Patents Assigned to Forciot OY
  • Publication number: 20250278159
    Abstract: A method for operating a device has at least a first functionality and a second functionality, the first functionality being capacitive sensing of compression and the second functionality being another, different, functionality. For enabling the first functionality the device includes a first primary electrode, a first secondary electrode, and compressible and electrically insulating material between the first primary electrode and the first secondary electrode. During a first period of time, a capacitance of the first primary electrode relative to the first secondary electrode is measured for determining a compression of the compressible and electrically insulating material. The method includes detecting that the second functionality is enabled during a second period of time, or during a second period of time, enabling the second functionality, wherein the second functionality comprises another functionality than capacitive measurement of a quantity indicative of the compression.
    Type: Application
    Filed: May 2, 2023
    Publication date: September 4, 2025
    Applicant: FORCIOT OY
    Inventors: Pekka ISO-KETOLA, Toni LIIMATTA
  • Patent number: 12038274
    Abstract: A deformable sensor arrangement includes a deformable sensor attachable to a curved surface. The deformable sensor includes an elastic layer having a Young's modulus at least 0.01 MPa and a first yield strain at least 10%. A first stretchable electrode attaches to the elastic layer, and a stretchable electrically conductive wiring. The first stretchable electrode and the stretchable electrically conductive wiring stretch at least 5% without breaking. An electronic arrangement electrically couples to the first stretchable electrode via the stretchable electrically conductive wiring and obtains a first signal from the first stretchable electrode. An analyzer determines a calibrated value based on the obtained first signal and assembly compensation coefficients, which are based on material compensation coefficients, and a measured signal of the deformable sensor in its installing position. A system and method are for installing the arrangement. A method and computer program determine a value of interest.
    Type: Grant
    Filed: September 4, 2020
    Date of Patent: July 16, 2024
    Assignee: FORCIOT OY
    Inventors: Mikko Turunen, Petri Järvinen, Pekka Iso-Ketola
  • Publication number: 20220260434
    Abstract: A deformable sensor arrangement includes a deformable sensor attachable to a curved surface. The deformable sensor includes an elastic layer having a Young's modulus at least 0.01 MPa and a first yield strain at least 10%. A first stretchable electrode attaches to the elastic layer, and a stretchable electrically conductive wiring. The first stretchable electrode and the stretchable electrically conductive wiring stretch at least 5% without breaking. An electronic arrangement electrically couples to the first stretchable electrode via the stretchable electrically conductive wiring and obtains a first signal from the first stretchable electrode. An analyzer determines a calibrated value based on the obtained first signal and assembly compensation coefficients, which are based on material compensation coefficients, and a measured signal of the deformable sensor in its installing position. A system and method are for installing the arrangement. A method and computer program determine a value of interest.
    Type: Application
    Filed: September 4, 2020
    Publication date: August 18, 2022
    Applicant: Forciot Oy
    Inventors: Mikko TURUNEN, Petri JÄRVINEN, Pekka ISO-KETOLA
  • Publication number: 20220252471
    Abstract: A method detects a pressure and a touch and/or presence in a vicinity. A capacitive layered sensor structure includes an electrically permeable and conductive layer, an electrode layer having a first electrode. Between these layers is a first insulating layer. The capacitive layered sensor structure includes a compressible insulating layer between the electrode layer and an electrically conductive layer. The method measures a first capacitance value of the first electrode using the capacitive layered sensor structure, and a second capacitance value of the first electrode using the capacitive layered sensor structure. A determination is made whether the first value is at most equal to a first threshold and at least equal to a second threshold that is greater than the first threshold. An arrangement includes the capacitive layered sensor structure and an electronic arrangement to perform the method. A computer program causes a computer to perform the method.
    Type: Application
    Filed: May 5, 2020
    Publication date: August 11, 2022
    Applicant: Forciot Oy
    Inventors: Toni LIIMATTA, Seppo LÄHDESMÄKI, Maria ALM
  • Patent number: 10928256
    Abstract: The invention relates to sensor (900) for use as a pressure and/or a force sensor. The sensor (900) comprises a elastic and stretchable layer (050, 100, 200) with material having a first Young's modulus (Y200) and a first yield strain (?y,200); at least a first stretchable electrode (301) and a second stretchable electrode (302) attached to the elastic and stretchable layer (050, 100, 200) and arranged a first distance (d1, d1,301,302) apart from each other; a flexible foil (500) having a second Young's modulus (Y500); and electrically conductive wiring (400) attached to the flexible foil (500). At least a part of the electrically conductive wiring (400) is coupled to the stretchable electrodes (301, 302) in an electrically conductive manner; the first yield strain (?y,200) is at least 10 percent; the first Young's modulus (Y200) is less than the second Young's modulus (Y500).
    Type: Grant
    Filed: November 1, 2019
    Date of Patent: February 23, 2021
    Assignee: Forciot Oy
    Inventors: Petri Järvinen, Mikko Turunen, Jarmo Heittokangas, Jukka Vanhala, Pekka Iso-Ketola
  • Patent number: 10615794
    Abstract: A capacitive sensor comprising a first electrically conductive wire that is flexible and stretchable, a compressible layer, an integral reinforcement structure, and a first electrode for measuring a capacitance and coupled to the first electrically conductive wire. The first electrically conductive wire is attached to a first joint for connecting the first wire to another electrically conductive structure, such as a flexible circuit board or a connector. The capacitive sensor is dividable to a first part of the capacitive sensor and to a second part of the capacitive sensor, the first and second parts extending through the sensor in a direction (Sz) of thickness of the sensor. The first electrically conductive wire extends from the first joint via the second part of sensor to the first part of the sensor and further to the first electrode. A resilience of the second part is improved.
    Type: Grant
    Filed: April 29, 2019
    Date of Patent: April 7, 2020
    Assignee: Forciot Oy
    Inventors: Pekka Iso-Ketola, Lari Kakkonen, Toni Liimatta, Seppo Lähdesmäki, Anne Mäkiranta
  • Publication number: 20200106437
    Abstract: “A capacitive sensor comprising a first electrically conductive wire that is flexible and stretchable, a compressible layer, an integral reinforcement structure, and a first electrode for measuring a capacitance and coupled to the first electrically conductive wire. The first electrically conductive wire is attached to a first joint for connecting the first wire to another electrically conductive structure, such as a flexible circuit board or a connector. The capacitive sensor is dividable to a first part of the capacitive sensor and to a second part of the capacitive sensor, the first and second parts extending through the sensor in a direction (Sz) of thickness of the sensor. The first electrically conductive wire extends from the first joint via the second part of sensor to the first part of the sensor and further to the first electrode. A resilience of the second part is improved.
    Type: Application
    Filed: April 29, 2019
    Publication date: April 2, 2020
    Applicant: Forciot Oy
    Inventors: Pekka ISO-KETOLA, Lari KAKKONEN, Toni LIIMATTA, Seppo LÄHDESMÄKI, Anne MÄKIRANTA
  • Patent number: 10591367
    Abstract: The invention relates to sensor for use as a pressure and/or a force sensor. The sensor comprises an elastic and stretchable layer with material having a first Young's modulus and a first yield strain, at least a first stretchable electrode and a second stretchable electrode attached to the elastic and stretchable layer and arranged a first distance apart from each other, a flexible foil having a second Young's modulus, and electrically conductive wiring attached to the flexible foil. At least a part of the electrically conductive wiring is coupled to the stretchable electrodes in an electrically conductive manner, the first yield strain is at least 10 per cent; the first Young's modulus is less than the second Young's modulus, and the thickness of the flexible foil is at most 0.5 mm.
    Type: Grant
    Filed: June 20, 2017
    Date of Patent: March 17, 2020
    Assignee: Forciot Oy
    Inventors: Petri Järvinen, Mikko Turunen, Jarmo Heittokangas, Jukka Vanhala, Pekka Iso-Ketola
  • Publication number: 20200064211
    Abstract: The invention relates to sensor (900) for use as a pressure and/or a force sensor. The sensor (900) comprises a elastic and stretchable layer (050, 100, 200) with material having a first Young's modulus (Y200) and a first yield strain (?y,200); at least a first stretchable electrode (301) and a second stretchable electrode (302) attached to the elastic and stretchable layer (050, 100, 200) and arranged a first distance (d1, d1,301,302) apart from each other; a flexible foil (500) having a second Young's modulus (Y500); and electrically conductive wiring (400) attached to the flexible foil (500). At least a part of the electrically conductive wiring (400) is coupled to the stretchable electrodes (301, 302) in an electrically conductive manner; the first yield strain (?y,200) is at least 10 percent; the first Young's modulus (Y200) is less than the second Young's modulus (Y500).
    Type: Application
    Filed: November 1, 2019
    Publication date: February 27, 2020
    Applicant: Forciot Oy
    Inventors: Petri Järvinen, Mikko Turunen, Jarmo Heittokangas, Jukka Vanhala, Pekka Iso-Ketola
  • Publication number: 20190339143
    Abstract: The invention relates to sensor for use as a pressure and/or a force sensor. The sensor comprises an elastic and stretchable layer with material having a first Young's modulus and a first yield strain, at least a first stretchable electrode and a second stretchable electrode attached to the elastic and stretchable layer and arranged a first distance apart from each other, a flexible foil having a second Young's modulus, and electrically conductive wiring attached to the flexible foil. At least a part of the electrically conductive wiring is coupled to the stretchable electrodes in an electrically conductive manner, the first yield strain is at least 10 percent; the first Young's modulus is less than the second Young's modulus, and the thickness of the flexible foils is at most 0.5 mm.
    Type: Application
    Filed: June 20, 2017
    Publication date: November 7, 2019
    Applicant: Forciot Oy
    Inventors: Petri Järvinen, Mikko Turunen, Jarmo Heittokangas, Jukka Vanhala, Pekka Iso-Ketola
  • Patent number: D849788
    Type: Grant
    Filed: January 5, 2017
    Date of Patent: May 28, 2019
    Assignee: Forciot OY
    Inventors: Mikko Turunen, Pekka Iso-Ketola