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EV Busbar Market Size, Share, Trend, Forecast, Competitive Analysis, and Growth Opportunity: 2025-2030

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    Report

  • 162 Pages
  • September 2025
  • Region: Global
  • Stratview Research
  • ID: 6190031

Global Demand Analysis & Sales Opportunities in EV Busbar Market

  • The annual demand for EV busbar was USD 2 billion in 2024 and is expected to reach USD 2.5 billion in 2025, up 25.3% than the value in 2024.
  • During the forecast period (2025 to 2030), the EV busbar market is expected to grow at a CAGR of 13%. The annual demand will reach of USD 4.7 billion in 2030.
  • During 2025-2030, the EV busbar industry is expected to generate a cumulative sales opportunity of USD 22.57 billion.

High-Growth Market Segments:

  • Asia-Pacific is expected to maintain its reign over the forecast period, whereas North America is likely to grow at the fastest rate.
  • By Propulsion type, BEV is estimated to contribute the largest share of the market.
  • By Product type, Rigid Busbar is expected to remain the leading segment for EV busbar throughout the forecast period.
  • By Material type, Copper is likely to hold the dominant position in the market.
  • By Insulation Material type, PET is the dominantly used insulation material for EV busbars.
  • By Insulation type, Film remains the biggest insulation form type and is expected to experience the fastest growth in the coming years.
  • By Sales Channel type, Battery Manufacturers are expected to remain the most attractive sales channel type by 2030.
  • By Application type, Inside-Battery Busbars lead the EV busbar market, while Outside-Battery Busbars are expected to witness faster growth during the forecast period.
  • By Inside Battery Cross-Sectional Area type, 35-50 sq mm cross-sectional area is expected to lead in sales, while the > 50 sq mm category is projected to grow fastest during 2025-2030.
  • By Outside Battery Cross Sectional Area type, 70-90 sq mm cross-sectional area is expected to remain the most attractive product by 2030, while the > 90 sq mm category is projected to grow fastest during 2025-2030.

Market Drivers:

  • Global Electric Vehicle Growth: The global electric vehicle (EV) production has seen steady and continuous growth in recent years, driven by strong consumer demand, supportive government policies, and technological advancements.
  • Government Regulations & Incentives: Government regulations and incentives play a crucial role in accelerating EV adoption, which in turn drives demand for essential components like busbars.
  • Advanced Busbar Solutions: Flexible designs and improved coatings enhance performance, enabling higher loads and fast charging for evolving EV needs.
  • Rising Adoption of High-Voltage EV Systems: The rise in adoption of high-voltage EV systems is driving the demand for advanced busbar solutions.
  • Advantages of Busbar: Busbar's superior advantages, including compact design, higher current-carrying capacity, and improved thermal performance, are driving the replacement of traditional cables in EV architecture.

Segment Analysis

By Propulsion Type

The BEV segment is projected to remain the leading category in the market and also experience the higher growth in the coming years.

  • The EV busbar market is segmented into BEV and HEV. BEVs rely solely on electric power, requiring more high-conductivity and insulated busbars to manage energy flow across large battery packs, inverters, and e-motors compared to HEVs. Supportive government policies and stringent emission norms are pushing automakers toward higher BEV production over HEVs, directly driving greater demand for busbars.
  • HEVs, including mild and plug-in hybrids, generally use fewer busbars than BEVs due to partial electrification and lower system voltage. Plug-in hybrids use larger batteries and higher voltage than mild hybrids; they still require fewer busbars than fully electric vehicles, as they rely partially on fuel engines.

By Vehicle Type

LV is expected to retain market dominance and register the fastest growth in the coming years.

  • The market is segmented into LV and M&HCV. Currently, LV (light vehicles) hold the lion’s share of the market due to higher production and widespread adoption of electric passenger cars globally. Government incentives, better charging infrastructure, and declining battery costs are accelerating the adoption of electric vehicles, thereby driving the demand for busbars for light vehicles.
  • M&HCV held a niche share of the market. However, the busbars used in these vehicles are typically larger and designed to handle higher voltage and current loads, demanding superior thermal and structural performance compared to those in LVs (light vehicles).

By Product Type

Rigid Busbar is likely to remain dominant, while flexible busbar is expected to experience faster growth during the forecasted period.

  • The market is segmented into rigid busbars and flexible busbars. The rigid busbar offers unparalleled thermal performance, high current carrying capacity, mechanical strength, and compact and space-saving design.
  • They are reliable solutions for high-power distribution in electric vehicles, such as connecting battery packs to inverters or power control units. Flexible busbars are likely to experience faster growth during the forecast period owing to their advantages, such as greater flexibility in routing, absorb vibrations better than rigid busbars, and ease of installation and maintenance.

By Material Type

Copper is currently the most preferred material of the market, whereas aluminium is expected to experience the fastest growth during the forecasted period.

  • The market is segmented into copper, aluminum, and bimetallic. Copper busbar has exceptional electrical conductivity, thermal efficiency, mechanical strength, resistance to corrosion, and compatibility with high-voltage systems. They can carry higher currents compared to aluminum busbars of the same size, making them a preferred choice for EVs, especially for high-power and high-performance applications.
  • Aluminum is preferred in weight-sensitive designs, being 40% lighter than copper. It is increasingly used where packaging space allows for 50% larger cross-sections compared to copper to achieve the same ampacity, making it ideal in applications where space constraints are relaxed.

By Insulation Material Type

PET is likely to remain the dominant insulation, while PA12 is set to grow at the fastest pace during the forecasted period.

  • The market is segmented into PET, PI, PA12, epoxy powder, silicon rubber, PVC, and other insulation materials. PET is the dominant insulation material type in the market in 2024, due to its cost-effectiveness, excellent dielectric strength, and good thermal stability. It is typically suitable for applications below 600V.
  • PI is used as it has exceptional thermal stability, excellent electrical insulation, chemical resistance, and mechanical strength. However, it has a higher cost, limiting its usage. Epoxy is a free-flowing, thermosetting dry powder that forms a durable insulating layer with high dielectric strength. It ensures uniform coating thickness and a smooth, consistent surface finish on busbars, enhancing both electrical insulation and mechanical protection.
  • PA12 is the fastest-growing insulation material, due to its high flexibility, durability, and chemical resistance, making it ideal for handling complex layouts. As EV battery designs become more compact and require better vibration resistance, PA12 is witnessing growing adoption, used by leading players, such as APTIV.

By Insulation Form Type

Film insulation is expected to remain both the dominant and fastest-growing insulation form in the EV busbar market during the forecast period.

  • The market is segmented into powder coating, heat shrink tubing, dipping, film, and other insulation forms. Film insulation currently dominates the EV busbar market due to its lightweight, flexible nature and high dielectric strength. It is ideal for compact and laminated busbar designs, enabling precise insulation with minimal thickness, supporting space-efficient layouts, and effective thermal management.
  • Powder coating is the second most-dominantly used insulation form type in the market as it forms a smooth, uniform layer that helps prevent short circuits and reduces the risk of electric shock. It is a fast and cost-effective process that reduces production time while ensuring a durable, high-quality finish. PET, PA12, and PI (Kapton) are the most widely used materials for film insulation form. Epoxy is the primary material used for powder coating in EV busbar insulation.
  • Heat-shrink tubing is another common insulation type used in the market. Silicone rubber and PE are primarily used as insulation material for heat shrink tubing form type.

By Sales Channel Type

Battery manufacturers are expected to remain the dominant sales channel of the market during the forecast period, whereas OEMs are projected to grow at a faster rate during the same period.

  • The market is segmented into battery manufacturers and OEMs. Currently, battery manufacturers dominate the market, primarily due to the need for insulated and high-conductive busbars for module-to-cell interconnections and to connect battery junction boxes within battery packs.
  • OEMs are rapidly gaining momentum in the market, driven by the growing emphasis on system-level integration of high-voltage busbars to enhance vehicle efficiency and performance.

By Application Type

Inside-battery busbars dominate the market, while outside-battery busbars are set to grow faster in the forecasted period.

  • The market is segmented into the inside battery and the outside battery. Inside-battery busbars dominated demand in 2024, largely due to their critical role in ensuring efficient current flow and thermal management within increasingly dense battery pack designs.
  • Outside-battery busbars are witnessing faster growth, supported by rising high-voltage architecture and growing complexity in e-powertrain layouts, where efficient power distribution across vehicle systems is essential.

By Inside Battery Cross-Sectional Area Type

Busbars with a cross-sectional area of 35-50 sq mm is projected to retain its leading position in the market over the next few years.

  • The market is segmented into < 35 sq mm, 35-50 sq mm, and >50 sq mm. Busbars with a 35-50 sq mm cross-sectional area dominate the inside-battery applications due to their ideal mix of size, power capacity, and thermal performance.
  • The >50sqmm cross-sectional range is likely to witness the fastest growth, driven by the adoption of 800V systems that require higher current-carrying capacity. Larger cross-sections help minimize electrical resistance and heat generation, ensuring safer and more efficient power delivery.

By Outside Battery Cross-Sectional Area Type

Mid-sized busbars (70-90 sq mm) dominate outside battery applications, whereas busbars with a cross-sectional area of > 90 sq mm are projected to experience the fastest growth in the coming years.

  • The market is segmented into < 70 sq mm, 70-90 sq mm, and >90 sq mm. The 70-90 sq mm cross-sectional area segment is dominating due to its balanced size, power handling capacity, and thermal performance.
  • Outside-battery busbars, which connect the battery to components, such as the inverter, motor, and onboard charger, often carry high current loads simultaneously. To handle this increased ampacity, they require larger cross-sectional areas for efficient and safe power transfer.

Regional Analysis

Asia-Pacific is expected to remain the largest market for EV busbar during the forecast period, whereas North America is estimated to be the fastest-growing market during the same period.

  • In terms of region, the market is segmented into North America, Europe, Asia-Pacific, and the rest of the world. Asia-Pacific is the largest producer and consumer of electric vehicles, majorly driven by China. Leading Chinese EV manufacturers include BYD, SAIC, Geely, and Xpeng. Also, a major EV OEM, Tesla, has a manufacturing plant in China.
  • Rising infrastructure investments, strong government policies, the presence of leading EV battery and component manufacturers, and an increasing domestic consumer base of EVs are some other factors driving the demand for EV busbars in the region. North America is likely to experience the fastest growth during the forecast period owing to rising EV production, government incentives, and rising consumer demand.

Competitive Landscape

The market is moderately fragmented with the presence of over 60 players across the region. Key players are developing advanced and customized busbars to meet the specific requirements of OEMs and battery manufacturers. Major players are performing strategic mergers and acquisitions to gain market share. For instance, Amphenol Corporation has recently acquired Connor Manufacturing Services. The following are the key players in the EV Busbar Market:

Here is the list of the Top Players (Based on Dominance)

  • APTIV
  • Leoni AG
  • Amphenol Corporation
  • Ennovi
  • Rogers Corporation
  • Scherdel

Report Features

This report provides market intelligence most comprehensively. The report structure has been kept such that it offers maximum business value. It provides critical insights into market dynamics and will enable strategic decision-making for existing market players as well as those willing to enter the market. The following are the key features of the report:
  • Market structure: Overview, industry life cycle analysis, supply chain analysis.
  • Market environment analysis: Growth drivers and constraints, Porter’s five forces analysis, SWOT analysis.
  • Market trend and forecast analysis.
  • Market segment trend and forecast.
  • Competitive landscape and dynamics: Market share, Service portfolio, New Product Launches, etc.
  • COVID-19 impact and its recovery curve.
  • Attractive market segments and associated growth opportunities.
  • Emerging trends.
  • Strategic growth opportunities for the existing and new players.
  • Key success factors.
The EV Busbar Market is segmented into the following categories.

EV Busbar Market, by Propulsion Type

  • BEV (Regional Analysis: North America, Europe, Asia-Pacific, and Rest of the World)
  • HEV (Regional Analysis: North America, Europe, Asia-Pacific, and Rest of the World)

EV Busbar Market, by Vehicle Type

  • LV (Regional Analysis: North America, Europe, Asia-Pacific, and Rest of the World)
  • M&HCV (Regional Analysis: North America, Europe, Asia-Pacific, and Rest of the World)

EV Busbar Market, by Product Type

  • Rigid Busbar (Regional Analysis: North America, Europe, Asia-Pacific, and Rest of the World)
  • Flexible Busbar (Regional Analysis: North America, Europe, Asia-Pacific, and Rest of the World)

EV Busbar Market, by Material Type

  • Copper (Regional Analysis: North America, Europe, Asia-Pacific, and Rest of the World)
  • Aluminum (Regional Analysis: North America, Europe, Asia-Pacific, and Rest of the World)
  • Bimetallic (Regional Analysis: North America, Europe, Asia-Pacific, and Rest of the World)

EV Busbar Market, by Insulation Material Type

  • PET (Regional Analysis: North America, Europe, Asia-Pacific, and Rest of the World)
  • PI (Regional Analysis: North America, Europe, Asia-Pacific, and Rest of the World)
  • PA12 (Regional Analysis: North America, Europe, Asia-Pacific, and Rest of the World)
  • Epoxy Powder (Regional Analysis: North America, Europe, Asia-Pacific, and Rest of the World)
  • Silicon Rubber (Regional Analysis: North America, Europe, Asia-Pacific, and Rest of the World)
  • PVC (Regional Analysis: North America, Europe, Asia-Pacific, and Rest of the World)
  • Other Insulation Material (Regional Analysis: North America, Europe, Asia-Pacific, and Rest of the World)

EV Busbar Market, by Insulation Form Type

  • Powder Coating (Regional Analysis: North America, Europe, Asia-Pacific, and Rest of the World)
  • Heat Shrink Tubing (Regional Analysis: North America, Europe, Asia-Pacific, and Rest of the World)
  • Dipping (Regional Analysis: North America, Europe, Asia-Pacific, and Rest of the World)
  • Film (Regional Analysis: North America, Europe, Asia-Pacific, and Rest of the World)
  • Other Insulation Forms (Regional Analysis: North America, Europe, Asia-Pacific, and Rest of the World)

EV Busbar Market, by Sales Channel Type

  • Battery Manufacturers (Regional Analysis: North America, Europe, Asia-Pacific, and Rest of the World)
  • OEMs (Regional Analysis: North America, Europe, Asia-Pacific, and Rest of the World)

EV Busbar Market, by Application Type

  • Inside Battery (Regional Analysis: North America, Europe, Asia-Pacific, and Rest of the World)
  • Outside Battery (Regional Analysis: North America, Europe, Asia-Pacific, and Rest of the World)

EV Busbar Market, by Inside Battery Cross-Sectional Area Type

  • < 35 sq mm (Regional Analysis: North America, Europe, Asia-Pacific, and Rest of the World)
  • 35-50 sq mm (Regional Analysis: North America, Europe, Asia-Pacific, and Rest of the World)
  • >50 sq mm (Regional Analysis: North America, Europe, Asia-Pacific, and Rest of the World)

EV Busbar Market, by Outside Battery Cross-Sectional Area Type

  • < 70 sq mm (Regional Analysis: North America, Europe, Asia-Pacific, and Rest of the World)
  • 70-90 sq mm (Regional Analysis: North America, Europe, Asia-Pacific, and Rest of the World)
  • >90 sq mm (Regional Analysis: North America, Europe, Asia-Pacific, and Rest of the World)

EV Busbar Market, by Region

  • North America (Country Analysis: The USA, Canada, and Mexico)
  • Europe (Country Analysis: Germany, France, The UK, Italy, Russia, and the Rest of Europe)
  • Asia-Pacific (Country Analysis: Japan, China, India, South Korea, and the Rest of Asia-Pacific)
  • Rest of the World (Country Analysis: Brazil, Argentina, and Others)

Research Methodology

  • This strategic assessment report provides a comprehensive analysis that reflects today’s EV busbar market realities and future market possibilities for the forecast period.
  • The report segments and analyzes the market in the most detailed manner to provide a panoramic view of the market.
  • The vital data/information provided in the report can play a crucial role for market participants as well as investors in the identification of the low-hanging fruit available in the market, as well as to formulate growth strategies to expedite their growth process.
  • This report offers high-quality insights and is the outcome of a detailed research methodology comprising extensive secondary research, rigorous primary interviews with industry stakeholders, and validation and triangulation with a proprietary database and statistical tools.
  • More than 1,000 authenticated secondary sources, such as company annual reports, fact books, press releases, journals, investor presentations, white papers, patents, and articles, have been leveraged to gather the data.
  • We conducted more than 20 detailed primary interviews with market players across the value chain in all four regions and industry experts to obtain both qualitative and quantitative insights.

Customization Options

Company Profiling

  • Detailed profiling of additional market players (up to three players)
  • SWOT analysis of key players (up to three players)

Competitive Benchmarking

  • Benchmarking of key players on the following parameters: Service portfolio, geographical reach, regional presence, and strategic alliances
Custom Research: The analyst offers custom research services related to market assessment, competitive benchmarking, sourcing & procurement, target screening, and more.

Table of Contents

Report Scope
  • Report Objectives
  • Research Methodology
  • Market Segmentation
  • Secondary Research
  • Key Information Gathered from Secondary Research
  • Primary Research
  • Key Information Gathered from Primary Research
  • Breakdown of Primary Interviews by Region, Designation, and Value Chain Node
  • Data Analysis and Triangulation
1. Executive Summary: A Bird’s Eye View of the Market
2. Market Environment Analysis: Study of Factors Affecting the Market Dynamics
2.1. Supply Chain Analysis (Identification of Key Players/Materials across the Value Chain)
2.2. PEST Analysis (List of All Factors Directly or Indirectly Affecting the Market Demand)
2.3. Industry Life Cycle Analysis (Current and Future Lifecycle Stage of the Market)
2.4. Key Trends (Key Industry as well as Market Trends Shaping the Market Dynamics)
2.4.1. Shift toward Lightweight Materials to improve energy efficiency and performance.
2.4.2. Rising vehicle electrification is driving the need for advanced busbar solutions and power distribution networks
2.5. Market Drivers (Study of Drivers and their Short- and Long-Term Impacts)
2.5.1. Increasing demand and adoption of EV
2.5.2. Environmental Regulations and Government Initiative
2.5.3. Rising Adoption of High-Voltage EV Systems
2.6. Market Challenges (Study of Factors Hindering the Adoption/Growth)
2.6.1. High Dependency on the Organic Growth of Electric Vehicle Production
2.6.2. High Fluctuation of Raw Material Prices
2.6.3. Limited Standardization across EV Platforms
3. EV Busbar Market Assessment (2019-2031) (US$ Million and Million Lbs.)
3.1. Market Segment Analysis (2024 and 2031) (US$ Million and Million Lbs.)
3.2. EV Busbar Market Trend and Forecast (US$ Million)
3.3. Market Scenario Analysis: Growth Trajectories in Different Market Conditions
3.4. Copper Types Used for EV Busbars
3.5. Country’s Electrification Goals
3.6. Key Users/Customers
4. EV Busbar Market Segments’ Analysis (2019-2031) (US$ Million & Million Lbs.)
4.1. Propulsion-Type Analysis
4.1.1. BEV: Regional Trend and Forecast (US$ Million & Million Lbs.)
4.1.2. HEV: Regional Trend and Forecast (US$ Million & Million Lbs.)
4.2. Vehicle-Type Analysis
4.2.1. LV: Regional Trend and Forecast (US$ Million & Million Lbs.)
4.2.2. M&HCV: Regional Trend and Forecast (US$ Million & Million Lbs.)
4.3. Product-Type Analysis
4.3.1. Rigid Busbar: Regional Trend and Forecast (US$ Million & Million Lbs.)
4.3.2. Flexible Busbar: Regional Trend and Forecast (US$ Million & Million Lbs.)
4.4. Material-Type Analysis
4.4.1. Copper: Regional Trend and Forecast (US$ Million & Million Lbs.)
4.4.2. Aluminum: Regional Trend and Forecast (US$ Million & Million Lbs.)
4.4.3. Bimetallic: Regional Trend and Forecast (US$ Million & Million Lbs.)
4.5. Insulation Material-Type Analysis
4.5.1. PET: Regional Trend and Forecast (US$ Million & Million Lbs.)
4.5.2. PI: Regional Trend and Forecast (US$ Million & Million Lbs.)
4.5.3. PA12: Regional Trend and Forecast (US$ Million & Million Lbs.)
4.5.4. Epoxy Powder: Regional Trend and Forecast (US$ Million & Million Lbs.)
4.5.5. Silicon Rubber: Regional Trend and Forecast (US$ Million & Million Lbs.)
4.5.6. PVC: Regional Trend and Forecast (US$ Million & Million Lbs.)
4.5.7. Other Insulation Materials: Regional Trend and Forecast (US$ Million & Million Lbs.)
4.6. Insulation Form-Type Analysis
4.6.1. Powder Coating: Regional Trend and Forecast (US$ Million & Million Lbs.)
4.6.2. Heat Shrink Tubing: Regional Trend and Forecast (US$ Million & Million Lbs.)
4.6.3. Dipping: Regional Trend and Forecast (US$ Million & Million Lbs.)
4.6.4. Film: Regional Trend and Forecast (US$ Million & Million Lbs.)
4.6.5. Other Insulation Forms: Regional Trend and Forecast (US$ Million & Million Lbs.)
4.7. Sales Channel-Type Analysis
4.7.1. Battery Manufacturers: Regional Trend and Forecast (US$ Million & Million Lbs.)
4.7.2. OEMs: Regional Trend and Forecast (US$ Million & Million Lbs.)
4.8. Application-Type Analysis
4.8.1. Inside Battery: Regional Trend and Forecast (US$ Million & Million Lbs.)
4.8.2. Outside Battery: Regional Trend and Forecast (US$ Million & Million Lbs.)
4.9. Inside Battery Cross-Sectional Area-Type Analysis
4.9.1. < 35 sq mm: Regional Trend and Forecast (US$ Million & Million Lbs.)
4.9.2. 35-50 sq mm: Regional Trend and Forecast (US$ Million & Million Lbs.)
4.9.3. >50 sq mm: Regional Trend and Forecast (US$ Million & Million Lbs.)
4.10. Outside Battery Cross-Sectional Area-Type Analysis
4.10.1. < 70 sq mm: Regional Trend and Forecast (US$ Million & Million Lbs.)
4.10.2. 70-90 sq mm: Regional Trend and Forecast (US$ Million & Million Lbs.)
4.10.3. >90 sq mm: Regional Trend and Forecast (US$ Million & Million Lbs.)
4.11. Regional Analysis
4.11.1. North American EV Busbar Market: Country Analysis
4.11.1.1. The USA’s EV Busbar Market T&F (US$ Million & Million Lbs.)
4.11.1.2. Canadian EV Busbar Market T&F (US$ Million & Million Lbs.)
4.11.1.3. Mexican EV Busbar Market T&F (US$ Million & Million Lbs.)
4.11.2. European EV Busbar Market: Country Analysis
4.11.2.1. German EV Busbar Market T&F (US$ Million & Million Lbs.)
4.11.2.2. French EV Busbar Market T&F (US$ Million & Million Lbs.)
4.11.2.3. The UK’s EV Busbar Market T&F (US$ Million & Million Lbs.)
4.11.2.4. Italian EV Busbar Market T&F (US$ Million & Million Lbs.)
4.11.2.5. Russian EV Busbar Market T&F (US$ Million & Million Lbs.)
4.11.2.6. Rest of the European EV Busbar Market T&F (US$ Million & Million Lbs.)
4.11.3. Asia-Pacific’s EV Busbar Market: Country Analysis
4.11.3.1. Japanese EV Busbar Market T&F (US$ Million & Million Lbs.)
4.11.3.2. Chinese EV Busbar Seals Market T&F (US$ Million & Million Lbs.)
4.11.3.3. South Korean EV Busbar Market T&F (US$ Million & Million Lbs.)
4.11.3.4. Indian EV Busbar Market T&F (US$ Million & Million Lbs.)
4.11.3.5. Rest of the Asia-Pacific’s EV Busbar Market T&F (US$ Million & Million Lbs.)
4.11.4. Rest of the World’s (RoW) EV Busbar Market: Country Analysis
4.11.4.1. Brazilian EV Busbar Market T&F (US$ Million & Million Lbs.)
4.11.4.2. Argentinian EV Busbar Market T&F (US$ Million & Million Lbs.)
4.11.4.3. Other EV Busbar Market T&F (US$ Million & Million Lbs.)
5. Competitive Analysis
5.1. Degree of Competition (Current Stage of Competition based on Market Consolidation)
5.2. Competitive Landscape (Benchmarking of Key Players in Crucial Parameters)
5.3. Market Share Analysis (Key Players and their Respective Shares)
5.4. Product Portfolio Mapping (Map their Presence in Different Market Categories)
5.5. Geographical Presence (Map their Geographical Presence)
5.6. M&As, JVs, Collaborations, Strategic Alliances, etc. (Map All the Major M&As and JVs)
5.7. Porter’s Five Forces Analysis (A Bird’s Eye View of the Overall Competitive Landscape)
6. Strategic Growth Opportunities
6.1. Overall Growth Opportunities
6.2. Emerging Trends (Key Trends that May Shape the Market Dynamics in the Future)
6.3. Key Success Factors (KSFs) (Identifying Some Factors that May Help Companies to Gain Business)
7. Company Profiles of Key Players (Alphabetically Arranged)
7.1. Amphenol Corporation
7.2. APTIV
7.3. ENNOVI
7.4. Leoni AG
7.5. Luvata Oy
7.6. Mersen
7.7. Methode Electronics, Inc.
7.8. Rogers Corporation
7.9. Scherdel
7.10. Sertec Group Ltd.
8. Appendix
8.1. Market Dataset
8.2. Abbreviations
8.3. Currency Exchange
8.4. About Us
8.5. Copyright
8.6. Disclaimer

Companies Mentioned

  • Amphenol Corporation
  • APTIV
  • ENNOVI
  • Leoni AG
  • Luvata Oy
  • Mersen
  • Methode Electronics, Inc.
  • Rogers Corporation
  • Scherdel
  • Sertec Group Ltd.