Digital-Display Control Apparatus for Garbage Can With Adjustable Sensing Distance
20210150955 · 2021-05-20
Inventors
Cpc classification
G06F3/02
PHYSICS
G09G3/04
PHYSICS
B65F1/1638
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A digital-display control apparatus of a garbage can with adjustable sensing distance includes an emitter, a receiver, amplifier, an analog to digital converter, an analog to digital conversion result register, a comparison unit, a sensing distance adjustable register, a microcomputer control unit and a drive circuit, wherein the receiver is connected to the analog to digital conversion result register via the amplifier and the analog to digital converter, wherein the outputs of the analog to digital conversion result register and the adjustable sensing distance register are respectively connected to the comparison unit, wherein one output of the microcomputer control unit is connected to the drive circuit, wherein control ports of the microcomputer control unit are respectively connected with the analog to digital conversion result register, the comparison unit, the adjustable sensing distance register and the emitter. The digital-display control apparatus further includes a digital displayer and keys, which is capable of selecting the sensing distance by directly pressing keys or choose the predetermined sensing distance.
Claims
1. A digital-display control apparatus for garbage can with adjustable sensing distance, comprising: an emitter, a receiver, an amplifier, an analog to digital converter, an analog to digital conversion result register, a comparison unit, a sensing distance adjustable register, a microcomputer control unit, and a drive circuit, wherein the receiver is connected to the analog to digital conversion result register via the amplifier and the analog to digital converter, wherein the outputs of the analog to digital conversion result register and the adjustable sensing distance register are respectively connected to the comparison unit, wherein one output of the microcomputer control unit is connected to the drive circuit, wherein control ports of the microcomputer control unit are respectively connected with the analog to digital conversion result register, the comparison unit, the adjustable sensing distance register, and the emitter; a digital displayer; and at least a key, wherein an input of the key is connected with the microcomputer control unit, wherein an output of the microcomputer control unit is connected to the digital displayer, wherein the signal input by the key is processed by the microcomputer control unit, and a sensing distance value is obtained as the register value of the sensing distance adjustable register, wherein one of the sensing distance value and a digital information representing the sensing distance value is output to the digital displayer by the microcomputer control unit for display.
2. The digital-display control apparatus, as recited in claim 1, wherein the key is a number input key directly inputting a value converted and processed by the microcomputer control unit, and then being stored in the sensing distance adjustable register.
3. The digital-display control apparatus, as recited in claim 1, wherein the key is a selection input key, wherein the adjustable sensing distance register comprises a plurality of storage units for storing predetermined distance value.
4. The digital-display control apparatus, as recited in claim 1, wherein the analog to digital converter, the analog to digital conversion result register, the sensing distance adjustable register, the comparison unit, and the microcomputer control unit are integrated in one microcomputer control chip, wherein the microcomputer control chip comprises a first port 4A, a second port 4B, and a third port 4C, a fourth port 4D, and a fifth port 4E, wherein the first port 4A is connected to the emitter, wherein the second port 4B is connected to the output of the amplifier, wherein the third port 4C is connected to the digital displayer, wherein the fourth port 4D is connected to the drive circuit, wherein the fifth port 4E is connected to the key.
5. The digital-display control apparatus, as recited in claim 1, wherein the digital displayer is a number display displaying numbers of 1 to N, wherein 2≤N≤9.
6. The digital-display control apparatus, as recited in claim 1, wherein the number 1 representing that the sensing distance is 10 cm, wherein the number 2 representing that the sensing distance is 20 cm, wherein the number 3 representing that the sensing distance is 30 cm, wherein the number 4 representing that the sensing distance is 40 cm, wherein the numbers 5 representing that the sensing distance is 50 cm, wherein number 6 representing that sensing distance is 60 cm, wherein number 7 representing that sensing distance is 70 cm, wherein number 8 representing that sensing distance is 80 cm, wherein number 9 representing that sensing distance is 90 cm.
7. The digital-display control apparatus, as recited in claim 1, wherein the key is a selection input key, wherein the microcomputer control unit is stored with a plurality of predetermined distance value, so that while operating the key, the corresponding sensing distance is able to be selected by the corresponding content or the times of keystrokes.
8. The digital-display control apparatus, as recited in claim 4, wherein the digital displayer is a number display displaying numbers of 1 to N, wherein 2≤N≤9.
9. The digital-display control apparatus, as recited in claim 2, wherein the number 1 representing that the sensing distance is 10 cm, wherein the number 2 representing that the sensing distance is 20 cm, wherein the number 3 representing that the sensing distance is 30 cm, wherein the number 4 representing that the sensing distance is 40 cm, wherein the numbers 5 representing that the sensing distance is 50 cm, wherein number 6 representing that sensing distance is 60 cm, wherein number 7 representing that sensing distance is 70 cm, wherein number 8 representing that sensing distance is 80 cm, wherein number 9 representing that sensing distance is 90 cm.
10. The digital-display control apparatus, as recited in claim 3, wherein the number 1 representing that the sensing distance is 10 cm, wherein the number 2 representing that the sensing distance is 20 cm, wherein the number 3 representing that the sensing distance is 30 cm, wherein the number 4 representing that the sensing distance is 40 cm, wherein the numbers 5 representing that the sensing distance is 50 cm, wherein number 6 representing that sensing distance is 60 cm, wherein number 7 representing that sensing distance is 70 cm, wherein number 8 representing that sensing distance is 80 cm, wherein number 9 representing that sensing distance is 90 cm.
11. The digital-display control apparatus, as recited in claim 4, wherein the number 1 representing that the sensing distance is 10 cm, wherein the number 2 representing that the sensing distance is 20 cm, wherein the number 3 representing that the sensing distance is 30 cm, wherein the number 4 representing that the sensing distance is 40 cm, wherein the numbers 5 representing that the sensing distance is 50 cm, wherein number 6 representing that sensing distance is 60 cm, wherein number 7 representing that sensing distance is 70 cm, wherein number 8 representing that sensing distance is 80 cm, wherein number 9 representing that sensing distance is 90 cm.
12. The digital-display control apparatus, as recited in claim 5, wherein the number 1 representing that the sensing distance is 10 cm, wherein the number 2 representing that the sensing distance is 20 cm, wherein the number 3 representing that the sensing distance is 30 cm, wherein the number 4 representing that the sensing distance is 40 cm, wherein the numbers 5 representing that the sensing distance is 50 cm, wherein number 6 representing that sensing distance is 60 cm, wherein number 7 representing that sensing distance is 70 cm, wherein number 8 representing that sensing distance is 80 cm, wherein number 9 representing that sensing distance is 90 cm.
13. The digital-display control apparatus, as recited in claim 7, wherein the number 1 representing that the sensing distance is 10 cm, wherein the number 2 representing that the sensing distance is 20 cm, wherein the number 3 representing that the sensing distance is 30 cm, wherein the number 4 representing that the sensing distance is 40 cm, wherein the numbers 5 representing that the sensing distance is 50 cm, wherein number 6 representing that sensing distance is 60 cm, wherein number 7 representing that sensing distance is 70 cm, wherein number 8 representing that sensing distance is 80 cm, wherein number 9 representing that sensing distance is 90 cm.
14. The digital-display control apparatus, as recited in claim 8, wherein the number 1 representing that the sensing distance is 10 cm, wherein the number 2 representing that the sensing distance is 20 cm, wherein the number 3 representing that the sensing distance is 30 cm, wherein the number 4 representing that the sensing distance is 40 cm, wherein the numbers 5 representing that the sensing distance is 50 cm, wherein number 6 representing that sensing distance is 60 cm, wherein number 7 representing that sensing distance is 70 cm, wherein number 8 representing that sensing distance is 80 cm, wherein number 9 representing that sensing distance is 90 cm.
15. A garbage can, comprising: a can; and a digital-display control apparatus provided on the can having an adjustable sensing distance, wherein the digital-display control apparatus comprises: an emitter, a receiver, an amplifier, an analog to digital converter, an analog to digital conversion result register, a comparison unit, a sensing distance adjustable register, a microcomputer control unit, and a drive circuit, wherein the receiver is connected to the analog to digital conversion result register via the amplifier and the analog to digital converter, wherein the outputs of the analog to digital conversion result register and the adjustable sensing distance register are respectively connected to the comparison unit, wherein one output of the microcomputer control unit is connected to the drive circuit, wherein control ports of the microcomputer control unit are respectively connected with the analog to digital conversion result register, the comparison unit, the adjustable sensing distance register, and the emitter; a digital displayer; and at least a key, wherein an input of the key is connected with the microcomputer control unit, wherein an output of the microcomputer control unit is connected to the digital displayer, wherein the signal input by the key is processed by the microcomputer control unit, and a sensing distance value is obtained as the register value of the sensing distance adjustable register, wherein one of the sensing distance value and a digital information representing the sensing distance value is output to the digital displayer by the microcomputer control unit for display.
16. The garbage can, as recited in claim 15, wherein the key is selected from the group consisting of a number input key and a selection input key, wherein when the key is a number input key, the number input key is capable of directly inputting a value converted and processed by the microcomputer control unit, and then being stored in the sensing distance adjustable register, wherein when the key is a selection input key, the adjustable sensing distance register comprises a plurality of storage units for storing predetermined distance value, or the microcomputer control unit is stored with a plurality of predetermined distance value, so that while operating the key, the corresponding sensing distance is able to be selected by the corresponding content or the times of keystrokes.
17. The garbage can, as recited in claim 15, wherein the analog to digital converter, the analog to digital conversion result register, the sensing distance adjustable register, the comparison unit, and the microcomputer control unit are integrated in one microcomputer control chip, wherein the microcomputer control chip comprises a first port 4A, a second port 4B, and a third port 4C, a fourth port 4D, and a fifth port 4E, wherein the first port 4A is connected to the emitter, wherein the second port 4B is connected to the output of the amplifier, wherein the third port 4C is connected to the digital displayer, wherein the fourth port 4D is connected to the drive circuit, wherein the fifth port 4E is connected to the key.
18. The garbage can, as recited in claim 15, wherein the digital displayer is a number display displaying numbers of 1 to N, wherein 2≤N≤9.
19. The garbage can, as recited in claim 15, wherein the number 1 representing that the sensing distance is 10 cm, wherein the number 2 representing that the sensing distance is 20 cm, wherein the number 3 representing that the sensing distance is 30 cm, wherein the number 4 representing that the sensing distance is 40 cm, wherein the numbers 5 representing that the sensing distance is 50 cm, wherein number 6 representing that sensing distance is 60 cm, wherein number 7 representing that sensing distance is 70 cm, wherein number 8 representing that sensing distance is 80 cm, wherein number 9 representing that sensing distance is 90 cm.
20. The garbage can, as recited in claim 18, wherein the number 1 representing that the sensing distance is 10 cm, wherein the number 2 representing that the sensing distance is 20 cm, wherein the number 3 representing that the sensing distance is 30 cm, wherein the number 4 representing that the sensing distance is 40 cm, wherein the numbers 5 representing that the sensing distance is 50 cm, wherein number 6 representing that sensing distance is 60 cm, wherein number 7 representing that sensing distance is 70 cm, wherein number 8 representing that sensing distance is 80 cm, wherein number 9 representing that sensing distance is 90 cm.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0016]
[0017]
[0018] The drawings are referenced as follows:
[0019] 1—infrared emitter, 2—infrared receiver, 3—amplifier, 4—microcomputer control chip, 41—analog to digital converter, 42—analog to digital conversion result register, 43—comparison unit, 44—sensing distance adjustable register, 45—microcomputer control unit, 4A—output control port of the microcomputer control chip controlling the infrared emitter transmitting infrared pulse, 4B—analog signal input of analog to digital converter, 4C—output of microcomputer control chip lighting digital displayer, 4D—output units of drive circuit of the microcomputer control chip, 4E—input of the microcomputer control chip connected with the key, 5—digital displayer, 6—key, 7—drive circuit, 8—motor, 9—reducer, 10—over, 11—sensing window, 12—sensing area.
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
[0020] The following description is disclosed to enable any person skilled in the art to make and use the present invention. Preferred embodiments are provided in the following description only as examples and modifications will be apparent to those skilled in the art. The general principles defined in the following description would be applied to other embodiments, alternatives, modifications, equivalents, and applications without departing from the spirit and scope of the present invention.
[0021] Referring to
[0022] In this embodiment, the sensing distance can be adjusted in 5 levels as an example. The digital displayer 5 displays number 1 to 5, corresponding to level 1 to level 5 respectively. When displaying number “1”, the sensing distance is 10 cm. When displaying number “2”, the sensing distance is 20 cm. When displaying number “3”, the sensing distance is 30 cm. When displaying number “4”, the sensing distance is 40 cm. When displaying number “5”, the sensing distance is 50 cm. When the microcomputer control chip is powered on, the default sensing distance is 30 cm. In the standby mode, the program scans whether the key 6 is pressed. If the key 6 is not pressed, the sensing distance is remained at the default value of 30 cm. If the key 6 is pressed, the digital displayer 5 displays the current value as number “3”. After each keystroke of the key 6, the digital displayer displays the number plus 1. When the maximum sensing distance is reached at level 5, press the key again to display the number to back to level 1 so as to repeat the above cycle. If pressing to a particular level and not pressing key 6 again, the number displays for 2 seconds and go out (for the purpose of saving power). The sensing distance value corresponding to this level will be assigned by the display digital table-look-up program (that is, selected from the microcomputer control unit and assigned to the adjustable sensing distance register 44) to complete the adjustment. Then, the comparison unit 43 triggers whether the cover 10 is open by comparing the current value of the analog to digital conversion result register 42 with the sensing distance value in the adjustable sensing distance register 44. If the current value of the analog to digital conversion result register 42 is less than the sensing distance value in the adjustable sensing distance register 44, the cover 7 is not opened. If the current value of the analog to digital conversion result register 42 is larger than the sensing distance value in the adjustable sensing distance register 44, the cover 7 is opened. The greater the distance between the obstacle and the sensing window 11, the smaller the reflected signal is. The closer the distance between the obstacle and the sensing window 11, the larger the reflected signal is. And, the farther the sensing distance is adjusted, the smaller the reflected signal will be.
[0023] The electrical block diagram of the connection between the digital displayer 5 and the microcomputer control chip 4 of this embodiment is shown in
[0024] One skilled in the art will understand that the embodiment of the present invention as shown in the drawings and described above is exemplary only and not intended to be limiting.
[0025] The embodiments have been shown and described for the purposes of illustrating the functional and structural principles of the present invention and is subject to change without departure from such principles.