The Master of Technology (M.Tech.) in Communications Engineering syllabus at Sunrise University (SRU), Alwar is designed to provide overall knowledge to the students with a strong foundation. Master of Technology (M.Tech.) in Communications Engineering faculty at Sunrise University (SRU) specially focus on in-depth learning to relevant subjects. At first semester syllabus of Master of Technology (M.Tech.) in Communications Engineering at Sunrise University (SRU), students learn the basics of programme. A strong foundation is very important for comprehensive learning. Master of Technology (M.Tech.) in Communications Engineering syllabus at Sunrise University (SRU), Alwar maintains a balance between theoretical knowledge and practical knowledge.
Master of Technology (M.Tech.) in Communications Engineering first year students at Sunrise University (SRU) are introduced with core subjects. Then they are encouraged to explore other area for a broader perspective. Sunrise University (SRU), Alwar also provides practical training sessions, workshops, projects, and case studies to enhance student skills. Master of Technology (M.Tech.) in Communications Engineering syllabus at Sunrise University (SRU), Alwar is also frequently updated to give industry relevant training and knowledge to students. Sunrise University (SRU) strives to provide a nurturing environment where students can learn new skills. The hands-on training sessions at Sunrise University (SRU) enable Master of Technology (M.Tech.) in Communications Engineering students to apply knowledge and skills in a controlled environment and get required experience.
According to syllabus of Master of Technology (M.Tech.) in Communications Engineering progress, students learn advanced topics and complex concepts. The Master of Technology (M.Tech.) in Communications Engineering curriculum at Sunrise University (SRU), Alwar mainly focuses on analytical and critical thinking. As the Master of Technology (M.Tech.) in Communications Engineering course unfolds, students develop several important skills that increases their employability. As per syllabus of Master of Technology (M.Tech.) in Communications Engineering at Sunrise University (SRU) also includes real-life projects and internship programs. It helps students critical thinking and gives them real-world experience.
Master of Technology (M.Tech.) in Communications Engineering curriculum at Sunrise University (SRU) includes group discussions, guest lectures, case studies, and skill development workshops to enhance the learning experience. The Master of Technology (M.Tech.) in Communications Engineering syllabus at Sunrise University (SRU) aims to create well-rounded professionals equipped with the necessary skills and knowledge to succeed in their chosen fields.
Additional curriculum at Sunrise University (SRU)
Note: Given below syllabus is based on the available web sources. Please verify with the Sunrise University (SRU), Alwar for latest Master of Technology (M.Tech.) in Communications Engineering curriculum.
M.Tech program in Communications Engineering encompasses a comprehensive syllabus designed to provide students with advanced expertise in communication systems and networks. The curriculum includes key subjects like Digital Communication Systems, Analog Communication Systems, Wireless Communication Systems, and Digital Signal Processing (DSP).
In Digital Communication Systems, students explore the principles of digital communication, modulation techniques, error detection and correction, and information theory. Analog Communication Systems covers analog modulation techniques, receiver design, and RF engineering. Wireless Communication Systems delve into wireless channel modeling, multiple access techniques, cellular network design, and antenna principles. DSP coursework equips students with vital signal processing skills applicable in encoding, modulation, and demodulation.
Syllabus of M.Tech in Communications Engineering
Year 1
S.No | Subjects |
1 | Linear Operators and Generalized Functions |
2 | Advanced Digital Communication |
3 | Detection and Estimation |
4 | Optical Communication Systems |
5 | Microwave Circuits |
6 | Broadband Wireless Technologies |
7 | Microwave and MIC Laboratory |
8 | Fiber Optics Laboratory |
Year 2
S.No | Subjects |
1 | Advanced Digital Signal Processing |
2 | Spectral Analysis of Signals |
3 | Ad Hoc Networks |
4 | WDM Optical Networks |
5 | Digital Signal Processing Structures for VLSI |
6 | Project |
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