Patents Assigned to NXP
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Patent number: 9018681Abstract: Consistent with an example embodiment, there is method of manufacturing a bipolar transistor comprising providing a substrate including an active region; depositing a layer stack; forming a base window over the active region in said layer stack; forming at least one pillar in the base window, wherein a part of the pillar is resistant to polishing; depositing an emitter material over the resultant structure, thereby filling said base window; and planarizing the deposited emitter material by polishing. Consistent with another example embodiment, a bipolar transistor may be manufactured according to the afore-mentioned method.Type: GrantFiled: November 22, 2011Date of Patent: April 28, 2015Assignee: NXP B.V.Inventors: Evelyne Gridelet, Tony Vanhoucke, Johannes Josephus Theodorus Marinus Donkers, Hans Mertens, Blandine Duriez
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Patent number: 9018924Abstract: Aspects are directed to low dropout regulation. In accordance with one or more embodiments, an apparatus includes a charge pump that generates an output using a reference voltage, a low dropout (LDO) regulator circuit, current-limit and a voltage-limit circuit. The LDO circuit includes an amplifier powered by the charge pump and that provides an LDO voltage output. The voltage-limit circuit includes a transistor coupled between a voltage supply line and the LDO regulator circuit and a gate driven by the charge pump. The voltage-limit circuit limits voltage coupled between the voltage supply line and the LDO regulator circuit based upon the output of the charge pump, such as by coupling the voltage at the voltage supply line via source/drain connection of the transistor under low-voltage conditions, and providing a limited voltage to the LDO regulator circuit under high voltage conditions on the voltage supply line.Type: GrantFiled: September 14, 2012Date of Patent: April 28, 2015Assignee: NXP B.V.Inventor: Madan Mohan Reddy Vemula
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Patent number: 9019009Abstract: A method of adjusting the frequency or phase of operation of a Class-D amplifier is disclosed. The method comprises making a series of step changes in the frequency or phase to adjust the frequency or phase from a start value to a desired end value, each step change in frequency or phase causing a corresponding disturbance of an output of the Class-D amplifier to produce a series of disturbances, each of which varies from an initial magnitude in first and second senses to exhibit a first peak and then in the first sense to exhibit a second peak. The time between the step changes is selected so that the second peak of each disturbance other than a final disturbance in the series overlaps the first peak of an immediately succeeding disturbance.Type: GrantFiled: April 11, 2013Date of Patent: April 28, 2015Assignee: NXP, B.V.Inventors: Frits Anthonie Steenhof, Mattheus Johan Koerts, Skule Pramm
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Patent number: 9016133Abstract: Various embodiments relate to a pressure sensor and related methods of manufacturing and use. A pressure sensor may include an electrical contact included in a flexible membrane that deflects in response to a measured ambient pressure. The electrical contact may be separated from a signal path through a cavity formed using a sacrificial layer and PVD plugs. At one or more defined touch-point pressure thresholds, the membrane of the pressure sensor may deflect so that the state of contact between an electrical contact and one or more sections of a signal path may change. In some embodiments, the change of state may cause the pressure sensor to trigger an alarm in the electrical circuit. Various embodiments also enable the operation of the electrical circuit for testing and calibration through the use of one or more actuation electrode layers.Type: GrantFiled: January 5, 2011Date of Patent: April 28, 2015Assignee: NXP, B.V.Inventors: William Frederick Adrianus Besling, Peter Gerard Steeneken, Olaf Wunnicke
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Patent number: 9017561Abstract: A piezo-resistive MEMS resonator comprising an anchor, a resonator mounted on the anchor, an actuator mounted to apply an electrostatic force on the resonator and a piezo-resistive read-out means comprising a nanowire coupled to the resonator.Type: GrantFiled: August 28, 2013Date of Patent: April 28, 2015Assignee: NXP, B.V.Inventors: Gerhard Koops, Jozef Thomas Martinus van Beek
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Publication number: 20150108848Abstract: An antenna control circuit including: an H-bridge circuit including three half-bridge circuits; and a controller configured to control the H-bridge circuit; wherein a first half-bridge circuit and a second half-bridge circuit of the three half-bridge circuits are configured to electrically connect across a resonant antenna with a first resonant frequency and a second resonant frequency; wherein a third half-bridge circuit is configured to electrically connect to a first capacitance connected to the resonant antenna, wherein the controller is configured to control the third half-bridge circuit to switch the connection of the first capacitance to the resonant antenna to a first position that changes the resonant frequency of the resonant antenna to the first resonant frequency.Type: ApplicationFiled: October 22, 2013Publication date: April 23, 2015Applicant: NXP B.V.Inventor: Michael JOEHREN
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Patent number: 9014384Abstract: A sound system 100 for producing sound on a loudspeaker 130 is provided wherein the temperature of a voice coil of the loudspeaker may be monitored continuously. The sound system comprises a signal generator 150 for generating an evaluation signal which is combined with an input sound signal 120 to obtain a loudspeaker signal and a monitor 140 for monitoring an electric response of the voice coil to the loudspeaker signal. The loudspeaker signal may be adapted 180 to control the temperature of the voice coil in dependency upon the monitored response. The system can determine the temperature of the voice coil 170 even if the input sound signal comprises only little sound energy.Type: GrantFiled: February 4, 2011Date of Patent: April 21, 2015Assignee: NXP B.V.Inventor: Temujin Gautama
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Patent number: 9013277Abstract: In a method of allocating digital data (55a, 55b) coming from transponders, a reader (1) receives a first signal (13) that comprises a first signal component (7) coming from a first transponder (2) and a second signal component (8) coming from a second transponder (3). The digital data (55a) coming from the first transponder (2) are encoded in the first signal component (7) and digital data (55b) coming from the second transponder (3) are encoded in the second signal component (8). Second and third signals (10, 11) are generated by subjecting the first signal (13) to an in-phase and to an in-quadrature demodulation. The digital data (55a, 55b) of the first and second transponders (2, 3) are encoded in the second and third signals (10, 11). Clusters (51-54) of the digital data (55 a, 55b) associated with a constellation diagram, which is related to the second and third signals (10, 11), are allocated to the first and second transponder (2, 3).Type: GrantFiled: December 1, 2008Date of Patent: April 21, 2015Assignee: NXP B.V.Inventor: Ulrich Muehlmann
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Patent number: 9014323Abstract: Various aspects of the present disclosure are directed apparatuses and methods including a first phase locked loop (PLL) circuit and a second PLL circuit. The first PLL circuit receives a carrier signal that is transmitted over a communications channel from a non-synchronous device, and generates a PLL-PLL control signal. The second PLL circuit receives a stable reference-oscillation signal, and, in response to the PLL-PLL control signal indicating a frequency offset, adjusts a fractional divider ratio of the second PLL circuit. The first PLL circuit and the second PLL circuit are configured to produce an output frequency signal that is synchronous to the carrier signal.Type: GrantFiled: August 30, 2013Date of Patent: April 21, 2015Assignee: NXP B.V.Inventors: Jos Verlinden, Remco Cornelis Herman van de Beek
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Patent number: 9014380Abstract: A loudspeaker drive circuit comprises an input for receiving an audio signal and a signal processor for processing the audio signal before application to the loudspeaker. The signal processor processes the audio signal to derive a loudspeaker drive signal which results in the loudspeaker membrane reaching its maximum displacement in both directions of diaphragm displacement.Type: GrantFiled: January 27, 2012Date of Patent: April 21, 2015Assignee: NXP B.V.Inventors: Temujin Gautama, Bram Hedebouw
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Patent number: 9013278Abstract: A method and system for responding to a request received at an object with a radio frequency identification (RFID) device is described. In one embodiment, a method for responding to a request received at an object with an RFID device is described. The method for responding to a request received at an object with an RFID device involves receiving a request at an RFID device, providing the request from the RFID device to a component of the object, and processing the request at the component of the object. Other embodiments are also described.Type: GrantFiled: August 16, 2010Date of Patent: April 21, 2015Assignee: NXP, B.V.Inventors: Kees Gerard Willem Goossens, Lukasz Szostek
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Publication number: 20150104931Abstract: An apparatus, device and method for wafer dicing is disclosed. In one example, the apparatus discloses: a wafer holding device having a first temperature; a die separation bar moveably coupled to the wafer holding device; and a cooling device coupled to the apparatus and having a second temperature which enables the die separation bar to fracture an attachment material in response to movement with respect to the wafer holding device. In another example, the method discloses: receiving a wafer having an attachment material applied to one side of the wafer; placing the wafer in a holding device having a first temperature; urging a die separation bar toward the wafer; and cooling the attachment material to a second temperature, which is lower than the first temperature, until the attachment material fractures in response to the urging.Type: ApplicationFiled: October 16, 2013Publication date: April 16, 2015Applicant: NXP B.V.Inventors: Martin Lapke, Hartmut Buenning, Sascha Moeller, Guido Albermann, Thomas Rohleder, Heiko Backer
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Patent number: 9007129Abstract: The disclosure relates to an amplifier device comprising an integrated circuit die (701a; 701b) having a first amplifier (702a; 702b) and a second amplifier. A Doherty amplifier may be implemented in accordance with the present invention. The amplifier device also comprises a first connector (706a; 706b) having a first end coupled to the first amplifier and a second end for coupling with a circuit board (718a; 718b), a second connector (708a; 708b) having a first end coupled to the second amplifier (704a; 704b) and a second end for coupling with a circuit board (718a; 718b), a shielding member (710a; 710b) having a first end coupled to the integrated circuit die (701a; 701b) and a second end for coupling with a circuit board (718a; 718b), the shielding member (710a; 710b) situated at least partially between the second connector and the first connector (706a; 706b) and a capacitor. The capacitor has a first plate and a second plate.Type: GrantFiled: December 17, 2013Date of Patent: April 14, 2015Assignee: NXP, B.V.Inventors: Albert Gerardus Wilhelmus Philipus van Zuijlen, Vittorio Cuoco, Josephus Henricus Bartholomeus van der Zanden
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Patent number: 9006822Abstract: A trench-gate device with lateral RESURF pillars has an additional implant beneath the gate trench. The additional implant reduces the effective width of the semiconductor drift region between the RESURF pillars, and this provides additional gate shielding which improves the electrical characteristics of the device.Type: GrantFiled: October 24, 2012Date of Patent: April 14, 2015Assignee: NXP B.V.Inventors: Steven Thomas Peake, Phil Rutter
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Patent number: 9007730Abstract: A surge protection circuit for a circuit having a rectification module. The surge protection circuit includes a first diode, a second diode, a capacitor and a discharge device. The anode of the first diode is connected to a first input of the rectification module, and the anode of the second diode is connected to a second input of the rectification module. The cathodes of the first and second diodes are both connected to the first plate of the capacitor. The second plate of the capacitor is connected to the negative output of the rectification module. The capacitor is configured such that it is consistently charged to substantially the peak value of a supply voltage during normal operation between surge events.Type: GrantFiled: December 29, 2010Date of Patent: April 14, 2015Assignee: NXP B.V.Inventors: Markus Schmid, Johann Baptist Daniel Kuebrich, Thomas Antonius Duerbaum, Gian Hoogzaad, Peter Laro, Frans Pansier
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Patent number: 9008575Abstract: A portable mobile communication device (10) has a mobile host processor (104) permanently installed in the portable mobile communication device (10) and a near field communication circuit (100) comprising a non-volatile memory (101). Configuration data is maintained in the non-volatile memory (101) of the near field communication circuit (100), for control of communication dependent on the configuration data. Prior to communication between the near field communication circuit (100) and the mobile host processor (104) a session identity value is tested. If the session identity value does not match a reference value, at least part of the configuration data for the communication channel is initialized, after which the session identity value and the reference value are equalized after setting up the configuration data. If the session identity value matches the reference value, the mobile host processor (104) proceeds with communication without said initialization.Type: GrantFiled: November 18, 2009Date of Patent: April 14, 2015Assignee: NXP B.V.Inventors: Giten Kulkarni, Ravindra Upadhyaya, Jeremy Geslin
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Patent number: 9006738Abstract: The invention relates to an electronic device for measuring and/or controlling a property of an analyte (100). The electronic device comprises: i) an electrode (Snsr) forming an interface with the analyte (100) in which the electrode (Snsr) is immersed in operational use, the interface having an interface temperature (T), and ii) a resistive heater (Htr) being thermally and capacitively coupled to the electrode (Snsr), the resistive heater (Htr) being configured for setting the interface temperature (T) by controlling a current through the resistive heater (Htr). The resistive heater (Htr) is provided with signal integrity protection for reducing the capacitive charging of the electrode (Snsr) by the resistive heater (Htr) if the current through the resistive heater (Htr) is modulated.Type: GrantFiled: July 21, 2009Date of Patent: April 14, 2015Assignee: NXP, B.V.Inventor: Matthias Merz
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Patent number: 9008230Abstract: In one embodiment, an apparatus is provided that includes a first circuit configured and arranged to provide a modulated carrier signal in response to a signal provided from the antenna. The modulated carrier signal conveys data using peaks or amplitudes of the carrier signal. A second circuit is configured to rectify the modulated carrier signal and integrate the rectified signal in response to a first clock signal. A third circuit is coupled to an output of the second circuit and is configured to sample the integrated signal values and provide therefrom a sample-based approximation of the modulated carrier signal.Type: GrantFiled: January 8, 2013Date of Patent: April 14, 2015Assignee: NXP B.V.Inventors: Remco C. VandeBeek, Massimo Ciacci, Ghiath Al-kadi
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Patent number: 9007141Abstract: In one or more embodiments, circuitry is provided for isolation and communication of signals between circuits operating in different voltage domains using capacitive coupling. The capacitive coupling is provided by one or more capacitive structures having a breakdown voltage that is defined by way of the various components and their spacing. The capacitive structures each include three capacitive plates arranged to have two plates located in an upper layer and one plate located in a lower layer. A communication signal can be transmitted via the capacitive coupling created between the lower plate and each of the upper plates, respectively.Type: GrantFiled: May 23, 2012Date of Patent: April 14, 2015Assignee: NXP B.V.Inventor: Peter Gerard Steeneken
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Patent number: 9009506Abstract: Embodiments of a processing architecture are described. The architecture includes a fetch unit for fetching instructions from a data bus. A scheduler receives data from the fetch unit and creates a schedule allocates the data and schedule to a plurality of computational units. The scheduler also modifies voltage and frequency settings of the processing architecture to optimize power consumption and throughput of the system. The computational units include control units and execute units. The control units receive and decode the instructions and send the decoded instructions to execute units. The execute units then execute the instructions according to relevant software.Type: GrantFiled: March 1, 2012Date of Patent: April 14, 2015Assignee: NXP B.V.Inventors: Hamed Fatemi, Ajay Kapoor, Jose Pineda de Gyvez