G01S7/034

SYSTEM AND METHOD OF CONFIGURING AN EXTERNAL RADAR DEVICE THROUGH HIGH SPEED REVERSE DATA TRANSMISSION
20200233059 · 2020-07-23 ·

System and method of configuring an external radar device through high speed reverse data transmission. In one embodiment, the system includes a radar data processing module for processing radar data received from the external radar device, and a radar configuration management module for generating control data for controlling the external radar device. The system further includes a configurable half-duplex interface, wherein the configurable half-duplex interface, in response to receiving a turnaround command, switches between (1) a configuration for transmitting control data packets to the external radar device via a communication link, and (2) a configuration for receiving radar data packets from the external radar device via the communication link. A receive controller is provided and is configured to receive radar data packets from the external radar device via the communication link and the configurable half-duplex interface, wherein the receive controller is configured to extract radar data from the radar packets for subsequent processing by the radar data processing module. A transmit controller is provided and configured to receive control data from the radar configuration management module, wherein the transmit controller is configured to generate radar control packets comprising the radar control data, and wherein the transmit controller is configured to transmit the radar control packets to the external radar device via the communication link and the configurable half-duplex interface when configured for transmitting data.

Integrated radio-frequency circuit, radar sensor and operating method

An integrated radio-frequency circuit for a radar sensor, having a clock input that is designed to receive a clock signal produced externally to the integrated radio-frequency circuit, having a local oscillator that is designed to produce a local radio-frequency signal, having a radio-frequency input that is designed to receive an external radio-frequency signal produced externally to the integrated radio-frequency circuit, and having a changeover switch that is coupled to the local oscillator and to the radio-frequency input and is designed to change over between the local radio-frequency signal and the external radio-frequency signal for the production of a radar signal. In addition, a corresponding radar sensor and a corresponding operating method, are also described.

RADAR SYSTEMS AND METHODS HAVING ISOLATOR DRIVEN MIXER

Radar circuitry can include an isolator and a mixer. The isolator can isolate a transmission signal path and a reception signal path from each other, and generate a mixing (e.g. oscillation) signal based on a transmission signal. The isolator can be coupled to the mixer such that the drive signal drives the mixer (e.g. serves as the local oscillation signal of the mixer). The mixer mixes a received signal and the drive signal to generate a converted signal (e.g. a down-converted signal). The isolator can be a hybrid transformer or electrically balanced duplexer.

Microwave antenna module for space applications including a hybrid transmit/receive module of package on package type

The invention concerns a microwave antenna module for use in an antenna system installed on board a space platform. The disclosed microwave antenna module includes a transmit/receive module, which comprises: a first package and a second package, that are hermetically sealed to one another and that are multilayer ceramic substrate packages; and an interposer connector, that is interposed between the first and second packages and comprises a body and connection means provided in the body. First and second electronic circuitries are connected to the connection means of the interposer connector for routing microwave, control and power signals through the connection means. The first electronic circuitry includes a directional coupler in stripline-coplanar configuration. Each microwave connection assembly includes: a respective first metal element, that extends through the body perpendicularly to a top surface and a bottom surface of the body, protruding from the top and bottom surfaces; a respective first dielectric element, that is coaxial with, and extends around, the respective first metal element surrounding completely the respective first metal element, and extends through the body between the top surface and the bottom surface thereof; and respective second metal elements, that are spaced apart from, and surround at least partially, the respective first dielectric element, extend through the body perpendicularly to the top and bottom surfaces thereof, protruding from the top and bottom surfaces, and are in electrical contact with the body, thereby being at the same electrical potential as the body.

Same-aperture any-frequency simultaneous transmit and receive communication system

A same-aperture any-frequency simultaneously transmit and receive (STAR) system includes a signal connector having a first port electrically coupled to an antenna, a second port electrically coupled to a transmit signal path, and a third port electrically coupled to receive signal path. The signal connector passes a transmit signal in the transmit signal path to the antenna and a receive signal in the receive signal path. A signal isolator is positioned in the transmit signal path to remove a residual portion of the receive signal from transmit signal path. An output of the signal isolator provides a portion of the transmit signal with the residual portion of the receive signal removed. A signal differencing device having a first input electrically coupled to the output of the signal isolator and a second input electrically coupled to the third port of the signal connector subtracts a portion of the transmit signal in the receive signal path thereby providing a more accurate receive signal.

Dielectric waveguide radar signal distribution
10622694 · 2020-04-14 · ·

A system is provided for transmitting sub-terahertz electro-magnetic radio frequency (RF) signals using a dielectric waveguide (DWG) having a dielectric core member surrounded by dielectric cladding. Multiple radar signals may be generated by a radar module that is coupled to a vehicle. A set of DWG segments may be used to transport the radar signals to various launching structures placed in various locations of the vehicle.

ANTENNA DEVICE AND RADAR INCLUDING THE SAME
20200112086 · 2020-04-09 ·

The present disclosure relates to an antenna device and a radar including the same. Specifically, the antenna device according to the present disclosure includes: at least one first antenna arranged in one direction and configured to radiate a beam tilted at a first tilt angle; at least one second antenna arranged to be spaced apart from the first antenna and configured to radiate a beam tilted at a second tilt angle; an input/output terminal disposed such that any one of a transmission signal and a reception signal moves therethrough; and a divider comprising a first port connected to the first antenna, a second port connected to the second antenna, and a third port connected to the input/output terminal, wherein the divider is disposed such that a signal transmitted to one of the first port and the second port is transmitted to a remaining one of the first and second port through a first path and a second path and the transmitted signal is isolated in the remaining port.

Active phase switchable array

An active phase switchable array includes a plurality of antenna elements and a bias circuit. Each of the radar elements includes an antenna, a power coupling network and an injection-locked oscillator (ILO), and each of the antenna elements is coupled with each other through the power coupling networks for operating the ILO of each of the antenna elements in self- and mutual-injection-locked states. The antenna elements in self-injection-locked state are utilized to detect the vital signs of subjects, and the antenna elements in mutual-injection-locked state are utilized to produce phase difference between the radiating signals of the antenna elements for forming a beam. As a result, the active phase switchable array can simultaneously detect the vital signs of multiple subjects.

Switchable transmit/receive (T/R) module

A transmit/receive module having a switch, a load and a controller for coupling radar energy fed to switch to the load during a time interval subsequent to the controller producing a transmit enable signal to the transmit/receive module and prior to the controller producing a receive enable signal to the transmit/receive module.

Cascaded transceiver integrated circuit
10566956 · 2020-02-18 · ·

An apparatus is provided comprising a first integrated circuit. The first integrated circuit comprises a first element comprising one of a transmit or receive element, an oscillator for providing a first local oscillator signal, a local oscillator output configured to output the first local oscillator signal when activated, a local oscillator input configured to receive a master local oscillator signal when activated; and first switching circuitry for selectively coupling the first element to one of the oscillator and the local oscillator input.