Wireless immersion type bath spraying device
By designing a wireless bath jet device, using a motor to drive the impeller to generate water flow, the problem of defects in the separate device that generates water flow in the bathtub in the prior art is solved, and the effect of generating water flow in the bathtub is achieved without additional equipment, providing a comfortable massage experience and high-quality water flow.
Patent Information
- Application Number
- CN202380067679.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Priority Date
- 2022-09-28
- Filing Date
- 2023-08-23
- Publication Date
- 2025-05-16
AI Technical Summary
The existing separate devices that generate water flow in the bathtub have undesirable shortcomings and cannot meet the user's need to generate water flow during bathing.
A wireless bath jet device is designed, including a housing and a motor located within the housing, to rotate the impeller to generate a flow of water in the bathtub. The device has a dual nozzle system, a removable filter and a rechargeable battery, which is able to be completely immersed in water without cable operation.
The water flow is achieved without additional equipment in the bathtub, providing a comfortable massage experience, and improving the quality and ease of use with adjustable angle nozzles and multi-stage filters.
Smart Images

Figure CN120018834A_ABST
Abstract
Description
Background Art 1. Field of the Disclosure
[0001] The present disclosure relates to bath sprayers. In particular, the present disclosure relates to cordless immersion bath spray devices. 2. Description of Related Technology
[0002] Bath jets are placed in bathtubs, hot tubs, spas, etc. to generate water streams therein. The water streams generated by the bath jets can create a pleasant sensation around the body and / or massage the body. However, not all bathtubs have bath jets. Therefore, if people like to generate water streams while bathing, a separate device is required. Currently available separate devices for generating water streams in bathtubs have unwelcome drawbacks.
[0003] Accordingly, the present disclosure has determined that a need remains for an apparatus that overcomes, mitigates, and / or alleviates one or more of the above-noted and other deleterious effects of previous apparatuses. Summary of the invention
[0004] The present disclosure provides a bath spray device, which comprises a housing and a motor located in the housing and rotating an impeller. The bath spray device is wireless.
[0005] Those skilled in the art will appreciate and understand the above-described and other features and advantages of the present disclosure from the following detailed description, the accompanying drawings, and the appended claims. BRIEF DESCRIPTION OF THE DRAWINGS
[0006] Figure 1 is a front perspective view of a bath spray device according to the present disclosure.
[0007] Figure 2 yes Figure 1 main view.
[0008] Figure 3 yes Figure 1 Side view of.
[0009] Figure 4 yes Figure 1 Top view of the .
[0010] Figure 5 yes Figure 1 Exploded front view of a stereogram.
[0011] Figure 6 yes Figure 1 A front perspective view of a motor housing of a shower spray device. DETAILED DESCRIPTION
[0012] With reference to the accompanying drawings, in particular Figure 1, an exemplary embodiment of a bath jet device according to the present disclosure is shown and generally indicated by the reference numeral 10. Advantageously, the bath jet device 10 generates a stream of water in a bathtub while being cordless and fully submersible in water.
[0013] refer to Figures 1 to 3 The bath spray device 10 has a cover 12, a sealing ring 14, a first detachable upper filter 16, a second detachable upper filter 18, a front housing 20, a rear housing 22, a nozzle assembly 24, a detachable lower filter 26, and a detachable bathtub support 28. A control button 29, a lighting button 30, a first LED 31, and a second LED 33 extend through the cover 12. The cover 12 has an opening for accessing a USB charging plug 32. A bubble button 34 extends through the sealing ring 14. A nozzle 36 is formed in the front housing 20. A nozzle 38 is formed in the nozzle assembly 24. As shown in FIG. Figure 3 and Figure 4 As shown, the removable bathtub support 28 is connected to two suction cups 40 , 42 .
[0014] Still refer to Figures 1 to 3 , the cover 12 is connected to the sealing ring 14 on a first side of the sealing ring 14. The sealing ring 14 is connected to the front housing 20 and the rear housing 22 on a second side opposite to the first side of the sealing ring 14. The front housing 20 and the rear housing 22 are rotatably connected to the sealing ring 14. The front housing 20 is connected to the rear housing 22. The first detachable upper filter 16 is detachably connected to the front housing 20 to cover the opening 21 ( Figure 5 The second detachable upper filter 18 is detachably connected to the rear housing 22 to cover the opening 23 passing through the rear housing 22 ( Figure 5 ). The nozzle assembly 24 is connected to the front housing 20 and the rear housing 22 on the side of the front housing body 20 and the rear housing body 22 opposite to the sealing ring 14. The removable lower filter 26 is connected to the nozzle assembly 24 on the side of the nozzle assembly 24 opposite to the side on which the nozzle assembly 24 is connected to the front housing 20 and the rear housing 22. The removable bathtub bracket 28 is removably connected to the front housing 20 and the rear housing 22.
[0015] refer to Figure 5, a rechargeable battery 44, an LED ring 46 forming a mood light, and a battery cover 48 are accommodated between the cover 12 and the sealing ring 14. After assembly, the rechargeable battery 44 is located in the battery cover 48, and the LED ring 46 is located around the battery cover 48. A pump top cover 50, an impeller 52, a pump top housing 54, a motor 56, a pump bottom housing 58, a pump bottom cover 60, and an impeller 62 are accommodated in the front housing 20, the rear housing 22, the nozzle assembly 24, the locking ring 64, and the removable lower filter 26. The motor 56 has a top drive shaft 51 and a bottom drive shaft 53, each of which is rotatable. The removable lower filter 26 is detachably connected to the locking ring 64. The locking ring 64 is connected to the nozzle assembly 24. The nozzle assembly 24 is connected to the locking ring 64, the front housing 20, and the rear housing 22, so that the nozzle assembly 24 is rotatable. The LED ring 46 and the motor 56 are directly or indirectly connected to the rechargeable battery 44. Preferably, the LED ring 46 is directly or indirectly connected to the rechargeable battery 44 via a switch activated and deactivated by the lighting button 30. The motor 56 is directly or indirectly connected to the rechargeable battery 44, preferably via a switch activated and deactivated by the control button 29.
[0016] refer to Figure 6 , the motor housing is formed by a pump top housing 54, which is connected to a pump bottom housing 58 to form an internal volume for accommodating a motor 56. The motor 56 is accommodated in the pump top housing 54 and the pump bottom housing 58, so that the top drive shaft 51 extends from the pump top housing 54 to the outside of the internal volume, and the bottom drive shaft 53 extends from the pump bottom housing 58 to the outside of the internal volume. The impeller 52 is connected to the top drive shaft 51, so that the impeller 52 is located outside the internal volume formed by the pump top housing 54 and the pump bottom housing 58. The impeller 62 is connected to the bottom drive shaft 53, so that the impeller 62 is located outside the internal volume formed by the pump top housing 54 and the pump bottom housing 58. The pump top cover 50 is located above the impeller 52 to connect to the pump top housing 54. The pump bottom cover 60 is located above the impeller 62 to connect to the pump bottom housing 58. The pump top cover 50 is connected to the pump top housing 54 so that the pump top cover 50 can rotate relative to the pump top housing 54. The pump bottom cover 60 is connected to the pump bottom housing 58 so that the pump bottom cover 60 can rotate relative to the pump bottom housing 58. The pump top cover 50 has an opening 66 located above the impeller 52. The pump bottom cover 60 has an opening 68 located above the impeller 62. The pump top cover 50 has a nozzle 70 that cooperates with the nozzle 36. The pump bottom cover 60 has a nozzle 72 that cooperates with the nozzle 38.
[0017] refer to Figures 1 to 3To use the bath jet device 10, the user places the bath jet device 10 in the bathtub and presses the suction cups 40, 42 against the inner wall of the bathtub to maintain the position of the bath jet device 10 in the bathtub. The bath jet device 10 is fully submersible so that the user can place the entire bath jet device 10 below the waterline. The bath jet device 10 is also wireless and rechargeable. Because the bath jet device 10 is wireless, it is also easier to position the bath jet device 10 in the bathtub. The bath jet device 10 is positioned so that the nozzle 36 is at the waterline or under the water in the bathtub, and the nozzle 38 is under the water in the bathtub. To turn on the bath spray device 10, the user can press the control button 29 and / or the bubble button 34 to conduct the current in the rechargeable battery 44 to the motor 56, which rotates the impeller 52, thereby drawing water through the removable upper filter 16 and the front housing 20 and the removable upper filter 18 and the rear housing 22, so that the water can flow through the opening 66 in the pump top cover 50, through the impeller 52, and the water flows out of the nozzle 70 and the nozzle 36 into the bathtub. The nozzle 70 and the nozzle 36 can be rotated to adjust the angle of the water flow. The motor 56 rotates the impeller 52 and the impeller 62 at the same time, so that the impeller 62 draws water through the removable lower filter 26 and the locking ring 64, so that the water flows through the opening 68 on the pump bottom cover 56, through the impeller 62, and out of the nozzle 72 and the nozzle 38. The nozzle 72 and the nozzle 38 can be rotated to adjust the angle of the water flow. To turn off the bath spray device 10, the user can press the control button 29 and / or the bubble button 34 to stop conducting electricity to the motor 56. The second LED 33 can be illuminated when the bath spray device 10 is turned on. The bath spray device 10 may or may not have a control button 29, and the control button 29 can be pressed multiple times to achieve different modes. For example, the motor 56 can be connected to the controller so that pressing the control button 29 multiple times increases the rotation speed of the top drive shaft 51 and the bottom drive shaft 53, thereby increasing the rotation speed of the impeller 52 and the impeller 62 respectively; and pressing the control button 29 a predetermined number of times can turn off the motor 56. The bath spray device 10 can have a removable cover to selectively close the nozzle 36 to provide additional water through the nozzle 38. The bath spray device 10 can have a removable cover to selectively close the nozzle 38 to provide additional water through the nozzle 36.
[0018] If the user wants mood lighting, the user can press the lighting button 30 to conduct current from the rechargeable battery 44 to the LED ring 46 to light up the LED ring 46. The first LED 31 can be illuminated when the LED ring 46 is illuminated. The cover 12 can have a completely transparent or translucent part or the cover 12 can be completely transparent or translucent. To turn off the mood lighting, the user can press the lighting button 30 so that current is no longer conducted to the LED ring 46. The user can operate the bath spray device 10 to start the motor 56 and light up the LED ring 46 at the same time.
[0019] The rechargeable battery 44 is removably connected to a power source, for example, via a cable connected to the rechargeable battery 44 via the USB charging plug 32, connecting the rechargeable battery 44 to a power outlet.
[0020] Advantageously, the bath jet device 10 has a vertical water jet with a dual nozzle system. Another advantage is that the bath jet device 10 is rechargeable, so that the bath jet device 10 can be used without any cables, so that there is no need to connect the cables to the power outlet during operation. The bath jet device 10 can be fully immersed in water, which is convenient for the user to easily fix it in different areas inside the bathtub. The bath jet device 10 includes two stages of removable filters, which are separately located at the upper housing (i.e., the first removable upper filter 16 and the second removable upper filter 18) and at the lower housing (i.e., the removable lower filter 26). The upper filters (i.e., the first removable upper filter 16 and the second removable upper filter 18) can generate additional water flow for the second water nozzle.
[0021] The bath jet device 10 includes two adjustable angle water jet nozzles (i.e., nozzles 36, 38). Nozzle 38 is located at the bottom, and nozzle 36 can be located just below the water surface so as to form two layers of water flow in the bathtub and form turbulence on the water surface. The bath jet device 10 includes a vertical inner motor housing with two impellers (i.e., impellers 52, 62) located at both ends, and two water jet nozzles (i.e., nozzles 70, 72) located in a vertical position. The bath jet device 10 includes two rotatable water jet nozzles, and the distance between the two vertical nozzles (i.e., nozzles 36, 38) is 40 mm or more. The bath jet device 10 includes a detachable bathtub bracket (i.e., detachable bathtub bracket 28) to facilitate easy separation of the bath jet device 10. The upper part of the bath jet device 10 has a light therapy mood light function, which allows the user to relax in the bathtub.
[0022] It should be noted that the terms "first", "second", "third", "upper", "lower", etc. may be used herein to modify various elements. Unless otherwise specified, these modifications do not imply a spatial order, sequential order, or hierarchical order of the modified elements.
[0023] Although the present disclosure has been described with reference to one or more exemplary embodiments, it will be appreciated by those skilled in the art that various changes may be made and that elements thereof may be substituted with equivalents without departing from the scope of the present disclosure. In addition, many modifications may be made to adapt specific circumstances or materials to the teachings of the present disclosure without departing from its scope. Therefore, it is intended that the present disclosure should not be limited to the specific embodiments disclosed as the best mode contemplated, but that the present disclosure will include all embodiments falling within the scope of the appended claims.
Claims
1. A bath spray device, comprising: case; as well as a motor within the housing for rotating the impeller, Wherein, the bath spray device is wireless.
2. The bath spray device of claim 1, wherein the bath spray device is rechargeable.
3. The bath spray device of claim 1, wherein the bath spray device is fully submersible.
4. The bath spray device of claim 1 further comprising a mood light connected to the housing.
5. The bath spray device of claim 1, further comprising a first nozzle located above the second nozzle. The bath spray device according to claim 5 , wherein the first nozzle and the second nozzle are rotatable.
7. The bath spray device of claim 1, further comprising an upper filter located above the lower filter.
8. The bath spray device of claim 7, further comprising a first nozzle located above a second nozzle, wherein the upper filter is located upstream of the first nozzle and the bottom filter is located upstream of the second nozzle.
9. The bath spray device according to claim 1, wherein the impellers are a first impeller and a second impeller, wherein: The motor rotates both the first impeller and the second impeller.
10. The bath spray device of claim 5, wherein the impellers are first and second impellers, wherein the motor rotates both the first and second impellers, and wherein the first impeller is aligned with the first nozzle and the second impeller is aligned with the second nozzle.