Light induction direct drinking machine
The sensor-activated light direct drinking water machine, which combines infrared and pressure sensors, solves the problems of water waste and scalding in existing direct drinking water machines. It ensures that water is dispensed only when the cup is placed correctly, improving convenience and safety.
Patent Information
- Application Number
- CN202520150540.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-22
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2035-01-22
AI Technical Summary
Existing water dispensers are prone to water waste and inconvenience during the water dispensing process, especially when the water container is not placed correctly and water continues to flow, posing a risk of scalding.
The sensor-activated light direct drinking water machine is designed with a combination of infrared sensors and pressure sensors. It uses an infrared transmitter and receiver to determine the position of the cup, and the pressure sensor confirms that the cup is placed correctly, controlling the opening and closing of the water outlet to ensure that water is only dispensed when the cup is directly facing the water outlet.
It effectively avoids water waste and the risk of scalding, improves the convenience and safety of use, and ensures that water only comes out from the correct position.
Smart Images

Figure CN223715533U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to drinking water equipment especially relates to a kind of induction light direct drinking machine. BACKGROUND
[0002] Direct drinking machine is used in large quantities in family and public place. The general direct drinking machine forms a circle of light near the water outlet during the water outlet process, to show that the water outlet is being watered. The water outlet and light are controlled by the water button in this way, that is, when the button is pressed, the water outlet is watered and the light located at the water outlet is turned on. It is found in actual use that the water outlet will continue to water as long as the button is pressed, whether the water container is under the water outlet or not, which not only causes water resource waste, but also is inconvenient to use. SUMMARY
[0003] In order to overcome the deficiencies of the prior art, the utility model provides a kind of induction light direct drinking machine.
[0004] The utility model discloses the following technical scheme is realized: a kind of induction light direct drinking machine, including body, the body is equipped with water outlet, the cup holder is equipped in the water outlet below, the cup holder is detachably fixed on the body, the body is equipped with button for controlling the water outlet opening or closing, the water outlet is equipped with light emitting component, the light emitting component includes light emitting part and first sensing part, the first sensing part is equipped on the body and is evenly distributed around the water outlet, the first sensing part is linked with the button, the first sensing part is sensed to cup while pressing the button, the water outlet waters.
[0005] The first sensing part includes infrared emitter and infrared receiver, when cup is placed below the water outlet, the signal received by the infrared receiver on the surface of cup changes.
[0006] The infrared emitter and infrared receiver are fixed around the water outlet, and the infrared emitter emits infrared signal downward, the infrared receiver is placed on one side of the infrared emitter, when cup is placed below the water outlet, the surface of cup is reflected to the infrared receiver the infrared signal emitted by the infrared emitter.
[0007] The infrared receiver is arranged on the cup holder and opposite to the infrared emitter, when cup is placed on the cup holder, the cup interrupts the signal transmission from the infrared emitter to the infrared receiver.
[0008] The light emitting component further includes second sensing part, the second sensing part is arranged on the cup holder, the second sensing part includes pressure sensor, when cup is placed on the cup holder, the pressure sensor transmits signal.
[0009] The light-emitting part comprises a light-emitting lamp bead and a control board, the first sensing part and the second sensing part are signal connected with the control board respectively, the control board is signal connected with the light-emitting lamp bead, the light-emitting lamp bead is fixed on the machine body, and the control board is signal connected with the button to control on-off of the button.
[0010] Compared with the prior art, the first sensing part and the second sensing part exist when the utility model is used, and only when the cup placing position is correctly located directly below the water outlet can the water outlet have the water outlet condition. BRIEF DESCRIPTION OF DRAWINGS
[0011] Figure 1 is the structure schematic of the direct drinking machine in the utility model Figure 1 ;
[0012] Figure 2 is the structure schematic of the direct drinking machine in the utility model Figure 2 ;
[0013] Figure 3 is the structure schematic of the direct drinking machine in the utility model Figure 3 ;
[0014] Figure 4 is the control board signal connection principle diagram of the direct drinking machine in the utility model;
[0015] In the drawing: 1, machine body; 11, water outlet; 2, cup holder; 3, button; 4, first sensing part; 41, infrared emitter; 42, infrared receiver; 5, second sensing part; 51, pressure sensor; 6, light-emitting lamp bead; 7, control board. DETAILED DESCRIPTION
[0016] In the following, the utility model is further described in combination with the drawings and specific embodiments, and it should be noted that the following described embodiments or technical features can be combined to form new embodiments without conflict.
[0017] Refer to Figures 1-2The application discloses an induction light direct drinking machine, which comprises a machine body 1, a water outlet 11 arranged on the machine body 1, a cup holder 2 arranged below the water outlet 11, wherein the cup holder 2 is detachably fixed on the machine body 1, a button 3 arranged on the machine body 1 and used for controlling the water outlet 11 to open or close, and a light-emitting assembly arranged at the water outlet 11, wherein the light-emitting assembly comprises a light-emitting part and a first induction part 4, the first induction part 4 is arranged on the machine body 1 and is uniformly distributed around the water outlet 11, the first induction part 4 is connected with the button 3, the first induction part 4 senses the cup and simultaneously presses the button 3, and the water outlet 11 discharges water. When the cup is placed below the water outlet 11, the signal sensed by the first induction part 4 changes, at this moment, it can be proved that the cup is placed in place, and on this basis, the button 3 is triggered, and the water outlet 11 discharges water. That is to say, only when the cup is placed in the correct position directly below the water outlet 11, the water outlet condition can be met. At this moment, the button 3 is pressed, and the water outlet 11 discharges water. If the cup is not placed in the correct position and only part of the induction part changes the signal, at this moment, the button 3 can be pressed, but the water outlet 11 still does not discharge water, thereby avoiding the generation of scalding phenomenon and waste of water resources.
[0018] In the embodiment, the first induction part 4 comprises an infrared emitter 41 and an infrared receiver 42. When the cup is placed below the water outlet 11, the surface of the cup changes the signal received by the infrared receiver 42. The infrared emitter 41 and the infrared receiver 42 are fixed around the water outlet 11, and the infrared emitter emits the infrared signal downward. The infrared receiver 42 is arranged on one side of the infrared emitter 41. When the cup is placed below the water outlet 11, the surface of the cup reflects the infrared signal emitted by the infrared emitter 41 to the infrared receiver 42. That is to say, when the cup is placed in the correct position, all the infrared receivers 42 should be able to receive the approximate infrared signal, at this moment, the button 3 can be unlocked, that is, the button 3 can be pressed. When the cup is not placed in the correct position, not all the infrared receivers 42 can receive the corresponding signal, at this moment, the button 3 is locked, and even if the button 3 is pressed, the water outlet 11 still does not discharge water. Thus, the generation of scalding phenomenon is avoided, and water resources are not wasted.
[0019] Of course, the infrared receiver 42 can also be arranged on the cup holder 2 and opposite to the infrared emitter 41. When the cup is placed on the cup holder 2, the cup blocks the infrared emitter 41 from emitting the signal to the infrared receiver 42.
[0020] On the basis of the embodiment that the infrared emitter 41 and the infrared receiver 42 are both arranged on the machine body 1 and close to the water outlet 11, the light-emitting assembly further comprises a second induction part 5, the second induction part 5 is arranged on the cup holder 2, and the second induction part 5 comprises a pressure sensor 51. When the cup is placed on the cup holder 2, the pressure sensor 51 transmits the signal. The pressure sensor 51 can be arranged in multiple and uniformly distributed with the axis of the water outlet 11 as the center. If not all the pressure sensors 51 transmit the signal, the button 3 is locked, and even if the button 3 is pressed, the water outlet 11 still does not discharge water.
[0021] The light-emitting part comprises a light-emitting lamp bead 6 and a control panel 7, the first sensing part 4 and the second sensing part 5 are signal connected with the control panel 7 respectively, the control panel 7 is signal connected with the light-emitting lamp bead 6, the light-emitting lamp bead 6 is fixed on the machine body 1, and the control panel 7 is signal connected with the button 3 to control the on-off of the button 3. The control panel 7 can use the control panel 7 of the direct drinking machine itself, signal connection of the first sensing part 4 and the second sensing part 5 with the control panel 7 is processed by the control panel 7, and the trigger signal of the button 3 is also connected with the control panel 7, that is, pressing the button 3 does not directly control water outlet, but sends a trigger signal to the electromagnetic valve installed at the water outlet 11, and water is discharged from the water outlet 11 under the control of the electromagnetic valve. On this basis, the control panel 7 can only instruct the electromagnetic valve to open when the first sensing part 4, the second sensing part 5 and the button 3 signal are received simultaneously, that is, water is discharged from the water outlet 11. As long as one signal has no feedback, the control panel 7 cannot send a command signal for controlling the electromagnetic valve. That is, only when the cup placing position is correctly located directly below the water outlet 11 can the water outlet condition be met. At this time, pressing the button 3, the water outlet 11 discharges water, and if the cup placing position is incorrect and only part of the sensing part has signal change, the water outlet 11 will not discharge water at this time, which avoids the generation of scalding phenomenon and does not waste water resources. The function of the lamp bead is still to emit light when water is discharged, and of course, the lamp bead can be designed to emit light when the trigger signals of the first sensing part 4 and the second sensing part 5 are transmitted to the control panel 7 simultaneously, that is, the lamp bead emits light when the cup is placed in place, so as to reduce the occurrence of inaccurate water flow.
[0022] Compared with the prior art, the first sensing part 4 and the second sensing part 5 are used, and only when the cup placing position is correctly located directly below the water outlet 11 can the water outlet condition be met. At this time, pressing the button 3, the water outlet 11 discharges water, and if the cup placing position is incorrect and only part of the sensing part has signal change, the water outlet 11 will not discharge water at this time, which avoids the generation of scalding phenomenon and does not waste water resources.
[0023] The above-mentioned embodiments are only preferred embodiments of the utility model, and cannot be used to limit the range of protection of the utility model, and any non-substantial change and replacement made by the person skilled in the art on the basis of the utility model belongs to the range of protection required by the utility model.
Claims
1. Induction light direct drinking machine, comprising a body, the body is provided with a water outlet, the water outlet is provided with a cup holder below, the cup holder is detachably fixed on the body, the body is provided with a button for controlling the water outlet to open or close, the water outlet is provided with a light emitting component, characterized in that: The light-emitting assembly comprises a light-emitting part and a first sensing part, the first sensing part is arranged on the body and is uniformly distributed around the water outlet, the first sensing part is linked with the button, the first sensing part senses that the cup is pressed at the same time, and the water outlet discharges water.
2. The induction light direct drinking machine according to claim 1, wherein: The first sensing part comprises an infrared emitter and an infrared receiver, when the cup is placed below the water outlet, the surface of the cup changes the signal received by the infrared receiver.
3. The induction light direct drinking machine according to claim 2, wherein: The infrared emitter and the infrared receiver are fixed around the water outlet, the infrared emitter emits infrared signal downward, the infrared receiver is arranged on one side of the infrared emitter, and when the cup is placed below the water outlet, the surface of the cup reflects the infrared signal emitted by the infrared emitter to the infrared receiver.
4. The induction light direct drinking machine of claim 2, wherein: The infrared receiver is arranged on the cup holder and is arranged opposite to the infrared emitter, when the cup is placed on the cup holder, the cup blocks the infrared emitter from emitting signal to the infrared receiver.
5. The induction light direct drinking machine of claim 1, wherein: The light-emitting assembly further comprises a second sensing part, the second sensing part is arranged on the cup holder, the second sensing part comprises a pressure sensor, and when the cup is placed on the cup holder, the pressure sensor transmits signal.
6. The induction light direct drinking machine of claim 5, wherein: The light-emitting part comprises a light-emitting lamp bead and a control board, the first sensing part and the second sensing part are respectively connected with the control board, the control board is connected with the light-emitting lamp bead, the light-emitting lamp bead is fixed on the body, and the control board is connected with the button to control the on-off of the button.