WO2015199286A1 - Dispositif d'éclairage intérieur ayant une fonction de purification d'air et procédé d'alarme de remplacement de filtre pour ce dernier - Google Patents

Dispositif d'éclairage intérieur ayant une fonction de purification d'air et procédé d'alarme de remplacement de filtre pour ce dernier Download PDF

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Publication number
WO2015199286A1
WO2015199286A1 PCT/KR2014/009399 KR2014009399W WO2015199286A1 WO 2015199286 A1 WO2015199286 A1 WO 2015199286A1 KR 2014009399 W KR2014009399 W KR 2014009399W WO 2015199286 A1 WO2015199286 A1 WO 2015199286A1
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WO
WIPO (PCT)
Prior art keywords
rotation amount
fan
alarm
lighting device
filters
Prior art date
Application number
PCT/KR2014/009399
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English (en)
Korean (ko)
Inventor
최종태
신현준
Original Assignee
비나텍 주식회사
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Application filed by 비나텍 주식회사 filed Critical 비나텍 주식회사
Publication of WO2015199286A1 publication Critical patent/WO2015199286A1/fr

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D46/00Filters or filtering processes specially modified for separating dispersed particles from gases or vapours
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D46/00Filters or filtering processes specially modified for separating dispersed particles from gases or vapours
    • B01D46/0084Filters or filtering processes specially modified for separating dispersed particles from gases or vapours provided with safety means
    • B01D46/0086Filter condition indicators
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D46/00Filters or filtering processes specially modified for separating dispersed particles from gases or vapours
    • B01D46/0002Casings; Housings; Frame constructions
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V21/00Supporting, suspending, or attaching arrangements for lighting devices; Hand grips
    • F21V21/10Pendants, arms, or standards; Fixing lighting devices to pendants, arms, or standards
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V33/00Structural combinations of lighting devices with other articles, not otherwise provided for
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V33/00Structural combinations of lighting devices with other articles, not otherwise provided for
    • F21V33/0088Ventilating systems

Definitions

  • the present invention relates to a lighting device, and more particularly, to an indoor lighting device having an air purification function to remove pollutants such as smoke, odors, dust, etc. generated in the room such as a dining table, kitchen, living room, etc. It relates to a filter replacement alarm method thereof.
  • LED Light Emitting Diode
  • LED lighting devices which can obtain high illuminance with low power and has a long lifespan, has been increasing in place of conventional incandescent or fluorescent lamps as a light source of a lighting device. For this reason, LED lighting devices of various products on the market are being supplied one after another. The LED lighting device also performs only the primary lighting function of providing light in a dark place.
  • the indoor lighting apparatus provided with the air purification function with an illumination function is introduced.
  • This lighting device has a built-in filter for performing the air purification function.
  • the filter built into the lighting device must be replaced periodically, which is cumbersome because the user must remember and replace the filter replacement cycle. If the user misses the replacement cycle of the filter, there is a problem of poor air purification. On the contrary, it may be considered to replace the filter shorter than the actual service life, but this causes a problem of wasting more usable filters.
  • the replacement cycle of the filter may be different from each other.
  • an object of the present invention to provide an indoor lighting device having an air purification function for informing a user of a replacement time of a filter, and an alarm replacing method of the filter thereof.
  • Another object of the present invention is to provide an indoor lighting device having an air purifying function capable of adjusting the height of a lighting device installed on a ceiling, and an alarm changing method thereof.
  • the present invention provides an indoor lighting device having an air purification function including an illuminator and a controller.
  • the illuminator includes a case and a fan, a plurality of filters and a lighting module are installed inside the case, and a plurality of filters are provided under the fan to purify the air sucked in accordance with the driving of the fan.
  • the lighting module is installed around the, and provided with a communication unit installed in the case.
  • the controller controls the driving of the lighting module of the illuminator and the fan through communication with the communication unit of the illuminator, and counts the rotation amount of the fan to alarm the replacement cycle of the plurality of filters.
  • the controller counts the rotation amount of the fan and stores the cumulative rotation amount, and when the stored cumulative rotation amount is the first rotation amount, a preliminary alarm for notifying the replacement cycle of the plurality of filters. You can output
  • the controller may output a main alarm when the stored cumulative rotation amount has passed the first rotation amount and is the second rotation amount.
  • the controller may output a preliminary alarm or a main alarm as light output from the lighting module of the illuminator.
  • the controller when the reset signal is input after one of the preliminary alarm and the main alarm is output, the controller resets the cumulative rotation amount of the fan and counts the rotation amount of the fan again. can do.
  • the controller includes a transceiver, an input unit, a storage unit, an alarm unit and a control unit.
  • the transceiver unit communicates with the communication unit of the illuminator.
  • the input unit receives a user selection signal for controlling the illuminator.
  • the storage unit stores the accumulated rotation amount counting the rotation amount of the fan, and stores at least one set rotation amount for notifying the replacement cycle of the plurality of filters.
  • the alarm unit outputs an alarm.
  • the control unit transmits a control signal for controlling the driving of the fan and the lighting module to the illuminator through the transceiver, and informs an exchange period of the plurality of filters when the stored cumulative rotation amount is the set rotation amount. Control to output through the alarm unit.
  • the set rotation amount may include a first rotation amount for outputting a preliminary alarm and a second rotation amount for outputting a main alarm.
  • the control unit outputs a preliminary alarm indicating an exchange period of the plurality of filters through the alarm unit when the stored cumulative rotation amount is the first rotation amount, and the stored cumulative rotation amount has passed the first rotation amount.
  • the main alarm may be controlled to be output through the alarm unit.
  • the controller may include a dedicated remote control, a smartphone or a tablet.
  • the illuminator includes the case, a fan, a plurality of filters, a lighting module and a communication unit.
  • the case is open at the bottom and has air vents formed laterally at the top.
  • the fan is installed at an upper portion of the inside of the case, and sucks air through the lower portion of the case and discharges it through the air discharge hole of the case.
  • the plurality of filters are installed inside the case, and are detachably installed in a vertical direction under the fan, and purify the air sucked in accordance with the driving of the fan.
  • the lighting module is installed around the plurality of filters.
  • the communication unit is installed in the case and communicates with the controller.
  • the plurality of filters may include a plate filter, a deoiling filter, a degassing filter, and a deodorizing filter which are sequentially installed inward from the bottom of the case.
  • the illuminator further includes a ceiling mount that is installed on the ceiling, and a variable length connector that can be connected to the case and the ceiling mount but is detachably coupled to the case and the length can be adjusted up and down. It may include.
  • the connector is installed inside the cable for supplying power to the illuminator, the cable is wound or coiled in the form of a coil so as to stretch in accordance with the vertical length adjustment of the connector It may be imparted to the connector in the overlapping form.
  • the present invention also provides an indoor lighting device having an air purification function including an illuminator and a controller.
  • the illuminator is provided with an illumination module, and purifies the air sucked by the driving of the fan through a plurality of filters and then discharges it to the outside.
  • the controller controls driving of the lighting module of the illuminator and the fan, and stores the cumulative rotation amount by counting the rotation amount of the fan, and when the stored cumulative rotation amount is a preset rotation amount, the replacement cycle of the plurality of filters is performed.
  • the rotation amount may be calculated as the product of the operating time and the operating speed of the fan, or may be the operating time of the fan.
  • the present invention also provides a lighting module having a lighting module for purifying the air sucked in accordance with the driving of the fan through a plurality of filters and then discharged to the outside, a controller for controlling the lighting module of the illuminator and the driving of the fan.
  • a filter replacement alarm method for an indoor lighting device comprising: the controller counting the rotation amount of the fan and storing the cumulative rotation amount, and the controller is configured to store the plurality of cumulative rotation amounts when the stored rotation amount is a preset rotation amount. It provides a filter replacement alarm method of the indoor lighting device comprising the step of alarming the replacement cycle of the filter.
  • the controller outputs a preliminary alarm for notifying the replacement cycle of the plurality of filters when the cumulative rotation amount of the fan is the first rotation amount.
  • the controller may include outputting a main alarm when the cumulative rotation amount of the fan passes the first rotation amount and the second rotation amount.
  • the alarming step may output a preliminary alarm or a main alarm as light output from the lighting module of the illuminator.
  • the step of alarming, if the reset signal is input after the controller outputs one of the preliminary alarm and the main alarm, the cumulative amount of rotation of the fan Resetting may further include counting the rotation amount of the fan again.
  • the rotation amount may be calculated as the product of the operating time and the operating speed of the fan, or may be the operating time of the fan.
  • the controller counts the rotation amount of the fan and stores the accumulated rotation amount, and when the cumulative rotation amount is the set rotation amount, alarming the replacement cycle of the plurality of filters, informing the user of the replacement time of the filter to replace the filter Instruct the filter to be replaced at regular intervals.
  • the indoor lighting device according to the present invention has a structure in which the illuminator is installed through a connecting pipe that can adjust the height of the ceiling, the height of the illuminator installed on the ceiling can be easily adjusted as necessary. Since the connector is detachably coupled to the case of the illuminator, the packaging can be separated into the case and the connector when the indoor lighting device is packaged, thereby reducing the size of the package compared to the case where the connector and the case are integrated. . Since it can be separated into a case and a connection pipe, there is an advantage that can provide convenience in transporting the indoor lighting device.
  • the cable is installed in the connection pipe, it is possible to prevent the cable from being exposed to the outside.
  • FIG. 1 is a schematic view showing a state in which an indoor lighting device having an air purification function according to an embodiment of the present invention is installed on a table.
  • FIG. 2 is a block diagram showing a detailed configuration of the controller of FIG.
  • 3 and 4 are perspective views showing the illuminator of FIG.
  • FIG. 5 is a cross-sectional view showing the illuminator of FIG. 3.
  • FIG. 6 and 7 are perspective views showing an extended state of the connector of the illuminator of FIG.
  • FIG. 8 is a cross-sectional view showing the illuminator of FIG. 6.
  • FIG. 9 is a flowchart illustrating a filter replacement alarm method of an indoor lighting device having an air purification function according to an embodiment of the present invention.
  • FIG. 1 is a schematic view showing a state in which an indoor lighting device having an air purification function according to an embodiment of the present invention is installed on a table.
  • an indoor lighting device 100 includes an illuminator 10 having a process purification function and a controller 90 for controlling driving of the illuminator 10. .
  • the illuminator 10 includes a lighting module 50 that performs an illumination function to adjust the brightness around the dining table 120, and the plurality of filters 40 may be configured to supply air sucked in accordance with driving of the fan 30. After passing through, purify and exhaust to the outside.
  • the illuminator 10 has a form in which the fan 30, the filter 40, and the lighting module 50 are embedded in the case 20, and the purified air passes through the filter 40 at the upper part of the case 20.
  • An air discharge hole 23 for discharging the air is formed.
  • the illuminator 10 has a fan 30, a plurality of filters 40, and a lighting module 50 installed inside the case 20, and a plurality of fans for purifying the air sucked in accordance with the driving of the fan 30.
  • the filter 40 is installed below the fan 30.
  • the illuminator 10 includes a communication module 60 that is provided with an illumination module 50 around the plurality of filters 40 and installed in the case 20.
  • the controller 90 controls driving of the lighting module 50 and the fan 30 of the illuminator 10, counts the rotation amount of the fan 30, stores the accumulated rotation amount, and stores the accumulated rotation amount. When the rotation amount is set, the replacement cycle of the plurality of filters 40 is alarmed.
  • the controller 90 is a communication terminal capable of transmitting a control signal through communication with the communication unit 60 of the illuminator 10, for example, a dedicated remote controller, a smartphone, a tablet, or the like may be used, but is not limited thereto.
  • the indoor lighting device 100 is installed on the ceiling 110 on the dining table 120 , but is not limited thereto.
  • the indoor lighting device 100 discloses an example of sucking and purifying the steam generated from the food 130 placed on the dining table 120 and surrounding air.
  • the illuminator 10 is installed in a form suspended from the ceiling 110 so that the length can be adjusted vertically up and down through the ceiling mount 70 installed on the ceiling 110 and the connector 80 connected to the ceiling mount 70. do.
  • FIG. 2 is a block diagram showing a detailed configuration of the controller 90 of FIG.
  • the controller 90 includes a transceiver 93, an input 91, a storage 95, an alarm 97, and a controller 99.
  • the transceiver 93 communicates with the communication unit 60 of the illuminator 10.
  • the transceiver 93 transmits a control signal for controlling the driving of the fan 30 or the lighting module 50 to the communication unit 60 of the illuminator 10 under the control of the controller 99.
  • the transceiver 93 may be a short-range communication method as a communication method.
  • an infrared communication, a Bluetooth communication, a Zigbee communication method may be used as the short range communication method, but is not limited thereto.
  • the input unit 91 transmits a selection signal input from the user, for example, a signal input in connection with various function settings and function control of the illuminator 10 to the controller 99.
  • a keypad, a touch pad, a touch screen, or the like may be used, but is not limited thereto.
  • the storage unit 95 stores a program necessary for controlling the operation of the illuminator 10 and information generated while executing the program.
  • the storage unit 95 stores an execution program for monitoring and alarming the replacement cycle of the plurality of filters (40).
  • the storage unit 95 stores the set rotation amount which is a reference for the replacement cycle of the plurality of filters 40.
  • the storage unit 95 stores the cumulative rotation amount of the fan 30 under the control of the controller 99. When the reset signal is input through the input unit 91, the storage unit 95 resets the accumulated rotation amount under the control of the controller 99.
  • the set rotation amount is set based on the cumulative rotation amount of the fan 30 corresponding to the replacement cycle of the plurality of filters 40. That is, since the plurality of filters 40 perform the function of purifying the air by the operation of the fan 30, the replacement cycle of the plurality of filters 40 has a correlation with the operating time and the operating speed of the fan 30. Have At this time, the rotation amount of the fan 30 may be calculated as a product of the operating time and the operating speed of the fan 30. Alternatively, the rotation amount of the fan 30 may reflect only the operating time of the fan 30. For example, when the rotation amount of the fan 30 considers only the operating time of the fan 30, there may be a case in which the operating speed of the fan 30 is one or there is no large deviation even if there are a plurality of operating speed steps.
  • the set rotation amount may be set together with a predetermined time in addition to the cumulative rotation amount according to the use of the fan 30.
  • the reason for setting the predetermined period together with the set rotation amount is to replace the plurality of filters 40 when the predetermined period is reached even though the usage amount of the fan 30 is low to fill the set rotation amount. Since the filter performance may deteriorate as time passes, it is preferable to replace the filter 40 after a certain period of time.
  • the predetermined period may be set in consideration of the service life of the filter 40.
  • the set rotation amount includes a first rotation amount and a second rotation amount.
  • the first rotation amount is a point in time of outputting a preliminary alarm informing the replacement cycle of the plurality of filters 40.
  • the second amount of rotation is the point in time at which the main alarm for informing the replacement cycle of the plurality of filters 40 is output.
  • the second rotation amount is set longer than the first rotation amount.
  • the first and second rotation amounts may be set in a default form or may be set according to a user's selection signal through the input unit 91. For example, the first and second rotation amounts may be set to 800 hours and 1000 hours based on the operating time of the fan 30.
  • the controller 90 When the cumulative operating time (cumulative rotation amount) of the fan 30 reaches 800 hours (first rotation amount), the controller 90 outputs a preliminary alarm. When the cumulative operating time (cumulative rotation amount) of the fan 30 reaches 1000 hours (second rotation amount), the controller 90 outputs a main alarm.
  • the reason for setting the first and second rotation amounts with the set rotation amount is as follows. Although it may be provided with the spare filter 40 which a user can replace, in order to give time to purchase the replaceable filter 40, when the spare filter 40 is not provided, this implementation is carried out. In the example, the first rotation amount outputting the preliminary alarm is set before outputting the main alarm.
  • the alarm may be set to be output only once, and the rotation amount may be set to output the alarm three or more times.
  • the alarm unit 97 outputs an alarm when the replacement period of the filter 40 is reached under the control of the control unit 99.
  • the alarm unit 97 may output an alarm using sound, light, or vibration.
  • the alarm unit 97 is provided with an example in which the controller 90 is installed, but is not limited thereto.
  • the alarm unit 97 may be installed in the illuminator 10 or may be installed in the controller 90 and the illuminator 10, respectively.
  • the light emitted from the lighting module 50 of the illuminator 10 may be used for the alarm. For example, when the illuminator 10 receives a control signal according to an alarm through the controller 10, the illuminator 10 may blink an LED of the lighting module 50 to inform the user of an exchange cycle of the filter 40.
  • the controller 99 is a microprocessor that performs overall control operations of the controller 90 and the illuminator 10, and provides various control signals for controlling the illuminator 10.
  • the controller 99 controls the illumination function of the illuminator 10 and the air purification function through the plurality of filters 40 according to the operation of the fan 30.
  • the control unit 99 monitors the replacement cycle of the plurality of filters 40 to control alarms for the replacement cycle of the plurality of filters 40. That is, the controller 99 transmits a control signal for controlling the driving of the fan 30 and the lighting module 50 to the illuminator 10 through the transceiver 93.
  • the controller 99 counts the amount of rotation of the fan 30 to store the accumulated amount of rotation, and when the stored amount of rotation is the set amount of rotation, the controller 99 alerts the alarm unit 97 of an exchange cycle of the plurality of filters 40. Control to output through.
  • the controller 99 may perform an alarm of the replacement cycle of the filter 40 as follows. That is, the controller 99 outputs a preliminary alarm indicating the exchange cycle of the plurality of filters 40 through the alarm unit 97 when the stored cumulative rotation amount is the first rotation amount. The controller 99 controls to output the main alarm through the alarm unit 97 when the stored cumulative rotation amount has passed the first rotation amount and is the second rotation amount. On the other hand, if one of the preliminary alarm and the main alarm is output after the reset signal is input through the input unit 91, the control unit 99 resets the cumulative rotation amount of the fan 30 to reset the rotation amount of the fan 30 again. Count.
  • the controller 90 counts the rotation amount of the fan 30 to store the accumulated rotation amount, and when the cumulative rotation amount is set rotation amount by alarming the replacement cycle of the plurality of filters 40, The replacement time of the filter 40 may be notified to the user so that the filter 40 may be replaced according to the replacement cycle of the filter 40. Therefore, even if the user does not separately remember the replacement cycle for the plurality of filters 40, the user can easily perform the replacement for the plurality of filters 40 after recognizing the preliminary alarm or the main alarm output from the controller 90. Can be.
  • FIGS. 3 to 8 are perspective views showing the illuminator 10 of FIG. 5 is a cross-sectional view showing the illuminator 10 of FIG. 6 and 7 are perspective views showing a state in which the length of the connector 80 of the illuminator 10 of FIG. 1 is extended.
  • 8 is a cross-sectional view showing the illuminator 10 of FIG. 3 to 5 illustrate a state in which the length of the connector 80 is not extended, and FIGS. 6 to 8 illustrate a state in which the length of the connector 80 is extended.
  • the illuminator 10 includes a case 20, a fan 30, a plurality of filters 40, a lighting module 50, and a communication unit 60, and a ceiling mount 70. And it may further comprise a variable length connector (80).
  • the case 20 has an internal installation space, and an opening 21 is formed at the lower portion thereof, and an air discharge hole 23 is formed at the upper portion thereof in the lateral direction.
  • the fan 30, the plurality of filters 40, the lighting module 50, and the communication unit 60 are installed in the internal installation space of the case 20.
  • the case 20 is formed in a dome shape having an internal installation space, and a plurality of air discharge holes 23 are formed in a concentric manner in a discontinuous shape in the horizontal direction on the upper part of the dome.
  • the air discharge hole 23 formed in the horizontal direction discharges the air discharged from the fan 30 in the horizontal direction.
  • the fan 30 is installed in the upper part of the case 20, and sucks air through the lower part of the case 20 and discharges it through the air discharge hole 23 of the case 20.
  • the fan 30 is installed close to the air discharge hole 23 so that air can be smoothly discharged through the air discharge hole 23.
  • the plurality of filters 40 are installed in the case 20, and are detachably installed in a vertical direction under the fan 30, and purify the air sucked in accordance with the driving of the fan 30.
  • the filter housing 49 may be installed inside the case 20 to facilitate the detachment of the plurality of filters 40.
  • the plurality of filters 40 may include a plate filter 41, a deoiling filter 43, a deodorizing filter 45, and a deodorizing filter 45 that are sequentially installed inward from the bottom of the case 20.
  • the plate filter 41 is formed in a net shape and provides a passage through which a fluid such as air may move from the case 20 to the plurality of filters 40.
  • the plate filter 41 is detachably installed in the opening of the case 20.
  • the plate filter 41 may be detachably installed in the filter housing 49 located at the opening of the case 20.
  • the oil filter 43, the smoke filter 45, and the deodorization filter 45 may be stacked and installed from the bottom.
  • Deoiling filter 43 is in the form of a plate formed with a plurality of fine holes, primarily to filter the oil contained in the air.
  • the deoiling filter 43 may be a punching type, a cut bend type, a net type, a nonwoven fabric type, etc., in which a plurality of holes are formed in a metal or plastic material, but is not limited thereto.
  • the deoiling filter 43 may be detachably installed in the filter housing 49 above the plate filter 41.
  • the degassing filter 45 is a filter for removing smoke.
  • the degassing filter 45 may be installed in a stacked manner on top of the deoiling filter 43.
  • HEPA High Efficiency Particulate Air
  • filter may be used as the demineralization filter 45, but is not limited thereto.
  • Deodorization filter 45 removes the smell contained in the inhaled air.
  • Deodorization filter 45 may be installed in a stacked manner on top of the deodorization filter 45.
  • the deodorizing filter 45 includes activated carbon having a deodorizing function.
  • the air finally purified through the deodorization filter 45 passes through the fan 30 and is discharged to the outside through the air discharge hole 23 of the case 20.
  • the lighting module 50 is installed around the plurality of filters 40.
  • the lighting module 50 may include an LED substrate 51, an LED power supply 53, and a diffusion plate 55.
  • the LED substrate 51 includes a plurality of LEDs for outputting light for directing illumination through the opening 21 of the case 20.
  • the plurality of LEDs are disposed in the space exposed between the plate filter 41 and the case 20 to output light to the outside through the opening 21 portion exposed to the outside of the plate filter 41.
  • the LED substrate 51 includes an LED driving driver for processing a control signal transmitted through the communication unit 60.
  • the LED driving driver can produce various lighting by adjusting brightness and color through driving control of a plurality of LEDs.
  • the LED driving driver may control the driving of the fan 30 according to the control signal received through the communication unit 60.
  • the LED power supply unit 53 receives power from the outside and converts the power into the power required to drive the LED.
  • a switching mode power supply (SMPS) may be used.
  • the diffusion plate 55 is formed to cover the open part 21 of the exposed case 20 outside the plate filter 41, and serves to diffuse the light output from the LED substrate 51.
  • the diffusion plate 55 is detachably installed between the plate filter 41 and the case 20.
  • the communication unit 60 is installed in the case 20 and performs communication with the transceiver unit 93 of the controller 90.
  • the communication unit 60 uses a short range communication method as a communication method.
  • the communication unit 60 receives a control signal for controlling the driving of the fan 30 or the lighting module 50 from the controller 90 and transmits the control signal to the lighting module 50 and the fan 30.
  • the lighting module 50 and the fan 30 are driven according to the control signal.
  • the communication unit 60 may be installed outside or inside the case 20, and when installed inside, the communication unit 60 may be installed on the LED substrate 51 of the LED module.
  • the case 20 is installed on the ceiling via the ceiling mount 70 and the variable length connector 80.
  • the ceiling mount 70 performs the function of a bracket that allows the connector 80 connected to the case 20 to be installed on the ceiling.
  • the connecting pipe 80 connects the case 20 and the ceiling mount 70 and has a form in which the vertical length is adjustable.
  • This connector 80 includes an outer connector 81, an inner connector 83 and a height adjustment stopper 85.
  • the external connector 81 is fixedly installed in the case 20.
  • the inner connector 83 is inserted into the outer connector 81, the upper part is fixedly installed on the ceiling mount 70.
  • the inner connecting pipe 83 is provided with a plurality of fixing holes 84 at regular intervals in the longitudinal direction.
  • the height adjustment stopper 85 is installed at the upper end of the outer connecting pipe 81, and has a stopper pin 86 that can move back and forth elastically.
  • the height adjusting stopper 85 has a stopper pin 86 inserted into the fixing hole 84 of the inner connecting pipe 83 to fix the outer connecting pipe 81 to the inner connecting pipe 83.
  • the external connector 81 can be moved up and down with respect to the internal connector 83 by moving the stopper pin 86 forward and backward, and after the stopper pin 86 is moved to an appropriate position, the internal connector 83 By inserting into the fixing hole 84 of), the position of the case 20 can be fixed.
  • connection pipe 80 is detachably installed on the upper portion of the case 20. Therefore, when packaging or transporting the indoor lighting device 100, by separating the connection pipe 80 and the case 20 can provide convenience during packaging and transport.
  • the connector pipe 80 is provided with a cable 89 for supplying power to the illuminator 10 therein.
  • the cable 89 is installed inside the inner connection pipe 83.
  • the cable 89 has a length that is at least longer than the length of the connector 80 with the longest length.
  • the cable 89 may be twisted in the form of a coil so as to be stretched according to the vertical length adjustment of the connector 80, or may be installed in the connector 80 in a plurality of layers.
  • connection pipe 80 has been disclosed an example consisting of two stages, but is not limited thereto. In other words, the connecting pipe 80 may be formed in multiple stages of three or more stages.
  • the outer connecting pipe 81 is moved downward with respect to the inner connecting pipe 83 to adjust the position of the case 20.
  • the stopper pin 86 is inserted into the fixing hole 84 of the inner connector 83 to fix the outer connector 81 to the inner connector 83. By doing so, the position of the adjusted case 20 is fixed.
  • the position of the case 20 may be adjusted again by performing the above-described downward movement.
  • the indoor lighting device 100 since the indoor lighting device 100 according to the present embodiment has a structure in which the illuminator 10 is installed through the connecting pipe 80 that can adjust the height of the ceiling, the height of the illuminator 10 installed on the ceiling is increased. Can be easily adjusted as needed.
  • the cable 89 wound in the form of a coil since the cable 89 wound in the form of a coil is installed in the connection pipe 80, the cable 89 may be prevented from being exposed to the outside.
  • FIGS. 1, 2, 9 and 10 Such a filter replacement alarm method of the indoor lighting device 100 according to the present embodiment will be described with reference to FIGS. 1, 2, 9 and 10 as follows.
  • 9 is a flow chart according to the filter replacement alarm method of the indoor lighting device 100 having an air purification function according to an embodiment of the present invention.
  • 10 is a detailed flowchart according to the alarming step of FIG.
  • step S10 the controller 90 counts the amount of rotation of the fan 30 and stores the accumulated amount of rotation.
  • step S20 it is determined whether the cumulative rotation amount of the fan 30 reaches the first rotation amount in step S21.
  • step S21 If the determination result of step S21 is not reached, the controller 90 performs step S10.
  • step S21 When the determination result of step S21 is reached, the controller 90 outputs a preliminary alarm through the alarm unit 97 in step S23.
  • step S25 the controller 90 determines whether the reset signal is input through the input unit 91.
  • step S25 If the determination result in step S25 is input, the controller 90 resets the accumulated rotation amount of the fan 30 in step S35. The controller 90 performs step S10.
  • step S25 If it is not input as a result of the determination in step S25, it is determined whether or not the cumulative rotation amount of the fan 30 has reached the second rotation amount in step S27.
  • step S27 If the determination result in step S27 is not reached, the controller 90 counts and accumulates the rotation amount of the fan 30 in step S29, and then performs the process again from step S25.
  • step S27 When the determination result of step S27 is reached, the controller 90 outputs the main alarm through the alarm unit 97 in step S31.
  • step S33 the controller 90 determines whether or not the reset signal is input through the input unit 91.
  • step S35 the controller 90 resets the accumulated rotation amount of the fan 30.
  • the controller 90 performs step S10.

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Disinfection, Sterilisation Or Deodorisation Of Air (AREA)
  • Air Conditioning Control Device (AREA)

Abstract

La présente invention concerne un dispositif d'éclairage intérieur ayant une fonction de purification de l'air et un procédé d'alarme de remplacement de filtre pour ce dernier, et le but de la présente invention est de notifier un utilisateur d'un temps pour remplacer un filtre. Un dispositif d'éclairage d'intérieur selon la présente invention comprend un illuminateur et un dispositif de commande. L'illuminateur comporte : un boîtier dans lequel un ventilateur, une pluralité de filtres, et un module d'éclairage sont installés, la pluralité de filtres de purification d'air aspiré selon une opération du ventilateur étant installés sous le ventilateur et le module d'éclairage étant installé autour de la pluralité de filtres; et une unité de communication installée sur le boîtier. En outre, l'unité de commande commande les opérations du module d'éclairage et le ventilateur de l'illuminateur par l'intermédiaire d'une communication avec l'unité de communication de l'illuminateur et notifie une période de remplacement de la pluralité de filtres en comptant la quantité de rotation du ventilateur.
PCT/KR2014/009399 2014-06-26 2014-10-07 Dispositif d'éclairage intérieur ayant une fonction de purification d'air et procédé d'alarme de remplacement de filtre pour ce dernier WO2015199286A1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
KR10-2014-0078771 2014-06-26
KR1020140078771A KR20160001754A (ko) 2014-06-26 2014-06-26 공기 정화 기능을 갖는 실내용 조명 장치 및 그의 필터 교환 알람 방법

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WO2015199286A1 true WO2015199286A1 (fr) 2015-12-30

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KR102333859B1 (ko) * 2019-08-07 2021-12-03 전대훈 공기정화 기능을 갖는 자동승강 조명장치 및 이를 포함하는 조명시스템
KR102327519B1 (ko) * 2019-10-29 2021-11-17 주식회사 알토 조명 장치
KR102100221B1 (ko) * 2019-11-06 2020-04-13 정화찬 천장형 공기청정기
KR102433226B1 (ko) * 2020-05-15 2022-08-17 어업회사법인 주식회사 물고기마을 양식 대상 관리 시스템 및 방법

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