Portable electronic device with dual channels
Abstract
A portable electronic device with dual channels includes a first housing, a second housing, an atomizing module, an output module and a filter element. The second housing is assembled in the first housing. The atomizing module is mounted in the second housing. The output module surrounds a top end of the second housing. The output module is detachable from the second housing, and is replaceable. An inside of the output module is communicated with an inside of the second housing. The inside of the output module has an accommodating groove recessed inward. The filter element is mounted in the accommodating groove.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1 . A portable electronic device with dual channels, comprising:
a housing including a first housing and a second housing, the first housing and the second housing being assembled with each other, one side of a top surface of a lower wall of the second housing protruding upward to form a blocking wall, one side of an inside of the second housing having a first channel formed between the blocking wall and one side of an inner surface of the second housing, the inside of the second housing having a storage space, the storage space and the first channel being isolated by the blocking wall, a middle of the top surface of the lower wall of the second housing protruding upward to form a connecting block projecting into the storage space, a middle of the connecting block being hollow to form a second channel vertically penetrating through a top surface of the connecting block and penetrating through the lower wall of the second housing, lower portions of two outer side surfaces of the connecting block protruding oppositely to form two stopping walls, two sides of a bottom wall of the storage space defining two open-typed output holes penetrating through the lower wall of the second housing and adjacent to the two stopping walls, a bottom of the second housing having an atomizing space located under the storage space and the second channel, the atomizing space being communicated with the second channel, the atomizing space being communicated with the storage space through the two output holes, a top end of the second housing being equipped with a stopper, one side of an upper surface of the stopper protruding upward and being arched outward to form a protruding block, the protruding block defining a first air hole transversely penetrating through the protruding block, a middle of a bottom of the first air hole extending downward and penetrating through a bottom surface of the stopper, the first air hole being communicated with the first channel, a middle of the stopper defining a second air hole vertically penetrating through the upper surface and the bottom surface of the stopper, the second air hole being corresponding to and communicated with the second channel, the second housing being detachable from the first housing; a power supply module mounted in the first housing, a top end of the power supply module being equipped with an electrical connection assembly; an atomizing module mounted in the atomizing space of the second housing, the second channel being located above the atomizing module, the atomizing module including a heater, the heater including a absorbent element, and a wire wound around a periphery of the absorbent element, the power supply module being electrically connected to the atomizing module by the electrical connection assembly; two conveying carriers filled into two sides of a bottom of the storage space and covering the two output holes, the absorbent element being clamped between the two conveying carriers, two free ends of the absorbent element contacting with the two conveying carriers through the two output holes; a sensing module mounted in the first housing and connected with the first channel, the sensing module detecting an air pressure value in the housing, when the sensing module detects the air pressure value in the housing is negative, the power supply module being switched on to heat the heater of the atomizing module; an output module surrounding the top end of the second housing, and the stopper, an inside of the output module being communicated with the inside of the second housing, the inside of the output module having an accommodating groove recessed inward; and a filter element mounted in the accommodating groove.
2 . The portable electronic device with dual channels as claimed in claim 1 , wherein the electrical connection assembly includes a circuit board, the circuit board is equipped with two power pins mounted to a top of the circuit board.
3 . The portable electronic device with dual channels as claimed in claim 2 , further comprising an airtight element mounted on a top of the electrical connection assembly, the airtight element being made of a rubber material, the first housing being hollow, and a top of the first housing being opened freely to form an opening, the airtight element being assembled to the opening of the first housing, the airtight element being used for isolating the power supply module in the first housing from the atomizing module in the second housing, two sides of a top of the airtight element defining two through-holes corresponding to the two power pins, respectively, the two power pins passing upward through the two through-holes to be exposed to the top of the airtight element.
4 . The portable electronic device with dual channels as claimed in claim 3 , wherein the airtight element has a base portion mounted to the top of the electrical connection assembly, a front of the base portion of the airtight element extends downward to form a guiding portion, a periphery of the base portion protrudes upward to form a peripheral wall, the guiding portion is located to a front of the electrical connection assembly, a middle of a front surface of the guiding portion is recessed rearward to form a guiding groove penetrating through a front of the peripheral wall, one side of the top of the airtight element is recessed downward to form a leading groove penetrating through a front surface of the airtight element and extending to an upper portion of one side of the guiding groove, the leading groove is connected with the guiding groove, a top of the leading groove is corresponding to a bottom of the first channel, the sensing module is mounted to a front of the circuit board, a lower portion of an inner wall of the guiding groove has a fixing hole corresponding to the sensing module, the sensing module is exposed to the fixing hole.
5 . The portable electronic device with dual channels as claimed in claim 4 , wherein the output module is mounted to a top of the housing, the second housing, the atomizing module, the output module, the stopper and the two conveying carriers are mounted on the airtight element, the peripheral wall blocks a lower portion of a periphery of the second housing.
6 . The portable electronic device with dual channels as claimed in claim 4 , wherein a middle of an upper surface of the airtight element has a locating hole, the airtight element has a magnetic element assembled in the airtight element, a top surface of the magnetic element is exposed to the locating hole, the bottom of the second housing has an insulating body, middles of a front and a rear of the insulating body are recessed inward to form two buckling grooves, the atomizing module further includes a fastening element mounted under the insulating body and corresponding to the magnetic element, the fastening element is made of metal, a front and a rear of the fastening element protrude upward to form two buckling portions, the two buckling portions are buckled in the two buckling grooves, the magnetic element attracts the fastening element.
7 . The portable electronic device with dual channels as claimed in claim 2 , wherein two sides of a top wall of the atomizing space protrude downward to form two locating blocks, bottom surfaces of inner sides of the two locating blocks are recessed inward to form two holding grooves, the bottom of the second housing has an insulating body, two sides of a middle of an upper surface of the insulating body protrude upward to form two brackets spaced from each other, middles of top surfaces of the two brackets are recessed downward to from two locating grooves, lower portions of a front surface and a rear surface of the two brackets are recessed inward to form two limiting slots, the absorbent element is supported by the two brackets and is mounted in the two locating grooves of the two brackets, the absorbent element is located in the two holding grooves, two free ends of the wire extend and pass through the two limiting slots, the storage space is used for storing liquid substances, a liquid substance absorption rate of the absorbent element and a liquid substance absorption rate of each conveying carrier are adjustable according to characteristics of the liquid substances.
8 . The portable electronic device with dual channels as claimed in claim 7 , wherein each side of the insulating body defines at least one clamping slot penetrating through the upper surface and a lower surface of the insulating body, and transversely penetrating through a side surface of the insulating body, the atomizing module includes at least one conducting element, the at least one conducting element is clamped in the at least one clamping slot.
9 . The portable electronic device with dual channels as claimed in claim 7 , wherein each side of the insulating body defines two clamping slots penetrating through the upper surface and a lower surface of the insulating body, and transversely penetrating through a side surface of the insulating body, the atomizing module includes two conducting elements, a top surface and a bottom surface of each conducting element are defined as an upper contacting surface and a lower contacting surface, two sides of the insulating body project beyond outer surfaces of the two brackets, the two conducting elements surround the two sides of the insulating body, the two conducting elements are clamped in and pass through the clamping slots of the two sides of the insulating body, the upper contacting surfaces of the two conducting elements are exposed upward and beyond the two sides of the insulating body, and the lower contacting surfaces of the two conducting elements are exposed downward and under the two sides of the insulating body, each conducting element is made of metal, the two power pins are upwardly in contact with the lower contacting surfaces of the two conducting elements, respectively, the two free ends of the wire are connected to tops of the two conducting elements.
10 . The portable electronic device with dual channels as claimed in claim 9 , wherein one end of a top of each conducting element is bent upward to form an insertion piece, the two insertion pieces of the two conducting elements are exposed beyond the two sides of the insulating body, middles of the two insertion pieces are corresponding to the two free ends of the wire.
11 . The portable electronic device with dual channels as claimed in claim 9 , wherein the insulating body has two fixing blocks, the two fixing blocks are mounted on the two conducting elements and surround the two free ends of the wire, the wire is firmly fixed to the two conducting elements, and the wire is able to be kept contacting with the two conducting elements.
12 . The portable electronic device with dual channels as claimed in claim 1 , wherein a lower portion of the second housing defines at least one intake hole penetrating through a rear of the second housing and communicated with the second channel.
13 . The portable electronic device with dual channels as claimed in claim 1 , wherein the output module is mounted to the top end of the second housing, the output module is detachable from the housing and is replaceable.
14 . The portable electronic device with dual channels as claimed in claim 1 , wherein the housing, the stopper, the power supply module, the electrical connection assembly, the sensing module, the atomizing module and the two conveying carriers are detachable and replaceable.
15 . The portable electronic device with dual channels as claimed in claim 1 , further comprising an external charging module, a bottom of the first housing having an external connecting hole penetrating through a middle of a bottom surface of the first housing, a bottom of the power supply module being connected to the external charging module, the external charging module being mounted in the first housing and corresponding to the external connecting hole, the external charging module being detachable from the power supply module and the first housing, and the external charging module being replaceable.
16 . The portable electronic device with dual channels as claimed in claim 1 , wherein two sides of a top of the output module define two outlet holes penetrating downward through the top of the output module and communicated with the inside of the output module, the two outlet holes are communicated with the accommodating groove.
17 . A portable electronic device with dual channels which is detachable, comprising:
a first housing receiving a sensing module; a second housing assembled in the first housing, one side of a top surface of a lower wall of the second housing protruding upward to form a blocking wall, an inside of the second housing having a first channel and a storage space, the storage space and the first channel being isolated by the blocking wall, a middle of the top surface of the lower wall of the second housing protruding upward to form a connecting block projecting into the storage space, a middle of the connecting block being hollow to form a second channel vertically penetrating through a top surface of the connecting block and penetrating through the lower wall of the second housing, two sides of a bottom wall of the storage space defining two output holes penetrating through the lower wall of the second housing, a bottom of the second housing having an atomizing space located under the storage space and the second channel, the atomizing space being communicated with the second channel, the atomizing space being communicated with the storage space through the two output holes, the sensing module being connected with the first channel, a top end of the second housing being equipped with a stopper, one side of an upper surface of the stopper defining a first air hole extending downward and penetrating through a bottom surface of the stopper, the first air hole being communicated with the first channel, a middle of the stopper defining a second air hole penetrating through the upper surface and the bottom surface of the stopper, the second air hole being communicated with the second channel, the second housing being detachable from the first housing; an atomizing module mounted in the atomizing space of the second housing, the second channel being located above the atomizing module, the atomizing space being isolated from the sensing module; an output module surrounding the top end of the second housing, and the stopper, the output module being detachable from the second housing and being replaceable, an inside of the output module being communicated with the first air hole and the second air hole, the inside of the output module having an accommodating groove recessed inward; and a filter element mounted in the accommodating groove.
18 . A portable electronic device with dual channels, comprising:
a first housing; a second housing assembled in the first housing, one side of a top surface of a lower wall of the second housing protruding upward to form a blocking wall, one side of an inside of the second housing having a first channel formed between the blocking wall and one side of an inner surface of the second housing, the inside of the second housing having a storage space, the storage space and the first channel being isolated by the blocking wall, a middle of the top surface of the lower wall of the second housing protruding upward to form a connecting block projecting into the storage space, a middle of the connecting block being hollow to form a second channel vertically penetrating through a top surface of the connecting block and penetrating through the lower wall of the second housing, a bottom of the second housing having an atomizing space located under the storage space and the second channel, the atomizing space being communicated with the first channel and the second channel, a top end of the second housing being equipped with a stopper, one side of an upper surface of the stopper protruding upward and being arched outward to form a protruding block, the protruding block defining a first air hole transversely penetrating through the protruding block, a middle of a bottom of the first air hole extending downward and penetrating through a bottom surface of the stopper, the first air hole being communicated with the first channel, a middle of the stopper defining a second air hole vertically penetrating through the upper surface and the bottom surface of the stopper, the second air hole being corresponding to and communicated with the second channel, the second housing being detachable from the first housing; an atomizing module mounted in the atomizing space of the second housing, the second channel being located above the atomizing module; an output module surrounding the top end of the second housing, and the stopper, the output module being detachable from the second housing and being replaceable, an inside of the output module being communicated with the first air hole and the second air hole, the inside of the output module having an accommodating groove recessed inward; and a filter element mounted in the accommodating groove.
19 . The portable electronic device with dual channels as claimed in claim 18 , wherein the atomizing module is able to be one of an ultrasonic atomizing module, a compression atomizing module and a mesh atomizing module.
20 . The portable electronic device with dual channels as claimed in claim 18 , wherein two sides of a top of the output module define two outlet holes penetrating downward through the top of the output module and communicated with the inside of the output module, the two outlet holes are communicated with the accommodating groove.Join the waitlist — get patent alerts
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