Lin He - Los Angeles CA, US Tong Fang - Morganville NJ, US
Assignee:
Siemens Medical Solutions USA, Inc. - Malvern PA
International Classification:
G06K 9/00 G06K 9/36
US Classification:
382128, 382280
Abstract:
Certain exemplary embodiments can comprise a method, which can comprise providing machine instructions adapted to render a final enhanced image of an object based upon a final enhanced set of data. The final enhanced set of data can be derived from a detected set of data obtained from an imaging device, such as a medical imaging device.
Bruce J. Currivan - Dove Canyon CA, US Loke Kun Tan - Newport Coast CA, US Thomas Joseph Kolze - Phoenix AZ, US Hanli Zou - Rancho Santa Margarita CA, US Lin He - Irvine CA, US
Assignee:
Broadcom Corporation - Irvine CA
International Classification:
H03H 7/30
US Classification:
375229, 375232, 375233, 375230, 370495, 370503
Abstract:
An apparatus is disclosed to compensate for non-linear effects resulting from the transmitter, the receiver, and/or the communication channel in a communication system. A receiver of the communication system contains an image cancellation module that compensates for images generated during the modulation and/or demodulation process. The image cancellation module includes a fine carrier correction loop to correct for frequency offsets between the transmitter and receiver. The image cancellation module includes a coarse acquisition mode and a decision directed mode. The decision directed mode allows for a larger signal-to-noise ratio for the receiver when compared against the coarse acquisition mode.
Analog To Digital Converter (Adc) With Extended Dynamic Input Range
Bruce J. Currivan - Dove Canyon CA, US Thomas J. Kolze - Phoenix AZ, US Lin He - Irvine CA, US Loke Tan - Newport Coast CA, US Ramon Gomez - San Juan Capistrano CA, US Francesco Gatta - Irvine CA, US
Assignee:
Broadcom Corporation - Irvine CA
International Classification:
H03M 1/12
US Classification:
341155, 341132, 341139, 341158, 341159
Abstract:
A method and apparatus is disclosed to extend a dynamic input range of an analog to digital converter (ADC). A composite ADC may include one or more ADCs. The one or more ADCs compare a signal metric of an analog input signal to quantization levels to produce intermediate digital output signals using one or more non-clipping input values. The composite ADC may select among the one or more intermediate digital output signals based on the signal metric of the analog input signal to produce a final digital output.
Bruce J. Currivan - Dove Canyon CA, US Loke Kun Tan - Newport Coast CA, US Thomas Joseph Kolze - Phoenix AZ, US Hanli Zou - Rancho Santa Margarita CA, US Lin He - Irvine CA, US
Assignee:
Broadcom Corporation - Irvine CA
International Classification:
H03H 7/30
US Classification:
375229, 375232, 375233, 375230, 370495, 370503
Abstract:
An apparatus is disclosed to compensate for non-linear effects resulting from the transmitter, the receiver, and/or the communication channel in a communication system. A receiver of the communication system contains an image cancellation module that compensates for images generated during the modulation and/or demodulation process. The image cancellation module includes a fine carrier correction loop to correct for frequency offsets between the transmitter and receiver. The image cancellation module includes a coarse acquisition mode and a decision directed mode. The decision directed mode allows for a larger signal-to-noise ratio for the receiver when compared against the coarse acquisition mode.
Low Density Parity Check (Ldpc) Encoded Higher Order Modulation
Lin He - Irvine CA, US Thomas J. Kolze - Phoenix AZ, US Gottfried Ungerboeck - Langnau a.A., CH Bruce J. Currivan - Dove Canyon CA, US
Assignee:
Broadcom Corporation - Irvine CA
International Classification:
H04N 7/12 H04N 11/02
US Classification:
37524026
Abstract:
A method and apparatus is disclosed to map a sequence of data to Quadrature Amplitude Modulation (QAM) constellation symbols. The method and apparatus encodes only a portion of the sequence of data and leaves a remaining portion of the sequence of data unencoded. The encoded portion of the sequence of data and the remaining unencoded portion of the sequence of data are then mapped into modulation symbols of the QAM constellation. The encoded portion of the sequence of data selects subsets of the QAM constellation, and the remaining unencoded portion of the sequence of data determines a specific modulation symbol within each subset of the QAM constellation.
Ramon Alejandro Gomez - San Juan Capistrano CA, US Loke Kun Tan - Newport Coast CA, US Bruce J. Currivan - Dove Canyon CA, US Steven T. Jaffe - Irvine CA, US Thomas Joseph Kolze - Phoenix AZ, US Lin He - Irvine CA, US
Assignee:
Broadcom Corporation - Irvine CA
International Classification:
H03M 1/06
US Classification:
341118, 341155
Abstract:
A method and apparatus is disclosed to compensate for impairments within a data converter such that its output is a more accurate representation of its input. The data converter includes a main data converter, a reference data converter, and a correction module. The main data converter may be characterized as having the impairments. As a result, the output of the main data converter is not the most accurate representation of its input. The reference data converter is designed such that the impairments are not present. The correction module estimates the impairments present within the main data converter using its output and the reference data converter to generate corrections coefficients. The correction module adjusts the output of the main data converter using the corrections coefficients to improve the performance of the data converter.
Bruce J. Currivan - Dove Canyon CA, US Loke Kun Tan - Newport Coast CA, US Thomas Joseph Kolze - Phoenix AZ, US Hanli Zou - Rancho Santa Margarita CA, US Lin He - Irvine CA, US
An apparatus is disclosed to compensate for non-linear effects resulting from the transmitter, the receiver, and/or the communication channel in a communication system. A receiver of the communication system contains an image cancellation module that compensates for images generated during the modulation and/or demodulation process. The image cancellation module includes a fine carrier correction loop to correct for frequency offsets between the transmitter and receiver. The image cancellation module includes a coarse acquisition mode and a decision directed mode. The decision directed mode allows for a larger signal-to-noise ratio for the receiver when compared against the coarse acquisition mode.
Low Density Parity Check (Ldpc) Encoded Higher Order Modulation
Lin He - Irvine CA, US Thomas J. Kolze - Phoenix AZ, US Gottfried Ungerboeck - Langnau a.A., CH Bruce J. Currivan - Dove Canyon CA, US
Assignee:
Broadcom Corporation - Irvine CA
International Classification:
H04N 7/12 H04N 11/02
US Classification:
37524026
Abstract:
A method and apparatus is disclosed to map a sequence of data to Quadrature Amplitude Modulation (QAM) constellation symbols. The method and apparatus encodes only a portion of the sequence of data and leaves a remaining portion of the sequence of data unencoded. The encoded portion of the sequence of data and the remaining unencoded portion of the sequence of data are then mapped into modulation symbols of the QAM constellation. The encoded portion of the sequence of data selects subsets of the QAM constellation, and the remaining unencoded portion of the sequence of data determines a specific modulation symbol within each subset of the QAM constellation.
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