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PROJECT BASED LEARNING
COURSE CODE & NAME:
EIB1212 – ELECTRON DEVICES
FACULTY HANDLING:
Dr. T.R. RANGASWAMY,
Professor & Dean (Academic Affairs)
EIB1212 - Electron Devices
Assessment scheme
 Project Design and Fabrication
- 10 marks (CAT 2)
 Implementation of the Project
- 15 marks (CAT 3)
Project details (EIB1212 )
BATCH
I
II
III
IV
RRN
Name
PROJECT NAME
150061601013
MOHAMED UZAER A
150061601016
NAZEER AHAMED S
Silicon Controlled Rectifier Motor
150061601032
SARAVANA PRASHANTH A
Control
150061601015
NAVEETH IMARAN A
150061601017
RAGHUL KANTH C
150061601012
MOHAMED SYED ALI J
150061601022
SHAHID KHAN.H
150061601023
SHRIKANTH R S
150061601003
ASHIKA S
150061601021
RASEENA PARVEEN J
150061601025
TASLEEM BEEMA S
150061601034
SHAMA PEER MOHAMMED
150061601020
RASEEM AHAMED A
150061601009
MOHAMED FAISAL
150061601010
MOHAMED FAISAL M S
150061601011
MOHAMED RIYAZ S
150061601019
RANJANKRISHNA R
Water Level Alarm using Transistor
FET application(Timer)
Cell Phone Charger Circuit
Project details (EIB1212 )
BATCH
V
VI
VII
VIII
RRN
Name
150061601001
AJAY VIKRAM .S
150061601002
ASHIF RAHMAN M
150061601004
ASLAM SAMEER M B
150061601005
IMTHYAS AHAMED SHERIEFF T
150061601006
JAVID KHAN N
150061601007
MOHAMED AMMAR A
150061601008
MOHAMED ASHIK J
150061601014
MOHAMMED SALMAN J
150061601018
RAMSINGH A
150061601027
VARSHAN V
150061601031
MOHAMED RAIYAN M
140061601026
SYED SHAMEER.S.H.
150061601026
THAHIRANAZREEN. S
150061601028
VASANTHE B
150061601033
SASIKALA C
PROJECT NAME
Electronic Mosquito
Repellent Circuit
Home Security Alarm
Voltage Regulation
Mobile / Battery Charger
LED interface
Sample Project Details (EIB1212 )
Water Level Alarm using Transistor
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FULL SCREEN
Sample Project Details (EIB1212 )
Motor Control using Silicon Controlled Rectifier
CLICK TO VIEW VIDEO FULL
SCREEN
Sample Project Details (EIB1212 )
FET application (Timer)
CLICK TO VIEW
VIDEO FULL SCREEN
Sample Project Details (EIB1212 )
Cell Phone Charger
CLICK TO VIEW VIDEO FULL
SCREEN
Evaluation of project (EIB1212 )
BATCH
RRN
150061601013
150061601016
I
II
III
IV
Name
PROJECT NAME
MOHAMED UZAER A
NAZEER AHAMED S
Motor Control using
Silicon Controlled
150061601032
SARAVANA PRASHANTH A
150061601015
NAVEETH IMARAN A
150061601017
RAGHUL KANTH C
150061601012
MOHAMED SYED ALI J
Water Level Alarm
150061601022
SHAHID KHAN.H
using Transistor
150061601023
SHRIKANTH R S
150061601003
ASHIKA S
150061601021
RASEENA PARVEEN J
150061601025
TASLEEM BEEMA S
150061601034
SHAMA PEER MOHAMMED
150061601020
RASEEM AHAMED A
150061601009
MOHAMED FAISAL
150061601010
MOHAMED FAISAL M S
150061601011
MOHAMED RIYAZ S
150061601019
RANJANKRISHNA R
Rectifier (SCR)
Marks Awarded
Design - 10 Marks (CAT2)
Implementation - 15 Marks
(CAT3)
Design - 10 Marks (CAT2)
Implementation - 15 Marks
(CAT3)
Design - 10 Marks (CAT2)
Timer using FET
Implementation - 15 Marks
(CAT3)
Design - 10 Marks (CAT2)
Cell Phone Charger
Implementation - 15 Marks
(CAT3)
Evaluation of project (EIB1212 )
BATCH
V
VI
VII
VIII
RRN
Name
150061601001
AJAY VIKRAM .S
150061601002
ASHIF RAHMAN M
150061601004
ASLAM SAMEER M B
150061601005
IMTHYAS AHAMED
SHERIEFF T
150061601006
JAVID KHAN N
150061601007
MOHAMED AMMAR A
150061601008
MOHAMED ASHIK J
150061601014
MOHAMMED SALMAN J
150061601018
RAMSINGH A
150061601027
VARSHAN V
150061601031
MOHAMED RAIYAN M
140061601026
SYED SHAMEER.S.H.
150061601026
THAHIRANAZREEN. S
150061601028
VASANTHE B
150061601033
SASIKALA C
PROJECT NAME
Marks Awarded
Design - 10 Marks (CAT2)
Electronic Mosquito
Repellent Circuit
Implementation - 15 Marks
(CAT3)
Design - 10 Marks (CAT2)
Home Security Alarm
Implementation - 15 Marks
(CAT3)
Design - 10 Marks (CAT2)
Voltage Regulation
Implementation - 15 Marks
(CAT3)
Design - 10 Marks (CAT2)
Mobile / Battery Charger
LED interface
Implementation - 15 Marks
(CAT3)
Attainment of Course Outcome (EIB1212 )
COURSE OUTCOME
Students can able to design and analyze
Rectifier and filters circuits
ATTAINED THROUGH PROJECT
Project on Battery Charger
Regulated power supplies
Voltage Regulators using Zener Diode
Amplifiers and other applications of BJT
Amplifiers and other applications of FET
Project on Water Level Indicator using
BJT
Project on Timer using FET
Application using special diodes
Project on Motor Controlled using SCR
Application using LED, photo diodes,
photo transistors etc.
Project on
(1) Relay Circuits using Photo Sensors
(LDR) (2) LED Interface
Attainment of Programme outcome (EIB1212 )
1.
PROGRAMME OUTCOME
ATTAINMENT
Apply the knowledge of mathematics, science, engineering fundamentals, and an
engineering specialization to the solution of complex Electronics and Instrumentation
engineering problems.
2.
Identify, formulate, review research literature, and analyze complex engineering
problems reaching substantiated conclusions using first principles of mathematics,
natural sciences, and engineering sciences.
3. Design solutions for complex engineering problems and design system components or
processes that meet the specified needs with appropriate consideration for the public
Yes
health and safety, and the cultural, societal, and environmental considerations.
4. Use research-based knowledge and research methods including design of experiments,
analysis and interpretation of data, and synthesis of the information to provide valid
conclusions.
5. Create, select, and apply appropriate techniques, resources, and modern engineering
and IT tools including prediction and modeling to complex engineering activities with
an understanding of the limitations.
6.
Apply reasoning informed by the contextual knowledge to assess societal, health,
safety, legal and cultural issues and the consequent responsibilities relevant to the
professional engineering practice.
7
Understand the impact of the professional engineering solutions in societal and
environmental contexts, and demonstrate the knowledge of, and need for sustainable
development.
Yes
Attainment of Programme outcome (EIB1212 )
PROGRAMME OUTCOME
9.
Function effectively as an individual, and as a member or leader in diverse
teams, and in multidisciplinary settings.
ATTAINMENT
Yes
10. Communicate effectively on complex engineering activities with the
engineering community and with society at large, such as, being able to
comprehend and write effective reports and design documentation, make
effective presentations, and give and receive clear instructions.
11. Demonstrate knowledge and understanding of the engineering and
management principles and apply these to one’s own work, as a member
and leader in a team, to manage projects and in multidisciplinary
Yes
environments.
12. Recognize the need for, and have the preparation and ability to engage in
independent and life-long learning in the broadest context of technological
Yes
change.
13.
Test, Calibrate and Select measuring Instruments and analyzers for
different Industrial applications.
14.
Design & fabricate signal conditioning circuits for measurement systems
15. Design, simulate and implement conventional, multiloop, intelligent and
model based controllers for Industrial Automation.
Yes