Game controller input device allowing comfortable user actuation
View Patent ↗The invention relates to an input device, in particular for an electronic unit, preferably for a game controller, comprising an actuation element for the actuation of the input device by a user, having an actuation section accessible from outside the input device, wherein the actuation element can be brought into multiple actuation positions, which define an actuation range, by the user. Here, the actuation element can be displaced into the actuation positions by displacement in one or more displacement directions, which in particular lie substantially in a displacement plane. The input device furthermore comprises electronic position detection means which directly or indirectly detect an instantaneous actuation position of the actuation element. According to the invention, the actuation element is guided, linearly movably in an instantaneous stroke direction that is oriented perpendicular to a respectively instantaneous displacement direction, in the input device, and a control device is provided, by means of which, during a displacement of the actuation element in the actuation range in the one or more displacement directions, a stroke movement of the actuation element in the instantaneous stroke direction is controllable or controlled in a manner dependent on the displacement of the actuation element.
1 . An input device comprising:
a) an actuation element configured to:
actuate the input device by a user, the actuation element having an actuation section accessible from outside the input device, wherein the actuation section is part of the actuation element;
be brought into multiple actuation positions, which define an actuation range, by the user; and
be displaced into the actuation positions by displacement in one or more displacement directions, wherein the displacement of the actuation element includes a translational movement in a transverse displacement direction, the translational movement may include components of a rotational movement;
b) an electronic position component configured to directly or indirectly detect an instantaneous actuation position of the actuation element;
wherein the actuation element is further configured to be guided, movably in an instantaneous stroke direction that is oriented perpendicular to a respectively instantaneous displacement direction in the input device; and
c) a control device, wherein during a displacement of the actuation element in the actuation range in the one or more displacement directions, a stroke movement of the actuation element in the instantaneous stroke direction is controllable or controlled in a manner dependent on the displacement of the actuation element, wherein the control device determines a stroke profile of a point of the actuation element, the stroke profile referring to a path which the point of the actuation element moves along in a case of a superposed stroke movement and displacement.
2 . The input device as claimed in claim 1 , wherein all instantaneous displacement directions lie strictly in the displacement plane, and the instantaneous stroke directions are thus perpendicular to the displacement plane, and oriented along a common stroke direction, in every actuation position of the actuation element.
3 . The input device as claimed in claim 1 , further comprising a guide element, wherein the actuation element is mounted in the input device, so as to be guided displaceably in the one or more displacement directions and movably in the respectively instantaneous stroke direction by the guide element.
4 . The input device as claimed in claim 1 , further comprising an elastic element, wherein the actuation element is mounted in the input device, displaceably in the one or more displacement directions and movably in the respectively instantaneous stroke direction, by the elastic element.
5 . The input device as claimed in claim 1 , wherein the control device is configured such that the actuation element is at least partially lowerable or lowered into the input device in the respectively instantaneous stroke direction when said actuation element is displaced, in the one or more displacement directions.
6 . The input device as claimed in claim 1 , wherein the control device comprises a control element with a control surface, and the actuation element has a control section for interaction with the control surface, wherein the control surface is configured, and arranged with respect to the actuation element, such that, during the displacement of the actuation element in the one or more displacement directions, the stroke movement of the actuation element in the respectively instantaneous stroke direction is controllable or controlled by interaction of the control section with the control surface.
7 . The input device as claimed in claim 6 , wherein the control section protrudes into the input device in the respectively instantaneous stroke direction, and the control section is arranged in the input device opposite the control surface in the respectively instantaneous stroke direction.
8 . The input device as claimed in claim 6 , wherein the actuation element is preloadable or preloaded in the respectively instantaneous stroke direction against the control surface such that the control section is pressed against the control surface.
9 . The input device as claimed in claim 6 , wherein the control surface has one or more surface-structured regions, and when said control surface is passed over with the control section, haptic feedback can be generated for the user at the actuation section.
10 . The input device as claimed in claim 6 , wherein the control surface has a recess at one or more points, which recess defines a temporary rest position for the control section.
11 . The input device as claimed in claim 6 , wherein the control element comprises a control motion link on which the control surface is formed, and the control section interacts with the control motion link such that positive control of the stroke movement in a manner dependent on the displacement of the actuation element in the one or more displacement directions is implemented.
12 . The input device as claimed in claim 6 , wherein the control surface is, at least in certain regions, with respect to at least one of the one or more displacement directions, configured, so as to be curved in the respectively instantaneous stroke direction, toward or away from the instantaneous stroke direction.
13 . The input device as claimed in claim 12 , wherein the control surface is configured so as to be curved substantially in the manner of a dome so as to be convexly arched toward the actuation element, wherein a profile of the curved control surface has a maximum at a point which corresponds to the position of the control section in a neutral position of the actuation element, and wherein the control section is arranged in a pole region of the control surface when the actuation element is situated in the neutral position.
14 . The input device as claimed in claim 6 , wherein the actuation element is configured in a form of an elongate lever, wherein a longitudinal axis of the elongate lever is oriented in a respectively instantaneous stroke direction in every actuation position, wherein, the actuation section is formed at a first longitudinal end of the actuation element and the control section is formed at a second longitudinal end situated opposite the actuation section in a longitudinal direction.
15 . The input device as claimed in claim 6 , wherein the control element is arranged so as to be deflectable, in the input device in such a way that, when a force acts on the actuation element in the respectively instantaneous stroke direction, the control element is deflectable by means of the control section.
16 . The input device as claimed in claim 6 , wherein the control element is arranged in the input device such that the control element can be adjusted by the user.
17 . The input device as claimed in claim 6 , wherein the control element is arranged in the input device such that the control element can be exchanged by a user, such that different control elements with different control surfaces can be inserted into the input device.
18 . The input device as claimed in claim 17 , wherein the control element is fastened by a fastener.
19 . An electronic unit, comprising:
a) an actuation element configured to:
actuate the electronic unit by a user, having an actuation section accessible from outside the electronic unit, wherein the actuation section is part of the actuation element;
be brought into multiple actuation positions, which define an actuation range, and
be displaced into the actuation positions by displacement in one or more displacement directions, wherein the displacement of the actuation element includes a translational movement in a transverse displacement direction, the translational movement may include components of a rotational movement;
b) an electronic position component configured to directly or indirectly detect an instantaneous actuation position of the actuation element,
wherein the actuation element is further configured to be guided, movably in an instantaneous stroke direction that is oriented perpendicular to a respectively instantaneous displacement direction in the electronic unit, and
c) a control device, wherein during a displacement of the actuation element in the actuation range in the one or more displacement directions, a stroke movement of the actuation element in the instantaneous stroke direction is controllable or controlled in a manner dependent on the displacement of the actuation element, wherein the control device determines a stroke profile of a point of the actuation element, the stroke profile referring to a path which the point of the actuation element moves along in a case of a superposed stroke movement and displacement.
20 . The electronic unit as claimed in claim 19 , wherein the electronic unit is a game controller.