The application claims the benefit of Taiwan application serial No. 105141845, filed on Dec. 16, 2016, and the entire contents of which are incorporated herein by reference.
The present invention relates to a mosquito trap device and, more particularly, to a mosquito trap device that operates with a pulse width modulation signal.
Dengue fever caused by mosquitoes has raged many countries in the tropical zone and the subtropical zone. As an example, mosquitoes are active in the hot, rainy summer of Taiwan located in the subtropical zone. To avoid Dengue fever caused by mosquito bites, aside from preventing breeding of mosquitoes by cleaning water containers near the houses, chemicals or other mosquito repelling products are often used to achieve an effective mosquito repelling effect.
Furthermore, since mosquitoes are attracted by light and are sensitive to certain wavelengths, researchers pointed out that mosquito traps using a fluorescent lamp could be used to effectively capture mosquitoes. However, the fluorescent lamp has a low light emitting efficiency and consumes considerable electricity.
Thus, it is necessary to overcome the above disadvantages of the prior art to fulfill practical needs, increasing the utility.
An objective of the present invention is to provide a mosquito trap device with a reduced power consumption rate while increasing the mosquito trapping effect.
A mosquito trap device according to the present invention includes a housing having an air inlet and an air outlet. A wind channel is formed between the air inlet and the air outlet. An ultraviolet light module is mounted in the housing and is located adjacent to the air inlet. A wind module is mounted in the wind channel of the housing. A mosquito detaining device includes a tube and a net. The tube is mounted in the wind channel and is coupled to the wind module. The net is mounted to and covers an end of the tube adjacent to the air inlet. A controller is electrically connected to the ultraviolet light module and the wind module. The controller is configured to output a pulse width modulation signal to the ultraviolet light module. The pulse width modulation signal has a frequency of 25-512 Hz.
In an example, the frequency of the pulse width modulation signal is 64 Hz.
In an example, the wind module is adjacent to the ultraviolet light module.
In an example, the net is mounted to the air outlet of the housing.
In an example, the mosquito trap device further includes a power management module electrically connected to the controller.
In an example, the power management module 6 has a solar battery.
In an example, the ultraviolet light module includes an optical element.
In an example, the optical element is a lens.
The mosquito trap device according to the present invention using the pulse width modulation pattern to activate the ultraviolet light module can effectively reduce the power consumption rate of the ultraviolet light module and can increase the mosquito trapping effect. Thus, the mosquito trap device according to the present invention using the pulse width modulation pattern provides an energy saving effect and an enhanced mosquito trapping effect.
The present invention will become clearer in light of the following detailed description of illustrative embodiments of this invention described in connection with the drawings.
With reference to
In this embodiment, the housing 1 includes an air inlet 11 and an air outlet 12. A wind channel 13 is formed between the air inlet 11 and the air outlet 12. As an example, the air inlet 11 and the air outlet 12 can be aligned with each other to permit the airflow to flow through the wind channel 13 more smoothly. Thus, when a mosquito is attracted to the air inlet 11 by the ultraviolet light module 2, the mosquito can be effectively sucked into the wind channel 13 by the wind module 3, increasing the mosquito trapping effect. The shape and material of the housing 1 can be varied according to practical needs.
The ultraviolet light module 2 can be mounted in the housing 1 at a position adjacent to the air inlet 11, such that the mosquito can be attracted more easily to a position near the air inlet 11, thereby increasing the mosquito trapping effect. The ultraviolet light module 2 includes at least one lighting element 21 (such as light-emitting diode lamps or light bars with chips emitting ultraviolet light). In this embodiment, the ultraviolet light module 2 includes a plurality of LED lamps. The ultraviolet light module 2 further includes an optical element 22, such as a lens. The optical element 22 can diffuse the light emitted by the at least one lighting element 21 to increase the light diffusing angle, thereby increasing the mosquito trapping effect.
The wind module 3 is mounted in the wind channel 13 of the housing 1. The wind module 3 can be a fan. In this embodiment, the wind module 3 is located adjacent to the ultraviolet light module 2. Thus, when a mosquito is attracted to a position near the ultraviolet light module 2, the mosquito can be effectively sucked by the wind module 3 into the wind channel 13, increasing the mosquito trapping effect.
The mosquito detaining device 4 includes a tube 41 and a net 42. The tube 41 is mounted in the wind channel 13 and is coupled to the wind module 3. The net 42 is mounted to and covers an end 411 of the tube 41 adjacent to the air inlet 12. In this embodiment, the net 42 is mounted to the air outlet 12 of the housing 1 to increase the space for detaining the mosquitoes and to reduce the frequency of cleaning the mosquitoes in the tube 41, thereby increasing use convenience.
With reference to
With reference to
To prove the mosquito trapping effect of the mosquito trap device according to the present invention, experiments are conducted in various conditions of the mosquito trap device according to the present invention (with or without the optical element 22 and pulse width modulation signals of different frequencies). With reference to
In view of the foregoing, the mosquito trap device according to the present invention using the pulse width modulation pattern to activate the ultraviolet light module 2 can effectively reduce the power consumption rate of the ultraviolet light module 2 and can increase the mosquito trapping effect. Thus, the mosquito trap device according to the present invention using the pulse width modulation pattern provides an energy saving effect and an enhanced mosquito trapping effect.
Thus since the invention disclosed herein may be embodied in other specific forms without departing from the spirit or general characteristics thereof, some of which forms have been indicated, the embodiments described herein are to be considered in all respects illustrative and not restrictive. The scope of the invention is to be indicated by the appended claims, rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are intended to be embraced therein.
Number | Date | Country | Kind |
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105141845 | Dec 2016 | TW | national |