The present disclosure relates to the field of multi-directional input devices, and more particularly to a varistor type multi-directional input device.
With the improvement of living standards, leisure activities of people are increasingly rich and colorful. The electronic game machines that integrate leisure and entertainment, develop intelligence, cultivate emotional intelligence, and even exercise and fitness are more and more popular. As an important component of electronic game machine, the game rocker switch is an important part that people experiences video games.
A rocker and a switch are disclosed in the patent CN1877509, which are composed of a base, a cover, a rod, a universal assembly, a plurality of flexible films or components and a switch elastic piece. The cover has a top and a bottom. The cover has a plurality of pins and projections, and the projections extend from the bottom. The cover is mounted on the base. An opening allows the rod to pass through the cover. The cover has a plurality of walls. A plurality of slots are formed in the wall portions. A pair of semi-circular cavities are disposed in the cover. The semi-circular cavities have an inner surface. The flexible films are mounted on the inner surface of the semi-circular cavities.
In the rocker switch, the rod indirectly controls a flexible film provided with a resistor to generate an electrical signal indicating the position of the rod, and when the rod moves, the finger portion of the contactor moves along the resistive track of the flexible film and the conductor track to change the terminal voltage. However, the structure of the rod in the patent is complicated, which results in complicated assembly of the rocker switch, time-consuming and laborious, high cost, and requires to be moved relatively to realize the change of the terminal voltage value, and the operation is insensitive. With the development of science and technology, a miniaturized multi-direction input device with simplified structure is urgently needed.
To solve the above problems, a varistor type multi-directional input device is provided by the present disclosure, with labor-saving operation, smooth use, good finger pressure touch, simple structure and easy installation.
The technical solution of the present disclosure is that a varistor type multi-directional input device, comprising
Further improvements to the above technical solution are as follows: the upper rocker arm and the lower rocker arm are arranged in a cross shape.
Further improvements to the above technical solution are as follows: the varistor is a thin film resistor.
Further improvements to the above technical solution are as follows: the rocker assembly comprises a rocker arm seat; the rocker arm seat is provided with a rocker arm seat receiving groove corresponding to the second shaft end of the upper rocker arm and the fourth shaft end of the lower rocker arm; the base is provided with a base receiving groove corresponding to the first shaft end of the upper rocker arm and the third shaft end of the lower rocker arm; the rocker arm seat and the base are arranged in a staggered manner, and a first chamber of the rocking bar and the reset assembly is formed in the middle, and the rocker arm seat and the base are respectively provided with a plurality of second chambers matching with the eccentric wheels; the switch guide core and the conductive elastic piece are placed in the second chamber, and an end of the rocking bar is an inverted frustum cone.
Further improvements to the above technical solution are as follows: the base is provided with a second base receiving groove corresponding to the first shaft end and the second shaft end of the upper rocker arm and the third shaft end and the fourth shaft end of the lower rocker arm; a first base receiving chamber matching with a lower end portion of the lower rocker arm and a second base receiving chamber matching with the eccentric wheels of the upper locker arm and lower rocker arm are provided at a center of the base; the switch guide core and the conductive elastic piece is placed in the first base receiving chamber, the lower end of the lower rocker arm is spherical, the lower rocker arm is in contact with the reset assembly; and an elastic member is placed in the second base receiving chamber, a lower part of the second base receiving chamber is in contact with the varistor.
Further improvements to the above technical solution are as follows: the base is provided with a switch terminal, a lower bottom plate is disposed under the base, and the varistor terminal is arranged on the lower bottom plate; the lower bottom plate is snapped or screwed or riveted or pin fastened to the base.
Further improvements to the above technical solution are as follows: the eccentric wheels are a cam blocks integrally formed with the upper rocker arm and the lower rocker arm.
Further improvements to the above technical solution are as follows: the reset assembly comprises a reset ring and a spring.
Further improvements to the above technical solution are as follows: the elastic member is a reed, and the reed is disposed between the eccentric wheels and the varistor.
Further improvements to the above technical solution are as follows: the elastic member is a combination of a trigger piece and a spring.
The advantageous effects of the present disclosure are shown as below:
1. The pressure is transferred to the conductive elastic piece through the eccentric wheels on the rocker arms, and the deformation of the conductive elastic piece is changed due to the change of the height of the eccentric wheel in the axial direction, so that the surface of the varistor is subjected to different pressures, thus the resistance value output of the varistor is different. Thereby achieving multi-directional rocker operation, and diversified cursor brightness display, which improves user experience;
2. The rocker arm seat or the base structure is matched with the upper rocker arm and the lower rocker arm, so that the rocker structure is simple, the assembly is easy, and the finger pressure feel is good.
3. The lower rocker arm provided with the spherical end portion simplifies the rocker structure.
1 base, 11 first base receiving groove, 12 second base receiving groove, 13 first base receiving chamber, 14 second base receiving chamber, 2 upper cover, 3 rocker assembly, 30 eccentric wheel, 301 eccentric wheel axis, 31 rocking bar, 311 upper end, 312 lower end, 32 upper rocker arm, 320 upper rocker arm axis, 321 first convex portion, 322 first shaft end, 323 second shaft end, 324 first through hole, 33 lower rocker arm, 330 lower rocker arm axis, 331 second convex portion, 332 third shaft end, 333 fourth shaft end, 334 second through hole, 34 rocker arm seat, 341 first rocker seat receiving groove, 35 rivet, 41 reset ring, 42 spring, 5 electrical components, 51 first varistor, 511 first varistor positioning hole, 52 second varistor, 521 second varistor positioning hole, 53 switch guide core, 54 conductive elastic piece, 6 terminal assembly, 61 varistor terminal, 62 switch terminal, 63 lower bottom plate, 7 reed, 71 reed upper surface, d distance between the upper/lower rocker axis and eccentric wheel axis.
The present disclosure will be further illustrated with the accompanying drawings as below.
As shown in
A reset assembly 4 is mounted under the rocker assembly 3 for resetting after the rocker assembly 3 is pressed.
An electrical component 5 is electrically connected to the rocker assembly 3, to configure for converting a motion signal of the rocker assembly 3 into an electrical signal. The electrical component 5 includes a varistor 51, a switch guide core 52, a conductive elastic piece 53. The eccentric wheel 30 is in contact with the varistor 51, the switch guide core 52, and the conductive elastic piece 53 through the elastic member.
The terminal assembly 6 is configured to output an electrical signal, including a varistor terminal 61, and a switch terminal 62, wherein the varistor terminal 61 is mounted on an outside of the varistor 51. The varistor 51 is in contact with the switch guide core 52 via the rocker assembly 3, and the conductive elastic piece 53 is electrically connected to the varistor terminal 61. The switch terminal 62 is mounted on an outside of the switch guide core 52.
In this embodiment, as shown in
In this embodiment, the varistor 51 is a thin film resistor, so that a lighter rocker switch is realized.
In the first embodiment, the rocker assembly 3 includes a rocker arm seat 34. The rocker arm seat 34 is provided with a rocker arm seat receiving groove 341 corresponding to the second shaft end 323 of the upper rocker arm 32 and the fourth shaft end 333 of the lower rocker arm 33. The base 1 is provided with a base receiving groove 11 corresponding to the first shaft end 322 of the upper rocker arm 32 and the third shaft end 332 of the lower rocker arm 33. The rocker arm seat 34 and the base 1 are arranged in a staggered manner, and a first chamber 35 of the rocking bar 31 and the reset assembly 4 is formed in the middle, and the rocker arm seat 34 and the base 1 are respectively provided with a plurality of second chambers 36 matching with the eccentric wheels 30. The switch guide core 52 and the conductive elastic piece 53 are placed in the second chamber 36, and an end of the rocking bar 31 is an inverted frustum cone to perform a locking function, so that the rocking bar 31 will not pull away from the upper rocker arm 32 and the lower rocker arm 33 when the user operators the rocking bar, as shown in
Working process: as shown in
As shown in
As shown in
In this embodiment, the base 1 is provided with the switch terminal 62, a lower bottom plate 63 is disposed under the base 1, and the varistor terminal 61 is arranged on the lower bottom plate 63. The lower bottom plate 63 is snapped or screwed or riveted or pin fastened to the base 1.
In this embodiment, the eccentric wheels 30 are cam blocks integrally formed with the upper rocker arm 32 and the lower rocker arm 33, which simplifies the crank mechanism setting in the existing technology.
In this embodiment, the reset assembly 4 includes a reset ring 41 and a spring 42.
In this embodiment, the reed is disposed between the eccentric wheels 30 and the varistor 51.
In this embodiment, a trigger piece and a spring 42 are disposed in sequence between the eccentric wheel 30 and the varistor 51 from top to bottom.
In the above embodiment, the on-off switch is optional which can meet the product requirements.
Working process: as shown in
Number | Name | Date | Kind |
---|---|---|---|
6059660 | Takada | May 2000 | A |
6078247 | Shimomura | Jun 2000 | A |
6150919 | Shimomura | Nov 2000 | A |
6313731 | Vance | Nov 2001 | B1 |
6445377 | Shimomura | Sep 2002 | B1 |
6580418 | Grome | Jun 2003 | B1 |
6654005 | Wang | Nov 2003 | B2 |
6897391 | Gavalda | May 2005 | B2 |
7199314 | Huang | Apr 2007 | B2 |
9627161 | Yamamoto | Apr 2017 | B2 |
20180190452 | Wu | Jul 2018 | A1 |