Watch band with hook and loop fastener
The hook-and-loop mechanism in watch bands allows for secure and comfortable fit adjustment, addressing fit issues in conventional bands by enabling easy adjustment and preventing disengagement, enhancing user convenience and stability.
Patent Information
- Application Number
- JP2022068443
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2017-07-28
- Filing Date
- 2022-04-18
- Publication Date
- 2026-01-13
- Estimated Expiration
- 2038-07-11
AI Technical Summary
Conventional watch bands often provide inadequate fit adjustment, leading to discomfort and insecurity, especially during high-intensity activities, and require specialized tools or expertise for size adjustment.
A hook-and-loop attachment mechanism with adjustable overlap between inner and outer portions of the watch band, allowing for secure and comfortable fit adjustment without tools, featuring woven loops for engagement and contact surfaces for ventilation.
Enables easy and secure fit adjustment, providing comfort and stability during various activities while preventing accidental disengagement, with enhanced user convenience and versatility.
Smart Images

Figure 0007797294000001 
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Figure 0007797294000003
Abstract
Description
[Technical Field]
[0001] This application claims the benefit of and priority to U.S. Patent Application No. 15 / 663,654, filed July 28, 2017, entitled "WATCHBANDS WITH HOOK AND LOOP FASTENERS," the disclosure of which is incorporated herein by reference in its entirety and for all purposes.
[0002] [Technical field] FIELD OF THE INVENTION The present disclosure relates generally to fastening wearable devices, and more particularly to watch bands having hook and loop fasteners. [Background technology]
[0003] Some electronic devices can be removably attached to a user. For example, a wristwatch or fitness / health tracking device can be attached to a user's wrist by joining the free ends of the watch band together. Often, watch bands can be available with limited fit adjustment increments. For example, some bands have small, user-adjustable sizes (e.g., buckle clasps, pins, and eyelets, etc.), while other bands have a substantially fixed size and can only be adjusted with special tools and / or expertise (e.g., fold-over clasps, deployment clasps, snap-fit clasps, etc.). Other bands can be elastic, stretch-type bands that stretch to fit around a user's wrist. The degree of comfort and securement of the electronic device can depend on the features and configuration of the watch band. [Brief explanation of the drawings]
[0004] Certain features of the subject technology are set forth in the appended claims. However, for purposes of explanation, several embodiments of the subject technology are set forth in the following figures.
[0005] [Figure 1]FIG. 1 is a perspective view of a watch on a user's wrist, according to some embodiments of the present disclosure.
[0006] [Figure 2] 2 is another perspective view of the watch of FIG. 1 on a user's wrist, according to some embodiments of the present disclosure.
[0007] [Figure 3] FIG. 1 is a side view of a watch with a watch band, according to some embodiments of the present disclosure.
[0008] [Figure 4] FIG. 1 is a plan view of a watch band according to some embodiments of the present disclosure.
[0009] [Figure 5] FIG. 5 is another view of the watch band of FIG. 4, according to some embodiments of the present disclosure.
[0010] [Figure 6] FIG. 1 is a side view of a watch with a watch band, according to some embodiments of the present disclosure.
[0011] [Figure 7] FIG. 1 is a perspective exploded view of a stopper and a base according to some embodiments of the present disclosure.
[0012] [Figure 8] 8 is a cross-sectional view of the stopper and base of FIG. 7 according to some embodiments of the present disclosure.
[0013] [Figure 9] FIG. 1 is a perspective view of a stopper and a base according to some embodiments of the present disclosure.
[0014] [Figure 10] 10 is a perspective exploded view of the stopper and base of FIG. 9 according to some embodiments of the present disclosure.
[0015] [Figure 11] FIG. 1 is a perspective view of a stopper and a base according to some embodiments of the present disclosure.
[0016] [Figure 12] FIG. 1 is a perspective exploded view of a stopper and a base according to some embodiments of the present disclosure.
[0017] [Figure 13] FIG. 1 is a perspective exploded view of a stopper and a base according to some embodiments of the present disclosure.
[0018] [Figure 14] FIG. 1 is a perspective cross-sectional view of a portion of a watch band according to some embodiments of the present disclosure.
[0019] [Figure 15] 1 is a cross-sectional view illustrating a weave pattern according to some embodiments of the present disclosure.
[0020] [Figure 16] 1 is a cross-sectional view illustrating a weave pattern according to some embodiments of the present disclosure.
[0021] [Figure 17] FIG. 1 is a perspective view of a hook pad according to some embodiments of the present disclosure.
[0022] [Figure 18] FIG. 1 is a side view of a hook pad according to some embodiments of the present disclosure.
[0023] [Figure 19] FIG. 1 is a plan view of a portion of a watch band, according to some embodiments of the present disclosure.
[0024] [Figure 20] FIG. 20 is a side view of a portion of the watch band of FIG. 19, according to some embodiments of the present disclosure.
[0025] [Figure 21]FIG. 1 is a plan view of a portion of a watch band, according to some embodiments of the present disclosure.
[0026] [Figure 22] FIG. 22 is a side view of a portion of the watch band of FIG. 21, according to some embodiments of the present disclosure.
[0027] [Figure 23] FIG. 1 is a perspective view of a portion of a watch band according to some embodiments of the present disclosure.
[0028] [Figure 24] FIG. 1 is a perspective view of a watch according to some embodiments of the present disclosure.
[0029] [Figure 25] FIG. 25 is a perspective view of the watch of FIG. 24 according to some embodiments of the present disclosure.
[0030] [Figure 26] FIG. 1 is a perspective view of a watch according to some embodiments of the present disclosure.
[0031] [Figure 27] 27 is a cross-sectional view of a portion of the watch of FIG. 26, according to some embodiments of the present disclosure.
[0032] [Figure 28] 29 is a cross-sectional view of a portion of the watch of FIG. 28, according to some embodiments of the present disclosure.
[0033] [Figure 29] FIG. 1 is a perspective view of a watch according to some embodiments of the present disclosure.
[0034] [Figure 30] FIG. 1 is a perspective view of a watch according to some embodiments of the present disclosure.
[0035] [Figure 31] FIG. 31 is a side view of the watch of FIG. 30 according to some embodiments of the present disclosure.
[0036] [Figure 32] FIG. 31 is a side view of the watch of FIG. 30 according to some embodiments of the present disclosure. DETAILED DESCRIPTION OF THE INVENTION
[0037] 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 accompanying drawings are incorporated herein and constitute a part of the detailed description. The detailed description includes specific details to provide a thorough understanding of the subject technology. However, it will be clear and apparent to those skilled in the art that the subject technology is not limited to the specific details described herein and may be practiced without these specific details. In some instances, well-known structures and components are shown in block diagram form to avoid obscuring the concepts of the subject technology.
[0038] Electronic devices, such as wristwatches or fitness / health tracking devices, can be attached to a user's wrist by a watch band. It may be desirable to maintain a secure attachment to the wrist so that the electronic device does not shift excessively or slip off the user. Securing the electronic device to the user may also be important for the function of electronic components such as biometric sensors. Additionally, it may be desirable to maximize the user's comfort while wearing the electronic device. Frequently, a secure attachment may apply an undesirable amount of force to the user's wrist. In many cases, conventional watch bands can tangle, snag, or pull on a user's hair or skin during use if the band is overly tight. In other cases, watch bands can slide along, rotate around, or otherwise be uncomfortable or bothersome to the user if the band is overly loose. These problems may be exacerbated during periods of high-intensity activity, such as while running or playing a sport.
[0039] Furthermore, adjusting the size or fit of a conventional watch band often requires multiple steps, special tools, and / or technical expertise. The size adjustment options available to users may not be sufficient to obtain a proper fit. The fit may be different and / or may be perceived differently under certain environmental (e.g., temperature, humidity) or biological conditions (e.g., sweat, inflammation). As a result, users of conventional wristwatches and / or fitness / health tracking devices may be able to select an acceptable (if not optimally comfortable) fit while retaining a tight band for a fitness / health tracking device and a loose band for a conventional wristwatch. However, some wearable electronic devices may be multi-purpose devices that provide both fitness / health tracking and timing functions. Thus, users may prefer to change the fit of their watch to suit their use. For example, a user may prefer a looser fit in timing mode and a tighter fit in fitness / health tracking mode. Therefore, a need may exist for systems and methods for dynamically adjusting the fit of a wearable electronic device.
[0040] Embodiments of the present disclosure provide a hook-and-loop attachment mechanism. The attachment mechanism provides a secure attachment to the user and also provides improved comfort. For example, loops can be woven in a pattern to engage with the hooks and provide comfortable contact with the user. The loops can be woven to form loops on the contact side of the watch band to contact the user's skin and provide moisture removal or ventilation. Embodiments of the present disclosure provide easy adjustment by the user as well as a secure attachment to avoid accidental disengagement under the action of external forces.
[0041] According to some embodiments, for example, as shown in FIG. 1 , a watch 10 includes an electronic device 12 attached to a wrist 2 with a watch band 20. The electronic device 12 may be portable or may be attached to another part of the user's body or to another device, structure, or object. The watch band 20 may be flexible and may encircle at least a portion of the user's wrist 2. By securing the electronic device 12 to a human user, the watch band 20 provides security and convenience. In some embodiments, the electronic device 12 includes a display 14 and a housing 16 for housing components. According to some embodiments, for example, as shown in FIG. 2 , the watch band 20 extends from the electronic device 12 to the opposite side of the user's wrist 2. The watch band 20 includes an inner portion 22 and an outer portion 24 that overlap and engage with each other.
[0042] According to some embodiments, as shown in FIG. 3 , the watch band 20 is adjustable to provide a secure and comfortable fit on the wrist 2 by selecting the degree of overlap between the inner portion 22 and the outer portion 24. For example, the diameter of the watch band 20 can be adjusted to suit a secure and comfortable fit on the wrist 2. The watch band 20 is removably attached to a portion of the housing 16 of the electronic device 12 using a housing connector 30. The watch band 20 is removably attached to another portion of the housing 16 of the electronic device 12 using a retaining ring 40. Thus, the watch band is detachable from the electronic device 12 and interchangeable, allowing a user to switch watch bands as needed or desired. A portion of the watch band 20 passes through a hole in the retaining ring 40, thereby defining the length of the inner portion 22 and the length of the outer portion 24 on either side of the retaining ring 40.
[0043] A contact surface 26 of the watch band 20 is positionable to contact the user's wrist 2. Along the inner portion 22, the contact surface 26 faces inward, toward the wrist 2. Along the outer portion 24, the contact surface 26 continues as an outward-facing surface. An engagement surface 28 of the watch band 20 is positionable to contact the watch band 20 itself. Along the inner portion 22, the engagement surface 28 faces outward, away from the wrist 2. Along the outer portion 24, the engagement surface 28 faces inward, toward the inner portion 22, and is opposite the portion of the engagement surface 28 that extends along the inner portion 22. A hook zone 54 is provided on the engagement surface 28 and along the outer portion 24. The hook zone 54 is positioned to engage with loops of a loop zone 52 on the engagement surface 28 and along the inner portion 22, as described further herein. The engagement surface 28 can be positioned to avoid contact with the user's wrist 2.
[0044] According to some embodiments, as shown in FIG. 4 , the housing connector 30 and stopper 50 are located at or near the end of the watch band 20. The retaining ring 40 is slidably connected to the base 32 of the watch band 20 and provides a connection with the housing 16 of the electronic device 12. The contact surface 26 extends between the housing connector 30 and the stopper 50. For example, the contact surface 26 extends to the housing connector 30 and / or the stopper 50. The contact surface 26 provides a loop extending from the base 32 to contact the wrist 2 along the inner portion 22 and to provide an outwardly directed surface along the outer portion 24.
[0045] As shown in FIG. 4 , the retaining ring 40 can have an engagement end 44 and a hole 42 through which the watch band 20 can extend. The stopper 50 has at least one cross-sectional dimension that is larger than at least one cross-sectional dimension of the hole 42. For example, the stopper 50 can have a transverse cross-sectional dimension transverse to the longitudinal axis of the watch band 20 that is larger than the transverse cross-sectional dimension of the hole 42. The retaining ring 40 further includes an engagement member for securely engaging with the housing 16 of the electronic device 12. For example, the engagement member allows the retaining ring 40 to securely engage with the housing 16 within a channel in the housing 16. The engagement member can be the same as, similar to, or different from the engagement member of the housing connector 30.
[0046] According to some embodiments, as shown in FIG. 5 , engagement surface 28 extends between housing connector 30 and stopper 50. Engagement surface 28 includes a loop zone 52 and a hook zone 54. Loop zone 52 can extend toward housing connector 30, and hook zone 54 can extend toward stopper 50. Along loop zone 52, engagement surface 28 provides loops extending from base 32 for engaging with hooks of hook zone 54. Hook zone 54 can include one or more hook pads 56 attached to base 32 for engaging with loops of loop zone 52.
[0047] 4 and 5, the portion of contact surface 26 having the loops can have an area that is greater than the area of loop zone 52 of engagement surface 28. For example, contact surface 26 can have loops along the entire length between housing connector 30 and stopper 50. Engagement surface 28 can be divided into loop zone 52 and hook zone 54.
[0048] According to some embodiments, watch band 20 slidably extends through retaining ring 40, as shown in FIG. 6 . The length of watch band 20 extending on either side of retaining ring 40 can be adjusted as desired by the user for preferred comfort and grip on the user's wrist 2. Stopper 50 can be sized and configured to prevent passage through retaining ring 40, such that a portion of watch band 20 remains within at least a portion of retaining ring 40. Stopper 50 can include features at the end of outer portion 24, along outer portion 24, at engagement surface 28, and / or at contact surface 26.
[0049] According to some embodiments, as shown in FIGS. 7 and 8 , the stopper 50 is assembled with a spring member to securely engage the base 32 of the watch band 20. The base 32 may include an engagement section 34 with which one or more portions of a shell 154 may engage. For example, one or more teeth of the shell 154 extend into holes in the engagement section 34. A bow spring 156 is provided between the shell 154 and the insert 152. When the insert 152 is placed over the shell 154, the insert 152 prevents the shell 154 from disengaging from the engagement section 34. When the bow spring 156 extends to a relaxed position within the insert 152, the bow spring 156 prevents the insert 152 from sliding off the shell 154. The cover 150 may be provided (e.g., overmolded) over at least a portion of the insert 152.
[0050] According to some embodiments, as shown in, for example, FIGS. 9 and 10 , the stopper 50 is assembled with a pin to securely engage the base 32 of the watch band 20. The base 32 may include an engagement section 34 with which one or more pins 166 may engage. For example, the one or more pins 166 may extend through holes in the engagement section 34, through holes in the shell 168, and / or through holes in the insert 162. The shell 168 may fit within at least a portion of the insert 162. The pins 166 prevent longitudinal disengagement of the engagement section 34 from the insert 162 and / or the shell 168. To prevent the pins 166 from being removed from the insert 162 and / or the shell 168, one of a number of covers 164 may be provided (overmolded, glued, snapped) over at least a portion of the insert 162 and / or the shell 168.
[0051] According to some embodiments, as shown in, for example, FIGS. 11-13 , the stopper 50 is molded onto the base 32. The stopper 50 may include one or more protrusions 198 that provide a larger cross-sectional dimension than the hole 42 in the retaining ring 40. The base 32 may include an engagement section 34 with which one or more portions of the stopper 50 may engage. As shown in FIG. 12 , the engagement section 34 may include a hole. As shown in FIG. 13 , the engagement section 34 may include a notch. The stopper 50 may be overmolded onto the engagement section 34 of the base 32 such that a portion of the stopper 50 extends into the cavity of the engagement section 34 for secure engagement therewith.
[0052] According to some embodiments, as shown in FIG. 14 , for example, the watch band 20 includes loops 80 on the base 32. The loops 80 may be formed by loop threads extending from and back to the base 32. Each loop thread may be woven into the base 32 and may extend onto or beyond the contact surface 26 and the engagement surface 28. The base 32 may be formed from base threads 60 and / or elastic threads 72. The elastic threads 72 extend longitudinally, for example, toward the housing connector 30 and the stopper 50. The base threads 60 extend transversely to the elastic threads 72 and / or loop threads. The elastic threads 72 are inverted at one or more ends of the base 32 to face in the opposite direction.
[0053] As used herein, a loop is defined by a length of structure that encloses a closed space. A loop can be formed by a thread even if the thread is not connected to itself to enclose a closed space. For example, a "loop" of a thread can extend from a base and return to the base such that the thread and base together enclose a closed space.
[0054] The materials selected for the yarns can be selected to facilitate manufacturing and use as described herein. The yarns can include natural and / or synthetic fibers. The yarns can include polymers, copolymers, or polymer blends. The yarns can include nylon, polyester, polyurethane, and combinations thereof, including spandex. The yarns can include single filaments and / or yarn bundles. The elastic yarn 72 can be a material that facilitates elongation. The base yarn 60 and loop yarns can be yarns of the same or similar materials. The base yarn 60 can have a melting point lower than that of the loop yarn.
[0055] According to some embodiments, one or more engagement loop yarns are used to form engagement loops 80 in engagement surface 28, as shown, for example, in FIG. 15. The engagement loops 80 are shaped and positioned to enhance engagement with the hooks. For example, the shape, size, number, and distribution of the engagement loops 80 can facilitate quick and secure engagement with the hooks. Such features include the fabric that forms the engagement loops 80.
[0056] 15, first engaging loop yarn 82, second engaging loop yarn 84, and third engaging loop yarn 86 are woven into the same base 32. First engaging loop yarn 82, second engaging loop yarn 84, and third engaging loop yarn 86 may be separate yarns or may be segments of one or more continuous yarns. At least some segments of the engaging loop yarns, including engaging loop 80, extend parallel to one another along the base 32.
[0057] As shown in FIG. 15 , a first engagement loop yarn 82 forms an engagement loop 80 that extends away from the engagement surface 28 of the base 32 and along its longitudinal length. The longitudinal length of the engagement loop 80 corresponds to the number of base yarns 60 between which the engagement loop 80 extends from the base 32. For example, as shown in FIG. 15 , the engagement loop 80 extends longitudinally over five base yarns 60 (i.e., representing the combined number of base yarns 60 on opposing surfaces of the base 32). Other longitudinal lengths and numbers of skipped base yarns 60 can be applied to characterize the engagement loop 80, as described further herein. For example, the engagement loop yarn can form an engagement loop 80 that extends over three, four, five, six, seven, eight, nine, ten, or more than ten base yarns 60.
[0058] Between each engagement loop 80, the first engagement loop yarn 82 alternately extends between and / or across opposing sides of the base 32 (i.e., the contact surface 26 and the engagement surface 28). On each side, the first engagement loop yarn 82 extends at least partially around a base yarn 60 and then reverses to re-enter the base 32. The first engagement loop yarn 82 reverses back to the base 32 without forming an engagement loop 80 or extending longitudinally so as to jump over any base yarn 60. In this configuration, the reversal of the first engagement loop yarn 82 is toward the base 32, rather than up and away from the base 32 as the engagement loop 80. The extent of the first engagement loop yarn 82 between adjacent engagement loops 80 corresponds to the number of consecutive base yarns 60 around which the first engagement loop yarn 82 reverses. For example, as shown in Figure 15, a first engagement loop yarn 82 can reverse around seven consecutive base yarns 60 between adjacent engagement loops 80. Other numbers of contacting base yarns 60 can be applied to characterize the first engagement loop yarn 82, as described further herein. For example, an engagement loop yarn can reverse around 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, or more than 14 consecutive base yarns 60 between adjacent engagement loops 80.
[0059] As shown in FIG. 15 , different yarns are staggered such that the engagement loops 80 of one yarn are formed at a different longitudinal position than the engagement loops 80 of another yarn. For example, the engagement loops 80 of a first engagement loop yarn 82 can be formed at a different longitudinal position than the engagement loops 80 formed by a second engagement loop yarn 84. Furthermore, the engagement loops 80 of a third engagement loop yarn 86 can be formed at a different longitudinal position than the engagement loops 80 formed by the first engagement loop yarn 82 and the second engagement loop yarn 84. Such a configuration allows the engagement loops 80 to be distributed further apart from one another, thereby providing a greater opportunity for hook engagement. Thus, the engagement loops 80 of one yarn extend over a different set of base yarns 60 than the set of base yarns 60 over which the engagement loops 80 of another yarn extend. Furthermore, the engagement loops 80 of one yarn reverse around a different set of consecutive base yarns 60 than the set of consecutive base yarns 60 around which the other yarn reverses.
[0060] According to some embodiments, one or more contact loop yarns are used to form contact loops 90 in contact surface 26, as shown, for example, in FIG. 16. Contact loops 90 are shaped and positioned to enhance contact with the user's wrist 2. For example, the shape, size, number, and distribution of contact loops 90 promote user comfort, breathability, and moisture removal capabilities. Such features can include a fabric that forms contact loops 90.
[0061] 16, first contact loop yarn 92 and second contact loop yarn 94 can be woven into the same base 32. First contact loop yarn 92 and second contact loop yarn 94 can be separate yarns or can be segments of one or more continuous yarns. At least some segments of the contact loop yarns, including contact loop 90, extend parallel to one another along the base 32.
[0062] As shown in FIG. 16 , a first contact loop yarn 92 forms a contact loop 90 that extends away from the contact surface 26 of the base 32 and along its longitudinal length. The longitudinal length of the contact loop 90 corresponds to the number of base yarns 60 between which the contact loop 90 extends from the base 32. For example, as shown in FIG. 15 , the contact loop 90 extends longitudinally over five base yarns 60 (i.e., representing the combined number of base yarns 60 on opposing sides of the base 32). Other longitudinal lengths and numbers of skipped base yarns 60 can be applied to characterize the contact loop 90, as further described herein. For example, the contact loop yarn can form a contact loop 90 that extends over three, four, five, six, seven, eight, nine, ten, or more than ten base yarns 60.
[0063] The longitudinal length of one or more of the engagement loops 80 may be the same as or different from the longitudinal length of one or more of the contact loops 90. For example, the length may be uniform for both the engagement loops 80 on the engagement surface 28 and the contact loops 90 on the contact surface 26. Alternatively, or in combination, the loops may have different sizes to accommodate the different functions of contact with the user and engagement with the hook.
[0064] Between each contact loop 90, the first contact loop yarn 92 alternately extends between and / or across opposing sides of the base 32 (i.e., the contact surface 26 and the engagement surface 28). On each side, the first contact loop yarn 92 extends at least partially around a base yarn 60 and then reverses to re-enter the base 32. The first contact loop yarn 92 reverses back to the base 32 without forming a contact loop 90 or extending longitudinally past any base yarn 60. In this configuration, the first contact loop yarn 92 reverses toward the base 32 rather than up and away from the base 32 as a contact loop 90. The extent of the first contact loop yarn 92 between adjacent contact loops 90 corresponds to the number of consecutive base yarns 60 around which the first contact loop yarn 92 reverses. 16, the first contacting loop yarn 92 reverses around three consecutive base yarns 60 between adjacent contacting loops 90. Other numbers of contacting base yarns 60 may be applied to characterize the first contacting loop yarn 92, as further described herein. For example, the contacting loop yarn may reverse around two, three, four, five, six, seven, eight, or more than eight consecutive base yarns 60 between adjacent engaging loops 80.
[0065] The number of inversions between adjacent engagement loops 80 may be the same as or different from the number of inversions between adjacent contact loops 90. For example, the number of inversions may be different to accommodate different functions of user contact and hook engagement. The number of inversions between adjacent engagement loops 80 may be greater than the number of inversions between adjacent contact loops 90, thereby allowing the engagement loops 80 to remain more securely fixed over multiple hook engagement and disengagement operations. A fewer number of inversions between adjacent contact loops 90 may also result in a higher density of contact loops 90 in a given area of the base 32. For example, if the engagement loops 80 and contact loops 90 have the same or substantially equal lengths, a fewer number of inversions between adjacent contact loops 90 results in a greater number of contact loops 90 than engagement loops 80 in a given area. A higher density of contact loops 90 provides greater comfort to the user by distributing force over a greater number of contact loops 90.
[0066] As shown in FIG. 16 , different yarns can be staggered, such that the contact loops 90 of one yarn are formed at a different longitudinal position than the contact loops 90 of another yarn. For example, the contact loops 90 of a first contact loop yarn 92 can be formed at a different longitudinal position than the contact loops 90 formed by a second contact loop yarn 94. Such a configuration allows the contact loops 90 to be distributed further apart from one another, thereby more evenly distributing force and pressure on the user's wrist 2. Thus, one yarn can extend over a different set of base yarns 60 than the set of base yarns 60 over which the contact loops 90 of another yarn extend. Furthermore, one yarn can reverse around a different set of consecutive base yarns 60 than the set of consecutive base yarns 60 around which another yarn reverses.
[0067] One or more of the engagement loops 80 and one or more of the contact loops 90 may be segments of a continuous thread. For example, a single thread may extend through the base 32 and form loops on both the engagement surface 28 and the contact surface 26. By way of further example, a single thread may form an engagement loop 80 on the engagement surface 28 between the ends of the base 32, reverse direction, and form a contact loop 90 on the contact surface 26 between the ends of the base.
[0068] According to some embodiments, the engaging loops 80 and contacting loops 90 are formed and secured by a weaving process. The base 32 can be stretched longitudinally to increase the longitudinal spacing between the base yarns 60. The longitudinally extending elastic yarns 72 can facilitate stretching based on the elastic properties of the elastic yarns 72. The loop yarns can be woven into the base 32 while the base 32 is in a stretched configuration, as described herein. When the base 32 returns to an unstretched or relaxed configuration, the engaging loops 80 and contacting loops 90 rise from the base 32 due to shortening between the positions where the engaging loops 80 and contacting loops 90 extend from the base 32. The loop yarns and base 32 can be heated, causing at least the base yarns 60 to at least partially melt and fuse and bond to the loop yarns that contact and invert around the base yarns 60. Thus, a secure engagement between the loop yarns and the base yarns 60 is achieved. The strength of the bond can be proportional to the number of inversions made by the loop yarns around the base yarns 60.
[0069] The watch band can be made in a variety of colors with visual effects resulting from the designs described herein. At least some of the contact loop yarns, engagement loop yarns, contact base yarns, and engagement base yarns can be a different color than the other yarns in the watch band 20. Several yarns can be combined to create custom color combinations as desired. Colors can be selected based on the appearance of a particular yarn in the weaving patterns described herein. Furthermore, because portions of the yarns are elevated away from the surface, the weaving pattern creates different visual effects when viewed from different angles. For example, at some viewing angles, rows of loops visually exist on their own while blocking the view of many of the base yarns. At these angles, the colors selected for the loop yarns are relatively more prominent. At other viewing angles, the base yarns are more easily seen. At these angles, the colors selected for the base yarns are relatively more prominent. Thus, the apparent color, pattern, and design change when the watch band 20 is viewed from different angles.
[0070] According to some embodiments, the hook pad 56 may include one or more hooks 58 for engaging the loops, as shown, for example, in Figure 17. The hooks 58 may be distributed across the surface of the hook pad 56. The number, density, size, and / or shape of the hooks 58 may be constant across the surface of the hook pad 56 or may vary. The periphery of the hook pad 56 may include one or more curves to reduce the steepness of the edges.
[0071] According to some embodiments, as shown in FIG. 18 , the hook pad 56 includes a transition from the top surface to the bottom surface that reduces the abrupt edge. For example, the hook pad 56 can include an edge region 62 along the periphery of the hook pad 56. The edge region 62 can include one or more surface features that provide the transition. For example, as shown in FIG. 18 , the hook pad 56 can include a rounded bevel. Other shapes and geometries can be provided. For example, the edge region 62 can include one or more chamfers, fillets, scallops, undulations, and / or textures. The edge region 62 reduces the abruptness of a right-angled corner or edge. The transition provided by the edge region 62 provides comfort upon contact with the user and prevents snagging on objects. According to some embodiments, the hook pad 56 is formed from a sheet that includes the hooks 58. The hook pad 56 can be cut from the sheet using, for example, a die cut. The edge region 62 may be formed by cutting or shaping a region of the hook pad 56 to have the desired shape.
[0072] The number, density, size, and / or shape of hook pads 56 may be constant or may vary across the surface of hook zone 54. Hook pads 56 may be attached to base 32 by one or more of welding (e.g., laser welding), lamination, adhesive bonding, interweaving, or combinations thereof.
[0073] According to some embodiments, as shown in FIGS. 19 and 20 , a plurality of hook pads 56 are provided along a hook zone 54 of the watch band 20. The hook zone 54 is adjacent to the loop zone 52 of the watch band 20. The hook zone 54 provides a length of the base 32 that does not have any loops extending therefrom. The hook zone 54 can be adjacent to the stopper 50. Each hook pad 56 is longitudinally spaced apart from one or more longitudinally adjacent hook pads 56. The interruptions between the hook pads 56 provide greater flexibility than would be provided by a continuous length of one or more hook pads 56. Thus, the hook zone 54 with the interruptions has greater overall flexibility. One or more hook pads 56 at or near the end of the watch band 20 can provide improved engagement. For example, the endmost hook pads 56 of the hook pads 56 may be longer than other hook pads 56 located within the hook zone 54 that are further from the stopper 50. Other features may be provided, such as a different number, density, distribution, size, and / or shape of hooks in one or more hook pads 56 at or near the end of the watch band 20 compared to the other hook pads 56. The unique features of the endmost hook pads 56 may provide a stronger engagement near the end of the watch band 20 to withstand forces that would disengage the watch band 20 from itself. A greater number of hook pads 56 with short interruptions may also provide flexibility, along with a greater surface area of the hook zone 54 occupied by the hook pads 56.
[0074] According to some embodiments, as shown in FIGS. 21 and 22 , the stopper 50 includes an engagement element 64. Alternatively or in combination with the hook pads 56 at the base 32 along the hook zone 54, the engagement element 64 of the stopper 50 can include hooks or other features for engaging another portion of the watch band 20. The engagement element 64 can be attached to the stopper 50 by one or more of welding (e.g., laser welding), lamination, adhesive bonding, interweaving, or combinations thereof. The hooks of the engagement element 64 can engage with the loops of the loop zone 52. The engagement element 64 of the stopper 50 can be larger than the hook pads 56 located within the hook zone 54. Other features can be provided, such as a different number, density, distribution, size, and / or shape of hooks on the engagement element 64 compared to the hook pads 56. The unique features of the engagement element 64 provide a stronger engagement to the stopper 50 to withstand forces that disengage the stopper 50 from engaging another portion of the watch band 20. Alternatively, or in combination, engagement element 64 may include a magnet, a clasp, or another mechanism for removably engaging another portion of watch band 20. Engagement element 64 of stopper 50 advantageously provides engagement near the terminal end of watch band 20. This configuration helps facilitate engagement along a greater range of watch band 20. Additionally, forces acting on stopper 50 prevent stopper 50 from continuing to engage other portions of watch band 20.
[0075] According to some embodiments, as shown in FIG. 23 , for example, hook section 66 is located at or near the terminal end of watch band 20. Stopper 50 can be located between hook zone 54 and hook section 66. Both hook zone 54 and hook section 66 can include one or more hook pads 56. Thus, hooks in both hook zone 54 and hook section 66 provide engagement with other portions (e.g., loops) of watch band 20. Hook section 66 advantageously provides engagement near the terminal end of watch band 20 to withstand forces that would disengage watch band 20 from itself.
[0076] According to some embodiments, as shown in FIGS. 24 and 25 , the capture band 110 retains the stopper 50 when it is inserted. The capture band 110 elastically stretches and / or deforms to accommodate the stopper 50 and / or the outer portion 24 of the watch band 20. As shown in FIGS. 24 and 25 , a user can insert the stopper 50 through at least a portion of the capture band 110. The capture band 110 then surrounds a portion of the inner portion 22 and the outer portion 24. In such a configuration, the capture band 110 provides additional support to keep the outer portion 24 engaged with and / or in contact with the inner portion 22. The capture band 110 is slidable along the longitudinal length of the inner portion 22 and / or the outer portion 24. For example, the capture band 110 can be adjusted to accommodate and position near the stopper 50. The capture band 110 is resilient and sized to press the outer portion 24 and the inner portion 22 together. A user can remove the stopper 50 and outer portion 24 from the capture band 110 by sliding the capture band 110 over the outer portion 24 and the stopper 50.
[0077] According to some embodiments, as shown in FIGS. 26-45 , the slidable shield 112 retains the stopper 50 when connected to the shield 112. The slidable shield 112 is adjustable to align with the stopper 50. For example, as shown in FIG. 27 , a user can place the outer portion 24 against the inner portion 22 and bring the stopper 50 close to the inner portion 22. As shown in FIG. 28 , the slidable shield 112 is slidable along the inner portion 22 to align with the stopper 50. The slidable shield 112 can contact and / or extend over at least a portion of the stopper 50. In such a configuration, the slidable shield 112 provides additional support to keep the stopper 50 engaged and / or in contact with the inner portion 22. Forces that would otherwise pull the stopper away from the inner portion 22 are deflected by the shielding provided by the slidable shield 112. For example, stopper 50 and slidable shield 112 may include a mechanism (e.g., a magnet, a hook and loop, a clasp) that facilitates engagement between stopper 50 and slidable shield 112. A user may remove stopper 50 from slidable shield 112 by sliding slidable shield 112 and stopper 50 away from each other.
[0078] According to some embodiments, as shown in FIG. 29 , the slidable housing 116 retains the stopper 50 when connected to the housing 116. The slidable housing 116 is adjustable to align with the stopper 50. For example, as shown in FIG. 29 , a user can place the outer portion 24 against the inner portion 22 and bring the stopper 50 close to the inner portion 22. The slidable housing 116 is slidable along the inner portion 22 to align with the stopper 50. The slidable housing 116 and the stopper 50 can have complementary shapes such that the stopper 50 fits tightly within the slidable housing 116 when the stopper 50 is pressed against it. For example, the stopper 50 can be sized slightly larger than the slidable housing 116. Alternatively, or in combination, the slidable housing 116 and the stopper 50 can have complementary features, such as a button connection including a socket and stud, so that the stopper 50 can snap into the slidable housing 116 when pressed together. Once engaged, the slidable housing 116 provides support to keep the stopper 50 engaged therein. A user can remove the stopper 50 from the slidable housing 116 by applying sufficient force to overcome the engagement.
[0079] According to some embodiments, for example, as shown in FIGS. 30-32 , a cover strap 35 holds the stopper 50 and outer portion 24 against the inner portion 22. The cover strap 35 extends from the housing 16 of the electronic device 12, the housing connector 30, another structure opposite the retaining ring 40, and / or another portion of the watch band 20. The cover strap 35 may include hook pads 36 for engaging with loops on the outer portion 24. For example, as shown in FIG. 31 , a user may place the outer portion 24 against the inner portion 22 and bring the stopper 50 close to the inner portion 22. As shown in FIG. 32 , the cover strap 35 is placed against the outer surface of the outer portion 24. The cover strap 35 may extend over at least a portion of the stopper 50 and the outer portion 24. The hook pads 36 of the cover strap 35 may engage with loops on the outer surface of the outer portion 24. In such a configuration, the cover strap 35 provides additional support to keep the stopper 50 engaged and / or in contact with the inner portion 22. Forces that would pull the stopper off the inner portion 22 are deflected by the shielding provided by the cover strap 35. Furthermore, forces that would tend to pull the cover strap 35 away from the outer portion 24 are less likely to pull the stopper 50 away from the inner portion 22. A user can remove the cover strap 35 from the outer portion 24 by pulling with enough force to disengage the hook pad 36 from the loop on the outer surface of the outer portion 24.
[0080] The foregoing description is provided to enable those skilled in the art to practice the various embodiments described herein. 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. Accordingly, the claims are not intended to be limited to the embodiments set forth herein but are to be accorded the full scope consistent with the claims literal meaning. References to elements in the singular are not intended to mean "one and only one" unless specifically noted, but rather "one or more." The term "some" refers to one or more unless otherwise specified. Pronouns in the masculine (e.g., he) include the feminine and neuter genders (e.g., she and its), and vice versa. Headings and subheadings, if any, are used for convenience only and are not intended to limit the disclosure herein.
[0081] The terms "configured to," "operable to," and "programmed to" do not imply any specific tangible or intangible modification of the subject matter, but rather are intended to be used interchangeably.
[0082] The use of a phrase such as "aspect" does not imply that such aspect is essential to the technology of the present application or that such aspect applies to all configurations of the technology of the present application. The disclosure of one aspect may apply to all configurations, or to one or more configurations. A phrase such as "an aspect" refers to one or more aspects, and vice versa. A phrase such as "configuration" does not imply that such configuration is essential to the technology of the present application or that such configuration applies to all configurations of the technology of the present application. The disclosure of a configuration may apply to all configurations, or to one or more configurations. A phrase such as "a configuration" refers to one or more configurations, and vice versa.
[0083] The word "example" is used herein to mean "serving as an example or illustration." Any aspect or design described herein is not necessarily to be construed as preferred or advantageous over other aspects or designs.
[0084] All structural and functional equivalents to the elements of the various aspects described throughout this disclosure that are known or later become known to those skilled in the art are intended to be expressly incorporated herein by reference and encompassed by the claims. Furthermore, nothing disclosed herein is intended to be dedicated 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, the element is recited using the phrase "step for." Furthermore, to the extent the terms "include," "have," or the like are used in the specification or claims, such terms are intended to be inclusive in the same manner as the term "comprise," as "comprise" is interpreted when used as a transitional term in a claim.
Claims
1. There is a watch band, a base including a base yarn and having a first surface opposite a second surface, the first surface being a contact surface and the second surface being an engagement surface; a first yarn woven around the base yarn between the first surface and the second surface and forming a first loop on the first surface; a second yarn woven around the base yarn between the first surface and the second surface and forming a second loop on the second surface; Between adjacent second loops, the second yarn is secured around a larger number of the base yarns than the first yarn between adjacent first loops; The watch band, wherein the first loop and the second loop are configured to be elevated away from the base.
2. The watch band of claim 1 , wherein the base thread traverses the first thread and the second thread.
3. 2. The watch band of claim 1, wherein the base is formed by an elastic thread and the base thread, the elastic thread extending across the base thread and overlapping the base thread, and the elastic thread is a stretch material.
4. 10. The watch band of claim 1, wherein the density of the first loops on the first surface is greater than the density of the second loops on the second surface.
5. The watch band of claim 1 , wherein the first thread and the second thread are fused to the base thread.
6. 10. The watch band of claim 1, wherein the first thread and the second thread are segments of a continuous strand.
7. a third yarn woven around the base yarn between the first surface and the second surface and forming a third loop on the first surface, the first loop extending across the first surface at a longitudinal position different from a longitudinal position at which the third loop extends across the first surface; a fourth yarn woven around the base yarn between the first surface and the second surface and forming a fourth loop on the second surface, the second loop extending across the second surface at a longitudinal position different from a longitudinal position at which the fourth loop extends across the second surface; 10. The watch band of claim 1.
8. There is a watch band, a base including a base yarn and having a first surface opposite a second surface, the first surface being a contact surface and the second surface being an engagement surface; a first yarn woven around the base yarn between the first surface and the second surface and forming a first loop on the first surface; a second yarn woven around the base yarn between the first surface and the second surface and forming a second loop on the second surface; the distance between any pair of adjacent second loops is greater than the distance between any pair of adjacent first loops; The watch band, wherein the first loop and the second loop are configured to be elevated away from the base.
9. 9. The watch band of claim 8, wherein the base thread traverses the first thread and the second thread.
10. 9. The watch band of claim 8, wherein the base is formed by an elastic thread and the base thread, the elastic thread extending across the base thread and overlapping the base thread, and the elastic thread is a stretch material.
11. 9. The watch band of claim 8, wherein the density of the first loops on the first surface is greater than the density of the second loops on the second surface.
12. 9. The watch band of claim 8, wherein the first thread and the second thread are fused to the base thread.
13. 9. The watch band of claim 8, wherein the first thread and the second thread are segments of a continuous strand.
14. a third yarn woven around the base yarn between the first surface and the second surface and forming a third loop on the first surface, the first loop extending across the first surface at a longitudinal position different from a longitudinal position at which the third loop extends across the first surface; a fourth yarn woven around the base yarn between the first surface and the second surface and forming a fourth loop on the second surface, the second loop extending across the second surface at a longitudinal position different from a longitudinal position at which the fourth loop extends across the second surface; 9. The watch band of claim 8.
15. There is a watch band, a base including a base yarn and having a first surface opposite a second surface, the first surface being a contact surface and the second surface being an engagement surface; a first yarn woven around the base yarn between the first surface and the second surface and forming a first loop on the first surface; a second yarn woven around the base yarn between the first surface and the second surface and forming a second loop on the second surface; a total number of the first loops on the first surface is greater than a total number of the second loops on the second surface along the length of the base; The watch band, wherein the first loop and the second loop are configured to be elevated away from the base.
16. 16. The watch band of claim 15, wherein the base thread traverses the first thread and the second thread.
17. 16. The watch band of claim 15, wherein the base is formed by an elastic thread and the base thread, the elastic thread extending across the base thread and overlapping the base thread, and the elastic thread is a stretch material.
18. 16. The watch band of claim 15, wherein the density of the first loops on the first surface is greater than the density of the second loops on the second surface.
19. 16. The watch band of claim 15, wherein the first thread and the second thread are fused to the base thread.
20. 16. The watch band of claim 15, wherein the first thread and the second thread are segments of a continuous strand.
Citation Information
Patent Citations
JP1982013684U