Three-dimensional control mouse and application method thereof
A technology of 3D control and mouse, which is applied in the field of mouse, can solve the problems that affect the extensive development of 3D technology, inconvenient and flexible, and limited button combinations, etc., and achieve the effect of rich and convenient control functions
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no. 1 example
[0071] Compared with the first embodiment, this embodiment replaces the key switch type deflection sensor in the first embodiment, and uses a photoelectric induction type deflection sensor, including an electronic circuit board 505 installed on the lower casing 105, which The central axis column 506 is coaxial with the central column 120 of the upper housing, and two photoelectric conversion devices are respectively distributed on the two vertical coordinate axes. Here, a photoresistor is used, including a photoresistor 503 in the vertical direction and a horizontal photoresistor. The photoresistor 504 in the direction also includes a light-emitting element 501 and a light-emitting element 502 installed on the upper casing 104 at positions opposite to the photoresistor 503 and the photoresistor 504 on the electronic circuit board of the lower casing. When the upper housing 104 deflects relative to the lower housing 105, the light-emitting element 501 and the light-emitting elem...
no. 8 example
[0096] Compared with the eighth embodiment, this embodiment replaces the thumb wheel 314 in the eighth embodiment with the five-way key 307 .
[0097] The five-way key 307 can provide enough button operations for the situation that requires rich buttons. Combining with the above, we know that this can double the combination of buttons, and can greatly enrich the various operations of the three-dimensional control mouse for three-dimensional objects. , the advantage is very obvious.
[0098] refer to Figure 4 , is a cross-sectional view of the deflection sensor assembly in the tenth embodiment of a three-dimensional control mouse according to the present invention.
[0099] In the tenth embodiment, on the basis of the eighth and ninth embodiments, the components of the deflection sensor are replaced. The components of the deflection sensor in this embodiment adopt a variable resistance structure, including a resistance supporting shell 401, The resistance piece 404, the spri...
Embodiment 10
[0100] Embodiment 11, alternatively, a known adjustable capacitor can be used to replace image 3 with Figure 13 The switch 310, switch 311, switch 312 and switch 313 in the example, in this way, compared with the adjustable resistance deflection sensor described in the tenth embodiment, the service life of the adjustable capacitor is longer and the positioning is more accurate.
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