Industrial Technology Protection

  • Departments
  • Industrial Technology Protection

Common

  • Common

    Industrial Convergence Security

    This course comprehensively examines the security threats that arise as convergence accelerates across industries such as smart factories, mobility, energy and healthcare, together with the measures for addressing them. Students study security governance and policy in the process of industrial convergence, understand legal and institutional issues, and learn technical and managerial security strategies through case studies. The aim is to develop practical security capabilities applicable across converged industries.

  • Common

    Security Governance and Management Framework

    This course aims to provide a comprehensive understanding of an organization's information security governance structure and management processes, and to build the capability to operate them effectively. Students study theory alongside real cases, focusing on core elements such as the establishment of security policy, risk management and accountability structures, and strengthen their ability to manage security strategically.

  • Common

    Service Management

    Building on an understanding of management principles and operating strategies in various service industries, this course examines how to design and manage services effectively in order to create customer value. Core topics such as service quality, customer experience and process innovation are addressed through both theory and real cases, strengthening students' ability to apply what they learn in practice.

  • Common

    Security Leadership Studies

    This course systematically explores the core competencies and strategic thinking required of security leaders so that they can respond proactively to a changing security environment. Students strengthen their ability to build security governance and make decisions within an organization, and develop practical application skills through the analysis of leadership cases drawn from the field.

  • Common

    Understanding and Application of Security Investigation

    This course develops the ability to understand the basic concepts and procedures of security investigation and to apply them in practice, so that organizations can respond effectively to security threats and incidents. Students systematically study the entire process, from investigation planning through evidence collection, analysis and reporting, and strengthen their practical response capabilities on the basis of real cases.

  • Common

    Digital Technology Security

    This course addresses the security threats newly emerging with the advance of digital technologies such as artificial intelligence, IoT and cloud computing, together with strategies for responding to them. Students learn the principles of security in digital environments and the technical and managerial safeguards available, and build practical application skills by analyzing a range of technology-based security cases.

  • Common

    Security Data Science

    This course covers methods for identifying, analyzing and predicting security threats in complex digital environments using data science techniques. By combining statistical methods, machine learning and domain knowledge in security, students develop the ability to derive insights from large-scale security data and to support proactive decision-making.

  • Common

    Trends and Understanding of the Security Industry

    This course focuses on understanding the structure of the security industry, its principal actors and changes in the market environment. Through a comprehensive analysis of the latest technological trends, industrial policy and market developments in Korea and abroad, students develop insight into the present state and future direction of the security industry.

  • Common

    Internal Control System

    This course covers the concepts, components and operating principles of the internal control systems that secure the efficiency and soundness of an organization. Students come to understand core internal control functions such as risk management, segregation of duties, auditing and compliance control, and build the capacity to apply them in practice.

  • Common

    Research on Intellectual Property Rights

    This course comprehensively examines the legal framework of intellectual property rights and the ways in which they are used in industry. Building on an understanding of the various types of intellectual property, students learn strategic approaches to protecting technology and securing competitiveness, and develop practical insight into value creation and dispute prevention.

  • Common

    Security Risk Assessment and Response

    This course covers methods for identifying and assessing the various security risks that threaten information assets, together with effective response strategies. By understanding risk analysis techniques and response processes, students develop the practical management capabilities needed to raise an organization's level of security.

  • Common

    Security Ethics and Security Culture

    This course examines the ethical values and sense of responsibility required throughout information security activities, and explores the importance of the security culture that forms across organizations and society. It moves beyond a purely technology-centered approach to security and points toward people-centered security practice and the creation of a sustainable security environment.

  • Common

    Security Communication

    This course addresses the principles and strategies of communication needed to convey and share information effectively in security threat situations. Beyond technical security, students strengthen their ability to communicate with stakeholders inside and outside the organization, developing practical communication skills that contribute to crisis response and to raising security awareness.

  • Common

    Physical Security Controls

    This course comprehensively covers the control technologies and management strategies used to protect physical assets such as facilities, personnel and equipment. Students learn core security elements including access control, surveillance systems and intrusion detection, and study practical control measures for responding to a range of threat scenarios.

  • Common

    Security and Criminal Psychology

    This course develops an understanding of the psychology and behavioral characteristics of offenders who create security threats, and on that basis explores effective prevention and response strategies. By analyzing various types of security crime, including cybercrime, insider threats and social engineering, from a psychological perspective, students strengthen a human-centered approach to security.

  • Common

    STUDIES IN MAJOR FIELD I, II

    In this course, students deepen their study of a specific research topic within their field of interest together with their advisor. The course is intended to consolidate what students have learned during the degree program and to help them apply that knowledge in producing a high-quality thesis.

  • Common

    Service SCM

    This course develops an understanding of the psychology and behavioral patterns of offenders who create security threats, and on that basis explores effective prevention and response strategies. By analyzing various types of security crime, including cybercrime, insider threats and social engineering, from a psychological perspective, students strengthen a human-centered approach to security.

  • Common

    Research on Digital Transformation and Industrial Policy

    This course analyzes the impact of digital transformation on industrial structure and the policy environment, and explores the direction and strategies of industrial policy in response. Through an integrated understanding of the interactions among technological change, regulation, market structure and national policy, students consider models of sustainable industrial development in the digital era.

  • Common

    Digital Economic Environment and ICT Industry Policy

    This course analyzes the structure of the information and communications industry and its policy responses amid the changes in the economic environment driven by digital transformation. Students come to understand the interactions among technological innovation, market competition and regulatory policy, and consider the sustainable growth of the ICT industry together with the role of public policy.

  • Common

    Research Methodology

    This course provides a systematic introduction to the research design, data collection and analysis methods that form the foundation of academic research. Students compare the characteristics and application procedures of quantitative and qualitative research methods while developing logical thinking and critical analysis skills.

Major

  • Major

    Law and Policy for Industrial Technology Security

    This course provides a systematic understanding of the structure and content of the legal and institutional mechanisms for preventing the leakage of industrial technology and securing technological sovereignty, and analyzes the effectiveness and limitations of the related policies. Students strengthen their capacity for legal and policy responses in industrial security and draw out strategic implications for technology protection.

  • Major

    Industrial Security Management System

    This course systematically covers the components and operating principles of the industrial security management system used to protect industrial technology, human resources and information assets. Students develop the capability to design and operate security governance in industrial settings in which physical security, information security and personnel security are integrated.

  • Major

    National Strategic Technologies and Advanced Strategic Industries

    This course develops an understanding of the concept and scope of the national strategic technologies essential to national security and economic sovereignty, and on that basis considers the future direction of advanced strategic industries. Focusing on major technology fields such as semiconductors, artificial intelligence, quantum technology, biotechnology and aerospace, it analyzes issues including international competition for technological supremacy, technology control policy, supply chain restructuring and technology alliances, and explores Korea's strategic responses. The course provides the comprehensive perspective required by policymakers, industry practitioners and security professionals.

  • Major

    R&D Management and Technology Commercialization

    Building on an understanding of full-cycle R&D management, including strategic planning, execution and performance evaluation, this course systematically addresses the process by which research outcomes are linked to technology commercialization. Focusing on the connection between science and technology and industry, students study core elements of technology commercialization such as technology transfer, start-ups, intellectual property rights, technology valuation and business model development on the basis of actual policies and cases, and also consider the R&D innovation ecosystem and models of industry-academia-research collaboration. The course aims to cultivate the strategic thinking and practical ability needed by R&D practitioners, policy planners, technology entrepreneurs and others.

  • Major

    R&D and Security Management

    Research and development is a process that creates new innovative value on the basis of openness and autonomy. For such activities to be carried out sustainably and stably, systematic security management is essential. This course identifies the various security risk factors that can arise in the course of research and development and covers the security management strategies and methods for addressing them. In particular, it focuses on a balanced management framework that reconciles the openness of research and development with the control inherent in security management.

  • Major

    R&D Security Seminar

    This seminar-style course focuses on issues in R&D security, whose importance continues to grow in contemporary research and development environments. It explores the comprehensive R&D security framework required in an age of advanced technology, covering the protection of science and technology, prevention of technology leakage, research ethics, cybersecurity, and security problems in high-risk technology fields such as AI, quantum technology and biotechnology. The course combines lectures, analysis of cases in Korea and abroad, review of policy documents, invited expert seminars, presentations and discussion, and develops students' ability to identify and analyze security risks that may arise in actual research settings and to plan response strategies.

  • Major

    National Strategic Technologies and Emerging Defense Industries

    This course develops an understanding of the concept and scope of the national strategic technologies essential to national security and economic sovereignty, and on that basis considers in depth the future direction of advanced strategic industries. Focusing on major technology fields such as semiconductors, artificial intelligence, quantum technology, biotechnology and aerospace, it analyzes current issues including international competition for technological supremacy, technology control policy, supply chain restructuring and technology alliances, and explores Korea's strategic responses. In particular, it examines the security significance of dual-use technologies and provides the broad, comprehensive perspective required by policymakers, field investigators and corporate security professionals.

  • Major

    Economic Security and Technology Protection

    Centering on the concept of economic security, which extends beyond traditional military security into the economic domain, and its connection with technology protection, this course analyzes in depth cases such as changes in global supply chains, industrial espionage and strategic materials controls. Against a backdrop of intensifying competition for technological supremacy between the United States and China and a changing trade environment marked by measures such as semiconductor export controls, it explores strategies for protecting domestic technological sovereignty. Students learn concrete policy instruments for technology protection, including the prevention of technology leakage, foreign investment screening and the management of key personnel, together with strategic approaches at the national and corporate levels.

  • Major

    Investigative Practice for Technology Leakage Cases

    Focusing on the practice of investigating industrial technology leakage cases, this course systematically covers the investigative process from the receipt of intelligence through referral for prosecution, digital forensic techniques, international cooperation and the interpretation of relevant legislation. Reflecting the latest investigative trends, students conduct mock investigations and analyze actual court decisions, thereby developing investigative capabilities and response strategies specific to advanced technology leakage cases, including proving trade secret infringement, interviewing suspects and analyzing evidence.

  • Major

    Cybersecurity and Cybercrime

    This course develops an understanding of the diverse threats arising in cyberspace and covers the principles of cybersecurity and the legal response framework, focusing on cases such as cybercrime, hacking, cyber warfare and state-sponsored attacks (APTs). By incorporating the collection of digital evidence and cyber tracing techniques, students build practical response capabilities and develop the ability to analyze emerging threats such as crimes exploiting virtual assets and the dark web.

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