Patents Assigned to Analog Devices
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Patent number: 10224800Abstract: Techniques for indicating a load level of a DC-DC switching converter are provided. IN an example, a method for real-time load current detection for a switching converter using a discontinuous conduction mode (DCM) of operation can include generating a minimum DCM current threshold based on an reference current source and a duty cycle of the switching converter, receiving a representation of inductor charge current from power switch of the switching converter at a comparator, comparing the representation to the DCM current threshold, and controlling the power switch using a discontinuous conduction mode of the switching converter when a peak of the representation exceeds the minimum DCM current threshold.Type: GrantFiled: June 9, 2017Date of Patent: March 5, 2019Assignee: Analog Devices GlobalInventors: Danzhu Lu, Bin Shao
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Publication number: 20190063923Abstract: A method for detecting frequency mismatch in microelectromechanical systems (MEMS) gyroscopes is described. Detection of the frequency mismatch between a drive signal and a sense signal may be performed by generating an output signal whose spectrum reflects the physical characteristics of the gyroscope, and using the output signal to determine the frequency fC of the sense signal. The output signal may be generated by cross-correlating a random or pseudo-random noise signal with a response signal, where the response signal can be obtained by allowing the noise signal to pass through a system designed to have a noise transfer function that mimics the frequency response of the gyroscope. Since the noise signal is random or pseudo-random, cross-correlating the noise signal with the response signal reveals spectral characteristics of the gyroscope. To improve computational efficiency, the cross-correlation can be performed on demodulated versions of the noise signal and the response signal.Type: ApplicationFiled: August 30, 2017Publication date: February 28, 2019Applicant: Analog Devices, Inc.Inventors: Jiefeng Yan, Ronald A. Kapusta, JR., Jianrong Chen
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Patent number: 10218268Abstract: The present disclosure relates to a voltage reference circuit and a method of providing a voltage reference. The voltage reference circuit uses a switched capacitor arrangement to move charge between capacitors during different phases of operation of the circuit to which the voltage reference is being provided. The circuit being provided with a voltage reference may be an analog-to-digital converter (ADC). A reservoir capacitor is used to supply the reference voltage. During a phase in which no voltage reference is required, charge is shared between the capacitors of the switched capacitor arrangement, in order to boost the charge on the reservoir capacitor. After charge sharing, the reservoir capacitor is topped up with an output from a reference buffer. The reservoir capacitor may then be used again in the next conversion phase.Type: GrantFiled: March 26, 2018Date of Patent: February 26, 2019Assignee: Analog Devices Global Unlimited CompanyInventors: Maitrey Kamble, Michael C. W. Coln, Vinayak Mukund Kulkarni
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Patent number: 10219090Abstract: The present invention relates in one aspect to a method of detecting diaphragm excursion of an electrodynamic loudspeaker. The method comprises steps of generating an audio signal for application to a voice coil of the electrodynamic loudspeaker and adding a high-frequency probe signal to the audio signal to generate a composite drive signal. The method further comprises a step of applying the composite drive signal to the voice coil through an output amplifier and detecting a modulation level of a probe signal current flowing through the voice coil.Type: GrantFiled: February 27, 2013Date of Patent: February 26, 2019Assignee: Analog Devices GlobalInventors: Robert Adams, Kim Spetzler Berthelsen
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Patent number: 10209307Abstract: A multiple-level driver circuit, such as for providing several different signals to a device under test (DUT) in an automated test system, can include multiple diode bridge circuits. In an example, a first diode bridge circuit is configured to receive a multiple-valued input voltage signal, having at least two different DC voltage signal levels, at an input node and, in response, to selectively provide a corresponding multiple-valued output voltage signal at an output node. The first diode bridge circuit can operate in a conducting and non-commutated state when it is used to selectively provide the multiple-valued output voltage signal at the output node.Type: GrantFiled: May 23, 2016Date of Patent: February 19, 2019Assignee: Analog Devices, Inc.Inventor: Christopher C. McQuilkin
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Patent number: 10210946Abstract: According to some aspects, a low-leakage switch is provided. In some embodiments, the low-leakage switch includes a plurality of pass transistors in series that selectively couple two ports of the low-leakage switch and a node biasing circuit coupled to a node between the plurality of pass transistors. In these embodiments, the node biasing circuit may adjust a voltage at the node to change the gate-to-source voltage of the pass transistors and, thereby, reduce the leakage current through the pass transistors when the low-leakage switch is turned off. The node biasing circuit may also include circuitry to reduce the leakage current introduced by the node biasing circuit into the node when the low-leakage switch is turned on.Type: GrantFiled: October 28, 2016Date of Patent: February 19, 2019Assignee: Analog Devices, Inc.Inventor: Howard R. Samuels
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Patent number: 10211788Abstract: A converter circuit is provided that includes an amplifier circuit and further includes: a summing current resistor that exhibits nonlinear resistance coupled between a voltage node and a summing current node of the amplifier; a compensation resistor circuit includes resistors that exhibit nonlinear resistance; the compensation resistor circuit produces a compensation current at the summing current node that compensates for nonlinear current flow in the summing current resistor.Type: GrantFiled: February 28, 2017Date of Patent: February 19, 2019Assignee: Analog Devices GlobalInventors: Roderick McLachlan, Roberto Sergio Matteo Maurino
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Patent number: 10211846Abstract: Techniques for limiting the output voltage of an amplifier without directly affecting an output current of the amplifier are provided. In an example, an amplifier can include a plurality of amplifier stages configured to receive an input voltage and to provide an output voltage as a function of the input voltage, and a comparator configured to receive a voltage limit and a representation of the output voltage of the amplifier, to adjust current at an input to a first amplifier stage of the plurality of amplifier stages when the output voltage violates the voltage limit, and to clamp the output voltage at an offset from the voltage limit.Type: GrantFiled: November 6, 2017Date of Patent: February 19, 2019Assignee: Analog Devices, Inc.Inventor: Kerry Brent Phillips
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Publication number: 20190049481Abstract: An electromechanical system (MEMS) accelerometer is described. The MEMS accelerometer may be configured to sense linear acceleration along one, two or three axes, and to sense angular acceleration about one, two or three axes. As such, the MEMS accelerometer may serve as 2-axis, 3-axis, 4-axis, 5-axis or 6-axis inertial accelerometer. In some embodiments, the MEMS accelerometer may comprise a single mass connected to at least one anchor via a plurality of tethers. In other embodiments, the MEMS accelerometer may comprise a proof mass connected to at least one anchor via a plurality of tethers and one or more shuttle masses connected to the proof mass via a second plurality of tethers. Rotational and linear motion of the MEMS accelerometer may be sensed using capacitive sensors.Type: ApplicationFiled: August 9, 2017Publication date: February 14, 2019Applicant: Analog Devices, Inc.Inventor: Xin Zhang
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Publication number: 20190047846Abstract: A MEMS product includes a stress-isolated MEMS platform surrounded by a stress-relief gap and suspended from a substrate. The stress-relief gap provides a barrier against the transmission of mechanical stress from the substrate to the platform.Type: ApplicationFiled: October 15, 2018Publication date: February 14, 2019Applicant: Analog Devices, Inc.Inventors: Xin Zhang, Michael Judy, George M. Molnar, Christopher Needham, Kemiao Jia
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Publication number: 20190049482Abstract: A MEMS resonant accelerometer is described. The MEMS resonant accelerometer may comprise a pair of proof masses configured to resonate when driven with periodic signals. In this respect, the accelerometer's proof masses may serve as masses for detecting accelerations as well as resonators. The MEMS resonant accelerometer may comprise drive electrodes for causing the proof masses to resonate and sense electrodes for sensing motion of the proof masses. The magnitude of a z-axis acceleration, that is, an acceleration perpendicular to the plane of the proof masses, may be detected by sensing the frequency at which the proof masses resonate in the presence of such an acceleration. The proof masses may be arranged to produce differential signals.Type: ApplicationFiled: August 10, 2017Publication date: February 14, 2019Applicant: Analog Devices, Inc.Inventor: Mehrnaz Motiee
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Patent number: 10203352Abstract: A microelectromechanical systems (MEMS) accelerometer is described. The MEMS accelerometer may comprise a proof mass configured to sense accelerations in a direction parallel the plane of the proof mass, and a plurality of compensation structures. The proof mass may be connected to one or more anchors through springs. The compensation structures may be coupled to the substrate of the MEMS accelerometer through a rigid connection to respective anchors. A compensation structure may comprise at least one compensation electrode forming one or more lateral compensation capacitors. The compensation capacitor(s) may be configured to sense displacement of the anchor to which the compensation structures is connected.Type: GrantFiled: August 4, 2016Date of Patent: February 12, 2019Assignee: Analog Devices, Inc.Inventors: Xin Zhang, William A. Clark, Michael Judy
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Patent number: 10205442Abstract: A transformer based digital isolator is provided that has improved immunity to common mode interference. The improved immunity is provided by placing the transformer in association with an H-bridge drive circuit, and taking additional effort to tailor the on state resistance of the transistors to control a common mode voltage at the transformer.Type: GrantFiled: August 8, 2016Date of Patent: February 12, 2019Assignee: Analog Devices GlobalInventors: Michael Lynch, Brian Anthony Moane
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Patent number: 10204732Abstract: An isolator device is provided comprising a body of first dielectric material between the first and second conductors, such as primary and secondary coils of a micro-transformer. A region of second dielectric material is provided between the body of first dielectric material and at least one of the first and second electrodes, wherein the second dielectric material has a higher relative permittivity than the first dielectric material. This provides enhances ability to withstand the Electric fields generated at the edge of a conductor. The body of the first dielectric can be tapered to provide stress relief to prevent the second dielectric material developing stress cracks.Type: GrantFiled: June 10, 2016Date of Patent: February 12, 2019Assignee: Analog Devices GlobalInventors: Patrick J. Murphy, Stephen O'Brien, Sarah Carroll, Bernard P. Stenson, Conor John Mcloughlin, Michal J. Osiak
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Patent number: 10203351Abstract: In some exemplary embodiments, a MEMS accelerometer includes a device wafer having a proof mass and a plurality of tracking anchor points attached to a substrate. Each tracking anchor is configured to deflect in response to asymmetrical deformation in the substrate, and transfer mechanical forces generated in response to the deflection to tilt the proof mass in a direction of the deformation.Type: GrantFiled: October 3, 2014Date of Patent: February 12, 2019Assignee: Analog Devices, Inc.Inventor: Xin Zhang
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Publication number: 20190039883Abstract: A monolithic vapor chamber heat dissipating device uses a phase change liquid and one or more wicks to dissipate heat from a heat-generating system. The phase change liquid and one or more wicks may be directly coupled to the heat-generating system, or may be coupled to an intermediate evaporator substrate. The phase change liquid vaporizes as it absorbs heat from the heat-generating system. When the vapor rises and encounters a condenser substrate, the vapor condenses and transfers the heat to the condenser substrate. The condensed vapor is drawn by gravity and the one or more wicks to the phase change liquid coupled to the heat-generating system.Type: ApplicationFiled: August 1, 2017Publication date: February 7, 2019Applicant: Analog Devices GlobalInventors: Baoxing Chen, William Allan Lane, Marc T. Dunham
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Patent number: 10199369Abstract: Apparatus and methods for transient overstress protection with false condition shutdown are provided herein. In certain configurations, a high-voltage tolerant actively-controlled protection circuit includes a transient overstress detection circuit, a clamp circuit electrically connected between a first node and a second node, a bias circuit that biases the clamp circuit, and a false condition shutdown circuit. The transient overstress detection circuit generates a detection signal indicating whether or not a transient overstress event is detected between the first and second nodes. Additionally, the false condition shutdown circuit generates a false condition shutdown signal based on low pass filtering a voltage difference between the first and second nodes, thereby determining independently whether or not power is present. The bias circuit controls operation of the clamp circuit in an on state or an off state based on the detection signal and the false condition shutdown signal.Type: GrantFiled: March 4, 2016Date of Patent: February 5, 2019Assignee: Analog Devices, Inc.Inventors: Srivatsan Parthasarathy, Javier Alejandro Salcedo
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Patent number: 10200009Abstract: A transformer-based balun circuit is disclosed herein. The balun can be implemented using a spiral transformer, where primary and secondary transformer windings can be inductively coupled and can be implemented on the same metal layer (or different metal layers, e.g. vertically adjacent metal layers). The balun can further include a compensation capacitor and a digital frequency tuning circuit. The compensation capacitor can be introduced at one of the differential terminals to reduce or suppress the amplitude and phase imbalance. The digital frequency tuning circuit can be a switchable bank of capacitors, which allows for tuning the frequency of operation of the transformer-based balun.Type: GrantFiled: August 31, 2016Date of Patent: February 5, 2019Assignee: Analog Devices GlobalInventors: Mohamed A. Abdalla, Mohamed Mobarak, Ahmed Ibrahim Khalil
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Patent number: 10200041Abstract: An analog multiplexer may be used for sampling an input voltage that is capable of having a higher voltage level than an upper supply voltage. The analog multiplexer includes a plurality of input switch circuits and a shorting switch circuit. The plurality of input switch circuits include n-type or p-type laterally diffused field effect transistors (NLDFETs or PLDFETs). At least one of the input switch circuits includes a level shifting switch circuit that is able to sample an input voltage that is greater than the upper supply voltage for the multiplexer. A shorting switch circuit, at an output of the multiplexer, includes a capacitively coupled gate drive circuit and is configured to short a first differential output to a second differential output after the input voltage is sampled.Type: GrantFiled: November 1, 2016Date of Patent: February 5, 2019Assignee: Analog Devices GlobalInventors: Jeremy R. Gorbold, Christian Steffen Birk, Gerard Mora Puchalt, Colin Charles Price, Michael C. W. Coln, Mahesh Madhavan Kumbaranthodiyil
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Patent number: 10200055Abstract: Techniques and related circuits are disclosed and can be used to characterize glitch performance of a digital-to-analog (DAC) converter circuit in a rapid and repeatable manner, such as for use in providing an alternating current (AC) glitch value specification. A relationship can exist between a glitch-induced DAC output offset value and a DAC circuit input event rate. A relationship between the event rate (e.g., update rate) and the DAC output offset can be used to predict an offset value based at least in part on update rate or to estimate a corresponding glitch impulse area. In particular, a value representing glitch impulse area can be obtained by use of a hardware integration circuit without requiring use of a digitized time-series of glitch event waveforms.Type: GrantFiled: January 5, 2018Date of Patent: February 5, 2019Assignee: Analog Devices GlobalInventors: Peter Enright, Martina Mincica, Fergus Downey