FOOT PEDAL CONTROL UNIT
20230229187 · 2023-07-20
Assignee
Inventors
Cpc classification
A61F9/00736
HUMAN NECESSITIES
G05G1/483
PHYSICS
G05G5/06
PHYSICS
G05G2505/00
PHYSICS
G05G9/04
PHYSICS
G05G1/305
PHYSICS
International classification
A61B34/00
HUMAN NECESSITIES
G05G9/04
PHYSICS
Abstract
The invention relates to a foot pedal control unit for an ophthalmic surgery system. The unit has a base and a treadle that is configured for pivotal pitch movement and for pivotal yaw movement relative to the base for generating control signals to an ophthalmic surgery system. The unit further comprises an inlay cover that is removably placed on the treadle. Optionally, the unit comprises a locking element that is movable between a lock position wherein the treadle is locked against pivotal yaw movement and a release position wherein the treadle is enabled to perform pivotal yaw movement.
Claims
1. A foot pedal control unit for an ophthalmic surgery system, said foot pedal control unit comprising: a base and a treadle that is configured for pivotal pitch movement relative to the base for generating control signals to an ophthalmic surgery system, and a heel support structure that is rigidly connected or integrally formed with the base, wherein the base is provided with a toe receiving cavity located below the heel supporting structure for repositioning the base.
2. The foot pedal control unit of claim 1, wherein the treadle is further configured for pivotal yaw movement relative to the base for generating said control signals to the ophthalmic surgery system.
3. The foot pedal control unit of claim 1, wherein the foot pedal control unit further comprises a carrying handle connected to a rear side of the base.
4. The foot pedal control unit of claim 3, wherein the carrying handle forms a bottom boundary structure of the toe receiving cavity, the carrying handle extending beyond the heel support structure, in a rear side direction, and being configured to enable one or more toes of a user to exert a rearwardly directed force on said carrying handle for moving the base rearwardly.
5. The foot pedal control unit of claim 1, wherein the heel support structure forms an upper bound of the toe receiving cavity.
6. The foot pedal control unit of claim 3, wherein the toe receiving cavity is bounded at a left side thereof and a right side thereof at least partly by a left side wall structure and a right side wall structure, respectively, both of said left side wall structure and said right side wall structure extending from the height level of the carrying handle upwardly to the heel support structure.
7. The foot pedal control unit according to claim 1, wherein the toe receiving cavity is bounded at a front side thereof at least partly by a front wall structure, formed as a wall portion that is corrugated relative to a rear side of the base and that extends upwardly to the heel support structure.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0009] By way of example only, embodiments of the present invention will now be described with reference to the accompanying figures in which
[0010]
[0011]
[0012]
[0013]
[0014]
[0015]
[0016]
[0017]
[0018] It is noted that the figures merely show preferred embodiments according to the invention. In the figures, the same reference numbers refer to equal or corresponding parts.
DETAILED DESCRIPTION
[0019]
[0020] The foot pedal control unit 1 has a locking element that is movable between a lock position and a release position. When the locking element is in the lock position, the treadle 3 is locked against pivotal yaw movement. Further, when the locking element is in the release position, the treadle 3 is enabled to perform pivotal yaw movement. When the locking element is in the release position, the foot pedal control unit 1 is arranged for generating, depending on a yaw position of the treadle 3, a control signal controlling the second parameter. Preferably, an alert signal is transmitted to the ophthalmic surgery system when the locking element is brought into the release position so that the ophthalmic surgery system adjust the second parameter in conformity with the control signal controlling said second parameter. The locking element includes a lever 4 that is pivotable between a retracted position and an extended position corresponding to the lock and release position, respectively, of the locking element. In
[0021]
[0022]
[0023] Advantageously, the locking element has an upper surface 5, on an extended portion of the lever 4 that is visible when the lever is in its extended position. Said upper surface 5 is provided with an optic marker, in the shown embodiment designed as a specific colour, e.g. green, to enhance a visibility of the indication that the treadle can move in the pivotal yaw direction Y. In the shown embodiment, the complete lever 4 is coloured, however the lever 4 may also partially be coloured. Apparently, the optic marker may have another colour and/or may extend across a portion or the entire extended upper surface 5 of the lever 4. Further, the optic marker may have a specific shape such as a bar or disc.
[0024] It is noted that, in principle, the lever 4 may be designed to work the other way around, i.e. that in its retracted position the treadle 3 is enable to perform pivotal yaw movement while in its extended position the treadle 3 is locked against pivotal yaw movement. Then, the optic marker on the upper surface 5 may have another colour, e.g. red. Further, the lever 4 may be positioned at another location on the base 2, e.g. near a back portion of the base 2, opposite to the front portion of the base 2.
[0025] In another embodiment, the locking element is implemented in another way, e.g. including a bar that is movable along a linear trajectory. The locking element may be operable by a foot of the user and/or by an actuator that is electronically controlled.
[0026]
[0027]
[0028] In the embodiments shown in
[0029]
[0030] In use, the foot pedal control unit 1 typically is provided with an inlay cover 8, and one or more additional inlay covers 8′ that are removably placed on the treadle 3. The control unit 1 may further include one or more additional inlay covers 8′ that may each removably replace the inlay cover 8 that is placed on the treadle 3 so as to personalize the control unit 1, e.g. for optimizing comfort and/or individual preferences of specific users of the control unit 1. Then, the inlay cover 8 on the treadle and the one or more additional inlay covers 8′ form a multiple number of inlay covers 8, 8′, instead of a single inlay cover removably placed on the treadle, each of the inlay covers 8, 8′ being removably placeable on the treadle 3. Further, each of the inlay covers 8, 8′ may be customized, e.g. in terms of appearance, size, material, compressibility and/or support profile, thereby personalizing the inlay covers for their individual users.
[0031] The foot pedal control unit 1 further comprises a carrying handle 10 for manually carrying the unit 1. The handle 10 is located at a rear side 2a on the base 2, below a height level of the heel support structure 9. The heel support structure 9 and the carrying handle 10 may form an upper bound and a lower bound, respectively, of a toe receiving cavity 11 formed in the base 2 for repositioning the base 2 on the floor or other support structure on which the control unit is located.
[0032] By inserting a toe or toes into said cavity 11 and by controllably exerting a force to the base 2 in a desired moving direction, the base 2 can be easily repositioned.
[0033] Preferably, the cavity 11 is formed at the rear side 2a of the base 2, the cavity 11 being located below the heel support structure 9. As shown in
[0034]
[0035] It is noted that the toe receiving cavity for repositioning the base can not only be applied to a foot pedal control unit as defined in claim 1, but more generally also to a foot pedal control unit for an ophthalmic surgery system, comprising a base and a treadle that is configured for pivotal movement relative to the base for generating control signals to an ophthalmic surgery system, such as a accelerator type foot pedal control unit wherein the treadle is permanently blocked against yaw movement.
[0036] It is further noted that the locking element that is movable between a lock position wherein the treadle is locked against pivotal yaw movement and a release position wherein the treadle is enabled to perform pivotal yaw movement can not only be applied to a foot pedal control unit as defined in claim 1, but more generally also to a foot pedal control unit for an ophthalmic surgery system, comprising a base and a treadle that is configured for pivotal movement relative to the base for generating control signals to an ophthalmic surgery system.
[0037] The invention is not restricted to the embodiments described above. It will be understood that many variants are possible.
[0038] These and other embodiments will be apparent for the person skilled in the art and are considered to fall within the scope of the invention as defined in the following claims. For the purpose of clarity and a concise description features are described herein as part of the same or separate embodiments. However, it will be appreciated that the scope of the invention may include embodiments having combinations of all or some of the features described.