AN ELECTRONICALLY CONTROLLED FLUSHING SYSTEM

The electronically controlled flushing system developed according to the present invention comprises the reservoir (H) where the water (S) is stored; the opening (H1) through which the water (S) within the reservoir (H) is delivered into the toilet bowl; the cover (H2) regulating the passage of wate...

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creator GERENLI, Fatih
description The electronically controlled flushing system developed according to the present invention comprises the reservoir (H) where the water (S) is stored; the opening (H1) through which the water (S) within the reservoir (H) is delivered into the toilet bowl; the cover (H2) regulating the passage of water through the opening (H1); the control member, which regulates the open/closed position of the cover (H2); the metal strip plates (P), which are positioned on a wall of the reservoir (H) in such a way that they face one another and that the water (S) remains between and contact them, one of said metal strip plates being positively charged and the other being negatively charged so that they have charge magnitudes equal to one another, wherein a first capacitance forms upon the contact of the water (S) with the metal strip plates and wherein the first capacitance changes with the water (S) height changing between the metal strip plates; the control unit connected to the strip plates (P), for enabling the capacitance to form between the strip plates (P), for recording the maximum water level such that the height corresponding to one side of the strip plates (P) is equal to the maximum water (S) level possible to be present within the reservoir (H), for measuring the capacitance between the strip plates (P) and determining the water level according to predetermined periods and for comparing the determined water level to the maximum water level to control and regulate the operation of the flushing system (F); and the control panel (K), which comprises the indicator (K1) for informing the user about the operational status of the flushing system (F).
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the cover (H2) regulating the passage of water through the opening (H1); the control member, which regulates the open/closed position of the cover (H2); the metal strip plates (P), which are positioned on a wall of the reservoir (H) in such a way that they face one another and that the water (S) remains between and contact them, one of said metal strip plates being positively charged and the other being negatively charged so that they have charge magnitudes equal to one another, wherein a first capacitance forms upon the contact of the water (S) with the metal strip plates and wherein the first capacitance changes with the water (S) height changing between the metal strip plates; the control unit connected to the strip plates (P), for enabling the capacitance to form between the strip plates (P), for recording the maximum water level such that the height corresponding to one side of the strip plates (P) is equal to the maximum water (S) level possible to be present within the reservoir (H), for measuring the capacitance between the strip plates (P) and determining the water level according to predetermined periods and for comparing the determined water level to the maximum water level to control and regulate the operation of the flushing system (F); 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the opening (H1) through which the water (S) within the reservoir (H) is delivered into the toilet bowl; the cover (H2) regulating the passage of water through the opening (H1); the control member, which regulates the open/closed position of the cover (H2); the metal strip plates (P), which are positioned on a wall of the reservoir (H) in such a way that they face one another and that the water (S) remains between and contact them, one of said metal strip plates being positively charged and the other being negatively charged so that they have charge magnitudes equal to one another, wherein a first capacitance forms upon the contact of the water (S) with the metal strip plates and wherein the first capacitance changes with the water (S) height changing between the metal strip plates; the control unit connected to the strip plates (P), for enabling the capacitance to form between the strip plates (P), for recording the maximum water level such that the height corresponding to one side of the strip plates (P) is equal to the maximum water (S) level possible to be present within the reservoir (H), for measuring the capacitance between the strip plates (P) and determining the water level according to predetermined periods and for comparing the determined water level to the maximum water level to control and regulate the operation of the flushing system (F); 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fre ; ger</language><creationdate>2019</creationdate><topic>FIXED CONSTRUCTIONS</topic><topic>HINGES OR OTHER SUSPENSION DEVICES FOR DOORS, WINDOWS OR WINGS</topic><topic>KEYS</topic><topic>LOCKS</topic><topic>SAFES</topic><topic>WINDOW OR DOOR FITTINGS</topic><toplevel>online_resources</toplevel><creatorcontrib>GERENLI, Fatih</creatorcontrib><collection>esp@cenet</collection></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext_linktorsrc</fulltext></delivery><addata><au>GERENLI, Fatih</au><format>patent</format><genre>patent</genre><ristype>GEN</ristype><title>AN ELECTRONICALLY CONTROLLED FLUSHING SYSTEM</title><date>2019-10-30</date><risdate>2019</risdate><abstract>The electronically controlled flushing system developed according to the present invention comprises the reservoir (H) where the water (S) is stored; the opening (H1) through which the water (S) within the reservoir (H) is delivered into the toilet bowl; the cover (H2) regulating the passage of water through the opening (H1); the control member, which regulates the open/closed position of the cover (H2); the metal strip plates (P), which are positioned on a wall of the reservoir (H) in such a way that they face one another and that the water (S) remains between and contact them, one of said metal strip plates being positively charged and the other being negatively charged so that they have charge magnitudes equal to one another, wherein a first capacitance forms upon the contact of the water (S) with the metal strip plates and wherein the first capacitance changes with the water (S) height changing between the metal strip plates; the control unit connected to the strip plates (P), for enabling the capacitance to form between the strip plates (P), for recording the maximum water level such that the height corresponding to one side of the strip plates (P) is equal to the maximum water (S) level possible to be present within the reservoir (H), for measuring the capacitance between the strip plates (P) and determining the water level according to predetermined periods and for comparing the determined water level to the maximum water level to control and regulate the operation of the flushing system (F); and the control panel (K), which comprises the indicator (K1) for informing the user about the operational status of the flushing system (F).</abstract><oa>free_for_read</oa></addata></record>
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language eng ; fre ; ger
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subjects FIXED CONSTRUCTIONS
HINGES OR OTHER SUSPENSION DEVICES FOR DOORS, WINDOWS OR WINGS
KEYS
LOCKS
SAFES
WINDOW OR DOOR FITTINGS
title AN ELECTRONICALLY CONTROLLED FLUSHING SYSTEM
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