AWR2544

활성

76-81GHz FMCW 위성 레이더 온칩 센서

제품 상세 정보

Frequency range 76 - 81 GHz Number of receivers 4 Number of transmitters 4 ADC sampling rate (max) (Msps) 45 Arm CPU Arm Cortex-R5F at 300 MHz Interface type Ethernet, I2C, SPI Hardware accelerators Radar hardware accelerator Edge AI enabled Yes RAM (kByte) 2048 Rating Automotive Operating temperature range (°C) -40 to 140 Power supply solution LP87725-Q1 Security Cryptographic acceleration, Device attestation & anti-counterfeit, Hardware-enforced isolation, Secure boot, Secure firmware & software update, Software IP protection
Frequency range 76 - 81 GHz Number of receivers 4 Number of transmitters 4 ADC sampling rate (max) (Msps) 45 Arm CPU Arm Cortex-R5F at 300 MHz Interface type Ethernet, I2C, SPI Hardware accelerators Radar hardware accelerator Edge AI enabled Yes RAM (kByte) 2048 Rating Automotive Operating temperature range (°C) -40 to 140 Power supply solution LP87725-Q1 Security Cryptographic acceleration, Device attestation & anti-counterfeit, Hardware-enforced isolation, Secure boot, Secure firmware & software update, Software IP protection
FCCSP (AMQ) 248 148.8 mm² 12.4 x 12
  • FMCW transceiver
    • Integrated PLL, transmitter, receiver, baseband and ADC
    • 76 to 81GHz coverage with greater than 4GHz available bandwidth
    • 4 receive and 4 transmit channels withLaunch-on-Package (LOP) interface to antennas
    • Per transmit phase shifter
    • Ultra-accurate chirp engine based on fractional PLL
    • TX power
      • +12.5dBm
    • RX noise figure
      • +12.5dB
    • Phase noise (@ 1MHz)
      • -96dBc/Hz (76 to 77GHz)
      • -95dBc/Hz (76 to 81GHz)
  • Built-in calibration and self-test

    • Built in firmware (ROM)
    • Self-calibrating system across process and temperature
  • Processing elements
    • Arm Cortex-R5F core (supports lock step operation) at 300MHz
    • TI radar hardware accelerator (HWA1.5) for operations like FFT, interference mitigation, and memory compression
    • Multiple EDMA instances for data movement
  • Host interface
    • 10/100/1000Mbps RGMII/RMII/MII Ethernet
    • 25MHz clock output for Ethernet PHY clocking

  • Supports a serial flash memory interface (loading user application from QSPI flash memory)
  • Other interfaces available to user application
    • Up to 4 ADC channels
    • 1 SPI
    • 2 UARTs
    • I2C
    • GPIOs
    • 3 EPWMs
    • 2-lane LVDS interface for raw ADC data and debug instrumentation
  • On-Chip RAM
    • 2MB
    • Memory space split between MCU and shared L3
  • Device security (on select part numbers)
    • 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, AES (up to 256 bit), SHA (up to 512 bit), TRNG/DRBG
  • Functional safety compliant targeted
    • Developed for functional safety applications
    • Documentation available to aid ISO26262 functional safety system design
    • Hardware integrity up to ASIL B targeted
  • AEC-Q100 qualified
  • Advanced features
    • Embedded self-monitoring with no external processor involvement
    • Embedded interference detection capability
  • Power management
    • On-die LDO network for enhanced PSRR
    • LVCMOS IO supports dual voltage 3.3V and 1.8V
  • Clock source
    • 40MHz or 50MHz crystal with internal oscillator
    • Supports external oscillator/driven clock at 40MHz or 50 MHz
  • Power Management
    • Recommended LP8772-Q1 Power Management IC (PMIC)
      • Companion PMIC specially designed to meet device power supply requirements
      • Flexible mapping and factory programmed configurations to support different use cases
  • Cost-reduced hardware design
    • 0.65mm pitch, 12.4mm × 12mm FCCSP package
    • Small size
  • Supports automotive temperature operating range
    • Operating junction temperature range: –40°C to +140°C
  • FMCW transceiver
    • Integrated PLL, transmitter, receiver, baseband and ADC
    • 76 to 81GHz coverage with greater than 4GHz available bandwidth
    • 4 receive and 4 transmit channels withLaunch-on-Package (LOP) interface to antennas
    • Per transmit phase shifter
    • Ultra-accurate chirp engine based on fractional PLL
    • TX power
      • +12.5dBm
    • RX noise figure
      • +12.5dB
    • Phase noise (@ 1MHz)
      • -96dBc/Hz (76 to 77GHz)
      • -95dBc/Hz (76 to 81GHz)
  • Built-in calibration and self-test

    • Built in firmware (ROM)
    • Self-calibrating system across process and temperature
  • Processing elements
    • Arm Cortex-R5F core (supports lock step operation) at 300MHz
    • TI radar hardware accelerator (HWA1.5) for operations like FFT, interference mitigation, and memory compression
    • Multiple EDMA instances for data movement
  • Host interface
    • 10/100/1000Mbps RGMII/RMII/MII Ethernet
    • 25MHz clock output for Ethernet PHY clocking

  • Supports a serial flash memory interface (loading user application from QSPI flash memory)
  • Other interfaces available to user application
    • Up to 4 ADC channels
    • 1 SPI
    • 2 UARTs
    • I2C
    • GPIOs
    • 3 EPWMs
    • 2-lane LVDS interface for raw ADC data and debug instrumentation
  • On-Chip RAM
    • 2MB
    • Memory space split between MCU and shared L3
  • Device security (on select part numbers)
    • 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, AES (up to 256 bit), SHA (up to 512 bit), TRNG/DRBG
  • Functional safety compliant targeted
    • Developed for functional safety applications
    • Documentation available to aid ISO26262 functional safety system design
    • Hardware integrity up to ASIL B targeted
  • AEC-Q100 qualified
  • Advanced features
    • Embedded self-monitoring with no external processor involvement
    • Embedded interference detection capability
  • Power management
    • On-die LDO network for enhanced PSRR
    • LVCMOS IO supports dual voltage 3.3V and 1.8V
  • Clock source
    • 40MHz or 50MHz crystal with internal oscillator
    • Supports external oscillator/driven clock at 40MHz or 50 MHz
  • Power Management
    • Recommended LP8772-Q1 Power Management IC (PMIC)
      • Companion PMIC specially designed to meet device power supply requirements
      • Flexible mapping and factory programmed configurations to support different use cases
  • Cost-reduced hardware design
    • 0.65mm pitch, 12.4mm × 12mm FCCSP package
    • Small size
  • Supports automotive temperature operating range
    • Operating junction temperature range: –40°C to +140°C

The AWR2544 is a single-chip mmWave sensor composed of a FMCW transceiver. The device is capable of operation in the 76 to 81GHz (EHF) band, includes radar data processing elements, and a rich set of peripherals for in-vehicle networking. AWR2544 provides customers with an additional Launch on package (LOP) antenna feature which facilitates the attachment of antennas directly on to the package. The AWR2544 is built with TI’s low-power 45nm RFCMOS process and enables unprecedented levels of integration in a small form factor and minimal BOM. The AWR2544 is designed for low-power, self-monitored, ultra-accurate radar systems in the automotive space.

TI’s low-power 45nm RFCMOS process enables a monolithic implementation of a 4 TX, 4 RX system with integrated PLL, VCO, mixer, and baseband ADC. The device includes a Radio Processor Subsystem (RSS), which is responsible for radar front-end configuration, control, and calibration. Within the Main Subsystem (MSS), the device implements a user-programmable Arm Cortex-R5F processor allowing for custom control and automotive interface applications. The hardware accelerator block (HWA 1.5) supplements the MSS by offloading common radar processing such as FFT, scaling, and compression. This saves MIPS on the external processor, opening up resources for custom applications and implementation of higher-level post-processing algorithms.

A Hardware Security Module (HSM) is also provisioned in the device (available for only 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.

Simple programming model changes can enable a wide variety of sensor implementation (Short, Mid, Long) with the possibility of dynamic reconfiguration for implementing a multimode sensor.

TI has designed the AWR2544 specifically for satellite architecture. Satellite architecture adds value through a sensor fusion algorithm and the larger computing capability in the central ECU. Simplified satellite sensors and differentiation through software can help reduce system complexity and offer new ways of creating value.

Using satellite radars gives automakers the option to use over-the-air software updates to improve system performance and enhance security. These multiple benefits – performance, scalability and simplicity – all contribute the prominence of the satellite architecture in the automotive industry.

Additionally, the AWR2544 is provided as a complete platform including TI hardware and software reference designs, software drivers, sample configurations, API guides, and user documentation.

The AWR2544 is a single-chip mmWave sensor composed of a FMCW transceiver. The device is capable of operation in the 76 to 81GHz (EHF) band, includes radar data processing elements, and a rich set of peripherals for in-vehicle networking. AWR2544 provides customers with an additional Launch on package (LOP) antenna feature which facilitates the attachment of antennas directly on to the package. The AWR2544 is built with TI’s low-power 45nm RFCMOS process and enables unprecedented levels of integration in a small form factor and minimal BOM. The AWR2544 is designed for low-power, self-monitored, ultra-accurate radar systems in the automotive space.

TI’s low-power 45nm RFCMOS process enables a monolithic implementation of a 4 TX, 4 RX system with integrated PLL, VCO, mixer, and baseband ADC. The device includes a Radio Processor Subsystem (RSS), which is responsible for radar front-end configuration, control, and calibration. Within the Main Subsystem (MSS), the device implements a user-programmable Arm Cortex-R5F processor allowing for custom control and automotive interface applications. The hardware accelerator block (HWA 1.5) supplements the MSS by offloading common radar processing such as FFT, scaling, and compression. This saves MIPS on the external processor, opening up resources for custom applications and implementation of higher-level post-processing algorithms.

A Hardware Security Module (HSM) is also provisioned in the device (available for only 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.

Simple programming model changes can enable a wide variety of sensor implementation (Short, Mid, Long) with the possibility of dynamic reconfiguration for implementing a multimode sensor.

TI has designed the AWR2544 specifically for satellite architecture. Satellite architecture adds value through a sensor fusion algorithm and the larger computing capability in the central ECU. Simplified satellite sensors and differentiation through software can help reduce system complexity and offer new ways of creating value.

Using satellite radars gives automakers the option to use over-the-air software updates to improve system performance and enhance security. These multiple benefits – performance, scalability and simplicity – all contribute the prominence of the satellite architecture in the automotive industry.

Additionally, the AWR2544 is provided as a complete platform including TI hardware and software reference designs, software drivers, sample configurations, API guides, and user documentation.

다운로드 스크립트와 함께 비디오 보기 비디오

추가 정보

TI 개발자 영역을 방문하여 평가 및 개발을 시작하십시오.

기술 자료

star =TI에서 선정한 이 제품의 인기 문서
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11개 모두 보기
상위 문서 유형 직함 형식 옵션 날짜
* Data sheet AWR2544 Single-Chip 76-81GHz FMCW Radar SoC with Launch-On-Package (LOP) Waveguide Interface for ADAS Applications datasheet (Rev. B) PDF | HTML 2024/12/11
* Errata AWR2544 Errata (Rev. A) PDF | HTML 2025/10/21
* User guide AWR2544 Technical Reference Manual (Rev. A) 2025/05/19
Application note Getting Started with mmWave Sensors PDF | HTML 2025/03/12
Application note Flash Variants Supported by the mmWave Sensor (Rev. G) PDF | HTML 2024/12/17
Application note AWR294x, AWR2544 Primary and Secondary Bootloader (Rev. B) PDF | HTML 2024/12/13
White paper Enhanced Detections and Compute for ADAS systems with Next Gen Radar Sensors PDF | HTML 2024/12/05
White paper Advancements in mmWave Technology: Launch on Package for Automotive Radars PDF | HTML 2024/01/30
Application note Flash Variants Supported by the mmWave Sensor (Rev. E) PDF | HTML 2024/01/24
Technical article 새로운 차량용 레이더 위성 아키텍처를 위한 준비가 되셨습니까? PDF | HTML 2024/01/08
Technical article Addressing 3 power design challenges for corner radar systems PDF | HTML 2023/12/22

설계 및 개발

전원 공급 솔루션

AWR2544에 사용 가능한 전원 공급 솔루션을 찾아보세요. TI는 칩(SoC), 프로세서, 마이크로컨트롤러, 센서 또는 FPGA(Field Programmable Gate Array)의 TI와 비TI 시스템을 위한 전원 공급 솔루션을 제공합니다.

평가 보드

AWR2544LOPEVM — 차량용 2세대, 76GHz~81GHz, 고성능 SoC용 AWR2544LOP 평가 모듈

AWR2544LOPEVM은 사용하기 간편한 AWR254x mmWave 감지 장치용 평가 보드로, DCA1000EVM에 직접 연결됩니다. 이 EVM 키트에는 온칩 ARM Cortex-R5F 컨트롤러 및 하드웨어 억셀러레이터(HWA 1.5)용 소프트웨어 개발을 시작하는 데 필요한 모든 것이 포함되어 있습니다. 이 보드에는 프로그래밍 및 디버깅을 위한 온보드 에뮬레이션과 온보드 버튼, 간단한 사용자 인터페이스를 신속하게 통합할 수 있도록 하는 LED도 포함되어 있습니다.
사용 설명서: PDF
TI.com에서 구매할 수 없음
디버그 프로브

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하드웨어 프로그래밍 도구

HS-3P-77-3D-WGA-LOP-4X4 — HUBER+SUHNER의 ADAS 레이더 센서를 위한 안테나 설계

77GHz 3D 도파관 안테나 4TX 4R - RF 기판 독립형 솔루션 제품군

Huber+SUHNER는 RF 기판 독립 솔루션용으로 설계된 2세대 3D 금속 플라스틱 도파관 안테나를 개발 및 제조하고 있습니다. 독점 인터페이스로 구현된 이 첨단 기술은 125mm2의 소형 포트 영역에서 전체 차량용 77GHz 레이더 대역(76GHz~81GHz)을 포함하는 4TX, 4RX 구성 채널로 차세대 고밀도 LOP(Launch-on-Package) 모놀리식 마이크로파 집적 회로(MMIC)를 지원합니다. 안테나 설계는 MMIC 패키지 크기를 (...)

발송: Huber+Suhner AG
Third-party accessory

GAPW-3P-ANTENNA — GapWaves의 ADAS 레이더 센서용 안테나 설계

Gapwaves offers high-performance, low-loss, and cost-efficient waveguide antennas for short-, mid- and long-range automotive radars and industrial applications. Our antennas feature a flexible design and a compact form factor, robust contact-free PCB integration and support contact-free LoP (...)

발송: Gapwaves
소프트웨어 개발 키트(SDK)

MMWAVE-MCUPLUS-SDK mmWave SDK for AWR2944 and AM2732

The mmWave microcontroller (MCU) plus software development kit (SDK) is a collection of software packages that enable application evaluation and development on TI mmWave sensors. This tool includes the MMWAVE-MCUPLUS-SDK and companion packages to support your design needs.

MMWAVE-MCUPLUS-SDK is a (...)

지원되는 제품 및 하드웨어

지원되는 제품 및 하드웨어

다운로드 옵션
애플리케이션 소프트웨어 및 프레임워크

PVIZ-3P-MIMSO — Provizio 5D MIMSO® 레이더 소프트웨어

Provizio MIMSO는 고해상도 레이더 데이터를 밀도가 높은 고충실도 3D 환경 인식으로 변환하는 레이더 이미징 향상 솔루션입니다. MIMSO는 능동 안테나 아키텍처와 고급 신호 처리 기술을 사용하여 각도 해상도와 포인트 클라우드 밀도를 크게 향상시켜 복잡한 주행 시나리오에서 물체의 감지, 분리 및 추적 성능을 향상시킵니다.
 

이 솔루션은 AWR2944 레이더 센서와 연동되도록 설계되어 개발자가 고성능 레이더 하드웨어와 Provizio의 MIMSO 능동 안테나 및 처리 기술을 함께 활용할 수 있도록 합니다. MIMSO는 (...)

발송: Provizio Ltd
애플리케이션 소프트웨어 및 프레임워크

ZEN-3P-DARSW — Zendar 분산 조리개 레이더 | 일관된 센서 네트워크를 갖춘 고해상도 레이더

Zendar의 DAR(Distributed Aperture Radar) 소프트웨어는 2개 또는 3개의 MRR(중거리 레이더) 센서를 융합하여 일관적으로 작동함으로써 향상된 레이더 해상도를 제공합니다. 물리적으로 변위된 센서 2개를 사용하면 큰 가상 구멍이 생성되어 0.5도 이하의 향상된 방위각 분해능이 가능해지며, 이는 가까이 있는 물체를 구분하는 데 도움이 됩니다. 차량용 레이더 솔루션은 크기 제한 및 장착 제약 조건에 따라 제한되며, 보통 성능은 센서의 크기에 따라 제약을 받습니다. 분산형 조리개 레이더 시스템은 더 크고 (...)
발송: Zendar Inc.
시작하기

TI-DEVELOPER-ZONE Start embedded development on your desktop or in the cloud

From evaluation to deployment the TI Developer Zone provides a comprehensive range of software, tools and training to ensure that you have everything you need for each stage of the development process.
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IDE, 구성, 컴파일러 또는 디버거

CCSTUDIO Code Composer Studio integrated development environment (IDE)

Code Composer Studio is an integrated development environment (IDE) for TI's microcontrollers and processors. It is comprised of a rich suite of tools used to build, debug, analyze and optimize embedded applications. Code Composer Studio is available across Windows®, Linux® and macOS® platforms.

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MMWAVE-STUDIO-2G mmWave studio GUI tools for 2nd-generation parts (xWR2243)

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, (...)

지원되는 제품 및 하드웨어

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IDE, 구성, 컴파일러 또는 디버거

SYSCONFIG Standalone desktop version of SysConfig

SysConfig is a configuration tool designed to simplify hardware and software configuration challenges to accelerate software development.

SysConfig is available as part of the Code Composer Studio™ integrated development environment as well as a standalone application. Additionally SysConfig (...)

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지원되는 제품 및 하드웨어

시작 다운로드 옵션
온라인 교육

RADAR-ACADEMY mmWave Radar Academy

The Radar Academy is a documentation package intended to provide educational resources related to mmWave radar technology
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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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RADAR-TOOLBOX Radar evaluation and development support package with example projects, documentation and tools

The Radar Toolbox is a collection of demos, software tools, and documentation designed to assist in the evaluation of TI Radar Devices
지원되는 제품 및 하드웨어

지원되는 제품 및 하드웨어

찾아보기 다운로드 옵션
지원 소프트웨어

VCTR-3P-MICROSAR — 마이크로컨트롤러 및 고성능 컴퓨터(HPC)용 벡터 MICROSAR AUTOSAR 소프트웨어

MICROSAR 및 DaVinci 제품군은 정교한 임베디드 소프트웨어 및 마이크로 컨트롤러 및 HPC를 위한 강력한 개발 툴로 ECU 개발을 간소화합니다. 고급 인프라 소프트웨어를 사용하면 ECU를 위한 최적의 기반을 만들고 관련 툴로 수반되는 모든 개발 작업을 간소화할 수 있습니다. MICROSAR 내장 소프트웨어는 AUTOSAR 클래식 및 적응형과 같은 관련 표준에 따라 개발되었습니다. 이 소프트웨어는 ISO 26262까지 ASIL D에 따른 안전 관련 애플리케이션에도 적합합니다. 또한, 지능형 사이버 보안 기능은 무단 액세스 (...)
설계 툴

AWR2544-HARDWARE-DESIGN-CHECKLIST Hardware design checklist for the AWR2544 mmWave sensor.

Checklist to enable new hardware designs based on the AWR2544 mmWave sensor.
지원되는 제품 및 하드웨어

지원되는 제품 및 하드웨어

패키지 CAD 기호, 풋프린트 및 3D 모델
FCCSP (AMQ) 248 Ultra Librarian

주문 및 품질

포함된 정보:
  • RoHS
  • REACH
  • 디바이스 마킹
  • 납 마감/볼 재질
  • MSL 등급/피크 리플로우
  • MTBF/FIT 예측
  • 물질 성분
  • 인증 요약
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