U1 University Semiconductor VR Content & Equipment Procurement
Delivery of Semiconductor Job Training XR Content and System Implementation

| PROJECT | Supply of Semiconductor VR Content |
PROJECT GOAL
| In semiconductor education programs, students often face limitations in directly experiencing real processes and equipment. To address this challenge, Samwoo Immersion provided VR content that enables learners to explore semiconductor process flows and understand equipment operating principles through hands-on immersive training. In addition, complementary solutions were proposed to present an effective teaching methodology that maximizes learning efficiency even under constraints of space and time. |
| WORK | Supply of Semiconductor VR Content and Learning Management System |
| DATE | 2025.12 |
| KEYWORD | #Semiconductor #JobTraining #Semiconductor8MajorProcesses #EducationalContent |
![Horizontal [Image]](https://cdn.imweb.me/upload/S2021121094b3ecb3d4d19/af6ac4ce97e78.png)
“An effective educational tool that can drive student immersion”
Because most classes are delivered in a classroom setting with a strong focus on theory, we have clearly felt the limitations in bringing students to a truly immersive level of engagement. Running regular on-site practicums is difficult due to physical and time constraints. In particular, the semiconductor industry requires strict cleanroom entry procedures and safety regulations, making it challenging even to escort students to the field. We considered that substituting hands-on training with Samwoo Immersion’s semiconductor job training VR content could be a practical solution, as it can realistically replicate field experiences. The learning effect is expected to be far beyond what can be achieved by simply watching photos or videos.
Going forward, VR content can also be introduced for other processes or subjects. With no limitation on physical space, it is a solution with high usability and strong educational efficiency.
 |  |
Lithography Process VR Content (In-Content Screen) By operating the trigger according to the guide, users can perform Mask Aligner & Exposure procedures | RF Sputter Process MR Content (In-Content Screen) Built with 1:1 scale equipment modeling and passthrough, allowing users to experience a learning environment close to reality |
Overview
Semiconductor XR Hands-on Training Begins in the Classroom

Immersion Strategy
Educational institutions place top priority on cultivating talents with real-world, field-ready skills. To achieve this effectively, they aim to build learning environments that reflect production sites in key industries, but in reality they face many challenges.
Samwoo Immersion proposed an effective solution to overcome the limitations of building such training environments. By recreating actual semiconductor manufacturing processes in an XR environment, students can internalize process flows and operational procedures without directly handling equipment worth hundreds of millions of KRW. In particular, the ability to train repeatedly without risks of contamination or damage can reduce psychological 부담 for beginners and help build confidence.
Furthermore, this content can serve as a foundation for research on new teaching methodologies in semiconductor education. It has 충분한 value as a research subject for analyzing learning outcomes from multiple perspectives, including changes in learner proficiency through VR practice, methods for measuring learning achievement, and comparative studies versus traditional hands-on training. In addition, the deployed content can be applied to affiliated institutions or educational programs, making it a sustainable solution in terms of scalability and cost-effectiveness.
IMXR® Semiconductor Job Training XR Content Package
This package consists of three XR practical training contents that implement tasks and maintenance procedures for three processes among the eight major semiconductor processes—Photo, Etching, Ion Implantation, and Deposition—along with a set of dedicated software for operating and controlling the content. In addition, based on our portfolio of 13 semiconductor job training contents, processes and courses can be selected and combined to match the client’s educational objectives, enabling customization. When needed, we also support integration with a learning control system for efficient training operations.
1. Content Overview
 |  |  |
| Equipment Briefing | Process Practice (1) | Process Practice (2) |
|  |  |
| Process Practice (3) | Process Practice (4) | O/X Quiz |
1-1. Equipment Briefing
All scenarios and procedures begin with an explanation of the process equipment and the work area. Learners first understand the functions and roles of the equipment for the selected process, and then proceed to the job training experience.
1-2. Process Practice
Based on real workflow sequences, learners can directly experience key tasks such as equipment operation, parts replacement, and procedure execution. Through 반복 training, they can deepen their understanding of procedures and develop practical instincts.
1-3. O/X Quiz
An O/X quiz is provided during the job experience to check understanding of 핵심 concepts and procedures. Immediate feedback supports both 집중 and learning effectiveness.
2. App Instructor (Learning Management System)
It provides a stable and flexible learning environment that can respond to 다양한 learning scenarios. Learning progress, performance results, and participation history based on XR content can be managed systematically. This enables administrators to monitor and control learners’ status in real time or after the session, supporting smooth and well-managed training operations.
Specialized Technologies of IMXR® Semiconductor Job Training XR Content

1. Realistic Semiconductor Process Environment with High-Quality 3D Modeling
By closely analyzing semiconductor manufacturing characteristics and operational environments, we built a virtual setting that faithfully reflects the appearance of real cleanrooms and equipment. Using high-precision 3D scanning, photogrammetry, and physically based rendering (PBR), we meticulously recreated process equipment and workflow paths. With an environment similar to real production sites, the experience was designed so learners can understand equipment principles and process flows more realistically and immerse themselves more deeply.
2. Mixed Reality Experience Powered by MR Technology
By implementing an MR (Mixed Reality) environment, we provide a more intuitive and practical experience. With spatial mapping and hand tracking, users can move freely in their real surroundings while interacting with virtual semiconductor equipment. Real-time occlusion processing and physically based lighting simulation enable virtual objects to be placed naturally in the real space. Through MR, learners can observe large-scale semiconductor equipment from multiple angles and practice operating procedures without physical constraints.
3. Field-Oriented Scenario Design
Scenarios were designed based on real operational standards from semiconductor manufacturing sites to enhance training effectiveness. With field-oriented scenario planning, learners can go beyond simple observation to experience real job situations, improving job understanding and workplace adaptability.
4. Interactive Features and Animation Implementation
We implemented interactions and animations that faithfully reproduce real equipment operating mechanisms, enabling learners to directly operate equipment in the experience. Key operational steps performed in real workplaces—such as power control, gas valve open/close, chamber door operation, and process parameter settings—were built as interactive procedures. Equipment responses and state changes are visualized through real-time animations so users can intuitively understand operating principles. In addition, warning systems and feedback are provided for incorrect actions to strengthen training outcomes. Various input methods such as rotation, grabbing, and touch are supported, and immersive manipulation is enabled through hand gesture recognition.
H/W Solution
U1 University is experiencing Samwoo Immersion’s immersive VR content using Meta Quest 3.
The moment you immerse yourself, you grow!
Maximize your capabilities with XR and AI (X-RAI) technology.
U1 University Semiconductor VR Content & Equipment Procurement
Delivery of Semiconductor Job Training XR Content and System Implementation
In semiconductor education programs, students often face limitations in directly experiencing real processes and equipment. To address this challenge, Samwoo Immersion provided VR content that enables learners to explore semiconductor process flows and understand equipment operating principles through hands-on immersive training. In addition, complementary solutions were proposed to present an effective teaching methodology that maximizes learning efficiency even under constraints of space and time.
“An effective educational tool that can drive student immersion”
Because most classes are delivered in a classroom setting with a strong focus on theory, we have clearly felt the limitations in bringing students to a truly immersive level of engagement. Running regular on-site practicums is difficult due to physical and time constraints. In particular, the semiconductor industry requires strict cleanroom entry procedures and safety regulations, making it challenging even to escort students to the field. We considered that substituting hands-on training with Samwoo Immersion’s semiconductor job training VR content could be a practical solution, as it can realistically replicate field experiences. The learning effect is expected to be far beyond what can be achieved by simply watching photos or videos.
Going forward, VR content can also be introduced for other processes or subjects. With no limitation on physical space, it is a solution with high usability and strong educational efficiency.
By operating the trigger according to the guide,
users can perform Mask Aligner & Exposure procedures
Built with 1:1 scale equipment modeling and passthrough,
allowing users to experience a learning environment close to reality
Overview
Semiconductor XR Hands-on Training Begins in the Classroom
Immersion Strategy
Educational institutions place top priority on cultivating talents with real-world, field-ready skills. To achieve this effectively, they aim to build learning environments that reflect production sites in key industries, but in reality they face many challenges.
Samwoo Immersion proposed an effective solution to overcome the limitations of building such training environments. By recreating actual semiconductor manufacturing processes in an XR environment, students can internalize process flows and operational procedures without directly handling equipment worth hundreds of millions of KRW. In particular, the ability to train repeatedly without risks of contamination or damage can reduce psychological 부담 for beginners and help build confidence.
Furthermore, this content can serve as a foundation for research on new teaching methodologies in semiconductor education. It has 충분한 value as a research subject for analyzing learning outcomes from multiple perspectives, including changes in learner proficiency through VR practice, methods for measuring learning achievement, and comparative studies versus traditional hands-on training. In addition, the deployed content can be applied to affiliated institutions or educational programs, making it a sustainable solution in terms of scalability and cost-effectiveness.
IMXR® Semiconductor Job Training XR Content Package
This package consists of three XR practical training contents that implement tasks and maintenance procedures for three processes among the eight major semiconductor processes—Photo, Etching, Ion Implantation, and Deposition—along with a set of dedicated software for operating and controlling the content. In addition, based on our portfolio of 13 semiconductor job training contents, processes and courses can be selected and combined to match the client’s educational objectives, enabling customization. When needed, we also support integration with a learning control system for efficient training operations.
1. Content Overview
1-1. Equipment Briefing
All scenarios and procedures begin with an explanation of the process equipment and the work area. Learners first understand the functions and roles of the equipment for the selected process, and then proceed to the job training experience.
1-2. Process Practice
Based on real workflow sequences, learners can directly experience key tasks such as equipment operation, parts replacement, and procedure execution. Through 반복 training, they can deepen their understanding of procedures and develop practical instincts.
1-3. O/X Quiz
An O/X quiz is provided during the job experience to check understanding of 핵심 concepts and procedures. Immediate feedback supports both 집중 and learning effectiveness.
2. App Instructor (Learning Management System)
It provides a stable and flexible learning environment that can respond to 다양한 learning scenarios. Learning progress, performance results, and participation history based on XR content can be managed systematically. This enables administrators to monitor and control learners’ status in real time or after the session, supporting smooth and well-managed training operations.
Specialized Technologies of IMXR® Semiconductor Job Training XR Content
1. Realistic Semiconductor Process Environment with High-Quality 3D Modeling
By closely analyzing semiconductor manufacturing characteristics and operational environments, we built a virtual setting that faithfully reflects the appearance of real cleanrooms and equipment. Using high-precision 3D scanning, photogrammetry, and physically based rendering (PBR), we meticulously recreated process equipment and workflow paths. With an environment similar to real production sites, the experience was designed so learners can understand equipment principles and process flows more realistically and immerse themselves more deeply.
2. Mixed Reality Experience Powered by MR Technology
By implementing an MR (Mixed Reality) environment, we provide a more intuitive and practical experience. With spatial mapping and hand tracking, users can move freely in their real surroundings while interacting with virtual semiconductor equipment. Real-time occlusion processing and physically based lighting simulation enable virtual objects to be placed naturally in the real space. Through MR, learners can observe large-scale semiconductor equipment from multiple angles and practice operating procedures without physical constraints.
3. Field-Oriented Scenario Design
Scenarios were designed based on real operational standards from semiconductor manufacturing sites to enhance training effectiveness. With field-oriented scenario planning, learners can go beyond simple observation to experience real job situations, improving job understanding and workplace adaptability.
4. Interactive Features and Animation Implementation
We implemented interactions and animations that faithfully reproduce real equipment operating mechanisms, enabling learners to directly operate equipment in the experience. Key operational steps performed in real workplaces—such as power control, gas valve open/close, chamber door operation, and process parameter settings—were built as interactive procedures. Equipment responses and state changes are visualized through real-time animations so users can intuitively understand operating principles. In addition, warning systems and feedback are provided for incorrect actions to strengthen training outcomes. Various input methods such as rotation, grabbing, and touch are supported, and immersive manipulation is enabled through hand gesture recognition.
H/W Solution
U1 University is experiencing Samwoo Immersion’s immersive VR content using Meta Quest 3.
The moment you immerse yourself, you grow!
Maximize your capabilities with XR and AI (X-RAI) technology.