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Dept of EEE, REC

               REFERENCES:
                   1.  Rajkamal, “Embedded System-Architecture, Programming, Design”, McGraw Hill,   2013.
                   2.  Elicia White, “Making Embedded Systems”, O’ Reilly Series,SPD,2011.
                   3.  Han-Way Huang, “Embedded system Design Using C8051”, Cengage Learning,2009.
                   4.  Rajib Mall “Real-Time systems Theory and Practice” Pearson Education, 2007.
                   5.  https://www.ukessays.com/essays/information-technology/embedded-systems-and-home-
                       applications-information-technology-essay.php
                   6.  https://www.youtube.com/watch?v=GfPcz1y0JoE

               EE17603                DESIGN OF ELECTRICAL APPARATUS                                      L  T  P  C
                                                                                                          2   2  0   3

               OBJECTIVES:
                     To  impart  knowledge  onthe  calculations  and  thermal  ratings  of  various  types  of  electrical
                       machines.
                     To impart knowledge onthe design of armature and field systems for d.c. machines.
                     To impart knowledge onthe design of core, yoke, windings and cooling systems of transformers.
                     To impart knowledge onthe design of stator and rotor of induction machines.
                     To impart knowledge onthe design of stator and rotor of synchronous machines.

               UNIT I MAGNETIC CIRCUITS AND COOLING OF ELECTICAL MACHINES                           9
               Concept  of  magnetic  circuit  –  MMF  calculation  for  various  types  of  electrical  machines  –  real  and
               apparent flux density of rotating machines – leakage reactance calculation for transformers- parallel sided
               slot for induction and synchronous machine- thermal rating: continuous, short time and intermittent short
               time rating of electrical machines-direct and indirect cooling methods – cooling of turbo alternators.

               UNIT II D.C. MACHINES                                                                                                                          9
               Constructional  details  – output  equation –  main  dimensions  -  choice  of specific loadings  – choice  of
               number of poles – armature design – winding design – design of field poles and field coil  – design of
               commutator and brushes – losses and efficiency calculations.

               UNIT III TRANSFORMERS                                                                                                                     9
               Constructional details of core and shell type transformers – output rating of single phase and three phase
               transformers – optimum design of transformers – design of core, yoke and windings for core and shell
               type transformers –losses and efficiency calculations – design of tank and cooling  of transformers.

               UNIT IV THREE PHASE INDUCTION MOTORS                                                                                9
                Constructional details of squirrel cage and slip ring motors – output equation – main dimensions – choice
               of specific loadings – design of stator – winding design for given poles  design of squirrel cage and slip
               ring rotor – losses and efficiency calculations.

               UNIT V SYNCHRONOUS MACHINES                                                                                                   9
                Constructional  details  of  cylindrical  pole  and  salient  pole  alternators  –  output  equation  –  choice  of
               specific loadings – main dimensions – short circuit ratio – design of stator and rotor of cylindrical pole
               and salient pole machines - design of field coil -  Introduction to computer aided design.


               Curriculum and Syllabus | B.E. Electrical and Electronics Engineering | R2017           Page 69
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