Systems and methods for key-optimized double-gated carabiners
The double-gate carabiner design addresses security and ease-of-use issues by using a dual-entry mechanism with gates that open in the same direction, ensuring secure attachment and preventing accidental detachment.
Patent Information
- Application Number
- JP2023528399
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2020-11-13
- Filing Date
- 2021-10-20
- Publication Date
- 2026-01-07
- Estimated Expiration
- 2041-10-20
AI Technical Summary
Existing carabiners often face issues with security and ease of use, particularly in holding objects like keys, as they can be easily detached or lost due to single-gate designs.
A double-gate carabiner design with gates that open in the same direction but are difficult to open in the opposite direction, featuring a G-arm for mounting the second gate, ensuring secure attachment of objects by sliding them through both gates.
The double-gate design provides enhanced security by preventing accidental release of attached items, such as keys, through a dual-entry mechanism that requires intentional action to detach, enhancing usability and security.
Smart Images

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Abstract
Description
[Background technology]
[0001] Connectors are useful in a variety of situations for hikers, anglers, outdoors enthusiasts, travelers, and many other users. Carabiners have a wide range of uses, as they can be used to fasten objects together or connect one object to another. Carabiners are often used to hold objects such as keys. The security of the object on a device, such as a key, and the ease of use of the device are often issues. Summary of the Invention
[0002] In one embodiment, the carabiner device includes a carabiner body having a first portion and a second portion, the first portion and the second portion being defined by a G-arm, the first portion comprising a carabiner opening, the G-arm being adjacent to the carabiner opening. The carabiner device further includes a first gate oriented to open and close the carabiner opening. The carabiner device further includes a second gate extending from the G-arm to a portion of the carabiner body, the second gate separating the first portion of the carabiner body from the second portion of the carabiner body when the second gate is closed. In one alternative, the first gate opens inward in a first rotational direction on the carabiner body. Alternatively, the second gate opens in the first rotational direction and closes in a direction opposite the first rotational direction. In another alternative, the carabiner body includes a stop that prevents the second gate from rotating past a point opposite the first rotational direction. Alternatively, the carabiner body includes a notch that allows the second gate to rotate in the first rotational direction. In another alternative, the stop and notch form a divot in the carabiner body. Alternatively, the carabiner body is shaped so that the first ring can slide on the carabiner body from the carabiner opening through the first portion, through the divot, and to the second portion. In another alternative, the second ring sliding through the divot pushes the second gate in a first rotational direction. Alternatively, the second ring on the second portion of the carabiner body, as it slides toward the carabiner opening, pushes the second gate in a second rotational direction opposite the first rotational direction. In another alternative, the stop prevents the second gate from rotating in the second rotational direction. Alternatively, the carabiner body is generally oval, and the G-arm extends from one side of the carabiner body to the opposite side of the carabiner body. In another alternative, the carabiner body including the G-arm has a G-shape.
[0003] In one embodiment, the carabiner includes a carabiner body having a first portion and a second portion, the first portion comprising a carabiner opening. The carabiner further includes a first gate oriented to open and close the carabiner opening. The carabiner further includes a second gate, the second gate separating the first portion of the carabiner body from the second portion of the carabiner body when the second gate is closed. In one alternative, the second gate is attached to the carabiner body proximate the carabiner opening. In another alternative, the carabiner body includes an inwardly extending portion, and the second gate is attached to the inwardly extending portion. Alternatively, the carabiner body includes an attachment area for the second gate. In another alternative, the attachment area is a G-arm. Alternatively, the attachment area is an area of additional body material that accommodates attachment of the second gate.
[0004] In one embodiment, a method of using a carabiner includes providing a carabiner. The carabiner device includes a carabiner body having a first portion and a second portion, the first portion and the second portion being defined by a G-arm, the first portion comprising a carabiner opening, the G-arm being adjacent to the carabiner opening. The carabiner further includes a first gate oriented to open and close the carabiner opening. The carabiner further includes a second gate extending from the G-arm to a portion of the carabiner body, the second gate separating the first portion of the carabiner body from the second portion of the carabiner body when the second gate is closed. The method further includes using a key to open the first gate toward the first portion while sliding the key on the carabiner body. The method further includes sliding the key around the carabiner body. The method further includes using the key to open the second gate. The method further includes sliding the key into the second portion. In one alternative, the method further comprises manually opening the second gate and sliding the key into the first portion. [Brief explanation of the drawings]
[0005] [Figure 1] 1A and 1B show an embodiment of a G carabiner.
[0006] [Figure 2] FIG. 2 is a left side view of the G carabiner of FIG. 1. [Figure 3] FIG. 2 is a right side view of the G carabiner of FIG. 1.
[0007] [Figure 4] FIG. 2 is a front view of the G carabiner of FIG. 1.
[0008] [Figure 5] FIG. 2 is a rear view of the G carabiner of FIG. 1.
[0009] [Figure 6] FIG. 2 is a bottom view of the G carabiner of FIG. 1. [Figure 7] FIG. 2 is a top view of the G carabiner of FIG. 1.
[0010] [Figure 8] FIG. 2 shows the G carabiner of FIG. 1 with the gate removed.
[0011] [Figure 9] 1A and 1B show an embodiment of a G carabiner.
[0012] [Figure 10] FIG. 10 is a front view of the G carabiner of FIG.
[0013] [Figure 11] FIG. 10 is a rear view of the G carabiner of FIG.
[0014] [Figure 12] FIG. 10 is a left side view of the G carabiner of FIG. [Figure 13] FIG. 10 is a right side view of the G carabiner of FIG.
[0015] [Figure 14] FIG. 10 is a bottom view of the G carabiner of FIG. [Figure 15] FIG. 10 is a top view of the G carabiner of FIG.
[0016] [Figure 16] FIG. 10 shows the G carabiner of FIG. 9 with the gate removed.
[0017] [Figure 17] 1A and 1B show an embodiment of a G carabiner. [Figure 18] 1A and 1B show an embodiment of a G carabiner. [Figure 19] 1A and 1B show an embodiment of a G carabiner. [Figure 20] 1A and 1B show an embodiment of a G carabiner. [Figure 21] 1A and 1B show an embodiment of a G carabiner. [Figure 22] 1A and 1B show an embodiment of a G carabiner. [Figure 23] 1A and 1B show an embodiment of a G carabiner. [Figure 24] 1A and 1B show an embodiment of a G carabiner.
[0018] [Figure 25] A diagram showing another embodiment of the G carabiner. [Figure 26] A diagram showing another embodiment of the G carabiner. [Figure 27] A diagram showing another embodiment of the G carabiner. [Figure 28] A diagram showing another embodiment of the G carabiner. [Figure 29] A diagram showing another embodiment of the G carabiner. [Figure 30] A diagram showing another embodiment of the G carabiner. [Figure 31] A diagram showing another embodiment of the G carabiner. [Figure 32] A diagram showing another embodiment of the G carabiner. DETAILED DESCRIPTION OF THE INVENTION
[0019] Certain terms are used herein for convenience and should not be construed as limiting the embodiments of the key-optimized double-gate carabiner (G-Biner). Although the carabiner is referred to herein as a G-carabiner, this device is not limited to G-shaped devices. In many embodiments, the G-carabiner includes two gates and a biner (carabiner) frame. The two gates are oriented to hold a keyhole, a ring, an object with an opening, or other object with a ring-like shape (not necessarily circular) (collectively referred to as a ring). The G-carabiner can also hold any object with an opening, such as a rope or string with an opening. For example, G-carabiner embodiments can be used with or incorporated into string and rope loops to tie down objects, such as tent strings or tarps. The G-carabiner is useful for any device where the gate opens when the device is slid onto the carabiner frame, and the gate is restricted when the ring is slid to the other side.
[0020] FIG. 1 illustrates one embodiment of a G carabiner 100. The G carabiner 100 is formed with a carabiner body. The body is typically formed from a material such as metal, composite, or plastic. The G carabiner 100 includes an upper carabiner section 110 and a lower carabiner section 120. The G carabiner 100 includes a first gate 130. The first gate 130 connects to the upper carabiner section 110 at a rest 140. The G carabiner 100 includes a second gate 150. The second gate 150 rests against a stop 160. Opposite the stop 160 is a notch 170, allowing the second gate to flex downward. The G carabiner 100 also includes a G arm 121. In some embodiments, the G arm 121 can be removed, and the second gate 150 can simply be attached to the carabiner body below the attachment point of the first gate. In this case, there may effectively be no G-arm. Alternatively, the length or size of the G-arm 121 may be increased. In some alternatives, the thickness of the carabiner body may accommodate the key and the opening that the key comprises. In another alternative, the carabiner body may be thick enough not to accommodate the key. Many variations in size and all other shapes are possible.
[0021] In operation, a ring or aperture key may be pushed inward against the gate 130. The ring or aperture key then slides over and around the main hook portion 180. The ring or aperture key then slides into the gate 150. The continued sliding of the ring or aperture key depresses the second gate 150, sliding it into the lower carabiner area 120. Once the ring or aperture key is placed in the lower carabiner area 120, the ring or aperture key cannot slide back past the second gate 150 unless the user pushes the second gate 150 downward to slide the ring or aperture key. In this manner, an object, such as a key, can be quickly captured and placed in the lower carabiner area 120 past the second gate 150 in a relatively secure configuration. The upper carabiner area may then be attached to an object, such as a belt loop, through the first gate. In this way, a key with a ring or opening can be quickly attached to the G carabiner 100 without the risk of the key being unintentionally released from the lower carabiner section 120. In a typical manner, the ring or key must pass through two gates instead of the one gate of a regular carabiner before it can fall off or get lost.
[0022] In the illustrated embodiment, the G carabiner 100 has a generally oval shape with the G arm 190 angled inward. The G arm 190 provides an area for mounting the second gate 150 inside. Alternatively, the G carabiner need not be G-shaped. The main principle of many embodiments is that the two gates open in the same sliding direction relative to the ring or key on the G carabiner, but are difficult to open in the opposite sliding direction. Furthermore, many embodiments have two carabiner mounting areas: an outer (or upper) area and an inner (or lower) area.
[0023] Figures 2 and 3 are left and right side views of the G carabiner 100. Figure 4 is a front view of the G carabiner 100. Figure 5 is a rear view of the G carabiner 100. Figures 6 and 7 are bottom and top views of the G carabiner 100. Figure 8 shows the G carabiner 100 with the gates 130 and 150 removed. In this view, the G-arm 190 is clearly visible and the mounting hole for the gate 150 is shown. The G-arm 190 provides a mounting area and does not interfere with the operation of the gate 130. If the intersection 810 of the G-arm 190 is tilted too far toward the hook area 820, the gate 130 may not function properly (or at least not function sufficiently to fully open).
[0024] FIG. 9 shows another embodiment of a G carabiner 900. The G carabiner 900 is typically larger than the G carabiner 100. Therefore, the G arm 990 is longer. The G carabiner 900 is formed to have a carabiner body. The body is typically formed from a material such as metal, composite material, or plastic. The G carabiner 900 has an upper carabiner section. 910 and a lower carabiner section 920. The G carabiner 900 has a first gate 930. The first gate 930 connects to the upper carabiner section 910 at a receiving portion 940. The G carabiner 900 has a second gate 950. The second gate 950 rests against a stop 960. Opposite the stop 960 is a notch 970, allowing the second gate to flex downward.
[0025] In operation, a ring or aperture key may be pushed inward against the gate 930. The ring or aperture key then slides over and around the main hook portion 980. The ring or aperture key then slides into the gate 950. The continued sliding of the ring or aperture key depresses the second gate 950, sliding it into the lower carabiner area 920. Once the ring or aperture key is placed in the lower carabiner area 920, the ring or aperture key cannot slide back past the second gate 950 unless the user pushes the second gate 950 downward to slide the ring or aperture key. In this manner, an object, such as a key, can be quickly captured and placed in the lower carabiner area 920 past the second gate 950 in a relatively secure configuration. The upper carabiner area may then be attached to an object, such as a belt loop, through the first gate. In this way, a key with a ring or opening can be quickly attached to the G carabiner 900 without fear of the key being unintentionally released from the lower carabiner area 920.
[0026] In the illustrated embodiment, the G carabiner 900 has a generally oval shape with the G arm 990 tilting inward. The G arm 990 provides an area for mounting the second gate 950 inside. Alternatively, the G carabiner need not be G-shaped. The main principle of many embodiments is that the two gates open in the same sliding direction relative to the ring or key on the G carabiner, but are difficult to open in the opposite sliding direction. Furthermore, many embodiments have two carabiner mounting areas: an outer (or upper) area and an inner (or lower) area.
[0027] Figures 10 and 11 are front and back views of the G carabiner 900. Figure 12 is a left side view of the G carabiner 900. Figure 13 is a right side view of the G carabiner 900. Figures 14 and 15 are bottom and top views of the G carabiner 900. Figure 16 shows the G carabiner 900 with the gates 930 and 950 removed. In this view, the G-arm 990 is clearly visible and the mounting holes for the gate 950 are shown. The G-arm 990 provides an attachment area and does not interfere with the operation of the gate 930. If the intersection portion 1610 of the G-arm 990 is angled too far toward the hook region 1620, the gate 930 may not function properly (or at least not function sufficiently to fully open).
[0028] Figures 17-24 show one embodiment of the G carabiner 1700. This embodiment illustrates how the dimensions may vary slightly in appearance for certain embodiments with a shorter G arm 1710. Figures 18 and 19 show the front and back views of the G carabiner 1700. Figure 20 shows a left side view of the G carabiner 1700. Figure 21 shows a right side view of the G carabiner 1700. Figures 22 and 23 show bottom and top views of the G carabiner 1700. Figure 24 shows the G carabiner 1700 with the gates 2400 and 2410 removed. In this view, the G arm 1710 is clearly visible, and the mounting holes for the gate 2410 are shown. The G arm 1710 provides an attachment area and does not interfere with the operation of the gate 2410.
[0029] Figures 25-32 show one embodiment of the G carabiner 2500. This embodiment illustrates how dimensions may vary slightly in appearance for certain embodiments with a shorter G arm 2510. Figures 26 and 27 show front and back views of the G carabiner 2500. Figure 28 shows a left side view of the G carabiner 2500. Figure 29 shows a right side view of the G carabiner 2500. Figures 30 and 31 show bottom and top views of the G carabiner 2500. Figure 32 shows the G carabiner 1700 with the gates 3200 and 3210 removed. In this view, the G arm 2510 is clearly visible, and the mounting holes for the gate 3210 are shown. The G arm 2510 provides an attachment area and does not interfere with the operation of the gate 3210.
[0030] While certain embodiments have been described in detail in the foregoing detailed description, those skilled in the art will understand that various modifications and alternatives to those details may be developed in light of the overall teachings of the present disclosure and its broad inventive concepts. It should therefore be understood that the scope of the present disclosure is not limited to the particular examples and implementations disclosed herein, but is intended to cover modifications within its spirit and scope as defined by the appended claims and any equivalents thereof.
Claims
1. 1. A carabiner device, comprising: a carabiner body having a first side, a second side opposite the first side, and a first opening formed in the first side; A first gate pivotally supported on the first side of the carabiner body and configured to open and close the first opening; a second gate journalled to the carabiner body, the second gate defining a first area and a second area when closed and providing a second opening in the second area when open; the first gate, when opened, provides a first opening to the first region; the first gate is configured to be opened by rotation in a first rotational direction, and the second gate is configured to be opened by rotation in the first rotational direction; A carabiner device wherein the first gate contacts a first stop disposed on the first side when closed, and the second gate contacts a second stop disposed on the second side when closed.
2. 2. The carabiner of claim 1, wherein the first gate opens inward in the first rotational direction on the carabiner body.
3. 3. The carabiner of claim 2, wherein the second gate opens inward in the first rotation direction on the carabiner body and closes against the second stop in the opposite direction to the first rotation direction.
4. 4. The carabiner of claim 3, wherein the carabiner body has a notch that allows the second gate to rotate in the first rotational direction.
5. 2. The carabiner of claim 1, wherein the carabiner body has a thickness that allows a key having an opening to slide along the carabiner body through the opening.
6. 2. The carabiner of claim 1, wherein the first gate is coupled to the carabiner body at approximately the center of the carabiner body adjacent the first opening or below the center of the carabiner body.
7. 7. The carabiner of claim 6, wherein the second gate is pivotally supported on the carabiner body, and the first gate is connected to the carabiner body on the first side below the pivoted position.
8. 2. The carabiner of claim 1, further comprising an arm formed on the carabiner body and extending inwardly between the first and second regions.
9. 9. The carabiner of claim 8, wherein the second gate is journaled on an inwardly extending portion of the arm.
10. 9. The carabiner of claim 8, wherein the carabiner body including the arms forms a G-shape.
11. 1. A method of using a carabiner device, comprising: The carabiner device a carabiner body having a first side, a second side opposite the first side, and a first opening formed on the first side; A first gate pivotally supported on the first side of the carabiner body and configured to open and close the first opening; a second gate journaled to the carabiner body, the second gate defining a first area and a second area when the second gate is closed and providing a second opening in the second area when the second gate is open; the first gate, when opened, provides a first opening to the first region; the first gate is configured to be opened by rotation in a first rotational direction, and the second gate is configured to be opened by rotation in the first rotational direction; The method comprises: and sliding an object having an opening into the carabiner body while using the object to open the first opening through the first gate and enter the first area; sliding the object around the carabiner body; using the object to open the second gate; Sliding the object into the second region; This includes: A method of using a carabiner device, wherein the first gate contacts a first stop located on the first side when closed, and the second gate contacts a second stop located on the second side when closed.
12. 12. The method of claim 11, wherein the first gate opens inward in the first rotational direction on the carabiner body.
13. 13. The method of claim 12, wherein the second gate opens inward in the first direction of rotation on the carabiner body and closes against a stop in the direction opposite the first direction of rotation.
14. 14. The method of claim 13, wherein the carabiner body includes a notch that allows the second gate to rotate in the first rotational direction.
15. 12. The method of claim 11, wherein the carabiner body has a thickness that allows a key having an opening to slide along the carabiner body through the opening.
16. 12. The method of claim 11, wherein the first gate is coupled to the carabiner body at approximately the center of the carabiner body adjacent the first opening or below the center of the carabiner body.
17. 17. The method of claim 16, wherein the second gate is pivoted to the carabiner body, and the first gate is pivoted to the carabiner body on the first side below the pivoted position.
18. 12. The method of claim 11, further comprising forming an arm on the carabiner body and extending inwardly between the first region and the second region.
19. 20. The method of claim 18, wherein the second gate is journaled on an inwardly extending portion of the arm.
20. 20. The method of claim 18, wherein the carabiner body including the arms forms a G-shape.
Citation Information
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