Page 99 - R2017 Final_BE Biomedical Curriculum and Syllabus - REC
P. 99
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

