Tamper resistant cap
The tamper-evident cap addresses unauthorized access and contamination in medical fluid systems by securing ports with bendable legs and engagement surfaces, enhancing safety and accuracy in fluid delivery.
Patent Information
- Application Number
- JP2025279001
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2015-07-30
- Filing Date
- 2025-12-23
- Publication Date
- 2026-02-27
AI Technical Summary
Existing medical fluid systems face issues with unauthorized access and contamination through ports, leading to potential infection spread and incorrect dosing, especially with toxic compounds.
A tamper-evident cap design featuring a housing with bendable legs and engagement surfaces that securely attach to medical ports, ensuring tamper-proof closure and preventing unauthorized access.
The tamper-evident cap effectively restricts unauthorized access to medical fluids, reducing contamination risks and ensuring accurate dosing by maintaining the integrity of medical fluid delivery systems.
Smart Images

Figure 2026034766000001_ABST
Abstract
Description
[Technical Field]
[0001] The present disclosure relates to products, packages or systems that utilize ports, for example, for the passage of fluids therethrough, and more particularly to tamper-evident caps for medical products, packages or systems having ports. [Background technology]
[0002] Many products, packages, and systems for holding and delivering medical fluids have an access port through which the fluid can pass. For example, the port may be incorporated into an IV bag, bottle, or Y-site device located along the fluid pathway. The medical fluid may be introduced into or withdrawn from the product, package, or system through this port. Similarly, the medical fluid may be diluted, altered, or contaminated through this port. Summary of the Invention [Problem to be solved by the invention]
[0003] To prevent inadvertent contamination of medical fluids and the spread of infection, it is desirable to restrict access to these fluids through ports. Tampering or adulteration poses a serious threat to the recipient of medical fluids that may be altered by infusion through the port. Unauthorized withdrawal of portions of medical fluids can also result in the recipient receiving an incorrect amount of medical fluid. Furthermore, toxic medical fluids, such as compounds used in chemotherapy, can be harmful to individuals who come into contact with the drug. [Means for solving the problem]
[0004] According to an aspect of the present disclosure, a tamper-evident cap for a medical adapter is provided, the cap comprising: a housing having (i) a closed top end, (ii) an opposing open bottom end, and (iii) a sidewall between the top and bottom ends, the housing defining an axis extending between the top and bottom ends, a plurality of legs extending from the housing away from the bottom end, and a member extending radially from an inner surface of at least one leg, the member including a ramped surface, an engagement surface extending transversely to the ramped surface, and an apex transitioning between the ramped surface and the engagement surface, each leg configured to bend radially relative to the axis of the housing.
[0005] In some examples, a cross-sectional width between each radially extending member is less than a cross-sectional width of an outer surface of the port. In some embodiments, the legs join to define an opening. In certain examples of the present disclosure, the housing has a first cross-sectional width at its lower end that is greater than a second cross-sectional width at its upper end. In some embodiments, the outer surface of the sidewall tapers from its lower end to its upper end. In some embodiments, the outer surface of the sidewall has a plurality of ribs disposed from its lower end to its upper end.
[0006] In some embodiments of the present disclosure, a portion of each leg adjacent the member defines a collar extending laterally from the leg. In some embodiments, each collar defines an arc. In some examples, the collars of the legs are configured to mate with one another to form a collar coaxial with the housing when the legs pivot toward their lower ends. In some embodiments, each collar includes at least one of a latch and a strike configured to connect the collars to one another. According to some embodiments, each leg is pivotable about a hinge. In some embodiments, the hinge is a living hinge.
[0007] According to an aspect of the present disclosure, a tamper-evident cap includes a housing having (i) a closed top end, (ii) an opposing open bottom end, and (iii) a sidewall between the top and bottom ends, the housing defining an axis extending between the top and bottom ends; a plurality of legs extending from the housing away from the bottom end, at least one of the legs defining at least one window between at least one of the legs and the housing; a tab extending from a bottom of each window toward the top end; and a member extending radially from an inner surface of each tab, each member including a ramp surface, an engagement surface extending transversely to the ramp surface, and a vertex transitioning between the ramp surface and the engagement surface.
[0008] According to certain embodiments of the present disclosure, the legs join together to define an opening. In some examples, a portion of the exterior surface of the sidewall tapers toward the upper end. In certain examples of the present disclosure, the housing has a first cross-sectional width at the lower end that is greater than a second cross-sectional width at the upper end.
[0009] According to some embodiments, the housing further includes an insert configured to fit within the housing between the inner surface of the upper end and the engagement surfaces of each member, the insert having a first end defining the cavity and an opposing second end, the inner surface of the upper end and the second end configured such that (i) the insert moves the distance between the upper end and each engagement surface, and (ii) the housing and insert engage and rotate together in one direction and disengage from each other when rotated in the opposite direction.
[0010] In some examples, the inner surface of the cavity has threads. In some examples, both the inner surface of the top end and the second end have ratchets and pawls. In some embodiments, the cavity has a protrusion extending toward the first end. According to some embodiments, the first end further has a radial flange.
[0011] Additional features and advantages of the present technology will be set forth in the description which follows, and in part will be obvious from the description, or may be learned by the practice of the present technology. The advantages of the present technology will be realized and attained by the structure particularly pointed out in the description and claims thereof, as well as the appended drawings.
[0012] It is to be understood that both the foregoing general description and the following detailed description are exemplary and explanatory and are intended to provide further explanation of the technology as claimed.
[0013] The accompanying drawings, which are included to provide a further understanding of the present technology and are incorporated in and constitute a part of this specification, illustrate aspects of the present technology and, together with the description, serve to explain the principles of the present technology. [Brief explanation of the drawings]
[0014] [Figure 1] FIG. 1 is a front perspective view of an example of a tamper-evident cap according to aspects of the present disclosure. [Figure 2] FIG. 2 is a cross-sectional view of the tamper-evident cap of FIG. 1. [Figure 3] 1A-1C are cross-sectional views of examples of tamper-evident caps with connected ports according to aspects of the present disclosure. [Figure 4] FIG. 1 is a front view of an example of a tamper-evident cap according to aspects of the present disclosure. [Figure 5] FIG. 5 is a cross-sectional view of the tamper-evident cap of FIG. 4. [Figure 6A] FIG. 1 is a front perspective view of an example of a tamper-evident cap according to aspects of the present disclosure. [Figure 6B] FIG. 1 is a front perspective view of an example of a tamper-evident cap according to aspects of the present disclosure. [Figure 7] FIG. 6C is a cross-sectional view of the tamper-evident cap of FIGS. 6A and 6B. [Figure 8] FIG. 1 is a front perspective view of an example of a tamper-evident cap according to aspects of the present disclosure. [Figure 9] FIG. 9 is a front view of the tamper-evident cap of FIG. 8. [Figure 10] FIG. 1 is a front perspective view of an example of a tamper-evident cap according to aspects of the present disclosure. [Figure 11] 11 is a cross-sectional view of the housing of the tamper-evident cap of FIG. 10. FIG. [Figure 12] FIG. 11 is a front perspective view of the insert of the tamper-evident cap of FIG. 10. [Figure 13] FIG. 11 is a cross-sectional view of the tamper-evident cap of FIG. 10. DETAILED DESCRIPTION OF THE INVENTION
[0015] In the following detailed description, specific details are presented to provide a thorough understanding of the present technology. However, it will be apparent to those skilled in the art that the present technology can be practiced without some of these specific details. In other instances, well-known structures and techniques have not been shown in detail in order to avoid obscuring the present technology.
[0016] The use of phrases such as "aspect" does not imply that such aspect is essential to the present technology or that such aspect applies to all configurations of the present technology. Disclosure relating to one aspect may apply to all configurations or one or more configurations. One aspect may provide one or more examples of the disclosure. A phrase referring to an aspect may refer to one or more aspects, and vice versa. A phrase such as "example" does not imply that such example is essential to the present technology or that such example applies to all configurations of the present technology. Disclosure relating to one embodiment may apply to all examples or one or more examples. An example may provide one or more examples of the disclosure. A phrase referring to an example may refer to one or more examples, and vice versa. A phrase such as "configuration" does not imply that such configuration is essential to the present technology or that such configuration applies to all configurations of the present technology. Disclosure relating to one configuration may apply to all configurations or one or more configurations. A configuration may provide one or more examples of the disclosure. A phrase referring to an example may refer to one or more configurations, and vice versa.
[0017] The present disclosure relates to a tamper-evident cap for use in a product, package, or system employing an access port. FIG. 1 illustrates a tamper-evident cap configured to connect to a port 900 having an external thread or ridge 902. The tamper-evident cap includes a housing 100 having a closed top end 102 and an opposing open bottom end 104. A sidewall 106 extends between the top end 102 and the bottom end 104 and is circumferentially disposed about an axis 108 extending between the top end 102 and the bottom end 104. In some embodiments, one or more apertures are disposed through the top end 102. A plurality of legs 110 extend from the housing 100 away from the bottom end 104. Each leg 110 is bendable relative to the axis 108. A space defined between adjacent legs 110 and bounded at one end by the bottom end 104 allows each leg to bend independently of the adjacent leg 110. The inner surface of at least one leg 110 includes a member 112. Each member 112 extends radially inward from the inner surface of leg 110 toward axis 108 .
[0018] 2, each of the plurality of legs 110 includes a member 112 extending toward the axis 108. Each member 112 has a ramp surface 114 and an engagement surface 116 extending toward the axis 108. The ramp surface 114 and the engagement surface 116 are oriented laterally relative to one another. An apex 116 is located at the interface between the ramp surface 114 and the engagement surface 116. In a preferred embodiment, the cross-sectional width between the apexes 116 of opposing radially extending members 112 is less than the cross-sectional width of the external threads or ridges 902 of the ports 904.
[0019] 3 , a connection between the tamper-evident cap and the port 900 may be made by first aligning the housing 100 and the port 900 so that the stem 108 is coaxial with the opening 904 of the port 900 and the legs 110 extend from the housing 100 toward the port 900. As the tamper-evident cap is moved toward the port 900, the ramped surface 114 contacts the external threads or ridges 902 of the port 900. Further movement of the tamper-evident cap toward the port 900 then causes the legs 110 to bend radially away from the stem 108. Once the legs 110 extend radially away from the stem 108, the tamper-evident cap may be moved further toward the port 900 so that the peaks 118 pass over the external ridges or threads. After the peaks 118 pass over the external ridges or threads, the engagement surfaces 116 at least partially guide the legs back onto the stem 108. In a preferred embodiment, the engagement surfaces 116 engage with the external threads or ridges 902 of the port 900 but do not cause the legs to bend radially outward from the axis 108 when the tamper-evident cap is moved in the opposite direction away from the port 900.
[0020] Referring to the embodiment of FIGS. 4 and 5, the tamper-evident cap includes a housing 200 having a closed top end 202, an opposing open bottom end 204, and a sidewall 206 extending between the top end 202 and the bottom end 204. The sidewall 206 is circumferentially disposed about an axis 208 extending between the top end 202 and the bottom end 204. The exterior surface of the housing has a first cross-sectional width at the bottom end 204 and a second cross-sectional width at the top end 202. In preferred embodiments, the first cross-sectional width is greater than the second cross-sectional width. In some embodiments, the exterior surface of the sidewall 206 includes a transition step 207 between the bottom end 204 and the top end 202. The sidewall 206 includes a plurality of ribs 222 disposed thereon and extending from the bottom end 204 to the top end 202. Rib 222 extends across transition step 207 and tapers from a first cross-sectional width at bottom end 204 to a second cross-sectional width at top end 202. In some embodiments, the outer surface of side 206 tapers between bottom end 204 and top end 202.
[0021] 5, a plurality of legs 210 extend from the housing 200 away from the bottom end 204. A member 212 is disposed on the inner surface of at least one of the legs 210. Each member 212 extends radially inward from the leg 210 toward the axis 208. Each member 212 has a ramp surface 214 and an engagement surface 216 extending toward the axis 208. An apex 218 is disposed at the interface between the ramp surface 214 and the engagement surface 216. In a preferred embodiment, the cross-sectional width between the apexes 216 of opposing radially extending members 212 is less than the cross-sectional width of the external thread or ridge 902 of the port 900.
[0022] In some embodiments, the housing 200 and legs 210 define a space between each leg 210, allowing each leg 210 to flex independently of adjacent legs 210. In a preferred embodiment, the space defined by the housing 200 and legs 210 is an opening 220. This opening 220 allows the tamper-evident cap to be connected to a port of a device having a non-uniform area in the immediate vicinity of the port. For example, the opening 220 allows the tamper-evident cap to be connected to a Y-site (not shown) having a first branch and a second branch. When the tamper-evident cap is connected to a port in the first branch of the Y-site, the second branch extends through the opening 220.
[0023] 6A-7 show a tamper-evident cap comprising a housing 300 having a closed top end 302, an opposing open bottom end 304, and a sidewall 306 extending between the top end 302 and the bottom end 304. The sidewall 306 is circumferentially disposed about an axis 308 that extends between the top end 302 and the bottom end 304.
[0024] A plurality of legs 310 extend from the top end 302 of the housing 300 toward the bottom end 304. Each leg is pivotally connected to the top end 302 by a hinge 330. The hinge 330 allows each leg to pivot toward and away from the bottom end 304 along a plane parallel or nearly parallel to the axis 308, such that each leg can extend outward as shown in FIG. 6B . In some embodiments, the hinge 330 is a low-profile, flexible, living hinge between each leg 310 and the top end 302.
[0025] A portion of each leg 310 adjacent member 312 defines a collar 324 extending laterally from leg 310. Each collar 324 has an arcuate shape such that a collar is formed when each leg 310 carrying the collar 324 is pivoted toward axis 308. The collars 324 are configured to mate with one another to form a collar about axis 308 of housing 300. In some embodiments, collars 324 mate with one another via a latch 326 and a strike 328 between each collar. In a preferred embodiment, the mating surface of each collar 324 includes at least one of a latch 326 and a strike 328.
[0026] 7, a member 312 is disposed on the inner surface of each leg 310. Each member 312 extends radially inward from leg 310 toward axis 308. Each member 312 has an engagement surface 316 and an apex 316 that extend toward axis 308. In a preferred embodiment, the cross-sectional width between the apexes 316 of opposing radially extending members 312 is less than the external thread or ridge 902 of port 900.
[0027] 6A-7 can be connected to the port 900 by first aligning the bottom end 304 of the housing 300 with the port 900 so that the axis 308 is coaxial with the opening 904 of the port 900. The legs 310 may then be pivoted toward the bottom end 304 until the collars 324 are adjacent the exterior surface of the port 900 and the engagement surfaces 316 are adjacent the external threads or ridges 902 of the port 900. The collars 324 may then be connected to each other by engaging the respective latch 326 and strike 328 combinations. Engaging the collars 324 causes the engagement surfaces 316 to abut the external threads or ridges 902 of the port 900 but does not cause the legs to bend away from the axis 308 when the tamper-evident cap is moved in the opposite direction away from the port 900.
[0028] 8 and 9, the tamper-evident cap includes a housing 400 having a closed top end 402, an opposing open bottom end 404, and a sidewall 406 extending between the top end 402 and the bottom end 404. The sidewall 406 is circumferentially disposed about an axis 408 extending between the top end 402 and the bottom end 404. The exterior surface of the housing has a first cross-sectional width at the bottom end 404 and a second cross-sectional width at the top end 402. In preferred embodiments, the first cross-sectional width is greater than the second cross-sectional width. In some embodiments, a portion of the exterior surface of the sidewall 406 includes a transition step 407 between the first cross-sectional width at the bottom end 404 and the second cross-sectional width at the top end 402.
[0029] A plurality of legs 410 extend from the housing 400 away from the bottom end 404. In some embodiments, the housing 400 and at least one leg 410 define a window 432. A tab 434 extends from the end of each window toward the top end 402. Preferably, the tab 434 extends from the end of the window opposite the top end 402. A member 412 is disposed on the inner surface of each tab 434. Each member 412 extends radially inward from the tab 434 toward the axis 408. Each member 412 has a ramp surface 414 and an engagement surface 416 extending toward the axis 408. An apex 416 is disposed at the interface between the ramp surface 414 and the engagement surface 416. In a preferred embodiment, the cross-sectional width between the apexes 416 of opposing radially extending members 412 is less than the cross-sectional width of the external thread or ridge 902 of the port 900.
[0030] In some embodiments, housing 400 and legs 410 define an opening 420 between each leg 410. This opening 420 allows the tamper-evident cap to be connected to a port on a device that has an uneven area in the immediate vicinity of the port. For example, opening 420 allows the tamper-evident cap to be connected to a Y-site (not shown) having a first branch and a second branch. When the tamper-evident cap is connected to a port on the first branch of the Y-site, the second branch extends through opening 420.
[0031] In some embodiments, sidewall 406 includes a plurality of ribs disposed thereon, extending from bottom end 404 to top end 402. The ribs extend across a transition step 407, tapering from a first cross-sectional width at bottom end 404 to a second cross-sectional width at top end 402. In some embodiments, outer side 406 tapers between bottom end 404 and top end 402.
[0032] The tamper-evident cap may be connected to the port 900 by first aligning the housing 400 with the port 900 so that the stem 408 is coaxially aligned with the opening 904 of the port 900 and the legs 410 extend from the housing 400 toward the port 900. As the tamper-evident cap is moved toward the port 900, the ramped surface 414 contacts the external thread or ridge 902 of the port 900. Further movement of the tamper-evident cap toward the external thread or ridge 902 causes the tab 434 to bend radially away from the stem 408. Once the tab 434 extends radially away from the stem 408, the tamper-evident cap may be moved further toward the port 900 so that the peak 418 passes over the external thread or ridge 902. After the peak 418 passes over the external ridge or thread, the engagement surface 416 at least partially guides the legs back onto the stem 408. In a preferred embodiment, the engagement surfaces 416 engage the external threads or ridges 902 of the port 900 but do not cause the legs to bend radially outward from the axis 408 when the tamper-evident cap is moved in the opposite direction away from the port 900.
[0033] 10-13 show a tamper-evident cap including a housing 500 and an insert 550. The housing 500 has a closed top end 502, an opposing open bottom end 504, and a sidewall 506 extending between the top end 502 and the bottom end 504. The sidewall 506 is circumferentially disposed about an axis 508 extending between the top end 502 and the bottom end 504. A plurality of legs 510 extend from the housing 500 away from the bottom end 504.
[0034] 11 , the housing 500 and legs 510 define spaces between each leg 510, allowing each leg 510 to bend independently of adjacent legs 510. A member 512 is disposed on the inner surface of each leg 510. Each member 512 extends radially inward from the leg 510 toward the axis 508. Each member 512 has a ramp surface 514 and an engagement surface 516 that extend toward the axis 508. An apex 518 is disposed at the interface between the ramp surface 514 and the engagement surface 516. The inner surface of the upper end 502 of the housing 500 has a circumferentially continuous angled ridge 536.
[0035] 12 shows an insert 550 having a first end 552 and an opposing second end 554. The insert 550 is disposed at the first end 552 and defines a flange 556 extending radially away from the insert 550. In a preferred embodiment, the cross-sectional width between the tops 518 of the opposing members 512 is less than the cross-sectional width of the flange 556.
[0036] The insert 550 further defines a cavity that extends through the first end 552 and partially toward the inner surface of the second end 554. In some embodiments, the inner surface of the cavity has a threaded surface 558. In some embodiments, a protrusion 560 extends from the inner surface of the second end 554 toward the first end 552. In preferred embodiments, the protrusion 560 extends beyond the plane defined by the first end 552. The outer surface of the second end 552 has a circumferentially continuous angled ridge 538. The angled ridge 538 at the second end 552 is oriented in an opposite direction to the angled ridge 536 at the top end 502.
[0037] 13 , the housing 500 and insert 550 are connected to one another by aligning the legs 510 of the housing 500 with the second end 554 of the insert 550. As the housing 500 is moved toward and over the insert 550, the ramped surfaces 514 contact the flanges 556, causing the legs 510 to bend radially away from the axis 508. Once the legs 510 have extended radially away from the axis 508, the housing 500 may be moved further over the insert 550 so that the peaks 518 clear the flanges 556, thereby at least partially returning the legs 510 to the axis 508. The insert 550 is retained within the legs 510 of the housing 500 between the inner surface of the top end 502 and the engagement surface 516.
[0038] Because the distance between the first end 552 and the second end 554 of the insert 550 is smaller than the distance between the inner surface of the upper end 502 and the engagement surface 516, the insert 550 can move the distance between the inner surface of the upper end 502 and the engagement surface 516.
[0039] When the top end 502 of the housing 500 is moved toward the second end 554 of the insert 550, the angled ridges 536 of the housing 500 engage with the angled ridges 538 of the insert 550, causing the housing 500 and insert 550 to rotate together in a first direction. On the other hand, when the housing 500 is moved away from the second end 554, or rotated in a second, opposite direction, the angled ridges 536 of the housing 500 disengage from the angled ridges 538 of the insert 550. In some embodiments, the tamper-evident cap and port 900 are connected by first attaching the insert 550 to the port 900. In a preferred embodiment, the insert 550 is connected to the port 900 by threads 558 such that the protrusions 560 extend into the port 900. The housing 500 and insert 550 are then connected, and the integrated housing 500 and insert 550 may be engaged and rotated in a first direction or disengaged when rotated in a second, opposite direction. In some embodiments, the housing 500 and the insert 550 are first connected to each other. Next, the threads 558 of the insert 550 are aligned with the port 900. The housing 500 is then moved toward the insert 550 such that the angled ridges 536, 538 engage with each other and the housing 500 and insert 550 rotate in a first direction, thereby connecting the housing 500 and insert 550 to the port 900.
[0040] The above description is provided to enable one skilled in the art to practice the various aspects described herein. While the technology has been described in detail with reference to various figures and embodiments, it should be understood that these are for illustrative purposes only and should not be construed as limiting the scope of the technology.
[0041] There may be many other ways to implement the present technology. The various functions and elements described herein may be partitioned differently than shown without departing from the scope of the present technology. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be applied to other embodiments. Thus, numerous changes and modifications may be made to the present technology by those skilled in the art without departing from the scope of the present technology.
[0042] As used herein, the phrase "at least one of," when preceding a series of items with the word "and" or "or" separating any of those items, modifies the list as a whole and not each member (i.e., each item) of the list. The phrase "at least one of" does not require the selection of at least one of each of the listed items; rather, the phrase allows for the meaning of including at least one of any one of the items, and / or at least one of any combination of the items, and / or at least one of each of the items. As an example, "at least one of A, B, and C" or "at least one of A, B, or C" all refer to A only, B only, or C only, any combination of A, B, and C, and / or at least one of each of A, B, and C.
[0043] Furthermore, to the extent that terms like "including," "having," and the like are used in the detailed description or claims, such terms are intended to be inclusive, in the same manner as the term "comprising" is interpreted when used as transitional language in the claims. The term "exemplary" is used herein to mean "serving as an example, instance, or illustration." Any embodiment described herein as "exemplary" is not necessarily to be construed as preferred or advantageous over other embodiments.
[0044] Reference to an element in the singular does not mean "one and only one," but rather "one or more," unless otherwise specified. The term "some" refers to one or more. All structural and functional equivalents of the various components described in this disclosure that are known or later become known by those skilled in the art are expressly incorporated herein by reference and are encompassed by the technology. Furthermore, all matter disclosed herein is not intended to open to the public, whether or not that disclosure is expressly set forth in the above description.
[0045] While specific aspects and examples of the present technology have been described, these examples are presented by way of example only and are not intended to limit the scope of the present technology. Indeed, the novel methods and systems described herein may be embodied in a variety of other forms without departing from the spirit of the disclosure. Furthermore, the appended claims and their equivalents are intended to cover such forms and modifications as would fall within the scope and spirit of the present technology.
Claims
1. 1. A tamper-evident cap for a medical adapter, comprising: a housing having (i) a closed upper end, (ii) an opposing open lower end, and (iii) a sidewall between the upper and lower ends, the housing defining an axis extending between the upper and lower ends; a plurality of legs extending from the housing away from the lower end; a member extending radially from an inner surface of at least one leg, the member including a ramp surface, an engagement surface extending transversely to the ramp surface, and a vertex transitioning between the ramp surface and the engagement surface; Equipped with Each leg is configured to bend radially relative to the axis of the housing.
1. A tamper-evident cap.
2. 10. The tamper-evident cap of claim 1, wherein a cross-sectional width between each radially extending member is less than a cross-sectional width of an exterior surface of the port.
3. The tamper-evident cap of claim 1 , wherein the legs join to define an opening.
4. 10. The tamper-evident cap of claim 1, wherein the housing has a first cross-sectional width at the bottom end that is greater than a second cross-sectional width at the top end.
5. 10. The tamper-evident cap of claim 1, wherein the outer surface of the side wall tapers from the bottom end to the top end.
6. 10. The tamper-evident cap of claim 1, wherein the exterior surface of the side wall has a plurality of ribs disposed from the bottom end to the top end.
7. 10. The tamper-evident cap of claim 1, wherein a portion of each leg adjacent the member defines a collar extending laterally from the leg.
8. 8. The tamper-evident cap of claim 7, wherein each collar portion defines an arc.
9. 8. The tamper-evident cap of claim 7, wherein the collar portions of the legs are configured to fit together to form a collar coaxial with the housing when the legs are pivoted toward the bottom end.
10. 8. The tamper-evident cap of claim 7, wherein each collar portion includes at least one of a latch and a strike configured to connect the collar portions together.
11. 10. The tamper evident cap of claim 1, wherein each leg is pivotable about a hinge.
12. 12. The tamper evident cap of claim 11, wherein the hinge is a living hinge.
13. a housing having (i) a closed upper end, (ii) an opposing open lower end, and (iii) a sidewall between the upper and lower ends, the housing defining an axis extending between the upper and lower ends; a plurality of legs extending from the housing away from the lower end, at least one of the legs defining at least one window with the housing; a tab extending from the bottom of each window toward the top end; a member extending radially from the inner surface of each tab; Equipped with Each member includes a ramp surface, an engagement surface extending transversely to the ramp surface, and a crest transitioning between the ramp surface and the engagement surface.
1. A tamper-evident cap.
14. 14. The tamper-evident cap of claim 13, wherein the legs join to define an opening.
15. 14. The tamper-evident cap of claim 13, wherein a portion of the exterior surface of the side wall tapers toward the top end.
16. 14. The tamper-evident cap of claim 13, wherein the housing has a first cross-sectional width at the bottom end that is greater than a second cross-sectional width at the top end.
17. an insert configured to fit within the housing between the inner surface of the top end and the engagement surface of each member; The insert is a first end defining a cavity and an opposing second end; 2. The tamper-evident cap of claim 1, wherein the inner surface of the top end and the second end are configured such that (i) the insert moves a distance between the top end and each engagement surface, and (ii) the housing and insert engage and rotate together in one direction and disengage from each other when rotated in the opposite direction.
18. 20. The tamper-evident cap of claim 17, wherein the interior surface of the cavity has threads.
19. 18. The tamper evident cap of claim 17, wherein the inner surface of the top end and the second end both have a ratchet and a pawl.
20. 18. The tamper-evident cap of claim 17, wherein the cavity has a protrusion extending toward the first end.
21. 18. The tamper evident cap of claim 17, wherein the first end further comprises a radial flange.