Software programmable, multi-segment capture bandwidth, delta-sigma modulators for cellular communications

US9722638B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9722638-B2
Application numberUS-201514744220-A
CountryUS
Kind codeB2
Filing dateJun 19, 2015
Priority dateJun 20, 2014
Publication dateAug 1, 2017
Grant dateAug 1, 2017

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  1. Title

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  2. Abstract

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  5. First independent claim

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Abstract

Official abstract text for this publication.

A cellular radio architecture for a vehicle that includes a triplexer coupled to an antenna structure and including three signal paths, where each signal path includes a bandpass filter that passes a different frequency band than the other bandpass filters and a circulator that provides signal isolation between the transmit signals and the receive signals. The architecture also includes a receiver module having a separate signal channel for each of the signal paths in the triplexer, where each signal channel in the receiver module includes a receiver delta-sigma modulator that converts analog receive signals to a representative digital signal. The delta-sigma modulator includes an LC filter having a plurality of LC resonator circuits, a plurality of transconductance amplifiers and a plurality of integrator circuits, where a combination of one resonator circuit, transconductance amplifier and integrator circuit represents a two-order stage of the LC filter.

First claim

Opening claim text (preview).

What is claimed is: 1. A transceiver front-end circuit for a cellular radio, said transceiver circuit comprising: an antenna structure operable to transmit signals and receive signals; a multiplexer coupled to the antenna structure and including a plurality of signal paths, each signal path including a bandpass filter that passes a different frequency band than the other bandpass filters and a circulator that provides signal isolation between the transmit signals and the receive signals; a receiver module including a separate signal channel for each of the signal paths in the multiplexer, each signal channel in the receiver module including a receiver delta-sigma modulator that converts analog receive signals to a representative digital signal, each receiver delta-sigma module including an LC filter; and a transmitter module including a transmitter delta-sigma modulator for converting digital data bits to the transmit signals, said transmitter module including a power amplifier and a switch for directing the transmit signals to one of the signal paths in the multiplexer. 2. The transceiver circuit according to claim 1 wherein each receiver delta-sigma modulator further includes a combiner, a low noise amplifier (LNA) and a quantizer circuit, said combiner receiving the receive signals from the circulator and a feedback signal from the quantizer circuit and providing an error signal to the LNA to provide an amplified error signal, said amplifier error signal being provided to the LC filter to provide a filtered error signal, and the filtered error signal being provided to the quantizer circuit. 3. The transceiver circuit according to claim 1 wherein the LC filter is a sixth-order filter. 4. The transceiver circuit according to claim 1 wherein the LC filter includes a plurality of LC resonator circuits, a plurality of transconductance amplifiers and a plurality of integrator circuits, where a combination of one resonator circuit, transconductance amplifier and integrator circuit represents a two-order stage of the LC filter. 5. The transceiver circuit according to claim 4 wherein each LC circuit includes an inductor and a capacitor array where the capacitor array includes a plurality of capacitors controlled by switches that provide coarse and fine tuning. 6. The transceiver circuit according to claim 5 wherein the capacitor array receives frequency control bits. 7. The transceiver circuit according to claim 4 wherein the LC filter includes a low-speed digital-to-analog converter (DAC) array that receives coefficient control bits to control the integrator circuits. 8. The transceiver circuit according to claim 1 wherein the multiplexer is a triplexer and the plurality of signal paths in three signal paths. 9. The transceiver circuit according to claim 1 wherein the cellular radio is a vehicle cellular radio. 10. A receiver module for a transceiver front-end circuit in a cellular radio, said receiver module comprising a delta-sigma modulator that converts analog receive signals to a representative digital signal, said delta-sigma modulator including an LC filter having a plurality of LC resonator circuits, a plurality of transconductance amplifiers and a plurality of integrator circuits, where a combination of one resonator circuit, transconductance amplifier and integrator circuit represents a two-order stage of the LC filter, wherein the LC filter includes a low-speed digital-to-analog converter (DAC) array that receives coefficient control bits to control the integrator circuits. 11. The receiver module according to claim 10 wherein the delta-sigma modulator further includes a combiner, a low noise amplifier (LNA) and a quantizer circuit, said combiner receiving the receive signals and a feedback signal from the quantizer circuit and providing an error signal to the LNA to provide an amplified error signal, said amplifier error signal being provided to the LC filter to provide a filtered error signal, and the filtered error signal being provided to the quantizer circuit. 12. The receiver module according to claim 10 wherein the LC filter is a sixth-order filter. 13. The receiver module according to claim 10 wherein each LC circuit includes an inductor and a capacitor array where the capacitor array includes a plurality of capacitors controlled by switches that provide coarse and fine tuning. 14. The receiver module according to claim 13 wherein the capacitor array receives frequency control bits. 15. A transceiver front-end circuit for a vehicle cellular radio, said transceiver circuit comprising: an antenna structure operable to transmit signals and receive signals; a triplexer coupled to the antenna structure and including three signal paths, each signal path including a bandpass filter that passes a different frequency band than the other bandpass filters and a circulator that provides signal isolation between the transmit signals and the receive signals; a receiver module including a separate signal channel for each of the signal paths in the triplexer, each signal channel in the receiver module including a receiver delta-sigma modulator that converts analog receive signals to a representative digital signal, each receiver delta-sigma module including a sixth-order LC filter, wherein each receiver delta-sigma modulator further includes a combiner, a low noise amplifier (LNA) and a quantizer circuit, said combiner receiving the receive signals and a feedback signal from the quantizer circuit and providing an error signal to the LNA to provide an amplified error signal, said amplifier error signal being provided to the LC filter to provide a filtered error signal, and the filtered error signal being provided to the quantizer circuit; and a transmitter module including a transmitter delta-sigma modulator for converting digital data bits to the transmit signals, said transmitter module including a power amplifier and a switch for directing the transmit signals to one of the signal paths in the triplexer. 16. The transceiver circuit according to claim 15 wherein the LC filter includes a plurality of LC resonator circuits, a plurality of transconductance amplifiers and a plurality of integrator circuits, where a combination of one resonator circuit, transconductance amplifier and integrator circuit represents a two-order stage of the LC filter. 17. The transceiver circuit according to claim 16 wherein each LC circuit includes an inductor and a capacitor array where the capacitor array includes a plurality of capacitors controlled by switches that provide coarse and fine tuning. 18. The transceiver circuit according to claim 17 wherein the capacitor array receives frequency control bits. 19. The receiver module according to claim 10 wherein each integrator circuit includes an integrator, two tunable transconductance amplifiers and a summer. 20. The transceiver circuit according to claim 4 wherein each integrator circuit includes an integrator, two tunable transconductance amplifiers and a summer.

Assignees

Inventors

Classifications

  • H04B1/006Primary

    using switches for selecting the desired band (H04B1/0057 takes precedence) · CPC title

  • Digital filtering (H04B1/001 takes precedence; digital filters per se H03H17/00) · CPC title

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Frequently asked questions

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What does patent US9722638B2 cover?
A cellular radio architecture for a vehicle that includes a triplexer coupled to an antenna structure and including three signal paths, where each signal path includes a bandpass filter that passes a different frequency band than the other bandpass filters and a circulator that provides signal isolation between the transmit signals and the receive signals. The architecture also includes a recei…
Who is the assignee on this patent?
Gm Global Tech Operations Llc
What technology area does this patent fall under?
Primary CPC classification H04B1/006. Mapped technology areas include Electricity.
When was this patent published?
Publication date Tue Aug 01 2017 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 1 related publication on this page (citations in our corpus or others sharing the same primary CPC).