B.S. in Robotics

Plattsburgh

 

INTAKE: Jan & Aug

Program Overview

The B.S. in Robotics at SUNY Plattsburgh is designed to provide students with a solid foundation in both robotics and interdisciplinary applications. The program integrates principles from engineering, computer science, and mathematics to equip students with the necessary skills to design, develop, and operate robotic systems. With a focus on hands-on learning, students engage in projects that simulate real-world challenges, preparing them for various career paths in this rapidly evolving field.

STEM-designated: As a STEM-designated program, the B.S. in Robotics emphasizes science, technology, engineering, and mathematics education. This designation allows students to benefit from specific resources and opportunities that enhance their educational experience, including access to cutting-edge laboratories, workshops, and research initiatives. Additionally, STEM-designated programs often offer extended Optional Practical Training (OPT) opportunities for international students, facilitating valuable work experiences in the United States.

Curriculum: The curriculum of the B.S. in Robotics includes core courses in robotics, programming, and engineering principles, along with elective options that allow for specialization in areas such as artificial intelligence, machine learning, or automation. Key subjects covered may include control systems, computer vision, embedded systems, and human-robot interaction. The program’s balance of theoretical knowledge and practical skills ensures that graduates are well-prepared for the challenges of the robotics industry.

Research Focus: SUNY Plattsburgh promotes research in robotics through faculty-led projects and student initiatives. Research opportunities may involve developing innovative robotic applications, exploring robotic ethics, or investigating new technologies in automation. Students are encouraged to collaborate with faculty members on research projects, enhancing their critical thinking and problem-solving skills while contributing to advancements in the field.

Industry Engagement: The B.S. in Robotics program emphasizes industry engagement through internships, partnerships with local businesses, and collaborative projects. Students often have the chance to work with industry professionals on real-world problems, gaining valuable insights and networking opportunities. This engagement not only enriches the educational experience but also enhances employability upon graduation.

Global Perspective: The program instills a global perspective by examining the impact of robotics on society and the ethical considerations surrounding its use. Through coursework and discussions, students explore the cultural implications of robotic technologies in different contexts. This global viewpoint prepares graduates to consider the broader impact of their work and to operate effectively in an interconnected world.

Pollster Education

Location

Plattsburgh

Pollster Education

Score

IELTS 6.5

Pollster Education

Tuition Fee

USD 16980

Undergraduate Entry Requirements

Application Fee: $50

Academic Qualifications: Applicants for undergraduate programs typically require a minimum academic achievement of 65% or above in their previous academic qualifications.

English Language Proficiency:

  • IELTS: Overall band score of 6.5 with a minimum of 6.0 in each component.
  • TOEFL: Overall score of 76 or higher.
  • PTE: Overall score of 53 or higher.
  • DET (Duolingo English Test): Minimum score of 110.

SUNY Plattsburgh is fostering a diverse and inclusive academic community, the university offers various scholarship opportunities for international students. These scholarships are designed to recognize academic achievement, leadership qualities, and the potential for making a positive impact. 

International Student Academic Excellence Scholarship: The Academic Excellence Scholarship is awarded to outstanding international students based on their academic achievements. Eligibility criteria often include a strong academic record, standardized test scores, and letters of recommendation. The scholarship aims to support students who have demonstrated exceptional scholarly abilities.

Global Diversity Scholarship: SUNY Plattsburgh values diversity and recognizes the unique perspectives that international students bring to the campus community. The Global Diversity Scholarship is designed to celebrate and support students from different cultural backgrounds. Recipients are often selected based on their contributions to promoting diversity and inclusion.

International Student Leadership Scholarship: This scholarship is geared towards international students who have demonstrated exemplary leadership skills, both in their academic pursuits and extracurricular activities. Leadership roles, community service, and making a positive impact are often considered in the selection process.

Community Engagement Scholarship: SUNY Plattsburgh encourages international students to actively engage with the local and campus communities. The Community Engagement Scholarship recognizes students who have demonstrated a community service and engagement. Applicants may need to provide evidence of their involvement in community initiatives.

Global Scholars Program: The Global Scholars Program is a comprehensive scholarship initiative that may include financial support, mentorship, and specialized programming. This program is designed for high-achieving international students who aspire to make a significant impact in their academic and community endeavors.

Departmental Scholarships: Some academic departments at SUNY Plattsburgh offer specific scholarships for international students within their respective fields. These scholarships may be tied to academic majors, research interests, or career goals.

Graduates of the B.S. in Robotics program at SUNY Plattsburgh are well-prepared to enter a diverse range of careers in the rapidly expanding field of robotics and automation. Their comprehensive education equips them with the necessary skills to excel in various roles.

Robotics Engineer: Many graduates pursue careers as robotics engineers, where they design, build, and test robotic systems for applications in industries such as manufacturing, healthcare, and aerospace. This role involves a blend of mechanical, electrical, and software engineering.

Automation Engineer: Automation engineers focus on developing automated systems to improve efficiency and productivity in manufacturing and production processes. They design control systems, implement automation solutions, and troubleshoot issues to ensure seamless operations.

Software Developer: Graduates often become software developers specializing in robotics programming. They write and optimize code for robotic systems, develop algorithms for machine learning, and create software that enables robots to perform tasks autonomously.

Systems Analyst: Systems analysts evaluate and design systems to enhance organizational efficiency. In the context of robotics, they assess existing systems, recommend improvements, and implement solutions that integrate robotic technologies.

Research Scientist: Some graduates choose to enter research roles, working in academic or industrial settings to advance knowledge in robotics and automation. They may focus on innovative technologies, robotics applications, or the ethical implications of robotics in society.

Field Service Engineer: Field service engineers are responsible for installing, maintaining, and troubleshooting robotic systems in various environments. This role often involves travel and on-site problem-solving to ensure systems operate optimally.

Product Manager: Graduates may take on product management roles, overseeing the development and marketing of robotic products. They work closely with engineering teams, marketing departments, and clients to ensure products meet market needs and maintain quality standards.

Control Systems Engineer: Control systems engineers specialize in designing and implementing control systems that govern the behavior of robots. They work with sensors, actuators, and feedback loops to ensure precise and accurate robot movements.

Education and Training Specialist: Some graduates may pursue careers in education or training, teaching robotics concepts at schools, colleges, or training centers. They may develop curricula and lead workshops to inspire the next generation of robotics enthusiasts.

Entrepreneurship: Armed with their technical expertise, graduates may also venture into entrepreneurship, creating their own startups focused on innovative robotics solutions, consulting, or developing specialized robotic products.


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