Patents by Inventor Paolo Fiorini

Paolo Fiorini has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Publication number: 20190014208
    Abstract: A first user device may be included in a user device group including the first user device and a second user device that share a same service identifier for a communication service. The method may include accepting user input at the first user device to activate an operation mode for the first user device. Responsive to accepting the user input to activate the operation mode at the first user device, the operation mode may be activated at the first user device. Responsive to accepting the user input to activate the operation mode at the first user device, a notification regarding activation of the operation mode may be transmitted to a control server that is remote from the first user device. Related user devices and control servers are also discussed.
    Type: Application
    Filed: November 18, 2016
    Publication date: January 10, 2019
    Applicant: Telefonaktiebolaget LM Ericsson (publ)
    Inventors: Paolo FIORINI, Samy TOUATI
  • Publication number: 20180361381
    Abstract: The present disclosure relates to a fluid analyzing device that includes a sensing device for analyzing a fluid sample. The sensing device includes a microchip configured for sensing the fluid sample, and a closed micro-fluidic component for propagating the fluid sample to the microchip. The fluid sample can be provided to the micro-fluidic component via an inlet of the fluid analyzing device. And a vacuum compartment, which is air-tight connected to the sensing device, can create in the micro-fluidic component a suction force suitable for propagating the fluid sample through the micro-fluidic component.
    Type: Application
    Filed: August 8, 2018
    Publication date: December 20, 2018
    Applicant: IMEC VZW
    Inventors: Peter Peumans, Liesbet Lagae, Paolo Fiorini
  • Publication number: 20180345287
    Abstract: A micro-fluidic device 100 for performing digital PCR is presented. The device comprises: a semiconductor substrate; a first micro-fluidic channel 104, comprising an inlet 102 and an outlet 103, embedded in the semiconductor substrate; a heating element 101 thermally coupled to the first micro-fluidic channel 104; a droplet generator 107 connected to the inlet 102 of the first micro-fluidic channel 104 for generating droplets and pumping generated droplets at a flow rate into the first micro-fluidic channel 104; characterized in that: the heating element 101 is a single heating element connected to a temperature control unit 111 configured to cycle the temperature of the complete first micro-fluidic channel 104 through at least two temperature values; and wherein the flow rate of the droplet generator 107 is adaptable. Further, a method to perform digital PCR is presented using the micro-fluidic device 100.
    Type: Application
    Filed: August 9, 2018
    Publication date: December 6, 2018
    Applicant: IMEC VZW
    Inventors: Paolo Fiorini, Tim Stakenborg, Frederik Colle
  • Publication number: 20180302408
    Abstract: Methods are provided to authorize a secondary user device for a network service provided over a network. Responsive to receiving a request from a primary user device, a voucher may be transmitted over the network to the primary user device. A request for an authorization waiver may be received from the secondary user device over the network, wherein the request for the authorization waiver includes the voucher that was transmitted to the primary user device. Responsive to receiving the request from the secondary user device including the voucher, an authorization waiver may be transmitted to the secondary user device. Related methods of operating primary and secondary user devices are also discussed.
    Type: Application
    Filed: September 9, 2016
    Publication date: October 18, 2018
    Inventors: Samy Touati, Paolo Fiorini
  • Patent number: 10100352
    Abstract: Provided is a DNA chip with micro-channel for DNA analysis, which has a structure in which a silicon layer (chip A) and a plastic layer (chip B) are laminated, wherein the chip A includes at least two PCR reactors connected in series in a micro-channel, and a filter between the PCR reactors, the chip B includes a reagent, a liquid delivery mechanism and a sensor in a micro-channel, and the reagent, liquid delivery mechanism and sensor can be changed according to a kind of an analyte and an object to be detected.
    Type: Grant
    Filed: March 4, 2014
    Date of Patent: October 16, 2018
    Assignees: PANASONIC CORPORATION, IMEC VZW
    Inventors: Hiroyuki Tanaka, Maki Hiraoka, Benjamin Jones, Paolo Fiorini
  • Publication number: 20180169652
    Abstract: A fluidic device is described for locally coating an inner surface of a fluidic channel. The fluidic device comprises a first, a second and a third fluidic channel intersecting at a common junction. The first fluidic channel is connectable to a coating fluid reservoir and the third fluidic channel is connectable to a sample fluid reservoir. The fluidic device further comprises a fluid control means configured for creating a fluidic flow path for a coating fluid at the common junction such that, when coating, a coating fluid propagates from the first to the second fluidic channel via the common junction without propagating into the third fluidic channel. A corresponding method for coating and for sensing also has been disclosed.
    Type: Application
    Filed: June 20, 2016
    Publication date: June 21, 2018
    Applicant: IMEC VZW
    Inventors: Benjamin Jones, Tim Stakenborg, Paolo Fiorini
  • Patent number: 9833781
    Abstract: An example micro-fluidic device includes a micro-fluidic channel having an inner surface and a plurality of pillars positioned along the inner surface. The device further includes a plurality of power supplies connected to the pillars. Another example micro-fluidic device includes a micro-fluidic channel having an inner surface and a plurality of pillars positioned along the inner surface. The device further includes a power supply. The pillars are grouped into at least two groups of pillars, each group of pillars including at least two pillars, and all pillars of at least one group of pillars are connected to the power supply. In another example, a sensing system for detecting bioparticles includes a micro-fluidic device, wherein a surface of each pillar comprises functionalized plasmonic nanoparticles or functionalized SERS nanoparticles, a radiation source for radiating the micro-fluidic device, and a detector for detecting SERS signals or surface plasmon resonance.
    Type: Grant
    Filed: May 17, 2014
    Date of Patent: December 5, 2017
    Assignee: IMEC
    Inventors: Chengjun Huang, Chengxun Liu, Liesbet Lagae, Paolo Fiorini, Benjamin Jones
  • Publication number: 20170326552
    Abstract: The present disclosure relates to a fluid analyzing device that includes a sensing device for analyzing a fluid sample. The sensing device includes a microchip configured for sensing the fluid sample, and a closed micro-fluidic component for propagating the fluid sample to the microchip. The fluid sample can be provided to the micro-fluidic component via an inlet of the fluid analyzing device. And a vacuum compartment, which is air-tight connected to the sensing device, can create in the micro-fluidic component a suction force suitable for propagating the fluid sample through the micro-fluidic component.
    Type: Application
    Filed: November 24, 2015
    Publication date: November 16, 2017
    Applicant: IMEC VZW
    Inventors: Peter Peumans, Liesbet Lagae, Paolo Fiorini
  • Publication number: 20170326551
    Abstract: The present disclosure relates to a fluid analysis device which comprises a sensing device for analyzing a fluid sample, the sensing device comprising a micro-fluidic component for propagating the fluid sample and a microchip configured for sensing the fluid sample in the micro-fluidic component; a sealed fluid compartment containing a further fluid, the compartment being fluid-tight connected to the sensing device and adapted for providing the further fluid to the micro-fluidic component when the sealed fluid compartment is opened; and an inlet for providing the fluid sample to the micro-fluidic component. Further, the present disclosure relates to a method for sensing a fluid sample using the fluid analysis device.
    Type: Application
    Filed: November 24, 2015
    Publication date: November 16, 2017
    Applicant: IMEC VZW
    Inventors: Peter Peumans, Liesbet Lagae, Paolo Fiorini
  • Publication number: 20170326546
    Abstract: The present disclosure relates to devices and methods for analyzing a fluid sample. An example device comprises a fluidic substrate comprising a micro-fluidic component embedded therein, for propagating a fluid sample; a needle or inlet for providing the fluid sample which is fluidically connected to the micro-fluidic component; a lid attached to the fluidic substrate thereby at least partly covering the fluidic substrate and at least partly closing the micro-fluidic component; wherein the fluidic substrate is a glass fluidic substrate and wherein the lid is a microchip. The present disclosure also relates to a method for fabricating a fluid analysis device. The method comprises providing a fluidic substrate; providing a lid; attaching the lid to the fluidic substrate to close the fluidic substrate at least partly.
    Type: Application
    Filed: November 26, 2015
    Publication date: November 16, 2017
    Applicant: IMEC VZW
    Inventors: Peter Peumans, Liesbet Lagae, Paolo Fiorini
  • Patent number: 9673382
    Abstract: In order to solve the problem of the generation of the interspace between layers, the present invention provides an actuator including: a conductive polymer layer; an ambient temperature molten salt layer; and an opposite electrode layer; wherein the ambient temperature molten salt layer is interposed between the conductive polymer layer and the opposite electrode layer, the ambient temperature molten salt layer includes an adhesive layer in the inside thereof; one surface of the adhesive layer adheres to the conductive polymer layer; and the other surface of the adhesive layer adheres to the opposite electrode layer.
    Type: Grant
    Filed: December 17, 2012
    Date of Patent: June 6, 2017
    Assignees: Panasonic Corporation, IMEC vzw, Universiteit Gent
    Inventors: Maki Hiraoka, Paolo Fiorini, Bjorn Vandecasteele
  • Patent number: 9580747
    Abstract: A DNA chip with micro-channel for DNA analysis of DNA included in an analyte according to a PCR method is a DNA chip with micro-channel for DNA analysis in which is silicon (first layer) and plastic (second layer) are laminated, wherein the second layer is formed on a partial area of the first layer, and the second layer includes: a reagent; a liquid transporting system; and a sensor, and the first layer includes a PCR reactor provided on an area on which the second layer is not formed.
    Type: Grant
    Filed: March 4, 2014
    Date of Patent: February 28, 2017
    Assignees: PANASONIC CORPORATION, IMEC VZW
    Inventors: Hiroyuki Tanaka, Benjamin Jones, Paolo Fiorini
  • Patent number: 9174211
    Abstract: The embodiments of the present disclosure relate to a micro-fluidic device comprising a substrate, a cavity in the substrate and a plurality of micro-pillar columns located inside the cavity. The micro-pillars columns are configured to create a capillary action when a fluid sample is provided in the cavity. A micro-fluidic channel is present between two 5 walls of any two adjacent micro-pillars in a same micro-pillar column. Each of the two walls comprises a sharp corner along the direction of a propagation path of the fluid sample in the micro-fluidic channel thereby forming a capillary stop valve. A notch provided in a sidewall of the cavity acts as a capillary stop valve.
    Type: Grant
    Filed: January 15, 2015
    Date of Patent: November 3, 2015
    Assignee: IMEC VZW
    Inventors: Benjamin Jones, Paolo Fiorini
  • Publication number: 20150196909
    Abstract: The embodiments of the present disclosure relate to a micro-fluidic device comprising a substrate, a cavity in the substrate and a plurality of micro-pillar columns located inside the cavity. The micro-pillars columns are configured to create a capillary action when a fluid sample is provided in the cavity. A micro-fluidic channel is present between two 5 walls of any two adjacent micro-pillars in a same micro-pillar column. Each of the two walls comprises a sharp corner along the direction of a propagation path of the fluid sample in the micro-fluidic channel thereby forming a capillary stop valve. A notch provided in a sidewall of the cavity acts as a capillary stop valve.
    Type: Application
    Filed: January 15, 2015
    Publication date: July 16, 2015
    Applicant: IMEC VZW
    Inventors: Benjamin Jones, Paolo Fiorini
  • Publication number: 20150151301
    Abstract: A micro-fluidic device 100 for performing digital PCR is presented. The device comprises: a semiconductor substrate; a first micro-fluidic channel 104, comprising an inlet 102 and an outlet 103, embedded in the semiconductor substrate; a heating element 101 thermally coupled to the first micro-fluidic channel 104; a droplet generator 107 connected to the inlet 102 of the first micro-fluidic channel 104 for generating droplets and pumping generated droplets at a flow rate into the first micro-fluidic channel 104; characterized in that: the heating element 101 is a single heating element connected to a temperature control unit 111 configured to cycle the temperature of the complete first micro-fluidic channel 104 through at least two temperature values; and wherein the flow rate of the droplet generator 107 is adaptable. Further, a method to perform digital PCR is presented using the micro-fluidic device 100.
    Type: Application
    Filed: November 19, 2014
    Publication date: June 4, 2015
    Applicant: IMEC VZW
    Inventors: Paolo Fiorini, Tim Stakenborg, Frederik Colle
  • Publication number: 20140345697
    Abstract: In order to solve the problem of the generation of the interspace between layers, the present invention provides an actuator including: a conductive polymer layer; an ambient temperature molten salt layer; and an opposite electrode layer; wherein the ambient temperature molten salt layer is interposed between the conductive polymer layer and the opposite electrode layer, the ambient temperature molten salt layer includes an adhesive layer in the inside thereof; one surface of the adhesive layer adheres to the conductive polymer layer; and the other surface of the adhesive layer adheres to the opposite electrode layer.
    Type: Application
    Filed: December 17, 2012
    Publication date: November 27, 2014
    Inventors: Maki Hiraoka, Paolo Fiorini, Bjorn Vandegasteele
  • Publication number: 20140339090
    Abstract: An example micro-fluidic device includes a micro-fluidic channel having an inner surface and a plurality of pillars positioned along the inner surface. The device further includes a plurality of power supplies connected to the pillars. Another example micro-fluidic device includes a micro-fluidic channel having an inner surface and a plurality of pillars positioned along the inner surface. The device further includes a power supply. The pillars are grouped into at least two groups of pillars, each group of pillars including at least two pillars, and all pillars of at least one group of pillars are connected to the power supply. In another example, a sensing system for detecting bioparticles includes a micro-fluidic device, wherein a surface of each pillar comprises functionalized plasmonic nanoparticles or functionalized SERS nanoparticles, a radiation source for radiating the micro-fluidic device, and a detector for detecting SERS signals or surface plasmon resonance.
    Type: Application
    Filed: May 17, 2014
    Publication date: November 20, 2014
    Applicant: IMEC
    Inventors: Chengjun Huang, Chengxun Liu, Liesbet Lagae, Paolo Fiorini, Benjamin Jones
  • Publication number: 20140186846
    Abstract: Provided is a DNA chip with micro-channel for DNA analysis, which has a structure in which a silicon layer (chip A) and a plastic layer (chip B) are laminated, wherein the chip A includes at least two PCR reactors connected in series in a micro-channel, and a filter between the PCR reactors, the chip B includes a reagent, a liquid delivery mechanism and a sensor in a micro-channel, and the reagent, liquid delivery mechanism and sensor can be changed according to a kind of an analyte and an object to be detected.
    Type: Application
    Filed: March 4, 2014
    Publication date: July 3, 2014
    Applicants: IMEC, Panasonic Corporation
    Inventors: Hiroyuki TANAKA, Maki HIRAOKA, Benjamin JONES, Paolo FIORINI
  • Publication number: 20140186936
    Abstract: A DNA chip with micro-channel for DNA analysis of DNA included in an analyte according to a PCR method is a DNA chip with micro-channel for DNA analysis in which is silicon (first layer) and plastic (second layer) are laminated, wherein the second layer is formed on a partial area of the first layer, and the second layer includes: a reagent; a liquid transporting system; and a sensor, and the first layer includes a PCR reactor provided on an area on which the second layer is not formed.
    Type: Application
    Filed: March 4, 2014
    Publication date: July 3, 2014
    Applicants: IMEC, Panasonic Corporation
    Inventors: Hiroyuki TANAKA, Benjamin JONES, Paolo FIORINI
  • Patent number: 8493736
    Abstract: The present disclosure is related to a device for cooling the surface of a semiconductor device such as an integrated circuit or the like, the cooling device comprising a plurality of channels (3?) which are non-parallel to the surface to be cooled, each channel comprising a plurality of separate electrodes (5) or equivalent conducting areas arranged along the length of each channel, the device further comprising or being connectable to means for applying a voltage to the electrodes or conducting areas in each channel according to a sequence, the sequence being such that a droplet (6) of cooling liquid in a channel may be moved from one electrode to the next, thereby transporting the droplet from the top of the channel to the bottom, from where the droplet impinges on the surface to be cooled.
    Type: Grant
    Filed: June 1, 2011
    Date of Patent: July 23, 2013
    Assignee: IMEC
    Inventors: Herman Oprins, Bart Vandevelde, Paolo Fiorini, Eric Beyne, Joeri De Vos, Bivragh Majeed