EP4310236A1 - Measuring unit of household appliance - Google Patents

Measuring unit of household appliance Download PDF

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Publication number
EP4310236A1
EP4310236A1 EP22186052.1A EP22186052A EP4310236A1 EP 4310236 A1 EP4310236 A1 EP 4310236A1 EP 22186052 A EP22186052 A EP 22186052A EP 4310236 A1 EP4310236 A1 EP 4310236A1
Authority
EP
European Patent Office
Prior art keywords
measuring unit
casing
household appliance
measuring
tunnel
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
EP22186052.1A
Other languages
German (de)
French (fr)
Inventor
Dominik Kowalczyk
Piotr JABLOÑSKI
Alexander John
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
BSH Hausgeraete GmbH
Original Assignee
BSH Hausgeraete GmbH
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 BSH Hausgeraete GmbH filed Critical BSH Hausgeraete GmbH
Priority to EP22186052.1A priority Critical patent/EP4310236A1/en
Publication of EP4310236A1 publication Critical patent/EP4310236A1/en
Pending legal-status Critical Current

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Classifications

    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F34/00Details of control systems for washing machines, washer-dryers or laundry dryers
    • D06F34/14Arrangements for detecting or measuring specific parameters
    • D06F34/18Condition of the laundry, e.g. nature or weight
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F34/00Details of control systems for washing machines, washer-dryers or laundry dryers
    • D06F34/14Arrangements for detecting or measuring specific parameters
    • D06F34/22Condition of the washing liquid, e.g. turbidity
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F34/00Details of control systems for washing machines, washer-dryers or laundry dryers
    • D06F34/14Arrangements for detecting or measuring specific parameters
    • D06F34/26Condition of the drying air, e.g. air humidity or temperature
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F39/00Details of washing machines not specific to a single type of machines covered by groups D06F9/00 - D06F27/00 
    • D06F39/02Devices for adding soap or other washing agents
    • D06F39/024Devices for adding soap or other washing agents mounted on the agitator or the rotating drum; Free body dispensers
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F34/00Details of control systems for washing machines, washer-dryers or laundry dryers
    • D06F34/04Signal transfer or data transmission arrangements
    • D06F34/05Signal transfer or data transmission arrangements for wireless communication between components, e.g. for remote monitoring or control

Definitions

  • the present invention relates to a measuring unit of a household appliance, especially a washing machine or a tumble dryer.
  • the measuring unit collects the household appliance parameters and comprises: a housing,an energy storage, a PCB electronics and a measuring sensor.
  • the measuring unit is wirelessly connected with the household appliance.
  • Measuring units are known from the state of the art. There are many solutions available on the market for measuring different type of values e.g. temperature, humidity, pressure etc. with the capability of wireless data transmission to a receiving device. Measuring units are widely used in today's high-end household appliances e.g. in washing machines or tumble dryers. Sensors provided in such appliances provide a real-time monitoring and feedback to improve certain functions. The washing parameters such as temperature, water amount, rotating speed, spinning time are likely to influence the washing or drying process therefore measuring and adjusting of those parameters are significant for obtaining the satisfactory washing or drying effect. Accurate humidity measurement can bring significant savings in both energy and costs. By knowing the humidity level it is possible to avoid over-drying and overheating the air. Exact humidity data helps to optimize processes. Depending on the product, it can mean for example longer shelf life or improved stability. Controlling process humidity is also crucial for safety reasons.
  • Wireless measuring units are also known from the state of the art.
  • the wireless measuring unit is designed in such a way to be able to work in a drum of the washing machine or tumble dryer machine and transfer data such as temperature, pressure, air humidity and moisture of the load to an external hub.
  • the patent document WO 2020/ 089 198 A1 discloses a method involving the following: detecting one or more pieces of air humidity information indicative of relative air humidity within a treatment space of an air-guiding domestic appliance, wherein the one or more pieces of air humidity information are detected by means of at least one air humidity sensor; and determining a piece of drying information indicative of a finishing time of a drying process carried out by the air-guiding domestic appliance, wherein the drying information is determined on the basis of the one or more pieces of air humidity information.
  • the document also discloses a device for carrying out and/or controlling this method, a system having one or more devices for carrying out and/or controlling this method and a computer program for carrying out and/or controlling this method by means of a processor. The results of collecting and analyzing washing parameters provide valuable information for the optimization of washing programs for satisfactory washing result.
  • the patent document WO 03/ 100 153 A1 discloses a sensor device adapted to detect, identify and/or measure a chemical and/or physical characteristic upon placement of the device into an environment, especially a liquid medium for which monitoring is sought.
  • the patent document DE 40 31 981 A1 discloses an unit for measuring temperature and moisture degree of the washing and chemical composition of the washing solution in the washing drum of a washing machine.
  • the temperature measuring sensor, moisture measuring sensor and the sensor for measuring the chemical composition are incorporated into a container located in the washing drum together with the washing.
  • a receiver is located outside the drum for receiving the measuring results, which are led on to the control unit of the washing machine for evaluation.
  • Another object of the present invention is to provide a measuring unit of improved, reliable functioning.
  • a measuring unit of household appliance especially a washing machine or a tumble dryer whereby the measuring sensor is placed in a tunnel, which tunnel extends into the housing of the measuring unit.
  • the measuring unit of the household appliance is provided for collecting the household appliance parameters.
  • the measuring unit is able to work in a drum of a washing machine or in a drum of a tumble dryer and is able to collect process parameters like temperature, pressure, air humidity, moisture of the load etc.
  • the measuring unit is wirelessly connected with the household appliance to transfer the collected data. All collected parameters can be stored also in an external hub.
  • the measuring unit is wirelessly connected with the appliance by standard wireless communication connection like Wi-Fi, Bluetooth, WLAN etc.
  • the purpose of collecting respective data is to supervise and adjust the parameters of processes of household appliances in order to improve the processes effectiveness.
  • the housing is preferably round, for example of spherical or elipsoid shape without sharp edges which allows the measuring unit to be installed almost everywhere inside the household appliance e.g. in a drum of a washing machine or tumble dryer.
  • the measuring unit shape facilitates the movement of the unit inside the drum and does not affect the movement of clothes inside the drum.
  • the measuring unit comprises also an energy storage, a PCB electronics and a measuring sensor.
  • An energy storage of the measuring unit is preferably a Li-Ion battery as this type of battery is much more resistant to the working conditions than other known batteries.
  • the Li-Ion battery cells are much more resistant to the temperature and vibrations and they does not lose their capacity over time of its use in conditions of high temperature and humidity.
  • the measuring unit preferably has a 4-layer PCB electronics to reduce the noise impact on the electronics.
  • the measuring unit comprises a measuring sensor or a group of sensors which measure different types of parameters like temperature, pressure, humidity, speed etc.
  • the measuring sensor is placed in a tunnel.
  • the tunnel can e.g. be a simple protrusion of a shape adapted to the measuring sensor dimensions.
  • the positive effect is that the measuring sensor is isolated from the inner heat coming from the energy storage and electronics. Isolated measuring sensor measures the temperature only outside the measuring unit so the parameter is measured more precisely.
  • the second purpose of the tunnel is to protect the measuring sensor from fluff from clothes which disturbs the reading of the ambient conditions by the measuring sensor.
  • the tunnel plays an additional role in that it protects the measuring sensor against vibrations and impacts.
  • the tunnel is extending into the housing of the measuring unit. The positive effect is that in such position of the tunnel with the measuring sensor that the sensor is protected against fluffy from clothes in the most effective way. Additionally, at the center area of the measuring unit is an area with the lowest vibration level which is significant for providing an accurate measurements of the ambient.
  • the measuring unit has a magnet.
  • the magnet is provided on the surface of the measuring unit or inside the casing in order to attach the measuring unit to the metal surface of the drum during cycle.
  • the measuring unit can be attached to the drum when the load of the drum is low. The positive effect is that the measuring unit is protected against hitting the metal drum which could cause an additional noise.
  • the measuring unit has a USB port for wire charging.
  • the energy storage allows the measuring unit to work for limited period of time.
  • the measuring unit is provided with a USB port thanks to which the energy storage of the measuring unit can be recharged in a simple manner by the user.
  • the USB port is designed to be waterproof.
  • the measuring unit has an induction coil for inductive charging.
  • the other way to recharge the measuring unit is the inductive charging which is possible thanks to the induction coil placed inside the measuring unit casing. This feature assure possibility of inductive charging of the measuring unit with no extra wires and sockets. Inductive charging capability make daily use of the measuring unit very easy and convenient.
  • the measuring unit has an energy harvesting module.
  • Energy harvesting is the process by which energy is derived from ambient energy and convert it into energy which is supplied to the energy storage of the wireless measuring unit.
  • the energy harvesting module is responsible for gathering of the kinetic energy during the movement or vibration of the measuring unit inside the rotating drum of the home appliance. The gathered energy is collecting inside the super capacitor. In the next step energy collected in the capacitor is used in the next step to charge the energy storage. Thanks to the energy harvesting module the time of use of the measuring unit is significantly extended and there is no involvement of the user needed.
  • the housing is made of material resistant to mechanical impact.
  • the measuring unit housing is exposed to damages which can be done by zippers or other metal elements of clothes.
  • casing of the measuring unit has to be made of material resistant to small mechanical impact e.g. different types of plastic.
  • the measuring unit has an outer soft layer.
  • the measuring unit is placed in a drum of a household appliance and moves in different directions together with the washing or drying load.
  • the measuring unit hits the metal drum which is unavoidable when the measuring unit is freely inserted into the drum.
  • the impact of the measuring unit with the metal drum causes noise which is very uncomfortable for the user.
  • the casing of the measuring unit is provided with an outer soft layer thanks to which the measuring unit can hit the metal drum without negative consequences to the consumer.
  • the housing of the measuring unit comprises a first casing and a second casing connected to the first casing.
  • the first casing and the second casing are preferably round, spherical shape without sharp edges which allows the measuring unit to be installed almost everywhere inside the household appliance e.g. in a drum of a washing machine or tumble dryer.
  • the measuring unit shape facilitates the movement of the unit inside the drum and does not affect the movement of clothes inside the drum.
  • the first casing and the second casing are detachably connected to each other, e.g by screws. This provides easy access to the components of the measuring unit, specifically in case servicing action is needed, and guarantees sustainability of the measuring unit.
  • the first casing and the second casing are sealed by a seal which preferrably is placed on the circumference of the sphere to make the measuring unit water proof which is necessary to protect the inner components of the measuring unit and provide reliable functioning.
  • the tunnel may preferrably be located in the first center of the first casing and/or the second casing which means that the tunnel is made in the axis of the first casing and/or the second casing.
  • the tunnel may comprise a first part, which is shaped in the first casing and a second part which is shaped in the second casing.
  • a tunnel sealing may be provided between the first part of the tunnel and the second part of the tunnel.
  • the tunnel sealing may be a simple rubber sealing which helps to provide a proper tunnel insulation and measuring sensor protection, which is significant for proper functioning of the measuring unit.
  • the first casing and the second casing are made of rubber. Thanks to use a rubber for the casing, the measuring unit is not only convenient to use but also is waterproof and fluff proof.
  • the present invention enables a measuring unit for use in a household appliance, especially washing machine or tumble dryer, which is able to measure and collect the washing or drying parameters and are able to communicate wirelessly with the household appliance. Supervising the processes parameters helps to control the process and adjust the process parameters in order to achieve the best effectiveness of the household appliance.
  • Fig. 1 shows a household appliance 10, here a washing machine with a measuring unit 11 which is placed inside the drum of the household appliance 10.
  • the measuring unit 11 is provided inside the drum to collect data about the process.
  • the measuring unit 11 is wirelessly connected with the household appliance 10 to transmit collected data.
  • Fig. 2 shows a measuring unit 11 in isometric view.
  • the measuring unit 11 comprises a housing which comprises a first casing 12 and a second casing 13 connected to each other by screws. Between the first casing 12 and the second casing 13 a seal 14 is provided. As the measuring unit 11 works in a wet environment its internal components have to be protected.
  • Fig. 3 shows an exploded view of a measuring unit 11.
  • the measuring unit 11 housing comprises a first casing 12 and a second casing 13 which are sealed by a seal 14.
  • the first casing 12 and the second casing 13 have spherical shape. Between the first casing 12 and the second casing 13 all internal components of the measuring unit 11 has been shown.
  • the first casing 12 is connected to the second casing 13 by screws.
  • the measuring unit 11 has a tunnel 15 extending into the housing for placing a measuring sensor 17.
  • the tunnel 15 in this embodiment is a part of the first casing 12 and it is placed in the axis of the first casing 12.
  • the tunnel 15 and the first casing 12 constitutes one part and it was created in one moulding process.
  • the tunnel 15 is sealed by a tunnel sealing 16.
  • the tunnel sealing 16 is a standard rubber sealing.
  • the measuring sensor 17 is a standard sensor which is able to sense different parameters of the ambient.
  • the measuring unit 11 comprises a PCB electronics which is a standard printed circuit board.
  • the measuring unit 11 has an energy storage 18 which is charged by wires by using a USB port 20 placed on the external surface of the first casing 12.
  • the energy storage 18 can be charged also by energy harvesting module 23 which gather the kinetic energy and transfer it to charge the energy storage 18.
  • the energy storage 18 can be charged also by inductive charging. For this reason an induction coil 22 was provided inside the measuring unit 11.
  • the present invention enables a measuring unit for use in a household appliance, especially washing machine or tumble dryer which is able to measure and collect the washing or drying parameters and are able to communicate wirelessly with the household appliance. Supervising the processes parameters helps to control the process and adjust the process parameters in order to achieve the best effectiveness of the household appliance.

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  • Engineering & Computer Science (AREA)
  • Textile Engineering (AREA)
  • Control Of Washing Machine And Dryer (AREA)

Abstract

A measuring unit (11) of a household appliance (10) for collecting process parameters of the household appliance (10) comprises: a housing(12,13) an energy storage (18), a PCB electronics (19), and a measuring sensor (17). The measuring unit (11) is wirelessly connected with the household appliance (10) and the measuring sensor (17) is placed in a tunnel (15) which tunnel (15) extends into the housing (12, 13).The measuring unit is intended for use in a household appliance, especially washing machine or tumble dryer which is able to measure and collect the washing or drying parameters and are able to communicate wirelessly with the household appliance. Supervising the processes parameters helps to control the process and adjust the process parameters in order to achieve the best effectiveness of the household appliance.

Description

  • The present invention relates to a measuring unit of a household appliance, especially a washing machine or a tumble dryer. The measuring unit collects the household appliance parameters and comprises: a housing,an energy storage, a PCB electronics and a measuring sensor. The measuring unit is wirelessly connected with the household appliance.
  • Measuring units are known from the state of the art. There are many solutions available on the market for measuring different type of values e.g. temperature, humidity, pressure etc. with the capability of wireless data transmission to a receiving device. Measuring units are widely used in today's high-end household appliances e.g. in washing machines or tumble dryers. Sensors provided in such appliances provide a real-time monitoring and feedback to improve certain functions. The washing parameters such as temperature, water amount, rotating speed, spinning time are likely to influence the washing or drying process therefore measuring and adjusting of those parameters are significant for obtaining the satisfactory washing or drying effect. Accurate humidity measurement can bring significant savings in both energy and costs. By knowing the humidity level it is possible to avoid over-drying and overheating the air. Exact humidity data helps to optimize processes. Depending on the product, it can mean for example longer shelf life or improved stability. Controlling process humidity is also crucial for safety reasons.
  • Wireless measuring units are also known from the state of the art. The wireless measuring unit is designed in such a way to be able to work in a drum of the washing machine or tumble dryer machine and transfer data such as temperature, pressure, air humidity and moisture of the load to an external hub.
  • The patent document WO 2020/ 089 198 A1 discloses a method involving the following: detecting one or more pieces of air humidity information indicative of relative air humidity within a treatment space of an air-guiding domestic appliance, wherein the one or more pieces of air humidity information are detected by means of at least one air humidity sensor; and determining a piece of drying information indicative of a finishing time of a drying process carried out by the air-guiding domestic appliance, wherein the drying information is determined on the basis of the one or more pieces of air humidity information. The document also discloses a device for carrying out and/or controlling this method, a system having one or more devices for carrying out and/or controlling this method and a computer program for carrying out and/or controlling this method by means of a processor. The results of collecting and analyzing washing parameters provide valuable information for the optimization of washing programs for satisfactory washing result.
  • The patent document WO 03/ 100 153 A1 discloses a sensor device adapted to detect, identify and/or measure a chemical and/or physical characteristic upon placement of the device into an environment, especially a liquid medium for which monitoring is sought.
  • The patent document DE 40 31 981 A1 discloses an unit for measuring temperature and moisture degree of the washing and chemical composition of the washing solution in the washing drum of a washing machine. The temperature measuring sensor, moisture measuring sensor and the sensor for measuring the chemical composition are incorporated into a container located in the washing drum together with the washing. A receiver is located outside the drum for receiving the measuring results, which are led on to the control unit of the washing machine for evaluation.
  • It is the object of the present invention to provide a measuring unit of a household appliance which is able to measure parameters in improved way.
  • Another object of the present invention is to provide a measuring unit of improved, reliable functioning.
  • This object is solved by a measuring unit of household appliance, especially a washing machine or a tumble dryer whereby the measuring sensor is placed in a tunnel, which tunnel extends into the housing of the measuring unit. The measuring unit of the household appliance is provided for collecting the household appliance parameters. The measuring unit is able to work in a drum of a washing machine or in a drum of a tumble dryer and is able to collect process parameters like temperature, pressure, air humidity, moisture of the load etc. The measuring unit is wirelessly connected with the household appliance to transfer the collected data. All collected parameters can be stored also in an external hub. The measuring unit is wirelessly connected with the appliance by standard wireless communication connection like Wi-Fi, Bluetooth, WLAN etc. The purpose of collecting respective data is to supervise and adjust the parameters of processes of household appliances in order to improve the processes effectiveness.
  • The housing is preferably round, for example of spherical or elipsoid shape without sharp edges which allows the measuring unit to be installed almost everywhere inside the household appliance e.g. in a drum of a washing machine or tumble dryer. The measuring unit shape facilitates the movement of the unit inside the drum and does not affect the movement of clothes inside the drum.
  • The measuring unit comprises also an energy storage, a PCB electronics and a measuring sensor. An energy storage of the measuring unit is preferably a Li-Ion battery as this type of battery is much more resistant to the working conditions than other known batteries. The Li-Ion battery cells are much more resistant to the temperature and vibrations and they does not lose their capacity over time of its use in conditions of high temperature and humidity.
  • The measuring unit preferably has a 4-layer PCB electronics to reduce the noise impact on the electronics.
  • The measuring unit comprises a measuring sensor or a group of sensors which measure different types of parameters like temperature, pressure, humidity, speed etc. The measuring sensor is placed in a tunnel. The tunnel can e.g. be a simple protrusion of a shape adapted to the measuring sensor dimensions. The positive effect is that the measuring sensor is isolated from the inner heat coming from the energy storage and electronics. Isolated measuring sensor measures the temperature only outside the measuring unit so the parameter is measured more precisely. The second purpose of the tunnel is to protect the measuring sensor from fluff from clothes which disturbs the reading of the ambient conditions by the measuring sensor.
  • The tunnel plays an additional role in that it protects the measuring sensor against vibrations and impacts. The tunnel is extending into the housing of the measuring unit. The positive effect is that in such position of the tunnel with the measuring sensor that the sensor is protected against fluffy from clothes in the most effective way. Additionally, at the center area of the measuring unit is an area with the lowest vibration level which is significant for providing an accurate measurements of the ambient.
  • In another embodiment of the invention the measuring unit has a magnet. The magnet is provided on the surface of the measuring unit or inside the casing in order to attach the measuring unit to the metal surface of the drum during cycle. The measuring unit can be attached to the drum when the load of the drum is low. The positive effect is that the measuring unit is protected against hitting the metal drum which could cause an additional noise.
  • In a preferred embodiment of the invention the measuring unit has a USB port for wire charging. The energy storage allows the measuring unit to work for limited period of time. The measuring unit is provided with a USB port thanks to which the energy storage of the measuring unit can be recharged in a simple manner by the user. The USB port is designed to be waterproof.
  • In another embodiment of the invention the measuring unit has an induction coil for inductive charging. The other way to recharge the measuring unit is the inductive charging which is possible thanks to the induction coil placed inside the measuring unit casing. This feature assure possibility of inductive charging of the measuring unit with no extra wires and sockets. Inductive charging capability make daily use of the measuring unit very easy and convenient.
  • In a preferred embodiment of the invention the measuring unit has an energy harvesting module. Energy harvesting is the process by which energy is derived from ambient energy and convert it into energy which is supplied to the energy storage of the wireless measuring unit. The energy harvesting module is responsible for gathering of the kinetic energy during the movement or vibration of the measuring unit inside the rotating drum of the home appliance. The gathered energy is collecting inside the super capacitor. In the next step energy collected in the capacitor is used in the next step to charge the energy storage. Thanks to the energy harvesting module the time of use of the measuring unit is significantly extended and there is no involvement of the user needed.
  • In another embodiment of the invention the housing is made of material resistant to mechanical impact. During the washing or drying process the measuring unit housing is exposed to damages which can be done by zippers or other metal elements of clothes. For this reason casing of the measuring unit has to be made of material resistant to small mechanical impact e.g. different types of plastic.
  • In another embodiment of the invention the measuring unit has an outer soft layer. The measuring unit is placed in a drum of a household appliance and moves in different directions together with the washing or drying load. The measuring unit hits the metal drum which is unavoidable when the measuring unit is freely inserted into the drum. The impact of the measuring unit with the metal drum causes noise which is very uncomfortable for the user. To eliminate the noise the casing of the measuring unit is provided with an outer soft layer thanks to which the measuring unit can hit the metal drum without negative consequences to the consumer.
  • In an embodiment of the invention, the housing of the measuring unit comprises a first casing and a second casing connected to the first casing. The first casing and the second casing are preferably round, spherical shape without sharp edges which allows the measuring unit to be installed almost everywhere inside the household appliance e.g. in a drum of a washing machine or tumble dryer. The measuring unit shape facilitates the movement of the unit inside the drum and does not affect the movement of clothes inside the drum.
  • According to a preferred embodiment, the first casing and the second casing are detachably connected to each other, e.g by screws. This provides easy access to the components of the measuring unit, specifically in case servicing action is needed, and guarantees sustainability of the measuring unit.
  • Preferrably, the first casing and the second casing are sealed by a seal which preferrably is placed on the circumference of the sphere to make the measuring unit water proof which is necessary to protect the inner components of the measuring unit and provide reliable functioning.
  • In an embodiment where the housing comprises a first casing and the second casing, the tunnel may preferrably be located in the first center of the first casing and/or the second casing which means that the tunnel is made in the axis of the first casing and/or the second casing.
  • In a preferred embodiment of the invention where the tunnel extends into the first and the second casing, the tunnel may comprise a first part, which is shaped in the first casing and a second part which is shaped in the second casing. In such an embodiment a tunnel sealing may be provided between the first part of the tunnel and the second part of the tunnel. The tunnel sealing may be a simple rubber sealing which helps to provide a proper tunnel insulation and measuring sensor protection, which is significant for proper functioning of the measuring unit.
  • In a specific embodiment of the invention the first casing and the second casing are made of rubber. Thanks to use a rubber for the casing, the measuring unit is not only convenient to use but also is waterproof and fluff proof.
  • The present invention enables a measuring unit for use in a household appliance, especially washing machine or tumble dryer, which is able to measure and collect the washing or drying parameters and are able to communicate wirelessly with the household appliance. Supervising the processes parameters helps to control the process and adjust the process parameters in order to achieve the best effectiveness of the household appliance.
  • The construction of the invention, however, together with additional objects and corresponding advantages will be best understood from the following description of specific embodiments and in connection with the accompanying drawing.
  • In the drawing:
    • Fig. 1. shows a household appliance in isometric view,
    • Fig. 2. shows a measuring unit in isometric view, and
    • Fig. 3. shows an exploded view of the measuring unit.
  • In cooperation with attached drawing, the technical contents and detailed description of the present invention are described thereinafter according to a preferable embodiment being not used to limit its executing scope. Any equivalent variation and modification made according to appended claims is all covered by the claims claimed by the present invention.
  • In the following description of the preferred embodiments of the present invention, similar identical reference numbers designate identical of comparable components.
  • Fig. 1 shows a household appliance 10, here a washing machine with a measuring unit 11 which is placed inside the drum of the household appliance 10. The measuring unit 11 is provided inside the drum to collect data about the process. The measuring unit 11 is wirelessly connected with the household appliance 10 to transmit collected data.
  • Fig. 2 shows a measuring unit 11 in isometric view. The measuring unit 11 comprises a housing which comprises a first casing 12 and a second casing 13 connected to each other by screws. Between the first casing 12 and the second casing 13 a seal 14 is provided. As the measuring unit 11 works in a wet environment its internal components have to be protected.
  • Fig. 3 shows an exploded view of a measuring unit 11. The measuring unit 11 housing comprises a first casing 12 and a second casing 13 which are sealed by a seal 14. The first casing 12 and the second casing 13 have spherical shape. Between the first casing 12 and the second casing 13 all internal components of the measuring unit 11 has been shown. The first casing 12 is connected to the second casing 13 by screws. The measuring unit 11 has a tunnel 15 extending into the housing for placing a measuring sensor 17. The tunnel 15 in this embodiment is a part of the first casing 12 and it is placed in the axis of the first casing 12. The tunnel 15 and the first casing 12 constitutes one part and it was created in one moulding process. The tunnel 15 is sealed by a tunnel sealing 16. The tunnel sealing 16 is a standard rubber sealing. The measuring sensor 17 is a standard sensor which is able to sense different parameters of the ambient. The measuring unit 11 comprises a PCB electronics which is a standard printed circuit board. The measuring unit 11 has an energy storage 18 which is charged by wires by using a USB port 20 placed on the external surface of the first casing 12. The energy storage 18 can be charged also by energy harvesting module 23 which gather the kinetic energy and transfer it to charge the energy storage 18. The energy storage 18 can be charged also by inductive charging. For this reason an induction coil 22 was provided inside the measuring unit 11.
  • The present invention enables a measuring unit for use in a household appliance, especially washing machine or tumble dryer which is able to measure and collect the washing or drying parameters and are able to communicate wirelessly with the household appliance. Supervising the processes parameters helps to control the process and adjust the process parameters in order to achieve the best effectiveness of the household appliance.
  • REFERENCE SIGNS
  • 10
    household appliance
    11
    measuring unit
    12
    first casing
    13
    second casing
    14
    seal
    15
    tunnel
    16
    tunnel sealing
    17
    measuring sensor
    18
    energy storage
    19
    PCB electronics
    20
    USB port
    21
    magnet
    22
    induction coil
    23
    energy harvesting module

Claims (10)

  1. A measuring unit (11) of a household appliance (10) for collecting process parameters of the household appliance (10) and comprising: a housing(12,13) an energy storage (18), a PCB electronics (19), and a measuring sensor (17) where the measuring unit (11) is wirelessly connected with the household appliance (10) characterized in that
  2. the measuring sensor (17) is placed in a tunnel (15) which tunnel (15) extends into the housing (12, 13).The measuring unit (11) according to any of the preceding claims, characterized in that the measuring unit (11) has a magnet (21).
  3. The measuring unit (11) according any of the preceding claims, characterized in that the measuring unit (11) has a USB port (20) for wire charging.
  4. The measuring unit (11) according to any of the preceding claims, characterized in that the measuring unit (11) has an induction coil (22) for inductive charging.
  5. The measuring unit (11) according to any of the preceding claims, characterized in that the measuring unit (11) has an energy harvesting module (23).
  6. The measuring unit (11) according to any of the preceding claims, characterized in that the housing is made of material resistant to mechanical impact.
  7. The measuring unit (11) according to any of the preceding claims characterized in that the measuring unit (11) has an outer soft layer.
  8. The measuring unit (11) according to any of the preceding claims characterized in that the housing comprises a first casing (12) and a second casing (13) connected to the first casing.
  9. The measuring unit (11) according to claim 8, characterized in that the first casing (12) and the second casing (13) are made of rubber.
  10. The measuring unit (11) according to any of the preceding claims 8 to 9 characterized in that the first casing (12) and the second casing (13) are sealed by a seal (14).
EP22186052.1A 2022-07-20 2022-07-20 Measuring unit of household appliance Pending EP4310236A1 (en)

Priority Applications (1)

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EP22186052.1A EP4310236A1 (en) 2022-07-20 2022-07-20 Measuring unit of household appliance

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Application Number Priority Date Filing Date Title
EP22186052.1A EP4310236A1 (en) 2022-07-20 2022-07-20 Measuring unit of household appliance

Publications (1)

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EP4310236A1 true EP4310236A1 (en) 2024-01-24

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EP22186052.1A Pending EP4310236A1 (en) 2022-07-20 2022-07-20 Measuring unit of household appliance

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EP (1) EP4310236A1 (en)

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE4031981A1 (en) 1990-10-09 1992-04-16 Telefunken Electronic Gmbh Measuring unit for washing machines - for accurate measurement of moisture and temp. of washing and of chemical compsn. of washing soln.
WO2019219363A1 (en) * 2018-05-17 2019-11-21 Arcelik Anonim Sirketi A washer-dryer in which dryness of the laundry items is effectively detected
WO2020089198A1 (en) 2018-10-30 2020-05-07 Henkel Ag & Co. Kgaa Method and device for an air-guiding domestic appliance
US20200374604A1 (en) * 2019-05-22 2020-11-26 Samsung Electronics Co., Ltd. Sensor device and electronic device obtaining information from the sensor device
EP3757270A1 (en) * 2019-06-25 2020-12-30 Samsung Electronics Co., Ltd. Dryer comprising a wireless sensing device and method of controlling the same
KR20220000580A (en) * 2020-06-26 2022-01-04 삼성전자주식회사 Sensing device for dryer

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE4031981A1 (en) 1990-10-09 1992-04-16 Telefunken Electronic Gmbh Measuring unit for washing machines - for accurate measurement of moisture and temp. of washing and of chemical compsn. of washing soln.
WO2019219363A1 (en) * 2018-05-17 2019-11-21 Arcelik Anonim Sirketi A washer-dryer in which dryness of the laundry items is effectively detected
WO2020089198A1 (en) 2018-10-30 2020-05-07 Henkel Ag & Co. Kgaa Method and device for an air-guiding domestic appliance
US20200374604A1 (en) * 2019-05-22 2020-11-26 Samsung Electronics Co., Ltd. Sensor device and electronic device obtaining information from the sensor device
EP3757270A1 (en) * 2019-06-25 2020-12-30 Samsung Electronics Co., Ltd. Dryer comprising a wireless sensing device and method of controlling the same
KR20220000580A (en) * 2020-06-26 2022-01-04 삼성전자주식회사 Sensing device for dryer

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