Chapter 1. Research Scope
1.1. Research Objectives
1.2. Market Definition
1.3. Analysis Period
1.4. Market Size Breakdown by Segments
1.4.1. Market size breakdown, by fuse type
1.4.2. Market size breakdown, by current
1.4.3. Market size breakdown, by application
1.4.4. Market size breakdown, by sales channel
1.4.5. Market size breakdown, by vehicle type
1.4.6. Market size breakdown, by voltage
1.4.7. Market size breakdown, by region
1.4.8. Market size breakdown, by country
1.5. Market Data Reporting Unit
1.5.1. Value
1.6. Key Stakeholders
Chapter 2. Research Methodology
2.1. Secondary Research
2.1.1. Paid
2.1.2. Unpaid
2.1.3. P&S Intelligence database
2.2. Primary Research
2.3. Market Size Estimation
2.4. Data Triangulation
2.5. Currency Conversion Rates
2.6. Assumptions for the Study
2.7. Notes and Caveats
Chapter 3. Executive Summary
Chapter 4. Market Indicators
Chapter 5. Industry Outlook
5.1. Market Dynamics
5.1.1. Trends
5.1.2. Drivers
5.1.3. Restraints/challenges
5.1.4. Impact analysis of drivers/restraints
5.2. Impact of COVID-19
5.3. Porter’s Five Forces Analysis
5.3.1. Bargaining power of buyers
5.3.2. Bargaining power of suppliers
5.3.3. Threat of new entrants
5.3.4. Intensity of rivalry
5.3.5. Threat of substitutes
Chapter 6. Global Market
6.1. Overview
6.2. Market Revenue, by Fuse Type (2017–2030)
6.3. Market Revenue, by Current (2017–2030)
6.4. Market Revenue, by Application (2017–2030)
6.5. Market Revenue, by Sales Channel (2017–2030)
6.6. Market Revenue, by Vehicle Type (2017–2030)
6.6.1. ICE market revenue, by type (2017–2030)
6.6.2. EV market revenue, by type (2017–2030)
6.7. Market Revenue, by Voltage (2017–2030)
6.8. Market Revenue, by Region (2017–2030)
Chapter 7. North America Market
7.1. Overview
7.2. Market Revenue, by Fuse Type (2017–2030)
7.3. Market Revenue, by Current (2017–2030)
7.4. Market Revenue, by Application (2017–2030)
7.5. Market Revenue, by Sales Channel (2017–2030)
7.6. Market Revenue, by Vehicle Type (2017–2030)
7.6.1. ICE market revenue, by type (2017–2030)
7.6.2. EV market revenue, by type (2017–2030)
7.7. Market Revenue, by Voltage (2017–2030)
7.8. Market Revenue, by Country (2017–2030)
Chapter 8. Europe Market
8.1. Overview
8.2. Market Revenue, by Fuse Type (2017–2030)
8.3. Market Revenue, by Current (2017–2030)
8.4. Market Revenue, by Application (2017–2030)
8.5. Market Revenue, by Sales Channel (2017–2030)
8.6. Market Revenue, by Vehicle Type (2017–2030)
8.6.1. ICE market revenue, by type (2017–2030)
8.6.2. EV market revenue, by type (2017–2030)
8.7. Market Revenue, by Voltage (2017–2030)
8.8. Market Revenue, by Country (2017–2030)
Chapter 9. APAC Market
9.1. Overview
9.2. Market Revenue, by Fuse Type (2017–2030)
9.3. Market Revenue, by Current (2017–2030)
9.4. Market Revenue, by Application (2017–2030)
9.5. Market Revenue, by Sales Channel (2017–2030)
9.6. Market Revenue, by Vehicle Type (2017–2030)
9.6.1. ICE market revenue, by type (2017–2030)
9.6.2. EV market revenue, by type (2017–2030)
9.7. Market Revenue, by Voltage (2017–2030)
9.8. Market Revenue, by Country (2017–2030)
Chapter 10. LATAM Market
10.1. Overview
10.2. Market Revenue, by Fuse Type (2017–2030)
10.3. Market Revenue, by Current (2017–2030)
10.4. Market Revenue, by Application (2017–2030)
10.5. Market Revenue, by Sales Channel (2017–2030)
10.6. Market Revenue, by Vehicle Type (2017–2030)
10.6.1. ICE market revenue, by type (2017–2030)
10.6.2. EV market revenue, by type (2017–2030)
10.7. Market Revenue, by Voltage (2017–2030)
10.8. Market Revenue, by Country (2017–2030)
Chapter 11. MEA Market
11.1. Overview
11.2. Market Revenue, by Fuse Type (2017–2030)
11.3. Market Revenue, by Current (2017–2030)
11.4. Market Revenue, by Application (2017–2030)
11.5. Market Revenue, by Sales Channel (2017–2030)
11.6. Market Revenue, by Vehicle Type (2017–2030)
11.6.1. ICE market revenue, by type (2017–2030)
11.6.2. EV market revenue, by type (2017–2030)
11.7. Market Revenue, by Voltage (2017–2030)
11.8. Market Revenue, by Country (2017–2030)
Chapter 12. U.S. Market
12.1. Overview
12.2. Market Revenue, by Fuse Type (2017–2030)
12.3. Market Revenue, by Current (2017–2030)
12.4. Market Revenue, by Application (2017–2030)
12.5. Market Revenue, by Sales Channel (2017–2030)
12.6. Market Revenue, by Vehicle Type (2017–2030)
12.6.1. ICE market revenue, by type (2017–2030)
12.6.2. EV market revenue, by type (2017–2030)
12.7. Market Revenue, by Voltage (2017–2030)
Chapter 13. Canada Market
13.1. Overview
13.2. Market Revenue, by Fuse Type (2017–2030)
13.3. Market Revenue, by Current (2017–2030)
13.4. Market Revenue, by Application (2017–2030)
13.5. Market Revenue, by Sales Channel (2017–2030)
13.6. Market Revenue, by Vehicle Type (2017–2030)
13.6.1. ICE market revenue, by type (2017–2030)
13.6.2. EV market revenue, by type (2017–2030)
13.7. Market Revenue, by Voltage (2017–2030)
Chapter 14. Germany Market
14.1. Overview
14.2. Market Revenue, by Fuse Type (2017–2030)
14.3. Market Revenue, by Current (2017–2030)
14.4. Market Revenue, by Application (2017–2030)
14.5. Market Revenue, by Sales Channel (2017–2030)
14.6. Market Revenue, by Vehicle Type (2017–2030)
14.6.1. ICE market revenue, by type (2017–2030)
14.6.2. EV market revenue, by type (2017–2030)
14.7. Market Revenue, by Voltage (2017–2030)
Chapter 15. France Market
15.1. Overview
15.2. Market Revenue, by Fuse Type (2017–2030)
15.3. Market Revenue, by Current (2017–2030)
15.4. Market Revenue, by Application (2017–2030)
15.5. Market Revenue, by Sales Channel (2017–2030)
15.6. Market Revenue, by Vehicle Type (2017–2030)
15.6.1. ICE market revenue, by type (2017–2030)
15.6.2. EV market revenue, by type (2017–2030)
15.7. Market Revenue, by Voltage (2017–2030)
Chapter 16. U.K. Market
16.1. Overview
16.2. Market Revenue, by Fuse Type (2017–2030)
16.3. Market Revenue, by Current (2017–2030)
16.4. Market Revenue, by Application (2017–2030)
16.5. Market Revenue, by Sales Channel (2017–2030)
16.6. Market Revenue, by Vehicle Type (2017–2030)
16.6.1. ICE market revenue, by type (2017–2030)
16.6.2. EV market revenue, by type (2017–2030)
16.7. Market Revenue, by Voltage (2017–2030)
Chapter 17. Italy Market
17.1. Overview
17.2. Market Revenue, by Fuse Type (2017–2030)
17.3. Market Revenue, by Current (2017–2030)
17.4. Market Revenue, by Application (2017–2030)
17.5. Market Revenue, by Sales Channel (2017–2030)
17.6. Market Revenue, by Vehicle Type (2017–2030)
17.6.1. ICE market revenue, by type (2017–2030)
17.6.2. EV market revenue, by type (2017–2030)
17.7. Market Revenue, by Voltage (2017–2030)
Chapter 18. Spain Market
18.1. Overview
18.2. Market Revenue, by Fuse Type (2017–2030)
18.3. Market Revenue, by Current (2017–2030)
18.4. Market Revenue, by Application (2017–2030)
18.5. Market Revenue, by Sales Channel (2017–2030)
18.6. Market Revenue, by Vehicle Type (2017–2030)
18.6.1. ICE market revenue, by type (2017–2030)
18.6.2. EV market revenue, by type (2017–2030)
18.7. Market Revenue, by Voltage (2017–2030)
Chapter 19. Japan Market
19.1. Overview
19.2. Market Revenue, by Fuse Type (2017–2030)
19.3. Market Revenue, by Current (2017–2030)
19.4. Market Revenue, by Application (2017–2030)
19.5. Market Revenue, by Sales Channel (2017–2030)
19.6. Market Revenue, by Vehicle Type (2017–2030)
19.6.1. ICE market revenue, by type (2017–2030)
19.6.2. EV market revenue, by type (2017–2030)
19.7. Market Revenue, by Voltage (2017–2030)
Chapter 20. China Market
20.1. Overview
20.2. Market Revenue, by Fuse Type (2017–2030)
20.3. Market Revenue, by Current (2017–2030)
20.4. Market Revenue, by Application (2017–2030)
20.5. Market Revenue, by Sales Channel (2017–2030)
20.6. Market Revenue, by Vehicle Type (2017–2030)
20.6.1. ICE market revenue, by type (2017–2030)
20.6.2. EV market revenue, by type (2017–2030)
20.7. Market Revenue, by Voltage (2017–2030)
Chapter 21. India Market
21.1. Overview
21.2. Market Revenue, by Fuse Type (2017–2030)
21.3. Market Revenue, by Current (2017–2030)
21.4. Market Revenue, by Application (2017–2030)
21.5. Market Revenue, by Sales Channel (2017–2030)
21.6. Market Revenue, by Vehicle Type (2017–2030)
21.6.1. ICE market revenue, by type (2017–2030)
21.6.2. EV market revenue, by type (2017–2030)
21.7. Market Revenue, by Voltage (2017–2030)
Chapter 22. Australia Market
22.1. Overview
22.2. Market Revenue, by Fuse Type (2017–2030)
22.3. Market Revenue, by Current (2017–2030)
22.4. Market Revenue, by Application (2017–2030)
22.5. Market Revenue, by Sales Channel (2017–2030)
22.6. Market Revenue, by Vehicle Type (2017–2030)
22.6.1. ICE market revenue, by type (2017–2030)
22.6.2. EV market revenue, by type (2017–2030)
22.7. Market Revenue, by Voltage (2017–2030)
Chapter 23. South Korea Market
23.1. Overview
23.2. Market Revenue, by Fuse Type (2017–2030)
23.3. Market Revenue, by Current (2017–2030)
23.4. Market Revenue, by Application (2017–2030)
23.5. Market Revenue, by Sales Channel (2017–2030)
23.6. Market Revenue, by Vehicle Type (2017–2030)
23.6.1. ICE market revenue, by type (2017–2030)
23.6.2. EV market revenue, by type (2017–2030)
23.7. Market Revenue, by Voltage (2017–2030)
Chapter 24. Brazil Market
24.1. Overview
24.2. Market Revenue, by Fuse Type (2017–2030)
24.3. Market Revenue, by Current (2017–2030)
24.4. Market Revenue, by Application (2017–2030)
24.5. Market Revenue, by Sales Channel (2017–2030)
24.6. Market Revenue, by Vehicle Type (2017–2030)
24.6.1. ICE market revenue, by type (2017–2030)
24.6.2. EV market revenue, by type (2017–2030)
24.7. Market Revenue, by Voltage (2017–2030)
Chapter 25. Mexico Market
25.1. Overview
25.2. Market Revenue, by Fuse Type (2017–2030)
25.3. Market Revenue, by Current (2017–2030)
25.4. Market Revenue, by Application (2017–2030)
25.5. Market Revenue, by Sales Channel (2017–2030)
25.6. Market Revenue, by Vehicle Type (2017–2030)
25.6.1. ICE market revenue, by type (2017–2030)
25.6.2. EV market revenue, by type (2017–2030)
25.7. Market Revenue, by Voltage (2017–2030)
Chapter 26. Saudi Arabia Market
26.1. Overview
26.2. Market Revenue, by Fuse Type (2017–2030)
26.3. Market Revenue, by Current (2017–2030)
26.4. Market Revenue, by Application (2017–2030)
26.5. Market Revenue, by Sales Channel (2017–2030)
26.6. Market Revenue, by Vehicle Type (2017–2030)
26.6.1. ICE market revenue, by type (2017–2030)
26.6.2. EV market revenue, by type (2017–2030)
26.7. Market Revenue, by Voltage (2017–2030)
Chapter 27. South Africa Market
27.1. Overview
27.2. Market Revenue, by Fuse Type (2017–2030)
27.3. Market Revenue, by Current (2017–2030)
27.4. Market Revenue, by Application (2017–2030)
27.5. Market Revenue, by Sales Channel (2017–2030)
27.6. Market Revenue, by Vehicle Type (2017–2030)
27.6.1. ICE market revenue, by type (2017–2030)
27.6.2. EV market revenue, by type (2017–2030)
27.7. Market Revenue, by Voltage (2017–2030)
Chapter 28. U.A.E. Market
28.1. Overview
28.2. Market Revenue, by Fuse Type (2017–2030)
28.3. Market Revenue, by Current (2017–2030)
28.4. Market Revenue, by Application (2017–2030)
28.5. Market Revenue, by Sales Channel (2017–2030)
28.6. Market Revenue, by Vehicle Type (2017–2030)
28.6.1. ICE market revenue, by type (2017–2030)
28.6.2. EV market revenue, by type (2017–2030)
28.7. Market Revenue, by Voltage (2017–2030)
Chapter 29. Competitive Landscape
29.1. List of Market Players and their Offerings
29.2. Competitive Benchmarking of Key Players
29.3. Product Benchmarking of Key Players
29.4. Recent Strategic Developments
Chapter 30. Company Profiles
30.1. Eaton Corporation plc
30.1.1. Business overview
30.1.2. Product and service offerings
30.1.3. Key financial summary
30.2. SCHURTER AG
30.2.1. Business overview
30.2.2. Product and service offerings
30.3. Pacific Engineering Corporation
30.3.1. Business overview
30.3.2. Product and service offerings
30.4. Sensata Technologies Holding plc
30.4.1. Business overview
30.4.2. Product and service offerings
30.4.3. Key financial summary
30.5. OptiFuse
30.5.1. Business overview
30.5.2. Product and service offerings
30.6. Blue Sea Systems
30.6.1. Business overview
30.6.2. Product and service offerings
30.7. Mersen Corporate Services SAS
30.7.1. Business overview
30.7.2. Product and service offerings
30.7.3. Key financial summary
30.8. Littelfuse Inc.
30.8.1. Business overview
30.8.2. Product and service offerings
30.8.3. Key financial summary
30.9. E-T-A Elektrotechnische Apparate GmbH
30.9.1. Business overview
30.9.2. Product and service offerings
30.10. AEM Components (USA) Inc.
30.10.1. Business overview
30.10.2. Product and service offerings
30.11. ON Semiconductor Corporation
30.11.1. Business overview
30.11.2. Product and service offerings
30.11.3. Key financial summary
30.12. Fuzetec Technology Co. Ltd.
30.12.1. Business overview
30.12.2. Product and service offerings
30.12.3. Key financial summary
30.13. GLOSO Tech. Inc.
30.13.1. Business overview
30.13.2. Product and service offerings
30.14. SOC Corporation
30.14.1. Business overview
30.14.2. Product and service offerings
30.15. Shenzhen Deer Electronic Co. Ltd.
30.15.1. Business overview
30.15.2. Product and service offerings
Chapter 31. Appendix
31.1. Abbreviations
31.2. Sources and References
31.3. Related Reports
| ※参考情報 自動車用ヒューズは、電気回路を保護するための重要なコンポーネントです。ヒューズは過電流が流れた際に自動的に回路を遮断し、電気機器や配線の損傷を防ぎます。自動車には多くの電気機器が搭載されており、これらの機器を保護するためにヒューズは不可欠です。 ヒューズにはいくつかの種類があります。一般的に使われるヒューズは、ブレードタイプと呼ばれるもので、これにはさらなるバリエーションとしてミニサイズやマイクロサイズがあります。これらは、車両の設計やスペースの制約に応じて異なる大きさで提供されます。また、陶器やガラス製のスリーブに入ったヒューズもあり、これらは高電流の制御に適しています。 次に、ヒューズの動作原理について説明します。ヒューズは内部に導体を持っており、通常の使用条件下ではこの導体を通じて電流が流れます。しかし、過剰な電流が流れると、導体は熱を持ち、所定の温度に達すると溶けて回路を遮断します。この動作により、電気機器や配線が火災や故障から守られるのです。また、ヒューズは再利用ができないため、一度溶断したら交換が必要です。 自動車用ヒューズの主な用途としては、ライト、オーディオシステム、ワイパー、エアコン、エンジン制御ユニットなど多岐にわたります。例えば、車のヘッドライトが点灯しなかった場合、ヒューズが切れている可能性があります。この場合、ユーザーはヒューズボックスを確認し、該当するヒューズを交換することで問題を解決できます。 ヒューズには、各種の定格が設けられており、通常はアンペア数で表されます。このアンペア数はヒューズが耐えられる最大電流を示します。適切な定格のヒューズを選ぶことは非常に重要で、過小な定格を使用すると、通常の使用でも切れてしまう可能性がありますし、逆に過大な定格を用いると過電流による保護が効かなくなります。 最新の自動車技術においては、ヒューズの代わりに回路ブレーカーが使用されるケースが増えています。回路ブレーカーは一度切れると再設定できるため、ヒューズよりも便利です。ただし、コストや設置スペースの面でヒューズが依然として広く使われています。 また、自動車の電子機器の増加に伴い、ヒューズも進化しています。たとえば、スマートヒューズと呼ばれるタイプは、電流のモニタリングや診断機能を持っており、故障の早期発見を可能にします。これにより、メンテナンスの効率が向上し、ドライバーにとっても安心感が増します。 ヒューズを選ぶ際には、交換のしやすさや耐久性も考慮する必要があります。特に、故障が発生すると車両のシステム全体に影響を及ぼすことから、信頼性の高い製品を選ぶことが求められます。ヒューズの選定においては、取扱説明書に明記された適切な種類と定格を参照することが基本です。 さらに、ヒューズリレーと呼ばれる技術も存在します。これはヒューズとリレーを組み合わせたもので、過電流を検知すると、ヒューズを保護するために回路を遮断します。この技術により、ヒューズ自体の負担が軽減され、より長期間の使用が可能になります。 以上のように、自動車用ヒューズは電気回路の保護に不可欠な要素であり、その種類や用途、関連技術にはさまざまな特徴があります。ヒューズが正しく機能することで、自動車の信頼性が向上し、安全な運転が実現します。信頼できるヒューズを選ぶことは、車両のメンテナンスと安全運転において非常に重要です。ヒューズの適切な使用と交換により、自動車の電気系統を守り、安心して運転を楽しむことができます。 |
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