SINGLE CIRCUIT ELECTRICAL POWER DISTRIBUTION SPLITTER
20220399700 ยท 2022-12-15
Inventors
Cpc classification
H02B1/20
ELECTRICITY
H01R31/02
ELECTRICITY
International classification
H02B1/20
ELECTRICITY
H01R31/02
ELECTRICITY
Abstract
A product distribution splitter has a main body circumscribed by a plurality of sidewalls with an electric input port extending from one of the sidewalls for receiving high wattage electrical power from an electrical power source and electrical power reduction means in the form of an IC electrical circle board for receiving the high wattage electrical power and outputting lower wattage electrical power. A cavity is located through another of the sidewalls, the cavity containing electrical conductive prongs which extend from the IC electrical circle board. The prongs receive the lower wattage electrical power and can output this power to a second PDS. Electrical wiring connected to the electrical circle board extends through a third sidewall and is attached to an electrical connector for transmitting the lower wattage electrical power to electrical circuitry.
Claims
1. An electrical power distribution splitter for delivering reduced electrical power to electrical circuitry, said power distribution splitter comprising: a main body circumscribed by a plurality of sidewalls, said main body comprising: an electrical input port extending from one of the plurality of sidewalls for receiving high wattage electrical power from an electrical power source; electrical power reduction means for receiving the high wattage electrical power and for outputting lower wattage electrical power; and a cavity opening through another of the plurality of sidewalls, said cavity having electrical conductive prongs extending from the electrical power reduction means, wherein the prongs are configured to receive the lower wattage electrical power and output said lower wattage electrical power transmitted from the power reduction means to another power distribution splitter; and electrical wiring connected to and emanating from the power reduction means and through a third of the plurality of sidewalls, the electrical wiring extending and electrically attached to an electrical connector, wherein the lower wattage electrical power is transmitted from the power reduction means, through the electrical wiring and to the connector for transmitting the lower wattage electrical power to electrical circuitry.
2. The power distribution splitter as in claim 1 wherein the electrical power reduction means comprises an IC electric circle board.
3. The power distribution splitter as in claim 1 wherein the electrical input port comprises openings for the insertion of prongs for supplying high wattage electrical power from the electrical power source to the main body and the power reduction means.
4. The power distribution splitter as in claim 1 wherein the high wattage electrical power received by the electrical power reduction means ranges from 80 W-600 W.
5. The power distribution splitter as in claim 1 wherein the decreased low wattage electrical power ranges up to 60 W/12V and 96 W/24V.
6. The power distribution splitter as in claim 5 wherein the high wattage electrical power received by the electrical power reduction means ranges from 80 W-600 W.
7. The power distribution splitter as in claim 1 wherein the maximum amperage transmitted by the product distribution splitter is 5 amp.
Description
DESCRIPTION OF THE DRAWINGS
[0009]
[0010]
[0011]
[0012]
DETAILED DESCRIPTION OF THE INVENTION
[0013] Product distribution splitter (PDS) 1 of the present invention comprises main body 2 circumscribed by sidewalls 4, 6, and 8. Electrical input port 10 extends from sidewall 4 and has openings 12 and 14 configured to receive input electrical wiring 16 and 18 from electrical power source 100.
[0014] Power source 100 provides high wattage electrical power to IC electric circle board 20 located within main body 2 of PDS 1 (See
[0015] The lower wattage electrical power to PDS 1 is also transmitted through main body 2 to cavity 24 in which electrical conductive prongs 26 and 28 are located. Cavity 24 opens through sidewall 8 of main body 2.
[0016] As seen in
[0017] As an illustration, connecting PDS 1 to, for example, a 200 W/12V electrical power supply will lower the power to 60 W/12V and will allow a maximum output of 5 amps. Each PDS unit is designed to only output a maximum of 5 amps, even when multiple PDS's are hooked-up together in series. However, if one PDS is overloaded, for instance if the first one in a series receives electrical power of 72 W and 6 amps, its circle board will control and will automatically shut down, without affecting the electrical outputs of the second or third connected PDS units down the line.
[0018] Certain novel features and components of this invention are disclosed in detail in order to make the invention clear in at least one form thereof. However, it is to be clearly understood that the invention as disclosed is not necessarily limited to the exact form and details as disclosed, since it is apparent that various modifications and changes may be made without departing from the spirit of the invention.