This application claims the benefit of Korean Patent Application No. 10-2009-0136064, filed on Dec. 31, 2009, entitled “Actuator Module”, which is hereby incorporated by reference in its entirety into this application.
1. Technical Field
The present invention relates to an actuator module that can improve vibration of a touch screen pad and be designed in an ultra-thin type.
2. Description of the Related Art
Recently, touch screen apparatuses are generally mounted on various electronic products so that users can conveniently use them. The touch screen apparatus is to reflect a user's intuitive experience to an interface and more diversify feedbacks, in addition to the input of information.
The touch screen apparatus as described above has the following advantages: it can reduce space for interface, a user can easily operate the touch screen apparatus, a user can easily access information, a user can easily change its specification, it can easily interwork with IT equipments, and it can have a user's high recognition, product differentiation, etc. Therefore, the touch screen apparatus has been widely used in various fields, such as industry, traffic, service, medicine, mobile, etc.
Generally, a touch screen apparatus of the related art is formed in such a manner that if a user presses a touch screen panel, while seeing an image displayed through the touch screen panel, vibration by a vibration generator is transferred to the touch screen panel so that the user can feel the vibration.
Such vibration may be referred to as tactile implementation of the touch screen apparatus. With the constitution of the touch screen with the tactile implementation function of the related art, a touch display module in which an image display unit that displays an image such as LCD, etc. is attached to the lower part of a transparent touch screen panel is coupled to an equipment set, and a vibration generator for the tactile implementation is mounted on a portion of the equipment set.
However, in the touch screen apparatus with such a constitution, the touch screen is disadvantageous in that the vibration by the vibration generator is fully transferred to the equipment set but is not fully transferred to the touch display module. In other words, for example, when a user operates a cellular phone by pressing the touch screen panel on the cellular phone with fingers, the user fully feels the vibration transferred to his or her hand gripping the cellular phone but he or she hardly feels the vibration on the touch screen panel pressed with fingers.
Meanwhile, in order to maximize the vibration on the touch screen panel, the vibration generator is directly attached to the lower part of the touch display module so that the vibration generated from the touch display module should be directly transferred to the touch screen panel. However, in this case, if the vibration generator is directly attached to the touch display module, it is difficult for the actuator module to be designed in a thin type.
The present invention has been made in an effort to provide an actuator module that fully transfers vibration to a touch screen panel by attaching a vibration generator directly to a touch display module.
Another object of the present invention is to provide an actuator module that can be designed in an ultra-thin type through a structure where a vibration generator is directly bonded to a plate attached to a touch display module.
Still another object of the present invention is to provide an actuator module that can control vibration of a vibration generator in order to improve vibration transferred to a touch screen panel.
An actuator module according to the present invention includes: a plate that is positioned at the lower part of a touch display module in which an image display unit is coupled to the lower part of a touch screen panel; a vibration generator that is positioned at the lower part of the plate and is mechanically deformed by compression or contraction when voltage is applied; a first adhesive layer that bonds the touch display module to the plate; and a second adhesive layer that bonds the plate to the vibration generator, wherein the first adhesive layer and the second adhesive layer generate bending moment by the mechanical deformation of the vibration generator.
The thickness of the adhesive layer may become thick in order to increase the moment.
The adhesive layer may be a double-sided adhesive tape form, wherein the adhesive layer in the double-sided adhesive tape is repeatedly bonded twice or more.
A compensating layer may be formed between the adhesive layers in order to increase the moment.
The compensating layer may be made of polycarbonate or polymer material and the length of the compensating layer may be formed to be longer than that of the vibration generator.
Various features and advantages of the present invention will become apparent from the following description of embodiments with reference to the accompanying drawings.
The terms and words used in the present specification and claims should not be interpreted as being limited to typical meanings or dictionary definitions, but should be interpreted as having meanings and concepts relevant to the technical scope of the present invention based on the rule according to which an inventor can appropriately define the concept of the term to describe most appropriately the best method he or she knows for carrying out the invention.
The above and other objects, features and advantages of the present invention will be more clearly understood from the following detailed description taken in conjunction with the accompanying drawings. Herein, the same reference numerals are used throughout the different drawings to designate the same components. Further, when it is determined that the detailed description of the known art related to the present invention might obscure the gist of the present invention, the detailed description thereof will be omitted.
Hereinafter, the preferred embodiments of the present invention will be described in detail with reference to the accompanying drawings.
As shown in
A touch display module 10 using the actuator module of the present invention has a structure where an image display unit 12 such as LCD is coupled to the lower part of a touch screen panel 11 as shown in
The touch screen panel 11 has transparency and flexibility in order to input signals by pressing the surface thereof, while seeing the image displayed on the image display unit. The touch screen panel may be formed by stacking an external film layer, an ITO film layer, and a base film layer, which is provided by way of example. In this case, the external film layer may, for example, be divided into a viewing area that is mounted on the front part of a mobile communication terminal and input by the touch and a dead space area that is formed around the viewing area. The external film layer is made of transparent film material, for example, poly ethylene terephtalate (PET), in order that the screen of the image display unit can be displayed. Further, the indium tin oxide (ITO) film layer is formed by stacking upper and lower film layers, wherein a dot space that constantly maintains the interval thereof is provided therebetween. The upper and lower film layers are provided with a membrane electrode in which a conductive X-axis pattern and a conductive Y-axis pattern are formed along the edges thereof, wherein the X-axis pattern and the Y-axis pattern are electrically isolated by an insulator. The membrane electrode is exposed to the outside of the ITO film layer through a FPC cable to be connected electrically to a portable terminal. Further, a base film layer, which serves to support the entire touch screen panel 11, uses, for example, a glass substrate having high transmittance and excellent response speed.
The plate 110, which is positioned at the lower part of the touch display module 10, provides a surface to which the vibration generator 120 is bonded and at the same time, transfers the vibration generated from the vibration generator 120 to the touch display module 10. As shown in
As shown in
The vibration generator 120, which is positioned at the lower part of the plate 110, is mechanically deformed by compression or contraction when external voltage is applied. The vibration generator 120 may, for example, be a general piezoelectric actuator or polymer actuator. The vibration generator 120 may be formed in a pair or more together with the plates 110, as shown in
The adhesive layers 131 and 132 are bonded to each other by the second adhesive layer 132 between the touch display module 10 and the plate 110 and the first adhesive layer 131 between the plate 110 and the vibration generator 120, thereby generating a bending moment by the mechanical deformation of the vibration generator 120. As shown in
With the constitution as described above, when voltage is applied to the vibration generator 120 of the actuator module 100, the vibration generator 120 is contracted and expanded as shown in
At this time, the moment is in proportion to the driving force (F) and is in proportion to the moment arm generated during the bending, that is, a distance r being apart from an interface n-n of the touch display module 10. In formula, M (moment)=F (driving force) X r (moment arm). Therefore, when the moment arm increases, the moment increases and when the moment increases, the vibration improves.
As shown in
In addition, as shown in the graph of
According to the second embodiment of the present invention, the thickness of the adhesive layers 131 and 132 should be formed to be thick in order to increase the moment and improve the vibration transferred to the touch screen panel 11. In other words, as shown in
According to the third embodiment of the present invention, the adhesive layers 131 and 132 may be a double-sided adhesive tape form. In this case, as shown in
According to the fourth embodiment of the present invention, as shown in
The compensating layer 140 is easily formed in a desired thickness, thereby more conveniently control the vibration than the case where the touch screen panel is formed of only the adhesive layer 130.
Meanwhile, although it is shown that the compensating layer 140 is formed between the first adhesive layer 133 and the second adhesive layer 134, the first adhesive layer 133 and the second adhesive layer 134 being formed between the plate 110 and the vibration generator 120, this is provided by way of example only. Therefore, the compensating layer 140 may also be formed between the second adhesive layer 134 and the third adhesive layer 135, the second adhesive layer 134 and the third adhesive layer 135 being formed between the touch display module 10 and the plate 110. Further, the thickness of the first adhesive layer, the second adhesive layer or the third adhesive layer may be formed to be thinner than that of the plate. As described above, when the thickness of the adhesive layer exceeds a predetermined thickness, the bending moment is not increased as shown in the graph of
According to the fifth embodiment of the present invention, the compensating layer 140 may be formed to be longer than the vibration generator 120. In other words, as shown in
According to the constitution and the effects of the present invention, the vibration generator 120 is attached to the lower part of the touch display module 10 through the plate 110, such that the vibration by the vibration generator 120 is fully transferred to the touch screen panel 11. Further, the actuator module can be designed in a thin type according to the constitution as described above.
Further, the vibration of the vibration generator 120 is increased or controlled by controlling the thickness of the adhesive layer 130 or the compensating layer 140, thereby making it possible to more easily control the vibration transferred to the touch screen panel 11.
According to the actuator module of the present invention, the vibration generator is bonded to the lower part of the touch display module through the plate, thereby making it possible to fully transfer the vibration by the vibration generator to the touch screen panel.
According to the actuator module of the present invention, the vibration generator is bonded directly to the lower part of the plate, thereby making it possible to design the actuator module in an ultra-thin type for vibrating the touch screen panel.
According to the actuator module of the present invention, the vibration of the vibration generator is increased or properly controlled by controlling the thickness of the adhesive layer or the compensating layer, thereby making it possible to control the vibration transferred to the touch screen panel.
Although the preferred embodiments of the present invention have been disclosed for illustrative purposes, they are for specifically explaining the present invention and thus the actuator module according to the present invention is not limited thereto, but those skilled in the art will appreciate that various modifications, additions and substitutions are possible, without departing from the scope and spirit of the invention as disclosed in the accompanying claims.
Accordingly, such modifications, additions and substitutions should also be understood to fall within the scope of the present invention.
Number | Date | Country | Kind |
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10-2009-0136064 | Dec 2009 | KR | national |