The subject matter disclosed herein relates to motion transformation.
An apparatus for motion transformation is disclosed. The apparatus includes a key and a plunger. The key moves along a first axis in a linear key displacement direction and along the first axis in a linear key return direction that is opposite the key displacement direction. The key includes a motivating arm on a distal end. The motivating arm includes a displacement cam surface disposed on a ventral side of the motivating arm and a return cam surface disposed on a dorsal side of the motivating arm. The plunger moves along a second axis. The plunger includes a displacement interface that is motivated by the displacement cam surface in response to the key moving in the key displacement direction to motivate the plunger in a plunger displacement direction. The plunger further includes a return interface.
A system for motion transformation is disclosed. The system includes a cabinet, a key, a button, and a plunger. The key moves along a first axis in a linear key displacement direction in the cabinet and along the first axis in a linear key return direction that is opposite the key displacement direction. The key includes a motivating arm on a distal end. The motivating arm includes a displacement cam surface disposed on a ventral side of the motivating arm and a return cam surface disposed on a dorsal side of the motivating arm. The plunger moves along a second axis in the cabinet. The button motivates the key in the key displacement direction. The plunger includes a displacement interface that is motivated by the displacement cam surface in response to the key moving in the key displacement direction to motivate the plunger in a plunger displacement direction. The plunger further includes a return interface.
A method for motion transformation is also disclosed. The method provides a key and a plunger. The key includes a motivating arm on a distal end. The motivating arm includes a displacement cam surface disposed on a ventral side of the motivating arm and a return cam surface disposed on a dorsal side of the motivating arm. The plunger includes a displacement interface that is motivated by the displacement cam surface. The method moves the key along the first axis in the key displacement direction. The method further moves the plunger in the plunger displacement direction in response to the displacement cam surface motivating the displacement interface.
In order that the advantages of the embodiments of the invention will be readily understood, a more particular description of the embodiments briefly described above will be rendered by reference to specific embodiments that are illustrated in the appended drawings. Understanding that these drawings depict only some embodiments and are not therefore to be considered to be limiting of scope, the embodiments will be described and explained with additional specificity and detail through the use of the accompanying drawings, in which:
Reference throughout this specification to “one embodiment,” “an embodiment,” or similar language means that a particular feature, structure, or characteristic described in connection with the embodiment is included in at least one embodiment. Thus, appearances of the phrases “in one embodiment,” “in an embodiment,” and similar language throughout this specification may, but do not necessarily, all refer to the same embodiment, but mean “one or more but not all embodiments” unless expressly specified otherwise. The terms “including,” “comprising,” “having,” and variations thereof mean “including but not limited to” unless expressly specified otherwise. An enumerated listing of items does not imply that any or all of the items are mutually exclusive and/or mutually inclusive, unless expressly specified otherwise. The terms “a,” “an,” and “the” also refer to “one or more” unless expressly specified otherwise. The term “and/or” indicates embodiments of one or more of the listed elements, with “A and/or B” indicating embodiments of element A alone, element B alone, or elements A and B taken together.
The schematic flowchart diagrams and/or schematic block diagrams in the Figures illustrate the architecture, functionality, and operation of possible implementations. It should also be noted that, in some alternative implementations, the functions noted in the block may occur out of the order noted in the Figures. For example, two blocks shown in succession may, in fact, be executed substantially concurrently, or the blocks may sometimes be executed in the reverse order, depending upon the functionality involved. Although various arrow types and line types may be employed in the flowchart and/or block diagrams, they are understood not to limit the scope of the corresponding embodiments. Indeed, some arrows or other connectors may be used to indicate only an exemplary logical flow of the depicted embodiment.
The description of elements in each figure may refer to elements of proceeding figures. Like numbers refer to like elements in all figures, including alternate embodiments of like elements.
In the depicted embodiment, the apparatus 100 includes a key 101 and a plunger 141. The key 101 is constrained to move along the first axis 111. The key 101 may be constrained by a channel. The key 101 may be motivated to move in a key displacement direction 113. The key displacement direction 113 may be linear. In addition, the key may be motivated to move in a key return direction 115 that is opposite the key displacement direction 113. The key return direction 115 may be linear. The key 101 may comprise a motivating arm 103 on a distal end 107. The motivating arm 103 may comprise a displacement cam surface 121 disposed on a ventral side 131 of the motivating arm 103 and a return cam surface 123 disposed on a dorsal side 133 of the motivating arm 103.
The motivating arm 103 may be at an arm angle 135 in a range of 15 to 60 degrees from the first axis 111. The arm angle may be 45 degrees. In one embodiment, the motivating arm 103 includes an arm end 153. The motivating arm 103 is described in more detail in
The key 101 and/or the displacement cam surface 121 and the return cam surface 123 may be fabricated of stainless steel. In addition, the key 101 and/or the displacement cam surface 121 and the return cam surface 123 may be nonmagnetic. In one embodiment, the key 101 and components thereof may be of sufficient strength to motivate force welded contacts. In one embodiment, the key 101 comprises a button 151 disposed on a proximal end 105. The button 151 may be connected via a thread. The button 151 may receive a manual force.
The plunger 141 may be constrained to move along the second axis 109. The plunger 141 is described in more detail in
The plunger 141 may further comprise a return interface 145. The return interface 145 may be motivated by the return cam surface 123 in response to the key 101 moving in the key return direction 115 to move the plunger 141 in a plunger return direction 149 that is opposite the plunger displacement direction 147.
y=(kx)2+m Equation 1
The spline may generate increasing acceleration in the plunger displacement direction 147 and/or the plunger return direction 149. In one embodiment, the curve is given by Equation 2, where y 191 and x 193 are coordinates and k and m are nonzero constants.
y=(kx)3+m Equation 2
The spline may generate decreasing acceleration in the plunger displacement direction 147 and/or the plunger return direction 149. In one embodiment, the curve is given by Equation 3, where y 191 and x 193 are coordinates and k and m are nonzero constants.
y=(kx)°5+m Equation 3
In one embodiment, the displacement cam surface 121 and/or the return cam surface 123 are stepwise functions, wherein intervals along the displacement cam surface 121 and/or the return cam surface 123 are pairwise disjoint and where the union of the intervals is the entire displacement cam surface 121 and/or the return cam surface 123.
In the depicted embodiment, the motivating arm 103 further comprises a secondary return cam surface 123b disposed on the dorsal side 133 that motivates the return interface 145 in response to the key 101 moving the second distance 163 in the key return direction 115 to move the plunger 141 in the plunger return direction 149.
At least one interface support 144 connects the displacement interface 143 and the return interface 145. In the depicted embodiment, two interface supports 144 are disposed on either side of the displacement interface 143 and the return interface 145. The displacement interface 143 and the return interface 145 are shown disposed on an inner surface of an orifice 171 formed by the interface supports 144. The orifice 171 may narrow to retain a poka-yoke as will be shown hereafter.
The method 500 starts, and in one embodiment, the method provides 501 the key 101 and the plunger 141. The method 500 further moves 503 the key 101 along the first axis 111 in the key displacement direction 113. In response, the displacement cam surface 121 motivates the displacement interface 143 to move 505 the plunger 141 in the plunger displacement direction 147.
The method 500 further moves 507 the key 101 along the first axis 111 in the key return direction 115. In response the return cam surface 123 motivates the return interface 145 to move 509 the plunger 141 in the plunger return direction 149 and the method 500 ends.
Motion along the first axis 111 may be needed to apply a force and/or motivation along the second axis 109. Such motion transformation is often needed for safety controls, where a manual force along the first axis 111 must be applied along the second axis 109. The embodiments provide a key 101 that moves along the first axis 111 in the key displacement direction 113. The key 101 includes a motivating arm with the displacement cam surface 121. As the key 101 moves in the key displacement direction 113, the displacement cam surface 121 motivates the displacement interface 143 to motivate the plunger 141 in the plunger displacement direction 147 along the second axis 109. As a result, the motion applied to the key 101 is efficiently and effectively transferred via the plunger 141 along the second axis 109.
This description uses examples to disclose the invention and also to enable any person skilled in the art to practice the invention, including making and using any devices or systems and performing any incorporated methods. The patentable scope of the invention is defined by the claims and may include other examples that occur to those skilled in the art. Such other examples are intended to be within the scope of the claims if they have structural elements that do not differ from the literal language of the claims, or if they include equivalent structural elements with insubstantial differences from the literal language of the claims.
Number | Name | Date | Kind |
---|---|---|---|
514511 | Sorensen | Feb 1894 | A |
720462 | McVoy et al. | Feb 1903 | A |
788515 | Carlson | May 1905 | A |
935004 | Farch | Sep 1909 | A |
970934 | Leese | Sep 1910 | A |
1061177 | Hashim | May 1913 | A |
1086462 | Randa | Feb 1914 | A |
1209562 | Cunningham | Dec 1916 | A |
1211437 | Gruber | Jan 1917 | A |
1228996 | Walters | Jun 1917 | A |
1270288 | Gruber | Jun 1918 | A |
1287973 | Gruber | Dec 1918 | A |
1469590 | Palmer | Oct 1923 | A |
1777176 | Mcody | Sep 1930 | A |
1850222 | Carlson | Mar 1932 | A |
2683978 | Jacobi | Jul 1954 | A |
2687637 | Jacobi | Aug 1954 | A |
2755654 | Valentine | Jul 1956 | A |
2950615 | Schlage | Aug 1960 | A |
3018652 | Dubonnet | Jan 1962 | A |
3690132 | Engstrom | Sep 1972 | A |
3737184 | Swartz | Jun 1973 | A |
3890814 | Fantoni | Jun 1975 | A |
3975934 | Babai | Aug 1976 | A |
3991595 | Bahry | Nov 1976 | A |
4039214 | Arends | Aug 1977 | A |
4113292 | Gauron | Sep 1978 | A |
4195867 | Baillie | Apr 1980 | A |
4579376 | Charlton | Apr 1986 | A |
4667492 | Tomatsu | May 1987 | A |
4740020 | Williams | Apr 1988 | A |
4875721 | Okamoto | Oct 1989 | A |
5026101 | Dotterweich | Jun 1991 | A |
5219191 | Wolter | Jun 1993 | A |
5829802 | Anderson | Nov 1998 | A |
6048001 | Miller | Apr 2000 | A |
6105858 | Chien | Aug 2000 | A |
6122943 | DaWalt | Sep 2000 | A |
6148650 | Kibble | Nov 2000 | A |
6234547 | Ruffino | May 2001 | B1 |
6739162 | Kondratuk | May 2004 | B1 |
6964184 | Gregory | Nov 2005 | B1 |
7188871 | Nemoto | Mar 2007 | B2 |
20020089186 | Wu | Jul 2002 | A1 |
20020105200 | Reynolds | Aug 2002 | A1 |
20020145292 | Furner | Oct 2002 | A1 |
20020166356 | Kuo | Nov 2002 | A1 |
20050156433 | Nemoto | Jul 2005 | A1 |
20060005589 | Hanjono | Jan 2006 | A1 |
20080295416 | Kintz | Dec 2008 | A1 |
20100207403 | Bourgoin | Aug 2010 | A1 |
20100237637 | Camp | Sep 2010 | A1 |
20110018285 | Mitchell | Jan 2011 | A1 |
20110248516 | Liang | Oct 2011 | A1 |
20110316397 | Sabelli | Dec 2011 | A1 |
20120159750 | Liu | Jun 2012 | A1 |
20130328327 | Loret de Mola | Dec 2013 | A1 |
20150152665 | Camp | Jun 2015 | A1 |
20190106907 | Pavlik | Apr 2019 | A1 |
20220325567 | Camp | Oct 2022 | A1 |
Number | Date | Country |
---|---|---|
726876 | Jun 2007 | KR |
Number | Date | Country | |
---|---|---|---|
20220299093 A1 | Sep 2022 | US |