A negative ion generator device with strong applicability

By introducing a motor-driven conductive slip ring and a rotating stage structure into the negative ion generator, the negative ion generating module can rotate 360 ​​degrees, solving the problem of insufficient purification efficiency and range caused by unidirectional output in the existing technology, and achieving multi-directional air purification effect.

CN224582688UActive Publication Date: 2026-07-31QINHUANGDAO 037 TECH DEV CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
QINHUANGDAO 037 TECH DEV CO LTD
Filing Date
2025-09-12
Publication Date
2026-07-31

AI Technical Summary

Technical Problem

Existing negative ion generators can only output in one direction, resulting in low purification efficiency and range.

Method used

A negative ion generator device was designed, which includes a base, a motor, a conductive slip ring, and a rotating platform. The motor drives the conductive slip ring to rotate the negative ion generating module 360 ​​degrees. Combined with a fan and a filter, it achieves multi-directional air purification.

Benefits of technology

It achieves multi-directional air purification, improving purification efficiency and range, making it more applicable and flexible.

✦ Generated by Eureka AI based on patent content.

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Abstract

This utility model provides a highly adaptable negative ion generator device, including a base, wherein: a power control module and a motor are fixedly installed in the base, the output end of the motor extends rotatably from the upper surface of the base, a protective shell is fixedly installed in the output end of the motor, and a negative ion generating module is fixedly installed in the protective shell, the negative ion generating module being connected to the outside of the protective shell; the overall design of this utility model can automatically purify the air from different directions during use, thereby improving purification efficiency and purification range, making it more adaptable and flexible.
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Description

Technical Field

[0001] This utility model relates to the field of negative ion generators, and in particular to a highly applicable negative ion generator device. Background Technology

[0002] A negative ion generator is a device that generates negative ions (i.e., negatively charged oxygen molecules or atomic groups) through physical or electrical methods. Its core function is to improve air quality or environmental conditions by utilizing the properties of negative ions.

[0003] A search revealed a high-lifespan positive and negative ion generator disclosed in Chinese Patent No. CN 221928892 U, belonging to the technical field of positive and negative ion generators. This invention addresses the problem of poor protection and dust accumulation at the ventilation openings, which negatively impacts the generator's lifespan. The invention includes a base with a housing fixed to its top. Multiple evenly distributed ventilation openings are located on the outer wall of the housing, and multiple annularly distributed air inlets are located on the top of the housing. The generator body is fixed to the inner wall of the bottom of the housing. This invention provides external protection for the housing by using a cover and protective shield, preventing direct damage to the generator body upon impact, thus providing good protection. Furthermore, the use of air inlet and ventilation filters to isolate the multiple air inlets and ventilation openings from dust further extends the generator's lifespan.

[0004] However, the aforementioned high-lifespan positive and negative ion generator can only output in one direction during use, resulting in low purification efficiency and range.

[0005] Therefore, it is essential to invent a versatile negative ion generator that can purify in multiple directions. Utility Model Content

[0006] To solve the above-mentioned technical problems, the present invention provides a highly applicable negative ion generator device. The technical solution adopted is as follows: a highly applicable negative ion generator device includes a base, wherein: a power control module and a motor are fixedly installed in the base, the output end of the motor extends rotatably from the upper surface of the base, a protective shell is fixedly installed in the output end of the motor, a negative ion generating module is fixedly installed in the protective shell, and the negative ion generating module is connected to the outside of the protective shell; The negative ion generating module is electrically connected to the power control module via a conductive slip ring. The rotor of the conductive slip ring is sleeved and fixed at the output end of the motor, and the stator of the conductive slip ring is fixedly connected to the base. The rotor harness of the conductive slip ring is electrically connected to the power supply line of the negative ion generating module, and the stator harness of the conductive slip ring is electrically connected to the power control module. The charging port of the power control module is located on one side of the base.

[0007] The protective shell includes a rotating platform, an umbrella-shaped protective shell, a cavity, an air outlet, and a cover plate. The bottom of the rotating platform is fixedly connected to the output end of the motor. The rotating platform does not contact the base. An umbrella-shaped protective shell is fixedly installed on the upper surface of the rotating platform. An upward-opening cavity is formed on the surface of the umbrella-shaped protective shell. The shape of the cavity is the same as that of the umbrella-shaped protective shell. An air outlet is formed at the small end of the umbrella-shaped protective shell. The air outlet communicates with the interior of the cavity. A cover plate is detachably installed at the open end of the cavity. The negative ion generating module is fixedly installed in the cavity.

[0008] The umbrella-shaped protective shell has several air inlets evenly distributed at its larger end, and these air inlets are connected to the interior of the cavity.

[0009] A fan is fixedly installed inside the cavity on the side near the air inlet. The air outlet of the fan faces the air outlet, and the air inlet of the fan faces the air inlet. The power cord of the fan is electrically connected to the rotor harness of the conductive slip ring.

[0010] A filter screen is installed on one side of the air inlet near the fan.

[0011] The negative ion generating module includes a negative ion generator, a negative ion converter, and a release device. The negative ion generator and the negative ion converter are fixedly installed on both sides of the large end of the cavity. The release device is fixedly installed inside the cavity and is located between the air outlet and the fan. The output end of the negative ion generator is electrically connected to the negative ion converter, and the output end of the negative ion converter is electrically connected to the release device.

[0012] Compared with the prior art, the advantages of this utility model are: The overall design of this utility model can automatically purify the air from different directions during use, thereby improving purification efficiency and range, and making it more versatile and flexible. Attached Figure Description

[0013] Figure 1 This is a schematic diagram of the overall structure of this utility model.

[0014] Figure 2 This is a schematic diagram of the internal structure of the umbrella-shaped protective shell of this utility model.

[0015] Figure 3 This is an exploded structural diagram of the present invention.

[0016] In the picture: 1. Base, 2. Motor, 3. Conductive slip ring, 4. Rotor harness, 5. Rotary table, 6. Umbrella-shaped protective shell, 7. Cavity, 8. Air outlet, 9. Cover plate, 10. Negative ion generator, 11. Negative ion converter, 12. Release device, 13. Fan, 14. Air inlet, 15. Power cord, 16. Charging port. Detailed Implementation

[0017] To enable those skilled in the art to better understand the present invention, the technical solutions in the embodiments of the present invention will be clearly and completely described below. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort should fall within the protection scope of the present invention.

[0018] In the description of the embodiments, it should be noted that the terms "upper," "lower," "inner," "outer," "front end," "rear end," "both ends," "one end," and "the other end," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing the present invention and for simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on the present invention. Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance. In the description of the utility model, it should be noted that unless otherwise explicitly specified and limited, the terms "installed," "equipped with," "connected," etc., should be interpreted broadly. For example, "connection" can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium; it can be a connection within two components. Those skilled in the art can understand the specific meaning of the above terms in the present utility model based on the specific circumstances.

[0019] The present invention will be further described below with reference to the accompanying drawings: Example

[0020] Reference Figure 1-3 A versatile negative ion generator device includes a base 1, wherein: a power control module and a motor 2 are fixedly installed in the base 1, the output end of the motor 2 extends rotatably from the upper surface of the base 1, and a protective shell is fixedly installed in the output end of the motor 2. Through the setting of the motor 2, the protective shell can drive the negative ion generating module to rotate 360 ​​degrees during use, thereby purifying the air in different directions. The negative ion generating module is fixedly installed in the protective shell, and the protective shell can protect the ion generating module. The negative ion generating module is connected to the outside of the protective shell to purify the air. Specifically, the negative ion generating module is electrically connected to the power control module through the conductive slip ring 3; the rotor of the conductive slip ring 3 is fixedly mounted on the output end of the motor 2, and the stator of the conductive slip ring 3 is fixedly connected to the base 1; the rotor wiring harness 4 of the conductive slip ring 3 is electrically connected to the power line 15 of the negative ion generating module, and the stator wiring harness of the conductive slip ring 3 is electrically connected to the power control module. By setting the conductive slip ring 3, the power cord 15 will not get tangled during the process of the motor 2 driving the protective shell to rotate the negative ion generating module 360 ​​degrees, thus ensuring a stable power supply to the negative ion generating module. Specifically, the charging port 16 and the power switch of the power control module are located on one side of the base 1. The charging port 16 adopts a TPCY-C charging port so that it can be charged through a USB charging cable, enabling it to be used in a variety of different environments, such as indoors and in a car.

[0021] Specifically, the protective shell includes a rotating platform 5, an umbrella-shaped protective shell 6, a cavity 7, an air outlet 8, and a cover plate 9. The bottom of the rotating platform 5 is fixedly connected to the output end of the motor 2. The rotating platform 5 does not contact the base 1. The umbrella-shaped protective shell 6 is fixedly installed on the upper surface of the rotating platform 5. The surface of the umbrella-shaped protective shell 6 has an upward-facing cavity 7. The shape of the cavity 7 is the same as that of the umbrella-shaped protective shell 6. The small end of the umbrella-shaped protective shell 6 has an air outlet 8. The air outlet 8 is connected to the inside of the cavity 7. Through the arrangement of the cavity 7 and the air outlet 8, a Venturi effect can be formed to increase the diffusion distance. The opening end of the cavity 7 is detachably installed with a cover plate 9 so that the cover plate 9 can be removed later to inspect the negative ion generating module inside the cavity 7. The negative ion generating module is fixedly installed in the cavity 7.

[0022] Specifically, the large end of the umbrella-shaped protective shell 6 is evenly provided with several air inlets 14, which are connected to the interior of the cavity 7 so that air can circulate when the fan 13 is running.

[0023] Specifically, a fan 13 is fixedly installed inside the cavity 7 on the side near the air inlet 14. The air outlet of the fan 13 faces the air outlet 8, and the air inlet of the fan 13 faces the air inlet 14. The power cord 15 of the fan 13 is electrically connected to the rotor harness 4 of the conductive slip ring 3. Through the setting of the fan 13, negative ions can be quickly blown into the surrounding environment. Fan 13 uses existing technologies, such as silent fans in the prior art.

[0024] Specifically, a filter screen is provided on the side of the air inlet 14 near the fan 13 to filter the air entering the cavity 7.

[0025] Specifically, the negative ion generating module includes a negative ion generator 10, a negative ion converter 11, and a releaser 12. The negative ion generator 10 and negative ion converter 11 are fixedly installed on both sides of the large end of the cavity 7. The releaser 12 is fixedly installed inside the cavity 7, positioned between the air outlet 8 and the fan 13, so that negative ions can quickly diffuse through the air outlet 8 under the action of the fan 13. The output end of the negative ion generator 10 is electrically connected to the negative ion converter 11, and the output end of the negative ion converter 11 is electrically connected to the releaser 12. Through the combination of the negative ion generator 10, the negative ion converter 11, and the releaser 12, the ion particle size is small, the activity is high, and it easily penetrates the blood-brain barrier, thus maximizing the health benefits of negative ions. The ions have high kinetic energy and long migration distance, creating an ion bath environment. The negative ions have high purity and do not produce harmful derivatives such as ozone. Since the working principle of the negative ion generator 10, negative ion converter 11 and emitter 12 is a very mature technology, it will not be described in detail here. Specifically, the selection of negative ion generator 10, negative ion converter 11 and emitter 12 can be made according to the size of the environment in which they will be used. Since there are many models and the technology is very mature, they will not be listed here.

[0026] In this embodiment, when in use, it can be placed on a table, in a car, etc., and the charging port 16 can be connected to a power source via a USB charging cable. Then, the power switch can be turned on.

[0027] Any technical solution that achieves the above-mentioned technical effects by utilizing the technical solution described in this utility model, or by designing a similar technical solution inspired by the technical solution described in this utility model, falls within the protection scope of this utility model.

Claims

1. A strong applicability negative ion generator device, characterized in that: Includes a base (1), wherein: a power control module and a motor (2) are fixedly installed in the base (1), the output end of the motor (2) extends out from the upper surface of the base (1), a protective shell is fixedly installed in the output end of the motor (2), a negative ion generating module is fixedly installed in the protective shell, and the negative ion generating module is connected to the outside of the protective shell; The negative ion generating module is electrically connected to the power control module via a conductive slip ring (3); The rotor of the conductive slip ring (3) is sleeved and fixed at the output end of the motor (2), and the stator of the conductive slip ring (3) is fixedly connected to the base (1). The rotor harness (4) of the conductive slip ring (3) is electrically connected to the power line (15) of the negative ion generating module, and the stator harness of the conductive slip ring (3) is electrically connected to the power control module. The charging port (16) of the power control module is located on one side of the base (1).

2. The strong applicability negative ion generator device according to claim 1, characterized in that: The protective shell includes a rotating platform (5), an umbrella-shaped protective shell (6), a cavity (7), an air outlet (8), and a cover plate (9). The bottom of the rotating platform (5) is fixedly connected to the output end of the motor (2). The rotating platform (5) does not contact the base (1). The umbrella-shaped protective shell (6) is fixedly installed on the upper surface of the rotating platform (5). The surface of the umbrella-shaped protective shell (6) has an upward-facing cavity (7). The shape of the cavity (7) is the same as that of the umbrella-shaped protective shell (6). The small end of the umbrella-shaped protective shell (6) has an air outlet (8). The air outlet (8) is connected to the inside of the cavity (7). The opening end of the cavity (7) is detachably installed with a cover plate (9). The negative ion generating module is fixedly installed in the cavity (7).

3. The strong applicability negative ion generator device according to claim 2, characterized in that: The umbrella-shaped protective shell (6) has several air inlets (14) evenly distributed at its large end, and the air inlets (14) are connected to the interior of the cavity (7).

4. The strong applicability negative ion generator device of claim 3, wherein: A fan (13) is fixedly installed inside the cavity (7) on the side near the air inlet (14). The air outlet of the fan (13) faces the air outlet (8), and the air inlet of the fan (13) faces the air inlet (14). The power cord (15) of the fan (13) is electrically connected to the rotor harness (4) of the conductive slip ring (3).

5. The strong applicability negative ion generator device of claim 4, wherein: A filter screen is provided on one side of the air inlet (14) near the fan (13).

6. The strong applicability negative ion generator device of claim 5, wherein: The negative ion generating module includes a negative ion generator (10), a negative ion converter (11), and a releaser (12). The negative ion generator (10) and the negative ion converter (11) are fixedly installed on both sides of the large end of the cavity (7). The releaser (12) is fixedly installed inside the cavity (7) and is located between the air outlet (8) and the fan (13). The output end of the negative ion generator (10) is electrically connected to the negative ion converter (11), and the output end of the negative ion converter (11) is electrically connected to the releaser (12).