Patents Assigned to Silicon Laboratories
  • Patent number: 8223820
    Abstract: A technique for receiving a data stream including a spreading sequence packet of information containing a data payload and, in addition to the data payload, packet overhead including at least periodic information and at least one unique section of known coded information that defines a unique position within the packet, includes performing a plurality of processing steps to detect the position of the unique section within the packet of information. The steps include detecting the periodicity of the periodic information in a first processing step; in a second processing step after periodicity in the received data stream has been determined, estimating the position of the unique section within the packet of information; and in a third processing step, correlating the information in the packet of information about the estimated position with the known coded information.
    Type: Grant
    Filed: March 31, 2008
    Date of Patent: July 17, 2012
    Assignee: Silicon Laboratories Inc.
    Inventor: Alexandre Rouxel
  • Patent number: 8224259
    Abstract: A radio-frequency (RF) receiver includes a receiver analog circuitry and a receiver digital circuitry. The receiver analog circuitry resides within a first integrated circuit and the receiver digital circuitry resides within a second integrated circuit. The second integrated circuit couples to the first integrated circuit via a one-bit digital interface. The receiver analog circuitry receives an RF signal and processes the received RF signal to generate a digital signal. The receiver analog circuitry provides the digital signal to the receiver digital circuitry. The receiver digital circuitry includes a digital down-converter circuitry that mixes the digital signal with an intermediate frequency (IF) local oscillator (LO) signal to generate a digital down-converted signal. The receiver digital circuitry also includes a digital filter circuitry that filters the digital down-converted signal to generate a filtered digital signal.
    Type: Grant
    Filed: March 1, 2010
    Date of Patent: July 17, 2012
    Assignee: Silicon Laboratories Inc.
    Inventors: Richard T. Behrens, Tod Paulus, Mark S. Spurbeck, Vishnu S. Srinivasan, Donald A. Kerth, Jeffrey W. Scott, G. Tyson Tuttle, G. Diwakar Vishakhadatta
  • Patent number: 8213546
    Abstract: A method performed by a receiver is provided. The method includes generating an RDS/RBDS candidate codeword from a set of RDS/RBDS symbols where the RDS/RBDS candidate codeword has a subset of RDS/RBDS values that differs from corresponding subsets of RDS/RBDS values in all other possible RDS/RBDS codewords and determining whether the RDS/RBDS candidate codeword meets an acceptance criterion by comparing a first subset of reliability values determined from the set of RDS/RBDS symbols and having signs that differ from corresponding signs in the subset of RDS/RBDS values with a second subset of reliability values determined from the set of RDS/RBDS symbols and mutually exclusive with the first subset of the reliability values. A first number of values in the first and the second subsets of reliability values is less than a second number of values in the RDS/RBDS candidate codeword.
    Type: Grant
    Filed: November 13, 2007
    Date of Patent: July 3, 2012
    Assignee: Silicon Laboratories Inc.
    Inventor: Dana Taipale
  • Patent number: 8213192
    Abstract: A switching voltage regulator samples signals corresponding to a flyback voltage on an auxiliary winding on a primary side of the switching voltage regulator. The flyback voltage functions as feedback from the output voltage on the secondary side. On detection of presence of the flyback voltage, samples corresponding to the flyback voltage are stored until the flyback voltage falls below a threshold voltage. A history of N samples of the flyback voltage is thus maintained. A sample older than the most recently stored sample is used to generate control for generation of the output voltage of the switching voltage regulator. Use of the older sample ensures that the flyback voltage sample used is one that is close to, but before the current in the secondary winding goes to zero.
    Type: Grant
    Filed: December 30, 2009
    Date of Patent: July 3, 2012
    Assignee: Silicon Laboratories Inc.
    Inventors: Pavel Konecny, Yeshoda Yedevelly
  • Patent number: 8208884
    Abstract: Methods and systems are disclosed that utilize FM tuner ground isolation when using a ground signal line as an FM antenna for an FM tuner integrated circuit (IC) within a portable electronic system. The ground isolation can be implemented, for example, using one or more isolation elements, such as ferrite beads, coupled between the FM tuner ground and the device ground. The ferrite beads can also be coupled between other pins for the FM tuner and the device circuitry. A car lighter adapter (CLA) coupled to the device circuitry can be configured to provide a ground signal line for use as an antenna for the FM tuner IC. Further, signal lines on a printed circuit board (PCB) can also provide a ground signal line for use as an antenna for the FM tuner IC. The device can also be as a personal navigation device.
    Type: Grant
    Filed: October 28, 2009
    Date of Patent: June 26, 2012
    Assignee: Silicon Laboratories Inc.
    Inventors: Tian Zhao, Greg Allan Hodgson
  • Patent number: 8207766
    Abstract: A first current source supplies a first charge amount responsive to a first pulse signal from the phase frequency detector and a second current source supplies a second charge amount according to a fixed value and a variable value. The variable value corresponds to a phase difference between a first feedback clock signal and a hypothesized feedback clock signal with reduced quantization noise. The first and second charge amounts are of opposite polarity. A single set of first and second current sources perform the functions of charge pump and noise reduction DAC.
    Type: Grant
    Filed: March 25, 2010
    Date of Patent: June 26, 2012
    Assignee: Silicon Laboratories Inc.
    Inventor: Qicheng Yu
  • Patent number: 8203370
    Abstract: A Schmitt trigger comprises first and second circuitry. The first circuitry receives an input voltage and provides an output voltage at either a logical “low” or a logical “high” voltage level responsive to the input voltage and a first bias voltage. The second circuitry connects to the first circuitry to generate a second bias current for generating the output voltage. The second bias current is larger than the first bias current. The Schmitt trigger operates in a low power mode of operation using only the first bias voltage to maintain the logical “low” voltage level or the logical “high” voltage level at a substantially constant level. In a high power mode of operation the Schmitt trigger uses the second bias voltage during transition periods between the logical “low” voltage level and the logical “high” voltage level.
    Type: Grant
    Filed: June 30, 2009
    Date of Patent: June 19, 2012
    Assignee: Silicon Laboratories Inc.
    Inventors: Shouli Yan, Zhiwei Dong, Axel Thomsen
  • Patent number: 8203385
    Abstract: In one embodiment, the present invention includes an amplifier having an input to receive a radio frequency (RF) signal from an output node of a source. An input stage coupled to the amplifier input may include one or more components to aid in processing of incoming signals. One such component coupled between the source and the input of the amplifier is a coupling capacitor used to maintain a bias voltage of the amplifier at a different potential than a DC voltage of the output node. In certain applications, the amplifier and the coupling capacitor may be integrated on a single substrate.
    Type: Grant
    Filed: January 25, 2010
    Date of Patent: June 19, 2012
    Assignee: Silicon Laboratories Inc.
    Inventors: Dan B. Kasha, G. Tyson Tuttle, Gregory A. Hodgson
  • Patent number: 8198951
    Abstract: An integrated circuit having voltage isolation capabilities includes a plurality of communications channels for transceiving data from the integrated circuit. Each of the communications channel includes capacitive isolation circuitry located in conductive layers of the integrated circuit for providing a high voltage isolation link. The capacitive isolation circuitry distributes a first portion of a high voltage isolation signal across a first group of capacitors on a first link and a second link in the capacitive isolation circuitry and distributes a second portion of the high voltage isolation signal across a second group of capacitors in the first link and the second link in the capacitive isolation circuitry. A differential receiver on each of the plurality of communications channels receives the data on the first link and the second link.
    Type: Grant
    Filed: March 30, 2009
    Date of Patent: June 12, 2012
    Assignee: Silicon Laboratories Inc.
    Inventors: Zhiwei Dong, Shouli Yan, Axel Thomsen, William W. K. Tang, Ka Y. Leung
  • Patent number: 8193867
    Abstract: A voltage control signal at a voltage control signal input terminal is used to adjust an output frequency of an oscillator circuit. The voltage level of the voltage control signal is converted in a one-bit analog-to-digital converter (ADC) to a digital output indicative of the voltage level. Successive digital representations of the voltage level of the voltage control signal are upsampled to generate upsampled blocks of data. A dither circuit inserts a digital dither in the upsampled blocks of data to generate dithered upsampled data, which is used to generate a control signal for a feedback divider of a phase-locked loop circuit and thereby adjust the output frequency.
    Type: Grant
    Filed: October 29, 2010
    Date of Patent: June 5, 2012
    Assignee: Silicon Laboratories Inc.
    Inventors: Zhuo Fu, Susumu Hara
  • Patent number: 8195115
    Abstract: Receiver architectures and related methods are disclosed for high definition (HD) and digital radio FM broadcast receivers. The radio receiver architectures are configured to utilize multiple analog-to-digital converters (ADCs) to handle the digital radio spectrum and can be configured to modify a target IF frequencies depending upon the mode of operation of the receiver. For example, the receiver can include an analog FM reception mode and a digital FM reception mode for which different down-conversions are used for the same analog-plus-digital audio broadcast channel. If desired, the radio broadcast receivers disclosed can be configured so that they only receive digital FM radio content, for example, if the analog FM broadcast was of no interest and/or if the broadcast was all digital.
    Type: Grant
    Filed: May 19, 2011
    Date of Patent: June 5, 2012
    Assignee: Silicon Laboratories, Inc.
    Inventors: G. Tyson Tuttle, Dan B. Kasha, Wade R. Gillham, Richard T. Behrens
  • Patent number: 8193822
    Abstract: A circuit for determining a value of a variable capacitor includes first circuitry for generating a first indication when a variable voltage across the variable capacitor exceeds a threshold voltage. Second circuitry generates a second indication when a reference voltage across a reference capacitor exceeds the threshold voltage. Control logic responsive to the first and second indications generate a control signal indicating whether the first indication or the second indication occurs first. A successive approximation engine generates an N-bit control value responsive to the control signal. A variable current source is responsive to the N-bit control value for generating a variable current to the first circuitry. A reference current source generates a reference current to the second circuitry.
    Type: Grant
    Filed: June 30, 2009
    Date of Patent: June 5, 2012
    Assignee: Silicon Laboratories Inc.
    Inventor: David Welland
  • Patent number: 8188926
    Abstract: Methods and systems are disclosed for folded antenna structures that allow for receive and/or transmit antennas to be used for portable or other devices. The folded antennas described herein can be configured, for example, to fit the design constraints and considerations for portable devices. The folded antenna structures can be implemented using relatively flat flexible printed circuits (e.g., flex circuits) and can be placed in available spaces within the portable device, such as above or behind a battery, while still providing good performance characteristics. Still further, the folded antenna structures can be implemented on a printed circuit board and/or as part of plastic materials and pieces included as part of a portable device.
    Type: Grant
    Filed: December 18, 2008
    Date of Patent: May 29, 2012
    Assignee: Silicon Laboratories, Inc.
    Inventors: Nisha Ganwani, Jonathan D. Pearce, Greg Allan Hodgson, Aaron Blank
  • Patent number: 8188804
    Abstract: In a particular embodiment, a circuit device is disclosed that includes a data generator adapted to output a random pulse sequence having a particular spectral shape. The circuit device further includes a pulse edge control circuit to selectively apply a carrier suppression operation to at least one pulse-width modulated (PWM) signal in response to the random pulse sequence to produce at least one modulated PWM output signal. The spectral energy associated with a PWM carrier of the modulated PWM output signal at a carrier frequency and associated harmonics is changed such that the modulated PWM output signal has a spectral shape defined by the particular spectral shape.
    Type: Grant
    Filed: April 26, 2010
    Date of Patent: May 29, 2012
    Assignee: Silicon Laboratories, Inc.
    Inventors: Jeffrey Alderson, John Khoury, Richard Beale
  • Patent number: 8184683
    Abstract: In one embodiment, the present invention includes a transceiver coupled to a baseband processor to receive digital control information that includes both event and schedule information, and which stores the digital control information in a storage of the transceiver. The transceiver may then be operated according to the event and schedule information.
    Type: Grant
    Filed: February 15, 2011
    Date of Patent: May 22, 2012
    Assignee: Silicon Laboratories Inc.
    Inventors: Brian D. Green, Srihari Adireddy, Lysander Lim, Ramkishore Ganti
  • Patent number: 8184488
    Abstract: Systems and methods for controlling operation of an integrated circuit by applying below ground voltage to one or more pins of the integrated circuit, and in which the application of a below ground pin voltage may be employed as an initiator of (or condition for) a given mode of circuit operation in a manner that prevents the inadvertent initiation of the given mode of operation that may otherwise occur due to accidental application of an above ground voltage to one or more pins of the integrated circuit.
    Type: Grant
    Filed: November 20, 2009
    Date of Patent: May 22, 2012
    Assignee: Silicon Laboratories Inc.
    Inventors: Mike R. May, Russell Croman
  • Patent number: 8179163
    Abstract: Efficient techniques improve the linearity of a charge pump in fractional-N PLLs. A feedback clock pulse several VCO clock periods wide is formed and supplied to a phase frequency detector (PFD). The down pulse generated by the PFD is fixed to eliminate the nonlinearity associated with up and down current source mismatch. The up pulse is made to fall when the down pulse falls, that is, when the feedback clock pulse falls.
    Type: Grant
    Filed: March 25, 2010
    Date of Patent: May 15, 2012
    Assignee: Silicon Laboratories Inc.
    Inventor: Qicheng Yu
  • Patent number: 8179380
    Abstract: A capacitive touch slider array comprises a first conductive trace associated with a first sensing node. The first conductive trace includes a first conductive line and a plurality of first conductive fingers extending from the first conductive line. The plurality of first conductive fingers have lengths that increase from a first end of the capacitive touch slider array to a second end of the capacitive touch slider array. A second conductive trace associated with a second sensing node includes a second conductive line and a plurality of second conductive fingers extending from the second conductive line. The plurality of second conductive fingers have lengths that increase from the second end of the capacitive touch slider array to the first end of the capacitive touch slider array.
    Type: Grant
    Filed: December 19, 2008
    Date of Patent: May 15, 2012
    Assignee: Silicon Laboratories Inc.
    Inventor: John Ellis
  • Patent number: 8174415
    Abstract: An apparatus includes processor and a control interface. The processor is adapted to in a first mode of operation, operate as part of one of a wireless receiver and a wireless transmitter and in a second mode of operation. The processor also processes a first audio band signal to generate a second audio band signal. The control interface selects one of the first and second modes of operation.
    Type: Grant
    Filed: June 29, 2007
    Date of Patent: May 8, 2012
    Assignee: Silicon Laboratories Inc.
    Inventors: G. Tyson Tuttle, Wade R. Gillham, Dan B. Kasha
  • Patent number: 8176440
    Abstract: In a particular embodiment, a system to present search results is disclosed that includes a search system to retrieve search results from multiple data sources and to extract data from the search results. The system also includes a visualization system to generate a graphical user interface (GUI) including a visualization of data related to the search results and including multiple control options. The multiple control options include a first option and a second option related to the extracted data, where the first option is accessible to alter the visualization.
    Type: Grant
    Filed: March 30, 2007
    Date of Patent: May 8, 2012
    Assignee: Silicon Laboratories, Inc.
    Inventor: Tyron Jerrod Stading