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WorksheetsMechatronics_15ME753_17ME754_Quiz-1
Total questions: 28
Worksheet time: 27mins
Development of very-large scale integration (VLSI) led to the introduction of
microprocessor
microcomputer
microcontroller
All the Above
Closed loop system looks at its input to determine what to do
True
False
Which of the following is not related to Mechatronics?
Mechanical
Electrical
Control Systems
Green Feet
The mechatronics is an interdisciplinary field in which the disciplines those act together are
a) Mechanical systems and Electronic systems
b) Mechanical systems and Information technology
c) Electronic systems and Information technology
d) Mechanical systems, Electronic systems and Information technology
In which system does the output not affect the process in any way?
a. Open loop system
b. Closed loop system
c. Both a. and b.
d. None of the above
The temperature control system which maintains the temperature of a room at 30 oC when it is set is an example of_____
a. Open loop system
b. Closed loop system
c. Both a. and b.
d. None of the above
Which control system does not have a stability problem?
a. Open loop system
b. Closed loop system
c. Both a. and b.
d. None of the above
Mechatronics is a concept of ________________ origin
1970's and can be defined as the application of
electronics and computer technology to control the
motions of mechanical systems.
India
China
America
Japan
Mechatronics make possible the generation of systems that are
Simpler
Versatile
Realiable
All the Above
Mechatronics Means
mecha” for mechanisms, “tronics” for electronics
mecha” for mechanisms, “tronics” for tonics
mecha” for Mega, “tronics” for electronics
mecha” for Money, “tronics” for Earnings
The word “mechatronics” was first coined by
Mr. Tetsuro Moria
Mr. Tesla
Mrs. Moria
Mr. Edison
Why Mechatronics ?
To overcome limitations in mechanical systems
To overcome limitations in Electronics systems
To overcome limitations in Computer Based systems
All the Above
Mechatronics may be defined as “the complete integration of mechanical system with electronics, electrical and computer system into a single system”.
True
False
Mechatronics is “the synergistic (Together) combination of mechanical engineering, electronic engineering, control engineering and systems thinking in the design of products and manufacturing processes”
True
False
Examples for Mechatronics.
automatic washing machine
Digital fuel injection system
Engine management system
All the Above
To overcome drawbacks Mechatronics uses
concurrent engineering
Reverse engineering
Chemical Engineering
All the Above
The field of Mechatronics received the international recognitions only in the last few years.
True
False
Mechatronics products were at primary level containing I/O devices such as sensors, and actuators that integrated electrical signals with mechanical action at the basic control level.
Primary level Mechatronics (first)
Secondary level Mechatronics (second)
Tertiary level Mechatronics (third)
Quaternary level Mechatronics (fourth)
This level integrates microelectronics into electrically controlled devices.
Primary level Mechatronics (first)
Secondary level Mechatronics (second)
Tertiary level Mechatronics (third)
Quaternary level Mechatronics (fourth)
This incorporates advances feedback functions into control strategy, thereby enhancing the quality in terms of sophistication.
Primary level Mechatronics (first)
Secondary level Mechatronics (second)
Tertiary level Mechatronics (third)
Quaternary level Mechatronics (fourth)
Mechatronics system at this level is called ‘smart system’.
Primary level Mechatronics (first)
Secondary level Mechatronics (second)
Tertiary level Mechatronics (third)
Quaternary level Mechatronics (fourth)
The control strategy includes microelectronics, microprocessor and other application specific integrated circuits‟ (ASIC).
Primary level Mechatronics (first)
Secondary level Mechatronics (second)
Tertiary level Mechatronics (third)
Quaternary level Mechatronics (fourth)
This level includes intelligent control in Mechatronics system.
Primary level Mechatronics (first)
Secondary level Mechatronics (second)
Tertiary level Mechatronics (third)
Quaternary level Mechatronics (fourth)
The level attempts to improve smartness a step ahead by introducing intelligence and fault detection and isolation (FDI) capability system.
Primary level Mechatronics (first)
Secondary level Mechatronics (second)
Tertiary level Mechatronics (third)
Quaternary level Mechatronics (fourth)
Examples: artificial neural network and fuzzy logic technologies.
Primary level Mechatronics (first)
Secondary level Mechatronics (second)
Tertiary level Mechatronics (third)
Quaternary level Mechatronics (fourth)
Examples: DVD player, CD drives, automatic washing machine, CD drives, etc.
Primary level Mechatronics (first)
Secondary level Mechatronics (second)
Tertiary level Mechatronics (third)
Quaternary level Mechatronics (fourth)
Examples: electrically controlled fluid valves and relays
Primary level Mechatronics (first)
Secondary level Mechatronics (second)
Tertiary level Mechatronics (third)
Quaternary level Mechatronics (fourth)
Examples: cassette player.
Primary level Mechatronics (first)
Secondary level Mechatronics (second)
Tertiary level Mechatronics (third)
Quaternary level Mechatronics (fourth)
