AMA Education System Program Offerings
Scholarships and subsidies are available.
Enrollment Ongoing for S.Y. 2025-2026
AMA College of Computer Engineering
AMA pioneers in IT education in the Philippines, cultivating tech-savvy leaders through comprehensive programs and establishing itself as a trusted choice for quality education that readies you for future careers.
- Bachelor of Science in Information Technology
- Bachelor of Science in Computer Science
- Bachelor of Science in Information System
- Bachelor of Science in Cybersecurity
- Bachelor of Science in Data Science
- Bachelor of Science in Blockchain Technology
- Bachelor of Science in Artificial Intelligence
- Bachelor of Science in Entertainment and Multimedia Computing
Bachelor of Science in Computer Engineering (BSCpE)
The Bachelor of Science in Computer Engineering (BSCpE) program is designed to bridge the gap between computer science and electrical engineering. It equips students with the skills necessary to design, develop, and maintain hardware and software systems. The curriculum covers key areas such as microprocessors, logic circuits, embedded systems, and networking, preparing students for the complexities of modern digital systems.
Students will gain hands-on experience through various lab sessions and projects, ensuring they are well-prepared to meet the demands of the tech industry. Specializations in areas such as the Internet of Things (IoT), Data Analytics, Cybersecurity, and Network Administration further enhance their career prospects.
These roles are highly in demand across sectors such as technology, manufacturing, telecommunications, and government.
Career Opportunities:
Graduates of BSCpE can pursue a wide range of roles in both local and global industries, such as:
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Software Engineer
Network Administrator
System Analyst - Robotics Control Systems Engineer
- Cybersecurity Specialist
- IoT Specialist
- Applications Programmer/Developer
- Database Administrator
- Semiconductor Manufacturing Engineer
Program Outcomes ( PEOs) :
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Technical Leadership in IT Based Engineering
- Demonstrate professional leadership in design, development and implementation of hardware and software systems
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Global Competitiveness and Professionalism
- Demonstrate professionalism and global competitiveness by applying international engineering standards, engaging in collaborative practice, and adapting to the evolving global technology environment.
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Holistic and Ethical Practice
- Practice computer engineering as responsible professionals who uphold ethical standards, demonstrate integrity, and consider societal, environmental, and global impacts while contributing productively to their communities and organizations.
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Continuous Growth and Innovations
- Engage in life-long learning, in response to that changing needs of science, including professional certifications, graduate studies or research, to realize their full potential and remain responsive to the rapid advancements in computer engineering and technology and other business disciplines.
Student Outcomes (SOs):
1. Identify, formulate, and solve complex engineering problems by applying principles of engineering, science, and mathematics.
2. Apply engineering design to produce solutions that meet specified needs with consideration of public health, safety, and welfare, as well as global, cultural, social, environmental, and economic factors.
3. Communicate effectively with a range of audiences.
4. Recognize ethical and professional responsibilities in engineering situations and make informed judgments, which must consider the impact of engineering solutions in global, economic, environmental, and societal contexts.
5. Function effectively on a team whose members together provide leadership, create a collaborative and inclusive environment, establish goals, plan tasks, and meet objectives.
6. Develop and conduct appropriate experimentation, analyze and interpret data, and use engineering judgment to draw conclusions.
7. Acquire and apply new knowledge as needed, using appropriate learning strategies.
BS in Electronics Engineering (BSECE)
The Bachelor of Science in Electronics Engineering (BSECE) program offers students an in-depth understanding of electronics and communication systems, combining theoretical knowledge with practical applications. The program covers a wide range of subjects, including microelectronics, signal processing, telecommunications, and robotics. Students are trained to design, develop, and manage advanced electronic systems, preparing them to take on roles in various tech-driven industries. The program also provides hands-on experience through laboratory work and internships, making graduates competitive in sectors such as telecommunications, manufacturing, broadcasting, and healthcare.
Key Areas of Study:
Electronics and microprocessor systems
Communication systems (satellites, broadcasting, fiber optics)
Control systems and automation
Signal processing and instrumentation
Career Opportunities:
Graduates of the BSECE program can pursue several high-demand careers, such as:
- Telecommunications Engineer
- Semiconductor Design Engineer
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Automation and Control Systems Engineer
Broadcast Engineer
Biomedical Electronics Engineer
Robotics and Mechatronics Engineer
Signal Processing Specialist
Program Outcomes ( PEOs) :
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Leadership & Technical Expertise
- Graduates will become leaders in the field of Electronics Engineering, demonstrating high technical proficiency in electronics, communications, or computer engineering, and holding key roles in industry, Academia or professional organization.
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Life-Long Learning & Adaptability
- Graduates will be committed to continuous professional development, thru advanced studies, certifications, training, research, and participation in professional organizations as well as adapting to rapid advancements in technology and the evolving needs of the electronics engineering profession and the community.
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Social Responsibility
- Demonstrate leadership in Electronics Engineering and its related fields with a high level of technical proficiency in providing solutions to Mechatronics / Semiconductor / ICT Infrastructure & Data Centers and the ability to lead, manage and innovate.
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Innovation and Ethical Practice
- To deliver ethical electronics engineering solutions that prioritize the needs of the adopted/partner community, that adhere to global standards and laws, and foster growth through active professional and community engagement.
Student Outcomes ( SO s) :
1. Identify, formulate, and solve complex engineering problems by applying principles of engineering, science, and mathematics.
2. Apply engineering design to produce solutions that meet specified needs with consideration of public health, safety, and welfare, as well as global, cultural, social, environmental, and economic factors.
3. Communicate effectively with a range of audiences.
4. Recognize ethical and professional responsibilities in engineering situations and make informed judgments, which must consider the impact of engineering solutions in global, economic, environmental, and societal contexts.
5. Function effectively on a team whose members together provide leadership, create a collaborative and inclusive environment, establish goals, plan tasks, and meet objectives.
6. Develop and conduct appropriate experimentation, analyze and interpret data, and use engineering judgment to draw conclusions.
7. Acquire and apply new knowledge as needed, using appropriate learning strategies.
Bachelor of Science in Electrical Engineering
The Bachelor of Science in Electrical Engineering (BSEE) is a comprehensive five-year program that prepares students for a variety of roles in the electricity and energy sectors. The curriculum focuses on the design, development, and application of electrical systems, ranging from power generation to transmission and distribution, as well as the installation and maintenance of electrical infrastructure. With a strong foundation in mathematics and the sciences, graduates are equipped to handle complex engineering challenges and contribute to innovations in electrical energy. The demand for electrical engineers is strong, particularly in energy-related industries where the focus is shifting toward renewable energy and efficient power solutions.
Key Areas of Study:
Electrical circuit theory and analysis
Power generation, transmission, and distribution systems
Electrical system design and control
Electronics and communication systems
Renewable energy technologies
Career Opportunities:
Graduates of the BSEE program are well-prepared for roles in various industries such as power generation, telecommunications, manufacturing, and construction. Some potential job titles include:
- Electrical Engineer: Design, develop, and maintain electrical systems in power plants, manufacturing facilities, or utility companies.
- Power Systems Engineer : Focus on the design and operation of electrical power grids and distribution systems.
- Electrical Design Engineer : Work on designing electrical systems for buildings and infrastructure projects.
- Control Systems Engineer : Manage and develop control mechanisms for automated systems.
- Telecommunications Engineer : Specialize in electronic and communication systems.
Bachelor of Science in Industrial Engineering
The Bachelor of Science in Industrial Engineering (BSIE) is a comprehensive program that merges technology, science, and management to optimize complex systems involving people, materials, and equipment. This interdisciplinary course prepares students to excel in improving operational efficiency in manufacturing and service industries, equipping them with skills in systems design, process optimization, and project management.
The program focuses on a combination of technical and management competencies. Students study subjects such as operations research, quality management, ergonomics, production planning, and supply chain engineering. These courses not only enhance analytical abilities but also prepare students to manage people and processes effectively in a variety of sectors.
These roles are prevalent in industries such as manufacturing, logistics, healthcare, and technology, offering a wide range of opportunities for BSIE graduates to lead innovations and optimize operations in diverse settings. The program emphasizes both technical proficiency and leadership skills, preparing graduates to thrive in a rapidly evolving industrial landscape.
Career Opportunities:
Graduates of BSIE can pursue roles in both the public and private sectors, with common job titles including:
- Process Improvement Engineer
- Operations Manager
- Supply Chain Analyst
- Quality Assurance Manager
- Production Planner
- Industrial Safety Engineer
- Project Manager
- Lean Manufacturing Engineer
Program Outcomes ( PEOs) :
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Professional Competence
- Demonstrate competence in the application of industrial engineering principles, analytical methods, and modern engineering tools to design, improve, and optimize integrated systems involving people, materials, information, equipment, energy, and processes across manufacturing and service operations.
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Leadership and Professional Practice
- Assume leadership and collaborative roles in multidisciplinary teams, effectively managing engineering projects, operations, quality systems, productivity improvement initiatives, and organizational resources while adhering to professional and ethical standards.
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Innovation and Continuous Improvement
- Develop and implement innovative, data-driven, and sustainable solutions that enhance operational efficiency, productivity, quality, safety, and competitiveness through systems thinking, digital technologies, automation, and continuous improvement methodologies.
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Social Responsibility and Sustainable Development
- Practice industrial engineering with integrity, environmental stewardship, and social responsibility by contributing to sustainable development, occupational safety and health, community welfare, and national and global economic progress.
Student Outcomes ( SOs) :
- Identify, formulate, and solve complex engineering problems by applying principles of engineering, science, and mathematics.
- Apply engineering design to produce solutions that meet specified needs with consideration of public health, safety, and welfare, as well as global, cultural, social, environmental, and economic factors.
- Communicate effectively with a range of audiences.
- Recognize ethical and professional responsibilities in engineering situations and make informed judgments, which must consider the impact of engineering solutions in global, economic, environmental, and societal contexts.
- Function effectively on a team whose members together provide leadership, create a collaborative and inclusive environment, establish goals, plan tasks, and meet objectives.
- Develop and conduct appropriate experimentation, analyze and interpret data, and use engineering judgment to draw conclusions.
- Acquire and apply new knowledge as needed, using appropriate learning strategies.
Here at AMA, we provide you with every advantage possible!
From nursery to post graduate studies, weve got you covered.
? IT-based education
? Various short courses and degree programs available to match your interests
? International partnerships with some of the biggest names in the IT industry
? More opportunities and hands-on experience at school and in the workplace through our OJT program