Abstract:
An exercise device includes a flexible support element (104, 404,406) and a step height adjustment mechanism (38, 338). The flexible support element (104, 404, 406) couples at least one crank (70, 370) to a right foot support (60, 360) and a left foot support (60, 360). The step height adjustment mechanism (38, 338) allows a person to adjust a step height of a path through which the left and right foot supports (60, 360) move.
Abstract:
A balance simulator for bicycling comprises a base (4) and a roller device. A guide rail (20) is provided on the top surface of the base (4), and a removable board (3) is mounted on the guide rail (20). A rotatable plate vertical shaft (10) on top of which a rotatable plate (2) pivots is provided vertically on the middle part of the removable board (3), and a groove (6) for holding the bicycle front wheel (1) is provide longitudinally on the top surface of the rotatable plate (2). A semicircular inner gear (5) is installed on the foreside of the bottom surface of the rotatable plate (2), and the central lines of the semicircular inner gear (5) and the rotatable plate vertical shaft (10) are collinear. The semicircular inner gear (5) is engaged with a small gear (7) on the top of the gear shaft (8) which is mounted rotatablely on the middle front part of the removable board (3). A big gear (16) is provided on the lower part of the gear shaft (8) and is engaged with a long rack (19) which is mounted on the middle part of the base (4).
Abstract:
An elliptical exercise machine with adjustable ramp is provided and comprises a frame, first and second reciprocating foot supports, each foot support having a foot placement pad, first and second swing arms being pivotally connected to an upright support structure, first and second link arms being connected to a respective swing arm and a second end of each link arm being interconnected to a second end of a respective reciprocating foot support, a drive assembly positioned on the upright support structure, wherein a first end of each reciprocating foot support is movably linked to the drive assembly, and a ramp assembly adjustably linked to the frame by an adjustment mechanism coupled to the frame and the ramp assembly, the adjustment mechanism being configured to adjust the position of the ramp assembly and to thereby adjust stride movements of the respective foot placement pads.
Abstract:
An elliptical exercise machine with adjustable foot motion is provided. The elliptical exercise machine, which is adjustable to yield different elliptical paths selectable by a user, comprises a frame, a drive assembly situated on the frame, first and second link arms, the first end of each link arm being rotatably connected to the drive assembly, first and second reciprocating foot supports, the first end of each foot support being pivotally interconnected to the frame, and first and second brackets, wherein the first bracket adjustably connects the first link arm to the first foot support, and wherein the second bracket adjustably connects the second link arm to the second foot support.
Abstract:
A variable stride device may include right and left foot engagement members operatively coupled to right and left cam-link assemblies, respectively. The cam-link assemblies may each be operatively coupled to a rotating member, such as a crank assembly, and to right and left swing arms, respectively. The cam-link assemblies may each include a cam member and first and second links. A user may engage the foot engagement members to move the foot engagement members in a substantially constant or variable elliptical, pseudo-elliptical or other stride path. The variable stride device may further include a resistance system for resisting movement of the foot engagement members.
Abstract:
The present invention supports a communication protocol on a wireless communication network to transmit application data on the control channel to an access terminal. Base transceiver stations are grouped and configured into paging zones. The radio network controller transmits a page message and application data to the base transceiver stations in the paging zone where the access terminal is located. Each of the base transceiver stations transmits a page and buffers the application data. The buffered application data is only transmitted by the base transceiver station receiving a response to the page.
Abstract:
A stationary exercise apparatus has a frame (110) comprising a base (111), a side portion(113), a front(112) and a back (111); first and second supporting members (120a, 120b), each supporting member (120a, 120b) having a first end portion (153) and a second end portion 154), the first end portions of the first and second supporting members respectively coupled to the frame to rotate about a first axis; first and second swing members (149a, 149b), each swing member having an upper portion (150) and a lower portion (151), the lower portions of the first and second swing members respectively pivotally joined to the second end portions of the first and second supporting members, the upper portions of the first and second swing members respectively pivotally connected to the side portion of the frame at points that define a swing axis (159); first and second pedals (150a, 150b) respectively coupled to the first and second supporting members, the first and second pedals moving along a closed path while the first ends of the first and second supporting members are being rotated about the first axis and the second ends of the first and second supporting members are reciprocating with the lower portions of the first and second swing members. The invention can vary the stride path and the exercise intensity of a user.
Abstract:
The present invention provides for a variable stride exercise device having a variable size close curved striding path during use. The exercise device described and depicted herein utilizes various configurations of linkage assemblies, cam members, and other components, connected with a frame to allow a user to dynamically vary his stride path during exercise. An exercise device conforming to aspects of the present invention provides a foot path that adapts to the change in stride length rather than forcing the user into a fixed size path. Some embodiments of the exercise device include a lockout device that selectively eliminates the variable stride features of the exercise device and allows the user to exercise in a stepping motion. Other aspects of the present invention relate to a releasable connection mechanism that can be used to selectively and/or automatically limit or eliminate the variable stride feature of an exercise device.
Abstract:
A variable spring resistance to movement of a rod uses a plurality of springs permanently connected between a base and a stack of end connector links extending in the direction of the rod movement. Selecting which of the links is connected to the rod then determines which of the springs are deployed to resist movement of the rod, without requiring any disconnection or reconnection of the springs. The selection can be made by a pin inserted through an aligned hole between a link and the rod.
Abstract:
An exercise device includes a first treadle assembly supporting a first moving surface and a second treadle assembly supporting a second moving surface. The exercise device further includes an upper body exercise assembly operably associated with the exercise device. The first treadle assembly is pivotally coupled with the frame structure, and the second treadle assembly is pivotally coupled with the frame structure. In another form, an exercise device includes a frame structure, a first treadle assembly having a first endless belt in rotatable engagement with a first roller, a second treadle assembly having a second endless belt in rotatable engagement with a second roller, and a flywheel operably coupled with the first endless belt and the second endless belt.