STERILIZER FOR AUTONOMOUS ROBOTIC CLEANER
20230066903 ยท 2023-03-02
Inventors
Cpc classification
A61L2202/14
HUMAN NECESSITIES
A61L2/24
HUMAN NECESSITIES
A61L2202/16
HUMAN NECESSITIES
A47L11/405
HUMAN NECESSITIES
A47L2201/06
HUMAN NECESSITIES
A47L11/4011
HUMAN NECESSITIES
International classification
A47L11/40
HUMAN NECESSITIES
Abstract
A sterilizer for an autonomous robotic cleaner is revealed. An ultraviolet (UV) sterilizer is disposed on a top surface of an autonomous robotic cleaner. When the autonomous robotic cleaner is moved for cleaning the floor, consumers can activate the UV sterilizer by remote control to perform sterilization of indoor environments according to their needs. Thus a clean and hygienic environment is achieved. A person or pet in area to be cleaned is detected in a real time manner by a thermal sensor module so that the UV sterilizer is turned off immediately to protect the person or pet from injuries caused by exposure to UV light.
Claims
1. A sterilizer for autonomous robotic cleaners comprising: an ultraviolet (UV) sterilizer which is disposed on a top surface of a main body of an autonomous robotic cleaner and having a suction mount, a control module, a power supply module, an ultraviolet (UV) generator, and a thermal sensor module; wherein the suction mount is attached and fixed to the top surface of the main body while the control module, the power supply module, the UV generator, and the thermal sensor module are arranged at the suction mount; wherein the control module is electrically connected to the power supply module, the UV generator, and the thermal sensor module; wherein the power supply module supplies power to the control module, the UV generator, and the thermal sensor module; wherein the control module is operated to drive the UV generator to produce UV light for sterilization; when the UV generator produces UV light, the thermal sensor module detects whether there is a person or animal in a space to be cleaned and sends messages related to detection results to the control module; the control module checks whether there is a person or animal in the space to be cleaned according to the messages received; if check result of the control module is yes, the UV generator is turned off.
2. The sterilizer for autonomous robotic cleaners as claimed in claim 1, wherein the suction mount includes a mount and at least one suction cup which is arranged at a bottom of the mount for being attached and fixed to the top surface of the main body.
3. The sterilizer for autonomous robotic cleaners as claimed in claim 2, wherein the UV sterilizer further includes a display module which is electrically connected to the control module and the power supply module; the power supply module provides power to the display module while the control module includes a power usage monitor unit which is used for detecting power usage of the power supply module and sending detected values of the power usage to the display module to be displayed.
4. The sterilizer for autonomous robotic cleaners as claimed in claim 3, wherein the control module further includes a time setting unit by which on and off time of the UV generator is set and the set on and off time of the UV generator is shown on the display module.
5. The sterilizer for autonomous robotic cleaners as claimed in claim 4, wherein the UV sterilizer further includes a wireless network communication module which is electrically connected to the control module and the power supply module; wherein the power supply module supplies power to the wireless network communication module which receives signals from an intelligent electronic device (IED) with network connection capabilities and sends the signals to the control module; the control module checks whether to drive the UV generator to work according to the signals received.
6. The sterilizer for autonomous robotic cleaners as claimed in claim 5, wherein the intelligent electronic device (IED) with network connection capabilities includes a software program which is executed for remote control of on and off and time-setting of the UV generator.
7. The sterilizer for autonomous robotic cleaners as claimed in claim 1, wherein the UV sterilizer further includes a display module which is electrically connected to the control module and the power supply module; the power supply module provides power to the display module while the control module includes a power usage monitor unit which is used for detecting power usage of the power supply module and sending detected values of the power usage to the display module to be displayed.
8. The sterilizer for autonomous robotic cleaners as claimed in claim 7, wherein the control module further includes a time setting unit by which on and off time of the UV generator is set and the set on and off time of the UV generator is shown on the display module.
9. The sterilizer for autonomous robotic cleaners as claimed in claim 8, wherein the UV sterilizer further includes a wireless network communication module which is electrically connected to the control module and the power supply module; wherein the power supply module supplies power to the wireless network communication module which receives signals from an intelligent electronic device (TED) with network connection capabilities and sends the signals to the control module; the control module checks whether to drive the UV generator to work according to the signals received.
10. The sterilizer for autonomous robotic cleaners as claimed in claim 9, wherein the intelligent electronic device (IED) with network connection capabilities includes a software program which is executed for remote control of on and off and time-setting of the UV generator.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0011] The structure and the technical means adopted by the present invention to achieve the above and other objects can be best understood by referring to the following detailed description of the preferred embodiments and the accompanying drawings, wherein:
[0012]
[0013]
[0014]
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
[0015] Refer to
[0016] The suction mount 21 consists of a mount 211 and at least one suction cup 212. In the embodiment shown in
[0017] The control module 22 is electrically connected to the power supply module 23, the UV generator 24, and the thermal sensor module 25 while the power supply module 23 supplies power to the control module 22, the UV generator 24, and the thermal sensor module 25. The control module 22 is operated to drive the UV generator 24 to produce UV light for sterilization of indoor spaces.
[0018] The thermal sensor module 25 is used for detecting whether there is a person or animal in a space to be cleaned and sending messages related to detection results to the control module 22. Under the condition that the UV generator 24 emits UV light for sterilization and disinfection, the control module 22 checks whether there is a person or animal in the space to be cleaned according to the messages from the thermal sensor module 25. When the control module 22 checks that there is no person or animal in the space to be cleaned, the UV generator 24 keeps current state under control of the control module 22. Once the control module 22 checks that there is a person or animal in the space to be cleaned, the control module 22 controls the UV generator 24 to stop working.
[0019] In a preferred embodiment, the UV sterilizer 2 further includes a display module 26 which is electrically connected to the control module 22 and the power supply module 23. The power supply module 23 provides power to the display module 26 while the control module 22 includes a power usage monitor unit 221 which is used for detecting power usage of the power supply module 23 and sending detected values of the power usage to the display module 26 to be displayed.
[0020] In a preferred embodiment, the control module 22 further includes a time setting unit 222 which is used to set on and off time of the UV generator 24 and the set on and off time of the UV generator 24 is shown on the display module 26. Users can set on and off time of the UV generator 24 by the control module 22 and the time being set is displayed on the display module 26. For example, the user can set the time the UV generator 24 will be activated and inactivated such as one day in each month, one day in each week, or a moment in each day. When the time being set is coming and the control module 22 checks that there is no person or animal in the space to be cleaned according to detection results from the thermal sensor module 25, the control module 22 of the UV sterilizer 2 activates the UV generator 24 to emit UV light for disinfection and sterilization of the space to be cleaned.
[0021] In a preferred embodiment, the UV sterilizer 2 further includes a wireless network communication module 27 which is fixed on the suction mount 21 and electrically connected to the control module 22 and the power supply module 23. The power supply module 23 supplies power to the wireless network communication module 27 which receives signals from an intelligent electronic device (IED) 3 with network connection capabilities and sends the signals to the control module 22. Thus users can remotely control the UV sterilizer 2 to turn on or turn off the UV generator 24 for UV sterilization by operating and executing a software program of the TED 3. It should be noted that the UV generator 24 only starts to emit UV light for sterilization when the thermal sensor module 25 sends detection results to the control module 22 and the control module 22 checks that there is no person in the space to be cleaned according to the detection results received. The intelligent electronic device (IED) 3 with network connection capabilities can be a wireless communication device such as a mobile phone, a tablet, a computer, etc.
[0022] Once receiving a signal for activating the UV generator 24 from the intelligent electronic device (IED) 3 with network connection capabilities, the wireless network communication module 27 sends the signal to the control module 22 and the UV generator 24 produces UV light for sterilization after the control module 22 checking that there is no person in the space to be cleaned according to the signal received.
[0023] Additional advantages and modifications will readily occur to those skilled in the art. Therefore, the invention in its broader aspects is not limited to the specific details, and representative devices shown and described herein. Accordingly, various modifications may be made without departing from the spirit or scope of the general inventive concept as defined by the appended claims and their equivalent.