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Features
- This unique free application is for all students across the world. It covers 177 topics of Mechatronics in detail. These 177 topics are divided in 3 units.
- Each topic is around 600 words and is complete with diagrams, equations and other forms of graphical representations along with simple text explaining the concept in detail.
- This USP of this application is "ultra-portability". Students can access the content on-the-go from anywhere they like.
- Basically, each topic is like a detailed flash card and will make the lives of students simpler and easier.
- Some of topics Covered in this application are:
- 1. MECHATRONICS
- 2. KEY ELEMENTS OF MECHATRONIC
- 3. HISTORY OF MECHATRONICS
- 4. DEVELOPMENT OF PNEUMATIC CONTROL SYSTEM
- 5. THE DEVELOPMENT OF THE AUTOMOBILE AS A MECHATRONIC SYSTEM
- 6. AUTONOMOUS VEHICLE SYSTEM DESIGN WITH SENSORS AND ACTUATORS
- 7. MECHATRONIC DESIGN APPROACH
- 8. HISTORICAL DEVELOPMENT OF MECHANICAL, ELECTRICAL, AND ELECTRONIC SYSTEMS
- 9. MECHATRONICS DEVELOPMENT
- 10. DIVISION OF MECHATRONICS
- 11. IMPROVEMENT OF OPERATING PROPERTIES
- 12. WAYS OF INTEGRATION
- 13. INFORMATION PROCESSING SYSTEMS (BASIC ARCHITECTURE AND HW/SW TRADE-OFFS)
- 14. SPECIAL SIGNAL PROCESSING
- 15. SUPERVISION AND FAULT DETECTION
- 16. INTELLIGENT SYSTEMS (BASIC TASKS)
- 17. CONCURRENT DESIGN PROCEDURE FOR MECHATRONIC SYSTEMS
- 18. MODELING PROCEDURE FOR MECHATRONIC SYSTEMS
- 19. REAL-TIME SIMULATION
- 20. CLASSIFICATION OF SIMULATION
- 21. HARDWARE-IN-THE-LOOP SIMULATION
- 22. CONTROL PROTOTYPING
- 23. THE MECHATRONIC SYSTEM
- 24. MICROPROCESSOR CONTROL SYSTEM
- 25. INPUT SIGNALS OF A MECHATRONIC SYSTEM
- 26. ANALOG-TO-DIGITAL CONVERTERS
- 27. OUTPUT SIGNALS OF A MECHATRONIC SYSTEM
- 28. SIGNAL CONDITIONING
- 29. MICROPROCESSOR CONTROL
- 30. MICROPROCESSOR NUMERICAL CONTROL
- 31. MICROPROCESSOR INPUT - OUTPUT CONTROL
- 32. MICROCONTROLLER NETWORK SYSTEMS
- 33. SOFTWARE ENGINEERING IN MECHATRONICS
- 34. TESTING AND INSTRUMENTATION
- 35. INTRODUCTION TO MICROELECTRONICS
- 36. OVERVIEW OF CONTROL COMPUTERS
- 37. MICROPROCESSORS AND MICROCONTROLLERS
- 38. DIGITAL COMMUNICATIONS
- 39. DYNAMIC MODELS AND ANALOGIES
- 40. MODEL TYPES IN DYNAMIC MODELS
- 41. SYSTEM RESPONSE
- 42. LUMPED MODEL OF A DISTRIBUTED SYSTEM
- 43. NATURAL FREQUENCY EQUIVALENCE
- 44. DYNAMIC ANALOGIES
- 45. MECHANICAL ELEMENTS
- 46. SPRING (STIFFNESS) ELEMENT
- 47. ELECTRICAL ELEMENTS
- 48. THERMAL ELEMENTS
- 49. FLUID ELEMENTS
- 50. NATURAL OSCILLATIONS
- 51. STATE-SPACE REPRESENTATION
- 52. STATE MODELS
- 53. TIME-INVARIANT SYSTEMS
- 54. FORCE AND VELOCITY SOURCES
- 55. TWO-PORT ELEMENTS
- 56. GYRATOR
- 57. SERIES AND PARALLEL CONNECTIONS
- 58. STEPS IN OBTAINING A STATE MODEL
- 59. OPERATIONAL AMPLIFIER
- 60. DC MOTORS
- 61. FLUID SYSTEMS
- 62. MECHANICAL COMPONENTS
- 63. TRANSMISSION COMPONENTS
- 64. LEAD SCREW AND NUT
- 65. LEAD SCREW AND NUT BASIC EQUATION
- 66. HARMONIC DRIVES
- 67. CONTINUOUSLY-VARIABLE TRANSMISSION
- 68. TWO-SLIDER CVT
- 69. THREE-SLIDER CVT
- 70. ROBOTIC MANIPULATORS
- 71. ROBOT CLASSIFICATION
- 72. ROBOT KINEMATICS
- 73. DENAVIT-HARTENBERG NOTATION
- 74. INVERSE KINEMATICS
- 75. NEWTON-EULER FORMULATION
- 76. SPACE-STATION ROBOTICS
- 77. ROBOT CONTROL ARCHITECTURE
- 78. HARDWARE ARCHITECTURE OF ROBOT
- 79. FRICTION AND BACKLASH
- 80. ROBOTIC SENSORS
- 81. ANALYTICAL MODEL ROBOTIC SENSORS
- 82. COMPONENT INTERCONNECTION AND SIGNAL CONDITIONING
- 83. COMPONENT INTERCONNECTION
- 84. CASCADE CONNECTION OF DEVICES
- 85. IMPEDANCE MATCHING
- 86. AMPLIFIERS
- 87. USE OF FEEDBACK IN OP-AMPS
- 88. VOLTAGE, CURRENT, AND POWER AMPLIFIERS
- 89. INSTRUMENTATION AMPLIFIERS
- 90. DIFFERENTIAL AMPLIFIER MATHEMATICALLY
- 91. COMMON MODE
- 92. ANALOG FILTERS
- 93. AMPLIFIER PERFORMANCE RATINGS
- 94. AC-COUPLED AMPLIFIERS
- 95. GROUND LOOP NOISE
- 96. ANALOG FILTERS FREQUENCY CHARACTESTICS
- 97. SPECIAL TYPE OF BAND-PASS FILTER
- 98. PASSIVE FILTERS AND ACTIVE FILTERS
- 99. NUMBER OF POLES
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