Connector coupling assembly

The coupler assembly with retention fingers secures connectors to prevent accidental disconnection and allows controlled release, addressing the issue of dislodgement in medical tubing systems.

JP2026003030APending Publication Date: 2026-01-08CAREFUSION 303 INC
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Patent Information

Application Number
JP2025181034
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Priority Date
2020-06-26
Filing Date
2025-10-27
Publication Date
2026-01-08

AI Technical Summary

Technical Problem

Conventional couplers for medical tubing or catheters often become dislodged due to improper fixation or when subjected to forces greater than their design limits, leading to unintended disconnection and interruption of medical fluid administration.

Method used

A coupler assembly with retention fingers that engage collars and shoulders of connectors to secure them in place, allowing secure retention while enabling intentional removal with a controlled withdrawal force.

Benefits of technology

Prevents accidental disconnection of connectors, ensuring secure fluid communication and allowing intentional release when needed, thereby reducing dislodgement rates and maintaining uninterrupted medical fluid administration.

✦ Generated by Eureka AI based on patent content.

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Abstract

To provide a coupler.SOLUTION: The coupler includes a coupler body, a plurality of first retaining fingers, and a plurality of second retaining fingers. The coupler body includes a first end and a second end and defines a cavity, the cavity configured to receive the first connector and the second connector. The first plurality of retaining fingers are configured to engage against the collar of the first connector to prevent axial movement of the first connector relative to the coupler. The plurality of second retention fingers are configured to engage against the shoulder of the second connector with a retention force and are configured to release the second connector by radially expanding in response to a withdrawal force exerted on the second connector exceeding the retention force.SELECTED DRAWING: Figure 4
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Description

[Technical Field]

[0001] The present disclosure relates generally to connectors and, more particularly, to connector couplings. [Background technology]

[0002] Medical treatments often involve infusing medical fluids (e.g., saline solution or liquid medications) into patients using intravenous (IV) catheters, which are connected to a source of fluid (e.g., an IV bag) through an arrangement of flexible tubing and fittings (commonly referred to as an "IV set"). Often, the tubing or catheter is coupled or secured to one another to allow fluid communication between various portions of the tubing or catheter.

[0003] In some applications, such tubing or catheters can become dislodged due to improper fixation and / or when the coupling is subjected to forces greater than what it is designed to withstand. Summary of the Invention [Means for solving the problem]

[0004] The disclosed subject matter relates to a connector coupler. In certain embodiments, the coupler includes a coupler body including a first end and a second end, the coupler body defining a cavity configured to receive a first connector and a second connector; and a plurality of first retention fingers disposed adjacent the first end and extending radially inward into the cavity, the plurality of first retention fingers being biased radially inward toward the cavity and configured to engage a collar of the first connector, and a shaft of the first connector relative to the coupler. A coupler is disclosed that includes: a plurality of first retention fingers that prevent linear movement; and a plurality of second retention fingers that are disposed at the second end and extend radially inward into the cavity, the plurality of second retention fingers being biased radially inward toward the cavity, the plurality of second retention fingers being configured to engage a shoulder portion of the second connector with a retention force, and the plurality of second retention fingers being configured to release the second connector by radially expanding in response to a withdrawal force exerted on the second connector exceeding the retention force.

[0005] In certain embodiments, a coupler assembly includes a first connector, a second connector, and a coupler, wherein the first connector includes a first connector body having a first inlet portion and a first outlet portion, the first inlet portion configured to be coupled to a first section of tubing and in fluid communication with the first inlet portion; and a collar disposed between the first inlet portion and the first outlet portion, the collar extending radially from the first connector body, and the second connector includes a second connector body having a second inlet portion and a second outlet portion, the second inlet portion configured to be releasably coupled to the first outlet portion of the first connector, and the second outlet portion configured to be coupled to a second section of tubing and in fluid communication with the second inlet portion. a second connector body having a collar including a first end and a second end; a shoulder disposed between the second inlet portion and the second outlet portion, the shoulder extending radially from the second connector body, the coupler body including a first end and a second end, the coupler body defining a cavity, the first connector and the second connector being at least partially disposed within the cavity; and a plurality of first retention fingers disposed adjacent the first end and extending radially inward into the cavity, the plurality of first retention fingers being biased radially inward to engage a collar of the first connector and prevent axial movement of the first connector relative to the second connector;a plurality of second retention fingers disposed at the second end and extending radially inward into the cavity, the plurality of second retention fingers being radially biased inward and engaging a shoulder portion of the second connector with a retention force, the plurality of second retention fingers being configured to release the second connector by radially expanding in response to a withdrawal force exerted on the second connector exceeding the retention force;

[0006] In certain embodiments, a method is disclosed that includes the steps of: inserting a portion of a first connector into a cavity of a coupler, the first connector being coupled to a first section of tubing; urging a plurality of first retention fingers radially inward to engage against a collar of the first connector; inserting a portion of a second connector from an opposite end of the coupler into the cavity, the second connector being coupled to a second section of tubing; coupling an outlet portion of the first connector with an inlet portion of the second connector to allow fluid communication between the first section of tubing and the second section of tubing; and urging a plurality of second retention fingers radially inward to engage against a shoulder portion of the second connector with a retention force.

[0007] It is understood that various configurations of the subject technology will be readily apparent to those skilled in the art from this disclosure, and that various configurations of the subject technology have been shown and described by way of example. As will be recognized, the subject technology is capable of other and different configurations, and its several details can be modified in various other respects, all without departing from the scope of the subject technology. Accordingly, the summary, drawings, and detailed description are to be regarded as illustrative in nature, and not as restrictive.

[0008] The accompanying drawings are included to provide a further understanding, and are incorporated in and constitute a part of this specification, illustrating disclosed embodiments and, together with the description, serve to explain the principles of the disclosed embodiments. [Brief explanation of the drawings]

[0009] [Figure 1] FIG. 1 is a perspective view of a coupler assembly according to various aspects of the present disclosure. [Figure 2] FIG. 2 is an exploded perspective view of the coupler assembly of FIG. 1 according to various embodiments of the present disclosure. [Figure 3] 2 is a cross-sectional view of the coupler assembly of FIG. 1 with the second connector omitted, according to various embodiments of the present disclosure. [Figure 4] 2 is a cross-sectional view of the coupler assembly of FIG. 1 according to various embodiments of the present disclosure. DETAILED DESCRIPTION OF THE INVENTION

[0010] The disclosed coupler incorporates a plurality of first retention fingers and a plurality of second retention fingers. The plurality of first retention fingers can be configured to engage a collar of the first connector and prevent axial movement of the first connector. The plurality of second retention fingers can be configured to engage a shoulder of the second connector and prevent axial movement of the second connector. By preventing axial movement of the first and second connectors, the coupler can prevent unintended or accidental disconnection of the first and second connectors. Furthermore, the plurality of second retention fingers can be configured to release the second connector in response to a withdrawal force. By allowing the second connector to be removed in response to a withdrawal force, the second connector can be removed when needed by applying an increased withdrawal force.

[0011] The detailed description set forth below is intended as a description of various configurations of the subject technology and is not intended to represent the only configurations in which the subject technology may be practiced. The detailed description includes specific details for the purpose of providing a thorough understanding of the subject technology. However, it will be apparent to those skilled in the art that the subject technology may be practiced without these specific details. In some cases, well-known structures and components are shown in block diagram form to avoid obscuring the concepts of the subject technology. Similar components are labeled with the same element numbers for ease of understanding. Reference numerals may have letter suffixes added to indicate separate instances of common elements, but are generally referred to by the same numerals without the letter suffix.

[0012] While the following description relates to the connection of a medical fluid medical fitting for the administration of a medical fluid using the disclosed coupler, it should be understood that this description is merely an example of use and does not limit the scope of the claims. Various aspects of the disclosed coupler may be used in any application where it is desirable to secure the connection of various tubing and fittings.

[0013] The disclosed couplers overcome several challenges found with certain conventional couplers. One challenge with certain conventional couplers is that they may be improperly secured. Furthermore, during use, certain conventional couplers may be designed to release or fall off in response to relatively low pull-out forces. For example, certain conventional couplers may release in response to pull-out forces experienced while a patient turns in bed, while a patient hooks tubing or lines onto bedrails, while a patient moves between beds, while a pediatric patient fumbles, and / or while a disoriented adult patient pulls out their line. In fact, the 2017 Association for Vascular Access (AVA) Annual Scientific Meeting reported a 10% dislodgement rate per 1,000 patients fitted with peripheral intravenous catheters, translating to approximately 33 million dislodgements annually in the United States alone. The use of certain conventional couplers is undesirable because accidental or unintentional dislodgment of the tubing, catheter, or fitting can interrupt the administration of medical fluids.

[0014] Therefore, in accordance with the present disclosure, it would be advantageous to provide a coupler as described herein that allows for improved securement of a fitting or connector. The disclosed coupler provides a plurality of first retention fingers and a plurality of second retention fingers that allow for secure retention of the connector while allowing for intentional removal of the connector if desired.

[0015] An example of a coupler that allows for secure retention of the connector will now be described.

[0016] Figure 1 is a perspective view of a coupler assembly 100 according to various embodiments of the present disclosure. Figure 2 is an exploded perspective view of the coupler assembly 100 of Figure 1 according to various embodiments of the present disclosure. With reference to Figures 1 and 2, the coupler assembly 100 enables the flow of fluid (e.g., medical fluid) from a fluid source to a patient by releasably connecting a portion of tubing or line with another portion of tubing or line in fluid communication.

[0017] In the example shown, the sections of tubing may be terminated by connectors (e.g., upper connector 110 and / or lower connector 130, etc.) that may allow for connection and / or disconnection of the tubing and enable selective fluid communication therebetween.

[0018] As shown, a first portion of the tubing may terminate in an upper connector 110, allowing the first portion of the tubing to be connected and / or disconnected to a mating connector (such as, for example, lower connector 130). In some embodiments, a portion of the tubing may be coupled (or may engage) with an inlet portion 112 of the upper connector 110. The inlet portion 112 may be in fluid communication with the tubing, allowing fluid to pass through the upper connector 110. In some embodiments, the inlet portion 112 may have a flat surface, allowing a clinician to easily clean and disinfect the inlet portion 112. Fluid may exit or flow through the upper connector 110 via an outlet portion 114 disposed opposite the inlet portion 112. The flow path through the upper connector 110 has a straight fluid path, which may make flushing easier and reduce the risk of hemolysis. Optionally, upper connector 110 can include raised features 122 disposed on a surface of upper connector 110, allowing a clinician to more easily handle or manipulate upper connector 110. Some embodiments of upper connector 110 can provide a connector that is compatible with connectors on other portions of the fluid delivery system. Examples of upper connectors 110 can include a SmartSite™ connector, a Max Zero connector, and a MaxPlus connector.

[0019] Similarly, a second portion of the tubing may be terminated by lower connector 130, allowing the second portion of the tubing to be connected and / or disconnected to a mating connector (such as, for example, upper connector 110). In some embodiments, a portion of the tubing may be coupled (or may be capable of engaging) with outlet portion 134 of lower connector 130. In some embodiments, outlet portion 134 may include a threaded luer connection 138 to facilitate coupling to the tubing.

[0020] The tubing can be in fluid communication with the outlet port 134, allowing the tubing to receive flow through the lower connector 130. The lower connector 130 can receive fluid flow from an inlet port 132 disposed opposite the outlet port 134. In some embodiments, the lower connector 130 can include a no-drip feature to prevent leakage or surface contamination. The lower connector can further include a luer lock to prevent accidental discharge. Optionally, the lower connector 130 can include a raised feature 140 disposed on a surface of the lower connector 130, allowing a clinician to more easily handle or manipulate the lower connector 130. An example of a lower connector 130 can include a Texium® connector.

[0021] In some embodiments, the outlet portion 114 of the upper connector 110 and / or the inlet portion 132 of the lower connector 130 can include features that allow the outlet portion 114 to mate with the inlet portion 132. For example, the outlet portion 114 can fit or otherwise engage with the inlet portion 132 to allow fluid communication between the upper connector 110 and the lower connector 130 and between the tubing portions coupled thereto. As can be appreciated, the upper connector 110 and the lower connector 130 can be coupled and uncoupled to allow fluid communication as desired. As shown, the outlet portion 114 can include an exterior portion that is smooth or otherwise unthreaded. The outlet portion 114 can include an exterior portion that includes threads to facilitate coupling with the lower connector 130. As can be appreciated, the upper connector 110 can couple with the lower connector 130 to provide a needleless connection. Advantageously, the upper connector 110 can be mated with a lower connector to form a leak-proof closed system, allowing for the delivery of hazardous drugs. For example, a SmartSite™ connector can be connected to a Texium® connector to provide a closed system that prevents hazardous drugs from leaking or dripping.

[0022] In some embodiments, upper connector 110 can include a sealing valve to allow flow therethrough when outlet portion 114 is coupled to a mating connector and to prevent or restrict flow when upper connector 110 is disconnected from the mating connector. In some embodiments, upper connector 110 can include a sealing valve to seal the flow path between inlet portion 112 and outlet portion 114 when outlet portion 114 is disconnected from the mating connector. The sealing valve can be moved to an open position when a mating connector is coupled to outlet portion 114, allowing flow between inlet portion 112 and outlet portion 114 and into the mating connector.

[0023] Similarly, the lower connector 130 can include a sealing valve to allow flow therethrough when the inlet portion 132 is coupled to a mating connector and can prevent or restrict flow when the lower connector 130 is disconnected from the mating connector. The lower connector 130 can include a sealing valve to seal the flow path between the inlet portion 132 and the outlet portion 134 when the inlet portion 132 is disconnected from the mating connector. Additionally, the sealing valve can be moved to an open position when a mating connector is coupled to the inlet portion 132, allowing flow into the lower connector 130 and between the inlet portion 132 and the outlet portion 134. Some embodiments provide that portions of the sealing valve can be formed from silicone.

[0024] 3 is a cross-sectional view of the coupler assembly 100 of FIG. 1 with the lower connector 130 omitted, according to various embodiments of the present disclosure. With reference to FIGS. 1-3, the coupler 150 can secure the upper connector 110 and the lower connector 130 in a coupled position, allowing for secure fluid communication therebetween that cannot be accidentally or unintentionally interrupted. In the example shown, the coupler 150 can hold or secure the upper connector 110 and / or the lower connector 130 by engaging features of the upper connector 110 and / or the lower connector 130.

[0025] As shown, coupler 150 may have a generally tubular body that extends between a first end configured to receive upper connector 110 and a second end configured to receive lower connector 130. Coupler 150 may define a cavity therein that allows portions of upper connector 110 and / or lower connector 130 to be disposed within coupler 150.

[0026] In the example shown, the upper connector 110 can be inserted into a cavity of the coupler 150 and engage with the coupler 150 to prevent undesired removal of the upper connector 110. As shown, the outlet portion 114 end of the upper connector 110 is guided through a first end of the coupler 150 into the cavity and to a desired axial position relative to the coupler 150. For example, the upper connector 110 can be axially positioned within the coupler 150 to allow the outlet portion 114 to engage or couple with the inlet portion 132 of the lower connector 130 when the lower connector 130 is inserted. Advantageously, the upper connector 110 can be axially positioned within the coupler 150 such that the outlet portion 114 is recessed into the cavity to prevent contact contamination of the outlet portion 114 by a patient, clinician, etc. when the upper connector 110 is not coupled to the lower connector 130.

[0027] In some embodiments, features within coupler 150 can position upper connector 110 within the cavity of coupler 150. Optionally, coupler 150 can include tapered alignment feature 162 to generally radially align outlet 114 and / or upper connector 110 within the cavity of coupler 150. Tapered alignment feature 162 can extend from a wall of coupler 150 into the cavity and have a generally conical shape that converges radially. Thus, when upper connector 110 is inserted or advanced into coupler 150, tapered alignment feature 162 can radially guide upper connector 110 within the cavity.

[0028] In some embodiments, upper connector 110 can include a frustoconical or tapered portion 120 for engaging or interfacing with a tapered alignment feature 162 of coupler 150. Tapered portion 120 can slide along tapered alignment feature 162 to radially align upper connector 110 within coupler 150. Tapered portion 120 can be disposed between inlet portion 112 and outlet portion 114 of upper connector 110. In some embodiments, tapered portion 120 can be disposed near outlet portion 114 of upper connector 110.

[0029] When upper connector 110 is inserted into coupler 150, features of coupler 150 can hold upper connector 110 in the inserted position. In some embodiments, coupler 150 can axially hold upper connector 110 while allowing upper connector 110 to rotate relative to coupler 150. Optionally, coupler 150 can rotationally hold upper connector 110 relative to coupler 150.

[0030] In the example shown, coupler 150 can include a plurality of first retention fingers 152 for engaging or retaining upper connector 110 in an inserted or coupled axial position. In some embodiments, the plurality of first retention fingers 152 can move radially to allow upper connector 110 to be inserted into coupler 150. The plurality of first retention fingers 152 can move into and out of a cavity defined by coupler 150.

[0031] As shown, the plurality of first retention fingers 152 may be hinged to the body of the coupler 150. In some embodiments, the plurality of first retention fingers 152 are integrally formed with the coupler 150. Optionally, slots or windows 160 are cut around the material of the coupler 150 to form the plurality of first retention fingers 152. The plurality of first retention fingers 152 may be spaced apart circumferentially around the coupler 150. Optionally, the plurality of first retention fingers 152 may be arranged in groups or sets around the coupler 150. In some embodiments, the plurality of first retention fingers 152 may be spaced apart from the end of the coupler 150 that receives the upper connector 110.

[0032] In the example shown, the plurality of first retention fingers 152 may be biased radially inward to engage or retain the upper connector 110 in the coupler 150. The plurality of first retention fingers 152 may apply a radial spring force against the upper connector 110 to retain the upper connector 110 in the coupler 150. As can be appreciated, the spring force of the plurality of first retention fingers 152 may correspond to a retention force exerted on the upper connector 110. The plurality of first retention fingers 152 may be resiliently deformable to engage the upper connector 110.

[0033] In some embodiments, the plurality of first retention fingers 152 can each include a protrusion or protruding feature 153 for engaging with a feature of the upper connector 110. The protruding feature 153 can extend radially inward to contact the upper connector 110. For example, the plurality of first retention fingers 152 and / or the protruding feature 153 can engage with the collar 116 of the upper connector 110.

[0034] Optionally, upper connector 110 may include a collar 116, which may be a radially raised portion extending from upper connector 110. Collar 116 may be disposed between inlet portion 112 and outlet portion 114. As shown, collar 116 may be disposed toward outlet portion 114. Optionally, collar 116 may include a groove or recess 118 disposed therein.

[0035] In the example shown, the plurality of first retention fingers 152 and / or the protruding feature 153 can engage against the collar 116 to prevent axial movement of the upper connector 110 relative to the coupler 150. After the collar 116 moves past the plurality of first retention fingers 152 and / or the protruding feature 153 during insertion, the plurality of first retention fingers 152 can move radially inward to axially bear against an axial surface of the collar 116, thereby retaining the upper connector 110. In some embodiments, the protruding feature 153 of each of the plurality of first retention fingers 152 can engage against the collar 116. Optionally, the protruding feature 153 can have a generally square or axially-facing surface that bears against the collar 116 to prevent radial expansion of the plurality of first retention fingers 152 in response to an axial (withdrawal) force exerted on the upper connector 110.

[0036] FIG. 4 is a cross-sectional view of the coupler assembly 100 of FIG. 1 according to various embodiments of the present disclosure. Referring to FIGS. 1-4 , in the example shown, the lower connector 130 is inserted into the cavity of the coupler 150 and engages with the coupler 150 and the upper connector 110, allowing the upper connector 110 to prevent or resist undesired disengagement. As shown, the inlet portion 132 end of the lower connector 130 is guided through the second end of the coupler 150 into the cavity and to a desired axial position relative to the coupler 150. For example, the lower connector 130 can be axially positioned within the coupler 150, allowing the inlet portion 132 to engage or couple with the outlet portion 114 of the upper connector 110. In some embodiments, features within the coupler 150 enable the lower connector 130 to be positioned within the cavity of the coupler 150.

[0037] When lower connector 130 is inserted into coupler 150, features of coupler 150 can hold lower connector 130 in an inserted position. In some embodiments, coupler 150 can axially hold lower connector 130 while allowing lower connector 130 to rotate relative to coupler 150 and upper connector 110. Optionally, coupler 150 can rotationally hold lower connector 130 relative to coupler 150.

[0038] In the example shown, coupler 150 can include a plurality of second retention fingers 154 for engaging or retaining lower connector 130 in an inserted or coupled axial position. In some embodiments, second retention fingers 154 are radially movable to allow lower connector 130 to be inserted into coupler 150. Second retention fingers 154 are movable into and out of a cavity defined by coupler 150.

[0039] As shown, the plurality of second retention fingers 154 may be hinged to the body of the coupler 150. In some embodiments, the plurality of second retention fingers 154 are integrally formed with the coupler 150. Slots or windows 158 may be cut into the material of the coupler 150 to form the plurality of second retention fingers 154. The plurality of second retention fingers 154 may be spaced apart circumferentially around the coupler 150. The plurality of second retention fingers 154 may be arranged in groups or sets around the coupler 150. In some embodiments, the plurality of second retention fingers 154 may be disposed at the end of the coupler 150 that receives the lower connector 130.

[0040] In the example shown, the plurality of second retention fingers 154 may be biased radially inward to engage or retain the lower connector 130 in the coupler 150. The plurality of second retention fingers 154 may apply a radial spring force against the lower connector 130 to retain the lower connector 130 in the coupler 150. As can be appreciated, the spring force of the plurality of second retention fingers 154 may correspond to the retention force exerted on the lower connector 130. The plurality of second retention fingers 154 may be resiliently deformable to engage the lower connector 130.

[0041] In some embodiments, the plurality of second retention fingers 154 can each include a protrusion or protruding feature 156 for engaging a feature on the lower connector 130. The protruding feature 156 can extend radially inward to contact the lower connector 130. For example, the plurality of second retention fingers 154 and / or the protruding feature 156 can engage against the shoulder 136 of the lower connector 130.

[0042] Optionally, lower connector 130 can include a shoulder 136, which can be a radially raised portion extending from lower connector 130. Shoulder 136 can be disposed between inlet portion 132 and outlet portion 134. As shown, shoulder 136 can be disposed toward outlet portion 134.

[0043] In the example shown, the plurality of second retention fingers 154 and / or the protruding feature 156 can engage against the shoulder 136 to prevent or limit axial movement of the lower connector 130 relative to the coupler 150. During insertion, after the shoulder 136 moves past the plurality of second retention fingers 154 and / or the protruding feature 156, the plurality of second retention fingers 154 can move radially inward to axially bear against the axial surface of the shoulder 136, thereby retaining the lower connector 130. In some embodiments, the protruding feature 156 of each of the plurality of second retention fingers 154 can engage against the shoulder 136.

[0044] Optionally, protruding feature 156 can have a generally sloped surface that bears against shoulder 136, allowing radial expansion of plurality of second retention fingers 154 in response to an axial (withdrawal) force exerted on lower connector 130. In some embodiments, coupler 150 can be configured to allow lower connector 130 to be removed in response to a selected or predetermined withdrawal force. Lower connector 130 can be removed from coupler 150 with a withdrawal force of 1 pound, 2 pounds, 4 pounds, 5 pounds, 10 pounds, etc. As can be appreciated, the withdrawal force can be selected to prevent inadvertent release while preventing damage to the tubing or harm to the patient.

[0045] Optionally, coupler 150 may be configured to allow upper connector 110 to remain retained when lower connector 130 is removed. In other words, coupler 150 may be configured to allow lower connector 130 to be released with a lower pull-out force compared to upper connector 110. After removal, lower connector 130 can be reinserted into coupler 150 to reconnect lower connector 130 with upper connector 110.

[0046] This disclosure is provided to enable any person skilled in the art to practice the various aspects described herein. This disclosure provides various examples of the subject technology, and the subject technology is not limited to these examples. Various modifications to these aspects will be readily apparent to those skilled in the art, and the general principles defined herein may be applied to other aspects.

[0047] Reference to an element in the singular is not intended to mean "one and only one" unless specifically so stated, but rather "one or more." The term "some" refers to "one or more" unless specifically stated otherwise. Masculine pronouns (e.g., his) include feminine and neuter (e.g., "her" and "it"), and vice versa. Headings and subheadings, if any, are used merely for convenience and do not limit the invention.

[0048] The word "exemplary" is used herein to mean "serving as an example or illustration." Any aspect or design described herein as "exemplary" is not necessarily to be construed as preferred or advantageous over other aspects or designs. In one aspect, various alternative configurations and operations described herein may be considered at least equivalent.

[0049] The use of phrases such as "aspects" does not imply that such aspect is essential to the subject technology or that such aspect applies to all configurations of the subject technology. Disclosure of an aspect may apply to all configurations, or to one or more configurations. An aspect may provide one or more examples. A phrase such as an aspect may refer to one or more aspects, and vice versa. A phrase such as "embodiment" does not imply that such embodiment is essential to the subject technology or that such embodiment applies to all configurations of the subject technology. Disclosure of an embodiment may apply to all embodiments, or to one or more embodiments. An embodiment may provide one or more examples. A phrase such as an embodiment may refer to one or more embodiments, and vice versa. A phrase such as "configuration" does not imply that such configuration is essential to the subject technology or that such configuration applies to all configurations of the subject technology. Disclosure of a configuration may apply to all configurations, or to one or more configurations. A configuration may provide one or more examples. Any reference to such a configuration may refer to one or more configurations, and vice versa.

[0050] In one aspect, unless otherwise stated, all measurements, values, ratings, positions, dimensions, sizes, and other specifications set forth in this specification (including the claims that follow) are approximate and not exact, and in one aspect, are intended to have a reasonable range consistent with the function to which they relate and with functions customary in the art to which they pertain.

[0051] In one embodiment, the term "coupled" or the like may refer to a direct connection. In another embodiment, the term "coupled" or the like may refer to an indirect connection.

[0052] Terms such as "top," "bottom," "front," and "rear," when used in this disclosure, should be understood to refer to any frame of reference, rather than the conventional gravitational frame of reference. Thus, top, bottom, front, and rear surfaces can extend upward, downward, diagonally, or horizontally in the gravitational frame of reference.

[0053] Various items may be arranged differently (e.g., placed in a different order or partitioned in a different manner) without all departing from the scope of the subject technology. All structural and functional equivalents to the elements of the various aspects described throughout this disclosure that are known, or that later become known, to those of ordinary skill in the art are expressly incorporated herein by reference and are intended to be encompassed by the claims. Moreover, nothing disclosed herein is intended to be made available to the public, regardless of whether such disclosure is expressly recited in the claims. No claim element is to be construed under the provisions of 35 U.S.C. § 112, sixth paragraph, unless the element is expressly recited using the phrase "means for," or, in the case of a method claim, unless the element is recited using the phrase "step for." Moreover, to the extent terms such as "include" or "having" are used, such terms are intended to be inclusive in the same manner as the term "comprise" is interpreted when used as a transitional phrase in the claims.

[0054] The Title of the Invention, Background Art, Summary of the Invention, Brief Description of the Drawings, and Abstract of the Disclosure are hereby incorporated into this disclosure and are provided as examples for purposes of illustrating the disclosure, not as a limiting description. They are submitted with the understanding that they will not be used to limit the scope or meaning of the claims. Additionally, in the Detailed Description, it can be understood that the description provides examples for illustrative purposes, and that various features have been grouped together in various embodiments for the purpose of streamlining the disclosure. This method of disclosure is not to be interpreted as reflecting an intention that the claimed subject matter requires more features than are expressly recited in each claim. Rather, as the following claims reflect, inventive subject matter lies in less than all features of a single disclosed structure or operation. The following claims are hereby incorporated into the Detailed Description, with each claim standing on its own as a separate claimed subject matter.

[0055] The claims are not intended to be limited to the embodiments described herein, but are to be accorded full scope consistent with the language of the claims and to encompass all legal equivalents. Nonetheless, none of the claims are intended to encompass subject matter that fails to satisfy the requirements of 35 U.S.C. §§ 101, 102, or 103, nor should they be so interpreted.

Claims

1. A coupler, the coupler comprising: a coupler body including a first end and a second end, the coupler body defining a cavity, the cavity configured to receive a first connector and a second connector; a plurality of first retention fingers disposed adjacent the first end and extending radially inward into the cavity, the plurality of first retention fingers being biased radially inward toward the cavity and configured to engage a collar of the first connector with a first retention force to prevent axial movement of the first connector relative to the coupler; a plurality of second retention fingers disposed at the second end and extending radially inward into the cavity, the plurality of second retention fingers being biased radially inward toward the cavity, the plurality of second retention fingers comprising: configured to engage the shoulder of the second connector with a second retention force less than the first retention force; a plurality of second retention fingers configured to release the second connector by radially expanding in response to a pull-out force exerted on the second connector exceeding the second retention force; and Including, coupler.

2. The coupler of claim 1 , wherein the coupler body comprises a tubular shape.

3. 2. The coupler of claim 1, wherein the plurality of first retention fingers are spaced apart from the first end.

4. 2. The coupler of claim 1, wherein the plurality of first retention fingers are circumferentially spaced apart.

5. The coupler of claim 1 , wherein the plurality of first retention fingers are configured to permit rotational movement of the first connector relative to the coupler.

6. The coupler of claim 1 , wherein each of the plurality of first retention fingers includes a protrusion extending radially inward.

7. 2. The coupler of claim 1, wherein the plurality of first retention fingers extend from a respective plurality of first windows defined in the coupler body.

8. 2. The coupler of claim 1, wherein the coupler further includes a tapered portion within the cavity, the tapered portion configured to radially align with the first connector within the cavity.

9. The coupler of claim 1 , wherein each of the plurality of second retention fingers includes an angled protrusion extending radially inward.

10. 2. The coupler of claim 1, wherein the plurality of second retention fingers define a respective plurality of second windows therebetween.

11. A coupler assembly, the coupler assembly comprising: a first connector; a second connector; Coupler and Including, The first connector comprises: a first connector body having a first inlet portion and a first outlet portion, the first inlet portion configured to be coupled to a first section of tubing and in fluid communication with the first inlet portion; a collar disposed between the first inlet portion and the first outlet portion, the collar extending radially from the first connector body; Including, The second connector comprises: a second connector body having a second inlet portion and a second outlet portion, the second inlet portion configured to be releasably coupled to the first outlet portion of the first connector, and the second outlet portion configured to be coupled to a second section of tubing and in fluid communication with the second inlet portion; a shoulder disposed between the second inlet portion and the second outlet portion, the shoulder extending radially from the second connector body; Including, The coupler is a coupler body including a first end and a second end, the coupler body defining a cavity, the first connector and the second connector being at least partially disposed within the cavity; a plurality of first retention fingers disposed adjacent the first end and extending radially inward into the cavity, the plurality of first retention fingers being biased radially inward to engage the collar of the first connector with a first retention force to prevent axial movement of the first connector relative to the second connector; a plurality of second retention fingers disposed at the second end and extending radially inward into the cavity, the plurality of second retention fingers being biased radially inward to engage the shoulder of the second connector with a second retention force less than the first retention force, the plurality of second retention fingers being configured to release the second connector by radially expanding in response to a pull-out force exerted on the second connector exceeding the second retention force; A coupler assembly including:

12. The coupler assembly of claim 11 , wherein at least one of the first connector and the second connector includes a sealing valve configured to prevent fluid flow in a released state.

13. The coupler assembly of claim 11 , wherein the collar defines a radially inwardly extending recess.

14. 12. The coupler assembly of claim 11, wherein the first connector body includes a frusto-conical portion disposed between the first inlet and the collar, and the coupler further includes a tapered portion within the cavity, the tapered portion configured to engage with the frusto-conical portion and radially align the first connector within the cavity.

15. The coupler assembly of claim 11 , wherein the second outlet of the second connector is threadably engaged with the second portion of tubing.

16. The coupler assembly of claim 11 , wherein each of the plurality of second retention fingers includes an angled protrusion extending radially inward.

17. inserting a portion of a first connector into a cavity of the coupler, the first connector being coupled to a first portion of tubing; biasing a plurality of first retention fingers radially inward into engagement with a collar of the first connector with a first retention force; inserting a portion of a second connector into the cavity from an opposite end of the coupler, the second connector being coupled to a second section of tubing; connecting an outlet of the first connector with an inlet of the second connector to allow fluid communication between the first section of tubing and the second section of tubing; biasing a plurality of second retention fingers radially inwardly into engagement against a shoulder of the second connector with a second retention force less than the first retention force; A method comprising:

18. The method comprises: applying a withdrawal force to the second connector that exceeds the second retention force; releasing the second connector from the coupler in response to a withdrawal force exceeding the second retention force; 20. The method of claim 17, further comprising:

19. The method comprises:

20. The method of claim 18, further comprising radially expanding the plurality of second retention fingers in response to the withdrawal force exceeding the second retention force.

20. The method comprises:

18. The method of claim 17, further comprising radially aligning the portion of the first connector within the cavity of the coupler.