Development of podium with dual powered audio power amplifier and wireless microphone / Kervin L. Ortines, Luisito P. Panganiban, and Alfredo S. Paredes.
Material type:
TextPublication details: Rosario, Cavite : Cavite State University-CCAT Campus, 2017.Description: xx, 82 leaves : illustrations ; 28 cmSubject(s): LOC classification: - UM TK 7881.4 O78 2017
| Cover image | Item type | Current library | Home library | Collection | Shelving location | Call number | Materials specified | Vol info | URL | Copy number | Status | Notes | Date due | Barcode | Item holds | Item hold queue priority | Course reserves | |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
Thesis/Manuscripts/Dissertations
|
Cavite State University - CCAT Campus | Thesis/Manuscript/Dissertation | TH | UM TK 7881.4 O78 2017 (Browse shelf(Opens below)) | 1 | Available | T0002951 |
Browsing Cavite State University - CCAT Campus shelves,Shelving location: TH,Collection: Thesis/Manuscript/Dissertation Close shelf browser (Hides shelf browser)
|
|
|
|
|
|
|
|
||
| UM TK 7878.4 B86 2006 Electrical circuit board trainer : a technical feasibility study / | UM TK 7881.2 P47 2007 Extension with remote control system : a technical feasibility study / | UM TK 7881.4 O28 2004 Multi-type audio power amplifier trainer : a technical feasibility study / | UM TK 7881.4 O78 2017 Development of podium with dual powered audio power amplifier and wireless microphone / | UM TK 7881.6 A38 2007 Tape recorder and audio amplifier trainer : a technical feasibility study / | UM TK 7881.25 G33 2017 Development of microcontroller-based sound activated switch of Department of Computer Studies at Cavite State University-Rosario / | UM TK 78813.9 P63 2006 Audio video compact disc trainer with TV monitor : a technical feasibility study / |
Project Design Study (BSIT - Major in Electrical Technology) -- Cavite State University-CCAT Campus, 2017.
Includes bibliographical references and appendices.
ORTINES, KERVIN L., PANGANIBAN, LUISITO P., and PAREDES, ALFREDO S., Development of Podium with Dual Power Amplifier and Wireless Microphone. Undergraduate Project Design, Bachelor of Science in Industrial Technology. Cavite State University,Rosario,Cavite. May 2016.Adviser: Prof. Mr. Nonilo G.Evangelista. Technical critic: Mr. Jurick P. Paulino.
The study was conducted from June 2015 to May 2016 at Cavite State University Rosario Campus in TVEP Building to develop and evaluate the development of dual powered audio power amplifier and wireless microphone. Specially this study aims to:1) design the dual powered audio power amplifier and wireless microphone. 2) construct the dual powered audio power amplifier and wireless microphone from supply and materials available in the local market. 3) evaluate the efficiency and effectiveness of dual powered audio power amplifier and wireless microphone. 4) conduct a cost analysis for the dual powered audio power amplifier and wireless microphone. The prototype was conducted with different parts such as: the audio power amplifier with two (2)wireless microphones, condenser microphone and 9 watts led bulb, an inverter was used to make the amplifier dual powered by using a 32Ah dry charged battery and 15A battery charger. Two baffles are used to make the sound of the speaker more intensified and have a better sound quality.
Testing and evaluation was conducted for one week. The clear and audible sound of the microphones, economical aspects and safety of this study was measured in several attempts for every trial. The performance intensity and efficiency of this study was assessed by using an audio power amplifier with 1100 watts and speakers with an overall power rating of 1100 watts. The device can fully charge the battery for three (3)hours using the battery charger depends upon the amount of voltage or the emptiness of the battery.
The findings of the study were: The podium has a better sound quality when used indoor rather than outdoor or semi indoor application; In turning the volume of the amplifier to max level, feedback from the wireless microphone when too close to the podiunt; The fully charge state of the 12V battery is between 12.9V to 13.1V; the efficiency of this study was based on the usage of the battery, the speaker and number of hours using the device. The total cost of the prototype was PHP 29,975.28
In English text.
There are no comments on this title.
