment & Performance 12.6.1.6. Product Portfolio 12.6.1.7. Key Executives 12.6.1.8. Strategic Moves & Developments 12.6.2. ABB 12.6.3. Schneider Electric SE 12.6.4. Eaton Corporation plc 12.6.5. Mitsubishi Electric Corporation 12.6.6. Toshiba Corporation 12.6.7. General Electric Company 12.6.8. Hitachi, Ltd. 12.6.9. Hyundai Electric 12.6.10. Hyosung Corporation 13. Strategic Recommendations 14. Annexure 14.1. FAQ`s 14.2. Notes 14.3. Related Reports 15. Disclaimer List of Figures Figure 1: Global Switchgears Market Size (USD Billion) By Region, 2022 & 2028 Figure 2: Market attractiveness Index, By Region 2028 Figure 3: Market attractiveness Index, By Segment 2028 Figure 4: Global Switchgears Market Size By Value (2017, 2022 & 2028F) (in USD Billion) Figure 5: Global Switchgears Market Share By Region (2022) Figure 6: North America Switchgears Market Size By Value (2017, 2022 & 2028F) (in USD Billion) Figure 7: North America Switchgears Market Share By Country (2022) Figure 8: Europe Switchgears Market Size By Value (2017, 2022 & 2028F) (in USD Billion) Figure 9: Europe Switchgears Market Share By Country (2022) Figure 10: Asia-Pacific Switchgears Market Size By Value (2017, 2022 & 2028F) (in USD Billion) Figure 11: Asia-Pacific Switchgears Market Share By Country (2022) Figure 12: South America Switchgears Market Size By Value (2017, 2022 & 2028F) (in USD Billion) Figure 13: South America Switchgears Market Share By Country (2022) Figure 14: Middle East & Africa Switchgears Market Size By Value (2017, 2022 & 2028F) (in USD Billion) Figure 15: Middle East & Africa Switchgears Market Share By Country (2022) Figure 16: Competitive Dashboard of top 5 players, 2022 Figure 17: Market Share insights of key players, 2022 Figure 18: Porter's Five Forces of Global Switchgears Market List of Table Table 1 : Global Switchgears Market Snapshot, By Segmentation (2022 & 2028) (in USD Billion) Table 2 : Influencing Factors for Switchgears Market, 2022 Table 3: Top 10 Counties Economic Snapshot 2020 Table 4: Economic Snapshot of Other Prominent Countries 2020 Table 5: Average Exchange Rates for Converting Foreign Currencies into U.S. Dollars Table 6: Global Switchgears Market Size and Forecast, By Geography (2017 to 2028F) (In USD Billion) Table 7 : Global Switchgears Market Size and Forecast, By Based on Insulation (2017 to 2028F) (In USD Billion) Table 8 : Global Switchgears Market Size and Forecast, By Voltage Level (2017 to 2028F) (In USD Billion) Table 9 : Global Switchgears Market Size and Forecast, By Based on Installation (2017 to 2028F) (In USD Billion) Table 10 : Global Switchgears Market Size and Forecast, By Based on End User (2017 to 2028F) (In USD Billion) Table 11 : North America Switchgears Market Size and Forecast, By Based on Insulation (2017 to 2028F) (In USD Billion) Table 12 : North America Switchgears Market Size and Forecast, By Voltage Level (2017 to 2028F) (In USD Billion) Table 13 : North America Switchgears Market Size and Forecast, By Based on Installation (2017 to 2028F) (In USD Billion) Table 14 : North America Switchgears Market Size and Forecast, By Based on End User (2017 to 2028F) (In USD Billion) Table 15 : Europe Switchgears Market Size and Forecast, By Based on Insulation (2017 to 2028F) (In USD Billion) Table 16 : Europe Switchgears Market Size and Forecast, By Voltage Level (2017 to 2028F) (In USD Billion) Table 17 : Europe Switchgears Market Size and Forecast, By Based on Installation (2017 to 2028F) (In USD Billion) Table 18 : Europe Switchgears Market Size and Forecast, By Based on End User (2017 to 2028F) (In USD Billion) Table 19 : Asia-Pacific Switchgears Market Size and Forecast, By Based on Insulation (2017 to 2028F) (In USD Billion) Table 20 : Asia-Pacific Switchgears Market Size and Forecast, By Voltage Level (2017 to 2028F) (In USD Billion) Table 21 : Asia-Pacific Switchgears Market Size and Forecast, By Based on Installation (2017 to 2028F) (In USD Billion) Table 22 : Asia-Pacific Switchgears Market Size and Forecast, By Based on End User (2017 to 2028F) (In USD Billion) Table 23 : South America Switchgears Market Size and Forecast, By Based on Insulation (2017 to 2028F) (In USD Billion) Table 24 : South America Switchgears Market Size and Forecast, By Voltage Level (2017 to 2028F) (In USD Billion) Table 25 : South America Switchgears Market Size and Forecast, By Based on Installation (2017 to 2028F) (In USD Billion) Table 26 : South America Switchgears Market Size and Forecast, By Based on End User (2017 to 2028F) (In USD Billion) Table 27 : Middle East & Africa Switchgears Market Size and Forecast, By Based on Insulation (2017 to 2028F) (In USD Billion) Table 28 : Middle East & Africa Switchgears Market Size and Forecast, By Voltage Level (2017 to 2028F) (In USD Billion) Table 29 : Middle East & Africa Switchgears Market Size and Forecast, By Based on Installation (2017 to 2028F) (In USD Billion) Table 30 : Middle East & Africa Switchgears Market Size and Forecast, By Based on End User (2017 to 2028F) (In USD Billion)
SummarySwitchgear is a collective term for electrical equipment that controls the flow of electrical current, protecting circuits from overloads and short circuits. It includes a variety of components such as circuit breakers, fuses, disconnect switches, relays, and more. These components work together to regulate electrical power distribution, ensuring that it reaches its intended destination safely. Switchgear systems are crucial for ensuring electrical safety by isolating faulty circuits and preventing electrical accidents, including fires and electrocution. The reliability of electrical power supply is dependent on the quality and performance of switchgear. Uninterrupted power is essential for homes, businesses, hospitals, data centers, and industries. In the context of the electrical grid, switchgear is essential for the distribution, control, and protection of electricity from power plants to consumers. The switchgear industry plays a crucial role in ensuring the safe and efficient distribution of electricity. From homes and businesses to industries and infrastructure, switchgear systems are at the heart of electrical power distribution, safeguarding against electrical faults and ensuring the seamless flow of energy. As the global demand for electricity continues to rise, the switchgear industry is evolving rapidly to meet the challenges of the 21st century. With the addition of the Internet of Things (IoT), switchgear is becoming more intelligent, predicting potential faults and taking corrective actions in advance. Other advantages include real-time information and improved visibility, which enhances overall system reliability and efficiency. Residential and commercial buildings use a lot of electricity, and the addition of smart switchgear will help save energy and drastically reduce electricity expenses. Schneider Electric, for example, has introduced a line of medium-voltage switchgear that is smart grid ready, more dependable, safe, and simple to use. With increased energy demand, a dependable and stable transmission and distribution network is essential. New policies aiming at decreasing power outages and restoring ageing power system infrastructure around the world are presenting the market with a potential growth opportunity. Extreme external conditions, such as temperature, pressure, and humidity, as well as groundwater leaking, are some of the key elements that may affect the performance of electrical Switchgear equipment deployed outside. As a result, regulatory agencies developed tight norms and requirements to address the atmospheric conditions, resulting in increased reliability and feasibility. According to the research report, “Global Switchgear Market Overview, 2023-28” published by Bonafide Research, the market is anticipated to cross USD 175 Billion by 2028, increasing from USD 126.44 Billion in 2022. The market is expected to grow with 6.02% CAGR by 2023-28. In complicated electrical substations, switchgear equipment is fundamentally employed to endure variable operating voltage in highly volatile ambient conditions. It is also expected that developing new industrial structures, such as powerplants for safe and reliable operation, will promote market growth. Increased investments in renewable energy development, as well as favorable government policies to support new technology, are expected to boost the industry landscape. Switchgear uses monitoring technology to alert maintenance people when ageing and over-used equipment is about to fail, allowing them to make better decisions by providing real-time data on problems and improvement opportunities. Aside from the limits listed above, there are others, such as environmental variables such as temperature and humidity, as well as groundwater seepage, which can have an impact on the operation of switchgear electrical networks, particularly those placed outside. Switchgear is utilised to ensure operational safety, cost-effectiveness, and continuity in a variety of residential, commercial, industrial, and utility applications. They are commonly used in low, medium, and high voltage systems to accommodate the erratic operating voltage network between load centres and generating stations. Current and voltage transformers, isolators, switches, relays, circuit breakers, fuses, and other devices are examples of switching equipment. As transmission and distribution networks have grown in size, so has the need of switching equipment. The rapid development of electricity in rural areas, combined with increased energy generation, has increased the demand for a wide range of electrical equipment. Increased regional government goals for delivering energy to remote areas, as well as rising investment in this industry, are the primary Switchgear Market trends that are projected to cater to market expansion.The switchgear industry is being fueled by investments in energy infrastructure and renewable energy sources. Rural infrastructure investments in developing Asia-Pacific countries are expected to boost market value. For example, the Pradhan Mantri Sahaj Bijli Har Ghar Yojana, also known as the Saubhagya Scheme, is an Indian government effort aimed at providing electricity to all families. Such developments drive switchgear demand. Based on the region, the Middle East and Africa (MEA) region is experiencing significant growth in the global switchgear market. The MEA region is witnessing substantial infrastructure development, driven by increasing urbanization, industrialization, and population growth. As new buildings, commercial centers, industrial facilities, and power plants are constructed, there is a growing demand for reliable and efficient electrical distribution systems, including switchgear. The MEA region has a growing demand for electricity due to its expanding population and industrial base. As the need for electricity increases, so does the requirement for robust switchgear systems to ensure the reliable distribution of power. Many countries in the MEA region are investing in renewable energy sources, such as solar and wind power. Switchgear plays a crucial role in integrating these intermittent energy sources into the grid and ensuring a stable and efficient distribution of clean energy. Governments in the MEA region are implementing policies and initiatives to improve their energy infrastructure and increase electrification rates. This includes investments in reliable and modern switchgear solutions to meet energy efficiency and safety standards. The MEA region is experiencing a growth in various industries, including oil and gas, manufacturing, and construction. These industries require advanced electrical infrastructure, making high-quality switchgear essential for their operations. In rural and remote areas of the MEA region, electrification efforts are underway, bringing power to areas that were previously off the grid. Switchgear systems are integral to these electrification projects, ensuring safe and reliable electrical distribution. Political stability in certain parts of the MEA region is attracting foreign investments and international companies. This, in turn, drives the demand for reliable electrical infrastructure and switchgear. Increasing awareness of environmental sustainability and the need to reduce greenhouse gas emissions is driving the adoption of eco-friendly switchgear technologies, such as gas-insulated switchgear (GIS), in compliance with international environmental regulations.Air-insulated switchgear (AIS) is experiencing growth in the global switchgear market due to several compelling advantages. Firstly, AIS is renowned for its cost-effectiveness, making it an attractive choice for utilities and industries looking for economical solutions for their electrical distribution needs. Additionally, AIS is environmentally friendly, as it does not use greenhouse gases as insulating mediums, unlike some other alternatives. This aligns with the global shift towards sustainable and eco-friendly practices, making AIS a preferred choice for those concerned about reducing their carbon footprint. AIS is also known for its reliability, with a long track record of dependable performance in various applications, further contributing to its growth. Its ease of installation and maintenance, along with the absence of complex components, make it a user-friendly and accessible option. Moreover, AIS can withstand a wide range of environmental conditions, from extreme temperatures to harsh outdoor environments, making it versatile and suitable for diverse applications. All these factors combined are driving the increasing adoption of air-insulated switchgear in the global market as a reliable, cost-effective, and environmentally friendly solution for electrical distribution.Medium voltage switchgear is experiencing significant growth in the global switchgear market for several reasons. As the demand for electricity continues to rise worldwide, there is a corresponding need for reliable and efficient electrical distribution systems. Medium voltage switchgear, typically operating in the voltage range of 1 kV to 40 kV, plays a critical role in ensuring the safe and stable distribution of power to various industries, commercial buildings, and infrastructure. With the increasing adoption of renewable energy sources and the development of smart grids, medium voltage switchgear has become essential for integrating and managing the fluctuating power supply from sources like solar and wind. Additionally, the emphasis on energy efficiency and environmental concerns is driving the development of more eco-friendly medium voltage switchgear solutions. Their ability to enhance grid reliability, protect against electrical faults, and reduce energy losses makes them a preferred choice for utilities and industries seeking sustainable, robust, and intelligent power distribution solutions, hence contributing to the growth of the medium voltage switchgear market on a global scale.On the basis of application, indoor installation switchgear is gaining prominence in the global switchgear market due to several compelling factors. One key reason is the need for space optimization, particularly in densely populated urban areas where real estate is at a premium. Indoor switchgear installations are space-efficient and do not require dedicated outdoor structures, making them an attractive choice for utilities and industries with limited space. Furthermore, indoor switchgear offers superior protection against environmental factors like weather, pollution, and vandalism, ensuring the reliability and longevity of the equipment. It is also easier to maintain and operate as it is shielded from external elements. Moreover, the global emphasis on safety and security is fueling the growth of indoor switchgear, as it minimizes exposure to potentially hazardous conditions, such as extreme weather or unauthorized access. The flexibility and adaptability of indoor switchgear systems, combined with their superior protection and reliability, position them as a preferred choice for various applications, driving their growth in the global switchgear market.The growth of industry application switchgear in the global switchgear market can be attributed to the increasing industrialization and automation across diverse sectors. Industries are becoming progressively reliant on electrical power for their operations, making reliable and efficient electrical distribution systems crucial. Industry application switchgear is designed to meet the unique demands of industrial environments, offering features like robust construction, high fault tolerance, and advanced protection mechanisms. As industries evolve and expand, the demand for switchgear that can handle heavy loads and ensure minimal downtime has surged. Additionally, with the integration of smart technologies and the adoption of Industry 4.0 concepts, industry application switchgear is evolving to offer enhanced monitoring, diagnostics, and predictive maintenance capabilities, aligning with the growing need for efficient and connected industrial processes. Furthermore, industry regulations and safety standards are becoming more stringent, driving the adoption of modern and compliant switchgear solutions. Overall, the increasing reliance on electricity in industry, coupled with the demand for reliability and safety, is propelling the growth of industry application switchgear in the global market.Market Drivers• Urbanization and Infrastructure Development: Rapid urbanization, especially in emerging economies, is driving the need for new infrastructure, including electrical distribution networks. The expansion of cities and the development of smart cities require reliable and efficient electrical systems. This, in turn, fuels the demand for modern switchgear technology to support critical infrastructure.• Electrification of Transport: The electrification of transportation, including electric vehicles (EVs) and charging infrastructure, is a significant driver for the switchgear industry. The growing adoption of EVs and the need for electric charging infrastructure necessitate upgrades to the electrical grid and the integration of advanced switchgear to manage the increased load and demand on the grid.Market Restraints• Supply Chain Disruptions: Global supply chain disruptions, such as those caused by events like the COVID-19 pandemic or natural disasters, can pose restraints on the switchgear industry. Disruptions in the availability of raw materials, components, and manufacturing facilities can lead to delays in production and increased costs.• Aging Infrastructure and Retrofit Challenges: In many regions, existing electrical infrastructure is aging and in need of replacement or retrofitting. Upgrading or replacing switchgear in existing facilities can be costly and complex, often requiring extended downtime and careful planning to minimize disruptions to service.Market Trends• Environmental Sustainability: Sustainability is a prominent trend in the switchgear industry. This includes efforts to reduce the environmental impact of switchgear through the development of more eco-friendly insulation gases and materials. There is also a focus on energy efficiency and reducing losses in switchgear systems to minimize greenhouse gas emissions.• Cybersecurity and Resilience: With the increasing digitalization and connectivity of switchgear systems, the industry is witnessing a trend towards enhanced cybersecurity measures. Protecting switchgear from cyber threats and ensuring the resilience of critical infrastructure against cyberattacks is a growing concern. The integration of robust cybersecurity features and practices is becoming standard in modern switchgear design.Covid-19 ImpactsThe COVID-19 pandemic had several significant impacts on the switchgear industry. In the early stages of the pandemic, the industry faced disruptions in the supply chain, with lockdowns and restrictions leading to delays in the production and delivery of components and materials. These disruptions, coupled with reduced workforce availability due to health and safety measures, resulted in challenges for switchgear manufacturers. Additionally, project delays and cancellations in various sectors, including construction and infrastructure, led to a decline in new installations and investments, affecting the demand for switchgear products. However, as the pandemic highlighted the critical importance of reliable and resilient electrical infrastructure, there was an increased focus on ensuring the continuity of power supply, driving the adoption of digital and smart grid technologies in the industry. Switchgear manufacturers also faced growing interest in remote monitoring and maintenance solutions to address the limitations of physical site visits during lockdowns. Competitive landscapeThe key players in the market are actively engaged in a range of strategic initiatives to maintain and enhance their market positions. They are investing significantly in research and development to innovate and improve their products driven by the need to meet the evolving demands of the market, including the need for energy-efficient, compact, and environmentally-friendly products. Companies are also expanding their product portfolios to cater to a broader range of applications across various sectors, such as utilities, industrial, commercial, and residential. Some players are developing advanced systems to support the growing adoption of smart grids and renewable energy. Strategic collaborations and partnerships are also common, allowing companies to leverage each other's strengths, expand their geographical reach, and penetrate new markets. Mergers and acquisitions are another strategy being used to increase market share, acquire new technologies, and enhance competitive positioning. Some of the major market players include Siemens AG, ABB, Schneider Electric SE, Eaton Corporation plc, Mitsubishi Electric Corporation, Toshiba Corporation, General Electric Company, Hitachi, Ltd., Hyundai Electric, Hyosung Corporation, CG Power and Industrial Solutions Limited, Hubbell Incorporated, Powell Industries, Legrand SA, Larsen & Toubro Limited, Havells India Ltd, Fuji Electric, WEG SA, Panasonic Holdings Corporation and Bharat Heavy Electrical LimitedKey Developments• In April 2023, Havells India Ltd. announced a strategic partnership with Swedish tech startup Blixt Tech AB to bring the solid state circuit breaker (SSCB) technology to the domestic market. • In April 2023, Siemens expanded its sustainable blue GIS portfolio with the 8DAB 40. The switchgear for primary distribution networks up to 40,5 kV uses clean air as an insulating medium with GWP<1, making it climate-friendly and completely free of fluorinated gasses.• In February 2023, Toshiba Transmission & Distribution Systems Private Limited (TTDI) announced that it received orders for 23 units of 400 kV and nine units of 220 kV gas-insulated switchgear for the development and enhancement of power transmission and distribution networks to the latest 2X500 MVA substation at Xeldem in Goa and pooling substations of solar and wind renewable projects at Alamuru and Kodamuru at 400 kV voltage levels. • In February 2023, ABB India announced the commissioning of a factory in Nashik to manufacture gas-insulated switchgear. The company aims to serve customers across various industries, including power distribution, smart cities, data centers, transport (metro, railways), tunnels, ports, highways, and other infrastructural developments. The new facility is expected to manufacture primary and secondary GIS. Considered in this report:• Geography: Global• Historic year: 2017• Base year: 2022• Estimated year: 2023• Forecast year: 2028Aspects covered in this report:• Global Switchgear market with its value and forecast along with its segments• Various drivers and challenges• On-going trends and developments• Top profiled companies• Strategic recommendationRegions covered in the report• North America • Europe • Asia-Pacific • South America • Middle-East & Africa By Insulation:• Gas Insulated Switchgears• Air Insulated Switchgears• Other Insulated SwitchgearsBy Voltage Level:• Low-voltage Switchgears• Medium-voltage Switchgears• High-voltage SwitchgearsBy Installation:• Indoor Installation• Outdoor InstallationBy End-User:• Transmission & Distribution Utilities• Industries• Commercial & Residential• Other End UsersThe approach of the report:This report consists of a combined approach of primary as well as secondary research. Initially, secondary research was used to get an understanding of the market and list out the companies that are present in the market. The secondary research consists of third-party sources such as press releases, and annual reports of companies, analyzing the government-generated reports and databases. After gathering the data from secondary sources primary research was conducted by making telephonic 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 doing primary calls to consumers by equally segmenting consumers into regional aspects, tier aspects, age groups, and gender. Once we have primary data with us we started verifying the details obtained from secondary sources. Intended audience:This report can be useful to industry consultants, manufacturers, suppliers, associations & organizations related to the Switchgear industry, government bodies, and other stakeholders to align their market-centric strategies. In addition to marketing & presentations, it will also increase competitive knowledge about the industry.***Please Note: It will take 48 hours (2 Business days) for delivery of the report upon order confirmation. Table of ContentsTable of Contents1. Executive Summary 2. Market Dynamics 2.1. Market Drivers & Opportunities 2.2. Market Restraints & Challenges 2.3. Market Trends 2.4. Covid-19 Effect 2.5. Supply chain Analysis 2.6. Policy & Regulatory Framework 2.7. Industry Experts Views 3. Research Methodology 3.1. Secondary Research 3.2. Primary Data Collection 3.3. Market Formation & Validation 3.4. Report Writing, Quality Check & Delivery 4. Market Structure 4.1. Market Considerate 4.2. Assumptions 4.3. Limitations 4.4. Abbreviations 4.5. Sources 4.6. Definitions 5. Economic /Demographic Snapshot 6. Global Switchgears Market Outlook 6.1. Market Size By Value 6.2. Market Share By Region 6.3. Market Size and Forecast, By Geography 6.4. Market Size and Forecast, By Based on Insulation 6.5. Market Size and Forecast, By Voltage Level 6.6. Market Size and Forecast, By Based on Installation 6.7. Market Size and Forecast, By Based on End User 7. North America Switchgears Market Outlook 7.1. Market Size by Value 7.2. Market Share by Country 7.3. Market Size and Forecast, By Based on Insulation 7.4. Market Size and Forecast, By Voltage Level 7.5. Market Size and Forecast, By Based on Installation 7.6. Market Size and Forecast, By Based on End User 8. Europe Switchgears Market Outlook 8.1. Market Size By Value 8.2. Market Share By Country 8.3. Market Size and Forecast, By Based on Insulation 8.4. Market Size and Forecast, By Voltage Level 8.5. Market Size and Forecast, By Based on Installation 8.6. Market Size and Forecast, By Based on End User 9. Asia-Pacific Switchgears Market Outlook 9.1. Market Size By Value 9.2. Market Share By Country 9.3. Market Size and Forecast, By Based on Insulation 9.4. Market Size and Forecast, By Voltage Level 9.5. Market Size and Forecast, By Based on Installation 9.6. Market Size and Forecast, By Based on End User 10. South America Switchgears Market Outlook 10.1. Market Size By Value 10.2. Market Share By Country 10.3. Market Size and Forecast, By Based on Insulation 10.4. Market Size and Forecast, By Voltage Level 10.5. Market Size and Forecast, By Based on Installation 10.6. Market Size and Forecast, By Based on End User 11. Middle East & Africa Switchgears Market Outlook 11.1. Market Size By Value 11.2. Market Share By Country 11.3. Market Size and Forecast, By Based on Insulation 11.4. Market Size and Forecast, By Voltage Level 11.5. Market Size and Forecast, By Based on Installation 11.6. Market Size and Forecast, By Based on End User 12. Competitive Landscape 12.1. Competitive Dashboard 12.2. Business Strategies Adopted by Key Players 12.3. Key Players Market Share Insights and Analysis, 2022 12.4. Key Players Market Positioning Matrix 12.5. Porter's Five Forces 12.6. Company Profile 12.6.1. Siemens AG 12.6.1.1. Company Snapshot 12.6.1.2. Company Overview 12.6.1.3. Financial Highlights 12.6.1.4. Geographic Insights 12.6.1.5. Business Segment & Performance 12.6.1.6. Product Portfolio 12.6.1.7. Key Executives 12.6.1.8. Strategic Moves & Developments 12.6.2. ABB 12.6.3. Schneider Electric SE 12.6.4. Eaton Corporation plc 12.6.5. Mitsubishi Electric Corporation 12.6.6. Toshiba Corporation 12.6.7. General Electric Company 12.6.8. Hitachi, Ltd. 12.6.9. Hyundai Electric 12.6.10. Hyosung Corporation 13. Strategic Recommendations 14. Annexure 14.1. FAQ`s 14.2. Notes 14.3. Related Reports 15. Disclaimer List of Figures Figure 1: Global Switchgears Market Size (USD Billion) By Region, 2022 & 2028 Figure 2: Market attractiveness Index, By Region 2028 Figure 3: Market attractiveness Index, By Segment 2028 Figure 4: Global Switchgears Market Size By Value (2017, 2022 & 2028F) (in USD Billion) Figure 5: Global Switchgears Market Share By Region (2022) Figure 6: North America Switchgears Market Size By Value (2017, 2022 & 2028F) (in USD Billion) Figure 7: North America Switchgears Market Share By Country (2022) Figure 8: Europe Switchgears Market Size By Value (2017, 2022 & 2028F) (in USD Billion) Figure 9: Europe Switchgears Market Share By Country (2022) Figure 10: Asia-Pacific Switchgears Market Size By Value (2017, 2022 & 2028F) (in USD Billion) Figure 11: Asia-Pacific Switchgears Market Share By Country (2022) Figure 12: South America Switchgears Market Size By Value (2017, 2022 & 2028F) (in USD Billion) Figure 13: South America Switchgears Market Share By Country (2022) Figure 14: Middle East & Africa Switchgears Market Size By Value (2017, 2022 & 2028F) (in USD Billion) Figure 15: Middle East & Africa Switchgears Market Share By Country (2022) Figure 16: Competitive Dashboard of top 5 players, 2022 Figure 17: Market Share insights of key players, 2022 Figure 18: Porter's Five Forces of Global Switchgears Market List of Table Table 1 : Global Switchgears Market Snapshot, By Segmentation (2022 & 2028) (in USD Billion) Table 2 : Influencing Factors for Switchgears Market, 2022 Table 3: Top 10 Counties Economic Snapshot 2020 Table 4: Economic Snapshot of Other Prominent Countries 2020 Table 5: Average Exchange Rates for Converting Foreign Currencies into U.S. Dollars Table 6: Global Switchgears Market Size and Forecast, By Geography (2017 to 2028F) (In USD Billion) Table 7 : Global Switchgears Market Size and Forecast, By Based on Insulation (2017 to 2028F) (In USD Billion) Table 8 : Global Switchgears Market Size and Forecast, By Voltage Level (2017 to 2028F) (In USD Billion) Table 9 : Global Switchgears Market Size and Forecast, By Based on Installation (2017 to 2028F) (In USD Billion) Table 10 : Global Switchgears Market Size and Forecast, By Based on End User (2017 to 2028F) (In USD Billion) Table 11 : North America Switchgears Market Size and Forecast, By Based on Insulation (2017 to 2028F) (In USD Billion) Table 12 : North America Switchgears Market Size and Forecast, By Voltage Level (2017 to 2028F) (In USD Billion) Table 13 : North America Switchgears Market Size and Forecast, By Based on Installation (2017 to 2028F) (In USD Billion) Table 14 : North America Switchgears Market Size and Forecast, By Based on End User (2017 to 2028F) (In USD Billion) Table 15 : Europe Switchgears Market Size and Forecast, By Based on Insulation (2017 to 2028F) (In USD Billion) Table 16 : Europe Switchgears Market Size and Forecast, By Voltage Level (2017 to 2028F) (In USD Billion) Table 17 : Europe Switchgears Market Size and Forecast, By Based on Installation (2017 to 2028F) (In USD Billion) Table 18 : Europe Switchgears Market Size and Forecast, By Based on End User (2017 to 2028F) (In USD Billion) Table 19 : Asia-Pacific Switchgears Market Size and Forecast, By Based on Insulation (2017 to 2028F) (In USD Billion) Table 20 : Asia-Pacific Switchgears Market Size and Forecast, By Voltage Level (2017 to 2028F) (In USD Billion) Table 21 : Asia-Pacific Switchgears Market Size and Forecast, By Based on Installation (2017 to 2028F) (In USD Billion) Table 22 : Asia-Pacific Switchgears Market Size and Forecast, By Based on End User (2017 to 2028F) (In USD Billion) Table 23 : South America Switchgears Market Size and Forecast, By Based on Insulation (2017 to 2028F) (In USD Billion) Table 24 : South America Switchgears Market Size and Forecast, By Voltage Level (2017 to 2028F) (In USD Billion) Table 25 : South America Switchgears Market Size and Forecast, By Based on Installation (2017 to 2028F) (In USD Billion) Table 26 : South America Switchgears Market Size and Forecast, By Based on End User (2017 to 2028F) (In USD Billion) Table 27 : Middle East & Africa Switchgears Market Size and Forecast, By Based on Insulation (2017 to 2028F) (In USD Billion) Table 28 : Middle East & Africa Switchgears Market Size and Forecast, By Voltage Level (2017 to 2028F) (In USD Billion) Table 29 : Middle East & Africa Switchgears Market Size and Forecast, By Based on Installation (2017 to 2028F) (In USD Billion) Table 30 : Middle East & Africa Switchgears Market Size and Forecast, By Based on End User (2017 to 2028F) (In USD Billion)
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