A water filter housing system, and configuration thereof
The water filter housing system addresses inefficiencies in existing systems by enabling easy replacement of filtration media within a cylindrical housing for efficient multistage filtration, reducing maintenance complexity and costs.
Patent Information
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2025-09-02
- Publication Date
- 2026-03-05
AI Technical Summary
Existing water filtration systems often fail to fully filter water in the primary chamber, require frequent replacement of filters, and are cumbersome to maintain, leading to high annual maintenance costs.
A water filter housing system with a cylindrical housing that stacks multiple-stage filtration media, allowing easy replacement of filtration elements, and integrates with a water filtration system for efficient multistage filtration.
Enables efficient multistage filtration with reduced complexity, allowing reuse of the housing and easy maintenance by replacing only the filtration media, thus reducing costs and simplifying the process.
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Figure IB2025058824_05032026_PF_FP_ABST
Abstract
Description
A WATER FILTER HOUSING SYSTEM, AND CONFIGURATION THEREOFTECHNICAL FIELD
[0001] The present invention relates to the field of water purification systems. In particular, it relates to a water filter housing system, and configuration thereof. In specific, it relates to a system and configuration which facilitates multistage filtration of water by integration with water filtration systems.BACKGROUND
[0002] Background description includes information that may be useful in understanding the present disclosure. It is not an admission that any of the information provided herein is prior art or relevant to the presently claimed disclosure, or that any publication specifically or implicitly referenced is prior art.
[0003] Water filters are designed to purify water by eliminating harmful impurities and are essential in domestic as well as industrial applications The degree of removal of contaminants from the water varies depending on the complexity of the filter. The majority of gravity countertop filters have two tanks stacked on top of each other in which an unfiltered water from the top chamber passing through a filter is transformed into filtered water in the bottom chamber by gravity. Multiple stages of filtration can be stacked to increase filtration. One of the Indian patent application publication IN202041036124A, entitled “A natural water purification device”, discloses a natural water purification device including a housing assembly having an inlet, a strainer, a filter element, a storage unit, and an outlet. Another US patent publication US6638426B1, entitled “Water purifying apparatus”, discloses a gravity-fed fluid filter, which is used to protect the filters with means of venting air trapped at the bottom of the filter cartridge.
[0004] However, in the existing systems the primary filter in the upper chamber does not filter the water to its fullest. Also, the existing systems employs filters and counterparts that need to be replaced frequently. Because of the complexity of the filter design the replacement of filters and counterparts are cumbersome and require a professional assistance from the filter manufacturer. Also, the annual maintenance charge associated with the same is high. Hence, there exists a need for a water filtration system which provide multistage filtration with lowest complexity and allowing easy replacement of filtering elements to increase filtering efficiency.OBJECTS OF THE PRESENT DISCLOSURE
[0005] Some of the objects of the present disclosure, which at least one embodiment herein satisfies are as listed herein below.
[0006] It is an object of the present disclosure to provide a water filter housing system, and configuration thereof.
[0007] It is another object of the present disclosure to provide a system and configuration which facilitates multistage filtration of water by integration with a water filtration system.
[0008] It is another object of the present disclosure to provide a system and configuration which facilitate multistage filtration of water undergone a primary stage filtration.
[0009] It is another object of the present disclosure to provide a system and configuration which employs a cylindrical housing to stacks multiple -stage filtration media to enable water filtration.
[0010] It is another object of the present disclosure to provide a system and configuration in which the same housings can be reused limitlessly for the filtration process by only changing the filtration media without needing to discard and change the cartridge as a whole.SUMMARY
[0011] The present invention relates to the field of water purification systems. In particular, it relates to a water filter housing system, and configuration thereof. In specific, it relates to a system and configuration which facilitates multistage filtration of water undergone a primary stage filtration by integration with a water filtration system.
[0012] An aspect of the present disclosure provides a water filter housing system facilitating multistage filtration of water in a sealed environment by integration with a water filtration system. The system includes a housing body including an inner wall with a wide opening at the top and a perforated surface at the bottom of the inner wall. The housing body is configured to stack a multiple-stage filtration media to allow filtration of water entering the housing body and exiting through the perforated surface. Further, the system includes a lid including a lid body with a central inlet covered with a first mesh and a protruding section extends upwards from the central inlet. The lid is configured to close the wide opening in the housing body to enclose the multiple-stage filtration media inside the housing body and receive water from a primary filter chamber through the central inlet for filtration by connecting to the primary filter chamber of a water filtration system employing a first threaded section in the protruding section.
[0013] In an aspect, the system is configured to facilitate a multistage filtration on at least one of an unfiltered water from the primary filter chamber, and a pre-filtered water from a first stage filtration in the primary filter chamber of the water filtration system by employing the multiple -stage filtration media enclosed in the housing body.
[0014] In an aspect, the first mesh in the lid acts as a preliminary filter to filter out at least one of a larger particle, and a debris in the water undergone a first stage filtration before the water passes through the multiple-stage filtration media inside the housing body to reduce the load on the multiple -stage filtration media. The first mesh includes one or more square openings to perform the filtering of at least one of the larger particles, and the debris. The protruding section includes a second mesh in the top of the protruding section, and the second mesh is configured to filter out at least one of the larger particles, and the debris from the water as the water enters and exits through the protruding section from the primary filter.
[0015] In an aspect, the perforated surface includes a plurality of holes spaced evenly on the perforated surface and arranged in a radial pattern to allow the water to pass through the perforated surface with an even distribution of a water flow through the multiple-stage filtration media by preventing at least one of the larger particles, and the debris remaining in the water from exiting the water filter housing system.
[0016] In an aspect, the lid includes a first circular outer rim configured to serve as the point of attachment for the lid to the housing body of the water filter housing system to enable a tight seal to prevent water leakage from the housing body. Further, the lid includes a dark circular surface within a gap between the first circular outer rim and the central inlet. The dark circular surface is configured to act as a barrier and a guiding surface, to direct the water flow toward the housing body.
[0017] In an aspect, the housing body is cylindrical in shape with a smooth and a continuous surface. The housing body has an interior in the form of a substantially cylindrical void consistent with the cylindrical shape of the housing body. The wide opening in the housing body is configured to enable at least one of an effortless insertion of the multiple-stage filtration media into the housing body and a removal of the multiple-stage filtration media out of the housing body.
[0018] In an aspect, the lid forms the top part of the housing body and the lid includes a second threaded section. The lid is attached to the housing body by a screwing facilitated by the second threaded section through a third threaded section in the top of the housing body. The first threaded section in the protruding section on the top of the lid is configured to enable the water housing system to at least one of a screw into and a screw onto a secondcomponent. The second component includes at least one of the primary fdter, and the primary fdter chamber.
[0019] In an aspect, the lid is circular in shape with a diameter larger than the diameter of the housing body to enable a proper fit over the top of the wide opening of the housing body.
[0020] In an aspect, the system is configured to perform the filtration of the water by reusing the housing body and allowing a user to replace only the multiple-stage filtration media within the housing body.
[0021] In an aspect, the multiple -stage filtration media includes at least one of an activated carbon, a carbon block, a reverse osmosis membrane, and a sediment filtering material. The housing body and the lid are fabricated by a material comprising at least one of a stainless steel, and a corrosion resistant material.
[0022] Various objects, features, aspects, and advantages of the inventive subject matter will become more apparent from the following detailed description of preferred embodiments, along with the accompanying drawing figures in which like numerals represent like components.BRIEF DESCRIPTION OF DRAWINGS
[0023] The accompanying drawings are included to provide a further understanding of the present disclosure, and are incorporated in, and constitute a part of this specification. The drawings illustrate exemplary embodiments of the present disclosure, and together with the description, serve to explain the principles of the present disclosure.
[0024] In the figures, similar components, and / or features may have the same reference label. Further, various components of the same type may be distinguished by following the reference label with a second label that distinguishes among the similar components. If only the first reference label is used in the specification, the description is applicable to any one of the similar components having the same first reference label irrespective of the second reference label.
[0025] FIG. 1 illustrates an exemplary (a) architecture of the water filter housing system 100 and (b) way of integration into a water filtration system, in accordance with an embodiment of the present disclosure.
[0026] FIG. 2A illustrates an exemplary (a) internal view, and (b) cross-sectional view of the housing body employed in the water filter housing system 100, in accordance with an embodiment of the present disclosure.
[0027] FIG. 2B illustrates an exemplary (a) front view, (b) an internal view, and (c) top view of the lid employed in the water fdter housing system 100, in accordance with an embodiment of the present disclosure.DETAILED DESCRIPTION
[0028] The following is a detailed description of embodiments of the disclosure depicted in the accompanying drawings. The embodiments are in such detail as to clearly communicate the disclosure. However, the amount of detail offered is not intended to limit the anticipated variations of embodiments; on the contrary, the intention is to cover all modifications, equivalents, and alternatives falling within the spirit and scope of the present disclosure as defined by the appended claims.
[0029] In some embodiments, the numbers expressing quantities of ingredients, properties such as concentration, and so forth, used to describe and claim certain embodiments of the invention are to be understood as being modified in some instances by the term “about.” Accordingly, in some embodiments, the numerical parameters set forth in the written description are approximations that can vary depending upon the desired properties sought to be obtained by a particular embodiment. In some embodiments, the numerical parameters should be construed in light of the number of reported significant digits and by applying ordinary rounding techniques. Notwithstanding that the numerical ranges and parameters setting forth the broad scope of some 30 embodiments of the invention are approximations, the numerical values set forth in the specific examples are reported as precisely as practicable.
[0030] The recitation of ranges of values herein is merely intended to serve as a shorthand method of referring individually to each separate value falling within the range. Unless otherwise indicated herein, each individual value is incorporated into the specification as if it were individually recited herein.
[0031] Various aspects of the present disclosure are described with respect to FIG 1-2B.
[0032] Embodiment explained herein relates to a water filter housing system, and configuration thereof. In specific, it relates to a system and configuration which facilitates multistage filtration of water by integration with a water filtration system.
[0033] The terms “filtration” or “filtering” used herein refers to a physical separation process that separates solid matter and fluid from a mixture using a filter medium that has a complex structure through which only the fluid can pass.
[0034] The terms “filtration media” used herein refers to a fine powder, a coarse mineral, a granular substance, or a substrate, that resides within a filter cartridge, media tank, or housing, which filters water as it flows through the system.
[0035] The terms “multi-stage filtration media” used herein refers to integrating several filter materials in a stacked manner within a filter cartridge or a media tank, or a housing, which filters water as it flows through the system.
[0036] The terms “water filtration system” used herein refers to the type of unit which contains, houses and manipulates the filtration media to perform filtration of water.
[0037] The terms “multi-stage filtration” used herein refers to stage-by-stage filtration process of water as it flows through the system.
[0038] FIG. 1 illustrates an exemplary (a) architecture of the water filter housing system 100 and (b) way of integration into a water filtration system, in accordance with an embodiment of the present disclosure.
[0039] In an embodiment, referring to FIG. 1(a), the exemplary architecture of the water filter housing system 100. The water filter housing system 100 facilitates multistage filtration of water in a sealed environment by integration with a water filtration system 114. The water filter housing system 100 may include a housing body 102 including an inner wall with a wide opening at the top and a perforated surface 106 at the bottom of the inner wall. The housing body 102 can be configured to stack a multiple-stage filtration media to allow filtration of water entering the housing body 102 and exiting through the perforated surface 106. The housing body 102 can be cylindrical in shape with a smooth and a continuous surface. A person of ordinary skill in the art will understand that the water filter housing system 100 may be referred to as system 100.
[0040] In an embodiment, the system may include a lid 104 including a lid body 208 with a central inlet 110 covered with a first mesh 110-1 and a protruding section 108 extends upwards from the central inlet 110. The first mesh 110-1 can include, but not limited to: a stainless steel mesh, a metal filter mesh, and the like. The lid 104 can be configured to close the wide opening in the housing body 102 to enclose the multiple-stage filtration media inside the housing body 102 and receive water from a primary filter chamber 116 through the central inlet 110 for filtration.
[0041] In an embodiment, the multiple-stage filtration media can include, but not limited to: an activated carbon, a carbon block, a reverse osmosis membrane, and a sediment filtering material. The housing body 102 and the lid 104 are fabricated by a material comprising at least one of a stainless steel, and a corrosion resistant material.
[0042] In an embodiment, the perforated surface 106 may include a plurality of holes 112 spaced evenly on the perforated surface 106 and arranged in a radial pattern to allow the water to pass through the perforated surface 106 with an even distribution of a water flow through the multiple-stage fdtration media by preventing at least one of the larger particles, and the debris remaining in the water from exiting the water filter housing system.
[0043] In an embodiment, the outermost edge of the perforated surface 106 is a circular rim, which ensures the component fits securely within the housing body 102 of the water filter housing. The rim helps maintain a tight seal to prevent leaks. The perforated surface 106 enables a proper filtration of the water exiting the housing body 102.
[0044] In an exemplary embodiment, the perforated surface 106 can include evenly spaced and radially arranged round holes. The round holes allow the clean, filtered water to pass through perforated surface 106 while preventing any remaining contaminants or larger particles from exiting the system.
[0045] In an exemplary embodiment, the system can include a cylindrical shaped hosing body with an easily removable lid 104 with an inlet configured to receive water from an upper chamber. In an instance, the housing body 102 can be formed from a single stainless steel sheet. The cylindrical housing body 102 enclose the multiple-stage filtration media by employing the lid 104 connected to the top of the housing body 102. The said lid 104 is covered with a stainless-steel mesh on the inner part to remove contaminants from the water received from the primary filter chamber 116 of the water filter system. The bottom surface of the cylindrical housing body 102 can include several holes 112 to facilitate the flow of filtered water into a bottom chamber. The said bottom surface may be covered with an inner stainless-steel mesh.
[0046] In an embodiment, referring to FIG. 1(b), the exemplary way of integration of the water filter housing system 100 into the water filtration system 114. The water filter housing system 100 may be connected to the primary filter chamber 116 of the water filtration system 114 by employing a first threaded section 206-1 in the protruding section 108. The first threaded section 206-lin the protruding section 108 on the top of the lid 104 can be configured to enable the water housing system to at least one of a screw into and a screw onto a second component. The second component can include, but not limited to: the primary filter, and the primary filter chamber 116. The water filter housing system 100 and the primary filter chamber 116 of the water filtration system 114 are connected to allow water to flow through the multiple-stage filtration media. The integration of the water filter housingsystem 100 with the second component in the water filter system by threaded section facilitates a sealed environment for effective filtration while maintaining structural integrity.
[0047] In an exemplary embodiment, the water filter housing system 100 can be connected to the primary filter chamber 116 of the water filtration system 114 by screwing the first threaded section 206-lin the protruding section 108 into the primary filter chamber 116. In another instance, the water filter housing system 100 can be connected to the primary filter chamber 116 of the water filtration system 114 by screwing the primary filter chamber 116 onto the first threaded section 206-lin the protruding section 108.
[0048] In an embodiment, the system can be configured to perform the filtration of the water by reusing the housing body 102 and allowing a user to replace only the multiple-stage filtration media within the housing body 102.
[0049] In an embodiment, the system can be configured to facilitate a multistage filtration on at least one of an unfiltered water from the primary filter chamber 116, and a pre-filtered water from a first stage filtration in the primary filter chamber 116 of the water filtration system 114 by employing the multiple -stage filtration media enclosed in the housing body 102.
[0050] As can be understood by those ordinary skill in the art, although FIG. 1 shows exemplary components of the system 100, in different embodiments, the system 100 may include fewer components, different components, differently arranged components, or additional functional components than depicted in FIG. 1. Additionally, or alternatively, one or more components of the system 100 may perform functions described as being performed by one or more other components of the system 100.
[0051] FIG. 2A illustrates an exemplary (a) internal view, and (b) cross-sectional view of the housing body employed in the water filter housing system 100, in accordance with an embodiment of the present disclosure.
[0052] In an embodiment, referring to FIG. 2A, exemplary (a) internal view, and (b) cross- sectional view of the housing body 102 employed in the water filter housing system 100. Referring to FIG. 2A(a) the internal view of the housing body 102. The housing body 102 can be cylindrical in shape with a smooth and a continuous surface. The housing body 102 may have an interior in the form of a substantially cylindrical void consistent with the cylindrical shape of the housing body 102. The wide opening in the housing body 102 can be configured to enable at least one of an effortless insertion of the multiple-stage filtration media into the housing body 102 and a removal of the multiple -stage filtration media out of the housing body 102.
[0053] In an embodiment, the outermost ring 202 of the housing body 102 seems to be the housing or casing that holds the fdter and other internal components. The housing can be made of durable material to withstand pressure and environmental factors. The inner circle 204 holds the perforated surface 106 with holes 112 arranged in a symmetric, spiral-like fashion. The said holes 112 form part of the fdtering mechanism, into which the water passes through to get fdtered. Further, the holes 112 or perforations in the inner circle suggest a design for dispersing water evenly across the fdter medium. This allows for maximum contact between the water and the fdter material, improving the fdtration process.
[0054] In an embodiment, referring to FIG. 2(b) the cross-sectional view of the hosing body 102. At the top of the housing is the third threaded section 206 employed to screw into the second threaded section 214 in the lid 104. The cross-sectional view allows for an understanding of the material thickness of the walls of the housing body 102, providing insight into the component's durability and intended use. The walls appear uniform in thickness, indicating a consistent design and manufacturing process. The base of the housing body 102 is slightly rounded to accommodate the perforated surface 106 with holes 112 covered with stainless steel mesh. Thus suggests the housing body 102 may be enabled to contain or hold substances or objects.
[0055] FIG. 2B illustrates an exemplary (a) front view, (b) an internal view, and (c) top view of the lid employed in the water fdter housing system 100, in accordance with an embodiment of the present disclosure.
[0056] In an embodiment, referring to FIG. 2B, exemplary (a) front view, (b) an internal view, and (c) top view of the lid 104 employed in the water fdter housing system 100. Referring to FIG. 2B(a), the front view of the lid 104. The lid 104 is circular in shape with a diameter larger than the diameter of the housing body 102 to enable a proper fd over the top of the wide opening of the housing body 102. At the centre of the lid 104 can be the protruding section 108 that is cylindrical in shape and extends upwards from the main body of the lid 104. The protruding section 108 can act an inlet for water, designed to connect with the primary fdter. The first threaded section 206-lin the protruding section 108 on the top of the lid 104 can be configured to enable the water housing system to at least one of a screw into and a screw onto a second component of any length. The first threaded section 206-1 can accommodate another threaded component or a bolt.
[0057] In an exemplary embodiment, the water fdter housing system can be integrated with the primary fdter chamber 116 of the water fdter system by screwing the first threaded section 206-lin the protruding section 108 into the primary fdter. In another instance, thewater filter housing system can be integrated with the water filter system by screwing the first threaded section 206-lin the protruding section 108 into the primary filter chamber 116.
[0058] In an embodiment, the protruding section 108 may include a second mesh 210 in the top of the protruding section 108. The second mesh 210 can be configured to filter out at least one of the larger particle, and the debris from the water as the water enters and exits through the protruding section 108 from the primary filter. The second mesh 210 can be a stainless- steel mesh.
[0059] In an embodiment, referring to FIG. 2B(b), the internal view of the lid 104. The lid 104 may include a first circular outer rim 212 configured to serve as the point of attachment for the lid 104 to the housing body 102 of the water filter housing system to enable a tight seal to prevent water leakage from the housing body 102. Further, the lid 104 may include a dark circular surface 216 within a gap between the first circular outer rim 212 and the central inlet 110. The dark circular surface 216 can be configured to act as a barrier and a guiding surface, to direct the water flow toward the housing body 102.
[0060] In an embodiment, the central area of the lid 104 encloses the grid-like pattern to allow the water to enter the filter housing. The small perforations ensure that incoming water is evenly distributed and possibly pre-filtered before passing through the main filtration media.
[0061] In an embodiment, referring to FIG. 2B (c), the top view of the lid 104. The top view clearly indicates that the lid 104 is perfectly circular and is designed to fit over the housing body 102. The smaller and circular opening at the centre of the lid 104 covered with the first mesh 110-1 which can be grid structure to allow the passage of fluid while filtering out contaminants. The first mesh 110-1 in the lid 104 acts as a preliminary filter to filter out at least one of a larger particle, and a debris in the water undergone a first stage filtration before the water passes through the multiple-stage filtration media inside the housing body 102 to reduce the load on the multiple-stage filtration media. The first mesh 110-1 may include one or more square openings to perform the filtering of at least one of the larger particle, and the debris. In an instance, the first mesh 110-1 may composed of small square openings, which is characteristic of a filter or strainer.
[0062] In an embodiment, the lid 104 forms the top part of the housing body 102 and the lid 104 may include the second threaded section 214. The lid 104 is attached to the housing body 102 by a screwing facilitated by the second threaded section 214 through a third threaded section 206 in the top of the housing body 102. The lid 104 facilitates a controlled and evendistribution of water into the housing body 102, which can enhance the efficiency and lifespan of the multistage filter media.
[0063] If the specification states a component or feature “may”, “can”, “could”, or “might” be included or have a characteristic, that particular component or feature is not required to be included or have the characteristic.
[0064] As used in the description herein and throughout the claims that follow, the meaning of “a,” “an,” and “the” includes plural reference unless the context clearly dictates otherwise. Also, as used in the description herein, the meaning of “in” includes “in” and “on” unless the context clearly dictates otherwise.
[0065] It is to be appreciated by a person skilled in the art that while various embodiments of the present disclosure have been elaborated for a water filter housing system, and configuration thereof. However, the teachings of the present disclosure are also applicable for other types of applications as well, and all such embodiments are well within the scope of the present disclosure. However, the water filter housing system, and configuration thereof is also equally implementable in other industries as well, and all such embodiments are well within the scope of the present disclosure without any limitation.
[0066] Accordingly, the present disclosure provides a water filter housing system, and configuration thereof.
[0067] Moreover, in interpreting the specification, all terms should be interpreted in the broadest possible manner consistent with the context. In particular, the terms “includes” and “comprising” should be interpreted as referring to elements, components, or steps in a nonexclusive manner, indicating that the referenced elements, components, or steps may be present, or utilized, or combined with other elements, components, or steps that are not expressly referenced. Where the specification claims refer to at least one of something selected from the group consisting of A, B, C....and N, the text should be interpreted as requiring only one element from the group, not A plus N, or B plus N, etc.
[0068] While the foregoing describes various embodiments of the disclosure, other and further embodiments of the disclosure may be devised without departing from the basic scope thereof. The scope of the disclosure is determined by the claims that follow. The disclosure is not limited to the described embodiments, versions or examples, which are included to enable a person having ordinary skill in the art to make and use the disclosure when combined with information and knowledge available to the person having ordinary skill in the art.ADVANTAGES OF THE PRESENT DISCLOSURE
[0069] The present disclosure provides a water filter housing system, and configuration thereof.
[0070] The present disclosure provides a system and configuration which facilitates multistage filtration of water by integration with a water filtration system.
[0071] The present disclosure provides a system and configuration which facilitate multistage filtration of water undergone a primary stage filtration.
[0072] The present disclosure provides a system and configuration which employs a cylindrical housing to stacks multiple-stage filtration media to enable water filtration.
[0073] The present disclosure provides a system and configuration in which the same housings can be reused limitlessly for the filtration process by only changing the filtration media without needing to discard and change the cartridge as a whole.
[0074] The present disclosure provides a system and configuration which facilitate easy integration and replacement of the filtration media into and out of the system thereby enabling effortless maintenance.
Claims
I Claim:
1. A water filter housing system (100) facilitating multistage filtration of water in a sealed environment by integration with water filtration system, the water filter housing system (100) comprising: a housing body (102) comprising an inner wall with a wide opening at the top and a perforated surface (106) at the bottom of the inner wall, and the housing body (102) is configured to stack a multiple-stage filtration media to allow filtration of water entering the housing body (102) and exiting through the perforated surface (106); and a lid (104) comprising a lid body (208) with a central inlet (110) covered with a first mesh (110-1) and a protruding section (108) extends upwards from the central inlet (110), and the lid (104) is configured to close the wide opening in the housing body (102) to enclose the multiple -stage filtration media inside the housing body (102) and receive water from a primary filter chamber (116) through the central inlet (110) for filtration by connecting to the primary filter chamber (116) of a water filtration system (114) employing a first threaded section (206-1) in the protruding section (108).
2. The water filter housing system (100) as claimed in claim 1, wherein the water filter housing system (100) is configured to: facilitate a multistage filtration on at least one of an unfiltered water from the primary filter chamber (116), and a pre-filtered water from a first stage filtration in the primary filter chamber (116) of the water filtration system (114) by employing the multiple-stage filtration media enclosed in the housing body (102).
3. The water filter housing system (100) as claimed in claim 1, wherein the first mesh (110-1) in the lid (104) acts as a preliminary filter to filter out at least one of a larger particle, and a debris in the water undergone a first stage filtration before the water passes through the multiple-stage filtration media inside the housing body (102) to reduce the load on the multiple-stage filtration media, wherein the first mesh (110-1) comprising one or more square openings to perform the filtering of at least one of the larger particles, and the debris, wherein the protruding section (108) comprising a second mesh (210) in the top of the protruding section (108), and the second mesh (210) is configured to filter out at least one of the larger particles, and the debris from the water as the water enters and exits through the protruding section (108) from the primary filter.
4. The water filter housing system (100) as claimed in claim 1, wherein the perforated surface (106) comprises a plurality of holes (112) spaced evenly on the perforated surface (106) and arranged in a radial pattern to allow the water to pass through the perforated surface (106) with an even distribution of a water flow through the multiple-stage filtration media by preventing at least one of the larger particle, and the debris remaining in the water from exiting the water filter housing system.
5. The water filter housing system (100) as claimed in claim 1, wherein the lid (104) comprising: a first circular outer rim (212) configured to serve as the point of attachment for the lid (104) to the housing body (102) of the water filter housing system (100) to enable a tight seal to prevent water leakage from the housing body (102); and a dark circular surface (216) within a gap between the first circular outer rim (212) and the central inlet (110), and the dark circular surface (216) is configured to act as a barrier and a guiding surface, to direct the water flow toward the housing body (102).
6. The water filter housing system (100) as claimed in claim 1, wherein the housing body (102) is cylindrical in shape with a smooth and a continuous surface, wherein the housing body (102) has an interior in the form of a substantially cylindrical void consistent with the cylindrical shape of the housing body (102), and wherein the wide opening in the housing body (102) is configured to enable at least one of an effortless insertion of the multiple-stage filtration media into the housing body (102) and a removal of the multiple-stage filtration media out of the housing body (102).
7. The water filter housing system (100) as claimed in claim 1, wherein the lid (104) forms the top part of the housing body (102) and the lid (104) comprises a second threaded section (214), wherein the lid (104) is attached to the housing body (102) by a screwing facilitated by the second threaded section (214) through a third threaded section (206) in the top of the housing body (102), wherein the first threaded section (206-1) in the protruding section (108) on the top of the lid (104) is configured to enable the water housing system (100) to at least one of a screw into and a screw onto a second component, wherein the second component comprises at least one of the primary filter, and the primary filter chamber (116).
8. The water filter housing system (100) as claimed in claim 1, wherein the lid (104) is circular in shape with a diameter larger than the diameter of the housing body (102) to enable a proper fit over the top of the wide opening of the housing body (102).
9. The water filter housing system (100) as claimed in claim 1, wherein the water filter housing system (100) is configured to: perform the filtration of the water by reusing the housing body (102) and allowing a user to replace only the multiple-stage filtration media within the housing body (102).
10. The water filter housing system (100) as claimed in claim 1, wherein the multiplestage filtration media comprises at least one of an activated carbon, a carbon block, a reverse osmosis membrane, and a sediment filtering material, wherein the housing body (102) and the lid (104) are fabricated by a material comprising at least one of a stainless steel, and a corrosion resistant material.