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NEW IWRL6844 ACTIVE Single-chip low-power high-performance 57GHz to 64GHz industrial mmWave radar sensor Newer low power variant is being released to market

Product details

Type IC Frequency range 60 - 64 GHz Number of receivers 4 Number of transmitters 3 ADC sampling rate (ksps) 25000 TX power (dBm) 12 Arm CPU Arm Cortex-R4F at 200 MHz Hardware accelerators Radar hardware accelerator Edge AI enabled Yes DSP type 1 C67x DSP @ 600MHz Interface type CAN-FD, I2C, LVDS, QSPI, SPI, UART RAM (kByte) 1792 Operating temperature range (°C) -40 to 105 TI functional safety category Functional Safety-Compliant Security Cryptographic acceleration, Device attestation & anti-counterfeit, Secure boot, Secure firmware & software update, Software IP protection Power supply solution LP87745-Q1 Rating Catalog
Type IC Frequency range 60 - 64 GHz Number of receivers 4 Number of transmitters 3 ADC sampling rate (ksps) 25000 TX power (dBm) 12 Arm CPU Arm Cortex-R4F at 200 MHz Hardware accelerators Radar hardware accelerator Edge AI enabled Yes DSP type 1 C67x DSP @ 600MHz Interface type CAN-FD, I2C, LVDS, QSPI, SPI, UART RAM (kByte) 1792 Operating temperature range (°C) -40 to 105 TI functional safety category Functional Safety-Compliant Security Cryptographic acceleration, Device attestation & anti-counterfeit, Secure boot, Secure firmware & software update, Software IP protection Power supply solution LP87745-Q1 Rating Catalog
FCCSP (ABL) 161 108.16 mm² (10.4 mm × 10.4 mm)
  • FMCW transceiver
    • Integrated PLL, transmitter, receiver, Baseband, and ADC
    • 60 to 64GHz coverage with 4GHz continuous bandwidth
    • Four receive channels
    • Three transmit channels
    • Supports 6-bit phase shifter for TX Beam forming
    • Ultra-accurate chirp engine based on fractional-N PLL
    • TX power: 12dBm
    • RX noise figure:
      • 12dB
    • Phase noise at 1MHz:
      • –93dBc/Hz
  • Built-in calibration and self-test
    • Arm Cortex-R4F-based radio control system
    • Built-in firmware (ROM)
    • Self-calibrating system across process and temperature
    • Embedded self-monitoring with no host processor involvement on Functional Safety-Compliant devices
  • C674x DSP for advanced signal processing (IWR6843 only)
  • Hardware accelerator for FFT, filtering, and CFAR processing
  • Memory compression
  • Arm-R4F microcontroller for object detection, and interface control
    • Supports autonomous mode (loading user application from QSPI flash memory)
  • Internal memory with ECC
    • IWR6843: 1.75MB, divided into MSS program RAM (512KB), MSS data RAM (192KB), DSP L1 RAM (64KB) and L2 RAM (256KB), and L3 radar data cube RAM (768KB)
    • IWR6443: 1.4MB, divided into MSS program RAM (512KB), MSS data RAM (192KB), and L3 radar data cube RAM (768KB)
    • Technical reference manual includes allowed size modifications
  • Other interfaces available to user application
    • Up to 6 ADC channels (low sample rate monitoring)
    • Up to 2 SPI ports
    • Up to 2 UARTs
    • 1 CAN-FD interface
    • I2C
    • GPIOs
    • 2 lane LVDS interface for raw ADC data and debug instrumentation
  • Functional Safety-Compliant
    • Developed for functional safety applications
    • Documentation available to aid IEC 61508 functional safety system design up to SIL 3
    • Hardware integrity up to SIL-2
    • Safety-related certification
      • IEC 61508 certified upto SIL 2 by TUV SUD
  • Non-Functional safety variants also available
  • Power management
    • Built-in LDO network for enhanced PSRR
    • I/Os support dual voltage 3.3V/1.8V
  • Clock source
    • 40.0MHz crystal with internal oscillator
    • Supports external oscillator at 40MHz
    • Supports externally driven clock (square/sine) at 40MHz
  • Easy hardware design
    • 0.65mm pitch, 161-pin 10.4mm × 10.4mm flip chip BGA package for easy assembly and low-cost PCB design
    • Small solution size
  • Operating conditions
    • Junction temp range: –40°C to 105°C
  • FMCW transceiver
    • Integrated PLL, transmitter, receiver, Baseband, and ADC
    • 60 to 64GHz coverage with 4GHz continuous bandwidth
    • Four receive channels
    • Three transmit channels
    • Supports 6-bit phase shifter for TX Beam forming
    • Ultra-accurate chirp engine based on fractional-N PLL
    • TX power: 12dBm
    • RX noise figure:
      • 12dB
    • Phase noise at 1MHz:
      • –93dBc/Hz
  • Built-in calibration and self-test
    • Arm Cortex-R4F-based radio control system
    • Built-in firmware (ROM)
    • Self-calibrating system across process and temperature
    • Embedded self-monitoring with no host processor involvement on Functional Safety-Compliant devices
  • C674x DSP for advanced signal processing (IWR6843 only)
  • Hardware accelerator for FFT, filtering, and CFAR processing
  • Memory compression
  • Arm-R4F microcontroller for object detection, and interface control
    • Supports autonomous mode (loading user application from QSPI flash memory)
  • Internal memory with ECC
    • IWR6843: 1.75MB, divided into MSS program RAM (512KB), MSS data RAM (192KB), DSP L1 RAM (64KB) and L2 RAM (256KB), and L3 radar data cube RAM (768KB)
    • IWR6443: 1.4MB, divided into MSS program RAM (512KB), MSS data RAM (192KB), and L3 radar data cube RAM (768KB)
    • Technical reference manual includes allowed size modifications
  • Other interfaces available to user application
    • Up to 6 ADC channels (low sample rate monitoring)
    • Up to 2 SPI ports
    • Up to 2 UARTs
    • 1 CAN-FD interface
    • I2C
    • GPIOs
    • 2 lane LVDS interface for raw ADC data and debug instrumentation
  • Functional Safety-Compliant
    • Developed for functional safety applications
    • Documentation available to aid IEC 61508 functional safety system design up to SIL 3
    • Hardware integrity up to SIL-2
    • Safety-related certification
      • IEC 61508 certified upto SIL 2 by TUV SUD
  • Non-Functional safety variants also available
  • Power management
    • Built-in LDO network for enhanced PSRR
    • I/Os support dual voltage 3.3V/1.8V
  • Clock source
    • 40.0MHz crystal with internal oscillator
    • Supports external oscillator at 40MHz
    • Supports externally driven clock (square/sine) at 40MHz
  • Easy hardware design
    • 0.65mm pitch, 161-pin 10.4mm × 10.4mm flip chip BGA package for easy assembly and low-cost PCB design
    • Small solution size
  • Operating conditions
    • Junction temp range: –40°C to 105°C

The IWR6x43 device is an integrated single chip mmWave sensor based on FMCW radar technology capable of operation in the 60GHz to 64GHz band. It is built with TI’s low power 45nm RFCMOS process and enables unprecedented levels of integration in an extremely small form factor. This device is an ideal solution for low power, self-monitored, ultra-accurate radar systems in the industrial space. Multiple variants are currently available including Functional Safety-Compliant devices and non-functional safety devices.

The IWR6x43 device is an integrated single chip mmWave sensor based on FMCW radar technology capable of operation in the 60GHz to 64GHz band. It is built with TI’s low power 45nm RFCMOS process and enables unprecedented levels of integration in an extremely small form factor. This device is an ideal solution for low power, self-monitored, ultra-accurate radar systems in the industrial space. Multiple variants are currently available including Functional Safety-Compliant devices and non-functional safety devices.

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Technical documentation

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Top documentation Type Title Format options Date
* Data sheet IWR6843, IWR6443 Single-Chip 60 to 64GHz mmWave Sensor datasheet (Rev. F) PDF | HTML Apr 30, 2025
* User guide IWR14xx/16xx/18xx/68xx/64xx Industrial Radar Family Technical Reference Manual (Rev. E) May 28, 2020
* Errata IWR6843, IWR6443 Device Errata, Silicon Revisions 1.0 and 2.0 (Rev. D) PDF | HTML Dec 12, 2022
Application brief mmWave Sensing in Humanoid Robots (Rev. A) PDF | HTML May 1, 2026
Application brief Understanding Range and Angular Resolution in mmWave Radar Devices (Rev. A) PDF | HTML Jan 5, 2026
White paper mmWave Radar for Safe Sensing in Industrial Stationary and Mobile Applications PDF | HTML Jan 28, 2025
Application note Flash Variants Supported by the mmWave Sensor (Rev. G) PDF | HTML Dec 17, 2024
Application brief mmWave Radar For eBike and Scooter Safety Applications PDF | HTML Dec 5, 2024
Application note TI mmWave and IEC 61496-5 Functional Tests PDF | HTML Jul 31, 2024
Application brief How 60GHz Radar Sensors Reduce False Detections for Sensing Applications PDF | HTML May 9, 2024
Functional safety information Design Guide for Functional Safety Compliant Systems using mmWave Radar Sensors (Rev. A) PDF | HTML Apr 4, 2024
Functional safety information IWRxx43 TUV SUD Functional Safety Certificate (Rev. B) Jan 23, 2024
Technical article Proximity Sensing’s Role in Enabling Emerging Markets PDF | HTML Jan 4, 2024
Analog design Journal Building a multipatient contactless vital signs sensor for at-home use with mmWa PDF | HTML Mar 13, 2023
Application brief Best Practices for Placement and Angle of mmWave Radar Devices PDF | HTML Jan 27, 2023
Application note Self-Calibration of mmWave Radar Devices (Rev. C) PDF | HTML Jan 11, 2023
Application note Migrating to xWR68xx and xWR18xx Millimeter Wave Sensors (Rev. C) PDF | HTML Oct 12, 2022
Application note Interference Mitigation For AWR/IWR Devices (Rev. A) PDF | HTML Sep 22, 2022
Application brief Optimizing mmWave Configurations for FCC Certification PDF | HTML Aug 16, 2022
Functional safety information Certificate No. Z10 088989 0022 Rev. 00 (Rev. A) Jun 2, 2022
Application note Software Strategies to Achieve Power Optimizations in TI Millimeter Wave Sensors PDF | HTML Feb 18, 2022
Application note TI mmWave Radar Device Regulatory Compliance Overview (Rev. C) PDF | HTML Dec 14, 2021
Functional safety information Radar Functional Safety Enablers (Rev. B) PDF | HTML Nov 12, 2021
Certificate IWR6843LEVM EU RoHS Declaration of Conformity (DoC) Nov 8, 2021
Technical article How TI mmWave radar safety guards can help improve manufacturing productivity with PDF | HTML Aug 31, 2021
Application note mmWave Radar Radome Design Guide PDF | HTML Aug 17, 2021
Application note mmWave Radar Sensors: Object Versus Range (Rev. A) May 10, 2021
Technical article Understanding functional safety in automotive and industrial sensing applications PDF | HTML May 10, 2021
Technical article Improving industrial radar RF performance with low-noise, thermal-optimized power PDF | HTML Apr 21, 2021
Application note mmWave Production Testing Overview PDF | HTML Apr 10, 2021
Application note Power Management Optimizations - Low Cost LC Filter Solution (Rev. A) PDF | HTML Nov 11, 2020
White paper The fundamentals of millimeter wave radar sensors (Rev. A) Aug 27, 2020
Technical article Exploring advancements in industrial and automotive markets with 60-GHz radar PDF | HTML Aug 3, 2020
Technical article Designing smart, energy-efficient air conditioning using TI mmWave occupancy senso PDF | HTML Jul 1, 2020
White paper mmWave radar sensors in robotics applications (Rev. A) Jun 22, 2020
White paper Machine Learning Powers Autonomous Industrial Systems (Rev. A) Jun 17, 2020
Application note Programming Chirp Parameters in TI Radar Devices (Rev. A) Feb 13, 2020
E-book E-book: An engineer’s guide to industrial robot designs Feb 12, 2020
Application note Memory Compression and Decompression Engine for TI mmwave Radar Dec 2, 2019
Technical article Non-contact and private stance detection with TI mmWave sensors PDF | HTML Sep 3, 2019
Application note How to select the right proximity sensor technology Jul 19, 2019
Technical article Bring intelligence, efficiency and convenience to automated entrance systems with PDF | HTML May 22, 2019
User guide MMWAVEICBOOST Quick Start Guide May 6, 2019
Technical article Intelligent sensing at the edge enables smarter autonomous robots PDF | HTML Apr 8, 2019
White paper Bringing intelligent autonomy to fine motion detection (Rev. A) Dec 20, 2018
Technical article Leveraging the 60-GHz RF band for intelligent industrial mmWave sensing PDF | HTML Nov 7, 2018
Application note mmWave xWR1xxx/xWR6xxx Bootloader Flow Oct 23, 2018
Application note mmwave Radar Device ADC Raw Data Capture (Rev. B) Oct 23, 2018
User guide Radar Hardware Accelerator User's Guide (Rev. B) Oct 23, 2018
White paper Leveraging the 60-GHz RF band to enable accurate mmWave sensing Oct 19, 2018
Application note MIMO Radar (Rev. A) Jul 26, 2018
Application note Introduction to the DSP Subsystem in the xWR6843 Jun 29, 2018
Application note Watchdog Timer for mmwave Radar Sensors (Rev. A) Jun 8, 2018
White paper mmWave radar: Enabling greater intelligent autonomy at the edge Jun 6, 2018
White paper Robust traffic and intersection monitoring using millimeter wave sensors (Rev. B) May 17, 2018
Application note TI mmWave Radar sensor RF PCB Design, Manufacturing and Validation Guide May 7, 2018
Technical article Create an intelligent building system: use mmWave to count and track people PDF | HTML May 3, 2018
Application note Adding CAN-FD Tx and Rx to an Existing mmWave Project Apr 12, 2018
User guide Radar Hardware Accelerator User's Guide - Part 2 (Rev. A) Mar 13, 2018
Application note Adding Flash Read and Write to an Existing mmWave Project Sep 25, 2017
White paper Cities grow smarter through innovative semiconductor technologies Jul 7, 2017
Technical article Bringing new intelligence to industrial applications with mmWave sensors PDF | HTML May 16, 2017
White paper Using a complex-baseband architecture in FMCW radar systems Apr 17, 2017

Design & development

For additional terms or required resources, click any title below to view the detail page where available.

Evaluation board

DCA1000EVM — DCA1000 evaluation module for real-time data capture and streaming

The DCA1000 evaluation module (EVM) provides real-time data capture and streaming for two- and four-lane low-voltage differential signaling (LVDS) traffic from TI AWR and IWR radar sensor EVMs. The data can be streamed out via 1-Gbps Ethernet in real time to a PC running the MMWAVE-STUDIO tool for (...)

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Evaluation board

IWR6843ISK — IWR6843 evaluation module for single-chip 60GHz long-range antenna mmWave sensor

IWR6843ISK is an easy-to-use 60 GHz mmWave sensor evaluation kit based on IWR6843 device with long-range antenna. The IWR6843ISK may be used to evaluate the IWR6843 and IWR6443 devices. This board enables access to point-cloud data and power over USB interface.

This kit is supported by mmWave tools (...)

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Evaluation board

IWR6843ISK-ODS — IWR6843 evaluation module for single-chip 60GHz overhead detection antenna mmWave sensor

IWR6843ISK-ODS is an easy-to-use 60 GHz mmWave sensor evaluation kit based on IWR6843 device with wide field-of-view antenna. The IWR6843ISK-ODS may be used to evaluate the IWR6843 and IWR6443 devices. This board enables access to point-cloud data and power over USB interface.

This kit is supported (...)

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Evaluation board

IWR6843LEVM — IWR6843 evaluation module for 60-GHz, single-chip, mmWave radar sensor

The IWR6843L evaluation module (EVM) is an easy-to-use 60-GHz mmWave sensor evaluation platform for the IWR6843 with an FR4-based antenna. IWR6843LEVM may be used to evaluate both the IWR6843 and IWR6443. This EVM enables access to point-cloud data and power-over-USB interfaces.

IWR6843LEVM (...)

User guide: PDF | HTML
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Evaluation board

IWRL6844EVM — IWRL6844 evaluation module

The xWRL6844EVM from Texas Instruments is an easy-to-use evaluation module for the xWRL6844 mmWave radar sensor. The xWRL6844EVM supports both standalone operation as well as direct connectivity to the DCA1000EVM for raw ADC capture and signal processing development. This EVM contains everything (...)
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Evaluation board

MMWAVEICBOOST — mmWave sensors carrier card platform

The MMWAVEICBOOST carrier card expands capabilities of select 60 GHz mmWave evaluation modules. This board provides advanced software developement, debug features such as trace and single step via TI’s Code Composers compatible debuggers. On-board Launchpad interface enables pairing with (...)

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Evaluation board

ALGO-3P-UISP1-TI — Algocraft μISP1 Programmer for Texas Instruments devices

μISP can either work connected to a host PC (RS-232, USB, LAN connections are built-in) or in standalone mode.

The programming cycle execution in standalone mode may occur by simply pressing the START button or through some TTL control lines.

Its compact size and versatility allows a simple (...)

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Evaluation board

D3-3P-DESIGNCORE-RADAR — D3 Embedded DesignCore® radar evaluation modules

D3 Embedded's miniature sensors, sensor evaluation boards, and sensor fusion devices allow for fast evaluation of D3 Embedded radar modules with our mmWave radar technology. These sensors enable easy integration of radar algorithms for industrial applications. Products range from flexible 60GHz and (...)

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Evaluation board

INXPECT-3P-S200 — Inxpect S200 safety radar sensors

The Inxpect Safety Radar sensors detect access or presence of operators in dangerous areas and also have the ability to dynamically set the detection and warning zones. They are smart FMCW (frequency modulated continuous wave) radar devices, based on our IWR6843 mmWave sensor chip, with proprietary (...)

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Evaluation board

MURATA-3P-INDRADAR — Murata mmWave Radar Sensor Modules for Industrial products

Murata mmWave radar module includes TI chipsets (AWR series and IWR series) and own optimized antenna. The module is ultra-small and high quality module for industrial market. Murata has extensive experience in mmWave radar solution, quick evaluation support, customer enclosure design support and (...)
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Evaluation board

PLX-3P-PLXT60 — Plextek PLX-T60 Radar Module

Plextek's PLX-T60 platform enables rapid development and deployment of bespoke mmWave radar solutions at scale and pace. The PLX-T60 platform combines our xWR6843 single chip 60GHz to 64GHz mmWave radar chipset with a novel substrate integrated waveguide antenna designed to deliver enhanced sensing (...)

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Evaluation board

RFBEAM-3P-V-MD3 — RFbeam V-MD3 waterproof sensor based on IWR6843

The V-MD3 is a high-end 3D radar transceiver that features integrated signal processing and tracking algorithms. It can accurately measure the speed, direction, distance and angle (both azimuth and elevation) of both moving and stationary objects. Its digital architecture and broad power supply (...)

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Evaluation board

VENTROPIC-3P-4G-IOT-RADAR — VENTROPIC-4G IoT Radar Module for MMWAVE RADAR SENSOR

VENTROPIC-RTP is a radar development module that integrates Bluetooth and Wi-Fi communication functions, simplifying the development and market entry process for customer products. The built-in firmware supports various algorithms for smart home, elderly care, medical health, and other scenarios (...)

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Evaluation board

VENTROPIC-3P-NF-RADAR — VENTROPIC-NF Radar Module for MMWAVE RADAR SENSOR

VENTROPIC-RPI is a radar development module that integrates Bluetooth and Wi-Fi communication functions, simplifying the development and market entry process for customer products. The built-in firmware supports various algorithms for smart home, elderly care, medical health, and other scenarios (...)

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Evaluation board

VENTROPIC-3P-WIFI-RADAR — VENTROPIC-WiFi Radar Module for MMWAVE RADAR SENSOR

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Debug probe

TMDSEMU110-U — XDS110 JTAG Debug Probe

The Texas Instruments XDS110 is a new class of debug probe (emulator) for TI embedded processors. The XDS110 replaces the XDS100 family while supporting a wider variety of standards (IEEE1149.1, IEEE1149.7, SWD) in a single pod. Also, all XDS debug probes support Core and System Trace in all (...)

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Debug probe

TMDSEMU200-U — XDS200 USB Debug Probe

The XDS200 is a debug probe (emulator) used for debugging TI embedded devices. For the majority of devices it is recommended to use the newer, lower cost XDS110 (www.ti.com/tool/TMDSEMU110-U). The XDS200 supports a wide variety of standards (IEEE1149.1, IEEE1149.7, SWD) in a single pod. All XDS (...)

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Debug probe

TMDSEMU560V2STM-U — XDS560™ software v2 system trace USB debug probe

The XDS560v2 is the highest performance of the XDS560™ family of debug probes and supports both the traditional JTAG standard (IEEE1149.1) and cJTAG (IEEE1149.7).  Note that it does not support serial wire debug (SWD).

All XDS debug probes support Core and System Trace in all ARM and DSP processors (...)

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Limit:
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Debug probe

TMDSEMU560V2STM-UE — XDS560v2 System Trace USB & Ethernet Debug Probe

The XDS560v2 is the highest performance of the XDS560™ family of debug probes and supports both the traditional JTAG standard (IEEE1149.1) and cJTAG (IEEE1149.7). Note that it does not support serial wire debug (SWD).

All XDS debug probes support Core and System Trace in all ARM and DSP processors (...)

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In stock
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Debug probe

TMDSEMUPROTRACE — XDS560v2 PRO TRACE Receiver & Debug Probe

Important: The XDS560v2 PRO TRACE Receiver is a legacy product that supports pin trace for TI processors. For new devices it is recommended to use a third party trace receiver.

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Hardware programming tool

ALGO-3P-WRITENOW — Algocraft WriteNow! Programmer

WriteNow! Series of In-System Programmers is a breakthrough in the programming industry. The programmers support a large number of devices (microcontrollers, memories, CPLDs and other programmable devices) from various manufacturers and have a compact size for easy ATE/fixture integration. They (...)

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Hardware programming tool

HS-3P-77-3D-WGA-LOP-4X4 — Antenna design for ADAS radar sensors from HUBER+SUHNER

77GHz 3D waveguide antenna 4Tx4R - RF substrate independent solution family

HUBER+SUHNER has developed and manufactures a second-generation 3D metallized plastic waveguide antenna designed for RF substrate-independent solutions. This cutting-edge technology, enabled by proprietary interfaces, (...)

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Third-party accessory

D3-3P-D3RCM — D3 Embedded's DesignCore® camera series legacy camera modules

The D3RCM 1.3 MP FPD-Link™ III cameras are rugged camera modules featuring the OmniVision® OV10640 image sensor or the SONY® IMX390 image sensor. They are compatible with D3 Embedded’s RVPs based on our processors, designed for automotive and performance-critical industrial applications. They have (...)

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Third-party accessory

GAPW-3P-ANTENNA — Antenna design for ADAS radar sensors from GapWaves

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 (...)

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Supported products & hardware
Software development kit (SDK)

MMWAVE-SDK — mmWave software development kit (SDK)

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

The MMWAVE-SDK is a unified software platform for the TI (...)

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IDE, configuration, compiler or debugger

CCSTUDIO — CCStudio™ IDE

CCStudio™ IDE is part of TI's extensive CCStudio™ development ecosystem and is an integrated development environment for TI's microcontrollers, processors, wireless connectivity devices, and radar sensors. CCStudio IDE is available as desktop or cloud-based applications. The cloud version (...)

Supported products & hardware
IDE, configuration, compiler or debugger

MMWAVE-STUDIO — mmWave studio GUI tools for 1st-generation parts (xWR1243, xWR1443, xWR1642, xWR1843, xWR6843, xWR6443)

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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IDE, configuration, compiler or debugger

SYSCONFIG — Standalone desktop version of SysConfig

CCStudio™ SysConfig is part of TI's extensive CCStudio™ development ecosystem and is a configuration tool that simplifies hardware and software configuration challenges to accelerate software development.

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Online training

RADAR-ACADEMY — mmWave Radar Academy

The Radar Academy is a documentation package intended to provide educational resources related to mmWave radar technology
Supported products & hardware
Getting started

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.
Supported products & hardware
Operating system (OS)

WHIS-3P-SAFERTOS — WITTENSTEIN SAFERTOS Pre-certified safety RTOS

SAFERTOS® is a unique real time operating system designed for embedded processors. It is precertified to IEC 61508 SIL3 and ISO 26262 ASILD standards by TÜV SÜD. SAFERTOS® was crafted specifically for safety by WHIS' team of experts and is used globally in safety critical applications. WHIS and (...)

Supported products & hardware
GUI for evaluation module (EVM)

MMWAVE-SENSING-ESTIMATOR-CLOUD — mmWave sensing estimator cloud development on TI Resource Explorer

The mmWave Sensing Estimator is a web-based configuration tool for TI radar sensors
Supported products & hardware
Software programming tool

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

UniFlash is part of TI's extensive CCStudio™ development ecosystem and 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 and can be run on (...)

Supported products & hardware
Support software

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
Supported products & hardware
Support software

MATHW-3P-MMWAVE-RADAR — MathWorks MATLAB Radar Toolbox and Support Package for mmWave sensors

Radar Toolbox Support Package for mmWave Radar Sensors:  Connect, configure, and acquire radar data from Texas Instruments mmWave Sensor evaluation boards.  The support package can be used to obtain the real radar data and use it with the capabilities in Radar and Sensor Fusion and (...)

Supported products & hardware
Simulation model

AWR6843, IWR6843, AWR6443, IWR6443 BSDL Model

SPRM805.ZIP (274 KB) - BSDL model
Supported products & hardware
Simulation model

xWR6x43 IBIS Model

SWRM046.ZIP (2352 KB) - IBIS model
Supported products & hardware
Design tool

MMWAVE-3P-SEARCH — mmWave radar sensors third-party search tool

TI has partnered with companies to offer a wide range of solutions using TI mmWave radar sensors and related services. These companies can accelerate your path to production using mmWave radar. Download this search tool to quickly browse our third-party solutions and find the right third-party to (...)

Supported products & hardware
Reference design

TIDA-010022 — People Counting and Tracking Using mmWave Radar Sensor with Sub-1 GHz Reference Design

This reference design demonstrates the use of the IWR6843, a single-chip, mmWave radar sensor with integrated DSP, for an indoor and outdoor people-counting application along with sub-1 GHz wireless communication. This design uses MMWAVEICBOOST and IWR6843ISK evaluation modules (EVMs) together (...)
Supported products & hardware
Reference design

TIDEP-01000 — People Counting and Tracking Reference Design Using mmWave Radar Sensor

This reference design demonstrates the use of IWR6843, which is a single-chip mmWave radar sensor with integrated DSP for an indoor and outdoor people counting application. This reference design uses the IWR6843ISK evaluation module (EVM) and integrates a complete radar processing chain onto the (...)

Supported products & hardware
Reference design

TIDEP-01006 — Autonomous robot reference design using ROS on Sitara™ MPU & antenna-on-package mmWave sensors

This reference design showcases autonomous robotics with the Processor SDK Linux running on the Sitara AM57x processor, and the mmWave SDK running on the IWR6843 EVM. This design demonstrates the functionality of an embedded robotic system where point-cloud data from the mmWave radar sensing is (...)

Supported products & hardware
Reference design

TIDEP-01010 — Area scanner using mmWave Sensor with integrated antenna-on-package reference design

The TIDEP-01010 reference design leverages TI single-chip millimeter-wave (mmWave) technology to implement an area scanner capable of detection and localization in 3D space. Using TI 60-GHz mmWave sensors, presence detection, as well as the ability to gauge the object's trajectory and (...)

Supported products & hardware
Reference design

TIDEP-01013 — Gesture controlled HMI with mmWave sensors and Sitara™ processors reference design

This reference design showcases natural gesture recognition and presence detection with the Processor SDK Linux running on the Sitara AM335x processor, and the mmWave SDK running on the IWR6843ISK.

The design demonstrates the functionality of a gesture controlled HMI (Human Machine Interface) where (...)

Supported products & hardware
Reference design

TIDEP-01018 — Automated doors reference design using TI mmWave sensors

This reference design demonstrates the use of the TI IWR6843ISK, a single-chip mmWave radar sensor with integrated DSP for an automated smart-door application. This reference design uses the IWR6843ISK plus industrial carrier board (ICB) and integrates a complete radar-processing (...)

Supported products & hardware
Reference design

TIDEP-01025 — mmWave diagnostic and monitoring reference design

This reference design showcases the inbuilt autonomous monitoring functionality in mmWave radar sensors that enhances system efficiency by minimizing the processing load on the host. The design uses a safety diagnostic library (SDL) to run diagnostic tests on programmable digital cores, peripherals (...)

Supported products & hardware
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FCCSP (ABL) 161 Ultra Librarian

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