Valve box with electrovalves for remotely controlled irrigation systems
09795095 · 2017-10-24
Assignee
Inventors
Cpc classification
F16K27/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K31/404
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K11/24
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y10T137/7043
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
A01G25/165
HUMAN NECESSITIES
International classification
E03B1/00
FIXED CONSTRUCTIONS
F16K27/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K11/24
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K31/40
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A valve box for irrigation systems is described, comprising a box-shaped body closed by a lid, and a plurality of electrovalves contained in an inner compartment of said box-shaped body and adapted to allow a fluid from a supply conduit to flow towards a plurality of outlet conduits, each being controlled by an electrovalve. The valve box comprises a single programmable drive and control module of said electrovalves which is contained in a containment box releasably secured above said compartment.
Claims
1. A valve box for irrigation systems, comprising a box-shaped body closed by a lid, and a plurality of electrovalves contained in an inner casing inside said box-shaped body and arranged at respective corners of a polygonal space in said inner casing, said plurality of electrovalves being used to allow a fluid from a single supply conduit to flow towards a plurality of outlet conduits, each one of said plurality of outlet conduits being controlled by a respective one of the electrovalve, and a single programmable electronic drive and control module of said plurality of electrovalves which is contained in a containment box releasably and sealingly fastened onto said inner casing, said single programmable electronic drive and control module comprising a resin body for housing an electronic circuitry in a watertight condition, at least one power supply battery that can be accessed from the outside of said resin body, a display overlapping said electronic circuitry, and a transparent body with an overmolded keyboard overlapping said resin body and said display.
2. The valve box for irrigation systems according to claim 1, wherein the valve box further comprise an annular sealing gasket housed within a channel of an upper end of said containment box so as to obtain a lateral sealing coupling with a closing lid of said containment box.
3. The valve box for irrigation systems according to claim 1, wherein each electrovalve of said plurality of electrovalves is a “solenoid electrovalve” comprising a bistable solenoid.
4. The valve box for irrigation systems according to claim 1, wherein the single programmable electronic drive and control module of the electrovalves is adapted to receive and run programs generated or modified by a remote controller.
5. The valve box for irrigation systems according to claim 4, wherein said single programmable electronic drive and control module is radiofrequency programmable.
6. The valve box for irrigation systems according to claim 4, wherein said single programmable electronic drive and control module is vapor pressure deficit (VPD) programmable.
Description
BRIEF DESCRIPTION OF SEVERAL VIEWS OF THE DRAWINGS
(1) The features and advantages of the present invention will become apparent from the following detailed description of an embodiment thereof, shown by way of illustrative, non-limiting example in the accompanying drawings, in which:
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DETAILED DESCRIPTION OF THE INVENTION
(12) In
(13) In particular, each electrovalve 4 is a “solenoid electrovalve” comprising a bistable solenoid 50 in the upper part (
(14) Above the metal insert 9, a lower end 38 of a metal sleeve 15 (for example, made of steel) extends into the inner cavity 8, in which sleeve a piston 16 is slidably housed, having at the lower end thereof a small sealing block 17 engageable with the upper end orifice 11 and disengageable therefrom to close and open the communication of passageway 10 with the inner cavity 8 of the metal insert 9. A spring 14 acts between an inner shoulder 5 and the lower end of piston 16 to urge piston 16 to the position where the small sealing block 17 is in closing engagement with the upper end orifice 11.
(15) The metal sleeve 15 is secured at the top to an abutment body 18 made of steel, which acts as a limit stop for the ascent of piston 16. About the upper part of the metal sleeve 15 and the abutment body 18, an electrically insulating reel 19 is arranged, which supports an electric coil 20 and which is contained within a C-shaped metal bracket 21 which is, in turn, housed inside electrovalve 4. A permanent magnet 22 and an underlying metal washer 23 are hold in place between the lower tab of the C-shaped metal bracket 21 and the body valve 51.
(16) Two electric, quick-coupling connectors (not shown in the figure) electrically connected to coil 20 laterally extend on the upper part of the body of solenoid 50 for electrically connecting solenoid 50 to a suitable power supply.
(17) The components inside the body of solenoid 50 are detachably secured together by a closing member 24, particularly a “wing screw”, reacting against the top of the upper part of solenoid 50 and screwed in an upper cavity of the abutment body 18.
(18) As stated above, spring 14 urges piston 16 to the position where the small sealing block 17 is in a closing engagement with the upper end orifice 11. However, by a command transmitted through the electric connectors, solenoid 50 may switch to a second stable position in which piston 16 is moved into abutment against the abutment body 18, and the small sealing block 17 is then moved away from orifice 11. Thereby, a communication between the cavity 8 and the outlet conduit 3 is created, which relieves the pressure from cavity 8 and allows membrane 13 to move away from bulkhead 85 to open the communication between the supply conduit 2 and the outlet conduit 3 of electrovalve 4. By means of an opposite command, solenoid 50 can then be brought back again to the first stable position and return electrovalve 4 to a closing position by closing orifice 11.
(19) Above compartment 26, a box-shaped body 106 is releasably secured by means of screws 105. The box-shaped body 106 is closed at the top by a transparent lid 39, preferably made of polycarbonate, provided with marks, which is screwed onto the box-shaped body 106 itself with the interposition of an annular sealing gasket 41 housed inside a channel 42 of the upper end of said box-shaped body 106 so as to obtain a lateral sealing coupling with said closing lid 39 (
(20) The inner part of the box-shaped body 106 and the transparent lid 39 globally form a containment box 106, 39 for a single programmable electronic control module 27 of the electrovalves 4.
(21) Said programmable electronic control module 27 of the plurality of electrovalves 4 is adapted to receive and run programs generated or modified by a remote controller, and comprises a resin-based body 28 in which an electronic circuitry with a printed circuit board 29 on top is housed to be watertight (in a non-visible manner) and which further sealingly closes an underlying compartment 30 (
(22) As shown in
(23) The transparent body 35 has an injection-overmolded keyboard with rubber keys 36 and a framework 37 defining a window for the inspection of display 32 (
(24) The drive module 27 is remotely controlled. A wide range of wi-fi implementation types (VPD, radiofrequency, etc.) can be used for remotely programming the above-mentioned programmable electronic drive module 27.
(25) For example, a radiofrequency implementation comprises a centralized controller or remote control P (