An oxygenator pump control device
By introducing a microcontroller control module and a solenoid valve into the oxygen pump, and combining it with a Bluetooth/WiFi module and mobile APP control, the diverse shapes and graphic displays of the air bubbles from the oxygen pump are realized, solving the problems of limited functionality and poor aesthetics, and improving both the visual appeal and controllability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- GUANGZHOU ANCHEN INSTR CO LTD
- Filing Date
- 2026-04-22
- Publication Date
- 2026-05-29
Smart Images

Figure CN122096038A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of oxygen pump technology, and in particular to an oxygen pump control device. Background Technology
[0002] An air pump is a machine commonly used in aquaculture. Its main function is to increase the oxygen content in the water to ensure that fish do not suffer from oxygen deficiency. Air pumps are also widely used in home aquariums. In current conventional applications, the air pump is connected to an air stone to pump air into the water, and the air stone disperses the bubbles. The following problems exist in the current use of oxygen pumps: 1. It has a single function, only used for oxygenation; 2. Unable to control or only able to make simple adjustments to speed and size; 3. Poor visual appeal; the bubbles are just the same and there are no other variations. Summary of the Invention
[0003] To address the above problems, this invention provides an oxygen pump control device, which aims to provide more control functions and aesthetic appeal while providing oxygenation. The technical solution is as follows: An oxygen pump control device includes a bubble tube, an oxygen pump body, and an air tube. The top of the bubble tube is in a straight line, with several air outlets evenly spaced. The oxygen pump body is equipped with a microcontroller control module, a solenoid valve, a Bluetooth / WiFi module, an air pump, and a switching power supply module. The oxygen pump body has an air pipe connection port on one side and a power interface and a main switch on the other side. Preferably, the air outlet of the bubble tube is made of stainless steel; Preferably, the trachea is made of silicone or rubber. Preferably, the outlet of the bubble tube is provided with an independent air tube hidden inside the bubble tube and led out from one side of the bubble tube; Preferably, the air tube is provided with a winding tube on the outside. The above-described technical solution of the present invention has the following beneficial technical effects: This control device connects to a mobile app via Bluetooth / WiFi. The app draws graphic points and sends data to the oxygen pump. Based on the data, the oxygen pump controls the on / off duration of the solenoid valve to control bubble generation, allowing the bubbles to form the drawn graphic. This adds control functionality while providing oxygenation, enhancing the entertainment and visual appeal. Attached Figure Description
[0004] Figure 1 This is a schematic diagram of the structure of an oxygen pump control device proposed in this invention. Figure 2 This is a schematic diagram of a smartphone APP control system for an oxygen pump control device proposed in this invention. Figure 3 This is a schematic diagram of the bubble tube of an oxygen pump control device proposed in this invention. Figure 4 This is a diagram showing the air pipe connection of an oxygen pump control device proposed in this invention. Figure 5 This is a schematic diagram of the oxygen pump body structure of an oxygen pump control device proposed in this invention. Figure 6 This is a diagram illustrating the graphic generation process of an oxygen pump control device proposed in this invention. Reference numerals: 1. Smartphone APP; 2. Air pump body; 3. Bubble tube; 4. Fixing suction cup; 5. Air outlet; 6. Air tube; 7. Winding tube; 8. Bubble graphic; 9. Fish tank / pond filled with water; 10. Graphic drawn on smartphone; 11. Solenoid valve; 12. Air pump; 13. Microcontroller control module; 14. Switching power supply module; 15. Bluetooth / WiFi module. Specific implementation methods
[0005] To make the objectives, technical solutions, and advantages of this invention clearer, the invention will be further described in detail below with reference to specific embodiments and the accompanying drawings. It should be understood that these descriptions are merely exemplary and not intended to limit the scope of the invention. Furthermore, descriptions of well-known structures and techniques are omitted in the following description to avoid unnecessarily obscuring the concept of the invention. Example 1 like Figure 1-4 As shown, this invention provides an aerator pump control device, including an aerator pump body 2 and a bubble tube 3. The aerator pump body 2 is equipped with an air pump 12, a solenoid valve 11, and a microcontroller control module 13. The bubble tube 3 is equipped with an air outlet 5 and a fixed suction cup 4. Under the action of the fixed suction cup 4, the bubble tube 3 is adsorbed and fixed to the inner wall of a fish tank / pond 9 filled with water, at a certain distance below the water surface. The air outlet 5 is connected to the solenoid valve 11 and the air pump 12 by an air pipe 6. Under the control of the microcontroller control module 13, the gas output by the air pump 12 is released in the form of individual bubbles with time intervals under the on and off action of the solenoid valve 11. The bubbles generated by the air outlet 5 reach a balance between water resistance and buoyancy in a very short time, and the bubbles rise at an approximately uniform speed in a near-linear manner. By releasing bubbles at the same interval, an orderly set of spaced bubbles can be formed, which is one branch. The bubble tube 3 has multiple air outlets 5, which can form multiple branches. The opening and closing of the solenoid valve 11 is controlled according to the program set by the microcontroller control module 13, which can generate multiple orderly bubbles and form the set bubble pattern 8. Example 2 like Figure 1-6 As shown, the present invention provides an oxygen pump control device, including an oxygen pump body 2, an air tube 3, and a smartphone APP 1. The oxygen pump body 2 is equipped with a solenoid valve 11, an air pump 12, a microcontroller control module 13, a switching power supply module 14, and a Bluetooth / WiFi module 15. The air tube 3 is equipped with a fixed suction cup 4 and an air outlet 5. The smartphone APP 1 is equipped with a drawing control APP. The bubble tube 3 is adhered and fixed to the inner wall of the water-filled fish tank / pool 9 by the suction cup 4, at a certain distance below the water surface. The air outlet 5 is connected to the solenoid valve 11 and the air pump 12 by an air tube 6. The smartphone APP 1 establishes a communication connection with the microcontroller control module 13 via the Bluetooth / WiFi module 15. The switching power supply module 14 provides power to the air pump 12, Bluetooth / WiFi module 15, microcontroller control module 13, and solenoid valve 11. The microcontroller control module 13 provides control signals to control the solenoid valve 11. Control Flow: A graphic 10 is drawn on a smartphone APP1. The smartphone APP1 sends data to the microcontroller control module 13 via Bluetooth / WiFi and provides feedback. Air output from the air pump 12 is delivered to the air outlet 5 on the bubble tube 3 via the solenoid valve 11. After receiving the data sent by the smartphone APP1, the microcontroller control module 13 controls the opening and closing of the solenoid valve 11 according to a preset program, causing orderly single bubbles to be generated at the air outlet 5, resulting in a bubble pattern 8 generated by multiple air outlets 5.
Claims
1. An oxygen pump control device, comprising a bubble tube 3, an oxygen pump body 2, and a smartphone APP 1, wherein the bubble tube 3 is provided with a plurality of evenly spaced air outlets 5, and the oxygen pump body is provided with a plurality of solenoid valves 11, an air pump 12, a microcontroller control module 13, a switching power supply module 14, and a Bluetooth / WiFi module 15, and the air outlets 5 on the bubble tube 3 are connected one-to-one with the solenoid valves 11 in the oxygen pump body 2 by air pipes 6.
2. The oxygen pump control device according to claim 1, characterized in that... Each air outlet 5 can output orderly bubbles under the control of the oxygen pump body 2.
3. The oxygen pump control device according to claim 1, characterized in that... The multiple air outlets 5 on the bubble tube 3 output ordered bubbles that can form patterns.
4. The oxygen pump control device according to claim 1, characterized in that... The graphic drawn on the smartphone APP1 can transmit information through communication with the oxygen pump body to control the output of orderly bubbles from the bubble tube and present the corresponding graphic.