WO2012050066A1 - Remote controller and air conditioner equipped with same - Google Patents

Remote controller and air conditioner equipped with same Download PDF

Info

Publication number
WO2012050066A1
WO2012050066A1 PCT/JP2011/073244 JP2011073244W WO2012050066A1 WO 2012050066 A1 WO2012050066 A1 WO 2012050066A1 JP 2011073244 W JP2011073244 W JP 2011073244W WO 2012050066 A1 WO2012050066 A1 WO 2012050066A1
Authority
WO
WIPO (PCT)
Prior art keywords
operation mode
heating
radiant
heating operation
indoor
Prior art date
Application number
PCT/JP2011/073244
Other languages
French (fr)
Japanese (ja)
Inventor
裕記 藤岡
Original Assignee
ダイキン工業株式会社
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by ダイキン工業株式会社 filed Critical ダイキン工業株式会社
Publication of WO2012050066A1 publication Critical patent/WO2012050066A1/en

Links

Images

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F11/00Control or safety arrangements
    • F24F11/89Arrangement or mounting of control or safety devices
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F11/00Control or safety arrangements
    • F24F11/50Control or safety arrangements characterised by user interfaces or communication
    • F24F11/56Remote control

Definitions

  • the present invention relates to a remote controller that switches between an operation mode of a cooling operation and a heating operation, and an air conditioner including the remote controller.
  • an indoor unit of an air conditioner an indoor unit having a heat exchanger and a radiation panel each having a part of piping constituting a refrigerant circuit, and an indoor fan disposed in the vicinity of the heat exchanger is known (for example, Patent Document 1).
  • a cooling / warming changeover switch and a heating mode changeover switch are provided in the operation unit of the indoor unit.
  • the heating mode selector switch can be set to a fan / panel mode that performs both hot air heating and radiant heating, an automatic mode that automatically switches between hot air heating and radiant heating, and a panel mode that performs radiant heating. .
  • the indoor fan rotates and the hot air heating and the radiant heating are performed simultaneously.
  • the heating mode is set with the cool / warm changeover switch and the panel mode is set with the heating mode changeover switch, the hot air is not blown out because the indoor fan is in the operation-off state. Only radiation from the radiation panel is performed.
  • both the cool / warm changeover switch and the heating mode changeover switch are always operable. Therefore, for example, when the user hits the cold / warm changeover switch or the heating mode changeover switch, the operation mode may be changed although the user does not intend.
  • an object of the present invention is to provide a remote controller that can prevent an operation mode from being changed unintentionally by a user and an air conditioner including the remote controller.
  • a remote controller is an air conditioner remote controller capable of cooling operation and heating operation, comprising a lid member that is openable and closable with respect to the main body, and is provided with a cooling operation mode for performing a cooling operation;
  • a main operation mode switching button for switching a main operation mode including a heating operation mode for performing a heating operation, and an auxiliary operation mode switching button for switching an auxiliary operation mode that can be set when a predetermined main operation mode is selected,
  • the main operation mode switching button is provided in a portion covered by the lid member when the lid member is in a closed state, and the auxiliary operation mode switching button is provided when the lid member is in a closed state. It is provided in the part which is not covered by.
  • the main operation mode switching button is provided in a portion covered by the closed lid member, so that the user can switch the main operation mode including the cooling operation mode and the heating operation mode by switching the lid member. I need to open it. Therefore, the main operation mode switching button is hardly operated in a state where the user does not intend to switch the main operation mode. Therefore, it is possible to prevent the operation mode from being changed without the intention of the user. Further, although the usage frequency of the auxiliary operation mode switching button is considered to be higher than the usage frequency of the main operation mode switching button, the auxiliary operation mode switching button is provided in a portion that is not covered by the closed lid member. So convenience is improved.
  • the air conditioner has a heat exchanger and a radiation panel each having a part of a pipe constituting a refrigerant circuit, and the vicinity of the heat exchanger.
  • the predetermined main operation mode is a heating operation mode in which a refrigerant is passed through the heat exchanger to perform warm air heating, and the auxiliary operation mode is provided in the heat exchanger.
  • This is a radiant heating operation mode in which warm air is heated by flowing a refrigerant and radiant heating is performed by flowing a refrigerant through the radiant panel.
  • the radiant heating operation mode is performed by heating the heat exchanger with the refrigerant to perform hot air heating and flowing the refrigerant to the radiant panel to perform the radiant heating.
  • a first radiant heating operation mode in which a radiant heating operation in which the air volume generated by the fan is maintained at a predetermined value or more is performed, hot air heating is performed by using a refrigerant in the heat exchanger, and the radiant panel is
  • a second radiant heating operation mode in which a radiant heating operation is performed in which a radiant heating is performed by flowing a refrigerant and the amount of air generated by the fan is maintained below the predetermined value; the radiant heating operation and the radiant gust heating operation And at least one of the third radiant heating operation modes in which switching is automatically performed.
  • a first radiant heating operation mode in which radiant heating operation is performed with emphasis on heating capability and a radiant light wind heating operation in which emphasis is placed on prevention of draft feeling are performed. It is possible to switch to at least one of a radiant heating operation mode and a third radiant heating operation mode in which the radiant heating operation and the radiant breeze heating operation are automatically switched.
  • a remote control is the remote control according to any one of the first to third aspects, further comprising a display unit capable of displaying different displays corresponding to a plurality of modes, and heating by the main operation mode switching button. Only after the display corresponding to the operation mode is displayed on the display section, the display corresponding to the mode switchable by the auxiliary operation mode switching button cannot be displayed on the display section.
  • the user can confirm that the display corresponding to the heating operation mode is displayed on the display unit, and set the auxiliary operation mode by operating the auxiliary operation mode switching button.
  • the air conditioner according to the fifth aspect of the invention includes the remote control according to any one of the first to fourth aspects of the invention.
  • the main operation mode switching button is provided in the portion covered by the closed lid member, the user can switch the main operation mode including the cooling operation mode and the heating operation mode by using the lid.
  • the member needs to be opened. Therefore, the main operation mode switching button is hardly operated in a state where the user does not intend to switch the main operation mode. Therefore, it is possible to prevent the operation mode from being changed without the intention of the user.
  • the usage frequency of the auxiliary operation mode switching button is considered to be higher than the usage frequency of the main operation mode switching button, the auxiliary operation mode switching button is provided in a portion that is not covered by the closed lid member. So convenience is improved.
  • the heating operation mode when the heating operation mode is selected as the main operation mode, it is easy to operate the auxiliary operation mode switching button provided in the portion not covered with the closed lid member. Radiant heating operation mode can be set.
  • the third invention by operating the auxiliary operation mode switching button, the first radiant heating operation mode in which the radiant heating operation in which the heating capacity is emphasized and the radiant light wind heating operation in which the prevention of the draft feeling is emphasized are performed. It is possible to switch to at least one of the second radiant heating operation mode and the third radiant heating operation mode in which the radiant heating operation and the radiant breeze heating operation are automatically switched.
  • the auxiliary operation mode can be set by confirming that the display corresponding to the heating operation mode is displayed on the display unit and operating the auxiliary operation mode switching button.
  • the air conditioner 1 of this embodiment is provided with the indoor unit 2 installed indoors, the outdoor unit 3 installed outdoor, and the remote control 4 (refer FIG. 3).
  • the indoor unit 2 includes an indoor heat exchanger 20, an indoor fan 21 disposed in the vicinity of the indoor heat exchanger 20, a radiation panel 22, an indoor electric valve 23, and an indoor temperature sensor for detecting the indoor air temperature. 24.
  • the outdoor unit 3 includes a compressor 30, a four-way switching valve 31, an outdoor heat exchanger 32, an outdoor fan 33 disposed in the vicinity of the outdoor heat exchanger 32, and an outdoor electric valve 34. Yes.
  • the indoor heat exchanger 20, the compressor 30, the four-way switching valve 31, the outdoor heat exchanger 32, and the outdoor electric valve 34 are connected to form an annular refrigerant circuit 10.
  • the pipes on both sides of the indoor heat exchanger 20 are connected by the bypass pipe 11.
  • the bypass pipe 11 is provided with a radiation panel 22 and an indoor motor operated valve 23.
  • a panel entry temperature sensor 25 and a panel exit temperature sensor 26 are attached to both sides of the radiation panel 22 in the bypass pipe 11.
  • an accumulator 35 is interposed between the suction side of the compressor 30 and the four-way switching valve 31 in the refrigerant circuit 10, and the discharge side of the compressor 30 and the four-way switching valve 31 in the refrigerant circuit 10 are interposed.
  • a discharge temperature sensor 36 is attached between them.
  • An outdoor heat exchanger temperature sensor 28 is attached to the outdoor heat exchanger 32.
  • the indoor heat exchanger 20 has a pipe that constitutes a part of the refrigerant circuit 10 and is provided with an indoor heat exchange temperature sensor 27.
  • the indoor heat exchanger 20 is disposed on the windward side of the indoor fan 21. The air heated or cooled by heat exchange with the indoor heat exchanger 20 is blown into the room as warm air or cold air by the indoor fan 21, whereby hot air heating or cooling is performed.
  • the radiation panel 22 is disposed on the surface side of the indoor unit 2 and has a pipe constituting a part of the refrigerant circuit 10. Radiant heating is performed by radiating the heat of the refrigerant flowing through the pipe into the room.
  • the indoor motor operated valve 23 is provided to adjust the flow rate of the refrigerant supplied to the radiation panel 22.
  • the air conditioner 1 of the present embodiment can perform a dehumidifying operation, a cooling operation, a hot air heating operation, a radiant heating operation, a radiant light wind heating operation, and a blower operation.
  • the dehumidifying operation and the cooling operation are operations for performing dehumidification and cooling by flowing the refrigerant through the indoor heat exchanger 20 without flowing the refrigerant through the radiation panel 22, respectively.
  • the hot air heating operation the refrigerant is flowed through the radiation panel 22.
  • the refrigerant is passed through the indoor heat exchanger 20 to perform hot air heating.
  • the radiant heating operation is an operation in which the refrigerant is passed through the indoor heat exchanger 20 to perform hot air heating, and the refrigerant is passed through the radiant panel 22 to perform radiant heating.
  • the radiant light breeze heating operation is an operation in which the warm air heating is performed with a lower air volume than in the warm air heating operation and the radiant heating operation, and the refrigerant is passed through the radiant panel 22 to perform the radiant heating.
  • the air blowing operation is an operation in which only the indoor fan 21 is operated and air is blown in a state where the flow of the refrigerant in the refrigerant circuit 10 is stopped.
  • the indoor motor-operated valve 23 is closed and the four-way switching valve 31 is switched to the state indicated by the broken line in FIG. Therefore, as indicated by the dashed arrows in FIG. 1, the high-temperature and high-pressure refrigerant discharged from the compressor 30 flows into the outdoor heat exchanger 32 through the four-way switching valve 31.
  • the refrigerant condensed in the outdoor heat exchanger 32 is decompressed by the outdoor motor operated valve 34 and then flows into the indoor heat exchanger 20.
  • the refrigerant evaporated in the indoor heat exchanger 20 flows into the compressor 30 through the four-way switching valve 31 and the accumulator 35.
  • the indoor motor-operated valve 23 is closed and the four-way switching valve 31 is switched to the state shown by the solid line in FIG. Therefore, as indicated by the solid arrow in FIG. 1, the high-temperature and high-pressure refrigerant discharged from the compressor 30 flows into the indoor heat exchanger 20 through the four-way switching valve 31.
  • the refrigerant condensed in the indoor heat exchanger 20 is decompressed by the outdoor motor operated valve 34 and then flows into the outdoor heat exchanger 32. Then, the refrigerant evaporated in the outdoor heat exchanger 32 flows into the compressor 30 via the four-way switching valve 31 and the accumulator 35.
  • the indoor motor-operated valve 23 is opened, and the four-way switching valve 31 is switched to the state indicated by the solid line in FIG. Therefore, as indicated by the solid arrows in FIG. 2, the high-temperature and high-pressure refrigerant discharged from the compressor 30 flows into the indoor heat exchanger 20 and the radiation panel 22 through the four-way switching valve 31. Then, the refrigerant condensed in the indoor heat exchanger 20 and the radiation panel 22 is decompressed by the outdoor motor operated valve 34 and then flows into the outdoor heat exchanger 32. Then, the refrigerant evaporated in the outdoor heat exchanger 32 flows into the compressor 30 via the four-way switching valve 31 and the accumulator 35.
  • ⁇ Remote control 4> In the remote controller 4, the user performs operation start / stop operation, operation mode setting, indoor temperature target temperature setting (indoor set temperature), blowing air volume setting, and the like. Then, the remote controller 4 transmits a control signal to the indoor unit 2 based on operations and settings performed by the user. As shown in Table 1, in the air conditioner 1 of this embodiment, any one of an automatic operation mode, a dehumidifying operation mode, a cooling operation mode, a heating operation mode, and a blower operation mode is performed as a main operation mode by operating the remote controller 4. Can be selected.
  • any one of the warm air heating operation mode and the radiation 1 operation mode and the radiation 2 operation mode included in the radiant heating operation mode is performed. You can choose.
  • the radiation 1 operation mode and the radiation 2 operation mode are provided as auxiliary operation modes in the heating operation mode.
  • the automatic operation mode is a mode for switching between the cooling operation and the heating operation in accordance with the indoor temperature.
  • the dehumidifying operation mode is a mode for performing a dehumidifying operation
  • the cooling operation mode is a mode for performing a cooling operation.
  • the warm air heating operation mode is a mode for performing the warm air heating operation
  • the radiation 1 operation mode is a mode for switching between the radiant heating operation and the radiant light wind heating operation according to the room temperature (third radiant heating operation).
  • the radiation 2 operation mode is a mode for performing the radiation breeze heating operation (second radiation heating operation mode).
  • the air blowing operation mode is a mode for performing the air blowing operation.
  • the air volume is automatically controlled when the radiation 1 operation mode or the radiation 2 operation mode is selected.
  • the remote controller 4 has a substantially rectangular shape in plan view.
  • the longitudinal direction in plan view is referred to as “vertical direction”.
  • the remote controller 4 has a main body 41 and a lid member 49 that can be opened and closed with respect to the main body 41. More specifically, the lid member 49 is held so as to be slidable in the vertical direction with respect to the main body portion 41. As shown in FIG. 3A, the lid member 49 in the closed state covers the lower half of the main body 41. Then, by sliding the lid member 49 in the closed state downward, the lid member 49 is opened as shown in FIG. At this time, the portion covered by the closed lid member 49 in the main body 41 is exposed. A control unit (not shown) is accommodated in the main body 41.
  • the main body 41 includes a main operation unit 43 provided above a portion covered with the closed lid member 49, an auxiliary operation unit 44 that can be operated by opening the lid member 49, and a main operation unit. 43 and has a display unit 45 for displaying a set temperature, an operation mode, and the like.
  • the main operation unit 43 is provided in a portion that is not covered by the lid member 49 when the lid member 49 is in the closed state, and an operation button 43a that starts / stops operation. And a set temperature switching button 43b for switching the set temperature and an auxiliary operation mode switching button 43c.
  • the auxiliary operation mode switching button 43c is for switching the auxiliary operation mode when the heating operation mode is selected as the main operation mode.
  • the auxiliary operation mode includes the radiation 1 operation mode and the radiation 2 operation mode.
  • the auxiliary operation unit 44 is provided in a portion covered by the lid member 49 when the lid member 49 is in the closed state, and switches the main operation mode to switch the main operation mode.
  • Button 44a is included.
  • the main operation mode includes an automatic operation mode, a dehumidifying operation mode, a cooling operation mode, a heating operation mode, and a blower operation mode.
  • the main operation mode is switched in order of the automatic operation mode, the dehumidifying operation mode, the cooling operation mode, the heating operation mode, the air blowing operation mode, and the automatic operation mode each time the main operation mode switching button 44a is pressed. Change. If the main operation mode switching button 44a is pressed while the cooling operation mode is selected, the main operation mode is switched to the heating operation mode. At this time, the radiation 1 operation mode or the radiation 2 operation mode is selected. Instead, the hot air heating operation mode is selected.
  • selection of the radiation 1 operation mode or the radiation 2 operation mode by operating the auxiliary operation mode switching button 43c is performed by operating the main operation mode switching button 44a to switch the main operation mode to the heating operation mode. It can be performed only after the heating operation mode is selected. That is, every time the auxiliary operation mode switching button 43c is pressed after the hot air heating operation mode is selected, as shown in FIG. 4, the radiation 1 operation mode, the radiation 2 operation mode, the hot air heating operation mode, and the radiation 1 are performed. The operation mode is switched in the order. If the heating operation mode is selected, the main operation mode switching button 44a is pressed regardless of which of the hot air heating operation mode, the radiation 1 operation mode, and the radiation 2 operation mode is selected. Then, the main operation mode is switched to the air blowing operation mode.
  • the display unit 45 has a set temperature display area 45a in which the set temperature is displayed and an operation mode display area 45b in which displays corresponding to the plurality of operation modes are displayed.
  • the content displayed in the operation mode display area 45b is that the auxiliary operation mode is switched when the main operation mode is switched by operating the main operation mode switching button 44a and when the auxiliary operation mode switching button 43c is operated. In this case, as shown in FIG. 4, the display switches to the display corresponding to the switched operation mode. In FIG. 3, a display corresponding to the radiation 1 operation mode is displayed in the operation mode display area 45b.
  • the control unit provided in the remote controller 4 is displayed when each button included in the main operation unit 43 or the auxiliary operation unit 44 is operated and a setting change such as an operation start / stop instruction or an operation mode is performed.
  • the display to the unit 45 and the transmission of the control signal to the indoor unit 2 are performed.
  • step S1 it is determined whether or not the auxiliary operation mode switching button 43c has been operated.
  • step S2 it is determined whether or not the heating operation mode is selected as the main operation mode. If it is determined that the heating operation mode is selected (step S2: YES), the mode is switched to the auxiliary operation mode (step S3). After step S3, the process returns to step S1 again, and the determination of whether or not the auxiliary operation mode switching button 43c is operated is repeated. Then, every time the auxiliary operation mode switching button 43c is operated, the operation mode is switched in turn between the warm air heating operation mode, the radiation 1 operation mode, and the radiation 2 operation mode.
  • step S4 described later is performed. Proceed to
  • step S4 it is determined whether or not the main operation mode switching button 44a has been operated.
  • step S5 the main operation mode is switched (step S5). Specifically, for example, when it is determined that the main operation mode switching button 44a is operated while the dehumidifying operation mode is selected, the main operation mode is switched to the cooling operation mode. Further, when it is determined that the main operation mode switching button 44a is operated in the state where the cooling operation mode is selected, the main operation mode is switched to the heating operation mode. At this time, a display corresponding to the switched operation mode is displayed in the operation mode display area 45b of the display unit 45.
  • step S5 the process returns to step S1 again, and the determination of whether or not the auxiliary operation mode switching button 43c is operated is repeated.
  • step S4 NO
  • step S5 the process of step S5 described above is omitted.
  • the operation mode switching process described above can be performed while the operation is being performed, or can be performed before the operation is started.
  • the operation mode is changed while the operation is being performed and the operation mode is changed, the operation mode is changed to the changed operation mode during the operation.
  • the operation mode switching process is performed before the operation is started, when the operation button 43a is operated thereafter, the operation is started in the changed operation mode.
  • control unit 5 includes a storage unit 50, an operation mode control unit 51, an indoor motorized valve control unit 52, an indoor fan control unit 53, a compressor control unit 54, and an outdoor motorized valve control. Part 55.
  • the control unit 5 includes a storage unit 50, an operation mode control unit 51, an indoor motorized valve control unit 52, an indoor fan control unit 53, a compressor control unit 54, and an outdoor motorized valve control. Part 55.
  • the control related to the cooling operation, the warm air heating operation, the radiant heating operation, and the radiant light wind heating operation in the cooling operation mode and the heating operation mode will be described, and the automatic operation mode, the dehumidifying operation mode, and A description of the air blowing operation mode is omitted.
  • the storage unit 50 stores various operation settings related to the air conditioner 1, control programs, data tables necessary for executing the control programs, and the like.
  • the operation settings include those set by operating the remote controller 4 by the user, such as a target temperature of the room temperature (room set temperature), and those set in advance for the air conditioner 1. .
  • the target temperature range of the radiation panel 22 is set in advance to a predetermined temperature range (for example, 50 to 55 ° C.). Note that the target temperature range of the radiation panel 22 may be set by operating the remote controller 4.
  • the storage unit 50 stores an upper limit temperature of the heat exchange temperature in the indoor heat exchanger 20 corresponding to the upper limit pressure in the refrigerant circuit.
  • the operation mode control unit 51 starts the cooling operation, the heating operation, or the radiant light wind heating operation when the operation of starting the cooling operation mode, the warm air heating operation mode, or the radiation 2 operation mode is performed by the remote controller 4. .
  • the operation mode control unit 51 starts the radiant heating operation when the indoor temperature detected by the indoor temperature sensor 24 is lower than the indoor set temperature.
  • the radiant light wind heating operation is started.
  • the heating operation is not started when the room temperature is higher than the indoor set temperature by a predetermined temperature Tb or more.
  • the operation mode control unit 51 radiates from the radiant heating operation when the room temperature detected by the room temperature sensor 24 becomes equal to or higher than the indoor set temperature during the radiant heating operation during the radiant one operation mode operation.
  • the radiant breeze heating operation is switched to the radiant heating operation.
  • the operation mode control unit 51 automatically stops the operation (thermo-off) when the room temperature becomes higher than the indoor set temperature by a predetermined temperature Tb or more during the heating operation, and then the room temperature. When the temperature drops to the indoor set temperature, the operation is started again (thermo-on).
  • the indoor motorized valve control unit 52 controls the opening degree of the indoor motorized valve 23. As shown in Table 2, the indoor motor-operated valve control unit 52 closes the indoor motor-operated valve 23 during the cooling operation or the hot air heating operation. Table 2 shows control states of the indoor motor operated valve 23, the indoor fan 21, and the compressor 30 during each operation.
  • the indoor motor-operated valve control unit 52 controls the opening degree of the indoor motor-operated valve 23 based on the temperature of the radiation panel 22 during the radiation heating operation or the radiation breeze heating operation. Specifically, the surface temperature (predicted value) of the radiation panel 22 is calculated based on the average value of the temperatures detected by the panel input temperature sensor 25 and the panel output temperature sensor 26, and the surface temperature of the radiation panel 22 is calculated. Of the indoor motor-operated valve 23 is controlled so that the predicted value (hereinafter simply referred to as the radiant panel temperature) falls within the panel target temperature range (for example, 50 to 55 ° C.).
  • the predicted value hereinafter simply referred to as the radiant panel temperature
  • the indoor motor-operated valve control unit 52 controls the opening of the indoor motor-operated valve 23 so that the flow rate of the refrigerant supplied to the radiant panel 22 increases. However, the indoor motor-operated valve control unit 52 controls the indoor motor-operated valve 23 to the initial opening until the predetermined time t1 has elapsed from the start of the operation (when the operation is started by operating the remote controller 4 or when the operation is started by thermo-on). .
  • both the detected temperature of the panel input temperature sensor 25 and the panel output temperature sensor 26 are used, but only the detected temperature of the panel input temperature sensor 25 is used. Alternatively, only the temperature detected by the panel temperature sensor 26 may be used.
  • the indoor fan control unit 53 controls the rotational speed of the indoor fan 21.
  • Table 3 shows the fan taps selected during the automatic air volume operation, the radiant heating operation, and the radiant light wind heating operation of the hot air heating operation, and the rotation speeds corresponding to the fan taps.
  • the indoor fan control unit 53 selects one of the five stages of fan taps A1 to A5 shown in Table 3 based on the indoor temperature, the indoor set temperature, etc. detected by the indoor temperature sensor 24. And the indoor fan 21 is controlled to the number of rotations (a1 to a5) corresponding to this fan tap. Further, in the warm air heating operation, when “strong” to “weak” are set as the air volume setting, fan taps set in advance are respectively determined.
  • the indoor fan control unit 53 selects one of a plurality of preset fan taps based on the indoor temperature, the indoor set temperature, or the like detected by the indoor temperature sensor 24. And the indoor fan 21 is controlled to the rotation speed corresponding to this fan tap.
  • a preset fan tap is determined for each.
  • the indoor fan control unit 53 selects one of the seven stages of fan taps B1 to B7 shown in Table 3 based on the indoor temperature detected by the indoor temperature sensor 24, the indoor set temperature, or the like. Then, the indoor fan 21 is controlled to the rotational speed (b1 to b7) corresponding to the fan tap.
  • the indoor fan control unit 53 controls the indoor fan 21 at the rotation speed c1 corresponding to the fan tap C1 shown in Table 3.
  • the rotational speed c1 is smaller than any of the rotational speeds a1 to a5 during the hot air heating operation and the rotational speeds b1 to b7 during the radiant heating operation.
  • the rotation speed c1 is a value at which almost no sound is generated due to the rotation of the indoor fan 21 and the draft feeling is hardly felt.
  • the compressor control unit 54 controls the operating frequency of the compressor 30. During the hot air heating operation and the cooling operation, the frequency of the compressor 30 is controlled based on the room temperature, the indoor set temperature, and the like. Specifically, the compressor control unit 54 controls the compressor 30 such that the frequency of the compressor 30 increases as the difference between the indoor temperature and the indoor set temperature increases.
  • the compressor control unit 54 causes the heat exchange temperature detected by the indoor heat exchange temperature sensor 27 to substantially coincide with the upper limit temperature corresponding to the upper limit pressure in the refrigerant circuit.
  • the compressor 30 is controlled as described above (this control is referred to as upper limit control). Specifically, the frequency of the compressor 30 is controlled by the control based on the indoor temperature and the indoor set temperature so that the heat exchange temperature detected by the indoor heat exchange temperature sensor 27 exceeds the upper limit temperature. Also, the heat exchange temperature is controlled so as to become a value near the upper limit temperature without exceeding the upper limit temperature.
  • the outdoor electric valve control unit 55 controls the opening degree of the outdoor electric valve 34 based on the indoor temperature, the indoor set temperature, and the like.
  • the indoor fan control unit 53 causes the indoor fan 21 to be fan-tapped according to the indoor temperature.
  • the rotational speed is controlled to correspond to any one of A1 to A5.
  • the compressor control unit 54 controls the compressor 30 such that the operating frequency increases as the difference between the room temperature and the room set temperature increases.
  • the indoor motor operated valve 23 is closed.
  • the indoor motor-operated valve 23 and the compressor 30 are set to “automatic air volume”.
  • the indoor fan 21 is controlled by the indoor fan control unit 53 to a rotational speed corresponding to a predetermined fan tap.
  • the radiation heating operation is started when the indoor temperature at the start of the operation is lower than the indoor set temperature.
  • the indoor fan control unit 53 controls the indoor fan 21 to a rotational speed corresponding to any of the fan taps B1 to B7 according to the indoor temperature and the indoor set temperature.
  • the compressor control unit 54 controls the compressor 30 so that the heat exchange temperature detected by the indoor heat exchange temperature sensor 27 substantially coincides with the upper limit temperature (upper limit control is performed).
  • the indoor motor-operated valve control unit 52 controls the indoor motor-operated valve 23 to the initial opening until a predetermined time t1 has elapsed from the start of operation, and when the predetermined time t1 has elapsed from the start of operation, the radiant panel temperature changes to the panel.
  • the opening degree is controlled to be within the target temperature range.
  • the radiant heating operation is switched to the radiant light breeze heating operation.
  • the indoor fan control part 53 controls the indoor fan 21 to the rotation speed c1 corresponding to the fan tap C1.
  • the indoor motor-operated valve control unit 52 and the compressor control unit 54 control the indoor motor-operated valve 23 and the compressor 30 in the same manner as before switching to the radiant light wind heating.
  • the operation is automatically stopped (thermo-off). Thereby, the indoor fan 21 and the compressor 30 are stopped, and the indoor motor-operated valve 23 is switched to the fully closed state. Thereafter, when the room temperature decreases to the indoor set temperature, the operation is started again (thermo-on).
  • the radiant light wind heating operation is switched to the radiant heating operation.
  • the fan 21 and the compressor 30 are controlled.
  • the indoor fan control unit 53 controls the indoor fan 21 to the rotational speed c1 corresponding to the fan tap C1. Further, the compressor control unit 54 controls the compressor 30 so that the heat exchange temperature detected by the indoor heat exchange temperature sensor 27 substantially coincides with the upper limit temperature (upper limit control is performed). Further, the indoor motor-operated valve control unit 52 controls the indoor motor-operated valve 23 to the initial opening until a predetermined time t1 has elapsed from the start of operation, and when the predetermined time t1 has elapsed from the start of operation, the radiant panel temperature changes to the panel. The opening degree is controlled to be within the target temperature range.
  • the four-way switching valve 31 is switched to the state shown with the broken line in FIG.1 and FIG.2, and heating operation is carried out.
  • defrost operation defrost operation
  • the indoor motor operated valve 23 is closed.
  • control of the indoor motor operated valve 23 during the defrosting operation is not limited to this, and the indoor motor operated valve 23 is maintained at a predetermined opening degree until the radiation panel temperature reaches a predetermined temperature.
  • the indoor motor-operated valve 23 may be switched to a closed state.
  • the temperature of the radiation panel 22 decreases to some extent, but the amount of heat stored in the radiation panel 22 can be used for defrosting the outdoor heat exchanger 32.
  • the frost attached to the outdoor heat exchanger 32 can be removed more quickly than in the case described above.
  • a main operation mode switching button 44a for switching the main operation mode including the cooling operation mode and the heating operation mode, and an auxiliary operation mode that can be set when the heating operation mode is selected as the main operation mode.
  • an auxiliary operation mode switching button 43c is provided.
  • the main operation mode switching button 44a is provided at a portion covered by the lid member 49 when the lid member 49 provided on the main body portion 41 so as to be opened and closed is in a closed state.
  • the auxiliary operation mode switching button 43c is provided in a portion that is not covered by the lid member 49 when the lid member 49 is in the closed state. Therefore, the user needs to open the lid member 49 in order to switch the main operation mode.
  • the main operation mode switching button 44a is hardly operated. Therefore, it is possible to prevent the operation mode from being changed without the intention of the user. Further, although the usage frequency of the auxiliary operation mode switching button 43c is considered to be higher than the usage frequency of the main operation mode switching button 44a, the auxiliary operation mode switching button 43c is not covered by the closed lid member 49. Because it is provided, convenience is improved.
  • the auxiliary operation mode that is the radiant heating operation mode can be switched when the heating operation mode is selected. Therefore, when the heating operation mode is selected as the main operation mode, the radiant heating can be easily performed by operating the auxiliary operation mode switching button 43c provided in the portion not covered by the closed lid member 49. Operation mode can be set.
  • the radiation heating operation mode includes a radiation 1 operation mode and a radiation 2 operation mode. Therefore, by operating the auxiliary operation mode switching button 43c, the radiation 1 operation mode in which the radiation heating operation and the radiation breeze heating operation are automatically switched, and the radiation breeze heating operation in which the prevention of draft feeling is emphasized are performed. It is possible to switch to at least one of the two operation modes.
  • the auxiliary operation mode switching button is not required unless the display corresponding to the hot air heating operation mode is displayed on the operation mode display area 45b of the display unit 45 by the main operation mode switching button 44a.
  • the display corresponding to the radiation 1 operation mode or the radiation 2 operation mode that can be switched by 43c cannot be displayed in the operation mode display area 45b. Therefore, the user confirms that the display corresponding to the hot air heating operation mode is displayed in the operation mode display area 45b of the display unit 45, and operates the auxiliary operation mode switching button 43c to operate the radiation 1 operation mode or The radiation 2 operation mode can be set.
  • the case where the main operation mode is the heating operation mode can be switched to the radiation 1 operation mode or the radiation 2 operation mode, which is the auxiliary operation mode, but is not limited thereto. Therefore, for example, when the main operation mode is the cooling operation mode, it may be possible to switch to the auxiliary operation mode in which the indoor air volume, the wind direction, and the like are set to predetermined conditions.
  • the remote controller 4 has the lid member 49 that is opened and closed by sliding up and down with respect to the main body 41 .
  • the present invention is not limited to this. Therefore, the remote controller 4 may have a lid member that is supported so as to be swingable with respect to one end of the main body 41.
  • the auxiliary operation mode can be switched to the radiation 1 operation mode or the radiation 2 operation mode.
  • the auxiliary operation mode can be switched to the radiation 1 operation mode or the radiation 2 operation mode.
  • the heating capacity is emphasized so that is maintained more than during the radiant light wind heating operation.
  • the present invention does not have the radiation panel 22.
  • the present invention can also be applied to the harmony machine 1.
  • the remote controller 4 includes the display unit 45
  • the display unit 45 may not be provided.

Abstract

Operation modes are prevented from being unintentionally changed by the user. A remote controller comprises: a main operation mode switching button (44a) for switching main operation modes including a cooling operation mode and a heating operation mode; and an auxiliary operation mode switching button (43c) for switching auxiliary operation modes that can be set when the heating operation mode is selected as a main operation mode. The main operation mode switching button (44a) is provided in an area to be covered with a lid member (49) provided on a main body portion (41) in an openable and closable manner when the lid member (49) is in a closed state. The auxiliary operation mode switching button (43c) is provided in an area not to be covered with the lid member (49) when the lid member (49) is in the closed state.

Description

リモコン及びこれを備えた空気調和機Remote control and air conditioner equipped with the same
 本発明は、冷房運転及び暖房運転の運転モードを切り換えるリモコン及びそれを備えた空気調和機に関するものである。 The present invention relates to a remote controller that switches between an operation mode of a cooling operation and a heating operation, and an air conditioner including the remote controller.
 空気調和機の室内機として、冷媒回路を構成する配管の一部をそれぞれ有する熱交換器及び輻射パネルと、熱交換器の近傍に配置された室内ファンとを備えたものが知られている(例えば、特許文献1)。この室内機の運転操作部には、冷・暖切換スイッチと、暖房モード切換スイッチとが設けられている。暖房モード切換スイッチは、温風暖房と輻射暖房の両方を行うファン・パネルモードと、温風暖房と輻射暖房とを自動的に切り換える自動モードと、輻射暖房を行うパネルモードとを設定可能である。ここで、冷・暖切換スイッチで暖房モードが設定されると共に、暖房モード切換スイッチでファン・パネルモードが設定されると、室内ファンが回転して温風暖房と輻射暖房とが同時に行われる。一方、冷・暖切換スイッチで暖房モードが設定されると共に、暖房モード切換スイッチでパネルモードが設定された場合は、室内ファンが運転オフ状態であることにより温風の吹き出しは行われないで、輻射パネルからの輻射のみが行われる。 As an indoor unit of an air conditioner, an indoor unit having a heat exchanger and a radiation panel each having a part of piping constituting a refrigerant circuit, and an indoor fan disposed in the vicinity of the heat exchanger is known ( For example, Patent Document 1). A cooling / warming changeover switch and a heating mode changeover switch are provided in the operation unit of the indoor unit. The heating mode selector switch can be set to a fan / panel mode that performs both hot air heating and radiant heating, an automatic mode that automatically switches between hot air heating and radiant heating, and a panel mode that performs radiant heating. . Here, when the heating mode is set by the cool / warm changeover switch and the fan / panel mode is set by the heating mode changeover switch, the indoor fan rotates and the hot air heating and the radiant heating are performed simultaneously. On the other hand, when the heating mode is set with the cool / warm changeover switch and the panel mode is set with the heating mode changeover switch, the hot air is not blown out because the indoor fan is in the operation-off state. Only radiation from the radiation panel is performed.
特開昭63-113239号公報Japanese Unexamined Patent Publication No. Sho 63-113239
 上記の室内機では、冷・暖切換スイッチ及び暖房モード切換スイッチが、いずれも常に操作可能な状態となっている。従って、例えば冷・暖切換スイッチまたは暖房モード切換スイッチにユーザがぶつかった場合には、ユーザが意図しないにもかかわらず、運転モードが変更されることがある。 In the above indoor unit, both the cool / warm changeover switch and the heating mode changeover switch are always operable. Therefore, for example, when the user hits the cold / warm changeover switch or the heating mode changeover switch, the operation mode may be changed although the user does not intend.
 そこで、本発明の目的は、ユーザが意図しないで運転モードが変更されるのを抑制することができるリモコン及びこれを備えた空気調和機を提供することである。 Therefore, an object of the present invention is to provide a remote controller that can prevent an operation mode from being changed unintentionally by a user and an air conditioner including the remote controller.
 第1の発明にかかるリモコンは、冷房運転及び暖房運転が可能な空気調和機のリモコンであって、本体部に対して開閉可能に設けられた蓋部材を備え、冷房運転を行う冷房運転モード及び暖房運転を行う暖房運転モードを含む主運転モードを切り換える主運転モード切換ボタンと、所定の主運転モードが選択されている際に設定可能な補助運転モードを切り換える補助運転モード切換ボタンとを備え、前記主運転モード切換ボタンが、前記蓋部材が閉状態であるときに前記蓋部材によって覆われる部分に設けられ、前記補助運転モード切換ボタンが、前記蓋部材が閉状態であるときに前記蓋部材によって覆われない部分に設けられている。 A remote controller according to a first aspect of the present invention is an air conditioner remote controller capable of cooling operation and heating operation, comprising a lid member that is openable and closable with respect to the main body, and is provided with a cooling operation mode for performing a cooling operation; A main operation mode switching button for switching a main operation mode including a heating operation mode for performing a heating operation, and an auxiliary operation mode switching button for switching an auxiliary operation mode that can be set when a predetermined main operation mode is selected, The main operation mode switching button is provided in a portion covered by the lid member when the lid member is in a closed state, and the auxiliary operation mode switching button is provided when the lid member is in a closed state. It is provided in the part which is not covered by.
 このリモコンでは、主運転モード切換ボタンが閉状態の蓋部材によって覆われる部分に設けられているので、ユーザは、冷房運転モード及び暖房運転モードを含む主運転モードを切り換えるためには、蓋部材を開ける必要がある。従って、ユーザが主運転モードを切り換える意図がない状態において、主運転モード切換ボタンが操作されることはほとんどない。よって、ユーザが意図しないで運転モードが変更されるのを抑制することができる。また、補助運転モード切換ボタンの使用頻度は、主運転モード切換ボタンの使用頻度と比べて高いと考えられるが、補助運転モード切換ボタンが閉状態の蓋部材によって覆われない部分に設けられているので、利便性が向上する。 In this remote control, the main operation mode switching button is provided in a portion covered by the closed lid member, so that the user can switch the main operation mode including the cooling operation mode and the heating operation mode by switching the lid member. I need to open it. Therefore, the main operation mode switching button is hardly operated in a state where the user does not intend to switch the main operation mode. Therefore, it is possible to prevent the operation mode from being changed without the intention of the user. Further, although the usage frequency of the auxiliary operation mode switching button is considered to be higher than the usage frequency of the main operation mode switching button, the auxiliary operation mode switching button is provided in a portion that is not covered by the closed lid member. So convenience is improved.
 第2の発明にかかるリモコンでは、第1の発明にかかるリモコンにおいて、前記空気調和機が、冷媒回路を構成する配管の一部をそれぞれ有する熱交換器及び輻射パネルと、前記熱交換器の近傍に配置されたファンとを備えており、前記所定の主運転モードが、前記熱交換器に冷媒を流して温風暖房を行う暖房運転モードであり、前記補助運転モードが、前記熱交換器に冷媒を流して温風暖房を行い且つ前記輻射パネルに冷媒を流して輻射暖房を行う輻射暖房運転モードである。 In the remote control according to the second invention, in the remote control according to the first invention, the air conditioner has a heat exchanger and a radiation panel each having a part of a pipe constituting a refrigerant circuit, and the vicinity of the heat exchanger. And the predetermined main operation mode is a heating operation mode in which a refrigerant is passed through the heat exchanger to perform warm air heating, and the auxiliary operation mode is provided in the heat exchanger. This is a radiant heating operation mode in which warm air is heated by flowing a refrigerant and radiant heating is performed by flowing a refrigerant through the radiant panel.
 このリモコンでは、主運転モードとして暖房運転モードが選択されている際に、閉状態の蓋部材によって覆われていない部分に設けられている補助運転モード切換ボタンを操作することで、容易に輻射暖房運転モードを設定できる。 In this remote control, when the heating operation mode is selected as the main operation mode, the radiant heating is easily performed by operating the auxiliary operation mode switching button provided in the portion not covered by the closed lid member. Operation mode can be set.
 第3の発明にかかるリモコンでは、第2の発明にかかるリモコンにおいて、輻射暖房運転モードは、前記熱交換器に冷媒をして温風暖房を行い且つ前記輻射パネルに冷媒を流して輻射暖房を行うと共に、前記ファンによって発生する風量が所定値以上に維持される輻射暖房運転が行われる第1輻射暖房運転モードと、前記熱交換器に冷媒をして温風暖房を行い且つ前記輻射パネルに冷媒を流して輻射暖房を行うと共に、前記ファンによって発生する風量が前記所定値未満に維持される輻射微風暖房運転が行われる第2輻射暖房運転モードと、前記輻射暖房運転と前記輻射微風暖房運転とが自動的に切り換わる第3輻射暖房運転モードの少なくとも一つを含む。 In the remote control according to the third aspect of the invention, in the remote control according to the second aspect of the invention, the radiant heating operation mode is performed by heating the heat exchanger with the refrigerant to perform hot air heating and flowing the refrigerant to the radiant panel to perform the radiant heating. And a first radiant heating operation mode in which a radiant heating operation in which the air volume generated by the fan is maintained at a predetermined value or more is performed, hot air heating is performed by using a refrigerant in the heat exchanger, and the radiant panel is A second radiant heating operation mode in which a radiant heating operation is performed in which a radiant heating is performed by flowing a refrigerant and the amount of air generated by the fan is maintained below the predetermined value; the radiant heating operation and the radiant gust heating operation And at least one of the third radiant heating operation modes in which switching is automatically performed.
 このリモコンでは、補助運転モード切換ボタンを操作することで、暖房能力を重視した輻射暖房運転が行われる第1輻射暖房運転モードと、ドラフト感の防止を重視した輻射微風暖房運転が行われる第2輻射暖房運転モードと、輻射暖房運転と輻射微風暖房運転とが自動的に切り換わる第3輻射暖房運転モードとの少なくとも1つに切り換えることができる。 In this remote control, by operating an auxiliary operation mode switching button, a first radiant heating operation mode in which radiant heating operation is performed with emphasis on heating capability and a radiant light wind heating operation in which emphasis is placed on prevention of draft feeling are performed. It is possible to switch to at least one of a radiant heating operation mode and a third radiant heating operation mode in which the radiant heating operation and the radiant breeze heating operation are automatically switched.
 第4の発明にかかるリモコンは、第1~第3のいずれかの発明にかかるリモコンにおいて、複数のモードに対応した互いに異なる表示を表示可能な表示部を備え、前記主運転モード切換ボタンによって暖房運転モードに対応した表示を前記表示部に表示させた後でなければ、前記補助運転モード切換ボタンによって切り換え可能なモードに対応した表示を前記表示部に表示させることができない。 A remote control according to a fourth aspect of the present invention is the remote control according to any one of the first to third aspects, further comprising a display unit capable of displaying different displays corresponding to a plurality of modes, and heating by the main operation mode switching button. Only after the display corresponding to the operation mode is displayed on the display section, the display corresponding to the mode switchable by the auxiliary operation mode switching button cannot be displayed on the display section.
 このリモコンでは、ユーザは、表示部に暖房運転モードに対応した表示が表示されているのを確認し、補助運転モード切換ボタンを操作することで補助運転モードの設定を行うことができる。 With this remote control, the user can confirm that the display corresponding to the heating operation mode is displayed on the display unit, and set the auxiliary operation mode by operating the auxiliary operation mode switching button.
 第5の発明にかかる空気調和機は、第1~第4のいずれかの発明にかかるリモコンを備えている。 The air conditioner according to the fifth aspect of the invention includes the remote control according to any one of the first to fourth aspects of the invention.
 以上の説明に述べたように、本発明によれば、以下の効果が得られる。 As described in the above description, according to the present invention, the following effects can be obtained.
 第1の発明では、主運転モード切換ボタンが閉状態の蓋部材によって覆われる部分に設けられているので、ユーザは、冷房運転モード及び暖房運転モードを含む主運転モードを切り換えるためには、蓋部材を開ける必要がある。従って、ユーザが主運転モードを切り換える意図がない状態において、主運転モード切換ボタンが操作されることはほとんどない。よって、ユーザが意図しないで運転モードが変更されるのを抑制することができる。また、補助運転モード切換ボタンの使用頻度は、主運転モード切換ボタンの使用頻度と比べて高いと考えられるが、補助運転モード切換ボタンが閉状態の蓋部材によって覆われない部分に設けられているので、利便性が向上する。 In the first aspect of the invention, since the main operation mode switching button is provided in the portion covered by the closed lid member, the user can switch the main operation mode including the cooling operation mode and the heating operation mode by using the lid. The member needs to be opened. Therefore, the main operation mode switching button is hardly operated in a state where the user does not intend to switch the main operation mode. Therefore, it is possible to prevent the operation mode from being changed without the intention of the user. Further, although the usage frequency of the auxiliary operation mode switching button is considered to be higher than the usage frequency of the main operation mode switching button, the auxiliary operation mode switching button is provided in a portion that is not covered by the closed lid member. So convenience is improved.
 第2の発明では、主運転モードとして暖房運転モードが選択されている際に、閉状態の蓋部材によって覆われていない部分に設けられている補助運転モード切換ボタンを操作することで、容易に輻射暖房運転モードを設定できる。 In the second invention, when the heating operation mode is selected as the main operation mode, it is easy to operate the auxiliary operation mode switching button provided in the portion not covered with the closed lid member. Radiant heating operation mode can be set.
 第3の発明では、補助運転モード切換ボタンを操作することで、暖房能力を重視した輻射暖房運転が行われる第1輻射暖房運転モードと、ドラフト感の防止を重視した輻射微風暖房運転が行われる第2輻射暖房運転モードと、輻射暖房運転と輻射微風暖房運転とが自動的に切り換わる第3輻射暖房運転モードとの少なくとも1つに切り換えることができる。 In the third invention, by operating the auxiliary operation mode switching button, the first radiant heating operation mode in which the radiant heating operation in which the heating capacity is emphasized and the radiant light wind heating operation in which the prevention of the draft feeling is emphasized are performed. It is possible to switch to at least one of the second radiant heating operation mode and the third radiant heating operation mode in which the radiant heating operation and the radiant breeze heating operation are automatically switched.
 第4の発明では、表示部に暖房運転モードに対応した表示が表示されているのを確認し、補助運転モード切換ボタンを操作することで補助運転モードの設定を行うことができる。 In the fourth invention, the auxiliary operation mode can be set by confirming that the display corresponding to the heating operation mode is displayed on the display unit and operating the auxiliary operation mode switching button.
本発明の実施形態に係る空気調和機の概略構成を示す回路図であって、冷房運転時と温風暖房運転時の冷媒の流れを示す図である。It is a circuit diagram showing the schematic structure of the air conditioner concerning the embodiment of the present invention, and is a figure showing the flow of the refrigerant at the time of cooling operation and hot air heating operation. 本発明の実施形態に係る空気調和機の概略構成を示す回路図であって、輻射暖房運転時と輻射微風暖房運転時の冷媒の流れを示す図である。It is a circuit diagram which shows schematic structure of the air conditioner which concerns on embodiment of this invention, Comprising: It is a figure which shows the flow of the refrigerant | coolant at the time of a radiation heating operation and a radiation breeze heating operation. 図1、2に示す空気調和機に備えられるリモコンを示す図であり、(a)は蓋部材が閉じられた状態、(b)は蓋部材が開けられた状態をそれぞれ示す。It is a figure which shows the remote control with which the air conditioner shown in FIG.1, 2 is shown, (a) shows the state in which the cover member was closed, (b) shows the state in which the cover member was opened, respectively. 図3に示すリモコンの操作とモードの遷移との関係を示す図である。It is a figure which shows the relationship between operation of the remote control shown in FIG. 3, and mode transition. リモコンの制御部で行われるモード切換処理の手順を示すフローチャートである。It is a flowchart which shows the procedure of the mode switching process performed in the control part of a remote control. 空気調和機を制御する制御部の概略構成を示すブロック図である。It is a block diagram which shows schematic structure of the control part which controls an air conditioner.
 以下、本発明に係る空気調和機1の実施の形態について説明する。 Hereinafter, embodiments of the air conditioner 1 according to the present invention will be described.
<空気調和機1の全体構成>
 図1及び図2に示すように、本実施形態の空気調和機1は、室内に設置される室内機2と、室外に設置される室外機3と、リモコン4(図3参照)とを備えている。室内機2は、室内熱交換器20と、室内熱交換器20の近傍に配置された室内ファン21と、輻射パネル22と、室内電動弁23と、室内の気温を検出するための室内温度センサ24と、を備えている。また、室外機3は、圧縮機30と、四路切換弁31と、室外熱交換器32と、室外熱交換器32の近傍に配置された室外ファン33と、室外電動弁34とを備えている。
<Overall configuration of the air conditioner 1>
As shown in FIG.1 and FIG.2, the air conditioner 1 of this embodiment is provided with the indoor unit 2 installed indoors, the outdoor unit 3 installed outdoor, and the remote control 4 (refer FIG. 3). ing. The indoor unit 2 includes an indoor heat exchanger 20, an indoor fan 21 disposed in the vicinity of the indoor heat exchanger 20, a radiation panel 22, an indoor electric valve 23, and an indoor temperature sensor for detecting the indoor air temperature. 24. The outdoor unit 3 includes a compressor 30, a four-way switching valve 31, an outdoor heat exchanger 32, an outdoor fan 33 disposed in the vicinity of the outdoor heat exchanger 32, and an outdoor electric valve 34. Yes.
 この空気調和機1では、室内熱交換器20、圧縮機30、四路切換弁31、室外熱交換器32、及び室外電動弁34が接続されて環状の冷媒回路10が構成されている。また、冷媒回路10において、室内熱交換器20の両側の配管が、バイパス配管11によって接続されている。このバイパス配管11には、輻射パネル22と室内電動弁23が設けられている。バイパス配管11における輻射パネル22の両側には、パネル入温度センサ25と、パネル出温度センサ26が付設されている。また、冷媒回路10における圧縮機30の吸入側と四路切換弁31との間にはアキュムレータ35が介設されており、冷媒回路10における圧縮機30の吐出側と四路切換弁31との間には、吐出温度センサ36が付設されている。また、室外熱交換器32には、室外熱交温度センサ28が付設されている。 In this air conditioner 1, the indoor heat exchanger 20, the compressor 30, the four-way switching valve 31, the outdoor heat exchanger 32, and the outdoor electric valve 34 are connected to form an annular refrigerant circuit 10. In the refrigerant circuit 10, the pipes on both sides of the indoor heat exchanger 20 are connected by the bypass pipe 11. The bypass pipe 11 is provided with a radiation panel 22 and an indoor motor operated valve 23. A panel entry temperature sensor 25 and a panel exit temperature sensor 26 are attached to both sides of the radiation panel 22 in the bypass pipe 11. Further, an accumulator 35 is interposed between the suction side of the compressor 30 and the four-way switching valve 31 in the refrigerant circuit 10, and the discharge side of the compressor 30 and the four-way switching valve 31 in the refrigerant circuit 10 are interposed. A discharge temperature sensor 36 is attached between them. An outdoor heat exchanger temperature sensor 28 is attached to the outdoor heat exchanger 32.
 室内熱交換器20は、冷媒回路10の一部を構成する配管を有しており、室内熱交温度センサ27が付設されている。室内熱交換器20は、室内ファン21の風上側に配置されている。室内熱交換器20との熱交換により加熱または冷却された空気が、室内ファン21によって温風または冷風として室内に吹き出されることで、温風暖房または冷房が行われる。 The indoor heat exchanger 20 has a pipe that constitutes a part of the refrigerant circuit 10 and is provided with an indoor heat exchange temperature sensor 27. The indoor heat exchanger 20 is disposed on the windward side of the indoor fan 21. The air heated or cooled by heat exchange with the indoor heat exchanger 20 is blown into the room as warm air or cold air by the indoor fan 21, whereby hot air heating or cooling is performed.
 輻射パネル22は、室内機2の表面側に配置されており、冷媒回路10の一部を構成する配管を有している。この配管を流れる冷媒の熱が室内に輻射されることで輻射暖房が行われる。室内電動弁23は、輻射パネル22に供給される冷媒の流量を調整するために設けられている。 The radiation panel 22 is disposed on the surface side of the indoor unit 2 and has a pipe constituting a part of the refrigerant circuit 10. Radiant heating is performed by radiating the heat of the refrigerant flowing through the pipe into the room. The indoor motor operated valve 23 is provided to adjust the flow rate of the refrigerant supplied to the radiation panel 22.
 本実施形態の空気調和機1は、除湿運転、冷房運転、温風暖房運転、輻射暖房運転、輻射微風暖房運転、及び送風運転を行うことができる。除湿運転及び冷房運転は、輻射パネル22に冷媒を流さないで室内熱交換器20に冷媒を流して除湿及び冷房をそれぞれ行う運転であって、温風暖房運転は、輻射パネル22に冷媒を流さないで室内熱交換器20に冷媒を流して温風暖房を行う運転である。輻射暖房運転は、室内熱交換器20に冷媒を流して温風暖房を行うと共に、輻射パネル22に冷媒を流して輻射暖房を行う運転である。輻射微風暖房運転は、温風暖房運転時及び輻射暖房運転時よりも低風量で温風暖房を行うと共に、輻射パネル22に冷媒を流して輻射暖房を行う運転である。送風運転は、冷媒回路10内の冷媒の流れを止めた状態で室内ファン21のみ運転し、送風を行う運転である。 The air conditioner 1 of the present embodiment can perform a dehumidifying operation, a cooling operation, a hot air heating operation, a radiant heating operation, a radiant light wind heating operation, and a blower operation. The dehumidifying operation and the cooling operation are operations for performing dehumidification and cooling by flowing the refrigerant through the indoor heat exchanger 20 without flowing the refrigerant through the radiation panel 22, respectively. In the hot air heating operation, the refrigerant is flowed through the radiation panel 22. In this operation, the refrigerant is passed through the indoor heat exchanger 20 to perform hot air heating. The radiant heating operation is an operation in which the refrigerant is passed through the indoor heat exchanger 20 to perform hot air heating, and the refrigerant is passed through the radiant panel 22 to perform radiant heating. The radiant light breeze heating operation is an operation in which the warm air heating is performed with a lower air volume than in the warm air heating operation and the radiant heating operation, and the refrigerant is passed through the radiant panel 22 to perform the radiant heating. The air blowing operation is an operation in which only the indoor fan 21 is operated and air is blown in a state where the flow of the refrigerant in the refrigerant circuit 10 is stopped.
 各運転時における冷媒回路10の冷媒の流れについて図1及び図2を用いて説明する。
 冷房・除湿運転時には、室内電動弁23が閉弁されると共に、四路切換弁31が図1中破線で示す状態に切り換えられる。そのため、図1中破線の矢印で示すように、圧縮機30から吐出された高温高圧冷媒は、四路切換弁31を通って、室外熱交換器32に流入する。そして、室外熱交換器32において凝縮した冷媒は、室外電動弁34で減圧された後、室内熱交換器20に流入する。そして、室内熱交換器20において蒸発した冷媒は、四路切換弁31及びアキュムレータ35を介して、圧縮機30に流入する。
The flow of the refrigerant in the refrigerant circuit 10 during each operation will be described with reference to FIGS. 1 and 2.
During the cooling / dehumidifying operation, the indoor motor-operated valve 23 is closed and the four-way switching valve 31 is switched to the state indicated by the broken line in FIG. Therefore, as indicated by the dashed arrows in FIG. 1, the high-temperature and high-pressure refrigerant discharged from the compressor 30 flows into the outdoor heat exchanger 32 through the four-way switching valve 31. The refrigerant condensed in the outdoor heat exchanger 32 is decompressed by the outdoor motor operated valve 34 and then flows into the indoor heat exchanger 20. The refrigerant evaporated in the indoor heat exchanger 20 flows into the compressor 30 through the four-way switching valve 31 and the accumulator 35.
 温風暖房運転時には、室内電動弁23が閉弁されると共に、四路切換弁31が図1中実線で示す状態に切り換えられる。そのため、図1中実線の矢印で示すように、圧縮機30から吐出された高温高圧冷媒は、四路切換弁31を通って、室内熱交換器20に流入する。そして、室内熱交換器20において凝縮した冷媒は、室外電動弁34で減圧された後、室外熱交換器32に流入する。そして、室外熱交換器32において蒸発した冷媒は、四路切換弁31及びアキュムレータ35を介して、圧縮機30に流入する。 During the hot air heating operation, the indoor motor-operated valve 23 is closed and the four-way switching valve 31 is switched to the state shown by the solid line in FIG. Therefore, as indicated by the solid arrow in FIG. 1, the high-temperature and high-pressure refrigerant discharged from the compressor 30 flows into the indoor heat exchanger 20 through the four-way switching valve 31. The refrigerant condensed in the indoor heat exchanger 20 is decompressed by the outdoor motor operated valve 34 and then flows into the outdoor heat exchanger 32. Then, the refrigerant evaporated in the outdoor heat exchanger 32 flows into the compressor 30 via the four-way switching valve 31 and the accumulator 35.
 輻射暖房運転時及び輻射微風暖房運転時には、室内電動弁23が開弁されると共に、四路切換弁31が図2中実線で示す状態に切り換えられる。そのため、図2中実線の矢印で示すように、圧縮機30から吐出された高温高圧冷媒は、四路切換弁31を通って、室内熱交換器20と輻射パネル22に流入する。そして、室内熱交換器20と輻射パネル22において凝縮した冷媒は、室外電動弁34で減圧された後、室外熱交換器32に流入する。そして、室外熱交換器32において蒸発した冷媒は、四路切換弁31及びアキュムレータ35を介して、圧縮機30に流入する。 During the radiation heating operation and the radiation breeze heating operation, the indoor motor-operated valve 23 is opened, and the four-way switching valve 31 is switched to the state indicated by the solid line in FIG. Therefore, as indicated by the solid arrows in FIG. 2, the high-temperature and high-pressure refrigerant discharged from the compressor 30 flows into the indoor heat exchanger 20 and the radiation panel 22 through the four-way switching valve 31. Then, the refrigerant condensed in the indoor heat exchanger 20 and the radiation panel 22 is decompressed by the outdoor motor operated valve 34 and then flows into the outdoor heat exchanger 32. Then, the refrigerant evaporated in the outdoor heat exchanger 32 flows into the compressor 30 via the four-way switching valve 31 and the accumulator 35.
<リモコン4>
 リモコン4では、ユーザによって、運転の開始/停止の操作、運転モードの設定、室内温度の目標温度(室内設定温度)の設定、吹出風量の設定などが行われる。そして、リモコン4は、ユーザによって行われた操作や設定に基づいて、室内機2に対して制御信号を送信する。表1に示すように、本実施形態の空気調和機1では、リモコン4の操作により、主運転モードとして、自動運転モード、除湿運転モード、冷房運転モード、暖房運転モード、及び送風運転モードのいずれかを選択できるようになっている。
<Remote control 4>
In the remote controller 4, the user performs operation start / stop operation, operation mode setting, indoor temperature target temperature setting (indoor set temperature), blowing air volume setting, and the like. Then, the remote controller 4 transmits a control signal to the indoor unit 2 based on operations and settings performed by the user. As shown in Table 1, in the air conditioner 1 of this embodiment, any one of an automatic operation mode, a dehumidifying operation mode, a cooling operation mode, a heating operation mode, and a blower operation mode is performed as a main operation mode by operating the remote controller 4. Can be selected.
 主運転モードとして暖房運転モードを選択した場合には、表1に示すように、温風暖房運転モードと、輻射暖房運転モードに含まれる輻射1運転モードと輻射2運転モードのいずれかの運転を選択することができる。なお、輻射1運転モードと輻射2運転モードは、暖房運転モードにおける補助運転モードとして設けられている。 When the heating operation mode is selected as the main operation mode, as shown in Table 1, any one of the warm air heating operation mode and the radiation 1 operation mode and the radiation 2 operation mode included in the radiant heating operation mode is performed. You can choose. The radiation 1 operation mode and the radiation 2 operation mode are provided as auxiliary operation modes in the heating operation mode.
Figure JPOXMLDOC01-appb-T000001
Figure JPOXMLDOC01-appb-T000001
 表1に示すように、自動運転モードは、室内の温度に応じて、冷房運転、及び暖房運転を切り換えるモードである。除湿運転モードは、除湿運転を行うモードであって、冷房運転モードは、冷房運転を行うモードである。温風暖房運転モードは、温風暖房運転を行うモードであって、輻射1運転モードは、室内温度に応じて輻射暖房運転と輻射微風暖房運転とを切り換えるモードであって(第3輻射暖房運転モード)、輻射2運転モードは、輻射微風暖房運転を行うモードである(第2輻射暖房運転モード)。送風運転モードは、送風運転を行うモードである。また、自動運転モード、除湿運転モード、冷房運転モード、温風暖房運転モードまたは送風運転モードを選択した場合には、風量設定として「風量自動」、「強」、「弱」のいずれかを選択できる。なお、本実施形態では、輻射1運転モードまたは輻射2運転モードが選択された場合には、風量は自動的に制御される。 As shown in Table 1, the automatic operation mode is a mode for switching between the cooling operation and the heating operation in accordance with the indoor temperature. The dehumidifying operation mode is a mode for performing a dehumidifying operation, and the cooling operation mode is a mode for performing a cooling operation. The warm air heating operation mode is a mode for performing the warm air heating operation, and the radiation 1 operation mode is a mode for switching between the radiant heating operation and the radiant light wind heating operation according to the room temperature (third radiant heating operation). Mode), the radiation 2 operation mode is a mode for performing the radiation breeze heating operation (second radiation heating operation mode). The air blowing operation mode is a mode for performing the air blowing operation. When automatic operation mode, dehumidification operation mode, cooling operation mode, hot air heating operation mode or air blowing operation mode is selected, select “automatic airflow”, “strong”, or “weak” as the airflow setting. it can. In the present embodiment, the air volume is automatically controlled when the radiation 1 operation mode or the radiation 2 operation mode is selected.
 次に、図3を参照しつつ、リモコン4の構成について説明する。
 図3に示すように、リモコン4は、平面視で略矩形形状を有している。以下の説明において、平面視における長手方向を「上下方向」と称する。
Next, the configuration of the remote controller 4 will be described with reference to FIG.
As shown in FIG. 3, the remote controller 4 has a substantially rectangular shape in plan view. In the following description, the longitudinal direction in plan view is referred to as “vertical direction”.
 リモコン4は、本体部41と、本体部41に対して開閉可能な蓋部材49とを有している。より具体的には、蓋部材49は、本体部41に対して上下方向にスライド可能に保持されている。図3(a)に示すように、閉状態である場合の蓋部材49は、本体部41の下半分を覆っている。そして、閉状態である蓋部材49を下方にスライドさせることにより、図3(b)に示すように、蓋部材49が開状態となる。このとき、本体部41における閉状態の蓋部材49によって覆われていた部分が露出される。本体部41内には、制御部(図示せず)が収容されている。 The remote controller 4 has a main body 41 and a lid member 49 that can be opened and closed with respect to the main body 41. More specifically, the lid member 49 is held so as to be slidable in the vertical direction with respect to the main body portion 41. As shown in FIG. 3A, the lid member 49 in the closed state covers the lower half of the main body 41. Then, by sliding the lid member 49 in the closed state downward, the lid member 49 is opened as shown in FIG. At this time, the portion covered by the closed lid member 49 in the main body 41 is exposed. A control unit (not shown) is accommodated in the main body 41.
 本体部41は、閉状態の蓋部材49で覆われる部分の上方に設けられた主操作部43と、蓋部材49を開状態にすることで操作可能となる補助操作部44と、主操作部43の上方に設けられており、設定温度や運転モードなどが表示される表示部45とを有している。 The main body 41 includes a main operation unit 43 provided above a portion covered with the closed lid member 49, an auxiliary operation unit 44 that can be operated by opening the lid member 49, and a main operation unit. 43 and has a display unit 45 for displaying a set temperature, an operation mode, and the like.
 主操作部43は、図3(a)に示すように、蓋部材49が閉状態であるときに蓋部材49によって覆われない部分に設けられており、運転の開始/停止を行う運転ボタン43aと、設定温度を切り換える設定温度切換ボタン43bと、補助運転モード切換ボタン43cとを含んでいる。補助運転モード切換ボタン43cは、主運転モードとして暖房運転モードが選択されている際に、補助運転モードを切り換えるためのものである。ここで、補助運転モードとしては、上述したように、輻射1運転モード及び輻射2運転モードがある。 As shown in FIG. 3A, the main operation unit 43 is provided in a portion that is not covered by the lid member 49 when the lid member 49 is in the closed state, and an operation button 43a that starts / stops operation. And a set temperature switching button 43b for switching the set temperature and an auxiliary operation mode switching button 43c. The auxiliary operation mode switching button 43c is for switching the auxiliary operation mode when the heating operation mode is selected as the main operation mode. Here, as described above, the auxiliary operation mode includes the radiation 1 operation mode and the radiation 2 operation mode.
 一方、補助操作部44は、図3(b)に示すように、蓋部材49が閉状態であるときに蓋部材49によって覆われる部分に設けられており、主運転モードを切り換える主運転モード切換ボタン44aを含んでいる。主運転モードとしては、上述したように、自動運転モード、除湿運転モード、冷房運転モード、暖房運転モード、及び送風運転モードがある。 On the other hand, as shown in FIG. 3B, the auxiliary operation unit 44 is provided in a portion covered by the lid member 49 when the lid member 49 is in the closed state, and switches the main operation mode to switch the main operation mode. Button 44a is included. As described above, the main operation mode includes an automatic operation mode, a dehumidifying operation mode, a cooling operation mode, a heating operation mode, and a blower operation mode.
 主運転モードは、主運転モード切換ボタン44aが押される度に、図4に示すように、自動運転モード、除湿運転モード、冷房運転モード、暖房運転モード、送風運転モード、自動運転モードの順に切り換わる。なお、冷房運転モードが選択された状態において、主運転モード切換ボタン44aが押されると、主運転モードが暖房運転モードに切り換わるが、そのとき、輻射1運転モードや輻射2運転モードが選択されるのではなく、温風暖房運転モードが選択されることになる。 As shown in FIG. 4, the main operation mode is switched in order of the automatic operation mode, the dehumidifying operation mode, the cooling operation mode, the heating operation mode, the air blowing operation mode, and the automatic operation mode each time the main operation mode switching button 44a is pressed. Change. If the main operation mode switching button 44a is pressed while the cooling operation mode is selected, the main operation mode is switched to the heating operation mode. At this time, the radiation 1 operation mode or the radiation 2 operation mode is selected. Instead, the hot air heating operation mode is selected.
 従って、補助運転モード切換ボタン43cの操作による、輻射1運転モードや輻射2運転モードの選択は、主運転モード切換ボタン44aを操作して、主運転モードを暖房運転モードに切り換えることで、温風暖房運転モードを選択した後でなければ、行うことができないようになっている。すなわち、温風暖房運転モードが選択された後に、補助運転モード切換ボタン43cが押される度に、図4に示すように、輻射1運転モード、輻射2運転モード、温風暖房運転モード、輻射1運転モードの順に切り換わる。また、暖房運転モードが選択された状態であれば、温風暖房運転モード、輻射1運転モード及び輻射2運転モードのいずれが選択された状態であっても、主運転モード切換ボタン44aが押されると、主運転モードが送風運転モードに切り換わる。 Therefore, selection of the radiation 1 operation mode or the radiation 2 operation mode by operating the auxiliary operation mode switching button 43c is performed by operating the main operation mode switching button 44a to switch the main operation mode to the heating operation mode. It can be performed only after the heating operation mode is selected. That is, every time the auxiliary operation mode switching button 43c is pressed after the hot air heating operation mode is selected, as shown in FIG. 4, the radiation 1 operation mode, the radiation 2 operation mode, the hot air heating operation mode, and the radiation 1 are performed. The operation mode is switched in the order. If the heating operation mode is selected, the main operation mode switching button 44a is pressed regardless of which of the hot air heating operation mode, the radiation 1 operation mode, and the radiation 2 operation mode is selected. Then, the main operation mode is switched to the air blowing operation mode.
 表示部45は、設定温度が表示される設定温度表示領域45aと、上述の複数の運転モードに対応した表示が表示される運転モード表示領域45bとを有している。運転モード表示領域45bに表示される内容は、主運転モード切換ボタン44aが操作されることによって主運転モードが切り換えられた場合及び補助運転モード切換ボタン43cが操作されることによって補助運転モードが切り換えられた場合に、図4に示すように、切り換えられた運転モードに対応した表示に切り換わる。なお、図3においては、運転モード表示領域45bに、輻射1運転モードに対応した表示が表示されている。 The display unit 45 has a set temperature display area 45a in which the set temperature is displayed and an operation mode display area 45b in which displays corresponding to the plurality of operation modes are displayed. The content displayed in the operation mode display area 45b is that the auxiliary operation mode is switched when the main operation mode is switched by operating the main operation mode switching button 44a and when the auxiliary operation mode switching button 43c is operated. In this case, as shown in FIG. 4, the display switches to the display corresponding to the switched operation mode. In FIG. 3, a display corresponding to the radiation 1 operation mode is displayed in the operation mode display area 45b.
 リモコン4に設けられた制御部は、主操作部43や補助操作部44に含まれる各ボタンが操作され、運転の開始/停止の指示や運転モード等の設定変更が行われた場合に、表示部45への表示や室内機2への制御信号の送信を行う。 The control unit provided in the remote controller 4 is displayed when each button included in the main operation unit 43 or the auxiliary operation unit 44 is operated and a setting change such as an operation start / stop instruction or an operation mode is performed. The display to the unit 45 and the transmission of the control signal to the indoor unit 2 are performed.
 ここで、図5を参照しつつ、リモコン4の制御部で行われるモード切換処理の手順の一例について説明する。 Here, an example of the procedure of the mode switching process performed by the control unit of the remote controller 4 will be described with reference to FIG.
 まず、補助運転モード切換ボタン43cが操作されたか否かを判断する(ステップS1)。補助運転モード切換ボタン43cが操作されたと判断した場合には(ステップS1:YES)、主運転モードとして、暖房運転モードが選択されているか否かを判断する(ステップS2)。そして、暖房運転モードが選択されていると判断した場合には(ステップS2:YES)、補助運転モードに切り換える(ステップS3)。ステップS3の後は、再度ステップS1に戻って、補助運転モード切換ボタン43cが操作されたか否かの判断を繰り返す。そして、補助運転モード切換ボタン43cが操作される度に、温風暖房運転モード、輻射1運転モード、及び輻射2運転モードの間で順番に運転モードを切り換える。このとき、表示部45の運転モード表示領域45bには、切り換えられた運転モードに対応した表示が表示される。また、補助運転モード切換ボタン43cが操作されていないと判断した場合(ステップS1:NO)、及び暖房運転モードが選択されていないと判断した場合(ステップS2:NO)には、後述するステップS4に進む。 First, it is determined whether or not the auxiliary operation mode switching button 43c has been operated (step S1). When it is determined that the auxiliary operation mode switching button 43c has been operated (step S1: YES), it is determined whether or not the heating operation mode is selected as the main operation mode (step S2). If it is determined that the heating operation mode is selected (step S2: YES), the mode is switched to the auxiliary operation mode (step S3). After step S3, the process returns to step S1 again, and the determination of whether or not the auxiliary operation mode switching button 43c is operated is repeated. Then, every time the auxiliary operation mode switching button 43c is operated, the operation mode is switched in turn between the warm air heating operation mode, the radiation 1 operation mode, and the radiation 2 operation mode. At this time, a display corresponding to the switched operation mode is displayed in the operation mode display area 45b of the display unit 45. Further, when it is determined that the auxiliary operation mode switching button 43c is not operated (step S1: NO) and when it is determined that the heating operation mode is not selected (step S2: NO), step S4 described later is performed. Proceed to
 次に、主運転モード切換ボタン44aが操作されたか否かを判断する(ステップS4)。主運転モード切換ボタン44aが操作されたと判断した場合には(ステップS4:YES)、主運転モードを切り換える(ステップS5)。具体的には、例えば、除湿運転モードが選択されている状態で、主運転モード切換ボタン44aが操作されたと判断した場合には、主運転モードを冷房運転モードに切り換える。また、冷房運転モードが選択されている状態で、主運転モード切換ボタン44aが操作されたと判断した場合には、主運転モードを暖房運転モードに切り換える。このとき、表示部45の運転モード表示領域45bには、切り換えられた運転モードに対応した表示が表示される。ステップS5の後は、再度ステップS1に戻って、補助運転モード切換ボタン43cが操作されたか否かの判断を繰り返す。一方、主運転モード切換ボタン44aが操作されていないと判断した場合には(ステップS4:NO)、上述のステップS5の処理は省略する。 Next, it is determined whether or not the main operation mode switching button 44a has been operated (step S4). When it is determined that the main operation mode switching button 44a has been operated (step S4: YES), the main operation mode is switched (step S5). Specifically, for example, when it is determined that the main operation mode switching button 44a is operated while the dehumidifying operation mode is selected, the main operation mode is switched to the cooling operation mode. Further, when it is determined that the main operation mode switching button 44a is operated in the state where the cooling operation mode is selected, the main operation mode is switched to the heating operation mode. At this time, a display corresponding to the switched operation mode is displayed in the operation mode display area 45b of the display unit 45. After step S5, the process returns to step S1 again, and the determination of whether or not the auxiliary operation mode switching button 43c is operated is repeated. On the other hand, when it is determined that the main operation mode switching button 44a is not operated (step S4: NO), the process of step S5 described above is omitted.
 なお、上述の運転モード切換処理は、運転が行われている最中に行うことも、運転が開始される前に行うこともできる。運転が行われている最中に運転モード切換処理が行われ、運転モードが変更された場合には、運転途中で、変更後の運転モードに切り換えられる。一方、運転開始前に運転モード切換処理が行われた場合には、その後、運転ボタン43aが操作された際に、変更後の運転モードで運転が開始される。 The operation mode switching process described above can be performed while the operation is being performed, or can be performed before the operation is started. When the operation mode is changed while the operation is being performed and the operation mode is changed, the operation mode is changed to the changed operation mode during the operation. On the other hand, when the operation mode switching process is performed before the operation is started, when the operation button 43a is operated thereafter, the operation is started in the changed operation mode.
<制御部5>
 次に、空気調和機1を制御する制御部5について図6を参照しつつ説明する。
 図6に示すように、制御部5は、記憶部50と、運転モード制御部51と、室内電動弁制御部52と、室内ファン制御部53と、圧縮機制御部54と、室外電動弁制御部55とを有している。なお、以下の説明においては、冷房運転モード及び暖房運転モードにかかる冷房運転、温風暖房運転、輻射暖房運転、及び輻射微風暖房運転に関する制御についてのみ説明し、自動運転モード、除湿運転モード、及び送風運転モードについての説明は省略する。
<Control unit 5>
Next, the control part 5 which controls the air conditioner 1 is demonstrated, referring FIG.
As shown in FIG. 6, the control unit 5 includes a storage unit 50, an operation mode control unit 51, an indoor motorized valve control unit 52, an indoor fan control unit 53, a compressor control unit 54, and an outdoor motorized valve control. Part 55. In the following description, only the control related to the cooling operation, the warm air heating operation, the radiant heating operation, and the radiant light wind heating operation in the cooling operation mode and the heating operation mode will be described, and the automatic operation mode, the dehumidifying operation mode, and A description of the air blowing operation mode is omitted.
(記憶部50)
 記憶部50には、空気調和機1に関する種々の運転設定や、制御プログラムや、その制御プログラムの実行に必要なデータテーブルなどが記憶されている。運転設定には、室内温度の目標温度(室内設定温度)のように、ユーザによってリモコン4が操作されることで設定されるものと、空気調和機1に対して予め設定されたものとがある。本実施形態の空気調和機1では、輻射パネル22の目標温度範囲は、予め所定の温度範囲(例えば50~55℃)に設定されている。なお、リモコン4の操作によって輻射パネル22の目標温度範囲を設定できるようになっていてもよい。さらに、記憶部50には、冷媒回路内の上限圧力に対応する室内熱交換器20における熱交温度の上限温度が記憶されている。
(Storage unit 50)
The storage unit 50 stores various operation settings related to the air conditioner 1, control programs, data tables necessary for executing the control programs, and the like. The operation settings include those set by operating the remote controller 4 by the user, such as a target temperature of the room temperature (room set temperature), and those set in advance for the air conditioner 1. . In the air conditioner 1 of the present embodiment, the target temperature range of the radiation panel 22 is set in advance to a predetermined temperature range (for example, 50 to 55 ° C.). Note that the target temperature range of the radiation panel 22 may be set by operating the remote controller 4. Further, the storage unit 50 stores an upper limit temperature of the heat exchange temperature in the indoor heat exchanger 20 corresponding to the upper limit pressure in the refrigerant circuit.
(運転モード制御部51)
 運転モード制御部51は、リモコン4により、冷房運転モード、温風暖房運転モード、または輻射2運転モードの運転開始の操作が行われると、冷房運転、暖房運転、または輻射微風暖房運転を開始する。
 また、運転モード制御部51は、リモコン4により、輻射1運転モード運転開始の操作が行われると、室内温度センサ24で検出された室内温度が室内設定温度未満の場合に、輻射暖房運転を開始すると共に、室内温度が室内設定温度以上の場合に、輻射微風暖房運転を開始する。
 なお、本実施形態の空気調和機1では、リモコン4の操作によって運転が開始される場合に、室内温度が室内設定温度よりも所定温度Tb以上高い場合には、暖房運転が開始されない。
(Operation mode control unit 51)
The operation mode control unit 51 starts the cooling operation, the heating operation, or the radiant light wind heating operation when the operation of starting the cooling operation mode, the warm air heating operation mode, or the radiation 2 operation mode is performed by the remote controller 4. .
In addition, when the operation of starting the radiation 1 operation mode is performed by the remote controller 4, the operation mode control unit 51 starts the radiant heating operation when the indoor temperature detected by the indoor temperature sensor 24 is lower than the indoor set temperature. In addition, when the room temperature is equal to or higher than the indoor set temperature, the radiant light wind heating operation is started.
In the air conditioner 1 of the present embodiment, when the operation is started by operating the remote controller 4, the heating operation is not started when the room temperature is higher than the indoor set temperature by a predetermined temperature Tb or more.
 また、運転モード制御部51は、輻射1運転モード運転時において、輻射暖房運転の途中に、室内温度センサ24で検出される室内温度が室内設定温度以上になった場合に、輻射暖房運転から輻射微風暖房運転に切り換えると共に、輻射微風暖房運転の途中に、室内温度が室内設定温度よりも所定温度Ta以上低くなった場合に、輻射微風暖房運転から輻射暖房運転に切り換える。
 また、運転モード制御部51は、暖房運転を行っている際、室内温度が室内設定温度よりも所定温度Tb以上高くなった場合に、自動的に運転を停止し(サーモオフ)、その後、室内温度が室内設定温度まで低下した場合に、再び運転を開始する(サーモオン)。
Further, the operation mode control unit 51 radiates from the radiant heating operation when the room temperature detected by the room temperature sensor 24 becomes equal to or higher than the indoor set temperature during the radiant heating operation during the radiant one operation mode operation. In addition to switching to the breeze heating operation, when the room temperature becomes lower than the indoor set temperature by a predetermined temperature Ta or more during the radiant breeze heating operation, the radiant breeze heating operation is switched to the radiant heating operation.
Further, the operation mode control unit 51 automatically stops the operation (thermo-off) when the room temperature becomes higher than the indoor set temperature by a predetermined temperature Tb or more during the heating operation, and then the room temperature. When the temperature drops to the indoor set temperature, the operation is started again (thermo-on).
(室内電動弁制御部52)
 室内電動弁制御部52は、室内電動弁23の開度を制御する。表2に示すように、冷房運転時または温風暖房運転時には、室内電動弁制御部52は、室内電動弁23を閉弁する。なお、表2は、各運転時における室内電動弁23、室内ファン21、及び圧縮機30の制御状態を示している。
(Indoor motorized valve controller 52)
The indoor motorized valve control unit 52 controls the opening degree of the indoor motorized valve 23. As shown in Table 2, the indoor motor-operated valve control unit 52 closes the indoor motor-operated valve 23 during the cooling operation or the hot air heating operation. Table 2 shows control states of the indoor motor operated valve 23, the indoor fan 21, and the compressor 30 during each operation.
Figure JPOXMLDOC01-appb-T000002
Figure JPOXMLDOC01-appb-T000002
 表2に示すように、輻射暖房運転時または輻射微風暖房運転時には、室内電動弁制御部52は、輻射パネル22の温度に基づいて室内電動弁23の開度を制御する。具体的には、パネル入温度センサ25及びパネル出温度センサ26でそれぞれ検出された温度の平均値に基づいて、輻射パネル22の表面温度(予測値)を算出し、この輻射パネル22の表面温度の予測値(以下、単に輻射パネル温度という)が、パネル目標温度範囲(例えば50~55℃)となるように、室内電動弁23の開度を制御する。輻射パネル温度がパネル目標温度範囲よりも低いほど、室内電動弁制御部52は、輻射パネル22に供給される冷媒の流量が増加するように室内電動弁23の開度を制御する。但し、運転開始時(リモコン4の操作による運転開始時またはサーモオンによる運転開始時)から所定時間t1が経過するまでは、室内電動弁制御部52は、室内電動弁23を初期開度に制御する。なお、本実施形態では、輻射パネル温度を算出するために、パネル入温度センサ25とパネル出温度センサ26の検出温度の両方を用いているが、パネル入温度センサ25の検出温度のみを用いてもよく、パネル出温度センサ26の検出温度のみを用いてもよい。 As shown in Table 2, the indoor motor-operated valve control unit 52 controls the opening degree of the indoor motor-operated valve 23 based on the temperature of the radiation panel 22 during the radiation heating operation or the radiation breeze heating operation. Specifically, the surface temperature (predicted value) of the radiation panel 22 is calculated based on the average value of the temperatures detected by the panel input temperature sensor 25 and the panel output temperature sensor 26, and the surface temperature of the radiation panel 22 is calculated. Of the indoor motor-operated valve 23 is controlled so that the predicted value (hereinafter simply referred to as the radiant panel temperature) falls within the panel target temperature range (for example, 50 to 55 ° C.). As the radiant panel temperature is lower than the panel target temperature range, the indoor motor-operated valve control unit 52 controls the opening of the indoor motor-operated valve 23 so that the flow rate of the refrigerant supplied to the radiant panel 22 increases. However, the indoor motor-operated valve control unit 52 controls the indoor motor-operated valve 23 to the initial opening until the predetermined time t1 has elapsed from the start of the operation (when the operation is started by operating the remote controller 4 or when the operation is started by thermo-on). . In this embodiment, in order to calculate the radiation panel temperature, both the detected temperature of the panel input temperature sensor 25 and the panel output temperature sensor 26 are used, but only the detected temperature of the panel input temperature sensor 25 is used. Alternatively, only the temperature detected by the panel temperature sensor 26 may be used.
(室内ファン制御部53)
 室内ファン制御部53は、室内ファン21の回転数を制御する。温風暖房運転の風量自動運転時、輻射暖房運転時、及び輻射微風暖房運転時にそれぞれ選択されるファンタップと、各ファンタップに対応する回転数を表3に示す。
(Indoor fan control unit 53)
The indoor fan control unit 53 controls the rotational speed of the indoor fan 21. Table 3 shows the fan taps selected during the automatic air volume operation, the radiant heating operation, and the radiant light wind heating operation of the hot air heating operation, and the rotation speeds corresponding to the fan taps.
Figure JPOXMLDOC01-appb-T000003
Figure JPOXMLDOC01-appb-T000003
 温風暖房運転の風量自動運転時には、室内ファン制御部53は、室内温度センサ24で検出される室内温度や室内設定温度等に基づいて、表3に示す5段階のファンタップA1~A5のいずれかを選択して、このファンタップに対応する回転数(a1~a5)に室内ファン21を制御する。また、温風暖房運転であって、風量設定として「強」~「弱」が設定された場合には、それぞれ予め設定されたファンタップが決定される。 During the air volume automatic operation of the hot air heating operation, the indoor fan control unit 53 selects one of the five stages of fan taps A1 to A5 shown in Table 3 based on the indoor temperature, the indoor set temperature, etc. detected by the indoor temperature sensor 24. And the indoor fan 21 is controlled to the number of rotations (a1 to a5) corresponding to this fan tap. Further, in the warm air heating operation, when “strong” to “weak” are set as the air volume setting, fan taps set in advance are respectively determined.
 また、冷房運転時の風量自動運転時には、室内ファン制御部53は、室内温度センサ24で検出される室内温度や室内設定温度等に基づいて、予め設定された複数のファンタップのいずれかを選択して、このファンタップに対応する回転数に室内ファン21を制御する。また、冷房運転であって、風量設定として「強」~「弱」が設定された場合には、それぞれ予め設定されたファンタップが決定される。 In addition, during the air volume automatic operation during the cooling operation, the indoor fan control unit 53 selects one of a plurality of preset fan taps based on the indoor temperature, the indoor set temperature, or the like detected by the indoor temperature sensor 24. And the indoor fan 21 is controlled to the rotation speed corresponding to this fan tap. In the cooling operation, when “strong” to “weak” is set as the air volume setting, a preset fan tap is determined for each.
 また、輻射暖房運転時には、室内ファン制御部53は、室内温度センサ24で検出される室内温度や室内設定温度等に基づいて、表3に示す7段階のファンタップB1~B7のいずれかを選択して、このファンタップに対応する回転数(b1~b7)に室内ファン21を制御する。 In addition, during the radiant heating operation, the indoor fan control unit 53 selects one of the seven stages of fan taps B1 to B7 shown in Table 3 based on the indoor temperature detected by the indoor temperature sensor 24, the indoor set temperature, or the like. Then, the indoor fan 21 is controlled to the rotational speed (b1 to b7) corresponding to the fan tap.
 また、輻射微風暖房運転時には、室内ファン制御部53は、表3に示すファンタップC1に対応する回転数c1に室内ファン21を制御する。回転数c1は、温風暖房運転時の回転数a1~a5及び輻射暖房運転時の回転数b1~b7のいずれよりも小さい。回転数c1は、室内ファン21の回転に伴う音がほとんど生じず、且つ、ドラフト感をほとんど感じさせない値である。 Further, during the radiant light wind heating operation, the indoor fan control unit 53 controls the indoor fan 21 at the rotation speed c1 corresponding to the fan tap C1 shown in Table 3. The rotational speed c1 is smaller than any of the rotational speeds a1 to a5 during the hot air heating operation and the rotational speeds b1 to b7 during the radiant heating operation. The rotation speed c1 is a value at which almost no sound is generated due to the rotation of the indoor fan 21 and the draft feeling is hardly felt.
(圧縮機制御部54)
 圧縮機制御部54は、圧縮機30の運転周波数を制御する。
 温風暖房運転時及び冷房運転時には、室内温度や室内設定温度等に基づいて、圧縮機30の周波数を制御する。具体的には、室内温度と室内設定温度との差が大きいほど、圧縮機制御部54は、圧縮機30の周波数が増加するように圧縮機30を制御する。
(Compressor control unit 54)
The compressor control unit 54 controls the operating frequency of the compressor 30.
During the hot air heating operation and the cooling operation, the frequency of the compressor 30 is controlled based on the room temperature, the indoor set temperature, and the like. Specifically, the compressor control unit 54 controls the compressor 30 such that the frequency of the compressor 30 increases as the difference between the indoor temperature and the indoor set temperature increases.
 また、輻射暖房運転時及び輻射微風暖房運転時には、圧縮機制御部54は、室内熱交温度センサ27で検出される熱交温度が、冷媒回路内の上限圧力に対応する上限温度とほぼ一致するように圧縮機30を制御する(この制御を上限制御とする)。具体的には、圧縮機30の周波数は、室内温度と室内設定温度に基づく制御によって、室内熱交温度センサ27で検出される熱交温度が上限温度を超えるように制御される場合であっても、熱交温度が上限温度を超えることなく上限温度付近の値となるように制御される。
Further, at the time of the radiant heating operation and the radiant breeze heating operation, the compressor control unit 54 causes the heat exchange temperature detected by the indoor heat exchange temperature sensor 27 to substantially coincide with the upper limit temperature corresponding to the upper limit pressure in the refrigerant circuit. The compressor 30 is controlled as described above (this control is referred to as upper limit control). Specifically, the frequency of the compressor 30 is controlled by the control based on the indoor temperature and the indoor set temperature so that the heat exchange temperature detected by the indoor heat exchange temperature sensor 27 exceeds the upper limit temperature. Also, the heat exchange temperature is controlled so as to become a value near the upper limit temperature without exceeding the upper limit temperature.
(室外電動弁制御部55)
 室外電動弁制御部55は、室内温度や室内設定温度等に基づいて、室外電動弁34の開度を制御する。
(Outdoor motorized valve controller 55)
The outdoor electric valve control unit 55 controls the opening degree of the outdoor electric valve 34 based on the indoor temperature, the indoor set temperature, and the like.
<空気調和機1の動作>
 次に、空気調和機1の各暖房運転モードの動作について説明する。
<Operation of the air conditioner 1>
Next, operation | movement of each heating operation mode of the air conditioner 1 is demonstrated.
(温風暖房運転モード運転)
 リモコン4により温風暖房運転モード運転開始の操作が行われると共に、風量設定として「風量自動」が選択されると、室内ファン制御部53により、室内ファン21は、室内温度に応じて、ファンタップA1~A5のいずれかに対応する回転数に制御される。また、圧縮機制御部54により、圧縮機30は、室内温度と室内設定温度との差が大きいほど、運転周波数が増加するように制御される。また、室内電動弁23は閉弁される。
(Hot air heating operation mode operation)
When the operation of starting the warm air heating operation mode is performed by the remote controller 4 and “automatic air volume” is selected as the air volume setting, the indoor fan control unit 53 causes the indoor fan 21 to be fan-tapped according to the indoor temperature. The rotational speed is controlled to correspond to any one of A1 to A5. Further, the compressor control unit 54 controls the compressor 30 such that the operating frequency increases as the difference between the room temperature and the room set temperature increases. Moreover, the indoor motor operated valve 23 is closed.
 また、リモコン4により温風暖房運転モード運転開始の操作が行われると共に、風量設定として「強」または「弱」が選択された場合には、室内電動弁23と圧縮機30は、「風量自動」が選択された場合と同様に制御され、室内ファン21は、室内ファン制御部53によって、所定のファンタップに対応する回転数に制御される。 In addition, when the operation of starting the warm air heating operation mode is performed by the remote controller 4 and “strong” or “weak” is selected as the air volume setting, the indoor motor-operated valve 23 and the compressor 30 are set to “automatic air volume”. The indoor fan 21 is controlled by the indoor fan control unit 53 to a rotational speed corresponding to a predetermined fan tap.
(輻射1運転モード運転)
 リモコン4により輻射1運転モード運転開始の操作が行われると、運転開始の室内温度が室内設定温度未満の場合、輻射暖房運転が開始される。この場合、室内ファン制御部53によって、室内ファン21は、室内温度と室内設定温度に応じて、ファンタップB1~B7のいずれかに対応する回転数に制御される。また、圧縮機制御部54によって、圧縮機30は、室内熱交温度センサ27で検出される熱交温度が上限温度とほぼ一致するように制御される(上限制御される)。また、室内電動弁制御部52によって、室内電動弁23は、運転開始から所定時間t1が経過するまでは、初期開度に制御され、運転開始から所定時間t1が経過すると、輻射パネル温度がパネル目標温度範囲内となるように開度が制御される。
(Radiation 1 operation mode operation)
When the operation for starting the radiation 1 operation mode operation is performed by the remote controller 4, the radiation heating operation is started when the indoor temperature at the start of the operation is lower than the indoor set temperature. In this case, the indoor fan control unit 53 controls the indoor fan 21 to a rotational speed corresponding to any of the fan taps B1 to B7 according to the indoor temperature and the indoor set temperature. Further, the compressor control unit 54 controls the compressor 30 so that the heat exchange temperature detected by the indoor heat exchange temperature sensor 27 substantially coincides with the upper limit temperature (upper limit control is performed). Further, the indoor motor-operated valve control unit 52 controls the indoor motor-operated valve 23 to the initial opening until a predetermined time t1 has elapsed from the start of operation, and when the predetermined time t1 has elapsed from the start of operation, the radiant panel temperature changes to the panel. The opening degree is controlled to be within the target temperature range.
 輻射暖房運転中に、室内温度が室内設定温度に達すると、輻射暖房運転から輻射微風暖房運転に切り換えられる。これにより、室内ファン制御部53によって、室内ファン21は、ファンタップC1に対応する回転数c1に制御される。また、室内電動弁制御部52及び圧縮機制御部54によって、室内電動弁23及び圧縮機30は、輻射微風暖房に切り換えられる前と同様に制御される。 When the room temperature reaches the indoor set temperature during the radiant heating operation, the radiant heating operation is switched to the radiant light breeze heating operation. Thereby, the indoor fan control part 53 controls the indoor fan 21 to the rotation speed c1 corresponding to the fan tap C1. The indoor motor-operated valve control unit 52 and the compressor control unit 54 control the indoor motor-operated valve 23 and the compressor 30 in the same manner as before switching to the radiant light wind heating.
 室内温度がさらに上昇して、室内設定温度が室内設定温度よりも所定温度Tb以上高くなると、自動的に運転が停止する(サーモオフ)。これにより、室内ファン21及び圧縮機30は停止し、室内電動弁23は全閉状態に切り換えられる。その後、室内温度が室内設定温度まで低下すると、再び運転が開始される(サーモオン)。 When the indoor temperature further rises and the indoor set temperature becomes higher than the indoor set temperature by a predetermined temperature Tb or more, the operation is automatically stopped (thermo-off). Thereby, the indoor fan 21 and the compressor 30 are stopped, and the indoor motor-operated valve 23 is switched to the fully closed state. Thereafter, when the room temperature decreases to the indoor set temperature, the operation is started again (thermo-on).
 輻射微風暖房運転中に、室内温度が室内設定温度よりも所定温度Ta以上低くなると、輻射微風暖房運転から輻射暖房運転に切り換えられ、上述した輻射暖房運転時と同様に、室内電動弁23、室内ファン21及び圧縮機30は制御される。 When the indoor temperature becomes lower than the indoor set temperature by a predetermined temperature Ta or more during the radiant light wind heating operation, the radiant light wind heating operation is switched to the radiant heating operation. The fan 21 and the compressor 30 are controlled.
(輻射2運転モード運転)
 リモコン4により輻射2運転モード運転開始の操作が行われると、輻射微風暖房運転が開始される。室内ファン制御部53によって、室内ファン21は、ファンタップC1に対応する回転数c1に制御される。また、圧縮機制御部54によって、圧縮機30は、室内熱交温度センサ27で検出される熱交温度が上限温度とほぼ一致するように制御される(上限制御される)。また、室内電動弁制御部52によって、室内電動弁23は、運転開始から所定時間t1が経過するまでは、初期開度に制御され、運転開始から所定時間t1が経過すると、輻射パネル温度がパネル目標温度範囲内となるように開度が制御される。
(Radiation 2 operation mode operation)
When the operation for starting the radiation 2 operation mode operation is performed by the remote controller 4, the radiation breeze heating operation is started. The indoor fan control unit 53 controls the indoor fan 21 to the rotational speed c1 corresponding to the fan tap C1. Further, the compressor control unit 54 controls the compressor 30 so that the heat exchange temperature detected by the indoor heat exchange temperature sensor 27 substantially coincides with the upper limit temperature (upper limit control is performed). Further, the indoor motor-operated valve control unit 52 controls the indoor motor-operated valve 23 to the initial opening until a predetermined time t1 has elapsed from the start of operation, and when the predetermined time t1 has elapsed from the start of operation, the radiant panel temperature changes to the panel. The opening degree is controlled to be within the target temperature range.
(デフロスト運転)
 また、空気調和機1では、暖房運転モード運転時に室外熱交換器32に付着した霜を取り除くために、四路切換弁31を図1及び図2中破線で表示した状態に切り換えて、暖房運転から除霜運転(デフロスト運転)に切り換える。本実施形態の空気調和機1では、除霜運転を行う場合に、室内電動弁23を閉弁する。これにより、輻射パネル22に低温の冷媒が流れないため、輻射パネル22の温度低下を抑制することができる。そのため、再び暖房運転を開始したときに、輻射パネル22の温度を迅速にパネル目標温度範囲内とすることができる。
(Defrost operation)
Moreover, in the air conditioner 1, in order to remove the frost adhering to the outdoor heat exchanger 32 at the time of heating operation mode operation | movement, the four-way switching valve 31 is switched to the state shown with the broken line in FIG.1 and FIG.2, and heating operation is carried out. To defrost operation (defrost operation). In the air conditioner 1 of this embodiment, when performing a defrost operation, the indoor motor operated valve 23 is closed. Thereby, since a low-temperature refrigerant | coolant does not flow into the radiation panel 22, the temperature fall of the radiation panel 22 can be suppressed. Therefore, when the heating operation is started again, the temperature of the radiation panel 22 can be quickly brought within the panel target temperature range.
 なお、除霜運転時の室内電動弁23の制御はこれに限定されるものではなく、輻射パネル温度が所定の温度になるまで、室内電動弁23を所定の開度に維持して、輻射パネル温度が上記所定の温度まで下がったときに、室内電動弁23を閉状態に切り換えてもよい。この場合、輻射パネル22に低温の冷媒が流れるため、輻射パネル22の温度はある程度低下するものの、輻射パネル22内に蓄えられた熱量を室外熱交換器32の除霜に利用することができるため、上述した場合よりも室外熱交換器32に付着した霜を迅速に取り除くことができる。 In addition, control of the indoor motor operated valve 23 during the defrosting operation is not limited to this, and the indoor motor operated valve 23 is maintained at a predetermined opening degree until the radiation panel temperature reaches a predetermined temperature. When the temperature falls to the predetermined temperature, the indoor motor-operated valve 23 may be switched to a closed state. In this case, since a low-temperature refrigerant flows through the radiation panel 22, the temperature of the radiation panel 22 decreases to some extent, but the amount of heat stored in the radiation panel 22 can be used for defrosting the outdoor heat exchanger 32. The frost attached to the outdoor heat exchanger 32 can be removed more quickly than in the case described above.
<本実施形態のリモコン4の特徴>
 本実施形態のリモコン4では、冷房運転モード及び暖房運転モードを含む主運転モードを切り換える主運転モード切換ボタン44aと、主運転モードとして暖房運転モードが選択されている際に設定可能な補助運転モードを切り換える補助運転モード切換ボタン43cとを備えている。そして、主運転モード切換ボタン44aは、本体部41に開閉可能に設けられた蓋部材49が閉状態であるときに蓋部材49によって覆われる部分に設けられている。補助運転モード切換ボタン43cは、蓋部材49が閉状態であるときに蓋部材49によって覆われない部分に設けられている。従って、ユーザは、主運転モードを切り換えるためには、蓋部材49を開ける必要がある。よって、ユーザが主運転モードを切り換える意図がない状態において、主運転モード切換ボタン44aが操作されることはほとんどない。故に、ユーザが意図しないで運転モードが変更されるのを抑制することができる。また、補助運転モード切換ボタン43cの使用頻度は、主運転モード切換ボタン44aの使用頻度と比べて高いと考えられるが、補助運転モード切換ボタン43cが閉状態の蓋部材49によって覆われない部分に設けられているので、利便性が向上する。
<Characteristics of remote control 4 of this embodiment>
In the remote controller 4 of the present embodiment, a main operation mode switching button 44a for switching the main operation mode including the cooling operation mode and the heating operation mode, and an auxiliary operation mode that can be set when the heating operation mode is selected as the main operation mode. And an auxiliary operation mode switching button 43c. The main operation mode switching button 44a is provided at a portion covered by the lid member 49 when the lid member 49 provided on the main body portion 41 so as to be opened and closed is in a closed state. The auxiliary operation mode switching button 43c is provided in a portion that is not covered by the lid member 49 when the lid member 49 is in the closed state. Therefore, the user needs to open the lid member 49 in order to switch the main operation mode. Therefore, in a state where the user does not intend to switch the main operation mode, the main operation mode switching button 44a is hardly operated. Therefore, it is possible to prevent the operation mode from being changed without the intention of the user. Further, although the usage frequency of the auxiliary operation mode switching button 43c is considered to be higher than the usage frequency of the main operation mode switching button 44a, the auxiliary operation mode switching button 43c is not covered by the closed lid member 49. Because it is provided, convenience is improved.
 また、本実施形態のリモコン4では、暖房運転モードが選択されている際に、輻射暖房運転モードである補助運転モードを切り換えることができる。したがって、主運転モードとして暖房運転モードが選択されている際に、閉状態の蓋部材49によって覆われていない部分に設けられている補助運転モード切換ボタン43cを操作することで、容易に輻射暖房運転モードを設定できる。 In the remote controller 4 of the present embodiment, the auxiliary operation mode that is the radiant heating operation mode can be switched when the heating operation mode is selected. Therefore, when the heating operation mode is selected as the main operation mode, the radiant heating can be easily performed by operating the auxiliary operation mode switching button 43c provided in the portion not covered by the closed lid member 49. Operation mode can be set.
 さらに、本実施形態のリモコン4では、輻射暖房運転モードは、輻射1運転モードと、輻射2運転モードとを含んでいる。したがって、補助運転モード切換ボタン43cを操作することで、輻射暖房運転と輻射微風暖房運転とが自動的に切り換わる輻射1運転モードと、ドラフト感の防止を重視した輻射微風暖房運転が行われる輻射2運転モードとの少なくとも1つに切り換えることができる。 Furthermore, in the remote control 4 of this embodiment, the radiation heating operation mode includes a radiation 1 operation mode and a radiation 2 operation mode. Therefore, by operating the auxiliary operation mode switching button 43c, the radiation 1 operation mode in which the radiation heating operation and the radiation breeze heating operation are automatically switched, and the radiation breeze heating operation in which the prevention of draft feeling is emphasized are performed. It is possible to switch to at least one of the two operation modes.
 また、本実施形態のリモコン4では、主運転モード切換ボタン44aによって温風暖房運転モードに対応した表示を表示部45の運転モード表示領域45bに表示させた後でなければ、補助運転モード切換ボタン43cによって切り換え可能な輻射1運転モードや輻射2運転モード対応した表示を運転モード表示領域45bに表示させることができない。したがって、ユーザは、表示部45の運転モード表示領域45bに温風暖房運転モードに対応した表示が表示されているのを確認し、補助運転モード切換ボタン43cを操作することで輻射1運転モードや輻射2運転モードの設定を行うことができる。 Further, in the remote controller 4 of the present embodiment, the auxiliary operation mode switching button is not required unless the display corresponding to the hot air heating operation mode is displayed on the operation mode display area 45b of the display unit 45 by the main operation mode switching button 44a. The display corresponding to the radiation 1 operation mode or the radiation 2 operation mode that can be switched by 43c cannot be displayed in the operation mode display area 45b. Therefore, the user confirms that the display corresponding to the hot air heating operation mode is displayed in the operation mode display area 45b of the display unit 45, and operates the auxiliary operation mode switching button 43c to operate the radiation 1 operation mode or The radiation 2 operation mode can be set.
 以上、本発明の実施形態について図面に基づいて説明したが、具体的な構成は、これらの実施形態に限定されるものでないと考えられるべきである。本発明の範囲は、上記した実施形態の説明ではなく特許請求の範囲によって示され、さらに特許請求の範囲と均等の意味及び範囲内でのすべての変更が含まれる。 As mentioned above, although embodiment of this invention was described based on drawing, it should be thought that a specific structure is not limited to these embodiment. The scope of the present invention is shown not by the above description of the embodiments but by the scope of claims for patent, and further includes meanings equivalent to the scope of claims for patent and all modifications within the scope.
 上述の実施形態では、主運転モードが暖房運転モードである状態において、補助運転モードである輻射1運転モードや輻射2運転モードに切り換え可能である場合を説明したが、これには限定されない。従って、例えば、主運転モードが冷房運転モードである場合に、室内風量や風向きなどが所定条件に設定された補助運転モードに切り換え可能であってもよい。 In the above-described embodiment, the case where the main operation mode is the heating operation mode can be switched to the radiation 1 operation mode or the radiation 2 operation mode, which is the auxiliary operation mode, but is not limited thereto. Therefore, for example, when the main operation mode is the cooling operation mode, it may be possible to switch to the auxiliary operation mode in which the indoor air volume, the wind direction, and the like are set to predetermined conditions.
 また、上述の実施形態では、リモコン4が、本体部41に対して上下にスライドすることで開閉される蓋部材49を有している場合について説明したが、これには限定されない。従って、リモコン4が、本体部41の一端に対して揺動可能に支持された蓋部材を有していてもよい。 In the above-described embodiment, the case where the remote controller 4 has the lid member 49 that is opened and closed by sliding up and down with respect to the main body 41 has been described. However, the present invention is not limited to this. Therefore, the remote controller 4 may have a lid member that is supported so as to be swingable with respect to one end of the main body 41.
 また、上述の実施形態では、補助運転モードとして、輻射1運転モードや輻射2運転モードに切り換え可能である場合を説明しているが、その他、温風暖房を行い且つ輻射暖房を行うと共に、風量を輻射微風暖房運転時以上に維持するような、暖房能力を重視したモードに切り換え可能であってもよい。 In the above-described embodiment, the case where the auxiliary operation mode can be switched to the radiation 1 operation mode or the radiation 2 operation mode has been described. In addition, while performing warm air heating and radiation heating, May be switchable to a mode in which the heating capacity is emphasized so that is maintained more than during the radiant light wind heating operation.
 加えて、上述の実施形態では、リモコン4を備えた空気調和機1の室内機2が、輻射パネル22を有している場合について説明したが、本発明は、輻射パネル22を有さない空気調和機1に対しても適用可能である。 In addition, in the above-described embodiment, the case where the indoor unit 2 of the air conditioner 1 including the remote controller 4 has the radiation panel 22 has been described, but the present invention does not have the radiation panel 22. The present invention can also be applied to the harmony machine 1.
 また、上述の実施形態では、リモコン4が表示部45を備えている場合について説明したが、表示部45はなくてもよい。 In the above-described embodiment, the case where the remote controller 4 includes the display unit 45 has been described, but the display unit 45 may not be provided.
 本発明を利用すれば、ユーザが意図しないで運転モードが変更されるのを抑制できる。 If the present invention is used, it is possible to prevent the operation mode from being changed without the intention of the user.
1 空気調和機
4 リモコン
10 冷媒回路
20 室内熱交換器
21 室内ファン
22 輻射パネル
41 本体部
49 蓋部材
43c 補助運転モード切換ボタン
44a 主運転モード切換ボタン
45 表示部
DESCRIPTION OF SYMBOLS 1 Air conditioner 4 Remote control 10 Refrigerant circuit 20 Indoor heat exchanger 21 Indoor fan 22 Radiation panel 41 Main body part 49 Cover member 43c Auxiliary operation mode switching button 44a Main operation mode switching button 45 Display part

Claims (5)

  1.  冷房運転及び暖房運転が可能な空気調和機のリモコンであって、
     本体部に対して開閉可能に設けられた蓋部材を備え、
     冷房運転を行う冷房運転モード及び暖房運転を行う暖房運転モードを含む主運転モードを切り換える主運転モード切換ボタンと、
     所定の主運転モードが選択されている際に設定可能な補助運転モードを切り換える補助運転モード切換ボタンとを備え、
     前記主運転モード切換ボタンが、前記蓋部材が閉状態であるときに前記蓋部材によって覆われる部分に設けられ、
     前記補助運転モード切換ボタンが、前記蓋部材が閉状態であるときに前記蓋部材によって覆われない部分に設けられていることを特徴とするリモコン。
    An air conditioner remote controller capable of cooling operation and heating operation,
    A lid member provided so as to be openable and closable with respect to the body part
    A main operation mode switching button for switching a main operation mode including a cooling operation mode for performing a cooling operation and a heating operation mode for performing a heating operation;
    An auxiliary operation mode switching button for switching an auxiliary operation mode that can be set when a predetermined main operation mode is selected,
    The main operation mode switching button is provided in a portion covered by the lid member when the lid member is in a closed state,
    The remote control characterized in that the auxiliary operation mode switching button is provided in a portion not covered by the lid member when the lid member is in a closed state.
  2.  前記空気調和機が、冷媒回路を構成する配管の一部をそれぞれ有する熱交換器及び輻射パネルと、前記熱交換器の近傍に配置されたファンとを備えており、
     前記所定の主運転モードが、前記熱交換器に冷媒を流して温風暖房を行う暖房運転モードであり、
     前記補助運転モードが、前記熱交換器に冷媒を流して温風暖房を行い且つ前記輻射パネルに冷媒を流して輻射暖房を行う輻射暖房運転モードであることを特徴とする請求項1に記載のリモコン。
    The air conditioner includes a heat exchanger and a radiant panel each having a part of piping constituting a refrigerant circuit, and a fan disposed in the vicinity of the heat exchanger,
    The predetermined main operation mode is a heating operation mode in which warm air heating is performed by flowing a refrigerant through the heat exchanger,
    The auxiliary operation mode is a radiant heating operation mode in which a refrigerant is supplied to the heat exchanger to perform hot air heating and a refrigeration panel is supplied to the radiant panel to perform radiant heating. Remote controller.
  3.  輻射暖房運転モードは、
     前記熱交換器に冷媒をして温風暖房を行い且つ前記輻射パネルに冷媒を流して輻射暖房を行うと共に、前記ファンによって発生する風量が所定値以上に維持される輻射暖房運転が行われる第1輻射暖房運転モードと、
     前記熱交換器に冷媒をして温風暖房を行い且つ前記輻射パネルに冷媒を流して輻射暖房を行うと共に、前記ファンによって発生する風量が前記所定値未満に維持される輻射微風暖房運転が行われる第2輻射暖房運転モードと、
     前記輻射暖房運転と前記輻射微風暖房運転とが自動的に切り換わる第3輻射暖房運転モードの少なくとも一つを含むことを特徴とする請求項2に記載のリモコン。
    Radiant heating operation mode is
    A heat is supplied to the heat exchanger to perform hot air heating, and a refrigerant is supplied to the radiant panel to perform radiant heating, and a radiant heating operation is performed in which the amount of air generated by the fan is maintained at a predetermined value or more. 1 radiant heating operation mode,
    The refrigerant is supplied to the heat exchanger to perform hot air heating, and the refrigerant is supplied to the radiation panel to perform radiant heating, and a radiant light wind heating operation is performed in which the air volume generated by the fan is maintained below the predetermined value. Second radiant heating operation mode,
    The remote control according to claim 2, comprising at least one of a third radiant heating operation mode in which the radiant heating operation and the radiant light breeze heating operation are automatically switched.
  4.  複数のモードに対応した互いに異なる表示を表示可能な表示部を備え、
     前記主運転モード切換ボタンによって暖房運転モードに対応した表示を前記表示部に表示させた後でなければ、前記補助運転モード切換ボタンによって切り換え可能なモードに対応した表示を前記表示部に表示させることができないことを特徴とする請求項1~3に記載のリモコン。
    A display unit capable of displaying different displays corresponding to a plurality of modes,
    If the display corresponding to the heating operation mode is not displayed on the display unit by the main operation mode switching button, the display corresponding to the mode switchable by the auxiliary operation mode switching button is displayed on the display unit. The remote controller according to any one of claims 1 to 3, wherein the remote controller cannot be used.
  5.  請求項1~4のいずれか1項に記載のリモコンを備えた空気調和機。 An air conditioner provided with the remote control according to any one of claims 1 to 4.
PCT/JP2011/073244 2010-10-12 2011-10-07 Remote controller and air conditioner equipped with same WO2012050066A1 (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
JP2010-230065 2010-10-12
JP2010230065A JP2012083039A (en) 2010-10-12 2010-10-12 Remote controller and air conditioner equipped with the same

Publications (1)

Publication Number Publication Date
WO2012050066A1 true WO2012050066A1 (en) 2012-04-19

Family

ID=45938295

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/JP2011/073244 WO2012050066A1 (en) 2010-10-12 2011-10-07 Remote controller and air conditioner equipped with same

Country Status (2)

Country Link
JP (1) JP2012083039A (en)
WO (1) WO2012050066A1 (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103810974A (en) * 2012-11-14 2014-05-21 广东美的制冷设备有限公司 Liquid crystal color display control circuit and air conditioner
CN103839505A (en) * 2012-11-23 2014-06-04 广东美的制冷设备有限公司 Liquid crystal color display control circuit and air conditioner

Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP6079852B1 (en) * 2015-10-30 2017-02-15 ダイキン工業株式会社 Air conditioner
JP7205088B2 (en) * 2018-06-29 2023-01-17 株式会社富士通ゼネラル Terminal device and air conditioner control method
CN112781188A (en) * 2020-12-25 2021-05-11 珠海格力电器股份有限公司 Air conditioner control method and device, storage medium and controller

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS63113239A (en) * 1986-10-30 1988-05-18 Toshiba Corp Air conditioner
JPH0886500A (en) * 1994-09-16 1996-04-02 Hitachi Ltd Remote controller for air conditioner
JP2002022250A (en) * 2000-07-05 2002-01-23 Mitsubishi Heavy Ind Ltd Wireless remote control unit for air conditioner

Family Cites Families (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP3523423B2 (en) * 1996-09-11 2004-04-26 東芝キヤリア株式会社 Air conditioner

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS63113239A (en) * 1986-10-30 1988-05-18 Toshiba Corp Air conditioner
JPH0886500A (en) * 1994-09-16 1996-04-02 Hitachi Ltd Remote controller for air conditioner
JP2002022250A (en) * 2000-07-05 2002-01-23 Mitsubishi Heavy Ind Ltd Wireless remote control unit for air conditioner

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103810974A (en) * 2012-11-14 2014-05-21 广东美的制冷设备有限公司 Liquid crystal color display control circuit and air conditioner
CN103839505A (en) * 2012-11-23 2014-06-04 广东美的制冷设备有限公司 Liquid crystal color display control circuit and air conditioner

Also Published As

Publication number Publication date
JP2012083039A (en) 2012-04-26

Similar Documents

Publication Publication Date Title
WO2012046850A1 (en) Air conditioner
JP4666061B2 (en) Air conditioner
JP5257462B2 (en) Air conditioner
EP2447622A2 (en) Heat pump type water heating apparatus
WO2012050066A1 (en) Remote controller and air conditioner equipped with same
JP2008082589A (en) Air conditioner
JP2018066502A (en) Air conditioner
JP5187373B2 (en) Air conditioner
JP5071100B2 (en) Air conditioner
JP6019773B2 (en) Air conditioner control device
JP5403078B2 (en) Air conditioner
JP4986443B2 (en) Air conditioner
JP2011085269A (en) Air conditioner
JP5315990B2 (en) Air conditioning apparatus and control method thereof
JP2001355890A (en) Air conditioner
KR20060128190A (en) A noise control method of air conditioner
JP2011075168A (en) Air conditioner
JP4559378B2 (en) Air conditioner
JP2013076565A (en) Air conditioner
JP6032260B2 (en) Air conditioner
KR100863303B1 (en) Method for controlling air conditionner
JP2019215134A (en) Composite heat source heat pump device
JP2002048382A (en) Air conditioner
JP2005147410A (en) Air conditioner
JP2022149719A (en) air conditioner

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 11832501

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 11832501

Country of ref document: EP

Kind code of ref document: A1