Page 99 - R2017 Final_BE Biomedical Curriculum and Syllabus - REC
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Department of BME, REC

               multiple  interrupts  –  context  and  periods  for  context  switching,  interrupt  latency  and  deadline  –
               Device Driver– Introduction to Basic Concept of Parallel port & Serial port Device Drivers.

               UNIT III      RTOS BASED EMBEDDED SYSTEM DESIGN                                            9
               Introduction  to  basic  concepts  of  RTOS-  Need,  Task,  process  &  threads,  interrupt  routines  in
               RTOS,  Multiprocessing  and  Multitasking,  Preemptive  and  non-preemptive  scheduling,  Task
               communication  shared  memory,  message  passing-,  Inter  process  Communication  –
               synchronization  between  processes-semaphores,  Mailbox,  pipes,  priority  inversion,  priority
               inheritance, comparison of Real time Operating systems: VxWorks, RT Linux

               UNIT IV       FUNDAMENTALS OF UML                                                          9
               Overview of UML, Scope of UML, Conceptual model of UML, Architectural – Metamodel, Unified
               Software  Development  Lifecycle-UML  Diagram-  Timing  ,Task  Diagram  Modeling  techniques  -
               structural, Behavioral, Activity Diagrams-simple patterns

               UNIT V        EMBEDDED SYSTEM APPLICATION DEVELOPMENT                                      9
               Objective,  Need,  different  Phases  &  Modeling  of  the  EDLC-choice  of  Target  Architectures  for
               Embedded  Application  Development-for  Control  Dominated-Data  Dominated  Systems-Case
               studies on Digital Camera, Adaptive Cruise control in a Car, Mobile Phone software for key inputs.

                                                                                        TOTAL: 45 PERIODS
               OUTCOMES:
               On completion of the course students will be able to
                   •  Design  &  develop  computational  processors  & automated  process  with  improved  design
                      strategies.
                   •  Implement UML and models for real time applications.
                   •  Employable  and  develop  entrepreneurship  capacity  due  to  knowledge  up  gradation  on
                      recent trends in embedded systems design.
                   •  Explain on aspects required in developing a new embedded processor, different Phases &
                      Modeling of embedded system
                   •  Apply the concepts for real time applications

               TEXT BOOKS:
                   1.  Rajkamal, “Embedded system-Architecture, Programming, Design”, TMH,2011
                   2.  Peckol, “Embedded system Design”,JohnWiley&Sons,2010

               REFERENCES:
                   1.  Lyla B Das, “Embedded Systems-An Integrated Approach”, Pearson Publications, 2013
                   2.  Elicia White, “Making Embedded Systems”, O’Reilly Series,SPD,2011
                   3.  Bruce  Powel  Douglass,  “Real-Time  UML  Workshop  for  Embedded  Systems”,  Elsevier,
                      2011.



                BM17E25                BIOELECTROMAGNETISM AND COMPATIBILITY                      L  T  P  C
                                                                                                  2  0  0  2

               OBJECTIVES:
                   •  To understand behavior of EMF with respect to time and its impact on medical devices
                   •  To gain knowledge on the electric impedances of living tissues: dielectric and conductive
                      properties of biological media

               Curriculum and Syllabus | B.E Biomedical Engineering | R 2017                       Page 99
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