Man-machine interaction feedback device and method thereof
A technology of human-computer interaction and feedback device, applied in the input/output of user/computer interaction, computer components, mechanical mode conversion, etc., can solve the problems of noise interference, poor confidentiality, large volume, etc., to improve confidentiality, The effect of small size and power consumption
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Embodiment 1
[0027] see Figure 1-a , this embodiment provides a human-computer interaction feedback device, including: a detection module 4 and an electric touch module 2,
[0028] The detection module 4 is used to detect whether the event is triggered, and notifies the electric touch module 2 when the event is detected to be triggered;
[0029] The electric touch module 2 is used for forming electrical stimulation to the body part that triggers the event when the detection module 4 detects that the event is triggered.
[0030] Wherein, the "event is triggered" may be a button is pressed, etc., and the "body part that triggers the event" may be a finger or the like.
[0031] Wherein, the electric touch module 2 may include a mechanical device for generating an impact force when an event is detected to be triggered and a piezoelectric ceramic for converting the impact force into an instantaneous voltage. When an event is detected to be triggered, the mechanical device and The piezo contac...
Embodiment 2
[0034] This embodiment provides a human-computer interaction feedback device, which is improved on the basis of Embodiment 1, see Figure 1-b , including: a detection module 4, a pulse generation module 1 and an electric touch module 2, the detection module 4 is connected to the pulse generation module 1, and the pulse generation module 1 is connected to the electric touch module 2;
[0035] The detection module 4 is used to detect whether the event is triggered, notify the electric touch module 2 when the event is detected to be triggered, and send a pulse control signal to the pulse generation module 1;
[0036] The pulse generation module 1 is used to receive the pulse control signal sent by the detection module 4, generate a pulse wave with a corresponding voltage amplitude and a corresponding frequency according to the pulse control signal, and send the pulse wave to the electric touch module 2;
[0037] The electric touch module 2 is also used to conduct and form a path ...
Embodiment 3
[0040] This embodiment provides a human-computer interaction feedback device, which is improved on the basis of Embodiment 2, see figure 2 :
[0041] Wherein, the pulse generation module 1 includes: a voltage transformer circuit 11 and a pulse wave generation circuit 12, the voltage transformer circuit 11 is connected with the pulse wave generation circuit 12; the voltage transformer circuit 11 is used to adjust the voltage amplitude of the pulse wave; the pulse wave generation circuit 12 , used to generate pulse waves.
[0042] Wherein, the transformer circuit 11 includes: an inductor L1, an NPN transistor Q1, a diode D2 and a capacitor C3.
[0043] One end of the inductor L1 is electrically connected to the power supply VCC, and the other end of the inductor L1 is electrically connected to the anode of the diode D2 and the collector of the NPN transistor Q1; optionally, for energy storage, the power supply VCC can also be electrically connected to a diode D1 and The capac...
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