![]() |
市场调查报告书
商品编码
1873360
印刷基板(PCB)软体:全球市场份额和排名、总收入和需求预测(2025-2031年)PCB Software - Global Market Share and Ranking, Overall Sales and Demand Forecast 2025-2031 |
||||||
※ 本网页内容可能与最新版本有所差异。详细情况请与我们联繫。
全球PCB软体市场预计到2024年价值为11.22亿美元,预计到2031年将达到19.58亿美元,在预测期(2025-2031年)内以8.4%的复合年增长率增长。
PCB软体(印刷基板软体)是一款专业的电子设计自动化(EDA)工具,专门用于印刷电路基板(PCB)的设计、模拟和製造。它帮助电子工程师和设计团队将抽象的电路图转化为可实际製造的基板布局。
在功能方面,PCB软体首先透过汇入或绘製原理图来定义元件之间的电气连接。然后,它进入核心PCB布局设计阶段。使用者可以将元件封装(电阻器、晶片、连接器等)精确地放置在虚拟基板,并透过互动式或自动布线连接元件引脚之间的铜线。该软体还整合了设计规则检查(DRC)功能,可即时检验布线间距、线宽和过孔尺寸等参数是否符合製造流程要求。这显着降低了设计错误的风险。
高阶软体还提供诸如三维建模、讯号完整性分析和热模拟等功能,以优化高速电路的性能和可靠性。设计完成后,软体会产生标准製造文件,可与PCB工厂的生产设备和组装机无缝对接。
作为电子硬体的核心开发平台,PCB软体显着提高了设计效率、精确度和可製造性,是消费性电子、工业控制、通讯设备乃至航太等领域电子产品创新的重要支援工具。其发展直接推动了电子系统的微型化、高整合度和高性能化。
全球主要企业包括西门子、Altium和Cadence。这三大厂商的市占率约为62%。欧洲和美国占全球产量的大部分,其次是日本。从应用领域来看,通讯产业应用最为广泛,其次是消费性电子和电脑产业。
市场驱动因素
对先进电子设备的需求不断增长:家用电子电器、汽车电子产品、物联网设备和通讯设备的成长推动了对先进 PCB 设计软体的需求,以处理复杂的基板和高密度基板。
自动化和人工智慧的采用率不断提高:整合了自动化、人工智慧和机器学习的 PCB 软体正在吸引越来越多的用户,因为它提高了设计精度,减少了错误,并加快了开发週期。
对更小、更快设计的需求:随着设备变得越来越小、越来越快,PCB 软体必须支援进阶设计功能,例如讯号完整性分析、温度控管和 3D 视觉化。
更重视可製造性设计 (DFM):优化 PCB 设计以方便製造和测试的软体可降低生产成本和上市时间。
新兴市场扩张:随着亚太地区和其他发展中地区电子製造业的崛起,对价格合理、在地化的PCB设计解决方案的需求日益增长。
市场挑战
高成本和授权模式:高品质的PCB软体价格昂贵,尤其对于中小企业而言,这限制了其普及。复杂的授权和订阅模式也令用户望而却步。
学习曲线陡峭且技能短缺:高级 PCB 设计工具需要专门的培训和专业知识,这给招募和留住熟练的设计师带来了挑战。
互通性和相容性问题:将 PCB 软体与其他 CAD、模拟和製造工具整合可能具有挑战性,从而影响工作流程效率。
技术快速变革:不断发展的电子技术需要不断进行软体更新和功能添加,这增加了供应商的开发成本。
安全性问题:PCB 设计涉及敏感的智慧财产权,因此对资料安全和使用云端基础的软体的担忧可能会阻碍其普及。
本报告旨在按地区/国家、类型和应用对全球 PCB 软体市场进行全面分析,重点关注总收入、市场份额和主要企业的排名。
本报告以2024年为基准年,按销售收入提供PCB软体市场规模、估算和预测,并包含2020年至2031年的历史数据和预测数据。透过定量和定性分析,我们帮助读者制定业务/成长策略,评估市场竞争格局,分析自身在当前市场中的地位,并就PCB软体做出明智的商业决策。
市场区隔
公司
按类型分類的细分市场
应用领域
按地区
The global market for PCB Software was estimated to be worth US$ 1122 million in 2024 and is forecast to a readjusted size of US$ 1958 million by 2031 with a CAGR of 8.4% during the forecast period 2025-2031.
PCB software (Printed Circuit Board Software) is a professional electronic design automation (EDA) tool specifically used for designing, simulating, and manufacturing printed circuit boards (PCBs). It serves electronic engineers and design teams, converting abstract circuit schematics into physical circuit board layouts that can be actually produced.
In terms of function, PCB software first allows users to import or draw circuit schematics to define the electrical connection relationship of components. Then enter the core PCB layout design stage: users can accurately place component packages (such as resistors, chips, and connectors) on virtual boards, and connect copper foil traces between component pins through interactive or automatic wiring functions. The software integrates design rule checking (DRC) to verify in real time whether parameters such as wiring spacing, line width, and via size meet the manufacturing process requirements, greatly reducing the risk of design errors.
High-end software also provides functions such as 3D modeling, signal integrity analysis, and thermal simulation to optimize high-speed circuit performance and reliability. After the design is completed, the software generates standard manufacturing files to seamlessly connect the production equipment and placement machines of the PCB factory.
As the core development platform for electronic hardware, PCB software has significantly improved design efficiency, accuracy and manufacturability, and is a key support tool for electronic product innovation in consumer electronics, industrial control, communication equipment, and even aerospace. Its development has directly promoted the miniaturization, high integration and high performance of electronic systems.
Global key players of PCB software include Siemens, Altium, Cadence, etc. Global top three manufacturers hold a share about 62%. Europe and North America are the major producing regions in the world, followed by Japan. In terms of application, the product is most widely used in telecommunication, followed by consumer electronics and computers.
Market Drivers
Rising Demand for Advanced Electronics: The growth of consumer electronics, automotive electronics, IoT devices, and telecommunications fuels the need for sophisticated PCB design software to handle complex multi-layer and high-density boards.
Increasing Adoption of Automation and AI: PCB software integrating automation, AI, and machine learning improves design accuracy, reduces errors, and accelerates development cycles, attracting more users.
Miniaturization and High-Speed Design Requirements: As devices become smaller and faster, PCB software must support advanced design features like signal integrity analysis, thermal management, and 3D visualization.
Growing Focus on Design for Manufacturability (DFM): Software that helps optimize PCB designs for easier manufacturing and testing reduces production costs and time-to-market.
Expansion in Emerging Markets: Rising electronics manufacturing in Asia-Pacific and other developing regions increases demand for affordable, localized PCB design solutions.
Market Challenges
High Software Cost and Licensing Models: Premium PCB software can be expensive, especially for small and medium enterprises, limiting adoption. Complex licensing and subscription models add to user hesitancy.
Steep Learning Curve and Skill Shortage: Advanced PCB design tools require specialized training and expertise, posing a challenge in hiring and retaining skilled designers.
Interoperability and Compatibility Issues: Integrating PCB software with other CAD, simulation, and manufacturing tools can be difficult, affecting workflow efficiency.
Rapid Technological Changes: Constantly evolving electronics technologies demand continuous software updates and feature additions, increasing development costs for providers.
Security Concerns: As PCB design involves sensitive intellectual property, concerns over data security and cloud-based software usage can hinder adoption.
This report aims to provide a comprehensive presentation of the global market for PCB Software, focusing on the total sales revenue, key companies market share and ranking, together with an analysis of PCB Software by region & country, by Type, and by Application.
The PCB Software market size, estimations, and forecasts are provided in terms of sales revenue ($ millions), considering 2024 as the base year, with history and forecast data for the period from 2020 to 2031. With both quantitative and qualitative analysis, to help readers develop business/growth strategies, assess the market competitive situation, analyze their position in the current marketplace, and make informed business decisions regarding PCB Software.
Market Segmentation
By Company
Segment by Type
Segment by Application
By Region
Chapter Outline
Chapter 1: Introduces the report scope of the report, global total market size. This chapter also provides the market dynamics, latest developments of the market, the driving factors and restrictive factors of the market, the challenges and risks faced by manufacturers in the industry, and the analysis of relevant policies in the industry.
Chapter 2: Detailed analysis of PCB Software company competitive landscape, revenue market share, latest development plan, merger, and acquisition information, etc.
Chapter 3: Provides the analysis of various market segments by Type, covering the market size and development potential of each market segment, to help readers find the blue ocean market in different market segments.
Chapter 4: Provides the analysis of various market segments by Application, covering the market size and development potential of each market segment, to help readers find the blue ocean market in different downstream markets.
Chapter 5: Revenue of PCB Software in regional level. It provides a quantitative analysis of the market size and development potential of each region and introduces the market development, future development prospects, market space, and market size of each country in the world.
Chapter 6: Revenue of PCB Software in country level. It provides sigmate data by Type, and by Application for each country/region.
Chapter 7: Provides profiles of key players, introducing the basic situation of the main companies in the market in detail, including product revenue, gross margin, product introduction, recent development, etc.
Chapter 8: Analysis of industrial chain, including the upstream and downstream of the industry.
Chapter 9: Conclusion.