Stainless steel LED power switch
11499693 ยท 2022-11-15
Inventors
Cpc classification
F21S41/645
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V31/005
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V23/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V23/006
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21W2107/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y02B20/30
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
F21Y2115/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F21V23/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/64
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V23/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
An encapsulated LED switch that incorporates a MOSFET power drivers, high current transistors, or other suitable power drivers in a PCB that attaches to the LED switch such that a low power LED switch controls the output of a high-power driver. The selected power driver PCB can be adapted to different load requirements by making simple changes. The PCB's can be interchanged to provide for a predetermined output power required for a particular application. In addition, the wire gauge size of the wires attached to the MOSFET power driver PCB can also be varied to match intended load requirements. For applications in which the LED switch is used in hostile environments, such as marine applications, the LED switch and its associated power driver PCB are encapsulated to protect the circuitry from environmental factors such as high humidity, salt water, etc.
Claims
1. A high-power switch assembly comprising: an LED switch having an on and an off position, a PCB driver electrically connected to said LED switch and having at least one output line, said PCB driver comprising a switch debouncer electrically connected to said LED switch, said PCB driver comprising a Metal-Oxide-Semiconductor Field-Effect Transistor, MOSFET, driver electrically connected to said switch debouncer, and said PCB driver outputting an amperage sufficient to power a marine pump on said output line when said LED switch is in the on position.
2. The high-power switch assembly of claim 1, wherein said PCB driver further comprises a MOSFET, said MOSFET comprising a gate electrically connected to said MOSFET driver, and a source operatively connected to said output of said PCB driver.
3. The high-power switch assembly of claim 1, wherein said LED switch is a momentary switch.
4. The high-power switch assembly of claim 3 wherein said LED switch comprises a reset table thermal breaker.
5. The high-power switch assembly of claim 1, wherein said LED switch is an on/off switch.
6. The high-power switch assembly of claim 5, wherein said LED switch comprises a resettable thermal breaker.
7. The high-power switch assembly of claim 1, further comprising an encapsulation sleeve, and said LED switch and PCB driver are disposed within said encapsulation sleeve.
8. The high-power switch assembly of claim 7, wherein said encapsulation sleeve comprises epoxy.
9. The high-power switch assembly of claim 7, wherein said encapsulation sleeve is sealed to isolate said PCB driver and LED switch from the environment.
10. The high-power switch assembly of claim 1, wherein said PCB driver comprises a MOSFET.
11. A high-power switch assembly comprising: an encapsulation sleeve, a PCB driver with at least one output line, said PCB driver being disposed within said encapsulation sleeve, an LED switch operatively connected to said PCB driver and having an on and an off position, said PCB driver comprising a switch debouncer electrically connected to said LED switch, said PCB driver comprising a Metal-Oxide-Semiconductor Field-Effect Transistor, MOSFET, driver electrically connected to said switch debouncer, and said PCB driver outputting an amperage sufficient to power a marine pump on said output line.
12. The high-power switch assembly of claim 11, wherein said PCB driver further comprises a MOSFET, said MOSFET comprising a gate electrically connected to said MOSFET driver, and a source operatively connected to said output line.
13. The high-power switch assembly of claim 11, wherein said LED switch is a momentary switch.
14. The high-power switch assembly of claim 13 wherein said LED switch comprises a resettable thermal breaker.
15. The high-power switch assembly of claim 11, wherein said LED switch is an on/off switch.
16. The high-power switch assembly of claim 15, wherein said LED switch comprises a reset table thermal breaker.
17. A high-power switch assembly comprising: an encapsulation sleeve comprising an epoxy material of construction, a PCB driver disposed within said encapsulation and comprising at least one output line, an LED switch having an on and an off position, said LED switch being electrically connected to said PCB driver, said PCB driver comprising a switch debouncer electrically connected to said LED switch, said PCB driver comprising a Metal-Oxide-Semiconductor Field-Effect Transistor, MOSFET, driver electrically connected to said switch debouncer, said PCB driver comprising a MOSFET, said MOSFET comprising a gate electrically connected to said MOSFET driver, and a source operatively connected to said output line of said PCB driver, and said PCB driver outputting an amperage sufficient to power a marine pump on said output line when said LED switch is in the on position.
18. The high-power switch assembly of claim 17, wherein said LED switch comprises a resettable thermal breaker.
19. The high-power switch assembly of claim 17, wherein said encapsulation sleeve is sealed from the environment.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) For a fuller understanding of the nature of the present invention, reference should be had to the following detailed description taken in connection with the accompanying drawings in which:
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
(9) The invention provides a sealed high-power switch that is encapsulated to protect the switch from environmental factors. For ease of discussion, the invention will be discussed in terms of use with marine equipment. However, those skilled in the art will recognize that the invention provides the same benefits to a wide range of other applications in many fields, such as aviation, automotive, computers, etc.
(10) In
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(14) The following
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(16) Those skilled in the art will recognize that any color led can be selected based on design preferences.
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(18) 1. One push of the switch button activates the blue switch LED and activates both circuit outputs to illuminate the navigation and anchor lights on a vessel.
(19) 2. The second push of the switch button turns off the blue switch LED and turns on the red switch LED and activates only the circuit controlling the anchor lights.
(20) An alternative embodiment uses a microcontroller on the PCB to provide a timer function that automatically turns off the navigation lights in the event the boat owner forgets to do so.
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(22) As can be seen, the invention provides a low power switch that controls a high power MOSFET driver to provide power to a variety of devices, while protecting the circuitry from harsh environments, such as in marine applications. Further, the switch disclosed herein can be designed to use one of many PCBs that are capable of forming any number of functions.
(23) Because the switches disclosed herein may be designed with microprocessors for micro controllers, they would in effect become smart switches that include one or more of the following capabilities:
(24) 1. Programming capabilities (e.g., On/Off, Momentary, multimode etc.).
(25) 2. Communications capability (e.g. NEMA2000, CAN, RS232, USB, etc.).
(26) 3. Current monitoring, including shutdown.
(27) 4. Overvoltage and undervoltage monitoring.
(28) 5. Multicolor LED switch controls.
(29) 6. Visual and audible alarm functions.
(30) 7. Sensor applications, such as water pressure, air pressure, fuel pressure, oil pressure, vacuum pressure, etc.
(31) 8. Timer and counter functions with indicators.
(32) 9. Data acquisition.
(33) 10. Adaptable to switches of different types and sizes.
(34) 11. Ignition proof.
(35) As can be seen from the foregoing discussion, the invention provides a number of advantages. It is inexpensive to manufacture, it is compact and lightweight, it provides effective protection of electronic circuitry from the outside environment, and can be use in a wide variety of environments and technical and commercial areas.
(36) While the invention has been described with respect to a preferred embodiment thereof, it will be understood by those skilled in the art that various changes in detail may be made therein without departing from the spirit, scope, and teaching of the invention. For example, the material used to construct the switch may be anything suitable for its purpose, the size and shape of the encapsulated power switch assembly can vary, the type of circuitry can vary, etc. Accordingly, the invention herein disclosed is to be limited only as specified in the following claims.
(37) Now that the invention has been described,