Suspension button trigger induction adjusting system and method
By automatically adjusting the infrared diode current value in the suspended button circuit and receiving reflected signals using the pulse width modulation method, the problem of inconsistent sensing distance of the suspended button is solved and rapid adjustment is achieved.
Patent Information
- Application Number
- CN202510426697.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Priority Date
- 2025-02-14
- Filing Date
- 2025-04-07
- Publication Date
- 2025-07-29
AI Technical Summary
During the production process of floating buttons, the induction distance of each button is different due to the difference between the induction components and the optical module. The variable resistance value needs to be manually adjusted, which takes a long time to reach the same induction distance.
The calculator is used to automatically adjust the infrared diode current value in the suspended button circuit through the recording fixture, and emit infrared rays and receive reflected signals using the pulse width modulation method, and automatically compile the optimal current value to shorten the adjustment time.
Effectively shorten the adjustment time of the induction distance of the suspended button and improve adjustment efficiency.
Smart Images

Figure CN120389737A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to a triggering induction adjustment technology for a floating button, and more particularly to a floating button triggering induction adjustment system and method. Background Art
[0002] When producing a floating button, an operator uses a calculator in combination with a programming fixture to burn a program into the floating button circuit. The floating button circuit is placed in a test fixture for measuring the induction distance, and the distance between the floating button in the floating button circuit and an object such as a white reflector on the test fixture is adjusted. Then, the operator adjusts the variable resistance value in the floating button circuit. When the floating button is induced and the outer frame light of the floating button is in a flashing or extinguished state, the induction distance of the floating button is set. However, due to differences in the induction components and optical modules of different floating button circuits, the induction distance of each floating button is different. Therefore, the operator must adjust the variable resistance value of each floating button circuit to make the induction distance of each button the same. However, when adjusting, it is necessary to repeatedly confirm the critical point of more accurate induction, so it takes a long time to adjust. Summary of the Invention
[0003] The present invention provides a floating button triggering induction adjustment system and method that can shorten the adjustment time of the induction distance of the floating button.
[0004] To achieve one or part or all of the above purposes or other purposes, an embodiment of the present invention provides a floating button triggering induction adjustment method, which is applicable to a floating button triggering induction adjustment system. The floating button triggering induction adjustment system includes a calculator, a programming fixture, a test fixture, and a floating button circuit. The programming fixture is coupled to the calculator, the floating button circuit is coupled to the calculator and the programming fixture, and the floating button circuit is installed on the test fixture to sense the distance to an object at a default distance. The floating button triggering induction adjustment method includes: the calculator burns a first program code into the floating button circuit through the programming fixture; the floating button circuit automatically adjusts the first current value of the infrared diode in the floating button circuit to emit infrared rays to the object until the floating button circuit receives a reflected feedback signal associated with the infrared rays; the calculator receives the second current value of the infrared diode associated with the reflected feedback signal in the floating button circuit; and the calculator burns a second program code including the second current value into the floating button circuit through the programming fixture.
[0005] To achieve one or some or all of the above purposes or other purposes, an embodiment of the present invention provides a floating button trigger induction adjustment system, including: a calculator; a programming fixture, coupled to the calculator; a test fixture; and a floating button circuit, coupled to the calculator and the programming fixture, and installed on the test fixture to sense an object at a distance from a default distance; wherein a method for triggering induction adjustment of a floating button is executed by the floating button trigger induction adjustment system to include: the calculator burns a first program code into the floating button circuit through the programming fixture; the floating button circuit automatically adjusts a first current value of an infrared diode in the floating button circuit to emit infrared rays onto an object until the floating button circuit receives a reflected feedback signal associated with the infrared rays; the calculator receives a second current value of the infrared diode associated with the reflected feedback signal in the floating button circuit; and the calculator burns a second program code including the second current value into the floating button circuit through the programming fixture.
[0006] In an embodiment of the present invention, the above floating button trigger induction adjustment system further includes a main board control circuit, coupled to the calculator and the floating button circuit, and the method for triggering induction adjustment of the floating button further includes: the calculator tests the anti-misoperation function of the floating button circuit through the main board control circuit.
[0007] In an embodiment of the present invention, the above calculator automatically compiles the second program code to include the second current value.
[0008] In an embodiment of the present invention, the above default distance is 40 millimeters.
[0009] In an embodiment of the present invention, the above floating button circuit automatically adjusts the first current value of the infrared diode in the floating button circuit by a pulse width modulation method.
[0010] Since the present invention adopts burning a program to automatically adjust the current value of the infrared diode by a pulse width modulation method to find the optimal current value at the default distance, the adjustment time of the induction distance of the floating button can be effectively shortened.
[0011] To make the above and other purposes, features and advantages of the present invention more obvious and understandable, the following specific embodiments are given, and in conjunction with the accompanying drawings, the detailed description is as follows. BRIEF DESCRIPTION OF THE DRAWINGS
[0012] Figure 1 A schematic diagram of a floating button trigger induction adjustment system provided by an embodiment of the present invention;
[0013] Figure 2 A flowchart of a method for triggering induction adjustment of a floating button provided by an embodiment of the present invention;
[0014] Figure 3Schematic diagram of the floating button trigger induction adjustment system provided by another embodiment of the present invention;
[0015] Figure 4 Flowchart of the trigger induction adjustment method for the floating button provided by another embodiment of the present invention.
[0016] Wherein, reference numerals:
[0017] 1 Floating button trigger induction adjustment system
[0018] 2 Calculator
[0019] 3 Programming fixture
[0020] 4 Testing fixture
[0021] 5 Floating button circuit
[0022] 6 Main board control circuit
[0023] 10 Floating button trigger induction adjustment system
[0024] 41 Object
[0025] 51 Infrared diode
[0026] 52 Infrared receiving circuit
[0027] d Preset distance
[0028] Steps S1, S3, S5, S7, S9 Detailed implementation manner
[0029] The present invention is particularly described by the following examples, which are only for illustrative purposes. For those skilled in the art, various modifications and refinements can be made without departing from the spirit and scope of the present disclosure. Therefore, the protection scope of the present disclosure shall be determined by the scope of the appended patent application. Throughout the specification and the patent application scope, unless clearly specified in the context, the meanings of "a" and "the" include such descriptions including "one or at least one" component or element. In addition, as used in the present invention, unless it is clearly visible from a specific context to exclude multiple ones, the singular article also includes the description of multiple components or elements. Moreover, when applied to the entire description herein and the following patent application scope, unless clearly specified in the context, the meaning of "therein" can include "therein" and "thereon". The terms used throughout the specification and the patent application scope, unless otherwise specified, generally have their ordinary meanings in the art, in the content disclosed herein, and in the specific context. Some terms used to describe the present invention will be discussed below or elsewhere in this specification to provide additional guidance to those skilled in the art in the description of the present invention. Any examples anywhere in the specification, including the use of examples of any terms discussed herein, are only for illustrative purposes and do not limit the scope and meaning of the present invention or any illustrative terms. Similarly, the present invention is not limited to the various embodiments presented in this specification.
[0030] In addition, if the terms "coupled" or "connected" are used herein, they include any direct and indirect electrical connection means. For example, if it is described in the text that the first device is electrically coupled to the second device, it means that the first device can be directly connected to the second device, or indirectly connected to the second device through other devices or connection means. Additionally, when describing the transmission and provision of electrical signals, those skilled in the art should understand that attenuation or other non-ideal changes may occur during the transmission process of electrical signals. However, if the source and the receiving end of the electrical signal transmission or provision are not specifically described, they should be substantially regarded as the same signal. For example, if an electrical signal S is transmitted (or provided) from the terminal A of an electronic circuit to the terminal B of the electronic circuit, voltage drops may occur across the source-drain terminals of a transistor switch and / or possible stray capacitances. However, if the purpose of this design is not to deliberately use the attenuation or other non-ideal changes generated during the transmission (or provision) to achieve certain specific technical effects, the electrical signal S at the terminal A and the terminal B of the electronic circuit should be regarded as substantially the same signal.
[0031] As used herein, terms such as "comprising", "including", "having", "containing", "involving", etc. are open-ended, meaning including but not limited to. Additionally, any embodiment or claim of the present invention does not have to achieve all the purposes, advantages, or features disclosed in the present invention. Furthermore, the abstract and title are only used to assist in searching patent documents and do not limit the scope of the patent application of the present invention.
[0032] Please refer to Figure 1 As shown, it is a schematic diagram of a floating button trigger sensing adjustment system provided by an embodiment of the present invention. The floating button trigger sensing adjustment system 1 provided by this embodiment includes a calculator 2, a programming fixture 3, a test fixture 4, and a floating button circuit 5. Among them, the programming fixture 3 is coupled to the calculator 2, the floating button circuit 5 is coupled to the calculator 2 and the programming fixture 3 and is installed on the test fixture 4 to sense an object 41 at a default distance d from the floating button circuit 5 on the test fixture 4. It can be noted that in a generally common floating button circuit, an operator manually adjusts the variable resistance value of the variable resistor on the floating button circuit 5 to enable the touch button to sense an object within a sensing distance. However, in the floating button circuit 5 of the present invention, an infrared diode 51 replaces the variable resistor. After the calculator 2 burns program code into the floating button circuit 5 through the programming fixture 3, the current value of the infrared diode 51 in the floating button circuit 5 is automatically adjusted through pulse width modulation, so that the infrared diode 51 emits infrared rays to the object 41 according to the current value from small to large until the infrared receiving circuit 52 of the floating button circuit 5 receives the reflected feedback signal of the associated infrared rays. Then, the calculator 2 receives the current value of the infrared diode 51 associated with the reflected feedback signal in the floating button circuit 5, and the calculator 2 burns the program code including the current value of the infrared diode 51 associated with the reflected feedback signal into the floating button circuit 5 again to complete the sensing adjustment program of the floating button trigger, where the calculator 2 can automatically compile the program code to include the current value of the infrared diode 51 associated with the reflected feedback signal. Additionally, the preset distance d is preferably 40 millimeters, but those skilled in the art can design different preset distances d according to actual needs, so the present invention is not limited thereto. It should be noted that the program code burned by the calculator 2 through the programming fixture 3 can also automatically adjust the current value of the infrared diode 51 in the floating button circuit 5 according to the button surface light transmittance of different floating buttons, such as different numbers having different light transmission areas, and according to different preset distances d.
[0033] Please refer to Figure 2As shown in the figure, it is a flowchart of a method for adjusting the trigger sensing of a floating button provided by an embodiment of the present invention. The method for adjusting the trigger sensing of the floating button provided by this embodiment is applicable to a floating button trigger sensing adjustment system 1, and the method for adjusting the trigger sensing of the floating button includes the following steps. Step S1: The calculator 2 burns the first program code into the floating button circuit 5 through the programming fixture 3, and the floating button circuit 5 executes the trigger sensing adjustment of the floating button through the first program code. Step S3: The floating button circuit 5 automatically adjusts the first current value of the infrared diode 51 in the floating button circuit 5 to emit infrared rays onto the object 41 until the floating button circuit 5 receives the reflected feedback signal associated with the infrared rays. The floating button circuit 5 emits infrared rays from the infrared diode 51 onto the object 41 of the test fixture 4, and the infrared receiving circuit 52 attempts to receive the reflected feedback signal reflected from the object 41. When the current value of the infrared diode 51 in the floating button circuit 5 is gradually increased automatically in the pulse width modulation mode, the infrared receiving circuit 52 of the floating button circuit 5 receives the reflected feedback signal reflected from the object 41. Step S5: The calculator 2 receives the second current value of the infrared diode 51 associated with the reflected feedback signal in the floating button circuit 5. Step S7: The calculator 2 burns the second program code including the second current value into the floating button circuit 5 through the programming fixture 3 to complete the induction adjustment program of the floating button trigger and execute the trigger sensing function of the floating button.
[0034] Please refer to Figure 3 As shown in the figure, it is a schematic diagram of a floating button trigger sensing adjustment system provided by another embodiment of the present invention. Compared with the floating button trigger sensing adjustment system 1 provided by the previous embodiment, the floating button trigger sensing adjustment system 10 provided by this embodiment further includes a main board control circuit 6, which is coupled to the calculator 2 and the floating button circuit 5, so that the calculator 2 can test the anti-misoperation function of the floating button circuit 5 through the main board control circuit 6. For example, the calculator 2 is connected to one or more floating button circuits 5 through the main board control circuit 6 to test the anti-misoperation function of the floating button circuit 5. The program code for testing the anti-misoperation function of the floating button circuit 5 can be included in the second program code to facilitate programming, testing, and shortening the testing time, or it can also be separate from the second program code. In addition, the calculator 2, the programming fixture 3, the test fixture 4, and the floating button circuit 5 included in both the floating button trigger sensing adjustment system 10 provided by this embodiment and the floating button trigger sensing adjustment system 1 provided by the previous embodiment have the same execution functions, so they will not be described in detail here.
[0035] Please refer to Figure 4As shown, it is a flowchart of a method for adjusting trigger sensing of a floating button provided by another embodiment of the present invention. Compared with the method for adjusting trigger sensing of the floating button provided by the previous embodiment, the method for adjusting trigger sensing of the floating button provided by this embodiment is applicable to the floating button trigger sensing adjustment system 10, and further includes step S9 after step S7: The calculator 2 tests the anti-misoperation function of the floating button circuit 5 through the main board control circuit 6. In addition, steps S1, S3, S5, and S7 included in both the method for adjusting trigger sensing of the floating button provided by this embodiment and the method for adjusting trigger sensing of the floating button provided by the previous embodiment are the same, so they will not be elaborated here.
[0036] In summary, for the floating button trigger sensing adjustment system and method of the present invention, by using a burning program to automatically adjust the current value of the infrared diode in a pulse width modulation manner to find the optimal current value at a preset distance, the adjustment time of the sensing distance of the floating button can be effectively shortened.
[0037] Although the present invention has been disclosed as above with embodiments, it is not intended to limit the present invention. Those with ordinary knowledge in the technical field to which the present invention pertains can make some changes and modifications without departing from the spirit and scope of the present invention. Therefore, the protection scope of the present invention shall be subject to that defined by the appended patent application scope.
Claims
1. A triggering induction adjustment method for a floating button, applicable to a floating button triggering induction adjustment system, wherein the floating button triggering induction adjustment system includes a calculator, a programming fixture, a test fixture, and a floating button circuit. The programming fixture is coupled to the calculator, the floating button circuit is coupled to the calculator and the programming fixture, and the floating button circuit is installed on the test fixture to sense an object at a distance from a default distance. It is characterized in that, The method for adjusting the trigger sensing of the floating button includes: The calculator burns a first program code into the floating button circuit through the programming fixture; The floating button circuit automatically adjusts a first current value of an infrared diode in the floating button circuit to emit an infrared ray onto the object until the floating button circuit receives a reflection feedback signal associated with the infrared ray; The calculator receives a second current value of the infrared diode associated with the reflection feedback signal in the floating button circuit; and The calculator burns a second program code including the second current value into the floating button circuit through the programming fixture.
2. The method for triggering and sensing adjustment of the floating button according to claim 1, characterized in that The floating button trigger sensing adjustment system further includes a main board control circuit, coupled to the calculator and the floating button circuit. The method for adjusting the trigger sensing of the floating button further includes: The calculator tests the anti-misoperation function of the floating button circuit through the main board control circuit.
3. The triggering induction adjustment method of the floating button according to claim 1, wherein, The calculator automatically compiles the second program code to include the second current value.
4. The method for triggering and sensing adjustment of the floating button according to claim 1, wherein The preset distance is 40 millimeters.
5. The triggering induction adjustment method of the floating button according to claim 1, characterized in that, The floating button circuit automatically adjusts the first current value of the infrared diode in the floating button circuit by a pulse width modulation method.
6. A floating button trigger induction adjustment system, characterized in that, Including: A calculator; A programming fixture, coupled to the calculator; A test fixture; And A floating button circuit, coupled to the calculator and the programming fixture, and installed on the test fixture to sense an object at a distance from a default distance; Wherein a method for adjusting the trigger sensing of a floating button is executed by the floating button trigger sensing adjustment system to include: The calculator burns a first program code into the floating button circuit through the programming fixture; The floating button circuit automatically adjusts a first current value of an infrared diode in the floating button circuit to emit an infrared ray onto the object until the floating button circuit receives a reflection feedback signal associated with the infrared ray; The calculator receives a second current value of the infrared diode associated with the reflection feedback signal in the floating button circuit; and The calculator burns a second program code including the second current value into the floating button circuit through the programming fixture.
7. The floating button trigger induction adjustment system according to claim 6, characterized in that, The floating button trigger sensing adjustment system further includes a main board control circuit, coupled to the calculator and the floating button circuit. The method for adjusting the trigger sensing of the floating button further includes: The calculator tests the anti-misoperation function of the floating button circuit through the main board control circuit.
8. The floating button trigger induction adjustment system according to claim 6, characterized in that, The calculator automatically compiles the second program code to include the second current value.
9. The floating button trigger induction adjustment system according to claim 6, wherein, The default distance is 40 millimeters.
10. The floating button trigger induction adjustment system according to claim 6, characterized in that, The floating button circuit automatically adjusts the first current value of the infrared diode in the floating button circuit by a pulse width modulation method.