Bathroom faucet device

The bathroom faucet device addresses incomplete drainage and user wetness issues by providing selective hot water preparation modes through internal and external controls, ensuring efficient and user-friendly operation.

JP2025137167APending Publication Date: 2025-09-19TOTO LTD
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Patent Information

Application Number
JP2024036217
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Filing Date
2024-03-08
Publication Date
2025-09-19

AI Technical Summary

Technical Problem

Conventional bathroom faucet devices face issues with incomplete drainage of water near the water discharge/stop switch unit during hot water preparation, leading to potential user wetness from discharged hot water, and the need for flexible usage scenarios based on user situation.

Method used

A bathroom faucet device with a drainage channel and control system that allows selective operation modes (first and second hot water preparation modes) via internal and external controls, ensuring complete drainage and preventing user wetness by controlling water discharge and drainage paths.

Benefits of technology

Enables user-friendly hot water preparation by preventing wetness and efficient drainage based on user location, with customizable operation settings and notification of completion.

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Abstract

To provide a bathroom faucet device capable of performing a hot water preparation mode selectively according to the state of a user inside and outside a bathroom when performing the hot water preparation mode.SOLUTION: A bathroom faucet device 1 includes a faucet body 6, water discharge parts 10, 12, 14, and 16, and a first operation part 18 and a second operation part 20. The faucet body includes a hot and cold water mixing part 40, a discharged water switching part 60, a drain channel 62 communicated with the outside of the faucet body for discharging water inside the bathroom B, a water discharge switching valve 64, and a control part 68 having a hot water preparation mode for controlling the water discharge switching valve and the discharged water switching part by a directive from the operation parts 18 and 20, and controlling discharge of hot water from the drain channel and the water discharge parts. The hot water preparation mode includes a first hot water preparation mode M1 for controlling discharge of hot water from the drain channel and a second hot water preparation mode M2 for controlling discharge of hot water from the water discharge parts. By the operation of the first operation part or the second operation part, either the first hot water preparation mode M1 or the second hot water preparation mode M2 is performed.SELECTED DRAWING: Figure 2
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Description

[Technical Field]

[0001] The present invention relates to a bathroom faucet device, and more particularly to a bathroom faucet device that can drain remaining water upstream before hot or cold water is discharged from the water discharge section. [Background technology]

[0002] Conventionally, as described in Patent Document 1, for example, bathroom faucet devices have been known that, when hot water is discharged from the discharge part of a faucet or shower head, perform a so-called "hot water preparation" by discharging any hot water remaining in the flow path within the faucet body in advance so as to prevent cold water from being discharged when the water starts to be discharged, thereby shortening the waiting time until the hot water is actually discharged. In such conventional bathroom faucet devices, a drainage device is provided downstream of the flow rate adjustment unit and upstream of the water discharge unit, and this drainage device drains and drains the hot water in the flow path downstream of the flow rate adjustment unit before hot water is discharged from the water discharge unit. [Prior art documents] [Patent documents]

[0003] [Patent Document 1] Japanese Patent Application Laid-Open No. 2017-48983 Summary of the Invention [Problem to be solved by the invention]

[0004] However, in the conventional bathroom faucet device described above, if a water discharge / stop switch unit is provided between the flow rate adjustment unit and the water discharge unit to switch the water discharge unit between a water discharge state or a water stop state, there is a problem in that when preparing hot water, the water near the water discharge / stop switch unit may not be able to completely drain out of the drainage channel of the drainage device. Furthermore, if hot water is discharged from both the drainage channel upstream of the water discharge / stop switching section and the water discharge section downstream in order to prepare hot water more effectively, the water discharge section will also be used as a drainage section, which poses the problem that, depending on the usage conditions, the user may get wet from the hot water discharged from the water discharge section. Therefore, in recent years, there has been a demand for a way to use the water discharge section as a drain section depending on the user's situation inside or outside the bathroom when preparing hot water.

[0005] Therefore, the present invention has been made to solve the problems of the conventional technology mentioned above and the issues that have been required in recent years, and aims to provide a bathroom faucet device that can be used in a variety of ways depending on the user's situation inside or outside the bathroom when executing the hot water preparation mode. [Means for solving the problem]

[0006] In order to solve the above-mentioned problems, the present invention provides a bathroom faucet device, which comprises a faucet body that is installed in the bathroom and receives hot water and cold water from a hot water supply source and a cold water supply source, a water discharge section that is installed downstream of the faucet body and discharges hot water, cold water, or a mixture of hot and cold water supplied from the faucet body, and an operating section that is operated by a user, wherein the faucet body comprises a hot and cold water mixing section that mixes the hot water and cold water, a water discharge / stop switching section that switches the water discharge section between a water discharge state and a water stop state, a drainage channel that is connected to the outside of the faucet body and drains water into the bathroom, a drainage switching valve that switches the drainage channel on and off, and a control section that controls the operation section. and a control unit having a hot water preparation mode that controls the drain switching valve and the discharge stop switching unit by command and controls the drainage of hot water from the drain channel and the discharge unit, wherein the operating unit has a first operating unit installed inside the bathroom and a second operating unit installed outside the bathroom, and the hot water preparation mode has a first hot water preparation mode that controls the drainage of hot water from the drain channel and a second hot water preparation mode that controls the drainage of hot water from the discharge unit, and either the first hot water preparation mode or the second hot water preparation mode is executed by operating the first operating unit or the second operating unit. In the present invention configured in this manner, when executing the hot water preparation mode, operation can be performed by selectively using the first operating unit inside the bathroom and operation by the second operating unit outside the bathroom, depending on the user's situation inside or outside the bathroom. Therefore, when the hot water preparation mode is executed, it is possible to prevent a user in the bathroom from getting wet from the hot water discharged from the water discharge portion.

[0007] In the present invention, preferably, the first hot water preparation mode is executed by operating the first operating unit, and the drain switching valve opens the drain path and the discharge stop switching unit maintains the discharge unit in the water stop state. In the present invention configured in this manner, the first hot water preparation mode is executed by operating the first operating unit, the drain switching valve opens the drain channel, and the water discharge / stop switching unit maintains the water discharge unit in a water-stopped state.As a result, for example, a user in the bathroom can execute the first hot water preparation mode by operating the first operating unit to drain hot water from the drain channel into the bathroom, while the water discharge / stop switching unit maintains the water discharge unit in a water-stopped state, thereby avoiding the risk of the user getting wet by water discharged from the water discharge unit, making it easy to use.

[0008] In the present invention, it is preferable that each of the first hot water preparation mode and the second hot water preparation mode can be set in advance before execution as to whether it is executed by operating either the first operating unit or the second operating unit. In the present invention configured in this manner, it is possible to pre-set whether the two hot water preparation modes, the first hot water preparation mode and the second hot water preparation mode, will be executed by operating either the first operating unit or the second operating unit, making it easy to use.

[0009] In the present invention, preferably, the water discharge section includes a plurality of water discharge sections, each of which is capable of discharging hot water into the bathroom when the second hot water preparation mode is executed. In the present invention configured in this manner, the water discharge section has multiple water discharge sections, and each of these multiple water discharge sections can discharge hot water into the bathroom when the second hot water preparation mode is executed, so that water can be effectively drained from the multiple water discharge sections.

[0010] In the present invention, preferably, the faucet body further includes a temperature sensor that detects the temperature of the hot and cold water mixed in the hot and cold water mixing section, and the multiple water outlets include a first water outlet and a second water outlet, and when the second hot water preparation mode is executed, the first water outlet drains the hot and cold water until the temperature of the hot and cold water detected by the temperature sensor reaches a predetermined temperature, and after the temperature of the hot and cold water detected by the temperature sensor reaches the predetermined temperature and the hot and cold water has been discharged from the first water outlet for a predetermined period of time, the second water outlet begins to drain the hot and cold water. In the present invention configured in this manner, when the second hot water preparation mode is executed, hot water is drained from the first water discharge section until the temperature detected by the temperature sensor that detects the temperature of the hot water mixed in the hot water mixing section reaches a predetermined temperature, and after the temperature of the hot water detected by the temperature sensor reaches the predetermined temperature and hot water is continued to be discharged from the first water discharge section for a predetermined period of time, hot water begins to be drained from the second water discharge section.By this means, even when hot water is discharged from multiple water discharge sections, hot water is only discharged from the first water discharge section until the temperature of the hot water reaches the predetermined temperature, it is possible to prevent the user from getting wet from drainage from multiple water discharge sections.

[0011] In the present invention, preferably, the first flow rate at which the first water discharge section discharges water is set to be greater than the second flow rate at which the second water discharge section discharges water, and in the second hot water preparation mode, the drainage of hot water from the first water discharge section is performed with priority over the drainage of hot water from the second water discharge section. In the present invention configured in this manner, when the second hot water preparation mode is executed, the first flow rate at which the first water discharge section discharges water is set to be greater than the second flow rate at which the second water discharge section discharges water, and in the second hot water preparation mode, the drainage of hot water from the first water discharge section is carried out with priority over the drainage of hot water from the second water discharge section, thereby allowing water to be effectively drained from multiple water discharge sections and hot water preparation to be completed quickly.

[0012] In the present invention, preferably, when a water discharge operation is performed by the first operating portion while the hot water preparation mode is being executed, the control portion stops the hot water preparation mode. In the present invention configured in this manner, the control unit can stop the hot water preparation mode if the first operating unit performs a water discharge operation while the hot water preparation mode is in progress.Therefore, by performing a water discharge operation with the first operating unit depending on the usage situation, water discharge can be started even if hot water preparation is not complete, making it easy to use.

[0013] In the present invention, the second operating section preferably includes a notification section that notifies completion of the hot water preparation mode. In the present invention configured in this manner, the second operating unit is equipped with an alarm unit that notifies the user of the completion of the hot water preparation mode, so that the execution status of the hot water preparation mode can be grasped from outside the bathroom using the alarm unit of the second operating unit, making it easy to use. [Effects of the Invention]

[0014] According to the bathroom faucet device of the present invention, when executing the hot water preparation mode, it can be selectively executed depending on the situation of the user, whether inside or outside the bathroom. [Brief explanation of the drawings]

[0015] [Figure 1] 1 is a schematic diagram showing an entire hot water supply system including a bathroom faucet device according to one embodiment of the present invention. [Figure 2] 1 is a system configuration diagram of a bathroom faucet device according to one embodiment of the present invention. [Figure 3] 1 is a partial side cross-sectional view of a bathroom faucet device according to one embodiment of the present invention. [Figure 4A] 1 is a front view of a bathroom remote control for a bathroom faucet device according to an embodiment of the present invention, showing the state before the hot water preparation mode is executed. [Figure 4B] 1 is a front view of a bathroom remote control for a bathroom faucet device according to one embodiment of the present invention, showing the state in which a hot water preparation mode is being executed. [Figure 5] 10 is a flowchart of a normal hot water preparation process (first hot water preparation mode) in the hot water preparation mode of a bathroom faucet device according to one embodiment of the present invention. [Figure 6] 10 is a flowchart of the hot water preparation process (second hot water preparation mode) from the overhead shower spout and the overhead pillar spout in the hot water preparation mode of the bathroom faucet device according to one embodiment of the present invention. [Figure 7] 1 is a schematic diagram showing a state in which hot water preparation processing (second hot water preparation mode) is being performed from the overhead shower spout and overhead pillar spout in the hot water preparation mode of a bathroom faucet device according to one embodiment of the present invention. FIG. DETAILED DESCRIPTION OF THE INVENTION

[0016] Hereinafter, a bathroom faucet device according to one embodiment of the present invention will be described with reference to the accompanying drawings. First, FIG. 1 is a schematic diagram showing the entire hot water supply system including a bathroom faucet device according to this embodiment, and FIG. 2 is a system configuration diagram of the bathroom faucet device according to this embodiment. As shown in Figures 1 and 2, a hot water supply system S including a bathroom faucet device 1 according to this embodiment has a water supply source 2 such as a water supply system and a hot water supply source (water heater 4) installed outdoors O. Next, the bathroom faucet device 1 according to this embodiment includes a faucet body 6 installed in the bathroom B. Furthermore, the faucet body 6, the various components of which will be described later, is designed to supply cold water and hot water from the water supply source 2 and the hot water supply source (water heater 4), respectively, and is positioned below the counter C1 attached to the wall W in the bathroom B. The faucet device 1 also has a water discharge section 8 provided on the downstream side (secondary side) of the faucet body 6. This water discharge section 8 has multiple water discharge sections 10, 12, 14, and 16 (hand shower water discharge section 10, faucet water discharge section 12, overhead shower water discharge section 14, and overhead pillar water discharge section 16). Each of the water discharge sections 10, 12, 14, and 16 is capable of discharging hot water, cold water, or a mixture of hot and cold water supplied from the faucet body 6 on the upstream side (primary side).

[0017] Here, the hand shower water spouting portion 10 is equipped with a shower head 10a having a different form from the overhead shower water spouting portion 14 and the overhead pillar water spouting portion 16. On the other hand, the overhead shower spout 14 and the overhead pillar spout 16 are equipped with a common, generally circular shower head (overhead shower head OH) that is installed so as to protrude downward from the ceiling surface in bathroom B. Moreover, the water discharge form of the overhead shower water discharger 14 is a spray form in which water is discharged from a plurality of spray holes 14a. In contrast, the water discharge pattern of the overhead pillar water discharge section 16 is such that water is discharged from a single water discharge port 16a in the center of the overhead shower head OH, and the diameter of this single water discharge port 16a is set larger than the diameter of each of the multiple spray holes 14a of the overhead shower water discharge section 14. As a result, the water discharge flow rate (instantaneous flow rate) Q1 [L / min] discharged from the single water discharge port 16a of the overhead pillar water discharge section 16 is set to be greater than the water discharge flow rate (instantaneous flow rate) Q2 [L / min] discharged from the multiple spray holes 14a of the overhead shower water discharge section 14 (Q1>Q2). In this specification, a "shower head" is defined as a device that sprays water toward the user's body.

[0018] Furthermore, faucet device 1 is equipped with bathroom remote control 18 and outside bathroom remote control 20. Bathroom remote control 18 is installed in bathroom B and is an operation unit (first operation unit) that is operated by a user in bathroom B. On the other hand, the outside bathroom remote control 20 is an operation unit (second operation unit) that is installed outside the bathroom B, for example, in a washroom that also serves as a changing room or a kitchen, and is remotely operated by a user outside the bathroom B, but this second operation unit may also be replaced by a mobile communication terminal such as a smartphone.

[0019] Next, the configuration of the faucet body 6 will be described in detail with reference to FIGS. As shown in Figure 2, the faucet body 6 first has a water-side stop valve 24, a water-side check valve 26, and a water-side drain plug 28 in the primary water supply passage 22 extending from the upstream water supply source 2 side to the downstream side. In addition, the faucet body 6 is provided with a hot water stop valve 32, a hot water check valve 34, a hot water drain plug 36, and a hot water temperature sensor 38 in the primary hot water supply path 30 extending from the upstream hot water source 4 side to the downstream side. Furthermore, the faucet body 6 is equipped with a hot and cold water mixing section 40 to which the downstream sides of the water supply passage 22 and the hot water supply passage 30 are connected to mix hot and cold water, a flow rate adjustment section 42 provided downstream of this hot and cold water mixing section 40, and a temperature sensor 44 provided downstream of this flow rate adjustment section 42. The hot and cold water mixed in the hot and cold water mixer 40 is adjusted to a predetermined flow rate by the flow rate adjuster 42, and then the temperature of the hot and cold water is measured by the temperature sensor 44.

[0020] Here, the hot and cold water mixing section 40 is equipped with a water inlet 40a, a hot water inlet 40b, a mixed hot and cold water outlet 40c, and a temperature control valve V1 (valve body 40d) such as an SMA thermo valve that adjusts the opening of the water inlet 40a and the hot water inlet 40b. The flow rate adjustment section 42 also includes a flow regulation valve V2 (valve body 42a) that adjusts the flow rate of the hot and cold water mixed in the hot and cold water mixing section 40. The faucet body 6 also has motors 46, 48 (temperature control motor 46, flow control motor 48) which are actuators that operate the temperature control valve V1 (valve body 40d) of the hot and cold water mixing section 40 and the flow control valve V2 (valve body 42a) of the flow rate adjustment section 42, respectively.

[0021] Next, as shown in FIG. 2, the faucet body 6 is provided with a switching unit 50 provided downstream of the temperature sensor 44. The switching unit 50 also has a water discharge / stop switching section 60 which includes solenoid valves 52, 54, 56, 58 (solenoid valve 52 for hand shower, solenoid valve 54 for faucet, solenoid valve 56 for overhead shower, solenoid valve 58 for overhead pillar) which switch each water discharge section 10, 12, 14, 16 to a water discharge state or a water stop state, respectively. Here, the water discharge / stop switching unit 60 has multiple flow paths 60a, 60b, 60c, and 60d that communicate with each of the multiple water discharge units 10, 12, 14, and 16, and each flow path 60a, 60b, 60c, and 60d upstream (primary side) of each solenoid valve 52, 54, 56, and 58 is connected to a connecting flow path 66. As a result, when the water dischargers 10, 12, 14, 16 are discharging water or stopping water, the flow paths 60a, 60b, 60c, 60d are opened and closed by the solenoid valves 52, 54, 56, 58, respectively.

[0022] Next, the faucet body 6 is provided with a drainage channel 62 for preparing hot water, which is provided in the flow path downstream of the hot and cold water mixing section 40 and the temperature sensor 44. The downstream side of this drainage channel 62 is connected to the outside of the faucet body 6 (inside the bathroom B), and is a dedicated drainage channel that is different from the water discharge flow paths of each of the water discharge sections 10, 12, 14, and 16. The switching unit 50 of the faucet body 6 further includes a drain electromagnetic valve 64. This drain electromagnetic valve 64 is a drain switching valve for hot water preparation that is provided at the inlet 62a of the drain path 62 for hot water preparation so as to be able to open and close. Here, the connecting flow path 66 branches into each flow path 60 a , 60 b , 60 c , and 60 d midway downstream of the flow rate adjusting unit 42 and is connected to each of the electromagnetic valves 52 , 54 , 56 , and 58 of the water discharge / stop switching unit 60 . As a result, the solenoid valves 52, 54, 56, and 58 of the water discharge / stop switching unit 60 are arranged in the flow paths 60a, 60b, 60c, and 60d that are respectively located in the middle of the connecting flow path 66 between the hot and cold water mixing unit 40 and the drain solenoid valve 64, so that the drain path 62 and the drain switching valve (drain solenoid valve 64) that opens and closes it are located downstream of the water discharge / stop switching unit 60 in the connecting flow path 66.

[0023] Next, as shown in FIG. 2, the faucet body 6 is equipped with a control section 68 including a communication unit 68A and a control board 68B. The communication unit 68A of the control unit 68 is capable of electrically communicating with both the bathroom remote control 18 and the outside bathroom remote control 20. In addition, the control board 68B of the control unit 68 incorporates a control circuit that receives commands transmitted from each remote control 18, 20 via the communication unit 68A and controls the operation of each motor 46, 48 of the hot and cold water mixing unit 40 and the flow rate adjustment unit 42, a memory that stores the opening degree of each valve body 40d, 42a of the hot and cold water mixing unit 40 and the flow rate adjustment unit 42, and a control circuit that controls the operation of each solenoid valve 52, 54, 56, 58, 64 of the switching unit 50. Furthermore, the control board 68B of the control unit 68 has a built-in control circuit that executes multiple (two) hot water preparation modes (first hot water preparation mode M1, second hot water preparation mode M2), which will be described in detail later, and before each water outlet 10, 12, 14, 16 starts to discharge water, the hot water in the connecting flow path 66 is drained in advance from the drainage channel 62 in response to a command from each remote control 18, 20, or the water is drained by discharging it from either the overhead shower water outlet 14 or the overhead pillar water outlet 16, thereby executing so-called ``hot water preparation.''

[0024] That is, as shown in Figures 1 and 2, in the bathroom faucet device 1 of this embodiment, when normal water discharge is performed, the user operates the bathroom remote control 18, and in response to this command, one of the solenoid valves 52, 54, 56, and 58 of the water discharge / stop switching section 60 in the switching unit 50 opens, and one of the water discharge sections 10, 12, 14, and 16 is switched to a water discharge state, and the other three water discharge sections are switched to a water stop state. On the other hand, before normal water discharge, when the user operates the bathroom remote control 18 or the bathroom remote control 20 to execute the "first hot water preparation mode M1," which will be described in detail later, only the drain solenoid valve 64 of the switching unit 50 opens in response to a command from the operating units 18, 20, and the hot and cold water in the connecting flow path 66 connecting the hot and cold water mixing unit 40 and the drain switching valve 64 is drained from a dedicated drain path 62, separate from each of the water discharge units 10, 12, 14, 16. Furthermore, when the user operates the remote control 20 outside the bathroom to execute the "second hot water preparation mode," which will be described in detail later, the operation unit 20 commands only one of the overhead shower solenoid valve 56 or the overhead pillar solenoid valve 58 of the switching unit 50 to open, and hot water in the connecting flow path 66 is drained from only one of the overhead shower outlet 14 or the overhead pillar outlet 16.

[0025] Next, FIG. 3 is a partial side cross-sectional view of a bathroom faucet device 1 according to this embodiment. As shown in FIGS. 1 to 3, the faucet body 6 is housed within a cover C2, and the rear side of this cover C2 is attached to a wall W inside the bathroom B. In addition, the drainage channel 62 has a drain outlet 62b at its downstream end that is directed toward the floor F in the bathroom B below, and is located closer to the wall W than the hot and cold water mixing section 40, so that the hot and cold water W1 for preparing hot water discharged from the drain outlet 62b flows down along the wall W. Furthermore, as shown in Figure 3, the drain outlet 62b of the drain channel 62 is located at a position lower than the counter C1 and is spaced apart at a height greater than the height dimension H1 (= 130 mm) from the floor surface F. In this embodiment, the height H1 from the floor F is set to 130 mm or more, but may be set to 25 mm or more depending on the usage situation.

[0026] Next, the hot water preparation mode will be described in detail with reference to FIGS. Here, for each of the first hot water preparation mode M1 and the second hot water preparation mode M2, it can be set in advance before execution as to whether it will be executed by operating either the operation part of the bathroom remote control 18 or the outside bathroom remote control 20. Therefore, in this embodiment, as an example, an example will be described in which the first hot water preparation mode M1 is set to be executed by operation from both the bathroom remote control 18 and the outside bathroom remote control 20, while the second hot water preparation mode M2 ​​is set to be executed only by operation from the outside bathroom remote control 20. First, the first hot water preparation mode M1 will be described in detail with reference to FIGS. 4A and 4B are front views of the bathroom remote control of a bathroom faucet device according to this embodiment, showing the state before and during the hot water preparation mode, respectively. Also, FIG. 5 is a flowchart of the normal hot water preparation process (first hot water preparation mode M1) in the hot water preparation mode of the bathroom faucet device according to this embodiment.

[0027] As shown in Figures 4A and 5, when a user in the bathroom wants to prepare hot water, for example, the user presses and holds down two buttons on the bathroom remote control 18, C button 18a for setting cold or hot water and H button 18b for setting hot water, simultaneously for two seconds, and a command signal from the bathroom remote control 18 is sent to the control board 68B via the communication unit 68A of the control unit 68. This causes the alarm unit (not shown) built into the bathroom remote control 18 to beep, confirming the start operation of the normal hot water preparation process (first hot water preparation mode M1) by the bathroom remote control 18, and starts the first hot water preparation mode M1 at step S1 in Figure 5. As shown in FIG. 4B, if the user wishes to cancel the hot water preparation after starting the first hot water preparation mode M1, they can press and hold only the C button 18a for setting the cold / hot setting on the bathroom remote control 18 for at least three seconds, or they can press and hold any one of the multiple water discharge operation buttons 18c, 18d, 18e, 18f (faucet water discharge operation button 18c, hand shower water discharge operation button 18d, overhead shower water discharge operation button 18e, overhead pillar water discharge operation button 18f) that control the water discharge of each of the water discharge sections 10, 12, 14, 16. This will cause the display screen 18g to display the message "Hot water preparation in progress, press [Cancel], C for at least three seconds," and the first hot water preparation mode M1 will be stopped. In addition, if a water discharge operation is performed using any of the water discharge operation buttons 18c, 18d, 18e, and 18f on the first operation unit (bathroom remote control 18) while the first hot water preparation mode M1 is being executed, the control unit 68 can stop the first hot water preparation mode M1 that is being executed.

[0028] Next, as shown in Figure 5, when the first hot water preparation mode M1 is started in step S1, in step S2, the memory of the control board 68B of the control unit 68 stores the current opening position of the temperature control valve V1 (valve body 40d) of the hot and cold water mixing unit 40 set by the temperature control motor 46, and the current opening position of the flow control valve V2 (valve body 42a) of the flow rate adjustment unit 42 set by the flow control motor 48. Then, in step S3, the temperature control motor 46 drives the temperature control valve V1 (valve body 40d), and this temperature control valve V1 (valve body 40d) is set to a predetermined position (origin position), i.e., a position where the initial set temperature T0 of hot water is set to a predetermined temperature (T0 = 42 degrees). In step S4, the flow adjustment motor 48 is returned to its origin, and the opening of the flow adjustment valve V2 (valve element 42a) is set to the maximum so that the flow rate becomes the maximum. In other words, when executing the first hot water preparation mode M1, the control unit 68 controls the temperature control motor 46 and the flow control motor 48 so that hot water flows from the hot water preparation drainage channel 62 at a predetermined flow rate (instantaneous flow rate) Q0 (e.g., Q0 = 10 L / min) at a predetermined temperature T1 (e.g., T1 = 40 degrees), regardless of the hot water temperature set on the bathroom remote control 18. The initial hot and cold water temperature T0 and the predetermined temperature T1 can be changed by the user. Then, in step S5, when the drain solenoid valve 64 is switched from a closed state to an open state, the inlet 62a of the drain channel 62 for preparing hot water is opened, and hot water W1 (see Figures 1 and 3) for preparing hot water is discharged from the drain channel 62 for preparing hot water. At this time, the solenoid valves 52, 54, 56, and 58 of the water discharge / stop switching unit 60 are closed, so that the water discharge units 10, 12, 14, and 16 are maintained in a water stop state.

[0029] Next, as shown in FIG. 5, in step S6, if the hot water temperature T2 set by the bathroom remote control 18 is set to a temperature lower than the predetermined temperature T1 (for example, T2<37 degrees), and the hot water temperature Tm measured by the temperature sensor 44 is lower than 37 degrees (if "NO" in step S6), the temperature control motor 46 is controlled to adjust the opening of the temperature control valve V1 (valve body 40d) of the hot water mixing section 40 so that the hot water temperature Tm measured by the temperature sensor 44 is 37 degrees or higher, and the hot water temperature T3 discharged from the drainage channel 62 is set to a predetermined temperature (for example, 37 degrees) or higher (T3≧37 degrees). Then, in step S7, if one minute has elapsed, the process proceeds to step S8. On the other hand, in step S6, if the hot water temperature T2 set by the bathroom remote control 18 is set to a temperature higher than the predetermined temperature T1 (T2≧37 degrees), and the hot water temperature Tm measured by the temperature sensor 44 is 37 degrees or higher but lower than 43 degrees (if "YES" in step S6), the opening of the temperature control valve V1 (valve body 40d) of the hot water mixing section 40 is maintained as is without being changed. Furthermore, if the temperature Tm of the hot water measured by the temperature sensor 44 is 43 degrees or higher, the opening of the temperature control valve V1 (valve body 40d) of the hot water mixing section 40 is adjusted so that the temperature T3 of the hot water discharged from the drainage channel 62 becomes a predetermined temperature (37 degrees or higher and less than 43 degrees), and the process proceeds to step S8.

[0030] Next, in step S8, "extended drainage" is performed, in which drainage for preparing hot water is continued for a predetermined time t1 (for example, t1=10 seconds). Here, in step S8, the predetermined time t1 for which the drainage continues can be set or changed by the user. Then, in step S9, the drain electromagnetic valve 64 switches from an open state to a closed state, the inlet 62a of the hot water preparation drain path 62 is closed, and the hot water preparation drainage ends.

[0031] Next, as shown in FIG. 5, in step S10, if the hot water setting temperature T2 set by the bathroom remote control 18 before starting the hot water preparation mode was set to a hot water temperature above a predetermined temperature (T2≧37 degrees), and the opening degree of the temperature control valve V1 (valve body 40d) memorized by the control unit 68 in step S2 is not the opening degree set to the side that dispenses cold water (hereinafter referred to as the "cold water side opening"), but the opening degree set to the side that dispenses hot water (hereinafter referred to as the "hot water side opening") (if "NO" in step S10), then in step S11, the temperature control motor 46 is operated under the control of the control unit 68, and the opening degree of the temperature control valve V1 (valve body 40d) of the hot water mixing unit 40 is restored to the opening degree set by the bathroom remote control 18 before starting the hot water preparation mode. Then, in step S12, the flow adjustment motor 48 is operated under the control of the control unit 68, and the opening of the flow adjustment valve V2 (valve body 42a) of the flow rate control unit 42 is restored to the opening set by the bathroom remote control 18 before the hot water preparation mode was started, and then in step S13, the first hot water preparation mode M1 is completed. That is, when completing the first hot water preparation mode M1, the control unit 68 controls the temperature control motor 46 according to the set hot water temperature set by the bathroom remote control 18 to adjust the opening degree of the temperature control valve V1 (valve body 40d) of the hot water mixing unit 40. In addition, when completing the first hot water preparation mode M1, the control unit 68 controls the flow adjustment motor 48 according to the hot water flow rate set by the bathroom remote control 18 to adjust the opening degree of the flow adjustment valve V2 (valve body 42a) of the flow rate adjustment unit 42.

[0032] On the other hand, as shown in Figure 5, in step S10, if the hot water setting temperature T2 set by the bathroom remote control 18 before starting the hot water preparation mode was set to a cold water temperature below the predetermined temperature (T2 < 37 degrees), and the opening of the temperature control valve V1 (valve body 40d) memorized by the control unit 68 in step S2 is the opening on the cold water side (if "YES" in step S10), the opening of the temperature control valve V1 (valve body 40d) of the hot water mixing unit 40 in step S11 is not restored to the opening on the cold water side, and the opening on the hot water side of the temperature control valve V1 (valve body 40d) of the hot water mixing unit 40 in the first hot water preparation mode M1 is maintained on the hot water side. Then, in step S12, only the opening degree of the flow regulation valve V2 (valve element 42a) of the flow rate regulator 42 is restored, and then in step S13, the first hot water preparation mode M1 is completed. In other words, when the first hot water preparation mode M1 is executed with the bathroom remote control 18 setting the hot water setting temperature T2 to a cold water temperature below a predetermined temperature (T2 < 37 degrees), the control unit 68 adjusts the opening of the temperature control valve V1 (valve body 40d) of the hot water mixing unit 40 so that the temperature of the hot water mixed in the hot water mixing unit 40 becomes a hot water temperature warmer than the cold water temperature, and controls the temperature control motor 46 so that the opening of the temperature control valve V1 (valve body 40d) is maintained on the hot water side even when the first hot water preparation mode M1 is completed. Also, in step S13, when the first hot water preparation mode M1 is completed, a reception sound from an alarm unit (not shown) built into the bathroom remote control 18 sounds a beep, and the display screen 18g of the bathroom remote control 18 switches from the state shown in Figure 4B to the state shown in Figure 4A. This notifies the user that the first hot water preparation mode M1 has been completed.

[0033] Next, the second hot water preparation mode will be described in detail with reference to FIGS. Fig. 6 is a flowchart of the hot water preparation process (second hot water preparation mode) from the overhead shower spout and overhead pillar spout in the hot water preparation mode of the bathroom faucet device according to this embodiment. Fig. 7 is a schematic diagram showing the state in which the hot water preparation process (second hot water preparation mode) from the overhead shower spout and overhead pillar spout is being performed in the hot water preparation mode of the bathroom faucet device according to this embodiment. As shown in Figures 2 and 6, when a user outside the bathroom wants to prepare hot water, for example, the user presses the hot water preparation button 70 on the outside bathroom remote control 20, and a command signal from the outside bathroom remote control 20 is sent to the control board 68B via the communication unit 68A of the control unit 68. As a result, the preparation LED of notification unit 72 provided on outside bathroom remote control 20 lights up, the hot water preparation mode is started, and it is notified that hot water preparation is in progress (step S20).

[0034] Next, in step S21 of FIG. 6, if the control unit 68 does not have a hot water preparation mode (second hot water preparation mode M2) from the overhead shower head OH (if "NO" in step S21), in step S22, the first hot water preparation mode M1 is executed, which is a series of steps S1 to S13 shown in FIG. 5. On the other hand, in step S21, if the control unit 68 has a hot water preparation mode (second hot water preparation mode M2) from the overhead shower head OH (if "YES" in step S21), the second hot water preparation mode M2 ​​is started in step S23. In step S23, similar to step S2 in Figure 5, the memory of the control board 68B of the control unit 68 stores the current opening position of the temperature control valve V1 (valve body 40d) of the hot and cold water mixing unit 40 set by the temperature control motor 46, and the current opening position of the flow control valve V2 (valve body 42a) of the flow rate adjustment unit 42 set by the flow control motor 48. As shown in FIG. 4B, if the user wishes to cancel the hot water preparation after starting the second hot water preparation mode M2, they can press and hold only the cold / hot setting C button 18a on the bathroom remote control 18 for at least three seconds, or they can press and hold any one of the multiple water discharge operation buttons 18c, 18d, 18e, 18f (faucet water discharge operation button 18c, hand shower water discharge operation button 18d, overhead shower water discharge operation button 18e, overhead pillar water discharge operation button 18f) that control the water discharge of each of the water discharge sections 10, 12, 14, 16. This will cause the display screen 18g to display the message "Hot water preparation in progress, press [Cancel], C for at least three seconds," and the second hot water preparation mode M2 ​​will be stopped. In addition, if a water discharge operation is performed using any of the water discharge operation buttons 18c, 18d, 18e, and 18f on the first operation unit (bathroom remote control 18) while the second hot water preparation mode M2 ​​is being executed, the control unit 68 can stop the second hot water preparation mode M2 ​​that is being executed.

[0035] Then, in step S24 of Figure 6, similar to step S3 of Figure 5, the temperature control motor 46 drives the temperature control valve V1 (valve body 40d), and this temperature control valve V1 (valve body 40d) is set to a predetermined position (origin position), i.e., a position where the initial hot water temperature T0 is set to a predetermined temperature (T0 = 42 degrees). Furthermore, in step S25, similar to step S4 in FIG. 5, the flow adjustment motor 48 is returned to its origin, and the opening of the flow adjustment valve V2 (valve element 42a) is set to the maximum so that the flow rate becomes the maximum. In other words, when executing the second hot water preparation mode M2, the control unit 68 controls the temperature control motor 46 and the flow control motor 48 so that hot water flows from the overhead pillar water outlet 16 at a predetermined flow rate (e.g., 10 L / min) at a predetermined temperature T1 (e.g., T1 = 40 degrees), regardless of the hot water temperature set on the remote control 20 outside the bathroom. The initial hot and cold water temperature T0 and the predetermined temperature T1 can be changed by the user. Then, in step S26, when only the overhead pillar solenoid valve 58 is switched from the closed state to the open state, the overhead pillar water discharge section 16 is opened and hot water W2 (see FIG. 7) is discharged from only the single water discharge port 16a to prepare hot water. This discharged hot water W2 is discharged onto the floor F of the bathroom B. At this time, since the solenoid valves 52, 54, 56 other than the overhead pillar solenoid valve 58 in the water discharge / stop switching unit 60 are closed, the water discharge units 10, 12, 14 other than the overhead pillar water discharge unit 16 are maintained in a water stop state. Furthermore, the drain electromagnetic valve 64 of the drain passage 62 for preparing hot water is also maintained in a closed state.

[0036] Next, as shown in FIG. 6, in step S27, if the hot water temperature T2 set by the remote control 20 outside the bathroom is set to a temperature lower than the predetermined temperature T1 (for example, T2 < 37 degrees), and the hot water temperature Tm measured by the temperature sensor 44 is lower than 37 degrees (if "NO" in step S27), the temperature control motor 46 is controlled to adjust the opening of the temperature control valve V1 (valve body 40d) of the hot water mixing section 40 so that the hot water temperature Tm measured by the temperature sensor 44 is 37 degrees or higher, and the hot water temperature T3 discharged from the drainage channel 62 is higher than the predetermined temperature (37 degrees). Then, in step S28, if one minute has elapsed, the process proceeds to step S29. On the other hand, in step S27, if the hot water temperature T2 set by the remote control 20 outside the bathroom is set to a temperature higher than the predetermined temperature T1 (T2≧37 degrees), and the hot water temperature Tm measured by the temperature sensor 44 is 37 degrees or higher but lower than 43 degrees (if "YES" in step S27), the opening of the temperature control valve V1 (valve body 40d) of the hot water mixing section 40 is maintained as is without being changed. Furthermore, if the temperature Tm of the hot water measured by the temperature sensor 44 is 43 degrees or higher, the opening of the temperature control valve V1 (valve body 40d) of the hot water mixing section 40 is adjusted so that the temperature T3 of the hot water discharged from the drainage channel 62 becomes a predetermined temperature (37 degrees or higher and less than 43 degrees), and the process proceeds to step S29.

[0037] Next, as shown in FIG. 6, in step S29, hot and cold water continues to be discharged from the overhead pillar water discharge section 16 for a predetermined time (waiting time of 5 seconds), then in step S30, the overhead pillar solenoid valve 58 closes, and then in step S31, the overhead shower solenoid valve 56 opens. This opens the overhead shower spout 14, and hot water W3 (see FIG. 7) for preparing hot water is discharged only from the multiple spray holes 14a. This discharged hot water W3 is discharged onto the floor F of the bathroom B. At this time, since the solenoid valves 52, 54, 58 other than the overhead shower solenoid valve 56 in the water discharge / stop switching unit 60 are closed, the water discharge units 10, 12, 16 other than the overhead shower water discharge unit 14 are maintained in a water-stopped state. Furthermore, the drain electromagnetic valve 64 of the drain passage 62 for preparing hot water is also maintained in a closed state.

[0038] As a result, when the second hot water preparation mode M2 ​​is executed, the overhead pillar water outlet 16 drains hot water W2 until the hot water temperature Tm detected by the temperature sensor 44 reaches a predetermined temperature (for example, Tm = 37 degrees), and after the hot water temperature detected by the temperature sensor 44 reaches the predetermined temperature (for example, Tm = 37 degrees), the overhead shower water outlet 14 begins draining hot water W3. In addition, the first flow rate (instantaneous flow rate) Q1 [L / min] at which the overhead pillar water outlet 16 discharges water is set to be greater than the second flow rate (instantaneous flow rate) Q2 [L / min] at which the overhead shower water outlet 14 discharges water (Q1>Q2), and in the second hot water preparation mode M2, the drainage of hot water W2 from the overhead pillar water outlet 16 is performed with priority over the drainage of hot water W3 from the overhead shower water outlet 14.

[0039] Next, as shown in FIG. 6, after a waiting time of 5 seconds has elapsed in step S32, an "extended drain" is performed in step S33, in which drainage for preparing hot water is continued for a further predetermined time t2 (for example, t2 = 10 seconds). Here, in step S33, the setting of the predetermined time t2 for which the drainage continues can be changed by the user. Then, in step S34, the overhead shower solenoid valve 56 switches from an open state to a closed state, the overhead shower water outlet 14 is closed, and the water discharge in preparation for hot water ends.

[0040] Next, as shown in FIG. 6, in step S35, if the hot water setting temperature T2 set by the remote control outside the bathroom 20 before starting the hot water preparation mode was set to a hot water temperature above a predetermined temperature (T2≧37 degrees), and the opening degree of the temperature control valve V1 (valve body 40d) memorized by the control unit 68 in step S23 is not the opening degree set to the side that discharges cold water (hereinafter referred to as the "cold water side opening"), but the opening degree set to the side that discharges hot water (hereinafter referred to as the "hot water side opening") (if "NO" in step S35), then in step S36, the temperature control motor 46 is operated under the control of the control unit 68, and the opening degree of the temperature control valve V1 (valve body 40d) of the hot water mixing unit 40 is restored to the opening degree set by the remote control outside the bathroom 20 before starting the hot water preparation mode. Then, in step S37, the flow adjustment motor 48 is operated under the control of the control unit 68, and the opening of the flow adjustment valve V2 (valve body 42a) of the flow rate control unit 42 is returned to the opening set by the outside bathroom remote control 20 before the hot water preparation mode was started, and then in step S38, the second hot water preparation mode M2 ​​is completed. That is, when completing the second hot water preparation mode M2, the control unit 68 controls the temperature control motor 46 according to the set hot water temperature set by the remote control 20 outside the bathroom, to adjust the opening degree of the temperature control valve V1 (valve body 40d) of the hot water mixing unit 40. In addition, when completing the second hot water preparation mode M2, the control unit 68 controls the flow adjustment motor 48 according to the hot water flow rate set by the remote control 20 outside the bathroom, to adjust the opening degree of the flow adjustment valve V2 (valve body 42a) of the flow rate adjustment unit 42.

[0041] On the other hand, as shown in FIG. 6, in step S35, if the set temperature T2 of hot water set by the remote control outside the bathroom 20 before starting the hot water preparation mode was set to a cold water temperature below the predetermined temperature (T2<37 degrees), and the opening of the temperature control valve V1 (valve body 40d) memorized by the control unit 68 in step S23 is the opening on the cold water side (if "YES" in step S35), the opening of the temperature control valve V1 (valve body 40d) of the hot water mixing unit 40 in step S36 is not restored to the opening on the cold water side, and the opening on the hot water side of the temperature control valve V1 (valve body 40d) of the hot water mixing unit 40 in the second hot water preparation mode M2 ​​is maintained on the hot water side. Then, in step S35, only the opening degree of the flow regulation valve V2 (valve element 42a) of the flow rate regulator 42 is restored, and then in step S38, the second hot water preparation mode M2 ​​is completed. In other words, when the second hot water preparation mode M2 ​​is executed while the set hot water temperature T2 is set by the remote control 20 outside the bathroom to a cold water temperature that is lower than a predetermined temperature (T2 < 37 degrees), the control unit 68 adjusts the opening of the temperature control valve V1 (valve body 40d) of the hot water mixing unit 40 so that the temperature of the hot water mixed in the hot water mixing unit 40 becomes a hot water temperature that is warmer than the cold water temperature, and controls the temperature control motor 46 so that the opening of the temperature control valve V1 (valve body 40d) is maintained on the hot water side even when the second hot water preparation mode M2 ​​is completed. Furthermore, in step S38, when second hot water preparation mode M2 ​​is completed, the preparation LED of notification unit 72 of outside bathroom remote control 20 goes out and then the completion LED lights up. This lit completion LED then goes out three minutes after it started to light up. This notifies the user that the second hot water preparation mode has been completed.

[0042] In the bathroom faucet device 1 of the above-described embodiment, when the second hot water preparation mode M2 ​​is executed, hot water W2 or W3 for hot water preparation is discharged from either the overhead pillar water outlet 16 or the overhead shower water outlet 14. However, in addition to the overhead pillar water outlet 16 and the overhead shower water outlet 14, hot water for hot water preparation may also be discharged from the hand shower water outlet 10 or the faucet water outlet 12.

[0043] Next, the operation of the bathroom faucet device 1 according to the embodiment of the present invention will be described with reference to FIGS. First, according to the bathroom faucet device 1 of this embodiment, when executing the two hot water preparation modes M1 and M2, operation can be performed by selectively using the first operating unit inside the bathroom B (bathroom remote control 18) and the second operating unit outside the bathroom B (outside the bathroom remote control 20), depending on the situation of the user inside or outside the bathroom B. Therefore, when hot water preparation modes M1 and M2 are executed, a user in bathroom B can be prevented from getting wet with hot water discharged from water dischargers 10, 12, 14, and 16.

[0044] Next, according to the bathroom faucet device 1 of this embodiment, the first hot water preparation mode M1 is executed by operating the bathroom remote control 18, and the drain switching valve (drain solenoid valve 64) opens the drain path 62, and the water discharge / stop switching unit 60 maintains each water discharge unit 10, 12, 14, 16 in a water-stopped state. This allows, for example, a user in bathroom B to execute the first hot water preparation mode M1 by operating the bathroom remote control 18, and drain hot water W1 from the hot water preparation drainage channel 62 into bathroom B. On the other hand, since the water discharge / stop switching unit 60 maintains each of the water discharge units 10, 12, 14, and 16 in a water-stopped state, the risk of the user being splashed with water from the water discharge units 10, 12, 14, and 16 can be avoided, making it easy to use.

[0045] Furthermore, according to the bathroom faucet device 1 of this embodiment, it is easy to use because it is possible to pre-set whether the two hot water preparation modes, the first hot water preparation mode M1 and the second hot water preparation mode M2, will be executed by operating either the first operation unit (remote control 18 inside the bathroom) or the second operation unit (remote control 20 outside the bathroom) 18 or 20.

[0046] Furthermore, according to the bathroom faucet device 1 of this embodiment, each of the multiple water outlets 10, 12, 14, and 16 can discharge hot water W2 or W3 into the bathroom B when the second hot water preparation mode M2 ​​is executed, so that water can be effectively drained from the multiple water outlets 10, 12, 14, and 16.

[0047] Furthermore, according to the bathroom faucet device 1 of this embodiment, when the second hot water preparation mode M2 ​​is executed, hot water W2 is drained only from the overhead pillar water outlet 16 until the temperature Tm detected by the temperature sensor 44 that detects the temperature of the hot water mixed in the hot water mixing section 40 reaches a predetermined temperature (for example, Tm = 37 degrees) (see "NO" in step S27 and step S28 in Figure 6). On the other hand, after the temperature Tm of the hot water detected by the temperature sensor 44 reaches a predetermined temperature (for example, Tm=37 degrees), the hot water W3 starts to be discharged only from the overhead shower water discharge portion 14. Therefore, even when hot water is discharged from multiple water outlets 10, 12, 14, and 16, hot water W2 is discharged only from the overhead pillar water outlet 16 until the temperature of the hot water reaches a predetermined temperature (for example, Tm = 37 degrees), thereby preventing the user from getting wet from the drainage water from multiple water outlets 10, 12, 14, and 16.

[0048] Furthermore, according to the bathroom faucet device 1 of this embodiment, when the second hot water preparation mode M2 ​​is executed, the first flow rate (instantaneous flow rate) Q1 [L / min] at which the overhead pillar water outlet 16 discharges water is set to be greater than the second flow rate (instantaneous flow rate) Q2 [L / min] at which the overhead shower water outlet 14 discharges water (Q1>Q2), and in the second hot water preparation mode M2, the drainage of hot water W2 from the overhead pillar water outlet 16 is carried out with priority over the drainage of hot water W3 from the overhead shower water outlet 14. This allows water to be effectively drained from the plurality of water dischargers 10, 12, 14, and 16, and also allows preparation for hot water to be completed quickly.

[0049] Furthermore, according to the bathroom faucet device 1 of this embodiment, when a water discharge operation is performed by the first operating unit (bathroom remote control 18) while hot water preparation mode M1 or M2 is being executed, the control unit 68 can stop the hot water preparation mode M1 or M2. This makes it easy to use because, depending on the usage situation, water discharge can be started by operating the first operating unit (bathroom remote control 18) even if hot water preparation is not complete.

[0050] Furthermore, according to the bathroom faucet device 1 of this embodiment, the second operating unit (remote control 20 outside the bathroom) is equipped with an alarm unit 72 that notifies the completion of the second hot water preparation mode M2, so that the execution status of the second hot water preparation mode M2 ​​can be grasped from outside the bathroom B using the alarm unit 72 of the second operating unit (remote control 20 outside the bathroom), making it easy to use. [Explanation of symbols]

[0051] 1. A bathroom faucet device according to one embodiment of the present invention 2 Water source 4. Water heater (hot water source) 6 Faucet body 8 Water outlet 10 Hand shower outlet (water outlet) 10a shower head 12 Faucet outlet (water outlet) 14 Overhead shower outlet (outlet, second outlet) 14a Watering hole 16 Overhead pillar outlet (outlet, first outlet) 16a Outlet 18 Bathroom remote control (operation unit, first operation unit) 18a C button for hot and cold settings 18b H button for high temperature setting 18c Faucet water control button 18d Hand shower water control button 18e Overhead shower water control button 18th floor Overhead pillar water discharge control button 18g display screen 20 Remote control outside the bathroom (operation unit, second operation unit) 22 Primary side water supply channel 24 Water side stop valve 26 Water side check valve 28 Water side drain valve 30 Primary hot water supply passage 32 Hot water stop valve 34 Hot water side check valve 36 Hot water drain valve 38 Hot water side temperature sensor 40 Hot water mixing section 40a Water inlet 40b Hot water inlet 40c Mixed hot water outlet 40d Temperature control valve, valve body 42 Flow rate adjustment section 42a Flow regulation valve, valve body 44 Temperature Sensor 46 Temperature control motor (actuator) 48 Flow regulation motor (actuator) 50 Switching Unit 52 Hand shower solenoid valve 54 Solenoid valve for faucet 56 Solenoid valve for overhead shower 58 Solenoid valve for overhead pillar 60 Water discharge / stop switching section 60a flow path 60b Flow path 60c flow path 60d flow path 62 Drainage channel for preparing hot water (drainage channel) 62a Inlet to drain for hot water preparation 62b Outlet of drainage channel for hot water preparation (downstream end of drainage channel) 64 Drain solenoid valve (drain switching valve) 66 Connecting Channel 68 Control Unit 68A Communication Unit 68B control board 70 Hot water preparation button 72 Information Department B Bathroom C1 Counter C2 Cover F Floor H1 Height from floor to drain outlet M1 First hot water preparation mode M2 Second hot water preparation mode O outdoor OH overhead shower head Q0 Flow rate of hot water discharged from the drainage channel for hot water preparation Q1: Water flow rate discharged from a single outlet on the overhead pillar outlet (first flow rate) Q2 Water flow rate discharged from multiple nozzles in the overhead shower outlet (second flow rate) S Hot Water System T0 Initial temperature of hot and cold water (predetermined temperature) T1 Predetermined temperature of hot water T2 The hot and cold water temperature set by the bathroom remote control T3 Temperature of hot water discharged from the drain Tm: The temperature of the water measured by the temperature sensor t1 specified time t2 specified time V1 temperature control valve V2 Flow Adjustment Valve W wall W1 Hot water for hot water preparation discharged from the hot water preparation drainage channel W2 Hot water for preparing hot water discharged from the overhead pillar outlet W3 Hot water for preparing hot water discharged from the overhead shower outlet

Claims

1. A bathroom faucet device, a faucet body provided in the bathroom and supplied with hot water and cold water from a hot water supply source and a cold water supply source, respectively; A water discharge section is provided downstream of the faucet body and discharges hot water, cold water, or mixed hot water supplied from the faucet body; an operation unit operated by a user, The faucet body is equipped with a hot and cold water mixing section that mixes hot and cold water, a discharge / stop switching section that switches the discharge section between a discharge state and a stop state, a drainage channel that communicates with the outside of the faucet body and drains water into the bathroom, a drainage switching valve that switches the drainage channel on and off, and a control section that has a hot water preparation mode that controls the drainage switching valve and the discharge / stop switching section in response to commands from the operating section and controls the drainage of hot and cold water from the drainage channel and the discharge section, The operating unit includes a first operating unit installed inside the bathroom and a second operating unit installed outside the bathroom, The hot water preparation mode includes a first hot water preparation mode for controlling the drainage of hot water from the drainage channel, and a second hot water preparation mode for controlling the drainage of hot water from the water discharge portion, A bathroom faucet device, characterized in that either the first hot water preparation mode or the second hot water preparation mode is executed by operating the first operating unit or the second operating unit.

2. A bathroom faucet device as described in claim 1, wherein the first hot water preparation mode is executed by operating the first operating unit, the drain switching valve opens the drain path, and the discharge / stop switching unit maintains the water discharge unit in the stopped state.

3. A bathroom faucet device as described in claim 1, wherein each of the first hot water preparation mode and the second hot water preparation mode can be set in advance before execution as to whether it is executed by operating either the first operating unit or the second operating unit.

4. A bathroom faucet device as described in claim 1, wherein the water outlet section has multiple water outlet sections, and each of the multiple water outlet sections is capable of discharging hot water into the bathroom when the second hot water preparation mode is executed.

5. The faucet body further includes a temperature sensor that detects the temperature of the hot and cold water mixed in the hot and cold water mixing section, and the plurality of water discharge sections include a first water discharge section and a second water discharge section, A bathroom faucet device as described in claim 4, wherein when the second hot water preparation mode is executed, the first water discharge section drains hot water until the temperature of the hot water detected by the temperature sensor reaches a predetermined temperature, and after the temperature of the hot water detected by the temperature sensor reaches the predetermined temperature and hot water discharge from the first water discharge section continues for a predetermined period of time, the second water discharge section begins draining hot water.

6. A bathroom faucet device as described in claim 5, wherein the first flow rate at which the first water outlet section discharges water is set to be greater than the second flow rate at which the second water outlet section discharges water, and in the second hot water preparation mode, the drainage of hot water from the first water outlet section is performed with priority over the drainage of hot water from the second water outlet section.

7. 2. The bathroom faucet device according to claim 1, wherein the control unit stops the hot water preparation mode when a water discharge operation is performed by the first operation unit while the hot water preparation mode is being executed.

8. 2. The bathroom faucet device according to claim 1, wherein the second operating section includes a notification section that notifies the user when the hot water preparation mode is completed.

Citation Information

Patent Citations

  • Hot water supply system

    JP2017048983A