This is a core compulsory course for Computer Science and Technology majors, playing a crucial role in undergraduate education. It aims to provide students with a deep understanding of the internal workings, hardware organization, and implementation technologies of modern digital computer systems. Upon completion, students will grasp the mechanisms of software-hardware interaction, develop a comprehensive system-level concept, and enhance their computer system capabilities. The course is essential for cultivating students' abilities in understanding, designing, developing, and applying computer systems, fostering advanced thinking skills.
The course is divided into three main parts: Introduction, Central Processing Unit, and Computer System. It covers fundamental concepts from computer architecture to input/output systems, including number representation, arithmetic operations, instruction sets, processor design, memory hierarchy, interrupts, buses, and I/O systems.
The course aims to equip students with fundamental knowledge and skills applicable to various roles in computer system design, development, and application. The curriculum incorporates industry insights through guest lectures from technical engineers, bridging theoretical knowledge with practical commercial applications.
Specific English language proficiency requirements are not detailed in the provided text, but it is implied that the course is taught in English given the English course title and introduction.
Tuition and living cost information is not available in the provided documentation.
Not specified
The program requires prerequisite courses in Introduction to Computer Science, Digital Circuits, and Fundamentals of Programming and Experiments.
The course covers computer system overview, number representation, arithmetic operations, instruction sets, CPU design, memory hierarchy, interrupts, buses, and input/output systems.
Graduates can pursue roles such as Computer System Designer, Hardware Engineer, Software Developer, Researcher in Computer Architecture, or Chip Designer.
Teaching methods include lectures, exercise sessions, discussion sessions, and guest lectures from industry experts. Ideological and political education is integrated, using examples from China's computing field.
Tuition and living cost information is not available in the provided documentation. Please refer to the University of the Chinese Academy of Sciences official website for details.
Prospective students should refer to the official UCAS international admissions section for detailed application procedures and deadlines, as information for this specific program is not provided separately.