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公开(公告)号:US20250138148A1
公开(公告)日:2025-05-01
申请号:US18499181
申请日:2023-10-31
Applicant: Texas Instruments Incorporated
Inventor: Karthik Subburaj , Piyush Soni , Vashishth Dudhia , Ryan Smith , Kavithaa Rajagopalan , Karthik Ramasubramanian , Shankar Ram Narayana Moorthy , Indu Prathapan , Samala Sreekiran
Abstract: In described examples, a frequency modulated continuous wave (FMCW) radar includes a reference clock, a phase locked loop (PLL), a pulse generator, a counter, a chirp ramp control circuit, and a synchronization state machine. The reference clock generates a reference clock signal. The PLL generates a feedback clock signal in response to the reference clock signal, and an output signal in response to the feedback clock signal. The pulse generator outputs a chirp start pulse in response to the reference clock signal. The counter increments a count in response to the feedback clock signal. The synchronization state machine provides a chirp ramp signal to a chirp ramp control circuit in response to the reference clock signal, the feedback clock signal, the chirp start pulse, and the count. The chirp ramp control circuit causes the PLL to ramp a frequency of the output signal in response to the chirp ramp signal.
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公开(公告)号:US11740345B2
公开(公告)日:2023-08-29
申请号:US16294764
申请日:2019-03-06
Applicant: TEXAS INSTRUMENTS INCORPORATED
Inventor: Shankar Ram Narayana Moorthy , Karthik Subburaj , Anil KV Kumar
CPC classification number: G01S13/343 , G01S7/023 , G01S7/0234 , G01S7/0235 , G01S7/354 , G01S13/584 , G01S7/356
Abstract: A method for a radar system includes transmitting, by a transmit channel of the radar system, a frame comprising first, second, and third chirps. Each chirp has a chirp start frequency, and the chirp start frequency of the transmitted chirps is dithered. The method also includes receiving, by a receive channel of the radar system, a frame of reflected chirps based on the transmitted frame, and generating a digital intermediate frequency (IF) signal.
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公开(公告)号:US11874392B2
公开(公告)日:2024-01-16
申请号:US17498342
申请日:2021-10-11
Applicant: Texas Instruments Incorporated
Inventor: Shankar Ram Narayana Moorthy , Karthik Subburaj , Shailesh Joshi , Piyush Soni
CPC classification number: G01S7/2813 , G01S7/352
Abstract: A non-transitory computer-readable storage device stores machine instructions which, when executed by a processor, cause the processor to determine a chirp period Tc for radar chirps in a radar frame. The chirp period Tc comprises a rising period Trise and a falling period Tfall. The processor determines, for each radar chirp in the radar frame, a corresponding randomized frequency characteristic during Tfall, and causes a radar sensor circuit to generate the radar chirps in the radar frame based on Tc, Trise, Tfall, and the corresponding randomized frequency characteristics. In some implementations, the machine instructions to determine the corresponding randomized frequency characteristic comprise machine instructions to determine a frequency step having a frequency f_step and a period Tstep. At least one of the frequency f_step and the period Tstep is dithered across radar chirps in the radar frame.
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公开(公告)号:US20230305132A1
公开(公告)日:2023-09-28
申请号:US17948227
申请日:2022-09-20
Applicant: Texas Instruments Incorporated
Inventor: Karthik Subburaj , Kameswaran Vengattaramane , Shankar Ram Narayana Moorthy , Vashishth Dudhia
CPC classification number: G01S13/38 , G01S7/356 , G01S7/4008
Abstract: In described examples, a frequency modulated continuous wave (FMCW) radar system includes an FMCW signal generator, a number N transmitters, N phase shifters, multiple receivers, and a processor. The FMCW signal generator is configured to generate FMCW chirps. Different ones of the phase shifters have different respective base phase shifts selected in response to N. The transmitter is configured to transmit the phase shifted FMCW chirps. The receivers are configured to receive an FMCW chirp reflected by an object in range of the FMCW radar system. The processor is configured to determine a location of the object in range in response to the received FMCW chirp.
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