US20160060854A1 - Two-distance touch free automatic type water supply device and method - Google Patents
Two-distance touch free automatic type water supply device and method Download PDFInfo
- Publication number
- US20160060854A1 US20160060854A1 US14/734,560 US201514734560A US2016060854A1 US 20160060854 A1 US20160060854 A1 US 20160060854A1 US 201514734560 A US201514734560 A US 201514734560A US 2016060854 A1 US2016060854 A1 US 2016060854A1
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- United States
- Prior art keywords
- distance
- outlet
- water supply
- sensor
- supply device
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- E—FIXED CONSTRUCTIONS
- E03—WATER SUPPLY; SEWERAGE
- E03C—DOMESTIC PLUMBING INSTALLATIONS FOR FRESH WATER OR WASTE WATER; SINKS
- E03C1/00—Domestic plumbing installations for fresh water or waste water; Sinks
- E03C1/02—Plumbing installations for fresh water
- E03C1/05—Arrangements of devices on wash-basins, baths, sinks, or the like for remote control of taps
- E03C1/055—Electrical control devices, e.g. with push buttons, control panels or the like
- E03C1/057—Electrical control devices, e.g. with push buttons, control panels or the like touchless, i.e. using sensors
Definitions
- the present disclosure relates to a two-distance touch free automatic type water supply device, and more particularly to a two-distance touch free automatic type water supply device whose an electronic control unit includes an only sensor, which can be a long distance mode sensor and a short distance mode sensor simultaneously.
- a common faucet is provided with a rotational switch located thereon for controlling the faucet to supply water, whereby humans can wash their hand.
- a user first applies soap to his hand, and then turns on the rotational switch, whereby the faucet can supply clean water to wash the hand so as to finish the washing step.
- two hands need to take water to wash the surface of the rotational switch sometimes, such that the soap cannot be attached on the rotational switch. But, it is inconvenient and is wasted in the water resource.
- the above-mentioned faucet is a touch type faucet, and thus a touch free automatic type faucet is developed in order to avoid the problem that the touch type faucet is inconvenient and wasted in the water resource.
- the touch free automatic type faucet when a hand of a user is put at a position below an outlet, the touch free automatic type faucet senses an appearance of the hand. Then, the touch free automatic type faucet is turn on, and the water flows through the outlet. When the hand of the user leaves the position below the outlet, the touch free automatic type faucet senses a disappearance of the hand. Then, the touch free automatic type faucet is turn off, and the water cannot flow through the outlet.
- the objective of the present disclosure is to provide a two-distance touch free automatic type water supply device, whose an electronic control unit includes an only sensor, which can be a long distance mode sensor and a short distance mode sensor simultaneously.
- the present disclosure provides a two-distance touch free automatic type water supply device, including: a shell, an electronic control unit and a driving unit.
- the shell includes an inlet, a flow channel and an outlet, wherein the outlet is communicated with the inlet through the flow channel.
- the electronic control unit includes: a sensor adjacent to the outlet for sensing an external object and then generating a sensing signal; and a control circuit electrically connected to the sensor and receiving the sensing signal for generating a control signal.
- An end of the driving unit is disposed in the shell, and the other end of the driving unit is physically connected to the flow channel for automatically controlling whether water of the outlet is supplied according to the control signal.
- the sensing signal When the sensor senses an appearance of an external object at a first distance from the sensor, the sensing signal is an open signal, whereby the water of the outlet is supplied; when the sensor senses a disappearance of the external object at the first distance from the sensor, the sensing signal is a closed signal, whereby the water of the outlet is not supplied; when the sensor senses a first appearance and a first disappearance of the external object at a second distance from the sensor, the sensing signal is an open signal, whereby the water of the outlet is supplied, wherein the first distance is different from the second distance; and when the sensor senses a second appearance and a second disappearance of the external object at the second distance from the sensor, the sensing signal is a closed signal, whereby the water of the outlet is not supplied.
- the electronic control unit includes an only sensor, which can be a long distance mode sensor and a short distance mode sensor simultaneously, wherein a long distance is the first distance, a short distance is the second distance, and the second distance is different from the first distance.
- the electronic control unit doesn't need to include at least two sensors used to be the long distance mode sensor and the short distance mode sensor, whereby the number of elements of the electronic control unit can be decreased, the design of the electronic control unit can be simplified, and further the cost of the two-distance touch free automatic type water supply device can be decreased
- FIG. 1 is a schematic plan view of a two-distance touch free automatic type water supply device according to the first embodiment of the present disclosure, showing that the two-distance touch free automatic type water supply device is installed to a wash basin.
- FIG. 2 is a partially cross-sectional view of a shell of a two-distance touch free automatic type water supply device according to the first embodiment of the present disclosure.
- FIG. 3 is a schematic view showing a long distance mode of a two-distance touch free automatic type water supply method according to an embodiment of the present disclosure.
- FIG. 4 is a schematic view showing a short distance mode of a two-distance touch free automatic type water supply method according to an embodiment of the present disclosure.
- FIG. 5 is a schematic plan view of a two-distance touch free automatic type water supply device according to the second embodiment of the present disclosure, showing that the two-distance touch free automatic type water supply device is installed to a wash basin.
- FIG. 6 is a partially cross-sectional view of a shell of a two-distance touch free automatic type water supply device according to the second embodiment of the present disclosure.
- FIG. 7 is an exploded perspective view of a valve core according to the second embodiment of the present disclosure.
- FIGS. 8 a to 8 c are schematic views showing that a mark of the cold/hot rotary switch in a left direction, a middle direction and a right direction respectively according to the second embodiment of the present disclosure.
- FIG. 9 is a perspective view of a two-distance touch free automatic type water supply device according to the third embodiment of the present disclosure.
- FIG. 10 is a partially cross-sectional view of a shell of a two-distance touch free automatic type water supply device according to the third embodiment of the present disclosure.
- FIG. 11 a schematic view showing that a two-distance touch free automatic type water supply device can be installed at a conventional touch type faucet according to the third embodiment of the present disclosure.
- FIG. 12 is a schematic plan view of a two-distance touch free automatic type water supply device according to the fourth embodiment of the present disclosure, showing that the two-distance touch free automatic type water supply device is installed to a wash basin.
- FIGS. 13 a and 13 b are partially cross-sectional views of a shell of a two-distance touch free automatic type water supply device according to the fourth embodiment of the present disclosure.
- FIG. 14 is an exploded perspective view of a valve core according to the fourth embodiment of the present disclosure.
- FIGS. 15 a to 15 c are schematic views showing that a mark of the automatic/manual mode cold/hot rotary switch in a left direction, a middle direction and a right direction respectively according to the fourth embodiment of the present disclosure.
- FIG. 1 is a schematic plan view of a two-distance touch free automatic type water supply device 100 according to the first embodiment of the present disclosure.
- the two-distance touch free automatic type water supply device 100 is installed to a wash basin.
- FIG. 2 is a partially cross-sectional view of a shell of a two-distance touch free automatic type water supply device 100 according to the first embodiment of the present disclosure.
- the two-distance touch free automatic type water supply device 100 can be a touch free automatic type faucet.
- the two-distance touch free automatic type water supply device 100 includes a shell 110 , an electronic control unit 130 and a driving unit 140 .
- the shell 110 includes an inlet 112 , a flow channel 114 and an outlet 116 , wherein the outlet 116 is communicated with the inlet 112 through the flow channel 114 .
- the electronic control unit 130 includes a sensor 132 and a control circuit 134 .
- the sensor 132 is adjacent to the outlet 116 .
- the sensor 132 is disposed onto the shell 110 (e.g., the sensor 132 is mounted on the shell 110 or embedded into the shell 110 ).
- the sensor 132 is disposed on the control circuit 134 and is exposed out from the shell 110 .
- the sensor 132 is adapted to sense an external object (e.g., a hand) and then to generate a sensing signal.
- the sensor 132 can be an infrared sensor or a microwave sensor.
- the control circuit 134 is disposed in the shell 110 , and is electrically connected to the sensor 132 .
- the control circuit 134 receives the sensing signal, and then generates a control signal.
- the control circuit 134 can include a semiconductor chip (not shown) for receiving the sensing signal, and then generating the control signal.
- an end of the driving unit 140 is disposed in the shell 110 , and the other end of the driving unit 140 is physically connected to the flow channel 114 for automatically controlling whether the water of the outlet 116 is supplied according to the control signal.
- the driving unit 140 can be a solenoid valve.
- An electrical cord (not shown) passes through the water basin.
- a power source e.g., a dry battery (not shown), is disposed below the shell 110 for providing electrical power to the electronic control circuit 130 and the driving unit 140 through the electric cord.
- FIG. 3 it depicts a long distance mode of a two-distance touch free automatic type water supply method according to an embodiment of the present disclosure.
- the sensing signal is an open signal whereby the water of the outlet 116 is supplied; and when the sensor 132 senses a disappearance of the external object at the first distance D 1 from the sensor 132 , the sensing signal is a closed signal, whereby the water of the outlet 116 is not supplied.
- the first distance D 1 can be set from 10 to 15 centimeters.
- the first distance D 1 can be set from 12 to 15 centimeters.
- the long distance mode can provides a suitable quantity of water for washing the hand, but the external object (e.g., the hand) needs to appear at the position being far slightly from the outlet 116 all the time.
- the sensor 132 senses an appearance of the hand, and the sensing signal is an open signal.
- the control circuit 134 receives the sensing signal, and then generates a control signal.
- the driving unit 140 opens the outlet 116 according to the control signal, and the water flows through the outlet 116 .
- the sensor 132 senses a disappearance of the hand, and the sensing signal is a closed signal.
- the control circuit 134 receives the sensing signal, and then generates a control signal. Then, the driving unit 140 closes the outlet 116 according to the control signal, and the water doesn't flow through the outlet 116 .
- FIG. 4 it depicts a short distance mode of a two-distance touch free automatic type water supply method according to an embodiment of the present disclosure.
- the sensing signal is an open signal, whereby the water of the outlet 116 is supplied; and when the sensor 132 senses a second appearance and a second disappearance of the external object at the second distance D 2 from the sensor 132 , the sensing signal is a closed signal, whereby the water of the outlet 116 is not supplied.
- the second distance D 2 can be set from 2 to 8 centimeters.
- the second distance D 2 can be set from 2 to 3 centimeters.
- the short distance mode can continuously supply the water for providing a great quantity of water, but the external object (e.g., the hand) doesn't need to appear at the position being near slightly from the outlet 116 all the time.
- the sensor 132 senses the first appearance and the first disappearance of the hand, and the sensing signal is an open signal.
- the control circuit 134 receives the sensing signal, and then generates a control signal. Then, the driving unit 140 opens the outlet 116 according to the control signal, and the water continuously flows through the outlet 116 .
- the sensor 132 senses the second appearance and the second disappearance of the hand, and the sensing signal is a closed signal.
- the control circuit 134 receives the sensing signal, and then generates a control signal. Then, the driving unit 140 closes the outlet 116 according to the control signal, and the water doesn't flow through the outlet 116 .
- the above-mentioned corresponding steps of the long distance mode and the short distance mode of the two-distance touch free automatic type water supply method of the present disclosure are not desired to limit the present disclosure.
- the corresponding steps of the long distance mode and the short distance mode can be interchanged to each other.
- the sensing signal when the sensor 132 senses an appearance of an external object at the second distance D 2 from the sensor 132 , the sensing signal is an open signal so as to switch on the water supply of the outlet 116 ; and when the sensor 132 senses a disappearance of the external object at the second distance D 2 from the sensor 132 , the sensing signal is a closed signal so as to switch off the water supply of the outlet 116 .
- the second distance D 2 can be set from 2 to 8 centimeters.
- the sensing signal is an open signal so as to switch on the water supply of the outlet 116 ; and when the sensor 132 senses a second appearance and a second disappearance of the external object at the first distance D 1 from the sensor 132 , the sensing signal is a closed signal so as to switch off the water supply of the outlet 116 .
- the first distance D 1 can be set from 10 to 15 centimeters
- the electronic control unit includes an only sensor, which can be a long distance mode sensor and a short distance mode sensor simultaneously, wherein a long distance is the first distance, a short distance is the second distance, and the second distance is different from the first distance.
- the electronic control unit doesn't need to include at least two sensors used to be the long distance mode sensor and the short distance mode sensor, whereby the number of elements of the electronic control unit can be decreased, the design of the electronic control unit can be simplified, and further the cost of the two-distance touch free automatic type water supply device can be decreased.
- FIG. 5 is a schematic plan view of a two-distance touch free automatic type water supply device 200 according to the second embodiment of the present disclosure.
- the two-distance touch free automatic type water supply device 200 is installed to a wash basin.
- FIG. 6 is a partially cross-sectional view of a shell of a two-distance touch free automatic type water supply device 200 according to the second embodiment of the present disclosure.
- the two-distance touch free automatic type water supply device 200 can be a touch free automatic type faucet for mixing cold water and hot water.
- the two-distance touch free automatic type water supply device 200 includes a shell 210 , an electronic control unit 230 and a driving unit 240 .
- the electronic control unit 230 includes a sensor 232 and a control circuit 234 .
- the shell 210 includes an inlet 212 , a flow channel 214 and an outlet 216 , wherein the outlet 216 is communicated with the inlet 212 through the flow channel 214 .
- the inlet 212 includes a cold water pipe 222 and a hot water pipe 224 .
- the two-distance touch free automatic type water supply device 200 in the second embodiment is similar to the two-distance touch free automatic type water supply device 100 in the first embodiment, and the similar elements have been designated by similar reference numbers.
- the difference between the two-distance touch free automatic type water supply devices 200 , 100 in the second and first embodiments is that: the two-distance touch free automatic type water supply device 200 further includes a cold/hot rotary switch 250 and a valve core 260 , as shown in FIG. 6 .
- the cold/hot rotary switch 250 is adapted to set whether the water supply of the outlet 216 is hot water, warm water or cold water.
- An end of the valve core 260 is physically connected to the cold/hot rotary switch 250 , and the other end of the valve core 260 is physically connected to the inlet 212 for controlling a mixture ratio of cold water to hot water of the inlet 212 .
- the valve core 260 includes a control rod 262 and a throttling plate 264 .
- One end of the control rod 262 is mechanically connected to the cold/hot rotary switch 250 .
- the throttling plate 264 is physically connected to the other end of the control rod 262 , and includes two through apertures 266 , which are corresponding to the cold water pipe 222 and the hot water pipe 224 of the inlet 212 respectively, whereby when the cold/hot rotary switch 250 drives the control rod 262 and further rotates the throttling plate 264 , an overlapping area between one of the two through apertures 266 and the cold water pipe 222 and an overlapping area between the other one of the two through apertures 266 and the hot water pipe 224 can be adjusted.
- a lower portion of the control rod 262 includes a chamber 267 , which has a side aperture 268 .
- the side apertures 268 is overlapped with the flow channel 214 correspondingly.
- the long distance mode of the two-distance touch free automatic type water supply method of the present disclosure can provides a suitable quantity of hot water, warm water or cold water for washing the hand, but the hand needs to appear at the position being far slightly from the outlet 216 all the time.
- the short distance mode of the two-distance touch free automatic type water supply method of the present disclosure can continuously supply the water for providing a great quantity of hot water, warm water or cold water, but the hand doesn't need to appear at the position being near slightly from the outlet 216 all the time.
- FIG. 9 is a perspective view of a two-distance touch free automatic type water supply device 300 according to the third embodiment of the present disclosure.
- FIG. 10 is a partially cross-sectional view of a shell 310 of a two-distance touch free automatic type water supply device 300 according to the third embodiment of the present disclosure.
- the two-distance touch free automatic type water supply device 300 includes a shell 310 , an electronic control unit 330 and a driving unit 340 .
- the electronic control unit 330 includes a sensor 332 and a control circuit 334 .
- the shell 310 includes an inlet 312 , a flow channel 314 and an outlet 316 , wherein the outlet 316 is communicated with the inlet 312 through the flow channel 314 .
- the two-distance touch free automatic type water supply device 300 in the third embodiment is similar to the two-distance touch free automatic type water supply device 100 in the first embodiment, and the similar elements have been designated by similar reference numbers.
- the difference between the two-distance touch free automatic type water supply devices 300 , 100 in the third and first embodiments is that: the two-distance touch free automatic type water supply device 300 can be installed at a conventional touch type faucet 302 , shown in FIG. 11 .
- the inlet 312 of the two-distance touch free automatic type water supply device 300 is communicated with an outlet 304 of the conventional touch type faucet 302 .
- the long distance mode of the two-distance touch free automatic type water supply method of the present disclosure can provides a suitable quantity of water for washing the hand, but the hand needs to appear at the position being far slightly from the outlet 316 all the time.
- the short distance mode of the two-distance touch free automatic type water supply method of the present disclosure can continuously supply the water for providing a great quantity of water, but the hand doesn't need to appear at the position being near slightly from the outlet 316 all the time.
- FIG. 12 is a schematic plan view of a two-distance touch free automatic type water supply device 400 according to the fourth embodiment of the present disclosure.
- the two-distance touch free automatic type water supply device 400 is installed to a wash basin.
- FIGS. 13 a and 13 b are partially cross-sectional views of a shell of a two-distance touch free automatic type water supply device according to the fourth embodiment of the present disclosure.
- the two-distance touch free automatic type water supply device 400 can be a touch free automatic type faucet for mixing cold water and hot water in an automatic/manual mode. Referring to FIGS.
- the two-distance touch free automatic type water supply device 400 includes a shell 410 , an electronic control unit 430 and a driving unit 440 .
- the electronic control unit 430 includes a sensor 432 and a control circuit 434 .
- the shell 410 includes an inlet 412 , two flow channels 414 a, 414 b and an outlet 416 , wherein the outlet 416 is communicated with the inlet 412 through the flow channel 414 a or the flow channel 414 b.
- the inlet 412 includes a cold water pipe 422 and a hot water pipe 424 .
- the two-distance touch free automatic type water supply device 400 in the fourth embodiment is similar to the two-distance touch free automatic type water supply device 100 in the first embodiment, and the similar elements have been designated by similar reference numbers.
- the difference between the two-distance touch free automatic type water supply devices 400 , 100 in the fourth and first embodiments is that: the two-distance touch free automatic type water supply device 400 further includes an automatic/manual mode cold/hot rotary switch 450 and a valve core 460 , as shown in FIGS. 13 a and 13 b .
- the automatic/manual mode cold/hot rotary switch 450 is adapted to set whether the water supply of the outlet 416 is hot water, warm water or cold water in an automatic mode, the water supply of the outlet is hot water, warm water or cold water in a manual mode, or the water supply of the outlet is in a stop mode.
- An end of the valve core 460 is physically connected to the automatic/manual mode cold/hot rotary switch 450 , and the other end of the valve core 460 is physically connected to the inlet 412 for controlling a mixture ratio of cold water to hot water of the inlet 412 .
- the valve core 460 includes a control rod 462 and a throttling plate 464 .
- One end of the control rod 462 is mechanically connected to the automatic/manual mode cold/hot rotary switch 450 .
- the throttling plate 464 is physically connected to the other end of the control rod 462 , and includes two first and two second through apertures 466 a, 466 b, wherein the two first through apertures 466 a or the two second through apertures 466 b are corresponding to the cold water pipe 422 and the hot water pipe 424 of the inlet 412 respectively, whereby when the automatic/manual mode cold/hot rotary switch 450 drives the control rod 462 and further rotates the throttling plate 464 , an overlapping area between one of the two first through apertures 466 a and the cold water pipe 422 and an overlapping area between the other one of the two first through apertures 466 a and the hot water pipe 424 can be adjusted in the automatic mode; or, an overlapping area between one of the two second through apertures 466 b and the cold water pipe 422 and an overlapping area between the other one of the two second through apertures 466 b and the hot water pipe 424 can be adjusted in the manual mode.
- a lower portion of the control rod 462 includes a chamber 467 , which has a side aperture 468 .
- the side apertures 468 is overlapped with the flow channel 414 a correspondingly, too, shown in FIG. 13 a .
- the water flows through the inlet 412 , the valve core 460 , the flow channel 414 a, the driving unit 440 and the outlet 416 in order.
- the side apertures 468 is overlapped with the flow channel 414 b correspondingly, too, shown in FIG. 13 b .
- the water flows through the inlet 412 , the valve core 460 , the flow channel 414 b and the outlet 416 in order.
- the side apertures 468 is not overlapped with the flow channel 414 a or the flow channel 414 b correspondingly, either (not shown).
- the water supply of the outlet 416 can be set to the hot water (H), the warm water (W) or the cold water (C) in the automatic mode (A mode).
- the long distance mode of the two-distance touch free automatic type water supply method of the present disclosure can provides a suitable quantity of hot water, warm water or cold water for washing the hand, but the hand needs to appear at the position being far slightly from the outlet 416 all the time.
- the short distance mode of the two-distance touch free automatic type water supply method of the present disclosure can continuously supply the water for providing a great quantity of hot water, warm water or cold water, but the hand doesn't need to appear at the position being near slightly from the outlet 416 all the time.
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- Life Sciences & Earth Sciences (AREA)
- Engineering & Computer Science (AREA)
- Hydrology & Water Resources (AREA)
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- Water Supply & Treatment (AREA)
- Domestic Plumbing Installations (AREA)
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
TW103129835 | 2014-08-29 | ||
TW103129835A TWI553251B (zh) | 2014-08-29 | 2014-08-29 | Two - stage Induction Water Supply Device and Method |
Publications (1)
Publication Number | Publication Date |
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US20160060854A1 true US20160060854A1 (en) | 2016-03-03 |
Family
ID=53969115
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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US14/734,560 Abandoned US20160060854A1 (en) | 2014-08-29 | 2015-06-09 | Two-distance touch free automatic type water supply device and method |
Country Status (5)
Country | Link |
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US (1) | US20160060854A1 (zh) |
EP (1) | EP2990548A1 (zh) |
JP (1) | JP2016050478A (zh) |
AU (1) | AU2015205958A1 (zh) |
TW (1) | TWI553251B (zh) |
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US20170350105A1 (en) * | 2016-06-03 | 2017-12-07 | Maax Bath Inc. | Electronic faucet |
US20180148912A1 (en) * | 2015-04-21 | 2018-05-31 | Lg Electronics Inc. | Smart water supply valve system and method for controlling same |
Family Cites Families (17)
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JPH0744534U (ja) * | 1993-12-29 | 1995-11-21 | 株式会社ネックス | 自動水栓 |
US5868311A (en) * | 1997-09-03 | 1999-02-09 | Cretu-Petra; Eugen | Water faucet with touchless controls |
FI102034B (fi) * | 1997-03-14 | 1998-10-15 | Oras Oy | Suihkujärjestely |
ITTO980071A1 (it) * | 1998-01-28 | 1999-07-28 | Gevipi Ag | Coppia di piastrine in materiale duro, per un rubinetto miscelatore pr ogressivo. |
TWM247743U (en) * | 2003-10-07 | 2004-10-21 | Huan-Chang Fan | Automatic detecting and water supply apparatus |
US6962168B2 (en) * | 2004-01-14 | 2005-11-08 | Masco Corporation Of Indiana | Capacitive touch on/off control for an automatic residential faucet |
US7641173B2 (en) * | 2006-01-23 | 2010-01-05 | Matthew Philip Goodman | Faucet with automatic temperature control and method |
GB2460034B (en) * | 2008-05-12 | 2012-03-28 | Pegler Ltd | Sensor controlled water outlets |
TWM402960U (en) * | 2010-09-16 | 2011-05-01 | Qi-Xuan Bai | Integrated multi-functional faucet sensor |
JP5818223B2 (ja) * | 2010-12-28 | 2015-11-18 | Toto株式会社 | 給水装置 |
TWM432731U (en) * | 2012-02-24 | 2012-07-01 | Chang Yi Shin Enterprise Co Ltd | Infrared inductance faucet |
TWM431250U (en) * | 2012-02-29 | 2012-06-11 | Univ Southern Taiwan | Automatic water yield control faucet |
CN202756739U (zh) * | 2012-05-17 | 2013-02-27 | 钟国强 | 一种家庭适用的多功能感应水龙头 |
JP6293405B2 (ja) * | 2012-07-23 | 2018-03-14 | 株式会社Lixil | シングルレバー混合水栓 |
TWM452256U (zh) * | 2012-10-26 | 2013-05-01 | Tien-Ho Chung | 兩進口一出口的流體控制裝置 |
CN105202246A (zh) * | 2014-02-12 | 2015-12-30 | 庄景阳 | 一种感应旋转水龙头 |
TWM481249U (zh) * | 2014-02-25 | 2014-07-01 | Tien-Ho Chung | 感應式沖水裝置 |
-
2014
- 2014-08-29 TW TW103129835A patent/TWI553251B/zh not_active IP Right Cessation
-
2015
- 2015-06-09 US US14/734,560 patent/US20160060854A1/en not_active Abandoned
- 2015-07-25 AU AU2015205958A patent/AU2015205958A1/en not_active Abandoned
- 2015-07-30 EP EP15179185.2A patent/EP2990548A1/en not_active Withdrawn
- 2015-08-06 JP JP2015156025A patent/JP2016050478A/ja active Pending
Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US20180148912A1 (en) * | 2015-04-21 | 2018-05-31 | Lg Electronics Inc. | Smart water supply valve system and method for controlling same |
US10233621B2 (en) * | 2015-04-21 | 2019-03-19 | Lg Electronics Inc. | Smart water supply valve system and method for controlling same |
US20170350105A1 (en) * | 2016-06-03 | 2017-12-07 | Maax Bath Inc. | Electronic faucet |
US10385555B2 (en) * | 2016-06-03 | 2019-08-20 | Maax Bath Inc. | Electronic faucet |
Also Published As
Publication number | Publication date |
---|---|
AU2015205958A1 (en) | 2016-03-17 |
EP2990548A1 (en) | 2016-03-02 |
TWI553251B (zh) | 2016-10-11 |
JP2016050478A (ja) | 2016-04-11 |
TW201608158A (zh) | 2016-03-01 |
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