FYP JD 2024
TOSHIBA JD 2024 #20 à NORHAFIZAN BINTI MOHD HANIB
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Student : AZRA
HUMAIRAH BINTI MATZAIN
Title : GEODRONE
: CREATING MISSION MAPPING WITH DRONE TECHNOLOGY USING PIXHAWK V2.4.8 AND
MISSION PLANNER SOFTWARE
Objectives
:
To develop
a mission mapping system for waypoint navigation and autonomous flight using
Pixhawk V2.4.8 and Mission Planner software.
To develop
a system that allows the drone operator manually activate the buzzer alert when
an obstacle is detected during the mission.
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Student : MUHAMMAD
ZAKWAN BIN MOHAMED AZLAN
Title : Design
and analysis of low power 8-bit adder using 0.13um CMOS Technology in Mentor
Graphics Software
Objectives
:
To design
and simulate an 8-bit Adder circuit using 0.13um CMOS technology in Mentor
Graphics Software.
To evaluate
the performance, power consumption and efficiency of the improved Adder circuit
against a conventional Adder design.
To design
the physical layout of the Adder circuit and perform verification processes.
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Student : SITI
NORSHAFIKAH BINTI AB. RAZAK
Title : Optimization
of Power Consumption In 8-bit FIFO Design Using0.13um CMOS Technology With
Mentor Graphics Software
Objectives
:
- To design
and simulate an 8-bit FIFO circuit using 0.13µm CMOS
technology
in Mentor Graphics software.
- To
evaluate the performance, power consumption and efficiency of
the
improved FIFO circuit against a conventional FIFO design.
- To design
the physical layout of the FIFO circuit and perform
verification
processes.
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Student : MUHAMMAD
IRFAN SHUKRIAN BIN ZUEMI
Title : Image
Capturing Drone Prototype: Utilizing Raspberry
Pi 4B and
Pixhawk 2 Controller for Agriculture
application.
Objectives
:
1) To
develop and program a drone using the Pixhawk 2 controller and Mission Planner
software.
2: To program Raspberry Pi OS using Python
and integrate it with the Pixhawk 2 controller for image capturing.
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Student : ABDUL
AZIZ BIN AB HAMED
Title
: DEVELOPMENT OF A LOW POWER 8-BIT
LINEAR FEEDBACK SHIFT REGISTER USING 0.13UM CMOS TECHNOLOGY IN MENTOR GRAPHICS
SOFTWARE
Objectives
:
1. To
design and simulate an 8-bit LFSR circuit using 0.13µm CMOS technology in
Mentor Graphics software.
2. To
evaluate the performance, power consumption and efficiency of the improved LFSR
circuit against a conventional LFSR design.
3. To
design the physical layout of the LFSR circuit and perform verification
processes.
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