Technical Field
The present invention discloses a computer keyboard, in particular, to a computer thin film switch keyboard.
Related Art
As computer techniques continuously develop, and costs of computer consumable items are gradually democratized, a computer is popularized in daily lives of people, and the computer almost cannot be separated from the daily lives of people. A keyboard, as an essential accessory of the computer, plays an extremely important role in the process of using of the computer. The computer keyboard in the prior art usually relates to several kinds, such as a PS/2 interface wired keyboard, a USB interface wired keyboard, an RFID wireless external keyboard, and a Bluetooth wireless keyboard lights. However, regardless of which kind of keyboard, the key structure adopts a structure with a keycap cooperated with a poly cap or adopts a conventional scissor keys (or referred to as X structure keys). The entire thickness of the keyboard cannot be reduced due to the reason of its own structure regardless of whether it is a keyboard having the structure with a keycap cooperated with a poly cap or a keyboard having the scissor structure, thus the thickness of the entire finished product is large, and it is not easy to carry. Gradually, the psychological needs of people for pursuing lighting and thinning and portability cannot be met.
The conventional keyboard is quite inconvenient without a backlight function for inputting at night or at a place where the light is dark. Marks on the keyboard cannot be clearly seen unless depending on the light emitted from the display screen of the computer or from illumination from an external light only. After long time usage, the marks on the keycaps of the keyboard may be worn, thus it is more inconvenient for inputting.
A touch keyboard is also developed on the current market. The type of keyboard can be light and thin; however, during usage, it lacks a sense of key travel due to the adopted touch structure. In other words, completely no hand feelings exist. During inputting, it feels like typing on a tablet; and when pressing a key, an operator is completely unaware of whether a function is input. Moreover, the area of the keyboard is small and the arrangement of the keys is very tight; therefore, a mistyping phenomenon would be easily caused during inputting.
Regarding the abovementioned computer keyboard in the prior art, the entire thickness thereof is relatively large, while a touch keyboard has a disadvantage of lacking a sense of key travel. The present invention provides an ultrathin metal dome and key computer keyboard that can solve the abovementioned problems. The ultrathin metal dome and key computer keyboard adopts ultrathin metal domes as an input device, is a product obtained from a combination of various objects, and it has characteristics of being light, thin, and easy to carry, and having light emitting keys, a short stroke, and lower noises, etc.
The technical solution adopted by the present invention to solve the technical problem thereof is: a computer thin film switch keyboard, wherein the keyboard comprises keys/keycaps, a light guide film, a fixing film/air hole layer, metal domes, an air slot layer, a conductive film/PCB and a key plate, the key plate is disposed at the lowest layer, the conductive film/PCB is disposed above the key plate, the air slot layer is disposed above the conductive film/PCB, the metal domes are disposed on the conductive film/PCB, more than one metal dome is disposed corresponding to key configurations on the keyboard, the fixing film/air hole layer is disposed above the metal domes, and the keys/keycaps are disposed above the fixing film/air hole layer.
The technical solutions adopted by the present invention further include:
A decorating part is disposed on the keys/keycaps, keycap holes are opened in the decorating part, and the keys/keycaps extend from the keycap holes to the external of the decorating part.
A light guide film is disposed above the fixing film/air hole layer, light guide dots are disposed on the light guide film, an LED light source is disposed at a side surface of the light guide film, and the keys/keycaps are disposed above the light guide film.
The light guide dots are convex dots or concave dots.
The light guide dots on the light guide film are disposed corresponding to the keys/keycaps.
A plunger convex dot layer is disposed above the fixing film/air hole layer, and the light guide film is disposed above the plunger convex dot layer.
The light guide film is adhered to the plunger convex dot layer via a first double sided adhesive or glue, and the fixing film/air hole layer is adhered to the plunger convex dot layer via a second double sided adhesive or glue.
Conductive substrate convex dots are disposed on the keycaps/keys.
Gas ports are opened in the fixing film/air hole layer.
The air holes are disposed at an edge position of the metal domes.
metal dome holes for mounting metal domes 7 are disposed on the air slot layer, and adjacent two or three metal dome holes are communicated with each other via air slots.
One or more metal domes are disposed below each of the keys/keycaps.
The beneficial effects of the present invention are: the present invention adopts metal domes with a long life, a long stroke, high sensitivity, and a low pressing force as a basis for mechanic actions, so as to generate hand feelings when a hand presses a keycap. The gram force value of the metal domes adopted by the present invention is similar to that of conventional scissor keys, wherein the gram force value is between 30-200 gf, the pressing stroke of the keyboard is between 0.10 mm to 1.00 mm, and the sensitivity is between 25% and 85%. The present invention, regarding the light guide material of 0.10-0.50 mm optical level, uses a cold pressing manner or hot pressing manner to manufacture light emitting spots of micro-nanostructure. By improving the structure, side light emitting LEDs are used as the light source, and through an optical design method, the key surface is enabled to emit light uniformly and softly and high luminance can be obtained. The breakover part of the key of the present invention adopts the PCB or conventional conductive film as a material for connecting electric appliance. The terminal, such as the key and the tablet PC, adopts an RF or a Bluetooth output control manner or wired connection manner. The keycap, the PCB or conductive film, the Bluetooth module, the metal domes and the like are then assembled as one module, to be installed inside a housing, so as to form an integrated finished product of “an ultrathin metal dome portable computer keyboard.” The entire produce of the present invention is light, thin, simple and convenient for installation and detachment, has good hand feelings, and is easy to carry. The ultrathin metal dome portable computer keyboard of the present invention would be a great innovation in the keyboard industry, and would bring a revolutionary reform to the conventional keyboard industry.
The present invention will be further explained by combining the accompany drawings and specific embodiments as follows.
In the drawings, 1—a decorating part, 2—keys and keycaps, 3—a first double sided adhesive or glue, 4—a plunger convex dot (conductive substrate) layer, 5—a second double sided adhesive or glue, 6—a fixing film/air hole layer, 7—metal domes (dome), 8—an air slot layer, 9—a conductive film or PCB, 10—a key plate, 11—a Bluetooth module, 12—a light guide film, 13—an LED light source, 14—a power source, 15—a connector, 16—light guide dots, 17—threaded holes for the decorating part, 18—a double sided adhesive tape or glue for the decorating part, 19—keycap holes, 20—conductive substrate convex dots, 21—a positioning column, 22—a conductive substrate carrier, 23—plunger, 24—air holes, 25—metal dome holes, 26—an air slot, 27—A Bluetooth and battery cap, 28—screws, 29—a double sided adhesive for a cover plate, 30—a battery, 31—a Bluetooth chip, 32—a USB interface, 33—a switch, 34—a conductive film, 35—a pin, 36—a switch line, 37—a golden finger, 38—a light guide double sided adhesive or glue, and 39—a second PCB plate.
The present embodiment is a preferable embodiment of the present invention, and other embodiments with principles and basic structures same as or similar to those of the present embodiment all fall within the scope of protection of the present invention.
With reference to
Specific structures among various layers of the present invention are further explained with reference to the accompany drawings as follows:
As combined with the reference to
As combined with the reference to
As combined with the reference to
As combined with the reference to
As combined with the reference to
As combined with the reference to
As combined with the reference to
As combined with the reference to
As combined with the reference to
As combined with the reference to
As combined with the reference to
As combined with the reference to
In the present invention, during manufacturing, metal dome device holes and air slots/holes are first designed on a PET sheet material of 0.03-0.50 mm. In the present embodiment, the PET sheet material is divided into three layers, i.e., a release layer, a glue layer, and a surface material layer. Then another PET sheet material of 0.01-0.50 mm is covered on the PET surface material having the metal dome device holes and air slots/holes by using an automatic roll to roll laminator. metal domes are then attached to the PET sheet material of 0.01-0.50 mm using a chip mounter. The assembled metal dome module is then assembled on the PCB or conductive film, and the PCB or conductive film requires to be connected to the Bluetooth module, for the function of on/off, and the function of finally control the terminal machine (i.e., the tablet PC). PLNUGER is then attached on the metal dome module. The main function of plunger is to reduce the influence of the tolerance accumulated during the process of assembly and processing on bad hand feelings generated on the metal dome, and at the same time, plunger also has the function of improving the hand feelings, so that the pressing force is always maintained and applied on a dead center of the metal dome, thereby enabling the mechanic properties of the metal domes to be in the optimal state. LGF (i.e., the light guide film 12) with the thickness of 0.10-0.50 mm is further assembled on the surface of PLNGER. The light guide film 12 has a function of transmission of light. Side light emitting LEDs are used to be disposed at the periphery of the product as the light source, so that the entire surface of the keyboard uniformly emits light. The key is then assembled on the metal dome, a desired character, pattern and the like are printed on the key, and then printing ink or oil paint is printed or sprayed on the key, so that the desired font and pattern are formed on the surface of the key. The height of the key is between 0.1-2.0 mm, and materials of different thicknesses are selected according to different structures. The key module is assembled on the metal dome module, and the installation is completed by means of hot-pressing, fitting, suturing and adhering. The total thickness of the key part is not greater than 7 mm.
In the abovementioned embodiments, the Bluetooth keyboard is taken as an example to specifically explain the structure of the present invention. During specific implementations, the keyboard can be connected to the computer and the like via a wired manner, for example, via a data line; or can achieve wireless signal transmission etc. via an RF technique. The present invention can be widely applied to various desktop computers, notebook computers, all-in-one machines and the like, and can also be applied to the tablet PC including Tablet PC, Ipad, PAD, learning machine or ultrabook, and the like as an external keyboard.
The present invention adopts metal domes with a long life, a long stroke, high sensitivity, and a low pressing force as a basis for mechanic actions, so as to generate hand feelings when a hand presses a keycap. The gram force value of the metal domes adopted by the present invention is similar to that of conventional scissor keys, wherein the gram force value is between 30-200 gf, the pressing stroke of the keyboard is between 0.10 mm to 1.00 mm, and the sensitivity is between 25% and 85%. The present invention, regarding the light guide material of 0.10-0.50 mm optical level, uses a cold pressing manner or hot pressing manner to manufacture light emitting spots of micro-nanostructure. By improving the structure, side light emitting LEDs are used as the light source, and through an optical design method, the key surface is enabled to emit light uniformly and softly and high luminance can be obtained. The breakover part of the key of the present invention adopts the PCB or conventional conductive film as a material for connecting electric appliance. The terminal, such as the key and the tablet PC, adopts an RF or a Bluetooth output control manner or wired connection manner. The keycap, the PCB or conductive film, the Bluetooth module, the metal domes and the like are then assembled as one module, to be installed inside a housing, so as to form an integrated finished product of “an ultrathin metal dome portable computer keyboard.” The entire produce of the present invention is light, thin, simple and convenient for installation and detachment, has good hand feelings, and is easy to carry. The ultrathin metal dome portable computer keyboard of the present invention would be a great innovation in the keyboard industry, and would bring a revolutionary reform to the conventional keyboard industry.
Number | Date | Country | Kind |
---|---|---|---|
2013 1 0292955 | Jul 2013 | CN | national |
2013 1 0292974 | Jul 2013 | CN | national |
Number | Name | Date | Kind |
---|---|---|---|
20020094838 | Wang | Jul 2002 | A1 |
20100108486 | Yoshida | May 2010 | A1 |
20110017580 | Ozaki | Jan 2011 | A1 |
20120112933 | Chen | May 2012 | A1 |
20120298496 | Zhang | Nov 2012 | A1 |
20160196936 | Ding | Jul 2016 | A1 |
Number | Date | Country |
---|---|---|
201928336 | Aug 2011 | CN |
202839410 | Mar 2013 | CN |
Entry |
---|
English translation of International Search Report for PCT/CN2013/081437, dated Apr. 22, 2014, two pages total. |
Number | Date | Country | |
---|---|---|---|
20160196937 A1 | Jul 2016 | US |
Number | Date | Country | |
---|---|---|---|
Parent | PCT/CN2013/081437 | Aug 2013 | US |
Child | 15068226 | US |