Abstract:
A magnetic device mounts on a flat spoke of a wheel. This magnetic device can comprise a magnet and a housing. The housing is coupled to the magnet, and has a spoke-receiving recess with a non-circular cross section, and at least one detent. The detent extends from the housing into the spoke-receiving recess to secure a flat spoke within the spoke-receiving recess via a snap-fit. The magnetic device communicates with a sensing device, which is adapted to be coupled to a portion of the bicycle that is adjacent to a wheel of the bicycle. A display unit, adapted to be mounted on handlebars of the bicycle, displays the speed information obtained from the sensing device. In a second embodiment, the housing is made of a more elastic material, and the detents become optional. In a third embodiment, the spoke-receiving recess of the housing has a projection that engages a concavity form in the connecting portion of the spoke. In a fourth embodiment, the spoke-receiving recess of the housing has a concavity that engages a projection form on the connecting portion of the spoke.
Abstract:
A bicycle bottom bracket assembly has a crank axle and a pair of bearing units coupled thereto. The bearing units are configured to be mounted in a tubular hanger part or bottom bracket tube of a bicycle frame. The crank axle has a central portion, a first axial end portion disposed on a first side of the central portion and a second axial end portion disposed on a second side of the central portion. Each of the bearing units has an outer race, an inner race and a plurality of rolling members between the first outer and inner race. At least one of the bearing units has at least one drainage passage formed in the outer race.
Abstract:
A magnetic device mounts on a flat spoke of a wheel. This magnetic device can comprise a magnet and a housing. The housing is coupled to the magnet, and has a spoke-receiving recess with a non-circular cross section, and at least one detent. The detent extends from the housing into the spoke-receiving recess to secure a flat spoke within the spoke-receiving recess via a snap-fit. The magnetic device communicates with a sensing device, which is adapted to be coupled to a portion of the bicycle that is adjacent to a wheel of the bicycle. A display unit, adapted to be mounted on handlebars of the bicycle, displays the speed information obtained from the sensing device. In a second embodiment, the housing is made of a more elastic material, and the detents become optional. In a third embodiment, the spoke-receiving recess of the housing has a projection that engages a concavity form in the connecting portion of the spoke. In a fourth embodiment, the spoke-receiving recess of the housing has a concavity that engages a projection form on the connecting portion of the spoke.
Abstract:
A magnetic assembly is provided for a bicycle monitoring device. The magnetic assembly includes a magnetic device that mounts on a special spoke of a wheel. This magnetic device has a housing with a magnet secured thereto. The housing has a spoke-receiving recess that receives the spoke. The housing can be secured to the spoke within the spoke-receiving recess via a snap-fit or an elastic fit. In one embodiment, the spoke-receiving recess of the housing has a projection that engages a concavity form in the connecting portion of the spoke. In another embodiment, the spoke-receiving recess of the housing has a concavity that engages a projection form on the connecting portion of the spoke. The magnetic device communicates with a sensing device, which is coupled to a portion of the bicycle that is adjacent to a wheel of the bicycle. A display unit that is mounted on handlebars of the bicycle displays the speed information obtained from the sensing device.
Abstract:
A bicycle bottom bracket assembly has a crank axle, a pair of bearing units and a pair of retaining clips. The bearing units are configured to be mounted in a tubular hanger part or bottom bracket tube of a bicycle frame. The crank axle has a central portion, a first axial end portion with a first recess disposed on a first side of the central portion and a second axial end portion with a second recess disposed on a second side of the central portion. One of bearing units is disposed on the first axial end portion of the crank axle at a location axially inward of the first recess, while the other bearing unit is disposed on the second axial end portion of the crank axle at a location axially inward of the second recess. One of retaining clips is disposed in the first recess and is configured to retain the one of the bearing units on the first axial end portion of the crank axle. The other retaining clip is disposed in the second recess and is configured to retain the other bearing unit on the second axial end portion of the crank axle.
Abstract:
A rear hub has a hub shaft and a hub outer that is configured to be mounted in a freely rotatable manner to the hub shaft. The hub outer has an outer main body and an adapter. The outer main body is arranged on the radially inward side of a sprocket, and has a first rotation preventing section that engages with an engaging section 64 of the sprocket in such a manner that the outer main body cannot rotate relative to the sprocket. The adapter is mounted in a freely rotatable manner on an adapter mounting section of the outer main body. The adapter includes a second rotation preventing section that engages with the engaging section of the sprocket in such a manner that the adapter cannot rotate relative to the sprocket.
Abstract:
A rear hub has a hub shaft and a hub outer that is configured to be mounted in a freely rotatable manner to the hub shaft. The hub outer has an outer main body and an adapter. The outer main body is arranged on the radially inward side of a sprocket, and has a first rotation preventing section that engages with an engaging section 64 of the sprocket in such a manner that the outer main body cannot rotate relative to the sprocket. The adapter is mounted in a freely rotatable manner on an adapter mounting section of the outer main body. The adapter includes a second rotation preventing section that engages with the engaging section of the sprocket in such a manner that the adapter cannot rotate relative to the sprocket.