![]() |
市場調査レポート
商品コード
1714187
自動車用スロットルケーブルの世界市場:車両タイプ別、タイプ別、販売チャネル別、地域別、機会、予測、2018年~2032年Automotive Throttle Cables Market Assessment, By Vehicle Type [Passenger Car, Commercial Vehicles], By Type [Single-Core, Multi-Core], By Sales Channel [Original Equipment Manufacturers, Aftermarket], By Region, Opportunities and Forecast, 2018-2032F |
||||||
カスタマイズ可能
|
自動車用スロットルケーブルの世界市場:車両タイプ別、タイプ別、販売チャネル別、地域別、機会、予測、2018年~2032年 |
出版日: 2025年04月28日
発行: Market Xcel - Markets and Data
ページ情報: 英文 225 Pages
納期: 3~5営業日
|
世界の自動車用スロットルケーブルの市場規模は、2025年~2032年の予測期間中に5.05%のCAGRで拡大し、2024年の24億1,000万米ドルから2032年には35億8,000万米ドルに成長すると予測されています。自動車用スロットルケーブル市場は、世界の自動車推進システムの重要な要素であり、さまざまな業界の促進要因の影響を受けて力強い成長を遂げています。急速な自動車の電動化は主要な推進力であり、電動パワートレインと互換性のある高トルクの特殊なドライブトレインが必要であると同時に、軽量複合材料の技術革新も促進しています。
自動車用スロットルケーブル市場は、いくつかの主要促進要因に後押しされていますが、中でも特に顕著なのは、新興国を中心とした世界の自動車生産台数の着実な増加です。この成長動向は、世界中の厳しい排ガス規制によってもさらに後押しされており、メーカーはより優れたスロットルレスポンスを提供し、摩擦損失を最小限に抑える高価値の素材を使った技術革新を余儀なくされています。急速に発展しているアフターマーケット分野は、もう一つの主な発展方向であり、そこでは車両の老朽化によって、一流の交換部品に対する永続的な需要が生まれています。技術の進歩は、ポリマーコーティングや耐腐食性合金における最先端の進歩によって、製品の性能基準を引き上げ、市場のパラメーターを再定義し続けています。電子スロットル・コントロール・システムがプレミアム・セグメントで牽引力を増している一方で、メカニカル・ケーブルは大衆市場用途で高い信頼性と費用対効果によって競争力を維持しています。アジア太平洋地域は製造規模のメリットを活かしてバリューチェーンをリードしていますが、欧米市場は性能に最適化されたソリューションを通じてプレミアム化に集中しています。業界参入企業の戦略的使命は、電動化の動向と推進アーキテクチャーの変化という2つの課題に対応するための材料科学の革新と相乗的なOEM提携に集中しています。市場の回復力は、国境を越えた円滑な取引を可能にする世界標準仕様にあるため、スロットルケーブルはさまざまなモビリティ・ソリューションの重要な部品としての地位を維持し続けます。
例えば、Fanatecは2024年4月、中空アルミチューブによる巧みなケーブル管理ソリューションを特徴とする新しいCSLコックピットを発表しました。この設計により、ホイールベース、ペダル、その他のハードウェアのケーブルがリグ内に整然と通され、美観と機能性の両方が向上しています。金属を減らすことによる剛性への懸念にもかかわらず、コックピットは構造的な完全性を維持し、従来の産業用セットアップに代わるスマートな選択肢を提供しています。この革新的なデザインは、整理整頓され、視覚的に魅力的なシムレーシングリグに対する需要の高まりに応えることを目的としています。
当レポートでは、世界の自動車用スロットルケーブル市場について調査し、市場の概要とともに、車両タイプ別、タイプ別、販売チャネル別、地域別動向、および市場に参入する企業のプロファイルなどを提供しています。
Global automotive throttle cable market is projected to witness a CAGR of 5.05% during the forecast period, 2025-2032, growing from USD 2.41 billion in 2024 to USD 3.58 billion in 2032. The automotive throttle cables market is a key element in worldwide vehicle propulsion systems, witnessing strong growth influenced by various industry drivers. Rapid vehicle electrification is a leading driver, necessitating high-torque specialized drivetrains compatible with electric powertrains while also promoting innovation in lightweight composite materials.
The automotive throttle cables market is being propelled by several key drivers, the most prominent among them being the steady rise in world vehicle production, particularly in emerging economies. This trend of growth is also supported further by stringent emission controls around the world, compelling manufacturers to innovate with high-value materials that provide better throttle response and minimize friction loss. The rapidly developing aftermarket segment constitutes another key development direction, where aging fleets of vehicles create lasting demand for first-rate replacement parts. Technological advancement continues to redefine market parameters, with leading-edge advancements in polymer coatings and corrosion-resistant alloys, raising product performance standards. While electronic throttle control systems find increasing traction in premium segments, mechanical cables retain a competitive edge through higher reliability and cost-effectiveness in mass-market applications. Asia-Pacific leads the value chain, taking advantage of manufacturing scale benefits, while Western markets concentrate on premiumization through performance-optimized solutions. Industry players' strategic mandates are focused on material science innovation and synergistic OEM collaborations to meet the twin challenges of electrification trends as well as changing propulsion architectures. Market resilience lies in the global standard specifications that enable hassle-free cross-border business, so throttle cables continue to hold a place as critical components in various mobility solutions.
For instance, in April 2024, Fanatec launched its new CSL Cockpit, featuring a clever cable management solution through hollow aluminum tubing. This design allows cables for the wheelbase, pedals, and other hardware to be neatly fed through the rig, enhancing both aesthetics and functionality. Despite concerns about rigidity due to less metal, the cockpit maintains its structural integrity, offering a sleek alternative to traditional industrial setups. The innovative design aims to meet the growing demand for tidy, visually appealing sim-racing rigs.
New Installations Boost the Market Demand
The global automotive throttle cable market is expanding with robust growth being fueled by rising new vehicle production worldwide. With producers ramping up production to meet rebounding demand from consumers, throttle cable fitments are growing proportionately in passenger cars, commercial vehicles, and two-wheelers. The trend is particularly visible in emerging economies as burgeoning middle-class populations are driving first-time automobile purchases. In addition, the implementation of premium throttle-by-wire technology in new vehicles is offering prospects for premium cable solutions with enhanced longevity and accuracy. OEMs are increasingly using high-performance throttle cables to meet stringent emission standards and gain improved fuel economy. This increase in the production of new vehicles, along with the demand for improved throttle response systems, is also propelling the market for throttle cables in all vehicle categories.
For instance, in November 2023, the Mahindra Thar by Mahindra & Mahindra Limited has been upgraded with the Ultimate9 evcX throttle controller, enhancing throttle response. The installation is designed as a DIY process, requiring users to connect the module between the throttle cable and the ECU. This simple upgrade provides improved driving performance and control. The controller is expected to appeal to Thar owners looking for a straightforward enhancement to their vehicle's responsiveness.
International Trades Between Countries Bolster the Demand
The global automotive throttle cable market is expanding speedily through international trade, as manufacturers utilize international supply chains to reduce production costs and meet the rising demands. The developing economies benefit from importing high-quality cables from established production hubs, while developed economies import low-cost components from low-cost manufacturing countries. Trade agreements and simplified customs procedures enable easy cross-border transfer of throttle cables, supporting both OEM assembly lines and aftermarket distributors. The uniformity of car parts across markets also increases volumes of trade, allowing manufacturers to attain economies of scale. As production of cars is more and more globalized, international trade still plays a key role in offsetting regional supply-demand discrepancies as well as encouraging technological transfer and competitive prices in the market for throttle cables.
For instance, in November 2024, a shipment under HSN Code 87141090 was recorded for 80 NOS of CABLE THROTTLE priced at USD 128.95, shipped from Bajaj Auto Ltd. (Mumbai Pune Road, Akurdi, India) with JNPT as the port of lading and origin, destined for Managua, Nicaragua (port of unlading). The consignee was listed as BANISTMO S.A. in Panama City, with the place of receipt at JNPT and the destination port as Managua.
Passenger Vehicles Dominate the Global Market
The passenger car segment leads the throttle cables market due to increasing car sales and increased demand for fuel-efficient transmission systems. Sedans, SUVs, and hatchbacks lead to demand as customers opt for quick throttle response and swift acceleration. Strict emission guidelines are compelling carmakers to research and develop newer cable materials offering lower friction levels and enhanced durability. The increasing aftermarket for replacement components further bolsters segment leadership, underpinned by routine maintenance requirements in older fleets of vehicles. As manufacturers increasingly prioritize improved drivability and accelerator response in newer products, passenger cars remain the principal driver in this segment. Increasing mid-range vehicle manufacturing in emerging markets adds to the growth impetus.
For instance, in 2024, Total Passenger Vehicle Sales went up from 38.90 Lakh in FY2022-23 to 42.19 Lakh units in FY2023-24. Utility Vehicles from 20.04 Lakh to 25.21 Lakh units and Vans from 1.39 Lakh to 1.49 Lakh units. Whereas Sales of Passenger Cars fell from 17.47 Lakh to 15.49 Lakh units in FY2023-24 compared to last year.
Asia-Pacific Leads the Market for Automotive Throttle Cables Globally
Asia-Pacific is the prominent region for the automotive throttle cables market owing to increased vehicle manufacturing, rising aftermarket demand, and rapid industrialization. China, India, and Japan are strong drivers, nicely complemented by high OEM presence and production with competitive pricing. Increasing two-wheeler market and passenger car sales also augment market growth. Increasing disposable income and urbanization fuel demand for automotive components such as throttle cables. Moreover, tighter emission standards challenge manufacturers to create innovative cable materials and designs. Local manufacturers take advantage of the established supply networks and government policy favoring the production of autos. With increasing technology and extended distribution channels, the region can continue to stay in the lead, serving local and international automobile markets.
For instance, in 2023, the World's light commercial vehicle manufacturing figures show asymmetrical patterns between 2019 and 2023. Total light commercial vehicle (LCV) manufacturing was 20,229,083 units in 2019, which fell in 2020 to 16,990,857 units-presumably due to the pandemic-related stoppages. This was then followed by a recovery in 2021 (18,430,095 units) and 2022 (19,706,348 units) before breaking pre-pandemic records in 2023 at 21,441,715 units-showing a return to industry growth.
Future Market Scenario (2025 - 2032F)
Advanced nano-coated polymers and composite alloys will dominate next-gen cables, reducing weight while enhancing durability. Self-lubricating designs will emerge as the industry standard, virtually eliminating maintenance requirements.
While EV adoption grows, throttle cables will see renewed demand in hybrid systems and emerging markets where cost-sensitive ICE vehicles remain dominant until 2030. Premium EVs may incorporate high-performance cables for auxiliary systems.
Embedded strain sensors will transform passive cables into diagnostic components, feeding real-time wear data to vehicle ECUs. This will create new revenue streams through predictive maintenance solutions and OEM service packages.
Nearshoring trends will drive localized cable production in Europe/North America, while Asia consolidates as the innovation hub for advanced materials. Trade tariffs will accelerate this bifurcation of the supply landscape.
Key Players Landscape and Outlook
The market features established players competing with regional specialists through material innovation and cost optimization. Suppliers differentiate through proprietary coating technologies (e.g., PTFE/nickel-plated cables) and OEM-certified solutions. Strategic alliances with raw material providers are strengthening supply chain resilience, while Tier-2 manufacturers gain share in price-sensitive markets through localized production. The competitive intensity is escalating with electronic throttle control adoption, pushing mechanical cable producers to develop hybrid solutions. Aftermarket distribution networks and warranty-backed products are becoming key battlegrounds, particularly in emerging economies. Recent R&D focuses on extreme-condition durability for off-road/utility vehicles, creating niche premium segments. The landscape remains fragmented but consolidating, with M&A activity increasing among mid-sized suppliers seeking technological synergies.
All segments will be provided for all regions and countries covered
Companies mentioned above DO NOT hold any order as per market share and can be changed as per information available during research work.