• KLEEE, KLMAT, KLECET, KLHAT, KLSAT - 2026 Phase 2 Exam Dates : 3rd to 5th January 2026.
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Program Overview

What is the B.Tech IoT Program all about at KL University?

The KL University’s B.Tech in Internet of Things (IoT) is a future-first four-year full-time degree, which was launched in 2020 and integrates electronics, computer science, wireless communication, cloud computing, and data analytics into the curriculum. It concentrates on creating inter-related technologies that are defining the future of smarter cities, healthcare, production, energy systems and automation.

  • Learn directly from industry experts who guide you beyond the classroom and text books
  • Build real-world skills through hackathons, startup incubation, and industry projects
  • Graduate as a job ready innovator, ready to lead in IoT, AI, and smart systems

Program Structure

What is the B.Tech IoT Program structure?
  • The program follows Choice-Based Credit System (CBCS) and other flexible learning paths and also combines core subjects, electives, professional certifications, internships, and research projects.
  • The structure maintains a 60-40 balance between theory and practice.
  • Practical learning is ensured through labs, practice schools, and industry placements.
  • In the final year, students work on a Capstone Project to apply their knowledge in real-world scenarios.
How does the curriculum add new technologies in B.Tech IoT?

The curriculum is planned to update with the latest technologies annually. Tech giants like IBM, Watson, Microsoft, Huawei, GE Healthcare, CDAC, and more provide students with industry partnerships and global certifications. The program implements courses related to 5G, Edge Computing, AI, Cybersecurity, Digital Twins and Smart Healthcare Systems. This makes graduates always stay on top of fast-changing technological environment.

Program Benefits

What will I gain by joining the B.Tech IoT program?

Students acquire real-world experience in sensors, wireless communication, cloud, data security, renewable energy, and AI applications. This program also develops a technical experience as well as the innovation competence by promoting the involvement in research, publications, start-ups, and national competitions. By participating in global internships, funding projects, alumni mentorship, and exposure to industry, IoT students pass out from the college as bold professionals who are well equipped to drive digital change.

Program outcomes

  • PO1: Engineering knowledge: Apply the knowledge of mathematics, science, engineering fundamentals, and an engineering specialization to the solution of complex engineering problems.
  • PO2: Problem analysis: Identify, formulate, review research literature, and analyze complex engineering problems reaching substantiated conclusions using first principles of mathematics, natural sciences, and engineering sciences.
  • PO3: Design/development of solutions: Design solutions for complex engineering problems and design system components or processes that meet the specified needs with appropriate consideration for the public health and safety, and the cultural, societal, and environmental considerations.
  • PO4: Modern tool usage: Create, select, and apply appropriate techniques, resources, and modern engineering and IT tools including prediction and modelling to complex engineering activities with an understanding of the limitations.
  • PO5: The engineer and society: Apply reasoning informed by the contextual knowledge to assess societal, health, safety, legal and cultural issues, and the consequent responsibilities relevant to the professional engineering practice.
  • PO6: Environment and sustainability: Understand the impact of the professional engineering solutions in societal and environmental contexts, and demonstrate the knowledge of, and need for sustainable development.
  • PO7: Ethics: Apply ethical principles and commit to professional ethics and responsibilities and norms of the engineering practice.
  • PO8: Individual and teamwork: Function effectively as an individual, and as a member or leader in diverse teams, and in multidisciplinary settings.
  • PO9: Communication: Communicate effectively on complex engineering activities with the engineering community and with society at large, such as, being able to comprehend and write effective reports and design documentation, make effective presentations, and give and receive clear instructions.
  • PO10: Project management and finance: Demonstrate knowledge and understanding of the engineering and management principles and apply these to one’s own work, as a member and leader in a team, to manage projects and in multidisciplinary environments.
  • PO11: Life-long learning: Recognize the need for and have the preparation and ability to engage in independent and life-long learning in the broadest context of technological change.
  • PO12: Conduct investigations of complex problems: Use research-based knowledge and research methods including design of experiments, analysis and interpretation of data, and synthesis of the information to provide valid conclusions.

  • PEO1: Practice engineering in a broad range of industrial, societal, and real-world applications.
  • PEO2: Pursue advanced education, research and development, and other creative and innovative efforts in science, engineering, and technology, as well as other professional careers.
  • PEO3: Conduct themselves in a responsible, professional, and ethical manner.
  • PEO4: Participate as leaders in their fields of expertise and in activities that support service and economic development throughout the world.

Eligibility & Admission Criteria

What are the academic qualifications to enter into B.Tech IoT?

To be considered for admission, you must have successfully passed the 10+2 or an equivalent examination from a recognised board. It is generally mandatory to achieve a minimum of 60% aggregate marks in your qualifying examination. Crucially, applicants must have studied Physics, Chemistry, and Mathematics (PCM) in their 10+2 or equivalent examination.

What Entrance Examination Qualification do I need?

In addition to fulfilling the academic qualifications, applicants are required to qualify in one of the following entrance examinations:

  • KLEEE (K L Engineering Entrance Examination), which is conducted by K L University itself.
  • JEE Main (Joint Entrance Examination Main).
  • JEE Advanced (Joint Entrance Examination Advanced).
  • Recognised state-level engineering entrance examinations, such as Andhra Pradesh EAMCET or Telangana State EAMCET.
  • A valid Uni-GAUGE score (where applicable).
What is the Application Process for B.Tech IoT?

The application forms for KLEEE and other direct admissions are typically available online through the official K L University website. The application process generally involves several steps:

  1. Online Registration: Begin by registering on the university's admission portal.
  2. Filling out the Application Form: Accurately fill in all the required details in the online application form.
  3. Uploading Documents: Upload all necessary supporting documents as specified by the university.
  4. Application Fee Submission: Pay a non-refundable application fee, typically ₹1000, which can often be paid online through Credit/Debit Card or Net banking.

Fee Structure

What is the approximate fee for B.Tech IoT?

The fee structure for the B.Tech IoT program at K L University comprises several components. It is important for prospective students and parents to note that fees are subject to periodic revision by the university.

Campus Duration Admission Fee Semester Fee Total 1st Semester
Vijayawada 4 Years ₹16,000 ₹1,27,500 ₹1,43,500

Note: The fee structure provided is based on the 2025–26 academic year and is subject to change for the 2026–27 academic year.

Are hostel and other charges included?

No. Hostel, mess, exam, and other charges are separate. You can contact the admissions office for exact details.

Are there any Scholarship Opportunities?

K L University offers various merit-based and need-based scholarships. These scholarships are generally awarded based on a student's performance in entrance examinations (such as KLEEE or JEE) and their academic scores in intermediate. Eligible students are strongly encouraged to apply for these scholarships during the admission process.

Career Scope & Opportunities

What jobs can I get after B.Tech IoT?

IoT graduates have wide career options including IoT Engineer, IoT Solutions Architect, AI & ML Specialist, Smart City Application Developer, Cybersecurity Analyst, Embedded Systems Engineer, Data Scientist, and Cloud Computing Specialist. The field is expanding across industries like healthcare, manufacturing, energy, and IT, offering high-paying and future-proof roles.

What is the placement record?

K L University boasts an excellent and consistent placement record, striving for 100% placement assistance for its eligible and registered students. For the academic year 2024-25, the university reported a high volume of placements, with 5000+ students placed in 500+ top companies. Specifically for the Engineering department, the placement statistics for 2024-25 indicate a highest CTC of INR 75 LPA. The university has a long-standing track record of successfully placing all eligible students, supported by a dedicated Training and Placement Cell that meticulously prepares students for recruitment through various workshops, industry expert talks, mock interviews, and skill enhancement programs.

Which companies hire B.Tech IoT graduates at K L University?

Top recruiters include IBM, Microsoft, Huawei, GE Healthcare, Siemens, Infosys, TCS, Wipro, Cognizant, Amazon, and Deloitte, along with IoT-focused start-ups and R&D labs.

Can I pursue higher studies after completing B.Tech IoT?

Yes. Students can pursue M.Tech, MS, or Ph.D. in IoT, AI, Robotics, or related areas. The department also supports preparation for GATE, GRE, IELTS, and TOEFL, helping students secure admissions in reputed global universities.

Frequently Asked Questions (FAQs)

Not at all! The program is designed with a clear balance of theory and hands-on practice. With lab-to-class learning, hackathons, internships, and project-based teaching, IoT concepts like sensors, cloud computing, and data analytics become easier to grasp step by step.

Yes. The IoT department provides core competitive exam training for GATE and other national exams. For those aiming abroad, faculty also guide students for GRE, TOEFL, and IELTS with the right mentoring and resources.

Absolutely! The program is linked with leading organisations like IBM Watson, Microsoft, Huawei, GE Healthcare, Tessolve, and CDAC. Students benefit through Centres of Excellence, skill certifications, and collaborative projects, which bring internships, research exposure, and real-time industry learning.

Definitely! IoT is a future-driven branch that offers equal opportunities in IT, core, and research fields. Many women in the program have chosen paths in AI, cloud, data science, healthcare IoT, and automation, proving that IoT is both safe and rewarding.

Yes, and it’s made simple. The curriculum includes Python, R, MATLAB, Embedded Systems, AI/ML frameworks, and Cloud Platforms, giving you the dual advantage of software + hardware skills. Even if you are new to coding, the program trains you step by step.

Students do industry-centric internships through the Practice School model after 2nd and 3rd years. They often work on projects with IBM, Microsoft, Tessolve, CDAC, Huawei, and GE Healthcare, gaining exposure to IoT solutions for smart cities, renewable energy, and healthcare.

Of course! IoT students are encouraged to join hackathons, innovation challenges, workshops, and project expos. These events help students apply classroom knowledge in competitions and often win awards at national and international levels.

Research is a key strength. Students are encouraged to work on funded projects, publish papers, and explore patents in areas like smart healthcare, renewable IoT, and robotics. With advanced research centres and industry collaborations, there is strong support to innovate.

The department fosters student clubs and communities where learners engage in projects, workshops, and personality-building activities. From technical societies to cultural and innovation clubs, IoT students are part of a vibrant ecosystem that builds leadership, teamwork, and networking skills.

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