NEU

AWRL6844

AKTIV

Energieeffizienter mmWave-Radarsensor mit hoher Leistung und einem Chip, 57 GHz bis 64 GHz, für d

Produktdetails

Frequency range 57 - 64 GHz Number of receivers 4 Number of transmitters 4 ADC sampling rate (max) (Msps) 12.5 Arm CPU Arm Cortex-R5F at 200MHz Interface type 2 CAN-FD, GPIO, I2C, LIN, PWM, QSPI, SPI, UART DSP type C66x DSP 450MHz Hardware accelerators Radar hardware accelerator Edge AI enabled Yes RAM (kByte) 2500 Rating Automotive Operating temperature range (°C) -40 to 140 TI functional safety category Functional Safety-Compliant Power supply solution TPS650365-Q1
Frequency range 57 - 64 GHz Number of receivers 4 Number of transmitters 4 ADC sampling rate (max) (Msps) 12.5 Arm CPU Arm Cortex-R5F at 200MHz Interface type 2 CAN-FD, GPIO, I2C, LIN, PWM, QSPI, SPI, UART DSP type C66x DSP 450MHz Hardware accelerators Radar hardware accelerator Edge AI enabled Yes RAM (kByte) 2500 Rating Automotive Operating temperature range (°C) -40 to 140 TI functional safety category Functional Safety-Compliant Power supply solution TPS650365-Q1
FCCSP (ANC) 207 82.81 mm² 9.1 x 9.1
  • FMCW Transceiver
    • Integrated PLL, transmitter, receiver, baseband and ADC
    • 57 - 64GHz coverage with 7GHz continuous bandwidth
    • 4 receive channels and 3 to 4 transmit channels (AWRL6843 with 3 channels and AWRL6844 with 4 channels)
    • 12.5dBm typical output power per TX
    • 12.5dB typical noise figure
    • -90.5dBc/Hz typical phase noise at 1MHz
    • FMCW operation
    • 10MHz IF bandwidth, real-only Rx channels
    • Ultra-accurate chirp engine based on fractional-N PLL
    • Per transmitter binary phase shifter
  • Processing elements
    • Arm R5F core with double precision FPU (200MHz)
    • Hardware Accelerator (HWA 1.2) for FFT, log magnitude, and CFAR operations (200MHz)
    • C66x DSP (450MHz) for processing Radar data
  • Supports multiple low-power modes
    • Idle mode and deep sleep mode
  • Power management
    • 1.8V and 3.3V IO support
    • Built-in LDO network for enhanced PSRR
    • Two power rails for 1.8V IO mode, Three power rails for 3.3V IO mode
  • FCCSP package having 17 x 17 BGA grid, 207 BGA balls; Package size: 9.1mm x 9.1mm
  • Built-in calibration and self-test
    • Built-in Firmware (ROM)
    • Self-Contained on chip calibration system
  • Host Interfaces
    • 3 x UART
    • 2 x CAN-FD
    • 2 x SPI
    • LIN
  • LVDS for data transfer of raw ADC sample capture
  • Other interfaces available to user application
    • QSPI
    • I2C
    • JTAG
    • 8 x GPIOs
    • PWM Interface
    • 4 x GPADCs
  • Device security (on Secure device variants)
    • Programmable embedded hardware security module (HSM)
    • Secure authenticated and encrypted boot support
    • Customer programmable root keys, symmetric keys (256 bit), asymmetric keys (up to RSA-4K or ECC-512) with key revocation capability
    • Cryptographic hardware accelerators: PKA with ECC/RSA, AES (up to 256 bit), SHA (up to 512 bit), TRNG/DRBG and SM2, SM3, SM4(Chinese Crypto Algorithms)
    • Product Cybersecurity Compliance
      • ISO21434 compliant up to CAL2 targeted
      • Developed for cybersecurity-relevant applications
      • Documentation will be available to aid cybersecurity system design
  • Internal memory
    • On-Chip RAM - 2.5MBytes (2MBytes for AWRL6843) including
      • R5F TCMA RAM - 512KB
      • R5F TCMB RAM - 256KB
      • DSS L2 RAM - 384KB
      • DSS L3 RAM - 512KB (available only in AWRL6844)
      • DSS L3 Shared RAM - 896KB (can be shared with TCMs)
  • Functional Safety-Compliant Targeted
    • Developed for Functional Safety Applications
    • Documentation will be available to aid functional safety system design
    • Hardware integrity up to ASIL B targeted as per ISO26262 standard
  • AEC Q-100 qualified
  • Clock source
    • 40.0MHz crystal for primary clock
    • Supports externally driven clock (Square/Sine) at 40.0MHz
    • 32kHz internal oscillator for low power operations
  • Operating temperature range
    • Junction Temperature Range: –40°C to 140°C
  • FMCW Transceiver
    • Integrated PLL, transmitter, receiver, baseband and ADC
    • 57 - 64GHz coverage with 7GHz continuous bandwidth
    • 4 receive channels and 3 to 4 transmit channels (AWRL6843 with 3 channels and AWRL6844 with 4 channels)
    • 12.5dBm typical output power per TX
    • 12.5dB typical noise figure
    • -90.5dBc/Hz typical phase noise at 1MHz
    • FMCW operation
    • 10MHz IF bandwidth, real-only Rx channels
    • Ultra-accurate chirp engine based on fractional-N PLL
    • Per transmitter binary phase shifter
  • Processing elements
    • Arm R5F core with double precision FPU (200MHz)
    • Hardware Accelerator (HWA 1.2) for FFT, log magnitude, and CFAR operations (200MHz)
    • C66x DSP (450MHz) for processing Radar data
  • Supports multiple low-power modes
    • Idle mode and deep sleep mode
  • Power management
    • 1.8V and 3.3V IO support
    • Built-in LDO network for enhanced PSRR
    • Two power rails for 1.8V IO mode, Three power rails for 3.3V IO mode
  • FCCSP package having 17 x 17 BGA grid, 207 BGA balls; Package size: 9.1mm x 9.1mm
  • Built-in calibration and self-test
    • Built-in Firmware (ROM)
    • Self-Contained on chip calibration system
  • Host Interfaces
    • 3 x UART
    • 2 x CAN-FD
    • 2 x SPI
    • LIN
  • LVDS for data transfer of raw ADC sample capture
  • Other interfaces available to user application
    • QSPI
    • I2C
    • JTAG
    • 8 x GPIOs
    • PWM Interface
    • 4 x GPADCs
  • Device security (on Secure device variants)
    • Programmable embedded hardware security module (HSM)
    • Secure authenticated and encrypted boot support
    • Customer programmable root keys, symmetric keys (256 bit), asymmetric keys (up to RSA-4K or ECC-512) with key revocation capability
    • Cryptographic hardware accelerators: PKA with ECC/RSA, AES (up to 256 bit), SHA (up to 512 bit), TRNG/DRBG and SM2, SM3, SM4(Chinese Crypto Algorithms)
    • Product Cybersecurity Compliance
      • ISO21434 compliant up to CAL2 targeted
      • Developed for cybersecurity-relevant applications
      • Documentation will be available to aid cybersecurity system design
  • Internal memory
    • On-Chip RAM - 2.5MBytes (2MBytes for AWRL6843) including
      • R5F TCMA RAM - 512KB
      • R5F TCMB RAM - 256KB
      • DSS L2 RAM - 384KB
      • DSS L3 RAM - 512KB (available only in AWRL6844)
      • DSS L3 Shared RAM - 896KB (can be shared with TCMs)
  • Functional Safety-Compliant Targeted
    • Developed for Functional Safety Applications
    • Documentation will be available to aid functional safety system design
    • Hardware integrity up to ASIL B targeted as per ISO26262 standard
  • AEC Q-100 qualified
  • Clock source
    • 40.0MHz crystal for primary clock
    • Supports externally driven clock (Square/Sine) at 40.0MHz
    • 32kHz internal oscillator for low power operations
  • Operating temperature range
    • Junction Temperature Range: –40°C to 140°C

The AWRL684x mmWave Sensor device is TI’s low power and Hardware Security Module (HSM) enabled integrated single chip mmWave sensor based on FMCW radar technology. The device is capable of operation in the 57GHz to 63.9GHz band with 7GHz continuous chirp bandwidth and is designed for various automotive in-cabin use cases. The device also takes advantage of a low power architecture to enable power-constrained applications. The device is split into the following four switchable power domains:

The AWRL684x is specifically designed to be able to dynamically control the power states of the above-mentioned power domains based on application requirements. The device also features various low-power states and that are achieved by turning off internal IP blocks of the device. AWRL684x device also provides the option of retaining memory during these low power states to retain critical information such as application image and RF profiles across different power modes.

A Hardware Security Module (HSM) is also provisioned in the device (available with secure part variants). The HSM consists of a programmable Arm Cortex-M4 core and the necessary infrastructure to provide a secure zone of operation within the device.

Additionally, the device is built with TI’s low power 45nm RF CMOS process and enables unprecedented levels of integration in an extremely small form factor. AWRL684x is designed for low power, self-monitored, ultra-accurate radar systems in the automotive space for applications like child presence detection, occupancy localization & classification and low power intrusion monitoring.

The AWRL684x mmWave Sensor device is TI’s low power and Hardware Security Module (HSM) enabled integrated single chip mmWave sensor based on FMCW radar technology. The device is capable of operation in the 57GHz to 63.9GHz band with 7GHz continuous chirp bandwidth and is designed for various automotive in-cabin use cases. The device also takes advantage of a low power architecture to enable power-constrained applications. The device is split into the following four switchable power domains:

The AWRL684x is specifically designed to be able to dynamically control the power states of the above-mentioned power domains based on application requirements. The device also features various low-power states and that are achieved by turning off internal IP blocks of the device. AWRL684x device also provides the option of retaining memory during these low power states to retain critical information such as application image and RF profiles across different power modes.

A Hardware Security Module (HSM) is also provisioned in the device (available with secure part variants). The HSM consists of a programmable Arm Cortex-M4 core and the necessary infrastructure to provide a secure zone of operation within the device.

Additionally, the device is built with TI’s low power 45nm RF CMOS process and enables unprecedented levels of integration in an extremely small form factor. AWRL684x is designed for low power, self-monitored, ultra-accurate radar systems in the automotive space for applications like child presence detection, occupancy localization & classification and low power intrusion monitoring.

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Technische Dokumentation

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Top-Dokumentation Typ Titel Format-Optionen Datum
* Data sheet AWRL6843/AWRL6844 Single-Chip 57 to 64GHz Automotive Radar Sensor datasheet (Rev. A) PDF | HTML 16 Dez 2025
* Errata AWRL6843/AWRL6844 Device Errata (Rev. A) PDF | HTML 15 Dez 2025
* User guide xWRL68xx Technical Reference Manual (Rev. A) 07 Jan 2026
Application note Calibrations in TI Low-Power mmWave Radar Sensors (Rev. B) PDF | HTML 03 Feb 2025
Technical article Reducing in-cabin sensing complexity and cost with a single-chip 60GHz mmWave radar sensor PDF | HTML 19 Dez 2024

Design und Entwicklung

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Evaluierungsplatine

AWRL6844EVM — AWRL6844 – Evaluierungsmodul

Das xWRL6844EVM von Texas Instruments ist ein benutzerfreundliches Evaluierungsmodul für den mmWave-Radarsensor xWRL6844. Das xWRL6844EVM unterstützt sowohl den eigenständigen Betrieb als auch die direkte Verbindung zum DCA1000EVM zur Erfassung von Rohdaten des ADCs und Entwicklung von (...)
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Software-Entwicklungskit (SDK)

MMWAVE-L-SDK-6 SDK for xWRL6844 Devices

The mmWave low-power software development kit (SDK) is a collection of software packages that enable application evaluation and development on our low-power mmWave sensors. This tool includes MMWAVE-L-SDK and MMWAVE-L-SDK-6 companion packages to support customer design needs.

MMWAVE-L-SDK and (...)

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Edge AI Studio is a collection of graphical and command line tools designed to accelerate edge AI development on TI processors, microcontrollers and radar sensors. Whether developing a proof of concept using a model from the TI Model Zoo or leveraging your own model, Edge AI Studio provides the (...)

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MMWAVE-STUDIO-XWRL68XX mmWaveStudio for 3rd generation xWRL68xx devices.

MMWAVE-STUDIO is a stand-alone Windows® GUI that provides the ability to configure and control mmWave sensor modules and collect analog-to-digital (ADC) data for offline analysis. ADC data capture is intended to enable evaluation and characterization of radio-frequency (RF) performance, (...)

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RADAR-ACADEMY mmWave Radar Academy

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Software-Programmiertool

UNIFLASH UniFlash for most TI microcontrollers (MCUs) and mmWave sensors

UniFlash is a software tool for programming on-chip flash on TI microcontrollers and wireless connectivity devices and on-board flash for TI processors. UniFlash provides both graphical and command-line interfaces.

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The Radar Toolbox is a collection of demos, software tools, and documentation designed to assist in the evaluation of TI Radar Devices
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FCCSP (ANC) 207 Ultra Librarian

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