Blanka
Ingrid Blanka, Hellmonsoedt AT
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20140072612 | ROLLED COLLAGEN CARRIER - The invention relates to a process for the preparation of a rolled compressed collagen carrier and a process for un-rolling said rolled compressed collagen carrier. Said rolled compressed collagen carrier is ready for use in minimally invasive surgery. The invention also relates to a rolled compressed collagen carrier for use in the prevention or treatment of injury associated with performing minimally invasive surgery. | 03-13-2014 |
Ingrid Blanka, Hellmonsodt AT
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20150136628 | Packaging - The present invention relates to a packaging for storing a form-stable coiled collagen carrier. The form-stable coiled collagen carrier comprises a collagen layer and a coating layer comprising thrombin and fibrinogen and having the shape of an elongated element with a number of windings of the collagen carrier about the longitudinal axis of the elongated element with at least one outer winding(s) being orientated so that the coating layer constitutes the outer surface of each of said outer winding(s). The packaging preferably comprises a container part having a compartment in which at least a part of the coiled collagen carrier is contained. | 05-21-2015 |
Lior Blanka, Rosh Haayin IL
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20140140231 | METHOD AND SYSTEM FOR MOTION DETECTION USING DIGITAL ENHANCED CORDLESS TELECOMMUNICAITON (DECT) SIGNALS - A digital enhanced cordless telecommunication (DECT) base station, the DECT base station may include a transmitter that is arranged to transmit, at different points of time, downlink transmitted DECT signals to another DECT device that differs from the DECT base station; a receiver that is arranged to receive from the other DECT device downlink reception information indicative of attributes of downlink received DECT signals that were received by the other DECT device as a result of the transmission of the downlink transmitted DECT signals; a processor that is arranged to process the downlink reception information to detect a motion that affects a reception of the downlink received DECT signals by the other device. | 05-22-2014 |
20150070097 | CONFIGURABLE MULTIMODE MULTIBAND INTEGRATED DISTRIBUTED POWER AMPLIFIER - A novel and useful configurable radio frequency (RF) power amplifier (PA) and related front end module (FEM) circuit that enables manipulation of the operating point of the power amplifier resulting in configurability, multimode and multiband operating capability. The configurable PA also provides high linearity and power efficiency and meets the requirements of modern wireless communication standards such as 802.11 WLAN, 3G and 4G cellular standards, Bluetooth, ZigBee, etc. The configurable power amplifier is made up of one or more configurable sub-amplifiers having each constructed to have several orders of freedom (i.e. biasing points). Each sub-amplifier and its combiner path include active and passive elements. Manipulating one or more biasing points of each sub-amplifier, and therefore of the aggregate power amplifier as well, achieves multimode and multiband operation. Biasing points include, for example, the gain and saturation point, frequency response, linearity level and EVM. An integrated multi-tap transformer having primary and secondary windings arranged in a novel configuration provides efficient power combining and transfer to the antenna of the power generated by the individual sub-amplifiers. | 03-12-2015 |
20150116033 | Impedance matching system that has a transformer and method for tuning a system using a transformer - A system that includes an amplification circuit; a resonant circuit that is arranged to receive the amplified signal and to output an resonant circuit output signal; wherein the resonant circuit comprises a continually tuned variable capacitor; a transformer that is arranged to receive the resonant circuit output signal and to output a transformer output signal; a coupler that is arranged to sample the transformer output signal and a reflected signal and to output a first signal that represents the transformer output signal and a second signal that represents a reflected signal; a detector that is arranged to receive the first and second signals and to output an impedance indicative signal a control circuit that is arranged to generate the resonant circuit tuning signal in response to the impedance indicative signal and for compensating for the impedance mismatch. | 04-30-2015 |
Lior Blanka, Herzelia IL
Patent application number | Description | Published |
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20140363002 | INDICATION OF QUALITY FOR PLACEMENT OF BONE CONDUCTION TRANSDUCERS - Methods and systems are provided for generating quality indications of bone conduction, in which bone conduction element(s) may be used to input and/or output signals when in contact with a user. A bone conduction sensor may be used to obtain bone conduction related measurement(s), relating to the bone conduction element(s) and/or operations thereof. The bone conduction measurement(s) may be processed, such as to determine or estimate quality of attachment and/or performance of the bone conduction elements. Quality indication(s) may then be generated based on the assessed quality of bone conduction, and may be configured for presentation to a user. | 12-11-2014 |
20140363003 | INDICATION OF QUALITY FOR PLACEMENT OF BONE CONDUCTION TRANSDUCERS - Methods and systems are provided for generating quality indications of bone conduction, in which bone conduction element(s) may be used to input and/or output signals when in contact with a user. A bone conduction sensor may be used to obtain bone conduction related measurement(s), relating to the bone conduction element(s) and/or operations thereof. The bone conduction measurement(s) may be processed, such as to determine or estimate quality of attachment and/or performance of the bone conduction elements. Quality indication(s) may then be generated based on the assessed quality of bone conduction, and may be configured for presentation to a user. | 12-11-2014 |
20140363008 | USE OF VIBRATION SENSOR IN ACOUSTIC ECHO CANCELLATION - Methods and systems are provided for acoustic echo cancellation in electronic devices. The echo cancellation may comprise applying, as a first step, echo cancellation filtering to an acoustic input obtained via an acoustic input element (e.g., microphone), and applying, as a second step, echo suppression to the acoustic input, wherein the echo suppression comprises suppressing residual echo in the acoustic input. The echo cancellation filtering may comprise identifying and/or filtering out echo components, both linear and nonlinear, in the acoustic input, with the echo components corresponding to an echo signal caused by an acoustic output outputted via the acoustic output element (e.g., speaker). A sensor signal, generated by a vibration sensor that detects vibrations in the electronic device including vibrations caused by the outputting of the acoustic output, may be used as reference signal in the echo cancellation filtering and/or the echo suppression. | 12-11-2014 |