CN203837192U - Air cleaner and ion generating unit - Google Patents

Air cleaner and ion generating unit Download PDF

Info

Publication number
CN203837192U
CN203837192U CN201290000768.3U CN201290000768U CN203837192U CN 203837192 U CN203837192 U CN 203837192U CN 201290000768 U CN201290000768 U CN 201290000768U CN 203837192 U CN203837192 U CN 203837192U
Authority
CN
China
Prior art keywords
mentioned
generating unit
ion generating
air
situation
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201290000768.3U
Other languages
Chinese (zh)
Inventor
小滨卓
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Sharp Corp
Original Assignee
Sharp Corp
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Sharp Corp filed Critical Sharp Corp
Application granted granted Critical
Publication of CN203837192U publication Critical patent/CN203837192U/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Classifications

    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01TSPARK GAPS; OVERVOLTAGE ARRESTERS USING SPARK GAPS; SPARKING PLUGS; CORONA DEVICES; GENERATING IONS TO BE INTRODUCED INTO NON-ENCLOSED GASES
    • H01T23/00Apparatus for generating ions to be introduced into non-enclosed gases, e.g. into the atmosphere
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F8/00Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying
    • F24F8/10Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying by separation, e.g. by filtering
    • F24F8/192Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying by separation, e.g. by filtering by electrical means, e.g. by applying electrostatic fields or high voltages
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F8/00Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying
    • F24F8/30Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying by ionisation
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02ATECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
    • Y02A50/00TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE in human health protection, e.g. against extreme weather
    • Y02A50/20Air quality improvement or preservation, e.g. vehicle emission control or emission reduction by using catalytic converters

Landscapes

  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Disinfection, Sterilisation Or Deodorisation Of Air (AREA)
  • Electrostatic Separation (AREA)

Abstract

The utility model provides an air cleaner and an ion generating unit. According to the air cleaner, the ion generating unit can be detached from a device body to be used independently. The ion generating unit (2) is detachably arranged on the device body (1). When the ion generating unit (2) is assembled on the device body (1), a battery of the ion generating unit (2) is charged through the power supplied by the device body (1). The ion generating unit (2) is small and light compared with the whole air cleaner (5), and therefore the ion generating unit (2) can be detached from the device body (1) to be transported independently. When the ion generating unit (2) is not assembled on the device body (1), the battery provides driving electric power for all the parts of the ion generating unit (2); at the moment, a second air feeder (41) delivers air, then air is sucked in through second suction ports (43) from the outside of a second ventilation path (42) to the inside, and the sucked air is blown out from the inside of the second ventilation path (42) through a second blow-out port (44) together with ions generated by an ion generating part (40).

Description

Air cleaner and ion generating unit
Technical field
The utility model relates to air cleaner and the ion generating unit purifying air.
Background technology
Existing air cleaner possesses the pressure fan of carrying air and the ventilation road that is provided with suction inlet and blow-off outlet.On ventilation road, dispose the air cleaner of filtered air.Near blow-off outlet, dispose the ion generating unit that produces ion.Pressure fan is carried air, thus from equipment via suction inlet air amount, the air sucking blows out (with reference to patent documentation 1) via blow-off outlet after air cleaner together with the ion being produced by ion generating unit outside equipment.
prior art document
patent documentation
Patent documentation 1: JP 2009-142356 communique
Utility model content
the problem that utility model will solve
Such air cleaner general size is large and heavy.Therefore,, for women or older etc., carrying air cleaner is difficult.And, to want in the situation that the place of expecting discharges ion, this place need to be for arranging the larger space of air cleaner.
The utility model completes in view of this situation, its main purpose is to provide a kind of air cleaner, above-mentioned air cleaner is configured to, equipment body has air cleaning portion, the 1st pressure fan and the 1st ventilation road, ion generating unit has ion generating unit, the 2nd pressure fan and the 2nd ventilation road, in the situation that ion generating unit is not assemblied in equipment body, at least ion generating unit, the 2nd pressure fan and the 2nd ventilation road play a role, and ion generating unit can be pulled down and are used separately from equipment body thus.
for the scheme of dealing with problems
Air cleaner of the present utility model possesses: equipment body, and it has the air cleaning portion for purifying air, the 1st pressure fan of carrying air and the 1st ventilation road that air can circulate; And ion generating unit, it has the ion generating unit that produces ion, can install and remove in the said equipment main body, on above-mentioned the 1st ventilation road, be provided with by above-mentioned the 1st pressure fan air-supply from the 1st suction inlet of outside air amount and by the 1st blow-off outlet blowing out to outside the purification of above-mentioned air cleaning portion for the air of suction, above-mentioned air cleaner is characterised in that, above-mentioned ion generating unit has: the 2nd pressure fan, and it carries air; And the 2nd ventilation road, it is provided with by the 2nd pressure fan air-supply from the 2nd suction inlet and the 2nd blow-off outlet that the air of suction is blown out to outside together with the ion being produced by above-mentioned ion generating unit of outside air amount, in the situation that above-mentioned ion generating unit is assemblied in the said equipment main body, from the said equipment main body, to above-mentioned ion generating unit, power, in the situation that above-mentioned ion generating unit is not assemblied in the said equipment main body, at least above-mentioned ion generating unit, above-mentioned the 2nd pressure fan and above-mentioned the 2nd ventilation road play a role.
Air cleaner of the present utility model is characterised in that, in the situation that above-mentioned ion generating unit is assemblied in the said equipment main body, at least above-mentioned air cleaning portion, above-mentioned the 1st pressure fan, above-mentioned the 1st ventilation road and above-mentioned ion generating unit play a role, on above-mentioned the 2nd ventilation road, be provided with inflow entrance, in the situation that above-mentioned ion generating unit is assemblied in the said equipment main body, part or all of the air blowing out via above-mentioned the 1st blow-off outlet directly flows into the inside on above-mentioned the 2nd ventilation road from above-mentioned inflow entrance, to to outside, blow out together with the ion being produced by above-mentioned ion generating unit via this inflow entrance leaked-in air.
Air cleaner of the present utility model is characterised in that, to via above-mentioned the 2nd blow-off outlet, to outside, blow out together with the ion being produced by above-mentioned ion generating unit via above-mentioned inflow entrance leaked-in air, in the situation that above-mentioned ion generating unit is assemblied in the said equipment main body, forbid the circulation via the air of above-mentioned the 2nd suction inlet, in the situation that above-mentioned ion generating unit does not assemble, forbid the circulation via the air of above-mentioned inflow entrance.
Air cleaner of the present utility model is characterised in that, on above-mentioned the 2nd ventilation road, above-mentioned the 2nd suction inlet, above-mentioned the 2nd pressure fan, above-mentioned inflow entrance, above-mentioned ion generating unit and above-mentioned the 2nd blow-off outlet are according to this arranged in order, between above-mentioned the 2nd pressure fan and above-mentioned inflow entrance, dispose switching part, above-mentioned switching part switches following state exclusively: by dispose above-mentioned the 2nd suction inlet and above-mentioned the 2nd pressure fan upstream side space with dispose above-mentioned inflow entrance, the connection blocking-up in the space in the downstream of above-mentioned ion generating unit and above-mentioned the 2nd blow-off outlet, and open the state of above-mentioned inflow entrance, and seal above-mentioned inflow entrance and make the space of above-mentioned upstream side and the state of the space in above-mentioned downstream connection.
Air cleaner of the present utility model is characterised in that, above-mentioned ion generating unit comes the mode of opening to be assemblied in the said equipment main body with above-mentioned inflow entrance towards above-mentioned the 1st blow-off outlet.
Air cleaner of the present utility model is characterised in that, above-mentioned ion generating unit also has battery, above-mentioned battery by being recharged from the power supply of the said equipment main body, is not powered to above-mentioned the 2nd pressure fan and above-mentioned ion generating unit in the situation that above-mentioned ion generating unit is assemblied in the said equipment main body in the situation that above-mentioned ion generating unit is assemblied in the said equipment main body.
Air cleaner of the present utility model is characterised in that, the said equipment main body has in the situation that the 1st operating portion that this equipment body and the ion generating unit running that is assemblied in this equipment body are operated, above-mentioned ion generating unit has in the situation that make not to be assemblied in the 2nd operating portion that the above-mentioned ion generating unit running of the said equipment main body operates, and the 2nd operating portion is to be assemblied in the said equipment main body by the hidden attitude of the said equipment main body.
Ion generating unit of the present utility model has the ion generating unit that produces ion, can install and remove in miscellaneous equipment, and above-mentioned ion generating unit is characterised in that to have: pressure fan, and it carries air; And ventilation road, it is provided with: by this pressure fan, blow and from the suction inlet of outside air amount and blow-off outlet that the air of suction is blown out to outside together with the ion being produced by above-mentioned ion generating unit, in the situation that being assemblied in above-mentioned miscellaneous equipment, from above-mentioned miscellaneous equipment, power, in the situation that not being assemblied in above-mentioned miscellaneous equipment, at least above-mentioned ion generating unit, above-mentioned pressure fan and above-mentioned ventilation road play a role.
In the utility model, air cleaner possesses equipment body and can install and remove the ion generating unit in equipment body.Equipment body has air cleaning portion, the 1st pressure fan and the 1st ventilation road, and ion generating unit has ion generating unit, the 2nd pressure fan and the 2nd ventilation road.On the 1st ventilation road, be provided with the 1st suction inlet and the 1st blow-off outlet, on the 2nd ventilation road, be provided with the 2nd suction inlet and the 2nd blow-off outlet.
In the situation that ion generating unit is assemblied in equipment body, such as the driving electric power of ion generating unit and the 2nd pressure fan etc., from equipment body, to ion generating unit, provide.
In the situation that ion generating unit is not assemblied in equipment body, at least the ion generating unit of ion generating unit, the 2nd pressure fan and the 2nd ventilation road play a role.Therefore in not being assemblied in the ion generating unit of equipment body (hereinafter referred to as ion generating unit monomer), the 2nd pressure fan is carried air, thus from the outside on the 2nd ventilation road to inside via the 2nd suction inlet air amount, the air of suction blows out to outside from the inside on the 2nd ventilation road via the 2nd blow-off outlet together with the ion being produced by ion generating unit.Be that ion generating unit monomer is the formation that can use separately.Therefore user pulls down ion generating unit from equipment body, and carrying ion generating unit monomer, is arranged on example place as desired.
Above result is that the ion being produced by ion generating unit is released in the place that is provided with ion generating unit monomer.
In the situation that ion generating unit is not assemblied in equipment body, it doesn't matter for the action of equipment body and the action of ion generating unit.Therefore, in this case, each portion of equipment body can play a role, and also can not play a role.In this case, if each portion of equipment body plays a role, equipment body can be used separately, if do not played a role, can not use separately.
In the situation that equipment body can be used separately, the equipment body of having pulled down ion generating unit is arranged on the indoor of user place for example individually.In this case, the 1st pressure fan is carried air, thus from the outside on the 1st ventilation road to inside via the 1st suction inlet air amount, the air of suction is purified by being blown out to outside from the inside on the 1st ventilation road by the 1st blow-off outlet by air cleaning portion.Above result is that the air being purified by air cleaning portion (below also referred to as purifying air) is carried to the place that is provided with equipment body.
In the utility model, the air cleaner (below the air cleaner of this state being called to air cleaner integral body) that ion generating unit is assemblied in the state of equipment body is arranged on the indoor of user place for example.
In the situation that ion generating unit is assemblied in equipment body, at least the ion generating unit of the air cleaning portion of equipment body, the 1st pressure fan, the 1st ventilation road and ion generating unit plays a role.
In the situation that ion generating unit is assemblied in equipment body, the 1st pressure fan is carried air, thus from the outside on the 1st ventilation road to inside via the 1st suction inlet air amount, the air sucking is purified by being blown out to outside from the inside on the 1st ventilation road by the 1st blow-off outlet by air cleaning portion.And part or all of the air (purifying air) blowing out via the 1st blow-off outlet via inflow entrance, the inside to the 2nd ventilation road flows directly into.Purifying air of flowing into via inflow entrance blows out to outside from the inside on the 2nd ventilation road together with the ion being produced by ion generating unit.
Above result is that, in the situation that ion generating unit is assemblied in equipment body, purify air (below also referred to as containing ion cleaning air) that comprise the ion being produced by ion generating unit transfers out to the place that is provided with air cleaner integral body.
In order to blow out to outside from the inside on the 2nd ventilation road containing ion cleaning air, can be only the 1st pressure fan air-supply, can be also the 1st pressure fan is blown together with the 2nd pressure fan.
In addition, while blowing out to outside in the inside from the 2nd ventilation road containing ion cleaning air, as long as via either party or both sides in the 2nd suction inlet and the 2nd blow-off outlet.
And can be inflow entrance and the 2nd suction inlet or the 2nd blow-off outlet dual-purpose.
In the utility model, in the situation that ion generating unit is assemblied in equipment body, purifying air of flowing into via inflow entrance is containing ion cleaning air, via the 2nd blow-off outlet, to outside, blows out.Now, forbid the circulation via the air of the 2nd suction inlet.Consequently, can make to become efficiently containing ion cleaning air via purifying air of inflow entrance inflow.In addition, can make to blow out towards this 1 direction of the 2nd blow-off outlet containing ion cleaning air.Therefore, can intensively blow out containing ion cleaning air to the desired direction of user.
Suppose, allow the circulation via the air of the 2nd suction inlet, purify air or likely via the 2nd suction inlet, to outside, spill containing ion cleaning air.
On the other hand, in the situation that ion generating unit is not assemblied in equipment body, the air sucking via the 2nd suction inlet becomes the air (below also referred to as containing ionic air) that comprises the ion being produced by ion generating unit, via the 2nd blow-off outlet, to outside, blows out.Now, forbid the circulation via the air of inflow entrance.Consequently, can make to become containing ionic air efficiently via the air of the 2nd suction inlet suction.In addition, can make to blow out towards this 1 direction of the 2nd blow-off outlet containing ionic air.Therefore, can intensively blow out containing ionic air to the desired direction of user.
Suppose to allow the circulation via the air of inflow entrance, likely via inflow entrance, the outside to the 2nd ventilation road spills the air sucking via the 2nd suction inlet.
In the utility model, on the 2nd ventilation road of ion generating unit, the 2nd suction inlet, the 2nd pressure fan, switching part, inflow entrance, ion generating unit and the 2nd blow-off outlet are according to this arranged in order.At this, the space that disposes the 2nd suction inlet and the 2nd pressure fan in the 2nd ventilation road is called to the space of upstream side, the space that disposes inflow entrance, ion generating unit and the 2nd blow-off outlet is called to the space in downstream.
In the situation that ion generating unit is assemblied in equipment body, switching part is opened inflow entrance.Now, via the purifying air circulation in the space in downstream of inflow entrance inflow, become containing ion cleaning air, via the 2nd blow-off outlet, to outside, blow out.
In addition, in this case, switching part is by the connection blocking-up in the space in the space of upstream side and downstream.Therefore, forbid the circulation via the air of the 2nd suction inlet.Consequently, can make further to become efficiently containing ion cleaning air via purifying air of inflow entrance inflow.Its reason is even if for example only cover the 2nd suction inlet, also can forbid the circulation via the air of the 2nd suction inlet, but via purifying air of inflow entrance inflow, likely in the space of upstream side, be detained thus, the space-efficient of side ground circulation downstream.
On the other hand, in the situation that ion generating unit is not assemblied in equipment body, switching part is communicated with the space of upstream side and the space in downstream.Now, the air sucking via the 2nd suction inlet circulates in order and becomes containing ionic air in the space of upstream side and the space in downstream, and the outside via the 2nd blow-off outlet to the 2nd ventilation road blows out.
In addition, in this case, switching part seals inflow entrance.Therefore, forbid the circulation via the air of inflow entrance.Consequently, can make to become containing ionic air efficiently via the air of the 2nd suction inlet suction.
In the utility model, ion generating unit is assemblied in equipment body to be located at the inflow entrance on the 2nd ventilation road of self towards the mode of the 1st blow-off outlet opening of being located at the 1st ventilation road of equipment body.Consequently, purifying air of blowing out via the 1st blow-off outlet can directly and efficiently flow into the 2nd ventilation road via inflow entrance.
In the utility model, ion generating unit also has battery.
In the situation that ion generating unit is not assemblied in equipment body, the 2nd pressure fan and ion generating unit are from powered battery.Therefore, be not assemblied in ion generating unit under the state of equipment body without for example accepting electric power from source power supply.Consequently, even if at least ion generating unit monomer also can arrange in the place that can not accept electric power.Relaxed the restriction that place is set of ion generating unit.
In the situation that ion generating unit is assemblied in equipment body, battery is by being recharged from equipment body power supply.Therefore, for example ion generating unit is being assemblied in before equipment body, without battery is charged in addition.Consequently, user's convenience improves.
In the utility model, equipment body has the 1st operating portion, and ion generating unit has the 2nd operating portion.
In the situation that ion generating unit is not assemblied in equipment body, user can turn round ion generating unit by operating the 2nd operating portion, can equipment body be turned round by operating the 1st operating portion.That is, equipment body and ion generating unit all can be used separately.
In the situation that ion generating unit is assemblied in equipment body, user can make air cleaner overall operation by operating the 1st operating portion.Therefore, in this case, user is without by operating the 2nd operating portion, ion generating unit being turned round.
The attitude of the ion generating unit in the situation that being assemblied in equipment body is that the 2nd operating portion is by the hidden attitude of equipment body.In other words, in the situation that ion generating unit is assemblied in equipment body, the 2nd operating portion is configured in the position that user's eyes be can't see.
Suppose that the 2nd operating portion also exposes in the situation that ion generating unit is assemblied in equipment body, expect user that air cleaner integral body turns round likely maloperation the 2nd operating portion or can hesitate should operate on earth which in the 1st operating portion and the 2nd operating portion.
That is, the 2nd operating portion as unwanted position in the situation that ion generating unit is assemblied in equipment body is hidden, user's convenience can be improved thus, and the appearance design of air cleaner integral body can be improved.
utility model effect
In the situation that being air cleaner of the present utility model and ion generating unit, ion generating unit can be pulled down from equipment body.In addition, can use separately the ion generating unit of pulling down from equipment body.
It is small-size light-weight that ion generating unit monomer is compared with air cleaner integral body.Therefore compare with making the situation of air cleaner integrated moving, can easily make ion generating unit monomer move.In addition, place that can be narrow in the place than air cleaner integral body will be set arranges ion generating unit monomer.
And, as long as user carries respectively separated ion generating unit and equipment body and makes their combinations in mobile destination, compare and can easily make air cleaner move with carrying air cleaner integral body.
Above result, can improve user's convenience.
And, in the situation that using air cleaner integral body, as long as to equipment body power supply, owing to powering to ion generating unit from equipment body, so without powering to equipment body and ion generating unit respectively.
Accompanying drawing explanation
Fig. 1 is the side cross-sectional, view that the major part of the air cleaner (in the situation that equipment body is equipped with ion generating unit) that schematically represents embodiment 1 of the present utility model forms.
Fig. 2 is the elevational sectional view that the major part of the air cleaner (in the situation that equipment body is equipped with ion generating unit) that schematically represents embodiment 1 of the present utility model forms.
Fig. 3 is the stereogram of the outward appearance of the air cleaner (in the situation that equipment body is equipped with ion generating unit) that schematically represents embodiment 1 of the present utility model.
Fig. 4 is the stereogram of the outward appearance of the air cleaner (in the situation that equipment body does not assemble ion generating unit) that schematically represents embodiment 1 of the present utility model.
Fig. 5 means the block diagram that the major part of control system of the air cleaner (in the situation that equipment body is equipped with ion generating unit) of embodiment 1 of the present utility model forms.
Fig. 6 is the top view of the outward appearance of the guidance panel that schematically represents that the ion generating unit of the air cleaner of embodiment 1 of the present utility model possesses.
Fig. 7 is the stereogram of the outward appearance of the air cleaner (in the situation that equipment body is equipped with ion generating unit) that schematically represents embodiment 2 of the present utility model.
Fig. 8 is the stereogram of the outward appearance of the air cleaner (in the situation that equipment body does not assemble ion generating unit) that schematically represents embodiment 2 of the present utility model.
Fig. 9 means the block diagram that the major part of control system of the air cleaner (in the situation that equipment body is equipped with ion generating unit) of embodiment 2 of the present utility model forms.
Figure 10 is the top view of the outward appearance of the 2nd guidance panel that schematically represents that the ion generating unit of the air cleaner of embodiment 2 of the present utility model possesses.
Figure 11 is the side cross-sectional, view that the major part of the air cleaner (in the situation that equipment body is equipped with ion generating unit) that schematically represents embodiment 3 of the present utility model forms.
Figure 12 is the elevational sectional view that the major part of the air cleaner (in the situation that equipment body is equipped with ion generating unit) that schematically represents embodiment 3 of the present utility model forms.
Figure 13 is the side cross-sectional, view that the major part of the air cleaner (in the situation that equipment body does not assemble ion generating unit) that schematically represents embodiment 3 of the present utility model forms.
The specific embodiment
Below, the accompanying drawing based on representing embodiment of the present utility model describes the utility model in detail.
Embodiment 1.
Fig. 1 and Fig. 2 are side cross-sectional, view and the elevational sectional view that schematically represents that the major part of the air cleaner 5 of embodiment 1 of the present utility model forms.Fig. 3 and Fig. 4 are the stereograms that schematically represents the outward appearance of air cleaner 5.Fig. 5 means the block diagram that the major part of the control system of air cleaner 5 forms.
Air cleaner 5 possesses equipment body 1 and can install and remove the ion generating unit 2 in equipment body 1.Fig. 1~Fig. 3 and Fig. 5 are illustrated in the situation that equipment body 1 is equipped with ion generating unit 2, and Fig. 4 is illustrated in the situation that equipment body 1 does not assemble ion generating unit 2.Below the situation that is equipped with ion generating unit 2 at equipment body 1 is called to the situation of confined state, the situation of not assembling ion generating unit 2 at equipment body 1 is called to the situation of non-confined state.
The right side of Fig. 1 (and left side) is the face side (and rear side) of air cleaner 5.Fig. 2 is the sectional view that the right side (being the face side of air cleaner 5) from Fig. 1 is watched.Fig. 3 and Fig. 4 are the stereograms that the left side (being the rear side of air cleaner 5) from Fig. 1 is watched.Below the right side of Fig. 1 (and left side) is called to the front side (and rear side) of air cleaner 5.In addition, the left side of Fig. 2 (and right side) is called to the left side (and right side) of air cleaner 5, the upside of Fig. 1 and Fig. 2 (and downside) is called to the upside (and downside) of air cleaner 5.
As shown in Figure 1 to 4, equipment body 1 possesses vertical-shaped rectangular-shaped casing 100, and casing 100 loads in for example ground.Ion generating unit 2 possesses the casing 200 that horizontal shape is rectangular-shaped.It is small-size light-weight that ion generating unit 2 is compared with equipment body 1.
Top plate portion at casing 100 is provided with step, and the height of the top plate portion of the aspect ratio rear side of the top plate portion of front side is low.The front face existing between the top plate portion of front side of casing 100 and the top plate portion of rear side convexes with at the 1st connector 10 shown in Fig. 4 and Fig. 5.On the other hand, the rear face at casing 200 is concaved with the 2nd connector 20.The 1st connector 10 and the 2nd connector 20 are inserted and are electrically connected to the 2nd connector 20 by the 1st connector 10.
In the situation that ion generating unit 2 is assemblied in equipment body 1, casing 200 loads in the top plate portion of the front side of the casing 100 of equipment body 1, and is fixed on casing 100 by not shown locking mechanism.Now, the 1st connector 10 and the 2nd connector 20 are electrically connected to.In the situation that maintain the lock-out state of locking mechanism, ion generating unit 2 cannot be pulled down from equipment body 1, so ion generating unit 2 can not come off.
On the other hand, if locking mechanism is disengaged, ion generating unit 2 can easily be pulled down from equipment body 1.Now, the connection of the 1st connector 10 and the 2nd connector 20 is disengaged.The in the situation that of non-confined state, casing 200 for example loads on table.
The in the situation that of non-confined state, ion generating unit 2 turns round individually.Ion generating unit 2 possesses at the battery 45 shown in Fig. 1 and Fig. 5 for this reason.As shown in Figure 5, equipment body 1 possesses power supply unit 14, but in the present embodiment, equipment body 1 can not turn round individually.
Below the air cleaner of confined state 5 is called to air cleaner 5 integral body, the equipment body of non-confined state 1 and ion generating unit 2 are called to equipment body 1 monomer and ion generating unit 2 monomers.
The power supply unit 14 of equipment body 1 never illustrated source power supply is accepted electric power.The 1st control part 11(that equipment body 1 possesses is with reference to Fig. 1 and Fig. 5), foul smell sensor 12, dust sensor 13(be respectively with reference to Fig. 5) and the 1st pressure fan 31(with reference to Fig. 1 and Fig. 5) from power supply unit 14, be powered.
The in the situation that of confined state, the 2nd control part 21(that ion generating unit 2 possesses is with reference to Fig. 5), guidance panel 22(is with reference to Fig. 1, Fig. 3~Fig. 5), ion generating unit 40, the 2nd pressure fan 41(be respectively with reference to Fig. 1, Fig. 2 and Fig. 5) and battery 45 via the 1st connector 10 and the 2nd connector 20, from power supply unit 14, be powered.Now, battery 45 is recharged.
The in the situation that of non-confined state, the 2nd control part 21, guidance panel 22, ion generating unit 40 and the 2nd pressure fan 41 are powered from battery 45.Consequently, the longest the continuing of the running of ion generating unit 2 monomers is for example full of electricity, till the time (approximately 8 hours) of discharging completely from battery 45.
The following describes the formation of equipment body 1.
As shown in Figure 1, in the inside of casing 100, be formed with the 1st ventilation road 32 spaced apart from each other and the 1st control room 103.
In the 1st control room 103, be built-in with the 1st control part 11 and power supply unit 14 etc.The 1st control part 11 is control axis of equipment body 1.
The 1st ventilation road 32 is divided into front side ventilation road 32a and rear side ventilation road 32b by the next door 101 along left and right directions.But next door 101 forms openings 102, via this opening 102, ventilate road 32a and rear side ventilation road 32b of front side is communicated with.
On the 1st ventilation road 32, be provided with the 1st suction inlet 33(with reference to Fig. 1, Fig. 3 and Fig. 4) and the 1st blow-off outlet 34(with reference to Fig. 1 and Fig. 4).
The 1st suction inlet 33, at the back part opening of casing 100, is communicated with the outside of equipment body 1 (hereinafter referred to as device external) and rear side ventilation road 32b via the 1st suction inlet 33.
On the periphery top of the 1st suction inlet 33, dispose foul smell sensor 12 and dust sensor 13.
Foul smell sensor 12 and dust sensor 13 are the members for detection of the dustiness of the air of the 1st suction inlet 33 of flowing through.Foul smell sensor 12 uses for example gas sensor of catalytic combustion type to form, and detects the cacodorous fuel gas of tool.Dust sensor 13 uses for example particle sensor of photo-electric to form, and detects the particles such as trickle dust and pollen.In the situation that the amount of foul smell sensor 12 detected fuel gas is many or the quantity of dust sensor 13 detected particles is many, the dustiness of air is high.In the situation that the quantity of the amount of foul smell sensor 12 detected fuel gas and dust sensor 13 detected particles is all few, the dustiness of air is low.
Under " automatically " described later pattern, as shown in Figure 5, foul smell sensor 12 and dust sensor 13 testing result are separately exported to the 1st control part 11 repeatedly with reasonable time interval.
The testing result of the 1st control part 11 based on inputting separately from foul smell sensor 12 and dust sensor 13 carried out the dustiness of computing air, controls the switching of the rotating speed of fan electromotor 311 described later based on operation result.In addition, the 1st control part 11 is exported via the 1st connector 10 and the 2nd connector 20 control signal that represents operation result to the 2nd control part 21 of ion generating unit 2.The represented operation result of the control signal of the 2nd control part 21 based on being transfused under " automatically " pattern is controlled the switching of the rotating speed of fan electromotor 411 described later.
As shown in Figure 1, in the inside of rear side ventilation road 32b, near the 1st suction inlet 33 (in more detail, than the allocation position downstream of foul smell sensor 12 and dust sensor 13, be front side) dispose air cleaning portion 30.Air cleaning portion 30 possesses odor removal filter 301 and dust-collecting filter 302.
Odor removal filter 301 for example makes active carbon disperse to be held in nonwoven to form, adsorb, remove the airborne stink composition through odor removal filter 301.Dust-collecting filter 302 is known HEPA(High Efficiency Particulate Air for example: highly effective air particulate) filter, and the trickle dust through comprising in the air of dust-collecting filter 302 and pollen etc. are caught and collected and remove.Therefore the air that has passed through air cleaning portion 30 is cleaned.
In addition, air cleaning portion 30 can be also following formation: except odor removal filter 301 and dust-collecting filter 302, also possess prefilter, its thick dust that air of the 1st suction inlet 33 of flowing through is comprised is caught and collected and remove.
On the 1st ventilation road 32, dispose the 1st pressure fan 31 midway.
The 1st pressure fan 31 possesses electric fan motor 311(with reference to Fig. 1 and Fig. 5) and impeller 312(with reference to Fig. 1).
Fan electromotor 311 is fixed on next door 101 by not shown support portion.Outstanding 1 output shaft 313 of front side portion from fan electromotor 311.The rotating speed of the fan electromotor 311 of present embodiment can switch to 3 gears (rotating speed R11, rotating speed R12 and rotating speed R13 specifically).Rotating speed R11, rotating speed R12 and rotating speed R13 are for example 500rpm, 800rpm and 1100rpm.
Impeller 312 is fixed on the output shaft 313 of fan electromotor 311 and is configured in ventilation road, front side 32a.Impeller 312 rotates by the driving of fan electromotor 311, by impeller 312, rotates, and carries thus air.The rotating speed higher (or lower) of fan electromotor 311, the air output more (or fewer) of the 1st pressure fan 31.
The 1st blow-off outlet 34 forms at the top plate portion opening of casing 100, via the 1st blow-off outlet 34, device external and ventilation road, front side 32a is communicated with.
In the situation that the 1st pressure fan 31 has carried out air-supply, the circulation of air in Fig. 1 as shown in blank arrow mark A1.And in more detail, from device external via the 1st suction inlet 33 to rear side ventilation road 32b air amount.The air being inhaled into forwards circulates at rear side ventilation road 32b.Now, the air of suction is cleaned through air cleaning portion 30.The air sucking becomes and purifies air.
Purify air and to ventilation road, front side 32a, circulate via opening 102 from rear side ventilation road 32b.To purifying air of ventilation road, front side 32a circulation, at ventilation road, front side 32a, circulate upward, from ventilation road, front side, 32a blows out to device external via the 1st blow-off outlet 34.Now, the blow-off direction purifying air makes progress, but can be also by not shown wind direction board being configured in to the formation that the 1st blow-off outlet 34 limits the blow-off direction purifying air.
When equipment body 1 is equipped with ion generating unit 2, a part for the 1st blow-off outlet 34 is covered by the casing 200 of ion generating unit 2.But casing 200 can not hinder significantly via the 1st blow-off outlet 34 purify air blow out.In addition, casing 200 becomes the shape of the aperture area constriction of the 1st blow-off outlet 34, and the flow velocity that purifies air therefore blowing out via the 1st blow-off outlet 34 improves.In addition, the rigging position of the aperture position of the 1st blow-off outlet 34 and ion generating unit 2 can be also mutually non-interfering position.
The following describes ion generating unit 2.
As shown in Figure 1, in the inside of casing 200, be formed with the 2nd ventilation road 42 spaced apart from each other and the 2nd control room 201.
The 2nd control room 201 is positioned at the top, rear of casing 200, in the 2nd control room 201, is built-in with the 2nd control part 21 and battery 45 etc.The 2nd control part 21 is control axis of ion generating unit 2.
The 2nd ventilation road 42 has: the rear downside ventilation road 421 that is positioned at the rear lower portion of casing 200; Be communicated with, be positioned at the front downside ventilation road 422 of the forward lower part of casing 200 with rear downside ventilation road 421; Be communicated with, be positioned at the front upper side ventilation road 423 on the top, the place ahead of casing 200 with front downside ventilation road 422.
On the 2nd ventilation road 42, be provided with the 2nd suction inlet 43,43(with reference to Fig. 2~Fig. 4) and the 2nd blow-off outlet 44(with reference to Fig. 1~Fig. 4).
As shown in Figure 2,1 of 2 the 2nd suction inlet 43,43 each opening of the left and right sides at casing 200 faces, via the 2nd suction inlet 43,43 by the outside of ion generating unit 2 (outside hereinafter referred to as unit) and 421 connections of rear downside ventilation road.
At each the 2nd suction inlet 43, dispose the thick dust that the air of the 2nd suction inlet 43 of flowing through is comprised and catch the not shown air cleaner of collecting and removing.
As depicted in figs. 1 and 2, on rear downside ventilation road 421, dispose the 2nd pressure fan 41.
The 2nd pressure fan 41 is Sirocco fans, possesses electronic fan electromotor 411(with reference to Fig. 2 and Fig. 5) and 2 impellers 412,412(see figures.1.and.2).
Fan electromotor 411 is fixed on casing 200.Outstanding 2 output shafts 413,413 of left and right sides portion from fan electromotor 411.The rotating speed of the fan electromotor 411 of present embodiment can switch to 3 gears of rotating speed R21, rotating speed R22 and rotating speed R23.Rotating speed R21, rotating speed R22 and rotating speed R23 are for example 450rpm, 750rpm and 1000rpm.
Impeller 412,412 is fixed on the output shaft 413,413 of fan electromotor 411.Impeller 412,412 drivings by fan electromotor 411 and the arrow label orientation that represents to Fig. 1 are rotated.Impeller 412,412 rotations, carry air thus.The rotating speed higher (or lower) of fan electromotor 411, the air output more (or fewer) of the 2nd pressure fan 41.
Wall portion on front downside ventilation road 422 comprises that the curved surface shape for the air on the 2nd ventilation road 42 of flowing through is successfully guided to front upper side ventilation road 423 from rear downside ventilation road 421 guides facial 42a.
On front upper side ventilation road 423, dispose ion generating unit 40.
Ion generating unit 40 is configured to the comparative electrode that possesses not shown ion generating electrodes and configuration relative to ion generating electrodes, by corona discharge, produces cation and anion.The cation and the anion (hereinafter referred to as negative ions) that produce swim in the air on front upper side ventilation road 423 of flowing through.
The 2nd blow-off outlet 44 is in the top plate portion front openings of casing 200, via outside and front upper side ventilation road 423 connections by unit of the 2nd blow-off outlet 44.
The in the situation that of the 2nd pressure fan 41 air-supply, in Fig. 1, Fig. 2 and Fig. 4 as shown in blank arrow mark A2, from outside, unit via the 2nd suction inlet 43,43 downside ventilation road 421 air amounts backward.The air sucking from rear downside ventilation road 421 via front downside ventilation road 422 423 circulations to front upper side ventilation road.To front upper side ventilation road the air of 423 circulations become comprise the ion that produced by ion generating unit 40 containing ionic air.Containing ionic air, from front upper side ventilation road 423, via the 2nd blow-off outlet 44, to outside, unit, blow out.Now, the blow-off direction that contains ionic air makes progress, but can be also by not shown wind direction board being configured in to the formation that the 2nd blow-off outlet 44 limits the blow-off direction purifying air.
Make mushroom, virus and sensibiligen etc. kill or make their deactivations with the negative ions discharging to outside, unit together with ionic air, the material (for example such organic compound of acetaldehyde) that will become the reason of stench decomposes.
The in the situation that of confined state, when the 1st pressure fan 31, ion generating unit 40 and the 2nd pressure fan 41 are all connected, from equipment body 1, blow out and purify air, from ion generating unit 2, blow out containing ionic air.What blow out in addition, purifying air and in the outside of air cleaner 5, naturally mixing as containing ion cleaning air containing ionic air.
In addition, also can configure the 1st blow-off outlet 34 and the 2nd suction inlet 43,43, purifying air of making to blow out from equipment body 1 sucks to ion generating unit 2.In this case, from ion generating unit 2, blow out containing ion cleaning air.
In addition, also can be near the 1st blow-off outlet 34 the configuration ion generating unit different from ion generating unit 40.In this case, from equipment body 1, blow out containing ion cleaning air.
The in the situation that of confined state, at the 1st pressure fan 31, for connecting, when ion generating unit 40 and the 2nd pressure fan 41 are shutoff, from the 1st blow-off outlet 34, blow out and purify air, do not blow out containing ionic air.
The in the situation that of non-confined state, from the 2nd blow-off outlet 44 of the ion generating unit 2 of individual operation, blow out containing ionic air.
In addition can be also that ion generating unit 2 is in the formation of possessing of the 2nd ventilation road 42 air cleaning portion different from air cleaning portion 30 midway.In this case, from the 2nd blow-off outlet 44, blow out containing ion cleaning air.
The following describes guidance panel 22.
Guidance panel 22 is configured in the top plate portion rear side of casing 200.On the other hand, in casing 100, there is no configuration operation panel.Its reason is, ion generating unit 2 individual operations, and equipment body 1 is not individual operation.Guidance panel 22 is used as the guidance panel of air cleaner 5 integral body under confined state, is used as the guidance panel of ion generating unit 2 monomers under non-confined state.
Fig. 6 is the top view that schematically represents the outward appearance of guidance panel 22.
As shown in Figure 5 and Figure 6, in guidance panel 22, be provided with a plurality of action buttons 221~223 and a plurality of display lamp 224~229.
Action button 221~223 is arranged side by side at left and right directions, display lamp 224 be configured in action button 221 near, display lamp 225 be configured in action button 222 near, display lamp 226~229 be configured in respectively action button 223 near.
Display lamp 224~229 is used respectively LED to form.By display lamp 224~229 light/non-lighting separately, user is informed to the information of regulation.
Action button 221~223 is operated by user respectively.
In the situation that operated any in action button 221~223, from guidance panel 22 to the 2nd control part 21 output operation signal corresponding with operated action button 221~223.When having inputted operation signal, the 2nd control part 21 is controlled the action of each portion of ion generating unit 2 according to the operation signal being transfused to.
The in the situation that of confined state, when any the corresponding operation signal with action button 221,223 is transfused to, the 2nd control part 21 is exported via the 1st connector 10 and the 2nd connector 20 the corresponding control signal of the operation signal with being transfused to the 1st control part 11 of equipment body 1.The 1st control part 11 carrys out the action of each portion of control appliance main body 1 according to the control signal being transfused to.
Action button 221 is for switching the running/stop button of operating condition and the running halted state of air cleaner 5 integral body or ion generating unit 2 monomers.
In air cleaner 5 integral body, are runnings halted state in the situation that, in action button 221 during by operation, the 2nd control part 21 is by display lamp 224,225, ion generating unit 40 and the 2nd pressure fan 41(fan electromotor 411 specifically) connect respectively.And the 2nd control part 21 is exported the control signal of action button 221 to the 1st control part 11.
Now, the 1st control part 11 is by the 1st pressure fan 31(fan electromotor 311 specifically) connect, start to accept the testing result from foul smell sensor 12 and 13 outputs of dust sensor.
Above result is that air cleaner 5 integral body are switched to operating condition from running halted state.
In the situation that air cleaner 5 integral body are operating condition, when action button 221 is operated, the 2nd control part 21 turn-offs display lamp 224,225, ion generating unit 40 and the 2nd pressure fan 41 respectively.And the 2nd control part 21 by the control signal of action button 221 to the 1st control part 11 output.
Now, the 1st control part 11 turn-offs fan electromotor 311, stops accepting the testing result from foul smell sensor 12 and 13 outputs of dust sensor.
Above result is that air cleaner 5 integral body are switched to running halted state from operating condition.
In the situation that ion generating unit 2 monomers are running halted state, when action button 221 is operated, the 2nd control part 21 is connected display lamp 224,225, ion generating unit 40 and the 2nd pressure fan 41 respectively.Consequently, ion generating unit 2 monomers switch to operating condition from running halted state.
In the situation that ion generating unit 2 monomers are operating condition, when action button 221 is operated, the 2nd control part 21 turn-offs display lamp 224,225, ion generating unit 40 and the 2nd pressure fan 41 respectively.Consequently, ion generating unit 2 monomers switch to running halted state from operating condition.
Action button 222 be for switch whether carry out the generation of negative ions and the air-supply of air add ion button.
In the situation that air cleaner 5 integral body are operating condition, when action button 222 is operated, the 2nd control part 21 switches to shutoff from connecting respectively by display lamp 225, ion generating unit 40 and the 2nd pressure fan 41, or switches to connection from turn-offing.In the situation that not needing negative ions to discharge, ion generating unit 40 and the 2nd pressure fan 41 are turn-offed, can carry out thus the air cleaning that brought by air cleaning portion 30, reduce the power consumption of air cleaner 5 integral body simultaneously.
The in the situation that of non-confined state, the 2nd control part 21 is ignored the operation of action button 222.
Action button 223 is air quantity switching push buttons.
In the situation that air cleaner 5 integral body are operating condition, whenever action button 223 is during by operation, the 2nd control part 21 by the air quantity pattern of ion generating unit 2 according to " automatically " pattern → " by force " pattern → " in " the order switching of pattern → " quiet " pattern → " automatically " pattern.And the 2nd control part 233 by the control signal of action button 221 to the 1st control part 11 output.
Now, the 1st control part 11 by the air quantity pattern of equipment body 1 according to " automatically " pattern → " by force " pattern → " in " order of pattern → " quiet " pattern → " automatically " pattern switches.
In the situation that ion generating unit 2 monomers are operating condition, whenever action button 223 is during by operation, the 2nd control part 21 by the air quantity pattern of ion generating unit 2 according to " by force " pattern → " in " the order switching of pattern → " quiet " pattern → " by force " pattern.
In addition, ion generating unit 2 monomers also can have " automatically " pattern.In this case, ion generating unit 2 possesses the foul smell sensor different with dust sensor 13 from foul smell sensor 12 and dust sensor, and the 2nd control part 21 need to the testing result based on them carrys out the dustiness of computing air.
Display lamp 226~229 respectively with " automatically " pattern, " by force " pattern, " in " pattern and " quiet " pattern corresponding, wherein, only the lamp corresponding with the pattern of current setting lighted, other lamp is not lighted.Particularly, for example, being set as " in " pattern in the situation that, display lamp 228 is lighted, display lamp 226,227,229 is not lighted.
The 1st control part 11 of " by force " pattern is rotating speed R13 by the speed setting of fan electromotor 311.Similarly, " in " the 1st control part 11 under pattern (or " quiet " pattern) is rotating speed R12(or rotating speed R11 by the speed setting of fan electromotor 311).
The 1st control part 11 under " automatically " pattern is in the situation that the dustiness of air high (or low) is rotating speed R13(or rotating speed R11 by the speed setting of fan electromotor 311), in the situation that being middle degree, the dustiness of air is set as rotating speed R12.That is, the dustiness of air is higher, and the air output of the 1st pressure fan 31 more increases.When the air output of the 1st pressure fan 31 increases, the air of volume is through air cleaning portion 30, and therefore, the efficiency of air cleaner improves.
The 2nd control part 21 under " by force " pattern is rotating speed R23 by the speed setting of fan electromotor 411.Similarly, " in " the 2nd control part 21 under pattern (or " quiet " pattern) is rotating speed R22(or rotating speed R21 by the speed setting of fan electromotor 411).
The 2nd control part 21 under " automatically " pattern, in the situation that the dustiness of air high (or low) is rotating speed R23(or rotating speed R21 by the speed setting of fan electromotor 411), in the situation that being middle degree, the dustiness of air is set as rotating speed R22.That is, the dustiness of air is higher, and the air output of the 2nd pressure fan 41 more increases.When the air output of the 2nd pressure fan 41 increases, negative ions is released efficiently, so the efficiency of air cleaner improves.
As above air quantity pattern and the dustiness of air are applied to the 1st control part 11 and the 2nd control part 21 in advance with the relation of rotating speed respectively.
In addition, can be also the formation that equipment body 1 monomer also can turn round.Now, preferred equipment main body 1 possesses the member suitable with the guidance panel 22 of removing action button 222 and display lamp 225.
As above air cleaner 5 for example can adopt air cleaner 5 configured in one piece in living room, user in living room active stage chien shih air cleaner 5 overall operation, h.d., only takes ion generating unit 2 monomers bedroom and makes its such using method that turns round.Its reason is that it is small-size light-weight that ion generating unit 2 monomers are compared with air cleaner 5 integral body, therefore compares easy carrying with air cleaner 5 integral body.
But existing general air cleaner does not possess ion generating unit 2, it is near the formation of configuration ion generating unit 40 the 1st blow-off outlet 34.According to this, form, if near the wind speed of the air of the 1st blow-off outlet 34 of flowing through is high, negative ions can be discharged efficiently outside equipment.But the pressure loss occurs the air sucking via the 1st suction inlet 33 when through air cleaning portion 30, the wind speed that therefore improves near the air of the 1st blow-off outlet 34 of flowing through is difficult.
On the other hand, the air cleaner 5 of present embodiment does not possess odor removal filter and dust-collecting filter at ion generating unit 2, therefore, can be easy to improve near the wind speed of the air the 2nd blow-off outlet 44 of flowing through.Consequently, negative ions can be discharged to outside, unit efficiently.
Embodiment 2.
Fig. 7 and Fig. 8 are the stereograms of outward appearance that schematically represents the air cleaner 5 of embodiment 2 of the present utility model.Fig. 9 means the block diagram that the major part of the control system of air cleaner 5 forms.Figure 10 is the top view of the outward appearance of the 2nd guidance panel 46 that schematically represents that the ion generating unit 2 of air cleaner 5 possesses.Fig. 7~Figure 10 is corresponding with Fig. 3~Fig. 6 of embodiment 1.
In embodiment 1, the running of the either party in air cleaner 5 integral body and ion generating unit 2 monomers is possible, but in the present embodiment, the running of equipment body 1 monomer is possible.Below explanation and the difference of embodiment 1, encloses same mark to the part corresponding with embodiment 1 in addition and the description thereof will be omitted.
Equipment body 1 possesses the 1st guidance panel 36(with reference to Fig. 7~Fig. 9), ion generating unit 2 replaces the guidance panel 22 of embodiments 1 and possesses the 2nd guidance panel 46(with reference to Fig. 8~Figure 10).
The 1st guidance panel 36 is configured in the top plate portion of the rear side of casing 100.Therefore the 1st guidance panel 36 in the situation that be the situation of confined state, be also that non-confined state all exposes to outside.
Under confined state, the 1st guidance panel 36 is used as the guidance panel of air cleaner 5 integral body.Therefore at the 1st guidance panel 36, be provided with action button 361~363 and a plurality of display lamp 364~369.They are corresponding with action button 221~223 and the display lamp 224~229 of embodiment 1.Under non-confined state, the 1st guidance panel 36 is used as the guidance panel of equipment body 1 monomer.
In any operated situation in action button 361~363, from the 1st guidance panel 36 to the 1st control part 11 output operation signal corresponding with operated action button 361~363.When operation signal is transfused to, the 1st control part 11 carrys out the action of each portion of control appliance main body 1 according to the operation signal being transfused to.
The in the situation that of confined state, when any the corresponding operation signal with action button 361,363 is transfused to, the 1st control part 11 is exported via the 1st connector 10 and the 2nd connector 20 the corresponding control signal of the operation signal with being transfused to the 2nd control part 21 of ion generating unit 2.The 2nd control part 21 is controlled the action of each portion of ion generating unit 2 according to the control signal being transfused to.
The 2nd guidance panel 46 is used as the guidance panel of ion generating unit 2 monomers under non-confined state, but under confined state, is not used as guidance panel.The 2nd guidance panel 46 exposes to outside, unit in the situation that of non-confined state, but hidden by the front face existing between the top plate portion of the front side at casing 100 and the top plate portion of rear side in the situation that of confined state.Therefore the 2nd guidance panel 46 is configured in the rear face of casing 200.
In the 2nd guidance panel 46, be provided with action button 461,463 and display lamp 464,467,468,469.They are corresponding with action button 221,223 and the display lamp 224,227,228,229 of embodiment 1.
In the situation (with reference to the dotted arrow mark shown in Fig. 9) of non-confined state, in any operated situation in action button 461,463, from the 2nd guidance panel 46 to the 2nd control part 21 output operation signal corresponding with operated action button 461,463.When operation signal is transfused to, the 2nd control part 21 is controlled the action of each portion of ion generating unit 2 according to the operation signal being transfused to.
Above air cleaner 5 can turn round with equipment body 1 monomer and ion generating unit 2 monomers respectively by operating the 1st guidance panel 36 and the 2nd guidance panel 46.
And in the situation that using air cleaner 5 integral body, user can only see the 1st guidance panel 36 in the 1st guidance panel 36 and the 2nd guidance panel 46, the 2nd useless guidance panel 46 is hidden.When therefore, user operates, there will not be puzzlement.In addition, the appearance design of air cleaner 5 integral body improves.
Embodiment 3.
Figure 11 and Figure 12 are side cross-sectional, view and the elevational sectional view that schematically represents that the major part of the air cleaner 5 of embodiment 3 of the present utility model forms, corresponding with Fig. 1 and Fig. 2 of embodiment 1.Be that Figure 11 and Figure 12 are all illustrated in the situation that equipment body 1 is equipped with ion generating unit 2.
Figure 13 and Figure 11 are similarly the side cross-sectional, view that schematically represents the major part formation of air cleaner 5, but different from Figure 11, are illustrated in the situation that equipment body 1 does not assemble ion generating unit 2.
In embodiment 1, the 1st ventilation road 32 and the 2nd ventilation road 42 are separate.
And in the present embodiment, be configured to the in the situation that of confined state, a part for the air blowing out via the 1st blow-off outlet 34 from the 1st ventilation road 32 directly flows into the inside on the 2nd ventilation road 42.Therefore as shown in Figure 11 and Figure 13, on the 2nd ventilation road 42, be provided with inflow entrance 47.In addition, between the 2nd pressure fan 41 and inflow entrance 47, dispose adjuster (ventilation adjustment part) 42b.
Below explanation and the difference of embodiment 1, in addition, encloses same mark and omits their explanation the part corresponding with embodiment 1.
Adjuster 42b forms an end and is rotated support freely tabular, at least, the in the situation that of non-confined state, forms a part for the wall portion on the 2nd ventilation road 42.
Inflow entrance 47 is at the front downside ventilation road on the 2nd ventilation road 42 422 openings.On 42, the 2 suction inlet residing rear downside ventilation of the 43,43, the 2nd pressure fan 41 roads 421, the 2nd ventilation road; The residing front downside ventilation of inflow entrance 47 road 422; The residing front upper side ventilation of ion generating unit 40 road 423 and the 2nd blow-off outlet 44 are according to this arranged in order.
Ion generating unit 2 is assemblied in equipment body 1 with inflow entrance 47 towards the mode of a part of opening of the 1st blow-off outlet 34.Now, a part for the 1st blow-off outlet 34 is covered by the casing 200 of ion generating unit 2.
Even if but inflow entrance 47 is at non-confined state or at confined state, in the situation that the 1st pressure fan 31 is not blown, is sealed by the adjuster 42b that becomes lateral attitude shown in Figure 13.Consequently, forbid the circulation via the air of inflow entrance 47.Adjuster 42b under this state and the guiding of embodiment 1 face 42a similarly play a role.
The in the situation that of confined state, air cleaning portion 30, the 1st pressure fan the 31, the 1st ventilation road 32 and ion generating unit 40 play a role.Therefore the 1st pressure fan 31 air-supplies, thus as in Figure 11 and Figure 12 with as shown in blank arrow mark A30, circulation of air.The air sucking via the 1st suction inlet 33 is purified by air cleaning portion 30, via the 1st blow-off outlet 34, blows out and purifies air.
Adjuster 42b is boosted by the part purifying air blowing out from the 1st blow-off outlet 34.Now, adjuster 42b becomes longitudinal attitude to the arrow label orientation rotation shown in Figure 11 centered by an end, so inflow entrance 47 is switched on.Consequently, via a part for the inflow entrance 47 being opened and the 1st blow-off outlet 34, ventilation road, the front side 32a on the front downside ventilation road 422 on the 2nd ventilation road 42 and the 1st ventilation road 32 is communicated with.On the other hand, the remainder via the 1st blow-off outlet 34 is communicated with device external and ventilation road, front side 32a.
The part purifying air blowing out via the 1st blow-off outlet 34 via inflow entrance 47 to the inside on the 2nd ventilation road 42, the inside on downside ventilation road 422 flows into forward in more detail.
What to the inside on the 2nd ventilation road 42, flow into purifies air through front downside ventilation road 422 423 circulations to front upper side ventilation road.To front upper side ventilation road 423 circulations purify air become comprise the ion that produced by ion generating unit 40 containing ion cleaning air.Containing ion cleaning air, from front upper side ventilation road 423, via the 2nd blow-off outlet 44, to outside, unit, blow out.
The remainder purifying air blowing out via the 1st blow-off outlet 34 spreads to device external.
But the adjuster 42b being boosted by the part purifying air blowing out from the 1st blow-off outlet 34, is fixed as the state of longitudinal attitude by the part purifying air further blowing out from the 1st blow-off outlet 34.Now, adjuster 42b not only opens inflow entrance 47, the also blocking-up that is communicated with front downside ventilation road 422 and front upper side ventilation road 423 by rear downside ventilation road 421.
The in the situation that of confined state, during at least the 1 pressure fan 31 air-supplies, the 2nd control part 21 turn-offs the 2nd pressure fan 41.Its reason is even if the 2nd pressure fan 41 is not blown, also can due to the air-supply of the 1st pressure fan 31, blow out containing ion cleaning air, therefore without connecting the 2nd pressure fan 41.And by the 2nd pressure fan 41 air-supplies, make thus adjuster 42b likely invalidly return to the lateral attitude shown in Figure 13 and inflow entrance 47 is sealed.
By adjuster 42b, rear downside ventilation road 421 is blocked with front downside ventilation road 422 and being communicated with of front upper side ventilation road 423, forbid thus the circulation via the air of the 2nd suction inlet 43,43.Therefore, via inflow entrance 47 423 circulations to front upper side ventilation road purify air or containing ion cleaning air also downside ventilation road 421 adverse currents blowing out to outside via the 2nd suction inlet 43,43 backward not.
Afterwards, in the situation that the out-of-blast situation of the 1st pressure fan 31 or become non-confined state from confined state, adjuster 42b due to deadweight centered by an end to the arrow label orientation rotation shown in Figure 13, return to lateral attitude.Now, rear downside ventilation road 421 is communicated with front downside ventilation road 422 and front upper side ventilation road 423, and inflow entrance 47 is closed.And the 2nd pressure fan 41 on air between, adjuster 42b is because the air on downside ventilation road 422 before flowing through is fixed to lateral attitude.
Above result is, ion generating unit 2 monomers as in Figure 13 with as shown in blank arrow mark A31, with ion generating unit 2 monomers of embodiment 1 similarly, can blow out containing ionic air.Wherein, in the situation that the blank arrow mark A31 representing with solid line or two chain-dotted lines in Figure 12 is illustrated in the circulating direction of the air of non-confined state.
Above adjuster 42b plays a role as the switching part in embodiment of the present utility model.
In addition, also can be configured to: air cleaner 5 is the in the situation that of confined state, and the whole direct inside to the 2nd ventilation road 42 of the air blowing out via the 1st blow-off outlet 34 flows into.
In addition, air cleaner 5 is not limited to be boosted due to purifying air of flowing into or because deadweight changes the formation of adjuster 42b attitude.For example, air cleaner 5 can be also according to equipment body 1 mounting or dismounting ion generating unit 2, mechanically changes the formation of adjuster 42b attitude.In addition, air cleaner 5 also can possess and makes adjuster 42b rotate to change the electric motor of the attitude of adjuster 42b.
Even and if can be to open inflow entrance 47 adjuster 42b also not by the formation that is communicated with blocking-up on rear downside ventilation road 421 and front downside ventilation road 422 and front upper side ventilation road 423.But preferably, ion generating unit 2 in this case possesses in addition the 2nd suction inlet 43,43 is opened to the component of the strobe of sealing.Now, side by side seal the 2nd suction inlet 43,43 with opening of inflow entrance 47, side by side open the 2nd suction inlet 43,43 with the sealing of inflow entrance 47.
In addition, air cleaner 5 can be also to have 1 the 2nd suction inlet, and the 2nd suction inlet doubles as the formation of inflow entrance.In this case, without possessing this switching part of adjuster 42b.
In addition, in air cleaner 5, also can replace the guidance panel 22 same with embodiment 1, and possess 1st guidance panel 36 same with embodiment 2 and the 2nd guidance panel 46.
Should think that this time disclosed embodiment is only example in all respects, but not restricted contents.Scope of the present utility model is not the above-mentioned meaning, but comprises the implication that is equal to claims and all changes in claims.
For example, air cleaning portion 30 is not limited to have odor removal filter 301 and dust-collecting filter 302.Particularly, air cleaning portion 30 can be also air by making to suck in water by the formation purifying.In addition, air cleaning portion 30 can be also that the negative ions that produced by ion generating unit carries out forming of decomposition that airborne mould becomes to grade with stink.
The rotating speed of fan electromotor 311 or fan electromotor 411 can be fixed, and can be also to carry out 2 gears or above many gears or the stepless switching of 4 gear.
In addition, as long as there is effect of the present utility model, also can in air cleaner 1, be included in and in embodiment 1~3, there is no disclosed inscape.
description of symbols
1 equipment body
30 air cleaning portions
31 the 1st pressure fans
32 the 1st ventilation roads
33 the 1st suction inlets
34 the 1st blow-off outlets
36 the 1st guidance panels (the 1st operating portion)
2 ion generating units
40 ion generating units
41 the 2nd pressure fans
42 the 2nd ventilation roads
43 the 2nd suction inlets
44 the 2nd blow-off outlets
45 batteries
46 the 2nd guidance panels (the 2nd operating portion)
47 inflow entrances
48 adjusters (switching part)
5 air cleaners

Claims (12)

1. an air cleaner, possesses:
Equipment body, it has the air cleaning portion for purifying air, the 1st pressure fan of carrying air and the 1st ventilation road that air can circulate; And
Ion generating unit, it has the ion generating unit that produces ion, can install and remove in the said equipment main body,
On above-mentioned the 1st ventilation road, be provided with by above-mentioned the 1st pressure fan air-supply from the 1st suction inlet of outside air amount and by the 1st blow-off outlet blowing out to outside the purification of above-mentioned air cleaning portion for the air of suction,
Above-mentioned air cleaner is characterised in that,
Above-mentioned ion generating unit has:
The 2nd pressure fan, it carries air; And
The 2nd ventilation road, it is provided with by the 2nd pressure fan air-supply from the 2nd suction inlet of outside air amount and the 2nd blow-off outlet that the air of suction is blown out to outside together with the ion being produced by above-mentioned ion generating unit,
In the situation that above-mentioned ion generating unit is assemblied in the said equipment main body, from the said equipment main body, to above-mentioned ion generating unit, power,
In the situation that above-mentioned ion generating unit is not assemblied in the said equipment main body, at least above-mentioned ion generating unit, above-mentioned the 2nd pressure fan and above-mentioned the 2nd ventilation road play a role.
2. air cleaner according to claim 1, is characterized in that,
In the situation that above-mentioned ion generating unit is assemblied in the said equipment main body, at least above-mentioned air cleaning portion, above-mentioned the 1st pressure fan, above-mentioned the 1st ventilation road and above-mentioned ion generating unit play a role,
On above-mentioned the 2nd ventilation road, be provided with inflow entrance, in the situation that above-mentioned ion generating unit is assemblied in the said equipment main body, part or all of the air blowing out via above-mentioned the 1st blow-off outlet directly flows into the inside on above-mentioned the 2nd ventilation road from above-mentioned inflow entrance,
To outside, blow out together with the ion being produced by above-mentioned ion generating unit via this inflow entrance leaked-in air.
3. air cleaner according to claim 2, is characterized in that,
To via above-mentioned the 2nd blow-off outlet, to outside, blow out together with the ion being produced by above-mentioned ion generating unit via above-mentioned inflow entrance leaked-in air,
In the situation that above-mentioned ion generating unit is assemblied in the said equipment main body, forbid the circulation via the air of above-mentioned the 2nd suction inlet, in the situation that not assembling, forbid the circulation via the air of above-mentioned inflow entrance.
4. air cleaner according to claim 3, is characterized in that,
On above-mentioned the 2nd ventilation road, above-mentioned the 2nd suction inlet, above-mentioned the 2nd pressure fan, above-mentioned inflow entrance, above-mentioned ion generating unit and above-mentioned the 2nd blow-off outlet be according to this arranged in order,
Between above-mentioned the 2nd pressure fan and above-mentioned inflow entrance, dispose switching part, above-mentioned switching part switches following state exclusively: by dispose above-mentioned the 2nd suction inlet and above-mentioned the 2nd pressure fan upstream side space with dispose above-mentioned inflow entrance, above-mentioned ion generating unit and above-mentioned the 2nd blow-off outlet downstream space be communicated with blocking-up, and open the state of above-mentioned inflow entrance; And seal above-mentioned inflow entrance and make the space of above-mentioned upstream side and the state of the space in above-mentioned downstream connection.
5. according to the air cleaner described in any one in claim 2 to 4, it is characterized in that,
Above-mentioned ion generating unit comes the mode of opening to be assemblied in the said equipment main body with above-mentioned inflow entrance towards above-mentioned the 1st blow-off outlet.
6. according to the air cleaner described in any one in claim 1 to 4, it is characterized in that,
Above-mentioned ion generating unit also has battery, above-mentioned battery, in the situation that being assemblied in the said equipment main body, above-mentioned ion generating unit by being recharged from the power supply of the said equipment main body, in the situation that above-mentioned ion generating unit is assemblied in the said equipment main body, to above-mentioned the 2nd pressure fan and above-mentioned ion generating unit, do not power.
7. air cleaner according to claim 5, is characterized in that,
Above-mentioned ion generating unit also has battery, above-mentioned battery, in the situation that being assemblied in the said equipment main body, above-mentioned ion generating unit by being recharged from the power supply of the said equipment main body, in the situation that above-mentioned ion generating unit is assemblied in the said equipment main body, to above-mentioned the 2nd pressure fan and above-mentioned ion generating unit, do not power.
8. according to the air cleaner described in any one in claim 1 to 4, it is characterized in that,
The said equipment main body has in the situation that make this equipment body and be assemblied in the 1st operating portion that the ion generating unit running of this equipment body operates,
Above-mentioned ion generating unit has in the situation that make not to be assemblied in the 2nd operating portion that the above-mentioned ion generating unit running of the said equipment main body operates, and the 2nd operating portion is to be assemblied in the said equipment main body by the hidden attitude of the said equipment main body.
9. air cleaner according to claim 5, is characterized in that,
The said equipment main body has in the situation that make this equipment body and be assemblied in the 1st operating portion that the ion generating unit running of this equipment body operates,
Above-mentioned ion generating unit has in the situation that make not to be assemblied in the 2nd operating portion that the above-mentioned ion generating unit running of the said equipment main body operates, and the 2nd operating portion is to be assemblied in the said equipment main body by the hidden attitude of the said equipment main body.
10. air cleaner according to claim 6, is characterized in that,
The said equipment main body has in the situation that make this equipment body and be assemblied in the 1st operating portion that the ion generating unit running of this equipment body operates,
Above-mentioned ion generating unit has in the situation that make not to be assemblied in the 2nd operating portion that the above-mentioned ion generating unit running of the said equipment main body operates, and the 2nd operating portion is to be assemblied in the said equipment main body by the hidden attitude of the said equipment main body.
11. air cleaners according to claim 7, is characterized in that,
The said equipment main body has in the situation that make this equipment body and be assemblied in the 1st operating portion that the ion generating unit running of this equipment body operates,
Above-mentioned ion generating unit has in the situation that make not to be assemblied in the 2nd operating portion that the above-mentioned ion generating unit running of the said equipment main body operates, and the 2nd operating portion is to be assemblied in the said equipment main body by the hidden attitude of the said equipment main body.
12. 1 kinds of ion generating units, it has the ion generating unit that produces ion, can install and remove in miscellaneous equipment,
Above-mentioned ion generating unit is characterised in that,
Have: pressure fan, it carries air; And
Ventilation road, it is provided with: by this pressure fan, blows and from the suction inlet of outside air amount and blow-off outlet that the air of suction is blown out to outside together with the ion being produced by above-mentioned ion generating unit,
In the situation that being assemblied in above-mentioned miscellaneous equipment, from above-mentioned miscellaneous equipment, power,
In the situation that not being assemblied in above-mentioned miscellaneous equipment, at least above-mentioned ion generating unit, above-mentioned pressure fan and above-mentioned ventilation road play a role.
CN201290000768.3U 2011-09-08 2012-08-28 Air cleaner and ion generating unit Expired - Fee Related CN203837192U (en)

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
JP2011196255A JP5850677B2 (en) 2011-09-08 2011-09-08 Air purifier and ion generation unit
JP2011-196255 2011-09-08
PCT/JP2012/071631 WO2013035577A1 (en) 2011-09-08 2012-08-28 Air cleaning device and ion generation unit

Publications (1)

Publication Number Publication Date
CN203837192U true CN203837192U (en) 2014-09-17

Family

ID=47832027

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201290000768.3U Expired - Fee Related CN203837192U (en) 2011-09-08 2012-08-28 Air cleaner and ion generating unit

Country Status (3)

Country Link
JP (1) JP5850677B2 (en)
CN (1) CN203837192U (en)
WO (1) WO2013035577A1 (en)

Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP5921988B2 (en) * 2012-08-21 2016-05-24 シャープ株式会社 Charged particle generator and electrical device
RU2672659C2 (en) * 2014-08-13 2018-11-16 Мицубиси Электрик Корпорейшн Air purifier
KR20230071623A (en) * 2021-11-16 2023-05-23 엘지전자 주식회사 Ion generating device and air conditioner comprising it

Family Cites Families (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP3533323B2 (en) * 1998-01-06 2004-05-31 象印マホービン株式会社 Air cleaner
JP3669994B2 (en) * 2003-09-22 2005-07-13 シャープ株式会社 Car air purifier
JP2006116492A (en) * 2004-10-25 2006-05-11 Matsushita Electric Ind Co Ltd Air cleaning apparatus
JP2006313430A (en) * 2005-05-06 2006-11-16 Giga-Byte Technology Co Ltd Negative ion generation device, structure of data processing product having negative ion generation function and method for manufacturing the same
JP2010219008A (en) * 2009-03-19 2010-09-30 Sharp Corp Connector and electric equipment
JP2011094928A (en) * 2009-10-30 2011-05-12 Sharp Corp Ion generating device including humidifier
JP5043159B2 (en) * 2010-07-20 2012-10-10 シャープ株式会社 Ion generator and electrical equipment

Also Published As

Publication number Publication date
WO2013035577A1 (en) 2013-03-14
JP5850677B2 (en) 2016-02-03
JP2013057459A (en) 2013-03-28

Similar Documents

Publication Publication Date Title
CN101500618B (en) Air cleaner
CN101535730B (en) Air purifier
KR100987833B1 (en) Air cleaner
US20050172816A1 (en) Separable air purifying apparatus
CN206387005U (en) Air cleaner
KR20040056154A (en) Air purifier
CN105757795A (en) Air Cleaner And Home Appliance Having Air Processing Unit
JP5954981B2 (en) Dust collector
CN203837192U (en) Air cleaner and ion generating unit
KR20160145405A (en) Baby Carriage with Air Cleaner
TWI486142B (en) Cleaning robots
CN202619573U (en) Dust collector with self-cleaning function
CN100549597C (en) Pickled vegetables refrigerator air purifier
KR200395665Y1 (en) Lamp cover have an air cleaner
JP2007010179A (en) Air cleaner
CN212390493U (en) Air treatment device, air conditioner indoor unit and air conditioner
TWI482607B (en) Cleaning robots
KR100669026B1 (en) Air purifying apparatus
CN100572949C (en) Air purifier
KR100612094B1 (en) Air cleaner
KR100650108B1 (en) Air purifying device with ventilating function
JP6168109B2 (en) Air purifier
CN209473594U (en) A kind of air purifier that can be used as ashtray and use
JP6137799B2 (en) Blower
CN216953411U (en) Indoor air purifying device

Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20140917

Termination date: 20160828