Study Program: Fiber Optic Communication Theory
Details:
Name of the continuing education institution: Astrec Baltic OÜ
Name of the curriculum: Optical Communication Theory – 4 academic hours.
Curriculum group: 0714 Electronics and automation
Levels of study: Adult continuing education
Languages of instruction: Estonian, Russian, or English
Quality Assurance Principles
Basis of Study Organization
Course registration information: Use the registration form on the website or send a participation request via email to: astrec@astrec.com
Target group and conditions for commencing studies: The Optical Communication Theory course admits adults (from 18 years of age) who have expressed a desire to participate based on an application. All interested persons are admitted. Basic knowledge of English, communication networks, and a general interest in technology are beneficial for those joining the curriculum.
Total volume of study: 4 academic hours of classroom training.
Description of the learning environment and teaching methods: The theoretical training is conducted in a classroom. The Trainer provides the necessary materials, tools, equipment, and measuring instruments required for the learning process.
Learning outcomes: By the end of the course, the participant:
- Has become familiar with the theory of optical communication;
- Understands the technology of modern networks;
- Understands the working drawings of communication networks;
- Knows the most commonly used types of optical cables;
- Knows the types of optical fibers;
- Knows the operating principles of the most common measuring devices;
- Has an overview of occupational safety.
Course content:
- History of optical communication
- Types of optical cables
- Types of optical fibers
- What to observe when installing cables and connecting fibers
- Typical errors in optical installations
- International standards regulating the field
- Technologies and wavelengths used
- Types of connectors and their properties
- Mechanical splices
- Passive components in optical networks
- Measuring instruments for measuring attenuation and absolute level
- Measuring instruments for troubleshooting and line mapping, OTDR
- Report generation
Description of the learning environment: The theoretical and practical parts take place at Peetri, Vana Tartu mnt. 79A, unless otherwise agreed with the course participants. The training room is equipped with tables, chairs, a computer, a whiteboard, and all necessary study materials and equipment. The necessary study materials are distributed to the participants.
List of study materials (in printed or electronic form):
- Viavi Solutions. Understanding Fiber Optics;
- Viavi Solutions. Understanding Optical Time Domain Reflectometry;
- FTTH Council Europe. FTTH Handbook;
- Viavi Solutions. Fiber Optic Guidebook.
Conditions for completion and documents to be issued:
- By participating in the theoretical and practical classes, the participant will receive a statement of attendance for the course.
- By taking the written final test and obtaining 80% correct answers, the participant will receive a certificate of successful completion of the training.
Description of the trainer’s qualifications, study, and work experience: 20 years of work experience with fiber optic networks, 10 years of experience in training fiber optic network installers. 15 years of experience in planning and designing fiber optic networks. A long-term certified partner of the world’s leading manufacturers of fiber optic measurement and splicing equipment.
Brief description of the content: The course is primarily intended for people who wish to work as fiber optic network installers. It is suitable as continuing education for electricians and low-voltage installers who increasingly encounter fiber optic networks in their daily work. It is also suitable for project managers in the construction field who encounter fiber optic networks and need specific knowledge in organizing the work of subcontractors. A student who has completed the course and passed the final exam is ready to work with fiber optic networks. Considering the rapid development of the field, the course provides the necessary knowledge for further independent self-development in the field of fiber optics.
Version: March 2026
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