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Japan Cyber Security For Industrial Automation Market Size, Share & Trends Analysis Report By Type, By Security Type (SCADA Security, Enterprise Security, Network Security, Device Security and Physical Security), By End Use, By Technologies, and Forecast, 2023 - 2030

Published Date : 15-Jul-2024

Pages: 109

Formats: PDF

The Japan Cyber Security for Industrial Automation Market size is expected to reach $1.2 billion by 2030, rising at a market growth of 8.8% CAGR during the forecast period.

Japan's cyber security for industrial automation market is undergoing significant evolution in response to growing digitalization and connectivity. With industries increasingly relying on automation for efficiency and productivity gains, safeguarding these systems against cyber threats has become paramount. Japan, known for its advanced technology and robust industrial base, is at the forefront of adopting cyber security measures to protect its critical infrastructure. In recent years, Japan has witnessed a surge in cyber-attacks targeting industrial control systems (ICS) and supervisory control and data acquisition (SCADA) systems.

Japan Cyber Security for Industrial Automation Market Size - Opportunities and Trends Analysis Report 2019-2030

Various factors are driving the adoption of cyber security solutions in Japan's industrial automation sector. One key driver is the increasing interconnectedness of operational technology (OT) and information technology (IT) systems. Moreover, the Japanese government has been proactive in promoting cyber security initiatives and regulations to enhance the resilience of critical infrastructure. Initiatives such as the Cybersecurity Framework for Industrial Control Systems provide guidelines and best practices for organizations to strengthen their cyber defenses.

The COVID-19 pandemic has further underscored the importance of cyber security for industrial automation market in Japan. The rapid shift towards remote work and digitalization has introduced new vulnerabilities as organizations in Japan adapt to new operational models. Cyber criminals have exploited these vulnerabilities, launching phishing attacks, ransomware campaigns, and other malicious activities targeting industrial entities. As a result, businesses in Japan have accelerated their investments in cyber security to fortify their defenses and ensure business continuity in the face of evolving threats.

Market Trends

Growing Adoption Of Enterprise Security

In Japan, the landscape of industrial automation is rapidly evolving, driven by technological advancements and a growing awareness of the importance of cybersecurity. With the increasing integration of digital technologies into industrial processes, there's a parallel rise in potential vulnerabilities. As factories and manufacturing facilities become more digitized and interconnected through the Internet of Things (IoT) and Industry 4.0 technologies, the attack surface for cyber threats expands exponentially. This realization has prompted Japanese enterprises to prioritize cybersecurity as an integral component of their overall operational strategy.

Additionally, high-profile cyber-attacks on domestic and global industrial targets have served as wake-up calls for Japanese companies, highlighting the urgent need for enhanced cybersecurity measures. Its industry's robust growth underscores the burgeoning adoption of enterprise security measures within Japan's cyber security for industrial automation market. Instances such as ransomware attacks, theft of sensitive data by Advanced Persistent Threats, and vulnerabilities within the supply chain have become increasingly prevalent.

According to the International Trade Administration, in 2022, the cybersecurity sector in Japan witnessed a significant expansion, reaching $3.6 billion, marking a notable 16% increase compared to the previous year. The first half of 2022 witnessed a concerning spike in ransomware attacks, with reported incidents numbering 114, showcasing a steady rise since 2020. This escalation underscores the growing imperative for robust enterprise security measures within Japan's cyber security for industrial automation market.

Moreover, regulatory pressures and compliance requirements also drive the uptake of enterprise security solutions in the Japanese industrial automation sector. Government initiatives and industry standards mandate stringent cybersecurity protocols to safeguard critical infrastructure and sensitive data. As a result, businesses in Japan are compelled to invest in robust security measures to ensure regulatory compliance and mitigate the risk of penalties or legal liabilities. Hence, the convergence of technological advancements, cybersecurity awareness, and regulatory pressures is propelling Japanese enterprises to prioritize and invest in robust cybersecurity measures for cyber security for industrial automation market.

Increasing Digitization And Connectivity Of Manufacturing Processes

The digitization and connectivity of manufacturing processes in Japan have significantly transformed industrial automation, leading to heightened concerns regarding cybersecurity. The cyber threat landscape expands proportionally as the nation continues to embrace Industry 4.0 principles, integrating IoT devices, AI-driven analytics, and cloud-based platforms into manufacturing ecosystems. One of the primary challenges is the increased attack surface resulting from interconnected systems. With more devices and components connected to networks, there are more entry points for cyber threats.

Moreover, the reliance on legacy systems in many Japanese manufacturing facilities poses a significant cybersecurity risk. These outdated systems often lack built-in security features and are more vulnerable to exploitation by cybercriminals. Retrofitting these systems with modern cybersecurity solutions becomes imperative to mitigate risks effectively. Japanese companies increasingly prioritize cybersecurity in their automation strategies, allocating budgets to deploy robust defense mechanisms such as intrusion detection systems, firewalls, and endpoint protection solutions.

Furthermore, regulatory initiatives are crucial in shaping Japanese industrial automation sector cybersecurity practices. Compliance requirements and industry standards compel organizations to adhere to cybersecurity best practices, driving the adoption of proactive security measures. Therefore, as Japan advances its industrial automation with Industry 4.0 technologies, addressing cybersecurity risks through modernization and regulatory compliance is paramount for safeguarding manufacturing ecosystems.

Japan Cyber Security for Industrial Automation Market Share

Competition Analysis

Japan, known for its advanced technological innovations, is also a significant player in the cyber security for industrial automation market. One prominent player in the Japanese cyber security for industrial automation market is Trend Micro. As a global leader in cybersecurity, Trend Micro offers specialized solutions for protecting industrial control systems (ICS) and supervisory control and data acquisition (SCADA) systems from cyber threats. Their offerings include intrusion detection and prevention systems, endpoint security solutions, and network monitoring tools designed to protect industrial networks and devices comprehensively.

Mitsubishi Electric is also a significant player in the Japanese cyber security for industrial automation market. Leveraging its expertise in industrial automation and control systems, Mitsubishi Electric offers cybersecurity solutions designed to protect industrial networks and devices from cyber threats. Their offerings include secure remote access solutions, network segmentation tools, and anomaly detection systems to help organizations detect and respond to cyber-attacks in real time.

Another key player is NEC Corporation, a leading information technology and networking solutions provider. NEC offers cybersecurity services specifically tailored for industrial automation environments, including risk assessments, security consulting, and managed security services. They also provide industrial firewall solutions, intrusion detection systems, and security management platforms to help organizations safeguard their critical infrastructure against cyber-attacks.

In addition to these larger players, several specialized cybersecurity firms in Japan focus specifically on industrial automation security. For example, NTT Security specializes in cybersecurity solutions for industrial control systems, offering threat intelligence, incident response, and vulnerability management services tailored for critical infrastructure sectors such as energy, manufacturing, and transportation.

Fujitsu is another notable player in the Japanese cyber security for industrial automation market, offering a range of products and services to protect industrial networks and control systems from cyber threats. Fujitsu's cybersecurity solutions include network security appliances, endpoint protection technologies, and security management platforms designed to provide comprehensive protection for industrial environments. Hence, Japan's cyber security for industrial automation market is characterized by diverse companies offering innovative solutions to address the evolving threats facing critical infrastructure sectors.

List of Key Companies Profiled

  • Cisco Systems, Inc
  • Schneider Electric SE
  • Dell Technologies, Inc.
  • Rockwell Automation, Inc.
  • Honeywell International, Inc.
  • IBM Corporation
  • ABB Ltd.
  • Microsoft Corporation
  • Siemens AG
  • Palo Alto Networks, Inc.

Japan Cyber Security for Industrial Automation Market Report Segmentation

By Type

  • Programmable Automation System
  • Fixed Automation System
  • Flexible Automation System
  • Integrated Automation System

By Security Type

  • SCADA Security
  • Enterprise Security
  • Network Security
  • Device Security
  • Physical Security

By End Use

  • Food & Beverage Processing
  • Automotive Manufacturing
  • Electronics & Telecommunication
  • Pharmaceuticals
  • Others

By Technologies

  • Programmable Logic Controllers
  • Computer Numerical Control (CNC) Systems
  • Industrial Sensors
  • Others
Chapter 1. Market Scope & Methodology
1.1 Market Definition
1.2 Objectives
1.3 Market Scope
1.4 Segmentation
1.4.1 Japan Cyber Security for Industrial Automation Market, by Type
1.4.2 Japan Cyber Security for Industrial Automation Market, by Security Type
1.4.3 Japan Cyber Security for Industrial Automation Market, by End Use
1.4.4 Japan Cyber Security for Industrial Automation Market, by Technologies
1.5 Methodology for the research

Chapter 2. Market Overview
2.1 Introduction
2.1.1 Overview
2.1.1.1 Market Composition and Scenario
2.2 Key Factors Impacting the Market
2.2.1 Market Drivers
2.2.2 Market Restraints
2.2.3 Market Opportunities
2.2.4 Market Challenges
2.2.5 Market Trends

Chapter 3. Competition Analysis - Global
3.1 KBV Cardinal Matrix
3.2 Recent Industry Wide Strategic Developments
3.2.1 Partnerships, Collaborations and Agreements
3.2.2 Product Launches and Product Expansions
3.2.3 Acquisition and Mergers
3.2.4 Geographical Expansion
3.3 Market Share Analysis, 2022
3.4 Top Winning Strategies
3.4.1 Key Leading Strategies: Percentage Distribution (2019-2024)
3.4.2 Key Strategic Move: (Product Launches: 2020, Oct – 2024, Feb) Leading Players
3.5 Porter’s Five Forces Analysis

Chapter 4. Japan Cyber Security for Industrial Automation Market
4.1 Japan Cyber Security for Industrial Automation Market by Type
4.2 Japan Cyber Security for Industrial Automation Market by Security Type
4.3 Japan Cyber Security for Industrial Automation Market by End Use
4.4 Japan Cyber Security for Industrial Automation Market by Technologies

Chapter 5. Company Profiles – Global Leaders
5.1 Cisco Systems, Inc.
5.1.1 Company Overview
5.1.2 Financial Analysis
5.1.3 Regional Analysis
5.1.4 Research & Development Expense
5.1.5 Recent strategies and developments:
5.1.5.1 Product Launches and Product Expansions:
5.1.5.2 Acquisition and Mergers:
5.1.6 SWOT Analysis
5.2 Schneider Electric SE
5.2.1 Company Overview
5.2.2 Financial Analysis
5.2.3 Segmental and Regional Analysis
5.2.4 Research & Development Expense
5.2.5 Recent strategies and developments:
5.2.5.1 Partnerships, Collaborations, and Agreements:
5.2.5.2 Product Launches and Product Expansions:
5.2.6 SWOT Analysis
5.3 Dell Technologies, Inc.
5.3.1 Company Overview
5.3.2 Financial Analysis
5.3.3 Segmental and Regional Analysis
5.3.4 Research & Development Expense
5.3.5 Recent strategies and developments:
5.3.5.1 Product Launches and Product Expansions:
5.3.6 SWOT Analysis
5.4 Rockwell Automation, Inc.
5.4.1 Company Overview
5.4.2 Financial Analysis
5.4.3 Segmental and Regional Analysis
5.4.4 Research & Development Expenses
5.4.5 Recent strategies and developments:
5.4.5.1 Partnerships, Collaborations, and Agreements:
5.4.5.2 Acquisition and Mergers:
5.4.6 SWOT Analysis
5.5 Honeywell International, Inc.
5.5.1 Company Overview
5.5.2 Financial Analysis
5.5.3 Segmental and Regional Analysis
5.5.4 Research & Development Expenses
5.5.5 Recent strategies and developments:
5.5.5.1 Partnerships, Collaborations, and Agreements:
5.5.5.2 Product Launches and Product Expansions:
5.5.5.3 Acquisition and Mergers:
5.5.6 SWOT Analysis
5.6 IBM Corporation
5.6.1 Company Overview
5.6.2 Financial Analysis
5.6.3 Regional & Segmental Analysis
5.6.4 Research & Development Expenses
5.6.5 Recent strategies and developments:
5.6.5.1 Partnerships, Collaborations, and Agreements:
5.6.5.2 Geographical Expansions:
5.6.6 SWOT Analysis
5.7 ABB Ltd.
5.7.1 Company Overview
5.7.2 Financial Analysis
5.7.3 Segmental and Regional Analysis
5.7.4 Research & Development Expense
5.7.5 Recent strategies and developments:
5.7.5.1 Product Launches and Product Expansions:
5.7.6 SWOT Analysis
5.8 Microsoft Corporation
5.8.1 Company Overview
5.8.2 Financial Analysis
5.8.3 Segmental and Regional Analysis
5.8.4 Research & Development Expenses
5.8.5 Recent strategies and developments:
5.8.5.1 Acquisition and Mergers:
5.8.6 SWOT Analysis
5.9 Siemens AG
5.9.1 Company Overview
5.9.2 Financial Analysis
5.9.3 Segmental and Regional Analysis
5.9.4 Research & Development Expense
5.9.5 Recent strategies and developments:
5.9.5.1 Product Launches and Product Expansions:
5.9.6 SWOT Analysis
5.10. Palo Alto Networks, Inc.
5.10.1 Company Overview
5.10.2 Financial Analysis
5.10.3 Regional Analysis
5.10.4 Research & Development Expense
5.10.5 Recent strategies and developments:
5.10.5.1 Product Launches and Product Expansions:
5.10.5.2 Acquisition and Mergers:
5.10.6 SWOT Analysis
TABLE 1 Japan Cyber Security for Industrial Automation Market, 2019 - 2022, USD Million
TABLE 2 Japan Cyber Security for Industrial Automation Market, 2023 - 2030, USD Million
TABLE 3 Partnerships, Collaborations and Agreements– Cyber Security For Industrial Automation Market
TABLE 4 Product Launches And Product Expansions– Cyber Security For Industrial Automation Market
TABLE 5 Acquisition and Mergers– Cyber Security For Industrial Automation Market
TABLE 6 Geographical expansion– Cyber Security For Industrial Automation Market
TABLE 7 Japan Cyber Security for Industrial Automation Market by Type, 2019 - 2022, USD Million
TABLE 8 Japan Cyber Security for Industrial Automation Market by Type, 2023 - 2030, USD Million
TABLE 9 Japan Cyber Security for Industrial Automation Market by Security Type, 2019 - 2022, USD Million
TABLE 10 Japan Cyber Security for Industrial Automation Market by Security Type, 2023 - 2030, USD Million
TABLE 11 Japan Cyber Security for Industrial Automation Market by End Use, 2019 - 2022, USD Million
TABLE 12 Japan Cyber Security for Industrial Automation Market by End Use, 2023 - 2030, USD Million
TABLE 13 Japan Cyber Security for Industrial Automation Market by Technologies, 2019 - 2022, USD Million
TABLE 14 Japan Cyber Security for Industrial Automation Market by Technologies, 2023 - 2030, USD Million
TABLE 15 Key Information – Cisco Systems, Inc.
TABLE 16 Key Information – Schneider Electric SE
TABLE 17 Key Information – Dell Technologies, Inc.
TABLE 18 Key Information – Rockwell Automation, Inc.
TABLE 19 Key Information – Honeywell International, Inc.
TABLE 20 Key Information – IBM Corporation
TABLE 21 Key Information – ABB Ltd.
TABLE 22 Key Information – Microsoft Corporation
TABLE 23 Key Information – Siemens AG
TABLE 24 Key Information – Palo Alto Networks, Inc.

List of Figures
FIG 1 Methodology for the research
FIG 2 Japan Cyber Security for Industrial Automation Market, 2019 - 2030, USD Million
FIG 3 Key Factors Impacting Cyber Security for Industrial Automation Market
FIG 4 KBV Cardinal Matrix
FIG 5 Market Share Analysis, 2022
FIG 6 Key Leading Strategies: Percentage Distribution (2019-2024)
FIG 7 Key Strategic Move: (Product Launches: 2020, oct – 2024, feb) Leading Players
FIG 8 Porter’s Five Forces Analysis - Cyber Security For Industrial Automation Market
FIG 9 Japan Cyber Security for Industrial Automation Market share by Type, 2022
FIG 10 Japan Cyber Security for Industrial Automation Market share by Type, 2030
FIG 11 Japan Cyber Security for Industrial Automation Market by Type, 2019 - 2030, USD Million
FIG 12 Japan Cyber Security for Industrial Automation Market share by Security Type, 2022
FIG 13 Japan Cyber Security for Industrial Automation Market share by Security Type, 2030
FIG 14 Japan Cyber Security for Industrial Automation Market by Security Type, 2019 - 2030, USD Million
FIG 15 Japan Cyber Security for Industrial Automation Market share by End Use, 2022
FIG 16 Japan Cyber Security for Industrial Automation Market share by End Use, 2030
FIG 17 Japan Cyber Security for Industrial Automation Market by End Use, 2019 - 2030, USD Million
FIG 18 Japan Cyber Security for Industrial Automation Market share by Technologies, 2022
FIG 19 Japan Cyber Security for Industrial Automation Market share by Technologies, 2030
FIG 20 Japan Cyber Security for Industrial Automation Market by Technologies, 2019 - 2030, USD Million
FIG 21 Recent strategies and developments: Cisco Systems Inc.
FIG 22 SWOT Analysis: Cisco Systems, Inc.
FIG 23 Recent strategies and developments: Schneider Electric SE
FIG 24 SWOT Analysis: Schneider Electric SE
FIG 25 SWOT Analysis: Dell Technologies, Inc.
FIG 26 Recent strategies and developments: Rockwell Automation, Inc.
FIG 27 SWOT Analysis: Rockwell Automation, Inc.
FIG 28 Recent strategies and developments: Honeywell international, inc.
FIG 29 Swot analysis: Honeywell international, inc.
FIG 30 Recent strategies and developments: IBM Corporation
FIG 31 SWOT Analysis: IBM Corporation
FIG 32 SWOT Analysis: ABB ltd.
FIG 33 SWOT Analysis: Microsoft Corporation
FIG 34 SWOT Analysis: Siemens AG
FIG 35 Recent strategies and developments: Palo Alto Networks, Inc.
FIG 36 SWOT Analysis: PALO ALTO NETWORKS, INC.

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