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SYLLABUS
Introduction to Mechatronics Systems – Measurement Systems –
Control Systems – Microprocessor based Controllers. Sensors and
Transducers – Performance Terminology – Sensors for Displacement,
Position and Proximity; Velocity, Motion, Force, Fluid Pressure, Liquid
Flow, Liquid Level, Temperature, Light Sensors – Selection of Sensors
MECHATRONICS, SENSORS AND TRANSDUCERS
DEFINITION
 Mechatronics is “ the synergistic integration
of mechanics and mechanical engineering,
Electronics, computer technology, and IT to
produce or enhance products and system”
Graphical representation of
mechatronics
Elements of mechatronics system
Actuators and
sensors
Signals and
conditioning
Digital logic
systems
Software and data
acquisition systems
Computers and
display devices
Elements of mechatronics system
 Actuators and sensors
 Actuators – pneumatic & Hydraulic actuator,
electromechanical actuators, electrical motor such as
DC motor, AC motor, stepper motor, servo motor &
piezo electric actuators
 Sensors – linear and rotational sensor, acceleration
sensor, force, torque and pressure sensor, temperature
sensor, proximity sensors, light sensors
 Signals and conditioning
 Two types: input and output
 Input signal conditioning devices: discrete circuits,
amplifiers, analog to digital(A/D) convertors, Digital to
Analog (D/A) convertors.
 Output signal conditioning devices: amplifiers, Digital
to Analog (D/A) convertors, display decoders (DD)
convertors, power transistors.
Elements of mechatronics system
 Digital logic systems
 Logic circuits, micro controllers, programmable logic
controllers(PLC), sequencing and timing controls,
control algorithm.
 Software and data acquisition systems
 Data logger, computer with plug in boards
 Computers and display devices
 LED, CRT, LCD, digital displays etc.,
Examples of mechatronics systems
 NC and CNC machine tools, flexible manufacturing
system, Prototyping & robots
 Photo copiers, laser printers & fax machines
 Automatic washing machines automatic ovens,
modern sewing machine
 Automatic teller machine (ATM)
 Coin counter
 Automatic/digital camera, digital watch
 CT scan system, automatic blood testing equipment
 Automatic sliding door
Advantages of Mechatronics systems
 Cost effective and good quality products
 High degree of flexibility to modify or redesign
 Very good performance characteristics
 Wide area of applications
 Greater productivity in case of manufacturing
organization
 Posibility or remote controlling as well as centralized
monitoring and control
 Greater extend of machine utilization
Disadvantages of Mechatronics systems
 High initial cost
 Multi-disciplinary engineering background required
to design and implementation
 Need of highly trained workers
 Complexity in identification and correction of
problem in the system
Measurement system
Liquid level measurement system
Control systems
 A control system refers to a group of
physical component connected or related in
such a manner as to command direct or
regulate itself or another system.
Cooling level control system
Steering control system of an automobile
Temperature and blood pressure control
system of human body
TYPES OF CONTROL SYSTEM
Open loop control system
Closed loop or feedback control system
Open loop control system
 Open loop system are systems in which the output
of a system is not used as a variable to control the
system.
Element of open loop control systems
Bread toaster (open loop ) control system
Closed loop control system
 Closed loop system uses on a feed back loop to control
the operation of the system.
Room heating (Closed loop) control system
Sequential controllers
 A sequential control involve sequential execution of
well defined operations.
Block diagram of automatic washing machine system
The working of modern
automatic washing machine is
 Step 1 : pre-wash cycle
 Step 2: main wash cycle
 Step 3: rinse cycle
 Step 4: spin cycle
Microprocessor based controllers
 Microprocessor based controllers are called as
microcontrollers.
 Microcontroller is a digital integrated circuit which
serve as a heart of many modern control applications.
 Microprocessor are employed for high speed
applications such as desktop and laptop computers
where as the Microcontrollers are employed in
automatic washing machine, dish washers, engine
management systems, DVD players etc.,
Basic structure of PLC
Elements of control system for an automatic camera
Working of a four stroke SI engine
Elements of control system for an
electronic engine management system

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MECHATRONICS UNIT I INTRODUCTION

  • 1. SYLLABUS Introduction to Mechatronics Systems – Measurement Systems – Control Systems – Microprocessor based Controllers. Sensors and Transducers – Performance Terminology – Sensors for Displacement, Position and Proximity; Velocity, Motion, Force, Fluid Pressure, Liquid Flow, Liquid Level, Temperature, Light Sensors – Selection of Sensors MECHATRONICS, SENSORS AND TRANSDUCERS
  • 2. DEFINITION  Mechatronics is “ the synergistic integration of mechanics and mechanical engineering, Electronics, computer technology, and IT to produce or enhance products and system”
  • 4. Elements of mechatronics system Actuators and sensors Signals and conditioning Digital logic systems Software and data acquisition systems Computers and display devices
  • 5. Elements of mechatronics system  Actuators and sensors  Actuators – pneumatic & Hydraulic actuator, electromechanical actuators, electrical motor such as DC motor, AC motor, stepper motor, servo motor & piezo electric actuators  Sensors – linear and rotational sensor, acceleration sensor, force, torque and pressure sensor, temperature sensor, proximity sensors, light sensors  Signals and conditioning  Two types: input and output  Input signal conditioning devices: discrete circuits, amplifiers, analog to digital(A/D) convertors, Digital to Analog (D/A) convertors.  Output signal conditioning devices: amplifiers, Digital to Analog (D/A) convertors, display decoders (DD) convertors, power transistors.
  • 6. Elements of mechatronics system  Digital logic systems  Logic circuits, micro controllers, programmable logic controllers(PLC), sequencing and timing controls, control algorithm.  Software and data acquisition systems  Data logger, computer with plug in boards  Computers and display devices  LED, CRT, LCD, digital displays etc.,
  • 7. Examples of mechatronics systems  NC and CNC machine tools, flexible manufacturing system, Prototyping & robots  Photo copiers, laser printers & fax machines  Automatic washing machines automatic ovens, modern sewing machine  Automatic teller machine (ATM)  Coin counter  Automatic/digital camera, digital watch  CT scan system, automatic blood testing equipment  Automatic sliding door
  • 8. Advantages of Mechatronics systems  Cost effective and good quality products  High degree of flexibility to modify or redesign  Very good performance characteristics  Wide area of applications  Greater productivity in case of manufacturing organization  Posibility or remote controlling as well as centralized monitoring and control  Greater extend of machine utilization
  • 9. Disadvantages of Mechatronics systems  High initial cost  Multi-disciplinary engineering background required to design and implementation  Need of highly trained workers  Complexity in identification and correction of problem in the system
  • 10. Measurement system Liquid level measurement system
  • 11. Control systems  A control system refers to a group of physical component connected or related in such a manner as to command direct or regulate itself or another system.
  • 12. Cooling level control system Steering control system of an automobile
  • 13. Temperature and blood pressure control system of human body
  • 14. TYPES OF CONTROL SYSTEM Open loop control system Closed loop or feedback control system
  • 15. Open loop control system  Open loop system are systems in which the output of a system is not used as a variable to control the system.
  • 16. Element of open loop control systems Bread toaster (open loop ) control system
  • 17. Closed loop control system  Closed loop system uses on a feed back loop to control the operation of the system.
  • 18. Room heating (Closed loop) control system
  • 19. Sequential controllers  A sequential control involve sequential execution of well defined operations.
  • 20. Block diagram of automatic washing machine system
  • 21. The working of modern automatic washing machine is  Step 1 : pre-wash cycle  Step 2: main wash cycle  Step 3: rinse cycle  Step 4: spin cycle
  • 22. Microprocessor based controllers  Microprocessor based controllers are called as microcontrollers.  Microcontroller is a digital integrated circuit which serve as a heart of many modern control applications.  Microprocessor are employed for high speed applications such as desktop and laptop computers where as the Microcontrollers are employed in automatic washing machine, dish washers, engine management systems, DVD players etc.,
  • 24. Elements of control system for an automatic camera
  • 25. Working of a four stroke SI engine
  • 26. Elements of control system for an electronic engine management system