Nova Patents
CA2907435C

Exercise machine

Abstract

Described herein are embodiments of stationary exercise machines having reciprocating foot and/or hand members, such as foot pedals that move in a closed loop path. Some embodiments can include reciprocating foot pedals that cause a user's feet to move along a closed loop path that is substantially inclined, such that the foot motion simulates a climbing motion more than a flat walking or running motion. Some embodiments can further include reciprocating handles that are configured to move in coordination with the foot via a linkage to a crank wheel also coupled to the foot pedals. Variable resistance can be provided via a rotating air-resistance based mechanism, via a magnetism based mechanism, and/or via other mechanisms, one or more of which can be rapidly adjustable while the user is using the machine.

CA2907435C, drawing sheet 1
Sheet 1 of 22

Term

7.5 yearsleft in the term

Expires 18 March 2034.

  1. Priority and filed
  2. Granted
  3. Today
  4. Expires

15 claims: 10 independent, 5 dependent

  1. 1
    CA 02907435 2015-09-25 CLAIMS 1. A stationary exercise machine comprising:a stationary frame;a crankshaft mounted to the stationary frame to rotate about a crankshaft axis;an upper moment-producing mechanism operatively connected to the crankshaft to cause a first moment on the crankshaft throughout a cycle of motion of the upper moment-producing mechanism, the upper moment-producing mechanism including first and second upper linkages including first and second handles, respectively, and first and second virtual crank arms, respectively, that convert the user’s input force at the first and second handles into the first moment;a lower moment-producing mechanism operatively connected to the crankshaft to cause a second moment on the crankshaft throughout a cycle of motion of the lower moment-producing mechanism, the lower moment producing mechanism including first and second lower linkages including first and second crank arms, respectively, each first and second crank arm fixedly connected to the crankshaft and rotatable about the crankshaft axis, the first and second crank arms pivotally connected respectively to the first and second lower reciprocating members to form a respective axis;and wherein each of the axes orbit the crankshaft axis, and the angle between the first and second crank arms and corresponding first and second virtual crank arms is between approximately 60 and 90 degrees.
  2. 3
    The stationary exercise machine of any of claims 1 or 2, wherein:the first and second lower linkages include respective first and second pedals that are operably connected to the crankshaft, thereby transferring a user’s input force at the first and second pedals into the second moment at the crankshaft.
  3. 4
    The stationary exercise machine of any of claims 1 to 3, wherein:the first virtual crank arm and the first crank arm are situated at about 75° relative to one another;and the second virtual crank arm and the second crank arm are situated at about 75° relative to one another.
  4. 5
    The stationary exercise machine of any one of claims 1 to 4, wherein:the first virtual crank arm and the first crank arm have a length ratio relative to one another of between 1:1 and 1:4, where lengths of the first virtual crank arm and the first crank arm are each measured from the crankshaft axis to respective pivot axes of the first virtual crank arm and the first crank arm;and the second virtual crank arm and the second crank arm have a length ratio relative to one another of between 1:1 and 1:4, where lengths of the second virtual crank arm and the second crank arm are each measured from the crankshaft axis to respective pivot axes of the second virtual crank arm and the second crank arm.
  5. 7
    The stationary exercise machine of any one of claims 1 to 6, wherein:the length ratio of the first virtual crank arm and the first crank arm is about 1:2.8, and the length ratio of the second virtual crank arm and the second crank arm is about 1:2.8.
  6. 8
    The stationary exercise machine of any one of claims 1 to 7, wherein:the first and second upper linkages further include first and second upper reciprocating links, respectively, that are pivotally associated with the first and second virtual crank arms, respectively.
  7. 12
    The stationary exercise machine of 9, wherein:the upper moment-producing mechanism and the lower momentproducing mechanism provide a mechanical advantage ratio of between about .8 and 1.1 when the first and second rollers are at about the midpoint of their travel between their respective predetermined upper and lower points.
  8. 13
    The stationary exercise machine of any one of claims 1-12, wherein:the upper moment-producing mechanism and the lower momentproducing mechanism provide a mechanical advantage ratio of between about .6 and 1.4 in a power band of the cycles of motion of the upper and lower momentproducing mechanisms.
  9. 14
    The stationary exercise machine of any one of claims 1 to 13, further comprising:a resistance mechanism operatively connected to the crankshaft.
  10. 15
    The stationary exercise machine of any one of claims 1-14, wherein the upper moment producing mechanism comprises an eccentric linkage created by the virtual crank arms.