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ABSTRACT
This study presents the design and construction of an innovative Rechargeable UV mosquito trap with a suction system. Effective mosquito control measures are necessary because mosquito borne diseases continue to pose serious health hazards on a global scale. This project's main goal is to create a rechargeable mosquito-killing lamp in response. The objective is to develop a mosquito-attracting and -eradicating portable, eco-friendly, and energy-efficient gadget. To successfully draw and trap mosquitoes, the suggested mosquito killer lamp combines mosquito attractants with cutting-edge LED technology. The device effectively draws mosquitoes towards the trap by using UV light in combination with dark-colored material (black). After mosquitoes are drawn in, they are trapped and unable to flee by an integrated suction mechanism. Furthermore, the gadget features a rechargeable battery system that improves its portability and does away with the requirement for constant power supply.Increasing attraction, protecting user safety with safe containment and non-toxic attractants, and optimizing energy efficiency to extend battery life Optimization of the UV light emission wavelength is one of the key design aspects. In order to achieve optimal performance and user happiness, the development process requires continuous design, evaluation, and refinement. The rechargeable mosquito killer lamp has the potential to drastically lower the spread of illnesses like malaria, dengue fever, and the Zika virus by offering an economical, environmentally friendly, and user-friendly method of controlling mosquitoes. This would eventually improve the quality of life for communities that are at risk