The present invention relates in general to an input device for operating functions in an electronic device, wherein the input device comprises a switch device having a set of switches mounted on a support structure. Moreover, the input device according to the invention comprises a soft conductive actuator for actuating the switch device. Moreover, the present invention relates to an electronic device comprising the above input device for operating functions in the electronic device.
In order to meet an increasing demand from e.g. mobile phone users and smart phone users for increasingly advanced functions, mobile phone manufacturers such as Sony Ericsson Mobile Communications®, provide mobile phones and smart phones with increasingly advanced input/output devices. Such input/output devices include, but is not limited to, e.g. larger touch-sensitive displays, joysticks, rocker keys, etc. to operate various functions of the mobile telephones or smart phones. These input devices may be used in lap top computers together with touch pads that may be stroked and tapped by fingers to give the function of a mouse.
The European patent application EP 1 492 137 A1, filed on 26 Jun. 2003, discloses various arrangements of previously known rocker key devices.
A switch device of an input device such as those described hereinabove, e.g. as shown in
Accordingly, there is a need for providing an improved input device using a switch device and a soft conductive actuator operatively connected therewith. In particular, there is a need for providing an input device that mitigate, alleviate or eliminate one or more of the above-mentioned deficiencies or disadvantages in the known prior art. More specifically, there is a need for providing a solution that makes a single input device more reliable over time, as compared to the known prior art.
Hence, an improved answering device and/or method for handling incoming calls would be advantageous. In particular, an improved answering device and/or method allowing for limiting the risk of missing important telephone calls and at the same time limiting the risk of being unnecessarily disturbed by incoming telephone calls would be advantageous.
Accordingly, some embodiments of the present invention preferably seek to mitigate, alleviate or eliminate one or more of the above-identified deficiencies in the art and disadvantages singly or in any combination.
An aspect of the present invention relates to an input device comprising a switch device for mounting on a support structure of the input device and a soft conductive input actuator operatively connected to the switch device and adapted for mounting over the switch device, the switch device comprising at least one switch pad with a plurality of press detection switches, wherein the soft conductive input actuator is configured to make contact with at least one press detection switch of the plurality of press detection switches upon depression of the soft conductive input actuator against the switch pad such that a signal is output from the press detection switch.
In one embodiment, the switch pad comprises: a lower surface which is adapted to be attached to the support structure; and an upper surface; wherein the plurality of press detection switches are provided on the upper surface.
In one embodiment, at least two press detection switches of the plurality of press detection switches are depressible simultaneously upon depression of the soft conductive input actuator.
In one embodiment, the number of depressed press detection switches, upon depression of the soft conductive input actuator when in use, is indicative of the pressure against the soft conductive input actuator.
In one embodiment, the press detection switches, which are depressed upon depression of the soft conductive input actuator when in use, is indicative of where on the soft conductive input actuator the pressure is applied.
In one embodiment, the plurality of press detection switches is evenly distributed in a matrix pattern throughout the upper surface of the switch pad.
In one embodiment, the matrix pattern comprises at least one column with a plurality of press detection switches and at least one row with a plurality of press detection switches, wherein the column and the row of press detection switches comprises different number of press detection switches.
In one embodiment, the plurality of press detection switches is distributed in a circular pattern on the upper surface of the switch pad.
In one embodiment, the soft conductive input actuator is made of a deformable material, which, in another embodiment, is conductive.
In one embodiment, the soft conductive input actuator has a touch surface and a contact surface facing the switch pad, which contact surface is configured to come in contact with the switch pad when the touch surface of the actuator is pressed towards the switch pad such that a signal is output from the switch device.
In one embodiment, the contact surface has a varying shape, and in another embodiment, the contact surface has an even shape.
In one embodiment, the contact surface has a conical or frustoconical shape, and, in another embodiment, a rounded shape.
In one embodiment, the contact surface is deformable.
In one embodiment, the soft conductive input actuator is a thin sheet, and in another embodiment, the soft conductive input actuator has en elongated shape.
In one embodiment, the soft conductive input actuator is hollow, and in another embodiment the soft conductive input actuator has a substantially constant thickness.
Another aspect of the present invention relates to a switch device for operating functions in an electronic device, comprising at least one switch pad mounted on a support structure, wherein the switch pad comprises a plurality of press detection switches, wherein each press detection switch of the plurality of press detection switches is configured to output a signal upon depression of the press detection switch.
In one embodiment, each switch pad comprises: a lower surface attached to the support structure, and an upper surface, wherein the plurality of press detection switches are provided on the upper surface.
In one embodiment, at least two press detection switches of the plurality of press detection switches are depressible simultaneously upon depression of the switch pad.
In one embodiment, the number of depressed press detection switches, upon depression of the switch pad when in use, is indicative of the pressure against the switch pad.
In one embodiment, the press detection switches, which are depressed upon depression of the switch pad when in use, is indicative of where on the switch pad the pressure is applied.
In one embodiment, each switch pad comprises a plurality of press detection switches and the plurality of press detection switches are evenly distributed in a matrix pattern mounted on the upper surface.
In one embodiment, the matrix pattern comprising at least one column with a plurality of press detection switches and at least one row with a plurality of press detection switches, wherein the column and the row of press detection switches comprises different number of press detection switches.
Yet another aspect of the present invention relates to an input actuator for operating functions in an electronic device, comprising: a soft conductive actuator, which is configured to actuate a switch device by coming into contact with the switch device upon depression of the soft conductive actuator such that a signal is output from the switch device.
In one embodiment, the soft conductive actuator is made of a deformable material, which, in another embodiment, is conductive.
In one embodiment, the soft conductive actuator has a touch surface and a contact surface facing the switch device, which contact surface is configured to come in contact with the switch device when the touch surface of the actuator is pressed towards the switch device.
In one embodiment, the contact surface has a varying shape, and, in another embodiment, the contact surface has an even shape. In yet another embodiment, the contact surface has a conical or frustoconical shape, and, in another embodiment, the contact surface has a rounded shape.
In one embodiment, the contact surface is deformable.
In one embodiment, the soft conductive input actuator is a thin sheet, while, in another embodiment, the soft conductive input actuator has en elongated shape, and, in yet another embodiment, the soft conductive input actuator is hollow.
In one embodiment, the sheet has a substantially constant thickness.
Still another aspect of the present invention relates to an electronic device comprising an input device for operating functions in the electronic device, the input device comprising a switch device comprising at least one switch pad mounted on a support structure; and an input actuator for actuating the switch device, wherein each switch pad comprises a plurality of press detection switches, wherein each press detection switch of the plurality of press detection switches is configured to output a signal upon depression of the switch pad by means of the input actuator.
In one embodiment, each switch pad comprises a lower surface attached to the support structure, and an upper surface, wherein the plurality of press detection switches are provided on the upper surface.
In one embodiment, at least two press detection switches of the plurality of press detection switches are depressible simultaneously upon depression of the switch pad.
In one embodiment, the number of depressed press detection switches, upon depression of the switch pad when in use, is indicative of the pressure against the switch pad.
In one embodiment, the press detection switches, which are depressed upon depression of the switch pad when in use, is indicative of where on the switch pad the pressure is applied.
In one embodiment, each switch pad comprises a plurality of press detection switches and said plurality of press detection switches are evenly distributed in a matrix pattern mounted on the upper surface.
In one embodiment, the matrix pattern comprises at least one column with a plurality of press detection switches and at least one row with a plurality of press detection switches, wherein the column and the row of press detection switches comprises different number of press detection switches.
In one embodiment, the electronic device is an electronic device from the group comprising: a portable radio communication equipment, a mobile radio terminal, a mobile telephone, a cellular telephone, a pager, a communicator, an electronic organizer, a smart phone, a computer, a game console, a remote control or game device.
In one embodiment, the electronic device comprises the input device according to any of the preceding embodiments relating thereto.
In one embodiment, the electronic device comprises the switch device according to any of the preceding embodiments relating thereto.
In one embodiment, the electronic device comprises the input actuator according to any of the preceding embodiments relating thereto.
The features of the above-mentioned embodiments can be combined in any combinations.
Some embodiments of the invention provide for an improved input device, switch device, and/or an input actuator for inputting information, commands and/or data to a communication device, e.g. an electronic device. As compared with the known prior art, it is an advantage with some embodiments of the invention that at least two press detection switches of the plurality of press detection switches are depressible simultaneously upon depression of the soft conductive input actuator despite the fact that other press detection switches are out of order. Thus, some embodiments of the present invention provide the user of a communication device with a more reliable input of data/commands and at the same time achieves a higher redundancy for such input.
It is an advantage of some embodiments of the invention that the input device withstands mechanical load better and also provides a better resistance against dust and/or dirt and oxidation for the input device, the switch device, the input detector and the electronic device. This is due to the fact that a plurality of digital devices in combination simulate an analogue function according to the invention. The invention also reduces the height of a portable electronic device and also the number of components required for doing this, and therefore reduces the cost of the device. Furthermore, the invention also provides a very low height and a flat shape of the actuator when implemented in a mobile device, whereby the use of the restricted space in such a device is optimized.
Further objects, features and advantages of the invention will appear from the following detailed description of the invention, wherein embodiments of the invention will be described in more detail with reference to the accompanying drawings, in which:
Embodiments of the present invention will be described more fully hereinafter with reference to the accompanying drawings, in which embodiments of the invention are shown. Like numbers refer to like elements throughout.
The mobile telephone 40 comprises an input device 1. The input device is, but is not limited to, a rocker key device 1, which also may be a select button or a flexible sheet to be pressed as a key pad or stroked/tapped as a touch pad (see
Embodiments of the present invention may be implemented into a wide variety of input devices 1, e.g., into prior art arrangements such as those illustrated in
Each input device 1 illustrated in
As is illustrated in
Each press detection pad of the plurality of press detection pads 400-40n is configured to output a signal upon depression of the press detection pad. Thus, upon depression of the input device 1, e.g. by means of the key 2 with its actuator boss 6, one or more press detection pads of said plurality of press detection pads are depressed simultaneously. Thus, when a user applies a force to the input device 1 by depressing the rocker key 2, the select button 3 or the key pad sheet having the combined function of a touch pad, the rocker key 2, and the select button 3 (see
Furthermore, when a user applies a force to the input device 1 by depressing the button 2, the number of actuated/contacted press detection pads 400-40n may be indicative of the pressure or force that is applied against the input device. Thus, it is possible to detect how hard, i.e. how many press detection pads are actuated, the user presses the input device 1. This may allow for providing a single input device with multiple functions similar to a touch pad on a laptop or a touch-sensitive display on the mobile phone 40 or similar portable electronic terminal. The multiple functions may be selected in dependence of the applied force to the input device. As only one illustrative example, it would be possible to utilize only a certain number of press detection pads 400-40n of the input device for a camera function. By detecting how hard the user presses the key, the input device could be provided with a double function such that when the user presses the key softly, contacting a certain number of pads, e.g. pads 400, 401, 402, it is possible to focus the camera and subsequently, when the user presses the key harder making contact with more pads, e.g. pads 403, 404, 405, a picture can be taken by means of the camera. Moreover, when a user applies a force to the input device 1 by depressing the key/button 2, 3, it is possible to detect where on the press detection pad surface 41 the pressure or force is applied depending on how many press detection pads 400-40n that are contacted and thereby short circuit in that moment.
When the user applies a force to the input device 1, the key/button 2 will collapse and/or be deformed, i.e. in one embodiment, the key is made of a flexible and conductive material, preferably a soft conductive plastic, silicone or rubber-like material, to different extent in dependence on how much force that is applied, a large force deforms the soft button and its soft actuator surface 42 or bosses 6 more than a smaller force, i.e. the larger deformation the bigger contact area A between the pads 400-40n and the button/key/touch pad (see
A press detection pad 400-40n can have a small size, e.g. parts of a mm or less, e.g. two to ten times smaller or more than prior art input devices and their single rings 4a, and circles 4b, as shown in
The material in the detection pads 400-40n shall be of a low resistance and be durable to wear and environmental stress, e.g. Au-plated or Ag-plated Cu-pads, ceramic low resistive material, for example Maxphase®, or similar material. The other connection side, i.e. the buttons/keys/touch pads 2, 3 to be actuated by fingers of the user, can be the known metal domes, as in prior art key pads in mobile phones, or the conductive sheet or button according to the invention, i.e. the soft button/rocker key 2, 3 in
If the input device 1 is designed to give a pressure sensitive signal the number of detection pads 400-40n connected, i.e. short circuited, will vary dependent on how hard the user presses the button/touch pad 2, 3, 6, 42 against the pads and the pad surface 41, i.e. the contacting area increases due to deformation of the surface 6, 42 as the larger the force the bigger the deformation and contact area A (shown in
The multiple detection pads 400-40n can be produced with already know technology, as part of the wiring and layout of a PCB or flex film in the same way as the known pad shown in
The invention creates a parallel function in an input device instead of a serial function as in prior art input devices, whereby this provides a redundancy, i.e. a backup function, with a plurality of press detection pads backing up each other if one or more pads are “out of order”. This is done by processing many parallel signals as one direction or position defining parameter. A user of the invention may calibrate and adapt embodiments of the invention to desired function/sensitivity, i.e. different pressures may have different functions for different users. The invention increases the reliability for input devices, e.g. a prior art joy stick with five pads does not work if one pad is “out of order” while the invention still works as desired if any pad is defective. The invention may be used together with known domes as these domes may be deformed somewhat differently such that more than one pad may be contacted fulfilling, to some extent, the demands of the invention, but a soft pressure actuator instead of a metal dome is preferred according to the invention.
The terminology used herein describes particular embodiments only and is not intended to be limiting of the invention. As used herein, the singular forms “a”, “an” and “the” include the plural forms as well, unless the context clearly indicates otherwise. It will be further understood that the terms “comprises” “comprising,” “includes” and/or “including” when used herein, specify the presence of stated features, integers, steps, operations, elements, and/or components, but do not preclude the presence or addition of one or more other features, integers, steps, operations, elements, components, and/or groups thereof. Unless otherwise defined, all terms (including technical and scientific terms) used herein have the same meaning as commonly understood by one of ordinary skill in the art. It will be further understood that terms used herein should be interpreted as having a meaning consistent with their meaning in the context of this specification and the relevant art and will not be interpreted in an idealized or overly formal sense unless expressly so defined herein. The present invention has been described above with reference to specific embodiments but other embodiments than those described are possible within the scope of the invention. The above-described embodiments should be regarded as illustrative rather than restrictive, and it should be appreciated that variations may be made in those embodiments by persons skilled in the art without departing from the scope of the present invention as defined by the appended claims.