Pronóstico del mercado europeo de automatización del diseño fotónico hasta 2030 – Análisis regional – por componente (solución y servicio), implementación (local y en la nube), tamaño de la organización (pymes y grandes empresas) y aplicación (investigación académica e investigación y fabricación industrial)

BMIRE00030426 | Pages: 90 | Technology, Media and Telecommunications | Jul 2024 | Type: Regional | Status: Published
El mercado europeo de automatización del diseño fotónico se valoró en 281,18 millones de dólares en 2022 y se espera que alcance los 791,25 millones de dólares en 2030; se estima que registrará una tasa compuesta anual del 13,8% entre 2022 y 2030.

Los avances en los dispositivos fotónicos impulsan el mercado europeo de automatización del diseño fotónico

El mercado europeo de automatización del diseño fotónico está experimentando un crecimiento debido a la continua avances en dispositivos fotónicos, como la fotónica de silicio y los láseres. Estos dispositivos avanzados requieren herramientas de diseño sofisticadas y técnicas de automatización para optimizar el rendimiento y la funcionalidad. Las demandas de rendimiento y funcionalidad están vinculadas a varias microtendencias, como la creciente demanda de velocidad de transferencia de datos, el mayor uso de la fabricación aditiva y el aumento de las aplicaciones de detección remota. Los sensores fotónicos, que detectan emisiones precisas de luz o energía dentro del espectro fotónico, tienen un alcance cada vez mayor de aplicaciones en varias industrias, incluidas la energía, las telecomunicaciones, la manufactura, la aeroespacial y la defensa. Por ejemplo, incorporar tecnología de sensores de fibra óptica en aplicaciones de monitoreo y medición en el sector energético puede ayudar a reducir los desechos y la contaminación. Las industrias aeroespacial y de defensa también están experimentando un crecimiento debido al uso ampliado de aplicaciones automatizadas y nuevas herramientas de detección remota, lo que impulsa la demanda de automatización del diseño fotónico. Los circuitos integrados fotónicos (PIC) son otra área de avance en las tecnologías fotónicas. Estos circuitos combinan múltiples componentes fotónicos en un solo chip, lo que permite diseños compactos y eficientes. El diseño y la fabricación de PIC requieren técnicas y software de automatización avanzados. La integración de la metaóptica con las tecnologías de guías de ondas también está impulsando los circuitos integrados fotónicos a nuevas alturas. Los continuos avances en las tecnologías fotónicas resaltan la necesidad de herramientas de diseño sofisticadas y técnicas de automatización para optimizar el rendimiento y la funcionalidad de estos dispositivos. Las herramientas de automatización del diseño fotónico desempeñan un papel crucial a la hora de agilizar el proceso de diseño, automatizar tareas repetitivas y permitir iteraciones de diseño más rápidas. Al utilizar estas herramientas, los diseñadores pueden lograr ganancias de eficiencia, optimización del rendimiento y reducción de costos en sus flujos de trabajo de diseño.

Descripción general del mercado europeo de automatización de diseño fotónico

El mercado en Europa está segmentado en Francia, Alemania, Rusia, el Reino Unido, Suiza y el resto de Europa. El mercado europeo de automatización del diseño fotónico es un panorama vibrante y en rápida evolución que abarca una amplia gama de industrias y aplicaciones. Europa ha solidificado su posición como líder mundial en la industria de la fotónica, debido a su amplia trayectoria de innovación tecnológica y su compromiso inquebrantable con la investigación y el desarrollo. Un factor clave detrás de la expansión del mercado europeo de automatización del diseño fotónico es la firme dedicación de la región a la investigación y el desarrollo. En particular, países como Alemania, Francia y los Países Bajos tienen una larga historia de inversión en tecnologías pioneras y fomento de asociaciones entre el mundo académico, la industria y las entidades gubernamentales. Este enfoque duradero en la innovación y la colaboración ha desempeñado un papel fundamental a la hora de posicionar a Europa como pionera en la industria de la fotónica. Este enfoque colaborativo ha llevado al desarrollo de herramientas y metodologías de diseño avanzadas que permiten el diseño eficiente y eficaz de dispositivos y sistemas fotónicos. Otro impulsor importante del mercado europeo de automatización del diseño fotónico es la sólida infraestructura de telecomunicaciones de la región. Europa ha estado a la vanguardia de la revolución de las telecomunicaciones, con empresas como Nokia, Ericsson y Deutsche Telekom a la cabeza en el desarrollo y despliegue de tecnologías de redes avanzadas. Estas tecnologías, incluida la fibra óptica y la transmisión de datos de alta velocidad, dependen en gran medida de dispositivos y sistemas fotónicos. Como resultado, existe una fuerte demanda de herramientas sofisticadas de automatización del diseño que puedan manejar la complejidad de estas tecnologías y garantizar su rendimiento óptimo.

Ingresos del mercado europeo de automatización del diseño fotónico y pronóstico hasta 2030 (millones de dólares estadounidenses)

Segmentación del mercado europeo de automatización del diseño fotónico

El mercado europeo de automatización del diseño fotónico está segmentado según el componente , implementación, tamaño de la organización, aplicación y país.

Basado en componentes, el mercado europeo de automatización del diseño fotónico se divide en solución y servicio. El segmento de soluciones tuvo una participación mayor en 2022.

En términos de implementación, el mercado europeo de automatización del diseño fotónico se divide en local y en la nube. El segmento local tuvo una participación mayor en 2022.

Por tamaño de organización, el mercado europeo de automatización del diseño fotónico se divide en pymes y grandes empresas. El segmento de grandes empresas tuvo una participación mayor en 2022.

En términos de aplicación, el mercado europeo de automatización del diseño fotónico se bifurca en investigación académica e investigación y fabricación industriales. El segmento de investigación y fabricación industrial tuvo una participación mayor en 2022.

Según el país, el mercado europeo de automatización del diseño fotónico se clasifica en Alemania, Francia, el Reino Unido, Rusia, Suiza y el resto de Europa. Alemania dominó el mercado europeo de automatización del diseño fotónico en 2022.

International BV, VPIphotonics GmbH, Optiwave Systems Inc, Luceda Photonics, Cadence Design Systems Inc, Siemens AG y Synopsys Inc son algunas de las empresas líderes que operan en el Mercado europeo de automatización del diseño fotónico.

TABLE OF CONTENTS

 

1. Introduction

1.1 The Insight Partners Research Report Guidance

1.2 Market Segmentation

2. Executive Summary

2.1 Key Insights

2.2 Market Attractiveness

3. Research Methodology

3.1 Coverage

3.2 Secondary Research

3.3 Primary Research

4. Europe Photonic Design Automation Market Landscape

4.1 Overview

4.2 Ecosystem Analysis

4.2.1 List of Vendors in the Value Chain:

5. Europe Photonic Design Automation Market - Key Market Dynamics

5.1 Europe Photonic Design Automation Market - Key Market Dynamics

5.2 Market Drivers

5.2.1 Growing Demand for Automation

5.2.2 Increasing Need for Efficiency and Accuracy

5.3 Market Restraints

5.3.1 Lack of Awareness Regarding Benefits and Capabilities of Photonic Design Automation

5.4 Market Opportunities

5.4.1 Advancements in Photonic Devices

5.4.2 Emphasis on High Performance and Environmentally Sustainable Solutions

5.5 Future Trends

5.5.1 Integration of Photonics in Electronic Design Automation (EDA) Tools

5.5.2 Advancements in Compact Modelling and Simulation Tools

5.6 Impact of Drivers and Restraints:

6. Photonic Design Automation Market - Europe Market Analysis

6.1 Europe Photonic Design Automation Market Revenue (US$ Million), 2022 - 2030

6.2 Europe Photonic Design Automation Market Forecast and Analysis

7. Europe Photonic Design Automation Market Analysis - Component

7.1 Solution

7.1.1 Overview

7.1.2 Solution Market, Revenue and Forecast to 2030 (US$ Million)

7.2 Service

7.2.1 Overview

7.2.2 Service Market, Revenue and Forecast to 2030 (US$ Million)

8. Europe Photonic Design Automation Market Analysis - Deployment

8.1 On-Premise

8.1.1 Overview

8.1.2 On-Premise Market, Revenue and Forecast to 2030 (US$ Million)

8.2 Cloud

8.2.1 Overview

8.2.2 Cloud Market, Revenue and Forecast to 2030 (US$ Million)

9. Europe Photonic Design Automation Market Analysis - Organization Size

9.1 SMEs

9.1.1 Overview

9.1.2 SMEs Market, Revenue and Forecast to 2030 (US$ Million)

9.2 Large Enterprises

9.2.1 Overview

9.2.2 Large Enterprises Market, Revenue and Forecast to 2030 (US$ Million)

10. Europe Photonic Design Automation Market Analysis - Application

10.1 Academic Research

10.1.1 Overview

10.1.2 Academic Research Market, Revenue and Forecast to 2030 (US$ Million)

10.2 Industrial Research & Manufacturing

10.2.1 Overview

10.2.2 Industrial Research & Manufacturing Market, Revenue and Forecast to 2030 (US$ Million)

11. Europe Photonic Design Automation Market - Country Analysis

11.1 Europe

11.1.1 Europe Photonic Design Automation Market Revenue and Forecasts and Analysis - By Country

11.1.1.1 Europe Photonic Design Automation Market Revenue and Forecasts and Analysis - By Country

11.1.1.2 Germany Photonic Design Automation Market Revenue and Forecasts to 2030 (US$ Mn)

11.1.1.2.1 Germany Photonic Design Automation Market Breakdown, by Component

11.1.1.2.2 Germany Photonic Design Automation Market Breakdown, by Deployment

11.1.1.2.3 Germany Photonic Design Automation Market Breakdown, by Organization Size

11.1.1.2.4 Germany Photonic Design Automation Market Breakdown, by Application

11.1.1.3 France Photonic Design Automation Market Revenue and Forecasts to 2030 (US$ Mn)

11.1.1.3.1 France Photonic Design Automation Market Breakdown, by Component

11.1.1.3.2 France Photonic Design Automation Market Breakdown, by Deployment

11.1.1.3.3 France Photonic Design Automation Market Breakdown, by Organization Size

11.1.1.3.4 France Photonic Design Automation Market Breakdown, by Application

11.1.1.4 UK Photonic Design Automation Market Revenue and Forecasts to 2030 (US$ Mn)

11.1.1.4.1 UK Photonic Design Automation Market Breakdown, by Component

11.1.1.4.2 UK Photonic Design Automation Market Breakdown, by Deployment

11.1.1.4.3 UK Photonic Design Automation Market Breakdown, by Organization Size

11.1.1.4.4 UK Photonic Design Automation Market Breakdown, by Application

11.1.1.5 Russia Photonic Design Automation Market Revenue and Forecasts to 2030 (US$ Mn)

11.1.1.5.1 Russia Photonic Design Automation Market Breakdown, by Component

11.1.1.5.2 Russia Photonic Design Automation Market Breakdown, by Deployment

11.1.1.5.3 Russia Photonic Design Automation Market Breakdown, by Organization Size

11.1.1.5.4 Russia Photonic Design Automation Market Breakdown, by Application

11.1.1.6 Switzerland Photonic Design Automation Market Revenue and Forecasts to 2030 (US$ Mn)

11.1.1.6.1 Switzerland Photonic Design Automation Market Breakdown, by Component

11.1.1.6.2 Switzerland Photonic Design Automation Market Breakdown, by Deployment

11.1.1.6.3 Switzerland Photonic Design Automation Market Breakdown, by Organization Size

11.1.1.6.4 Switzerland Photonic Design Automation Market Breakdown, by Application

11.1.1.7 Rest of Europe Photonic Design Automation Market Revenue and Forecasts to 2030 (US$ Mn)

11.1.1.7.1 Rest of Europe Photonic Design Automation Market Breakdown, by Component

11.1.1.7.2 Rest of Europe Photonic Design Automation Market Breakdown, by Deployment

11.1.1.7.3 Rest of Europe Photonic Design Automation Market Breakdown, by Organization Size

11.1.1.7.4 Rest of Europe Photonic Design Automation Market Breakdown, by Application

12. Industry Landscape

12.1 Overview

12.2 Market Initiative

12.2 New Product Development

12.3 Merger and Acquisition

13. Company Profiles

13.1 LioniX International BV

13.1.1 Key Facts

13.1.2 Business Description

13.1.3 Products and Services

13.1.4 Financial Overview

13.1.5 SWOT Analysis

13.1.6 Key Developments

13.2 VPlphotonics GmbH

13.2.1 Key Facts

13.2.2 Business Description

13.2.3 Products and Services

13.2.4 Financial Overview

13.2.5 SWOT Analysis

13.2.6 Key Developments

13.3 Optiwave Systems Inc

13.3.1 Key Facts

13.3.2 Business Description

13.3.3 Products and Services

13.3.4 Financial Overview

13.3.5 SWOT Analysis

13.3.6 Key Developments

13.4 Luceda Photonics

13.4.1 Key Facts

13.4.2 Business Description

13.4.3 Products and Services

13.4.4 Financial Overview

13.4.5 SWOT Analysis

13.4.6 Key Developments

13.5 Cadence Design Systems Inc

13.5.1 Key Facts

13.5.2 Business Description

13.5.3 Products and Services

13.5.4 Financial Overview

13.5.5 SWOT Analysis

13.5.6 Key Developments

13.6 Siemens AG

13.6.1 Key Facts

13.6.2 Business Description

13.6.3 Products and Services

13.6.4 Financial Overview

13.6.5 SWOT Analysis

13.6.6 Key Developments

13.7 Synopsys Inc

13.7.1 Key Facts

13.7.2 Business Description

13.7.3 Products and Services

13.7.4 Financial Overview

13.7.5 SWOT Analysis

13.7.6 Key Developments

14. Appendix

14.1 Word Index

List of Tables

Table 1. Europe Photonic Design Automation Market Segmentation

Table 2. Europe Photonic Design Automation Market Revenue and Forecasts to 2030 (US$ Million)

Table 3. Europe Photonic Design Automation Market Revenue and Forecasts to 2030 (US$ Million) - Component

Table 4. Europe Photonic Design Automation Market Revenue and Forecasts to 2030 (US$ Million) - Deployment

Table 5. Europe Photonic Design Automation Market Revenue and Forecasts to 2030 (US$ Million) - Organization Size

Table 6. Europe Photonic Design Automation Market Revenue and Forecasts to 2030 (US$ Million) - Application

Table 7. Europe Photonic Design Automation Market Revenue and Forecasts to 2030 (US$ Mn) - By Country

Table 8. Germany Photonic Design Automation Market Revenue and Forecasts to 2030 (US$ Mn) - By Component

Table 9. Germany Photonic Design Automation Market Revenue and Forecasts to 2030 (US$ Mn) - By Deployment

Table 10. Germany Photonic Design Automation Market Revenue and Forecasts to 2030 (US$ Mn) - By Organization Size

Table 11. Germany Photonic Design Automation Market Revenue and Forecasts to 2030 (US$ Mn) - By Application

Table 12. France Photonic Design Automation Market Revenue and Forecasts to 2030 (US$ Mn) - By Component

Table 13. France Photonic Design Automation Market Revenue and Forecasts to 2030 (US$ Mn) - By Deployment

Table 14. France Photonic Design Automation Market Revenue and Forecasts to 2030 (US$ Mn) - By Organization Size

Table 15. France Photonic Design Automation Market Revenue and Forecasts to 2030 (US$ Mn) - By Application

Table 16. UK Photonic Design Automation Market Revenue and Forecasts to 2030 (US$ Mn) - By Component

Table 17. UK Photonic Design Automation Market Revenue and Forecasts to 2030 (US$ Mn) - By Deployment

Table 18. UK Photonic Design Automation Market Revenue and Forecasts to 2030 (US$ Mn) - By Organization Size

Table 19. UK Photonic Design Automation Market Revenue and Forecasts to 2030 (US$ Mn) - By Application

Table 20. Russia Photonic Design Automation Market Revenue and Forecasts to 2030 (US$ Mn) - By Component

Table 21. Russia Photonic Design Automation Market Revenue and Forecasts to 2030 (US$ Mn) - By Deployment

Table 22. Russia Photonic Design Automation Market Revenue and Forecasts to 2030 (US$ Mn) - By Organization Size

Table 23. Russia Photonic Design Automation Market Revenue and Forecasts to 2030 (US$ Mn) - By Application

Table 24. Switzerland Photonic Design Automation Market Revenue and Forecasts to 2030 (US$ Mn) - By Component

Table 25. Switzerland Photonic Design Automation Market Revenue and Forecasts to 2030 (US$ Mn) - By Deployment

Table 26. Switzerland Photonic Design Automation Market Revenue and Forecasts to 2030 (US$ Mn) - By Organization Size

Table 27. Switzerland Photonic Design Automation Market Revenue and Forecasts to 2030 (US$ Mn) - By Application

Table 28. Rest of Europe Photonic Design Automation Market Revenue and Forecasts to 2030 (US$ Mn) - By Component

Table 29. Rest of Europe Photonic Design Automation Market Revenue and Forecasts to 2030 (US$ Mn) - By Deployment

Table 30. Rest of Europe Photonic Design Automation Market Revenue and Forecasts to 2030 (US$ Mn) - By Organization Size

Table 31. Rest of Europe Photonic Design Automation Market Revenue and Forecasts to 2030 (US$ Mn) - By Application

Table 32. List of Abbreviation

List of Figures

Figure 1. Europe Photonic Design Automation Market Segmentation, By Country

Figure 2. Ecosystem: Europe Photonic Design Automation Market

Figure 3. Impact Analysis of Drivers and Restraints

Figure 4. Europe Photonic Design Automation Market Revenue (US$ Million), 2022 - 2030

Figure 5. Europe Photonic Design Automation Market Share (%) - Component, 2022 and 2030

Figure 6. Solution Market Revenue and Forecasts to 2030 (US$ Million)

Figure 7. Service Market Revenue and Forecasts to 2030 (US$ Million)

Figure 8. Europe Photonic Design Automation Market Share (%) - Deployment, 2022 and 2030

Figure 9. On-Premise Market Revenue and Forecasts to 2030 (US$ Million)

Figure 10. Cloud Market Revenue and Forecasts to 2030 (US$ Million)

Figure 11. Europe Photonic Design Automation Market Share (%) - Organization Size, 2022 and 2030

Figure 12. SMEs Market Revenue and Forecasts to 2030 (US$ Million)

Figure 13. Large Enterprises Market Revenue and Forecasts to 2030 (US$ Million)

Figure 14. Europe Photonic Design Automation Market Share (%) - Application, 2022 and 2030

Figure 15. Academic Research Market Revenue and Forecasts to 2030 (US$ Million)

Figure 16. Industrial Research & Manufacturing Market Revenue and Forecasts to 2030 (US$ Million)

Figure 17. Europe Photonic Design Automation Market- Revenue by Key Countries 2022 (US$ Million)

Figure 18. Europe Photonic Design Automation Market Breakdown by Key Countries, 2022 and 2030 (%)

Figure 19. Germany Photonic Design Automation Market Revenue and Forecasts to 2030 (US$ Mn)

Figure 20. France Photonic Design Automation Market Revenue and Forecasts to 2030 (US$ Mn)

Figure 21. UK Photonic Design Automation Market Revenue and Forecasts to 2030 (US$ Mn)

Figure 22. Russia Photonic Design Automation Market Revenue and Forecasts to 2030 (US$ Mn)

Figure 23. Switzerland Photonic Design Automation Market Revenue and Forecasts to 2030 (US$ Mn)

Figure 24. Rest of Europe Photonic Design Automation Market Revenue and Forecasts to 2030 (US$ Mn)

1. LioniX International BV
2. VPIphotonics GmbH
3. Optiwave Systems Inc
4. Luceda Photonics
5. Cadence Design Systems Inc
6. Siemens AG
7. Synopsys Inc

  • Save and reduce time carrying out entry-level research by identifying the growth, size, leading players, and segments in the Europe photonic design automation market.
  • Highlights key business priorities in order to assist companies to realign their business strategies.
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  • Develop/modify business expansion plans by using substantial growth offering developed and emerging markets.
  • Scrutinize in-depth Europe market trends and outlook coupled with the factors driving the market, as well as those hindering it.
  • Enhance the decision-making process by understanding the strategies that underpin security interest with respect to client products, segmentation, pricing, and distribution.
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