Watch band with braided strands

The stretchable braided watch band addresses fit and security issues by adapting to user's wrist size and activity, ensuring comfort and secure attachment without complex adjustments.

JP7796814B2Active Publication Date: 2026-01-09APPLE INC
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Patent Information

Application Number
JP2024109741
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Priority Date
2020-04-09
Filing Date
2024-07-08
Publication Date
2026-01-09
Estimated Expiration
2040-04-10

AI Technical Summary

Technical Problem

Existing watch bands often fail to provide a secure and comfortable fit, adjusting poorly to user's wrist size and activity levels, and may require complex adjustments or special tools, leading to discomfort and potential detachment during physical activity.

Method used

A stretchable watch band with braided strands that adapts to the user's wrist through elasticity and strand movement, providing a secure fit without manual adjustment, and features end sections that connect reliably to the watch housing while maintaining an aesthetically pleasing appearance.

Benefits of technology

The braided watch band ensures a comfortable, secure fit that adjusts to various sizes and activities, distributing force evenly and minimizing detachment, while allowing easy attachment and detachment without visible support structures.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

To provide a stretchable watch band including braided strands that provide a comfortable fit around a wrist of a user.SOLUTION: A watch band 50 can stretch and conform to a user based on the elasticity within each strand 60 and based on the ability of the strands to move relative to each other. End sections 110 of the watch band can include attachment elements 70 that securely connect the watch band to a housing of the watch. The end sections can be configured to releasably connect to the housing in a manner reliable and easy for a user. The watch band can provide a smooth transition part from the size and / or shape of the housing to a size and / or shape of a continuous section of the watch band. The watch band can conceal portions of the watch band other than the braided strands when connected to the housing of the watch.SELECTED DRAWING: Figure 2
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Description

[Technical Field]

[0001] (CROSS-REFERENCE TO RELATED APPLICATIONS) This application claims the benefit of U.S. Provisional Application No. 62 / 834,172, entitled "WATCH BAND WITH BRAIDED STRANDS," filed April 15, 2019, and U.S. Provisional Application No. 62 / 906,638, entitled "WATCH BAND WITH BRAIDED STRANDS," filed September 26, 2019, each of which is incorporated by reference in its entirety.

[0002] FIELD OF THE INVENTION The present disclosure relates generally to fastening of wearable devices, and more particularly to watch bands having braided strands. [Background technology]

[0003] Some electronic devices may be removably attached to a user. For example, a wristwatch or fitness / health tracking device may be attached to a user's wrist by wrapping around the wrist. Often, watch bands may be available in individual fit adjustment increments. For example, some bands have user-adjustable sizes in increments (e.g., buckle clasps, pins, eyelets, etc.), while other bands have a substantially fixed size that can only be adjusted with special tools and / or expertise (e.g., fold-over clasps, deployment clasps, snap-fit ​​clasps, etc.). Other bands may be elastic, expandable bands that stretch to fit around the user's wrist. The degree of comfort and securement of the electronic device may depend on the features and placement 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 illustration, some embodiments of the subject technology are shown in the following figures.

[0005] [Figure 1] FIG. 1 is a perspective view of a watch having a watch band according to some embodiments of the present disclosure.

[0006] [Figure 2] 1 shows a top view of the watch band.

[0007] [Figure 3] FIG. 1 shows a top view of the watch band and housing in a separated configuration.

[0008] [Figure 4] FIG. 4 shows a top view of the watch band and housing of FIG. 3 in a connected configuration.

[0009] [Figure 5] 1 shows a side view of the watch band and housing.

[0010] [Figure 6] 5 shows a cross-sectional view of the watch band and housing taken along line AA in FIG. 4.

[0011] [Figure 7] FIG. 1 shows a perspective view of a strand having a core filament and an outer thread.

[0012] [Figure 8] 1 shows a top view of the watch band.

[0013] [Figure 9] FIG. 1 shows a top view of a watch band in a stretched configuration.

[0014] [Figure 10] FIG. 10 shows a top view of a watch band in a stretched configuration with a binder.

[0015] [Figure 11] 1 shows a top view of the watch band after a portion of the watch band has been removed.

[0016] [Figure 12] 1 shows a perspective view of an anchor element.

[0017] [Figure 13] 1 shows a view of an anchor element extending from within a strand.

[0018] [Figure 14] 1 shows an exploded perspective view of a watch band.

[0019] [Figure 15] 15 shows a perspective view of the watch band of FIG. 14 in an assembled configuration.

[0020] [Figure 16] 1 shows an exploded perspective view of a watch band.

[0021] [Figure 17] 1 shows an exploded perspective view of a watch band.

[0022] [Figure 18] 18 shows a cross-sectional view of the watch band of FIG. 17.

[0023] [Figure 19] 1 shows an exploded perspective view of a watch band.

[0024] [Figure 20] 20 shows a cross-sectional view of the watch band of FIG. 19.

[0025] [Figure 21] 1 shows an exploded perspective view of a watch band.

[0026] [Figure 22] 22 shows a cross-sectional view of the watch band of FIG. 21.

[0027] [Figure 23] A top view of the locking mechanism is shown.

[0028] [Figure 24] 24 shows a cross-sectional view of the locking mechanism taken along line BB in FIG. 23.

[0029] [Figure 25] A top view of the watch band and housing is shown.

[0030] [Figure 26] 26 shows a cross-sectional view of the watch band and housing taken along line CC in FIG. 25.

[0031] [Figure 27] A top view of the watch band and housing is shown.

[0032] [Figure 28] 28 shows a cross-sectional view of the watch band and housing taken along line DD in FIG. 27.

[0033] [Figure 29] A top view of the watch band and housing is shown.

[0034] [Figure 30] 29A shows a cross-sectional view of the watch band and housing taken along line EE of FIG. 29.

[0035] [Figure 31] 1 shows a perspective view of a watch band.

[0036] [Figure 32] 32 shows a cross-sectional view of the watch band of FIG. 31. 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, may 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. Securement of 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. Often, a secure attachment may apply an undesirable amount of force to the user's wrist. In many cases, existing watch bands may tangle, snag, or pull on the user's hair or skin during use if the band is too tight. In other cases, watch bands may slide along the user's wrist, rotate around the user's wrist, or be uncomfortable or bothersome to the user if the band is too loose. These problems may be exacerbated during periods of elevated activity, such as while running or playing sports.

[0039] Furthermore, adjusting the size or fit of existing watch bands 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. Fit may vary and / or be perceived differently under certain environmental (e.g., temperature, humidity) or biological conditions (e.g., sweat, inflammation). Some wearable electronic devices may be multi-purpose devices that provide both fitness / health tracking and timing functionality. Thus, users may prefer the fit of their watch to vary with use. For example, a user may prefer a looser fit in timing mode and a tighter fit in fitness / health tracking mode. As a result, users of existing wristwatches and / or fitness / health tracking devices may be required to frequently adjust in fixed, individual size adjustment increments.

[0040] Embodiments of the present disclosure provide a stretchable watch band with braided strands that provides a comfortable fit around a user's wrist. The watch band can stretch and adapt to the user based on the elasticity within each strand and the ability of the strands to move relative to one another. This allows the watch band to assume a wide variety of different sizes as needed in response to external forces. The watch band also distributes forces evenly over a wide area on the user's wrist. Such adaptability is provided without the user having to actively adjust the watch band (e.g., with a clasp).

[0041] While a significant portion of the watch band may be stretchable and flexible, end sections of the watch band may include attachment elements that securely connect the watch band to the watch housing. The end sections may be configured to releasably connect to the housing in a manner that is reliable and easy for the user. Additionally, the watch band may provide a smooth transition from the size and / or shape of the housing to the size and / or shape of successive sections of the watch band. For example, the watch band may taper from a wider section at the housing to a narrower section extending away from the housing. The tapered section may be maintained despite movement of the strands during bending, flexing, and stretching. Additionally, when connected to the watch housing, the watch band may conceal portions of the watch band other than the braided strands. In this manner, the braided strands may be the only visible portion of the watch band, thereby providing an aesthetically pleasing appearance.

[0042] These and other embodiments are described below with reference to Figures 1-16. However, those skilled in the art will readily appreciate that the detailed description provided herein with reference to these figures is for illustrative purposes only and should not be construed as limiting.

[0043] According to some embodiments, as shown in FIG. 1 , for example, a watch 2 includes a watch body 10 worn on a wrist with a watch band 50. The watch body 10 can be portable and can be attached to other parts of the user's body or to other devices, structures, or objects. The watch band 50 can be flexible and can encircle at least a portion of the user's wrist. By securing the watch body 10 to the user, the watch band 50 provides security and convenience. In some embodiments, the watch body 10 includes a display 12 and a housing 16 for housing components.

[0044] Although reference is made to a watch, it will be understood that aspects of the present disclosure may be applied to a variety of watches and other consumer products, including wearable consumer products, electronic devices, and portable computing devices. Examples of other devices to which aspects of the present disclosure may be applied include mobile phones, smartphones, tablet computers, laptop computers, timing devices, computerized eyeglasses and other wearable devices, navigation devices, sports devices, accessory devices, health monitoring devices, medical devices, wristbands, bracelets, and / or jewelry.

[0045] In one example, Watch 2 can have the various functionalities and / or capabilities described above (e.g., computing, communication, timekeeping or time display, health monitoring, health tracking, and / or health output functionality / capabilities, etc.). In one example, Watch 2 is a wrist-worn multifunction device and can include various components and / or modules. In another example, Watch 2 can act as an extension of another electronic device (or vice versa). For example, while Watch 2 is being used as a wrist-worn device, Watch 2 can interact with a phone carried by or associated with the user (e.g., in a pocket). In a further example, Watch 2 can include a connectivity system, either wired or wireless, that allows the consumer product to interface with other devices. These other devices can include laptop computers, mobile phones, tablet computers, exercise equipment, electronic glasses, etc.

[0046] The watch 2 may include a housing 16. The housing 16 serves to define the periphery 20 of the watch body 10 and to support the internal components of the watch 2 in the assembled position. That is, the housing 16 may enclose and support various internal components (including, for example, integrated circuit chips, processors, memory devices, and other circuitry) for providing computational and functional operations for the watch 2. The housing 16 may also serve to define the shape or form of the watch 2. That is, the periphery 20 of the housing 16 may embody the physical appearance of the watch 2. As such, it may include various decorative and mechanical features that improve the aesthetic look and feel of the device.

[0047] As shown in FIG. 1 , the housing 16 can have a linear shape. However, the housing 16 can be configured in a variety of shapes. The housing 16 can also have a substantially planar or flat top surface on which the display 12 can be positioned, and a substantially planar or flat bottom surface. The top surface of the housing 16 and the bottom surface of the housing 16 can be substantially planar, but the transition between the top surface of the housing 16 and one or more side walls of the housing can be curved. In other words, the transition from the top surface of the housing to one or more side walls of the housing (e.g., including the side on which the channel 14 is positioned) can be rounded such that a smooth transition exists between the top surface and the side of the housing 16. Similarly, the transition from the bottom surface of the housing 16 to one or more side walls of the housing 16 can have a similar rounded shape and transition.

[0048] The housing 16, which may also be referred to as a case or enclosure, may be formed from plastic, glass, ceramic, fiber composite, metal (e.g., stainless steel, aluminum, titanium, magnesium), other suitable materials, or combinations of these materials. Additionally, the surfaces of the housing 16 may be formed from any suitable material, including aluminum, steel, gold, silver, and other metals, metal alloys, ceramic, wood, plastic, various types of glass, and combinations thereof.

[0049] In some embodiments, the watch 2 may include one or more I / O systems. For example, the watch 2 may include a display 12 configured to output various information related to the watch 2. The display 12 may also output data from applications and other programs running by the watch 2. For example, the watch 2 may provide information about the time, the user's health, status notifications, notifications, or messages received from externally connected or communicating devices and / or software running on such devices. The watch 2 may also provide information about applications running on the consumer product, or display messages, videos, operational commands, and the like running on the consumer product.

[0050] Display 12 may also be configured to receive input. Display 12 may be integrated with or incorporated into a touch panel or touch sensor that includes an array of capacitive touch electrodes. In embodiments in which display 12 is configured to receive input, display 12 may have an input area. The input area may cover the entire display 12 or substantially the entire display 12. In another embodiment, the input area may cover only a portion of display 12. Furthermore, display 12 may be a multi-touch display configured to receive and process various touch points received on the display.

[0051] Display 12 may include image pixels formed from light-emitting diodes (LEDs), organic LEDs (OLEDs), plasma cells, electronic ink elements, liquid crystal display (LCD) components, or other suitable image pixel structures. Display 12 may be shaped to cover or substantially cover the top of housing 16.

[0052] Watch 2 may also include other input and output mechanisms. For example, watch 2 may include or interface with one or more buttons, crowns, keys, dials, trackpads, microphones, etc. Each of these input mechanisms may be located on the top surface of housing 16 and / or on one or more side walls of housing 16. Watch 2 may also include one or more speakers, headphone jacks, etc.

[0053] The watch 2 may also be configured to provide haptic output, audio output, visual output, or a combination thereof. With respect to haptic output, the watch 2 may have one or more haptic actuators configured to provide haptic output. The haptic output provided above, as well as other forms of output, may vary based on a variety of factors, some of which include, but are not limited to, how the watch 2 is being used, what applications are running, and the information output on the display 12.

[0054] The watch 2 may also include operating components (potentially housed in the housing 16). These components may include a processor, memory, a communication system, an antenna, etc. For example, the watch 2 may include a processor coupled to or in communication with a memory. The watch 2 may also include one or more communication interfaces, where the communication interface(s) may provide electronic communication between the communication device and any external communication network, device, or platform, including, but not limited to, a wireless interface, a Bluetooth interface, a near field communication interface, an infrared interface, a USB interface, a Wi-Fi interface, a TCP / IP interface, a network communication interface, or any existing communication interface, etc.

[0055] Watch 2 may also include various sensors. These sensors may include, but are not limited to, biometric sensors, gyroscopes, accelerometers, light sensors, optical sensors, global positioning sensors, and the like. These sensors may assist or provide functionality to Watch 2. Additionally, readings from these sensors may be analyzed by Watch 2 and / or transmitted to a companion device or other product.

[0056] 1, watch 2 may include a channel 14, groove, or other such opening configured to receive a portion of watch band 50. Watch band 50 may be interchangeable with watch body 10. Thus, watch bands and watch bodies and various combinations thereof may comprise an ecosystem, whereby components of the ecosystem may be interchangeable with one another. For example, one watch body may be used with various watch bands. In a further example, one watch band may be used with various watch bodies.

[0057] 2, watch band 50 can provide a continuous structure extending between end sections 110 of watch band 50, each of which connects to the housing. Watch band 50 can be stretchable to allow for donning and doffing of watch band 50 on a user's hand and to ensure a secure fit to the user's wrist. Thus, watch band 50 does not require separate pieces to join together (e.g., with a clasp). Alternatively, watch band 50 can be assembled as separate pieces that join together (e.g., with a clasp) and optionally provide an adjustable size configuration. Such a configuration can be provided with end section features as described herein.

[0058] The watch band 50 can include multiple strands 60 braided together along the length of the watch band 50. The strands 60 can be braided together in a repeating braid pattern that can extend along a substantial length of the watch band 50. Additionally or alternatively, multiple braid patterns can be applied in various sections of the watch band 50. The braid pattern can vary in the number of bundled strands grouped together. For example, the strands can be braided together by crossing individual strands or by crossing groups of multiple strands that extend along one another. The braid pattern can vary in the number of strands that cross any given strand or group of strands. For example, the strands 60 can cross one, two, three, four, five, or more other strands on each pass (e.g., cross over or under the other strand(s)). The strands 60 can turn at the edges of the watch band 50 to continue the braid pattern. The braid pattern can allow the strands 60 to extend generally transversely (e.g., diagonally or diagonally) relative to the longitudinal axis of the watch band 50. Thus, the pitch angle of the strands 60 relative to the longitudinal axis can shift during use, allowing the watch band 50 to stretch (e.g., elongate), reduce or contract (e.g., reduce) the width of the watch band 50, and increase the width of the watch band 50. Additionally, the elasticity of the individual strands 60 can contribute to the stretchability of the watch band 50. Thus, the watch band 50 can stretch for ease of donning and doffing, and for comfort during use. The strands 60 can also move (e.g., flex) relative to one another to provide a conformal fit with the user's wrist. The braid pattern can further provide a breathable structure that allows air to pass through for cooling and moisture absorption.

[0059] As used herein, a strand is any elongate object, including a single elongate object or a collection of elongate objects (e.g., threads, filaments, or fibers), arranged to form a unit for further arrangement (e.g., braided, twisted, plaited, or laid in parallel) with other strands. As used herein, a braid is an arrangement of multiple strands or other units that form a pattern of intersections, with the strands extending transversely (e.g., diagonally or diagonally) relative to the longitudinal axis of the braid. A braid can include braided strands, twisted strands, entangled strands, etc.

[0060] Watch band 50 includes end sections 110 at opposite ends of watch band 50 that fit within respective recesses or channels in housing 16, allowing watch band 50 to be removably attached to the watch body housing. Generally, end sections 110 can lock into the channels, thereby maintaining a connection between watch band 50 and the housing.

[0061] The watch band 50 may provide attachment elements 70 in each of the end sections 110. The attachment elements 70 may be coupled to the strands 60 that extend into and / or terminate within the end section 110. For example, the attachment elements 70 may surround and / or cover at least some of the ends of the strands 60. The attachment elements 70 may provide rigid structural support to the end section 110 for insertion into the channels. For example, the attachment elements 70 may be formed from metal or other rigid material. The attachment elements 70 may maintain a defined shape that corresponds to the shape of the channel into which each of the attachment elements 70 is inserted. The attachment elements 70 may cover only a portion of the strands in the corresponding end section, as described further herein.

[0062] Watch band 50 may have a locking mechanism 190 on attachment element 170. Locking mechanism 190 may protrude beyond the outer surface of attachment element 70 to engage a portion of the watch body, for example, within or adjacent to the channel in the housing. A user may release locking mechanism 190 to allow end section 110 to slide or to allow end section 110 to move out of the channel. It will be appreciated that a variety of locking mechanisms, such as locks, snaps, clasps, threads, and pins included on watch band 50 and / or on the watch body, may be employed to securely attach watch band 50 to the watch body.

[0063] The watch band 50 may have one or more friction pads 192 integrated with the mounting element 70. The friction pads may be positioned at various locations on the mounting element 70 of the watch band 50 and may be used to increase friction of the end section 110 within the channel, limit movement of the end section 110 within the channel, and maintain spacing of the end section 110 within the channel. At least a portion of the or each friction pad 192 extends or protrudes from one or more surfaces of the mounting element 70. The portion of the friction pad 192 that extends beyond the outer surface of the mounting element 70 is used to (1) increase friction between the end section 110 and the channel of the housing of the electronic device in which the end section 110 is placed, and (2) maintain or substantially maintain spacing between one or more surfaces of the end section 110 and the surface of the channel of the housing of the electronic device in which the end section 110 is placed. Friction pads 192 help maintain the spacing between end section 110 and the channel, thereby reducing undesirable movement, rattle, and / or noise caused by any movement of end section 110 when end section 110 is received within the channel. Additionally or alternatively, end section 110 of watch band 50 may have a thickness that is slightly greater than the dimensions of the channel. Thus, end section 110 may need to be compressed to enter the channel, but expand within the channel to secure end section 110 within the channel.

[0064] 3 and 4, the watch band can be inserted into a channel in the watch body. As shown in FIG. 3, the end section 110, including the attachment element 70, can slide laterally into the channel 14 formed in the housing 16 of the watch body 10. The attachment element 70 can provide structural rigidity during insertion.

[0065] As further shown in FIG. 3 , the watchband 50 (e.g., strands 60) can form an end section 110 that resides within the channel 14. The end section 110 can have a first width 112. The first width 112 can be the maximum width of the end section 110 or can be any width of the end section 110 that resides within the channel 14 when the end section 110 is within the channel 14. The first width 112 can be defined by one or more outer strands 60A positioned on opposite sides of the attachment element 70. The outer strands 60A can define at least a portion of the outermost periphery of the end section 110, as described further herein.

[0066] The watch band 50 (e.g., the strands 60) may also form a tapered section 120 that resides outside the channel 14. The tapered section 120 may extend away from the end section 110.

[0067] The watchband 50 (e.g., the strands 60) can also form an extension section 130 that extends away from the tapered section 120. The extension section 130 can have a substantially uniform second width 132 along the length of the extension section 130. It will be understood that the width will vary based on the position and diameter of the strands 60 that turn at the edge of the extension section 130. As used herein, a width is substantially uniform along the length of the extension section 130 if the width varies by less than the diameter of the strands that form the extension section 130. Thus, the braid pattern can provide evenly distributed spacing of the strands at a consistent pitch angle to maintain a substantially uniform second width 132, even if the second width 132 varies slightly based on the diameter of the strands 60.

[0068] In contrast to the substantially uniform second width 132 of the extension section 130, the tapered section 120 tapers from the first width 112 to the second width 132 along the length of the tapered section 120. The taper can have a shape that is, for example, linear, curvilinear, logarithmic, elliptical, exponential, parabolic, and combinations thereof.

[0069] As shown in FIG. 4 , the end section 110 can be inserted and secured within the channel 14. The end section 110 can have an outer shape that corresponds to at least a portion of the outer shape of the housing 16, for example, at the outer periphery 20. In particular, as shown in FIG. 4 , the width of the channel 14 can be substantially equal to the width of the end section 110 of the watch band 50. When the end section 110 is fully inserted, at least a portion of the outer surface of the end section 110 is flush or substantially flush with the outer periphery 20 defined by the housing 16, as shown in FIG. 4 . The outer strands 60A can be within the channel 14 at opposite lateral ends of the channel 14 and on opposite sides of the mounting element 70. The outer strands 60A can be completely within the outer periphery 20 defined by the housing 16, aligned with the outer periphery 20, or raised from the outer periphery 20.

[0070] When end section 110 is inserted into channel 14, mounting element 70 may be completely enclosed within channel 14. For example, no portion of mounting element 70 may extend outside of channel 14.

[0071] The attachment element 70 can be positioned such that portions of the attachment element 70 are not visible from outside the channel 14. The tapered section 120 can cover (e.g., optically block) at least a portion of the channel 14. Additionally, the outer strands 60A can cover (e.g., optically block) at least a portion of the channel 14. On the other side of the attachment element 70, the inner surface of the housing 16 can abut the attachment element 70, and the housing 16 can cover (e.g., optically block) at least a portion of the channel 14. Thus, portions of the attachment element 70 are not visible from outside the channel 14 while within the channel 14. As a result, only the strands are visible, thereby providing an appearance based solely on the strands and not any other support structure.

[0072] The tapered section 120 can be located outside the channel 14 when the end section 110 is within the channel 14. Thus, the tapered section 120 can be outside the channel and visible to a user. The tapered section 120 can taper from both the first width 112 of the end section 110 and the outer periphery 20 of the housing 16. Thus, the contour of the outer periphery 20 of the housing 16 can smoothly transition to the tapered width of the tapered section 120, which then transitions to the substantially uniform second width 132 of the extension section 130. Thus, the tapered section 120 can provide a smooth contour that gives the appearance of continuity across the housing 16 and the watch band 50. As a result, the appearance of a well-integrated housing and watch band can be visually appealing.

[0073] The tapered section 120 can extend along a substantial length of the watch band 50 to provide a gradual transition. For example, the tapered section 120 can extend 2 mm to 20 mm along its longitudinal length, e.g., approximately 5 mm along its length. In a further example, the tapered section 120 can extend along its length across at least two strand crossings. Thus, the taper is distributed across multiple strand crossings. In contrast, stretching the ends of only the outermost strands does not provide such a distributed taper, but instead spreads the section across one strand crossing. The distributed taper described herein can be achieved by spreading multiple strands, as further described herein.

[0074] 5 and 6, a watch band can be inserted into a channel in a watch body. As shown in FIG. 5, outer strand 60A can cover (e.g., optically block) at least a portion of channel 14. Outer strand 60A can form a loop at (e.g., within) channel 14 such that an end of outer strand 60A is formed by a continuous portion of outer strand 60A. The shape of the loop can be similar to the shape of channel 14 such that the loop fits within the channel and substantially fills the end of channel 14.

[0075] As shown in FIG. 6 , the channel 14 may have an undercut that retains the end section 110 within the channel 14. The channel 14 in the housing 16 has an opening height at the opening of the channel 14 and a maximum width within the channel 14. The maximum width may be greater than the opening width to form the undercut. Thus, due to the undercut formed by the channel 14, the channel opening width may be configured to limit movement of the end section 110 in a direction perpendicular to the lateral insertion and removal direction.

[0076] 6, the attachment element 70 can be positioned such that portions of the attachment element 70 are not visible from outside the channel 14. The strands 60, outer strands 60A, and housing can cover (e.g., optically block) at least a portion of the channel 14. Thus, portions of the attachment element 70 are not visible from outside the channel 14 while within the channel 14.

[0077] As further shown in FIG. 6 , end section 110 includes a locking mechanism 190. Locking mechanism 190 can extend through one or more openings in mounting element 70. Locking mechanism 190 can engage a portion of housing 16, such as recess 22 extending from channel 14. Locking mechanism 190 is configured to securely engage housing 16 until actuated by a release button 18 within housing 16. Locking mechanism 190 can be biased into engagement with housing 16 when end section 110 is inserted into channel 14. Release button 18 can be biased away from locking mechanism 190 and can be accessible to a user for actuation.

[0078] Referring now to FIG. 7, each strand 60 may be formed in one of a variety of configurations. For example, as shown in FIG. 7, each strand 60 may include one or more filaments 62. When multiple filaments 62 are used, the filaments 62 may extend parallel to one another, or may be braided or bonded together. The filaments 62 may be stretched or elongated along their longitudinal lengths. The filaments 62 may include an elastic material, an elastomer, a rubber, a nitrile, a hydrogenated nitrile, an ethylene propylene, a fluorocarbon, a chloroprene, a silicone, a fluorosilicone, a polyacrylate, an ethylene acrylic, a styrene butadiene, a polyurethane, a natural rubber, or a combination thereof.

[0079] In some examples, one or more filaments 62 may be surrounded by a braided thread 64. The braided thread 64 may form a cylindrical sheath that surrounds and binds together one or more filaments 62. Thus, the braided thread 64 may define an interior portion in which the filaments 62 reside. The braided threads 64 may extend along their respective lengths and may shift relative to one another. The threads 64 may provide an outer surface of the strand 60. Various aspects of the thread 64 (e.g., color, thickness, quantity, pattern) may be selected as appropriate. The thread 64 may include an elastic material, an elastomer, a rubber, a nitrile, a hydrogenated nitrile, an ethylene propylene, a fluorocarbon, a chloroprene, a silicone, a fluorosilicone, a polyacrylate, an ethylene acrylic, a styrene butadiene, a polyurethane, a natural rubber, or a combination thereof. The material of the thread 64 may be the same as or different from the material of the filaments 62.

[0080] 8-11, the strands 60 of the watch band can be spread apart to form wide end sections and tapered sections. As shown in FIG. 8, the strands 60 can be arranged in a braided pattern. The braided pattern can be uniform along at least a portion of the length of the watch band. One or more of the strands (e.g., a pair of strands) can be separated to form outer strands 60A on opposing sides. The outer strands 60A can be maintained separate from the other strands 60. Stitches 80 can be provided across the width of the watch band such that the stitches 80 cross and engage multiple strands 60. The stitches 80 can be formed from one or more threads in a stitch pattern. The stitches 80 can be stretchable based on the elasticity of the stitch 80 material and / or the placement of the stitches 80. The stitches 80 can engage one or more (e.g., all) of the strands 60 across the width of the watch band.

[0081] As shown in FIG. 9 , stitch 80 can be stretched by pulling on the end of stitch 80. Because stitch 80 engages one or more strands 60 of the watch band across the width of stitch 80, stretching stitch 80 causes strands 60 to spread apart from one another, increasing the overall width in a localized region (e.g., from second width 132 to first width 112). The spreading of strands 60 can be substantially uniform, such that the density of the strands is uniformly reduced across the entire stitched region. Similarly, the spreading of strands 60 can move all strands based on how far they are from a central position within the watch band. Thus, spreading of strands 60 at stitch 80 results in corresponding spreading in regions further away from stitch 80. This spreading provides the shape and form of the tapered section.

[0082] 10 , binder 90 may be applied to strands 60 near stitches 80. For example, binder 90 may be applied to one or more sides of the watch band and may be in direct contact with strands 60 while stitches 80 are stretched and strands 60 are spread apart from one another. Binder 90 may include a thermoplastic material, such as polycarbonate, which may be melted or partially melted to bond to and penetrate strands 60. Binder 90 may then be allowed to cool and maintain a more rigid shape that holds strands 60 in place.

[0083] As shown in FIG. 11 , a portion of the strands 60 may be cut at a location that separates the strands 60 and a portion of the binder 90 from the stitch 80. For example, a sacrificial portion of the workpiece may be designated for removal. The sacrificial portion may include the stitch 80, such that the stitch 80 and any attached structures do not form part of the final product. A new end of the watchband may be defined by the end of the binder 90 and the strands 60. This end may be designated as an end section 110. The end section 110 may have a first width 112 or another width that, when paired with the outer strands 60A, forms the first width 112. The tapered section 120 may taper from the end section 110 to an extension section 130 having a second width 132. In the end section 110, the strands 60 are maintained in a braid pattern having a first pitch angle 114 that is different from the second pitch angle 134 formed in the extension section 130. As used herein, pitch angle is the angle formed between the direction of strand extension of the watchband and longitudinal axis 52. As shown in FIG. 11 , first pitch angle 114 in end section 110 can be greater than second pitch angle 134 in extension section 130. The pitch angle in tapered section 120 correspondingly transitions from first pitch angle 114 to second pitch angle 134.

[0084] 12 and 13, an anchor element 100 is provided for connecting the outer strand to the attachment element to form the end section of the watch band. As shown in FIG. 12, the anchor element can include an inner portion 104 residing within the outer strand and one or more outer portions 102 extending away from the inner portion 104. The inner portion 104 can form a shape corresponding to the desired shape of the outer strand. For example, the inner portion 104 can define a path along the loop formed by the outer strand 60A. In such an example, the inner portion 104 can be curved to form at least a portion of the loop. In a further example, the inner portion 104 can form a shape similar to or matching the contour of the channel into which the outer strand 60A is inserted. While a pair of outer portions 102 are shown, it will be understood that any number of outer portions 102 can be provided. The outer portions 102 can optionally extend linearly and / or in substantially similar (e.g., parallel) directions.

[0085] As shown in FIG. 13 , the inner portion 104 of the anchor element 100 can be positioned within the outer strand 60A, and the outer portion 102 of the anchor element 100 can extend away from the outer strand 60A. For example, the inner portion 104 can extend within the braided thread 64 of the outer strand 60A. Thus, the braided thread 64 can be wrapped around the inner portion 104 along with a filament (not shown). Because the anchor element 100 can be more rigid than the outer strand 60A, the outer strand 60A can maintain a fixed shape based on the shape of the inner portion 104. Additionally, as further described herein, the position and / or orientation of the outer strand 60A can be maintained when the outer portion 102 of the anchor element 100 is coupled to another structure (e.g., an attachment element).

[0086] 14 and 15, the strands can be coupled to attachment elements to form end sections of a watch band. For example, as shown in FIG. 14, strands 60 can terminate in areas that are optionally adhered by binder 90. Outer strands 60A, each having an anchor element 100, can be positioned at the same end near binder 90. Attachment element 70 can provide an interior portion 72 for receiving strands 60.

[0087] As shown in FIG. 15 , the attachment elements 70 may be provided over the strands 60 and binder 90. In one example, the attachment elements 70 may cover the entire binder 90. Additionally, the outer strands 60A may be coupled to the attachment element 70 by securing anchor elements 100 to opposing sides of the attachment element 70. The strands 60, anchor elements 100, and / or binder 90 may be secured within the interior portion 72 of the attachment element 70 by one or more of a variety of mechanisms. For example, an adhesive may be provided to bond two or more of these components together. Other mechanisms, such as welding and / or other mechanical attachments, are contemplated. Such mechanisms may be fixed or detachable. Such mechanisms may be housed entirely within the interior portion 72 of the attachment element 70 so as to be hidden from view.

[0088] Referring now to FIG. 16 , an alternative design is shown in further detail. It will be understood that the embodiment shown in FIG. 16 is a more detailed example of the above-described embodiment, thereby providing additional and / or alternative features that may optionally be provided to implement the above-described aspects. As shown in FIG. 16 , the strands 60 may terminate in an area that is optionally adhered by the binder 90. The outer strands 60A may be positioned at the same end near the binder 90. Anchor elements 100 may be provided to couple the outer strands 60A to the attachment element 70 via another structure, such as an intermediate element 140. For example, each of the anchor elements 100 may extend through the outer strands 60A and be held in place relative to the intermediate element 140 by an engaging element 142 welded or otherwise coupled to the intermediate element 140. The attachment element 70 may provide an interior portion 72 for receiving the intermediate element 140. The intermediate element 140 may be secured within the interior portion 72 of the attachment element 70 by one or more of a variety of mechanisms. For example, an adhesive may be provided to bond two or more of these components together. Other mechanisms, such as welding and / or other mechanical attachments, are contemplated. Such mechanisms may be fixed or detachable. Such mechanisms may be housed entirely within the interior portion 72 of the mounting element 70 so as to be hidden from view.

[0089] A locking mechanism 190 may be provided that extends through openings in the mounting element 70 and the intermediate element 140. As shown, the locking mechanism 190 may be an assembly of parts that move relative to one another and extend through opposing sides of the mounting element 70 and the intermediate element 140. The locking mechanism 190 may engage and / or interact with different portions of the channel when inserted therein. One or more friction pads 192 may also be included on the mounting element 70, as described herein.

[0090] 17 and 18, another design is shown in more detail. It will be understood that the embodiment shown in FIG. 17 may be considered a more detailed example of the above-described embodiment, thereby providing additional and / or alternative features that may optionally be provided to implement the above-described aspects. As shown in FIG. 17, the strands 60 may terminate in an area that is optionally adhered by the binder 90. The outer strands 60A may be positioned at the same end near the binder 90. Anchor elements 100 may be provided to cooperate with another structure, such as the intermediate element 140, to couple the outer strands 60A to the mounting element 70. For example, each of the anchor elements 100 may extend through the outer strands 60A and be held in place by the plate element 144 and / or the intermediate element 140. The anchor elements 100 may be welded or otherwise bonded to a corresponding one of the plate element 144 and the intermediate element 140.

[0091] The strands 60 and / or binders 90 may be coupled to the mounting element 70 via the plate elements 144, the intermediate elements 140, and the pins 146. For example, a portion of the strands 60 and / or the binders 90 may be disposed between the plate elements 144 and the intermediate elements 140. The pins 146 may extend through a corresponding one of the intermediate elements 140, the binders 90, and the plate elements 144. The pins 146 may be securely coupled (e.g., fused, welded, glued, etc.) to the corresponding one of the intermediate elements 140 and the plate elements 144, respectively.

[0092] A locking mechanism 190 may be provided that extends through openings in the mounting element 70 and the intermediate element 140. As shown, the locking mechanism 190 may be an assembly of parts that move relative to one another and extend through opposing sides of the mounting element 70 and the intermediate element 140. The locking mechanism 190 may engage and / or interact with different portions of the channel when inserted therein. One or more friction pads 192 may also be included on the mounting element 70, as described herein.

[0093] As shown in FIG. 18 , the mounting element 70 can provide an interior portion 72 for receiving the intermediate element 140, a plate element 144, and a pin 146. The intermediate element 140 can be secured within the interior portion 72 of the mounting element 70 by one or more of a variety of mechanisms. For example, an adhesive can be provided to bond two or more of these components together. Other mechanisms, such as welding and / or other mechanical attachments, are contemplated. Such mechanisms can be fixed or detachable. The entire mechanism can be housed within the interior portion 72 of the mounting element 70 so as to be hidden from view.

[0094] 19 and 20, another design is shown in more detail. It will be understood that the embodiment shown in FIG. 19 may be considered a more detailed example of the above-described embodiment, thereby providing additional and / or alternative features that may optionally be provided to implement the above-described aspects. As shown in FIG. 19, the strands 60 may terminate in an area that is optionally adhered by the binder 90. The outer strands 60A may be positioned at the same end near the binder 90. Anchor elements 100 may be provided to cooperate with another structure, such as the intermediate element 140 and / or the plate element 144, to couple the outer strands 60A to the mounting element 70. For example, each of the anchor elements 100 may extend through the outer strands 60A and be held in place by the plate element 144 and / or the intermediate element 140. The anchor elements 100 may be welded or otherwise bonded to the plate element 144 and / or the intermediate element 140.

[0095] The strands 60 and / or binder 90 may be coupled to the attachment element 70 via the plate element 144, the intermediate element 140, and the pin 146. For example, a portion of the strands 60 and / or the binder 90 may be disposed between the plate element 144 and the intermediate element 140. The pin 146 may extend through the intermediate element 140, the binder 90, and the plate element 144. The pin 146 may be securely coupled (e.g., fused, welded, adhesively bonded, etc.) to each of the intermediate element 140 and the plate element 144. The pin 146 may have a small cross-sectional diameter such that the pin 146 can extend through the strands 60 and / or binder 90 without substantially displacing or deflecting the strands 60 from their natural positions based on the braid pattern of the strands 60. Thus, the strands 60 and / or binder 90 may surround each of the pins 146.

[0096] The locking mechanism 190 may be provided on one side of the mounting element 70, and the cap element 198 may be provided on the opposite side of the mounting element 70. The locking mechanism 190 may be part of parts that move relative to one another, or may include an assembly of such parts. For example, a spring element 196 may bias the locking mechanism 190, as described further herein. One or more friction pads 192 may also be included on the mounting element 70, as described further herein.

[0097] 20, the mounting element 70 can receive the plate element 144, the intermediate element 140, the strands 60, and / or the binder 90. The intermediate element 140 can be secured within the interior portion of the mounting element 70 by one or more of a variety of mechanisms, as described above with reference to FIG.

[0098] The spring element 196 may be provided in a preloaded state to bias the locking mechanism 190 to protrude from the mounting element 70 while in a nominal state. While the spring element 196 is shown as a leaf spring, it will be understood that other configurations for the spring may additionally or alternatively be provided. The spring element 196 may resiliently deform to allow the locking mechanism 190 to move toward and / or at least partially into the mounting element 70. Such action may occur when the mounting element 70 moves (e.g., slides laterally) within a channel in the watch body housing. The locking mechanism 190 may include edges that form a chamfer, bevel, slope, and / or ramp, such that when the locking mechanism 190 encounters an edge of the channel, the locking mechanism 190 is biased by the watch body housing to retract and move toward the mounting element 170. Within the channel, locking mechanism 190 may be biased by spring element 196 to engage and / or interact with different portions of the channel (e.g., recesses) when inserted into the channel. When engaged, locking mechanism 190 may limit further movement within the channel. Locking mechanism 190 may be released from the channel by a button or other actuator on the watch body that is operable by the user.

[0099] As shown, the locking mechanism 190 and spring element 196 may be positioned on the side of the strands 60 and / or binder 90, allowing the locking mechanism 190 and spring element 196 to operate and move without interfering with the position and / or alignment of the strands 60. Thus, the strands 60 and / or binder 90 may maintain a consistent and fixed position and / or alignment such that the individual strands 60 are evenly distributed to provide a natural aesthetic appearance.

[0100] 21 and 22, another design is shown in more detail. It will be understood that the embodiment shown in FIG. 21 may be considered a more detailed example of the above-described embodiment, thereby providing additional and / or alternative features that may optionally be provided to implement the above-described aspects. As shown in FIG. 21, the strands 60 may terminate in an area that is optionally adhered by the binder 90. The outer strands 60A may be positioned at the same end near the binder 90. Anchor elements 100 may be provided to couple the outer strands 60A to the mounting element 70 in cooperation with another structure, such as the intermediate element 140 and / or the plate element 144. For example, each of the anchor elements 100 may extend through the outer strands 60A and be held in place by the plate element 144 and / or the intermediate element 140. The anchor elements 100 may be welded or otherwise bonded to the plate element 144 and / or the intermediate element 140.

[0101] The strands 60 and / or binder 90 may be coupled to the mounting element 70 via the plate element 144, the intermediate element 140, and the pin 146. For example, a portion of the strands 60 and / or the binder 90 may be disposed between the plate element 144 and the intermediate element 140. The pin 146 may extend through the intermediate element 140, the binder 90, and the plate element 144. The pin 146 may be securely coupled (e.g., fused, welded, glued, etc.) to each of the intermediate element 140 and the plate element 144.

[0102] The locking mechanism 190 may be provided on one side of the attachment element 70, and the cap element 198 may be provided on the opposite side of the attachment element 70. The locking mechanism 190 may be part of parts that move relative to one another, or may include an assembly of such parts. For example, the cap element 198 may be coupled to and / or integral with the posts 180 that extend through openings in each of the intermediate element 140 and the plate element 144. The pins 146 and / or posts 180 may have a small cross-sectional diameter such that the pins 146 and / or posts 180 can extend through the strands 60 and / or binder 90 without substantially displacing or deflecting the strands 60 from their natural positions based on the braid pattern of the strands 60. Thus, the strands 60 and / or binder 90 may surround each of the pins 146 and / or posts 180. One or more friction pads 192 may also be included on the mounting element 70 as described herein.

[0103] 22, the mounting element 70 can receive the plate element 144, the intermediate element 140, the strand 60, and / or the binder 90. The intermediate element 140 can be secured within the interior portion of the mounting element 70 by one or more of a variety of mechanisms, as described above with reference to FIG.

[0104] A spring element 196 may be provided to bias the locking mechanism 190 to protrude from the mounting element 70 while in a nominal state. While the spring element 196 is shown as a helical spring wrapped around the post 180, it will be understood that other configurations for the spring may additionally or alternatively be provided. The spring element 196 may elastically deform to allow the locking mechanism 190 to move toward and / or at least partially into the mounting element 70. Such action may occur when the mounting element 70 moves (e.g., slides laterally) within a channel in the watch body housing. The locking mechanism 190 may include edges that form a chamfer, bevel, slope, and / or ramp, such that when the locking mechanism 190 encounters an edge of the channel, the locking mechanism 190 is biased by the watch body housing to retract and move toward the mounting element 170. Within the channel, locking mechanism 190 may be biased by spring element 196 to engage and / or interact with different portions of the channel (e.g., recesses) when inserted into the channel. When engaged, locking mechanism 190 may limit further movement within the channel. Locking mechanism 190 may be released from the channel by a button or other actuator on the watch body that is operable by the user.

[0105] As shown, the locking mechanism 190 and the cap element 198 are positioned on opposite sides of the strands 60 and / or binder 90. The posts 180 and the spring elements 196 may extend through tunnel portions formed by the plate elements 144 and / or the intermediate elements 140. The tunnel portions may separate the posts 180 and the spring elements 196 from the strands 60 and / or binder 90, allowing the locking mechanism 190 and the spring elements 196 to operate and move without interfering with the position and / or alignment of the strands 60. Thus, the strands 60 and / or binder 90 may maintain a consistent and fixed position and / or alignment, such that the individual strands 60 are evenly distributed to provide a natural aesthetic appearance.

[0106] 23 and 24, the locking mechanism can provide features that facilitate passage and / or securing of the attachment element to the watch housing. Such a locking mechanism can interact with the watch housing in a manner that allows the locking mechanism to be easily attached and automatically secured with minimal user interaction.

[0107] 23 shows a top view of the locking mechanism. The locking mechanism 190 can define an upper surface 186 that extends along a substantial portion of the circumference of the locking mechanism 190. The upper surface 186 can be defined to the extent that the locking mechanism 190 protrudes out and away from the mounting element. The upper surface 186 can be substantially planar. Additionally or alternatively, the upper surface 186 can have a shape that substantially matches or is complementary to an opposing surface in the wall of the channel.

[0108] Locking mechanism 190 can further define one or more outer surfaces 178. Outer surface 178 can extend from and / or away from top surface 186 at one or more edges of top surface 186. Outer surface 178 can be flat, planar, curved, or a combination thereof. At least a portion of outer surface 178 can be perpendicular to top surface 186. Outer surface 178 can face the direction of movement of locking mechanism 190 and / or the corresponding attachment element when moved within the channel of the watch housing. Thus, outer surface 178 can interact with one or more other surfaces of the watch housing to provide, for example, securement of a watch band relative to the watch housing.

[0109] The locking mechanism 190 may further define one or more angled surfaces 188. The angled surfaces 188 may extend from the top surface 186 and / or the outer surface 178. The angled surfaces 188 may be flat, planar, curved, or a combination thereof. At least a portion of the angled surfaces 188 may form a non-zero angle with the top surface 186 and / or the outer surface 178. For example, the angled surfaces 188 may join a portion of the top surface 186 to a portion of the outer surface 178 while forming a non-zero angle with each of the top surface 186 and / or the outer surface 178. The outer surface 178 may face in a direction having a component of the outer surface 178 that is in the direction of movement (e.g., in the plane of movement) of the locking mechanism 190 and / or the corresponding attachment element when moved within the channel of the watch housing. The direction may have another component that is orthogonal to the top surface 186 (e.g., orthogonal to the plane of movement). Thus, the direction that the ramp 188 faces can form a ramp, wedge, or other shape that transitions a force along the direction of movement into a force perpendicular to the direction of movement. Such a resulting force allows a force applied to the ramp 188 to move the locking mechanism 190 into the mounting element. Thus, the ramp 188 can interact with one or more other surfaces of the watch housing to, for example, provide for actuation of the locking mechanism 190.

[0110] As further shown in FIG. 23 , locking mechanism 190 can define an inner portion 202 and an outer portion 204. On inner portion 202, top surface 186 can be joined to outer surface 178 by one or more angled surfaces 188. On outer portion 204, top surface 186 can directly meet (e.g., intersect) outer surface 178. By providing angled surfaces 188 on different sides than on other sides, the watch body housing can interact with locking mechanism 190 in different ways. For example, when the mounting element is inserted into the channel, the housing can activate locking mechanism 190, and when the mounting element is fully within the channel, the housing can receive locking mechanism 190 to lock the mounting element within the channel.

[0111] FIG. 24 shows a cross-sectional view of the locking mechanism taken along line BB in FIG. 23 . As shown in FIG. 24 , the locking mechanism 190 can provide different shapes on different sides of the locking mechanism 190. For example, the locking mechanism 190 can have a first height 182 at an inner portion 202 of the locking mechanism 190, and the locking mechanism 190 can have a second height 184 at an outer portion 204 of the locking mechanism 190. The first height 182 at the inner portion 202 can be less than the second height 184 at the outer portion 204. For example, the angled surface 188 can transition from a full height (e.g., second height 184) from the top surface 186 to a lower height (e.g., first height 182) along the outer surface 178. Such heights can refer to the overall height of the locking mechanism and / or the height of the portion of the locking mechanism that protrudes from the surface of the mounting element.

[0112] 25-30, the attachment elements can facilitate attachment, securing, and release of the watch band from the watch housing by movement of a locking mechanism within the attachment elements. While various configurations are shown herein, it will be understood that the system can optionally transition from one configuration to another, in any order, and / or with additional steps.

[0113] Figure 25 shows a top view of the watch band and housing, and Figure 26 shows a cross-sectional view of the watch band and housing taken at line CC in Figure 25. As shown, attachment element 170 can be partially inserted into channel 14 defined by watch body housing 16. While locking mechanism 190 is outside of channel 14, locking mechanism 190 can be biased by spring element 196 to a first configuration in which locking mechanism 190 extends to protrude beyond the surface of attachment element 170.

[0114] As the mounting element 170 is advanced further through the channel 14, the locking mechanism 190 may contact and be actuated by the housing 16. For example, the angled surface 188 of the locking mechanism 190 may contact the housing 16 before any other portion of the locking mechanism 190 (e.g., the outer surface 178). In a further example, the angled surface 188 and the portion of the housing 16 that provides the contact may have complementary shapes. Both the edge of the angled surface 188 (e.g., at the top surface) and the edge of the housing 16 may extend in a direction oblique to the direction of movement of the mounting element 170 within the channel 14. Thus, the edge of the housing 16 may contact the angled surface 188 on the interior side of the locking mechanism 190 rather than the outer surface of the locking mechanism 190. Such contact may actuate the locking mechanism 190, causing it to retract (e.g., move) into the mounting element 170. It will be appreciated that such actuation does not require direct input from a user, such as a force applied directly to the locking mechanism. Instead, simple sliding of the mounting element 170 within the channel can provide contact with the housing 16 to facilitate the actuation required to allow entry of the locking mechanism 190 into the channel.

[0115] FIG. 27 shows a top view of the watch band and housing, and FIG. 28 shows a cross-sectional view of the watch band and housing taken along line DD in FIG. 27. As shown, attachment element 170 may be further inserted into channel 14 defined by watch body housing 16, but may still only be partially inserted. While locking mechanism 190 is within channel 14 but not within recess 22, locking mechanism 190 may be biased by spring element 196 to a second configuration in which locking mechanism 190 contacts a wall on the inner surface of channel 14 (e.g., with top surface 186). The second configuration of locking mechanism 190 may be a configuration in which locking mechanism 190 protrudes beyond attachment element 170 to a lesser extent than in the first configuration. Optionally, locking mechanism 190 (e.g., at top surface 186) may be flush with attachment element 170.

[0116] FIG. 29 shows a top view of the watch band and housing, and FIG. 30 shows a cross-sectional view of the watch band and housing taken along line EE of FIG. 29. As shown, the attachment element 170 can be fully inserted into the channel 14 defined by the watch body housing 16. The locking mechanism 190 can be biased by a spring element 196 to extend into the recess 22 and / or against the release button 18 within the recess 22. A third configuration of the locking mechanism 190 can be one in which the locking mechanism 190 protrudes beyond the attachment element 170 to a greater extent than in the second configuration and / or to an equal extent compared to the first configuration.

[0117] While within recess 22, locking mechanism 190 may contact and be secured by housing 16. For example, outer surface 178 of locking mechanism 190 may contact housing 16 before other portions of locking mechanism 190 (e.g., ramp surface 188) when a lateral force is applied to mounting element 170. In a further example, outer surface 178 and the portion of housing 16 defining recess 22 may face one another. When a force tending to move mounting element 170 is applied, outer surface 178 of locking mechanism 190 in the third configuration (e.g., extending into recess 22) contacts housing 16 and prevents movement.

[0118] When release button 18 is actuated, it can provide a force to locking mechanism 190, causing locking mechanism 190 to move (e.g., retract) into or further toward mounting element 170. Such a configuration can be similar to the second configuration of locking mechanism 190. In such a configuration, outer surface 178 of locking mechanism 190 does not contact housing 16, but instead allows movement of mounting element 170 within channel 14. The user can then remove mounting element 170 from the channel, and the band can be removed from the watch body.

[0119] Thus, the arrangement described herein allows the watch band to be attached, secured, released from, and removed from the watch body without requiring complex actions from the user. The sliding of the attachment element provides automated passage and entry into the channel, and the release button allows for easy release of the watch band. Furthermore, such an arrangement allows the locking mechanism to be positioned on only one side of the attachment element, allowing other portions of the band (e.g., braided strands) to be within the attachment element and extend across the locking mechanism.

[0120] 23 and 24 , a watch band may be provided with surface features at end portions of the watch band. As shown in FIG. 23 , surface features 92 may optionally be provided to extend from attachment elements 70 along the surface of strands 60 of watch band 50. Surface features 92 may extend any length from attachment elements 70. While surface features 92 in FIG. 23 are shown extending only the width of a few strands 60, surface features 92 may optionally extend any distance, including to opposing attachment elements 70 at opposing ends of watch band 50. Surface features 92 may be features that provide information and / or aesthetic design. Additionally or alternatively, surface features 92 may be features that provide structural support and / or improve user comfort while wearing watch band 50.

[0121] Surface feature 92 may be directly or indirectly coupled to strands 60 of watch band 50. For example, in addition to engaging with attachment element 70, surface feature 92 may be adhered to one or more of strands 60 such that surface feature 92 remains substantially fixed along the length of surface feature 92 relative to the outer surface of watch band 50. Surface feature 92 may have an elasticity similar to that of strands 60 of watch band 50 such that surface feature 92 can move with strand 60 and maintain adhesion between strand 60 and surface feature 92. Alternatively, the portion of surface feature 92 outside attachment element 70 may be free from strand 60. Thus, surface feature 92 may move away from strand 60 by flexing, bending, or pivoting at its interface with attachment element 70.

[0122] As shown in FIG. 24 , the attachment element 70 may be disposed over the strands 60, the binder 90, and a portion of the surface feature 92. The surface feature 92 may include one or more layers. For example, the surface feature 92 may include an outer layer 94 that defines the perimeter of the surface feature 92. The outer layer 94 may define the outer surface of the surface feature 92. The outer layer 94 may include a soft textile, such as microfiber, suede, silk, and cotton. The textile may optionally be laminated to the structural core using, for example, an adhesive (e.g., a heat-activated adhesive). At least a portion of the outer layer 94 may be within the attachment element 70. In a further example, the surface feature 92 may further include an inner layer 96 between the outer layers 94. The inner layer 96 may include a thin structural film, a textile, a woven material, a nonwoven material, and / or a laminate. The inner layer 96 may include, for example, a polymer, a synthetic fabric, a woven fiberglass fabric, and the like. At least a portion of the inner layer 96 can be within the attachment element 70. For example, a portion of the inner layer 96 can extend beyond the end of the outer layer 94 and be coupled to the attachment element 70.

[0123] The surface features 92 may be bonded to the mounting element 70 within the interior portion of the mounting element 70. The binder 90, the intermediate element 140, and / or the inner layer 96 of the surface features 92 may be secured within the interior portion of the mounting element 70 by one or more of a variety of mechanisms. For example, an adhesive (e.g., a heat-activated adhesive) may be provided to bond two or more of these components together. Other mechanisms, such as welding and / or other mechanical attachments, are contemplated. Such mechanisms may be fixed or detachable. Such mechanisms may be housed entirely within the interior portion of the mounting element 70 so as to be hidden from view. In a further example, the inner layer 96 and / or another portion of the surface features 92 may be positioned between two or more structures, such as the mounting element 70 and the intermediate element 140. If the inner layer 96 may be bonded to the mounting element 70, the outer layer 94 may be bonded to the mounting element 70 only via the inner layer 96. The inner layer 96 may provide adequate tensile strength and structural support to secure the entire surface features 92 to the mounting element 70.

[0124] Thus, embodiments of the present disclosure provide a stretchable watch band with braided strands that provides a comfortable fit around a user's wrist. The watch band can stretch and conform to the user based on elasticity within each strand and the ability of the strands to move relative to one another. Additionally, end sections of the watch band can include attachment elements that securely connect the watch band to the watch housing. The end sections can be configured to releasably connect to the housing in a manner that is reliable and easy for the user. Additionally, the watch band can provide a smooth transition from the size and / or shape of the housing to the size and / or shape of the continuous section of the watch band. Additionally, the watch band can conceal portions of the watch band other than the braided strands when connected to the watch housing.

[0125] Various examples of aspects of the present disclosure are described below for convenience purposes only and are provided as examples and not as limitations on the subject technology.

[0126] Item A: A watchband comprising strands braided together to form: an end section residing within a channel formed in a watch housing and having a first width within the channel; a tapered section residing outside the channel and extending away from the end section; and an extended section extending away from the tapered section, the extended section having a substantially uniform second width along a length of the extended section, the tapered section tapering from the first width to the second width along the length of the tapered section outside the channel.

[0127] Item B: A watch band comprising an attachment element for engaging a channel formed in a housing of a watch, and braided strands, at least some of the strands being partially secured within an interior portion of the attachment element, wherein the housing and strands entirely surround the attachment element when the attachment element is in the channel.

[0128] Section C: A watchband comprising: an attachment element for connecting the watchband to a watch housing; a plurality of strands braided together and extending from within the attachment element; and an anchor element extending from within one of the strands, the anchor element being secured to the attachment element.

[0129] Section D: A watch comprising: a watch body including a housing, a channel, a recess, and a button within the recess; a watch band including a band portion; an attachment element for insertion into the channel; and a locking mechanism movable within the attachment element, wherein when the attachment element is partially inserted into the channel, the housing is configured to engage with an inclined surface of the locking mechanism to move the locking mechanism into the attachment element, and when the locking mechanism is in the recess, the housing is configured to engage with an outer surface of the locking mechanism to limit movement of the attachment element within the channel.

[0130] Section E: A watch band comprising: an attachment element for insertion into a channel of a housing; and a locking mechanism movable within the attachment element between a first configuration in which a ramped surface of the locking mechanism protrudes from a surface of the attachment element, a second configuration in which a top surface of the locking mechanism is biased against a wall of the channel, the locking mechanism being configured to transition from the first configuration to the second configuration by engaging the housing with the ramped surface, the ramped surface extending from the top surface, and a third configuration in which the locking mechanism extends into a recess in the watch housing.

[0131] Item F: A watchband comprising: a band portion; and a locking mechanism at an end of the band portion, the locking mechanism including a top surface, an outer surface, the top surface meeting the outer surface on an outer portion of the locking mechanism, and an angled surface, the angled surface joining the top surface to the outer surface on an inner portion of the locking mechanism.

[0132] One or more of the above clauses may include one or more of the features described below. Note that any of the following clauses may be combined with each other in any combination, and may each be incorporated into an independent clause, e.g., clause A, clause B, clause C, clause D, clause E, or clause F.

[0133] Item 1: A mounting element for engaging a channel in a watch housing, at least a portion of the end section being positioned within an interior portion of the mounting element.

[0134] Term 2: The strands include outer strands, the outer strands being coupled to opposing sides of the attachment element and defining a first width of the end section.

[0135] Term 3: The strands are arranged at a first strand density in the end section and at a second strand density in the extension section, the first strand density being less than the second strand density.

[0136] Term 4: The strands are arranged at a first pitch angle in the end section and at a second pitch angle in the extension section, the first pitch angle being greater than the second pitch angle.

[0137] Item 5: The strands are arranged with an equal number of strands across the first width and across the second width.

[0138] Clause 6: The tapered section has a length of at least 5 mm.

[0139] Item 7: Binders that join the strands together in the end sections, the strands in the extension section are free to move relative to each other.

[0140] Clause 8: The first width is greater than the second width.

[0141] Clause 9: The strands include outer strands, the outer strands coupled to opposite sides of the attachment element and configured to occupy opposite ends of the channel when the attachment element is within the channel.

[0142] Clause 10: The mounting element of the watch band is configured to slide laterally with the channel until it locks against the housing.

[0143] Clause 11: When the mounting element is within the channel, no portion of the mounting element is outside the channel and the outer surface of the mounting element is covered by the housing and strands.

[0144] Clause 12: The anchor element includes a straight portion on the outside of one of the strands and a curved portion within one of the strands.

[0145] Clause 13: The anchor element is a first anchor element, and the watch band further comprises a second anchor element extending from within another one of the strands, the second anchor element being secured to the mounting element on an opposite side to the first anchor element.

[0146] Item 14: An intermediate element positioned within the mounting element and connecting the strand to the mounting element.

[0147] Item 15: An engaging element that connects the anchor element to the intermediate element.

[0148] Item 16: A locking mechanism extending through openings in the mounting element and the intermediate element, the locking mechanism configured to securely engage the watch housing.

[0149] Item 17: One of the strands includes a core filament and an outer thread co-braided around the core filament and a portion of the anchor element.

[0150] Clause 18: One of the strands conforms to the shape of the anchor element so that one of the strands forms a loop.

[0151] Item 19: The watch band further comprises a spring element that biases the locking mechanism away from the mounting element.

[0152] Clause 20: The ramp forms a chamfer joining the top surface of the locking mechanism to the outer surface.

[0153] Clause 21: The locking mechanism is configured to protrude on only one side of the mounting element.

[0154] Clause 22: The button is biased away from the locking mechanism and is movable within the recess to press the locking mechanism into the mounting element.

[0155] Clause 23: The locking mechanism defines an outer portion facing the band portion and having a first height, and an inner portion opposite the outer portion and having a second height less than the first height.

[0156] Clause 24: The housing is configured to engage an end portion that is oblique to the direction of movement of the mounting element within the channel with an inclined surface of the locking mechanism.

[0157] Clause 25: The locking mechanism further defines an outer surface configured to engage with the recess while the locking mechanism is in the third configuration.

[0158] Clause 26: The chamfer joins the upper surface to form an edge that is oblique to the direction of movement of the mounting element within the channel.

[0159] Clause 27: A braided strand positioned within the attachment element and across the locking mechanism, the braided strand extending out and away from the attachment element.

[0160] Clause 28: A mounting element, a locking mechanism movable within the mounting element, and a spring element biasing the locking mechanism away from the mounting element.

[0161] As noted above, one aspect of the present technology involves the collection and use of data available from a variety of sources. This disclosure contemplates that, in some examples, this collected data may include personal information data that uniquely identifies a particular person or that can be used to contact or locate a particular person. Such personal information data may include demographic data, location-based data, phone numbers, email addresses, Twitter IDs, home addresses, data or records regarding a user's health or fitness level (e.g., vital sign measurements, medication information, exercise information), birth date, or any other identifying or personal information.

[0162] It is understood in this disclosure that the use of such personal information data in the present technology may be used to the benefit of the user. For example, health and fitness data may be used to provide insight into the user's overall wellness or as proactive feedback to individuals using the technology to pursue wellness goals.

[0163] This disclosure contemplates that entities responsible for the collection, analysis, disclosure, transmission, storage, or other use of such personal information data will adhere to established privacy policies and / or privacy practices. In particular, such entities should implement and consistently use generally recognized privacy policies and practices that meet or exceed industry or government requirements for keeping personal information data private and secure. Such policies should be easily accessible to users and updated as data collection and / or use changes. Personal information from users should be collected for the entity's lawful and legitimate uses and should not be shared or sold outside of these legitimate uses. Furthermore, such collection / sharing should occur after receiving the user's informed consent. Additionally, such entities should consider taking all necessary steps to protect and secure access to such personal information data and to ensure that others with access to the personal information data comply with their privacy policies and procedures. Furthermore, such entities may undergo third-party assessments to demonstrate their adherence to widely accepted privacy policies and practices. Additionally, policies and practices should be tailored to the specific types of personal data collected and / or accessed and should comply with applicable laws, regulations, and standards, including jurisdiction-specific considerations. For example, in the United States, the collection of or access to certain health data may be governed by federal and / or state laws, such as the Health Insurance Portability and Accountability Act (HIPAA), and health data in other countries may be subject to, and should be handled in accordance with, other regulations and policies. Accordingly, different privacy practices should be maintained for different types of personal data in each country.

[0164] Notwithstanding the above, the present disclosure also contemplates embodiments in which a user selectively prevents use of or access to personal information data. That is, the present disclosure contemplates that hardware and / or software elements may be provided to prevent or block access to such personal information data. For example, in the case of an advertising delivery service, the technology may be configured to allow a user to “opt in” or “opt out” of participating in the collection of personal information data during registration for the service or at any time thereafter. In another example, a user may choose not to provide mood-related data for a targeted content delivery service. In yet another example, a user may choose to limit the period for which mood-related data is maintained or to prohibit the development of a baseline mood profile entirely. In addition to providing “opt-in” and “opt-out” options, the present disclosure contemplates providing notice regarding the access or use of personal information. For example, a user may be notified when downloading an app that their personal information data will be accessed, and then the user may be reminded of this again just before their personal information data is accessed by the app.

[0165] Furthermore, it is contemplated in this disclosure that personal information data should be managed and handled in a manner that minimizes the risk of unintended or unauthorized access or use. Risk can be minimized by limiting data collection and deleting data when it is no longer needed. Additionally, where applicable, for example in certain health-related applications, anonymization of data can be used to protect user privacy. Anonymization can be facilitated as needed by removing certain identifiers (e.g., date of birth, etc.), controlling the amount or specificity of data stored (e.g., collecting location data at a city level rather than at an address level), controlling how data is stored (e.g., aggregating data across users), and / or other methods.

[0166] Thus, while this disclosure broadly encompasses the use of personal information data to implement one or more various disclosed embodiments, this disclosure also contemplates that various embodiments may be implemented without requiring access to such personal information data. That is, various embodiments of the present technology are not rendered inoperable due to the absence of all or a portion of such personal information data. For example, content may be selected and delivered to a user by inferring preferences based only on a minimal amount of non-personal information or personal information, such as content requested by a device associated with the user, other non-personal information available to a content delivery service, or publicly available information.

[0167] To illustrate the interchangeability of hardware and software, various illustrative blocks, modules, components, methods, operations, instructions, algorithms, etc., are described generally in terms of their functionality. Whether such functionality is implemented as hardware, software, or a combination of hardware and software depends on the particular application and design constraints imposed on the overall system. Those skilled in the art may implement the described functionality in various ways for each particular application.

[0168] Reference to an element in the singular is not intended to mean one and only one, but rather one or more, unless specifically stated. For example, "a" module can refer to one or more modules. An element followed by "a," "an," "the," or "said" does not, without further constraints, preclude the presence of additional identical elements.

[0169] Headings and subheadings, if any, are used for convenience only and do not limit the invention. The word exemplary is used to mean serving as an example or illustration. To the extent terms such as include or have are used, such terms are intended to be as inclusive as the term comprising, as that term is interpreted when used as a transitional term in the claims. Relational terms such as first and second may be used to distinguish one entity or action from another without necessarily requiring or suggesting an actual relationship or order between such entities or actions.

[0170] Phrases such as "an aspect," "the aspect," "an aspect," "some aspects," "one or more aspects," "an implementation," "the implementation," "an implementation," "some implementations," "one or more implementations," "an embodiment," "the embodiment," "an embodiment," "some embodiments," "one or more embodiments," "a configuration," "the configuration," "another configuration," "some configurations," "one or more configurations," the subject technology, the disclosure, the present disclosure, and other variations thereof, are used for convenience and do not imply that disclosure related to such phrase(s) is essential to the subject technology or that such disclosure applies to all configurations of the subject technology. Disclosure related to such phrase(s) may apply to all configurations or to one or more configurations. Disclosure related to such phrase(s) may provide one or more examples. Phrases such as "an aspect" or "some aspects" can refer to one or more aspects, and vice versa, as with the other phrases described above.

[0171] As used herein, the phrase "at least one of," preceding a list of items, with the term "and" or "or" separating any of the items, modifies the list as a whole and not each member of the list. The phrase "at least one of" does not require the selection of at least one item; rather, the phrase allows for the inclusion of 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. By way of example, the phrases "at least one of A, B, and C" or "at least one of A, B, or C" each 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, respectively.

[0172] It is understood that the specific order or hierarchy of steps, operations, or processes disclosed is an illustration of example approaches. Unless otherwise specified, it is understood that the specific order or hierarchy of steps, operations, or processes may be performed in different order. Some of the steps, operations, or processes may be performed simultaneously. The method claims, if any, present the various steps, operations, or process elements in a sample order and are not intended to be limited to the specific order or hierarchy presented. These may be performed sequentially, linearly, in parallel, or in different orders. It is understood that the instructions, operations, and systems described may generally be integrated together in a single software / hardware product or packaged in multiple software / hardware products.

[0173] In one aspect, the term coupled or the like may refer to being directly coupled. In another aspect, the term coupled or the like may refer to being indirectly coupled.

[0174] Terms such as top, bottom, front, back, side, horizontal, and vertical refer to any frame of reference, rather than the usual gravitational frame of reference, and thus such terms extend to above, below, diagonally, or horizontally in the gravitational frame of reference.

[0175] The disclosure is provided to enable those skilled in the art to practice the various aspects described herein. In some instances, well-known structures and components are shown in block diagram form to avoid obscuring the concepts of the subject technology. The disclosure provides various examples of the subject technology, and the subject technology is not limited to these examples. Various modifications to these aspects will be readily apparent to those skilled in the art, and the principles described herein may be applied to other aspects.

[0176] All structural and functional equivalents to the elements of the various aspects described throughout the disclosure that are known or later become known to those skilled in the art are expressly incorporated herein by reference and are intended to be encompassed by the claims. Furthermore, nothing disclosed herein is intended to be made available to the public, regardless of whether such disclosure is expressly recited in the claims. No claim element is to be construed under 35 U.S.C. § 112, paragraph 6, unless the element is recited using the phrase "means for," or, in the case of a method claim, the element is recited using the phrase "step for."

[0177] The title, background, brief description of the drawings, abstract, and drawings are hereby incorporated into this disclosure and are provided as illustrations of the disclosure, not as a limiting description. This is submitted with the understanding that they are not used to limit the scope or meaning of the claims. Additionally, in the detailed description, the description provides illustration, and it will be appreciated that various features have been grouped together in various implementations to streamline the disclosure. This method of disclosure should not be interpreted as reflecting an intention that the claimed subject matter requires more features than are expressly recited in each claim. Rather, as the claims reflect, inventive subject matter lies in less than all features of a single disclosed structure or operation. The claims are hereby incorporated into the detailed description, with each claim standing on its own as separately claimed subject matter.

[0178] The claims are not intended to be limited to the embodiments described herein, but are to be accorded the full scope consistent with the language of the claims, including all legal equivalents. However, no claim is intended to cover subject matter that does not comply with applicable patent law requirements, and no claim should be so interpreted.

Claims

1. A watch band, strands braided together to form an end section that resides in a channel formed in the watch housing and an extension section that extends away from the end section; An intermediate element, a plate element; a mounting element for engaging the channel in the watch housing; at least a portion of the end section is positioned between the intermediate element and the plate element to provide rigid structural support to the end section; A watch band wherein at least a portion of the end section, the intermediate element and the plate element are within the mounting element.

2. 10. The watch band of claim 1, further comprising a pin extending from said intermediate element to said plate element, said pin extending through said end section.

3. 10. The watch band of claim 1, further comprising a locking mechanism extending through the mounting element and a portion of the intermediate element.

4. 4. The watch band of claim 3, further comprising a spring configured to bias the locking mechanism away from the portion of the intermediate element.

5. 10. The watch band of claim 1, wherein the strands include outer strands joined to opposite sides of the mounting element and defining a width of the end section.

6. 2. The watchband of claim 1, wherein the strands are arranged at a first strand density in the end sections and at a second strand density in the extension section, the first strand density being lower than the second strand density.

7. 2. The watchband of claim 1, wherein the strands are arranged at a first pitch angle in the end sections and at a second pitch angle in the extension sections, the first pitch angle being greater than the second pitch angle.

8. 2. The watch band of claim 1, wherein the strands are arranged with the same number of strands in the end section and the extension section.

9. 10. The watchband of claim 1, further comprising a binder joining said strands together in said end sections, said strands in said extension section being free to move relative to one another.

10. A watch band, strands braided together to form an end section that resides in a channel formed in the watch housing and an extension section that extends away from the end section; An intermediate element, anchor elements connecting the outermost pair of strands to the intermediate element to provide rigid structural support to the end sections; an attachment element for engaging the channel of the housing of the watch, wherein a portion of the strand forming the end section, the intermediate element, and a portion of the anchor element are within the attachment element; a locking mechanism extending between the strands at the end section and projecting beyond an outer surface of the mounting element; A watch band with

11. The watch band of claim 10 , wherein the housing and the strands entirely surround the mounting element when the mounting element is in the channel.

12. 11. The watch band of claim 10, wherein each of the anchor elements extends from within a corresponding one of the outermost pair of strands.

13. 11. The watchband of claim 10, wherein each of the anchor elements includes a straight portion on the outside of one of the strands and a curved portion within a corresponding one of the outermost pair of strands.

14. 11. The watch band of claim 10, wherein the locking mechanism is movable within the end section so as to be flush with an outer surface of the mounting element.

15. A watch band, strands braided together to form an end section that resides in a channel formed in the watch housing and an extension section that extends away from the end section; An intermediate element, an engaging element extending from the intermediate element; anchor elements each extending from a corresponding outermost one of the strands into a corresponding one of the engaging elements, the anchor elements being coupled to the intermediate element via the engaging elements to provide rigid structural support to the end sections; an attachment element for engaging the channel of the housing of the watch, wherein a portion of the strand forming the end section, the intermediate element, and a portion of the anchor element are within the attachment element; A watch band with

16. 16. The watchband of claim 15, wherein each of the anchor elements extends from within the corresponding outermost one of the strands.

17. 16. The watch band of claim 15, wherein each of the anchor elements includes a straight portion exterior to said one of the strands and a curved portion within said one of the strands.

18. 16. The watch band of claim 15, further comprising a locking mechanism extending through openings in the mounting element and the intermediate element, the locking mechanism configured to securely engage the housing of the watch.

19. 20. The watchband of claim 18, wherein the locking mechanism is movable within the end section so as to be flush with an outer surface of the mounting element.

20. 20. The watch band of claim 18, further comprising a spring element configured to bias the locking mechanism to protrude beyond an outer surface of the mounting element.

Citation Information

Patent Citations

  • Direct connection of case of wrist watch and band

    JP1983109005A

  • Expandable band antenna for wrist-mount appliance and manufacture of the same

    JP1988197103A

  • Electronic device mounting system

    JP3203984U