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DSpace is built to store, share and search UniMAP's research and scholarly materials. UniMAP Library Digital Repository provides access to thousands of scholarly materials produced by UniMAP community. You will also find other relevant materials such as full text content of theses, past year exam papers, selected government circulars, speeches, reports, and many others. Contribute now and make your publications accessible online!.
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Item type: Item , RFID based patient history database(Universiti Malaysia Perlis (UniMAP), 2015-12) Nur Shareen, Noor Arzaman; Mumamad Hafiz Ab AzizA trend where technologies produce results and gives huge advantage to the medical field in terms of time and space. In order to satisfy the demand, a system is build based on Radio Frequency Identification (RFID) connecting with database for patient history. This system implements both hardware and software to ensure the system is at its best. The main components of hardwares in used are MFRC522 reader, RFID card, and Arduino. The softwares used are MySQL and Netbeans.The result is represented in web pages by using GlassFish server in Netbeans. All of the softwares are open sources software which is free. This project will benefit the medical personnel whenthe potentials are expanded.Item type: Item , Smart door lock system usig bluetooth and Wi-Fi technology(Universiti Malaysia Perlis (UniMAP), 2015-12) Farah Hanan, Mohd Yosof; Dr. Abdul Hafiizh IsmailSmart Door Lock System using Bluetooth and Wi-Fi Technology is one of the smartest home systems that are very useful nowadays. It enabled user to control and monitor the locked and unlocked door by using android application as an interface to control the door. This system is implemented using Bluetooth and Wi-Fi technology as the medium for the system communicate to each other. It also uses the app to app concept where the system used two smartphone with the android application to control the locked and unlocked door. This system has a GUI that is user friendly and convenience of controlling via Bluetooth and internet by smart phone. By providing this we can provide a fast control to open and closed door and make it more power efficient.Item type: Item , Online complain management system(Universiti Malaysia Perlis (UniMAP), 2015-12) Amirul Azman, Ramlan; Rosanatrah RamliOnline management system is a system that greatly help the user. The users might be customer or student where it ease them in giving response or complaint via online by using their own personal device. With this kind of system, it does not only makes thing easier but it also save lots of costs. By complaining through a manual system, it is costly where the need of paper and copying the complaint paper is essential. Unlike the online system, it can be access anywhere as long as the user are connected into the internet. Besides that, it is more effective and it can be made as an evidence if there is misunderstanding between the complainer and the complaint receiver. In order to make an online system, there are several component needed which is the operating system, server and the hardware. All this component is used by the host machine. For the server, it needs several element as well such as the domain server, operating system and a software namely Putty. All those are needed for one operating system to interact with another.Item type: Item , Android smart home for the disabled(Universiti Malaysia Perlis (UniMAP), 2015-12) Nor Faezah, Mohamad Araf; Emi Izhanizam AzmiThe final year project is about Android Smart Home for The Disabled. This project is designed to provide a comfortable situation for disabled, for controlling their home appliances by using a remote control device in 20m radius. It used Bluetooth as wireless communication medium to operate the system and a smartphone as a remote control device. It is divided into two main sections which are parent and child node. The parent node consists of Arduino UNO board and Bluetooth module HC-05. Meanwhile, the child node is designed to connect the Arduino UNO board with home appliances. In this project, the lamp and fan as the home appliances. The system will operate when the Bluetooth transmitter which is designed in smartphone sent a signal to the Bluetooth receiver in parent node. After it received the signal, Arduino UNO will analyze the command from the smartphone and it will activate the home appliances. An Android application which is named “MyHome App” is created to provide a graphical user interface to make easier for users to use the system. User need to Login the application and select the mode either “ON” or “OFF”. Then, the appliances will operate according to the selecting mode. Besides, the advantage of “MyHome App” is user can monitor all status of home appliances by referring the ON/OFF button in the application where the red button indicates the current mode of the appliances.Item type: Item , Development of Electrocardiogram (ECG) monitoring device(Universiti Malaysia Perlis (UniMAP), 2015-12) Amy Shikin, Andi Asdi; Mohd Hafizi OmarHeart related diseases such as Heart Disease, Stroke and other Cardiovascular Diseases are the leading killer diseases all over the world. Many devices are developed to detect early sign or symptoms of heart abnormalities. Electrocardiogram (ECG) is a graphic tracing of the electric current generated by the heart muscle during a heartbeat. It is used to detect the heart wave abnormality. The commercial ECG in the market is very costly, thus it is an advantage to be able to develop personal ECG monitoring device. Three electrodes which is placed on the right arm, left arm and the right leg are used to detect the heart wave on the skin instead of 12 electrode used clinically. The signal is amplified using instrumentation amplifier AD620. It is chosen for its high Common Mode Rejection Ratio (CMRR) and the gain from AD620 is 50.40 gain. Operational amplifier OP07 is used for a few circuit design which are right leg driven, band pass filter and also the level shifter. OP07 is chosen for its low noise. In this project, the designing of analog amplifier circuit was achieved. Function generator was used as an input signal as the alternative of the real heart wave. The analog amplifier circuit manage to amplify the voltage of the function generator. This indicate that when the real heart wave enters the amplifier circuit, it will also able to be amplified.
