IWR6843AOP

ACTIVO

Sensor inteligente de ondas milimétricas de 60 a 64 GHz de un único chip con antena integrada en el

Detalles del producto

Type IC Frequency range 60 - 64 GHz Number of receivers 4 Number of transmitters 3 ADC sampling rate (ksps) 25000 TX power (dBm) 10 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) 10 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 (ALP) 180 225 mm² 15 x 15
  • FMCW transceiver
    • Integrated 4 receivers and 3 transmitters Antennas-On-Package (AOP)
    • Integrated PLL, transmitter, receiver, Baseband, and ADC
    • 60 to 64GHz coverage with 4GHz continuous bandwidth
    • Supports 6-bit phase shifter for TX Beam forming
    • Ultra-accurate chirp engine based on fractional-N PLL
  • 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
  • Memory compression
  • Hardware accelerator for FFT, filtering, and CFAR processing
  • Arm-R4F microcontroller for object detection, and interface control
    • Supports autonomous mode (loading user application from QSPI flash memory)
  • Internal memory with ECC
    • 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)
    • Technical reference manual includes allowed size modifications
  • Device Security (on select part numbers)
    • Secure authenticated and encrypted boot support
    • Customer programmable root keys, symmetric keys (256 bit), Asymmetric keys (up to RSA-2K) with Key revocation capability
    • Crypto software accelerators - PKA , AES (up to 256 bit), SHA (up to 256 bit), TRNG/DRGB
  • 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
  • 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
    • 0.8mm pitch, 180-pin 15mm × 15mm FCBGA package (ALP) for easy assembly and low-cost PCB design
    • Small solution size
  • Operating conditions
    • Junction temp range: –40°C to 105°C
  • FMCW transceiver
    • Integrated 4 receivers and 3 transmitters Antennas-On-Package (AOP)
    • Integrated PLL, transmitter, receiver, Baseband, and ADC
    • 60 to 64GHz coverage with 4GHz continuous bandwidth
    • Supports 6-bit phase shifter for TX Beam forming
    • Ultra-accurate chirp engine based on fractional-N PLL
  • 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
  • Memory compression
  • Hardware accelerator for FFT, filtering, and CFAR processing
  • Arm-R4F microcontroller for object detection, and interface control
    • Supports autonomous mode (loading user application from QSPI flash memory)
  • Internal memory with ECC
    • 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)
    • Technical reference manual includes allowed size modifications
  • Device Security (on select part numbers)
    • Secure authenticated and encrypted boot support
    • Customer programmable root keys, symmetric keys (256 bit), Asymmetric keys (up to RSA-2K) with Key revocation capability
    • Crypto software accelerators - PKA , AES (up to 256 bit), SHA (up to 256 bit), TRNG/DRGB
  • 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
  • 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
    • 0.8mm pitch, 180-pin 15mm × 15mm FCBGA package (ALP) for easy assembly and low-cost PCB design
    • Small solution size
  • Operating conditions
    • Junction temp range: –40°C to 105°C

The IWR6843AOP is an Antenna-on-Package (AOP) device that is an evolution within the single-chip radar device family from Texas Instruments (TI). This device enables unprecedented levels of integration in an extremely small form factor and 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 (SIL2) and non-functional safety devices.

It integrates a DSP subsystem, which contains TI’s high-performance C674x DSP for the Radar Signal processing. The device includes a BIST processor subsystem, which is responsible for radio configuration, control, and calibration. Additionally, the device includes a user programmable Arm Cortex-R4F based for automotive interfacing. The Hardware Accelerator block (HWA) can perform radar processing and can offload the DSP in order to execute higher level algorithms. Simple programming model changes can enable a wide variety of sensor applications with the possibility of dynamic reconfiguration for implementing a multimode sensor. Additionally, the device is provided as a complete platform solution including reference hardware design, software drivers, sample configurations, API guide, and user documentation.

The IWR6843AOP is an Antenna-on-Package (AOP) device that is an evolution within the single-chip radar device family from Texas Instruments (TI). This device enables unprecedented levels of integration in an extremely small form factor and 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 (SIL2) and non-functional safety devices.

It integrates a DSP subsystem, which contains TI’s high-performance C674x DSP for the Radar Signal processing. The device includes a BIST processor subsystem, which is responsible for radio configuration, control, and calibration. Additionally, the device includes a user programmable Arm Cortex-R4F based for automotive interfacing. The Hardware Accelerator block (HWA) can perform radar processing and can offload the DSP in order to execute higher level algorithms. Simple programming model changes can enable a wide variety of sensor applications with the possibility of dynamic reconfiguration for implementing a multimode sensor. Additionally, the device is provided as a complete platform solution including reference hardware design, software drivers, sample configurations, API guide, and user documentation.

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Más información

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Documentación técnica

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Documentación principal Tipo Título Opciones de formato Fecha
* Data sheet IWR6843AOP Single-Chip 60 to 64GHz mmWave Sensor Antennas-On-Package (AOP) datasheet (Rev. C) PDF | HTML 16 jun 2025
* Errata IWR6843AOP Silicon Errata, Silicon Revisions 1.0, 2.0 (Rev. B) PDF | HTML 28 mar 2022
* User guide IWR14xx/16xx/18xx/68xx/64xx Industrial Radar Family Technical Reference Manual (Rev. E) 08 jun 2020
Application brief Understanding Range and Angular Resolution in mmWave Radar Devices (Rev. A) PDF | HTML 05 ene 2026
Application note Flash Variants Supported by the mmWave Sensor (Rev. G) PDF | HTML 17 dic 2024
Application brief How 60GHz Radar Sensors Reduce False Detections for Sensing Applications PDF | HTML 09 may 2024
Application note 60GHz Radar Sensors Enable Better Health and Medical Care PDF | HTML 09 feb 2024
Functional safety information IWRxx43 TUV SUD Functional Safety Certificate (Rev. B) 23 ene 2024
Technical article Three key considerations for the next generation of HMI (Rev. A) PDF | HTML 23 ene 2024
Technical article Proximity Sensing’s Role in Enabling Emerging Markets PDF | HTML 04 ene 2024
White paper How antenna-on-package design simplifies mmWave sensing in buildings and factori (Rev. B) PDF | HTML 27 abr 2023
Analog Design Journal Building a multipatient contactless vital signs sensor for at-home use with mmWa PDF | HTML 13 mar 2023
Application note Self-Calibration of mmWave Radar Devices (Rev. C) PDF | HTML 11 ene 2023
Application note Migrating to xWR68xx and xWR18xx Millimeter Wave Sensors (Rev. C) PDF | HTML 12 oct 2022
Application note Interference Mitigation For AWR/IWR Devices (Rev. A) PDF | HTML 22 sep 2022
Application note Software Strategies to Achieve Power Optimizations in TI Millimeter Wave Sensors PDF | HTML 18 feb 2022
Technical article How mmWave sensors create technology advantages for independent, “assisted” living PDF | HTML 18 ene 2022
Application note TI mmWave Radar Device Regulatory Compliance Overview (Rev. C) PDF | HTML 14 dic 2021
Application note mmWave Radar Radome Design Guide PDF | HTML 17 ago 2021
Application note mmWave Radar Sensors: Object Versus Range (Rev. A) 10 may 2021
Application note mmWave Production Testing Overview PDF | HTML 10 abr 2021
Application note Power Management Optimizations - Low Cost LC Filter Solution (Rev. A) PDF | HTML 11 nov 2020
White paper The fundamentals of millimeter wave radar sensors (Rev. A) 27 ago 2020
White paper mmWave radar sensors in robotics applications (Rev. A) 22 jun 2020
White paper Machine Learning Powers Autonomous Industrial Systems (Rev. A) 17 jun 2020
Application note Thermal Design Guide for Antenna on Package mmWave Sensor PDF | HTML 21 abr 2020
Application note Programming Chirp Parameters in TI Radar Devices (Rev. A) 13 feb 2020
E-book E-book: An engineer’s guide to industrial robot designs 12 feb 2020
Application note Memory Compression and Decompression Engine for TI mmwave Radar 02 dic 2019
User guide IWR6843AOP evaluation module features and interface 06 nov 2019
Technical article Non-contact and private stance detection with TI mmWave sensors PDF | HTML 03 sep 2019
Application note How to select the right proximity sensor technology 19 jul 2019
User guide MMWAVEICBOOST Quick Start Guide 06 may 2019
White paper Bringing intelligent autonomy to fine motion detection (Rev. A) 20 dic 2018
Application note mmWave xWR1xxx/xWR6xxx Bootloader Flow 23 oct 2018
Application note mmwave Radar Device ADC Raw Data Capture (Rev. B) 23 oct 2018
White paper Leveraging the 60-GHz RF band to enable accurate mmWave sensing 19 oct 2018
Application note MIMO Radar (Rev. A) 26 jul 2018
Application note Introduction to the DSP Subsystem in the xWR6843 29 jun 2018
Application note Watchdog Timer for mmwave Radar Sensors (Rev. A) 08 jun 2018
White paper mmWave radar: Enabling greater intelligent autonomy at the edge 06 jun 2018
White paper Robust traffic and intersection monitoring using millimeter wave sensors (Rev. B) 17 may 2018
Application note TI mmWave Radar sensor RF PCB Design, Manufacturing and Validation Guide 07 may 2018
Application note Adding CAN-FD Tx and Rx to an Existing mmWave Project 12 abr 2018
User guide Radar Hardware Accelerator User's Guide - Part 2 (Rev. A) 13 mar 2018
Application note Adding Flash Read and Write to an Existing mmWave Project 25 sep 2017
White paper Cities grow smarter through innovative semiconductor technologies 07 jul 2017
White paper Using a complex-baseband architecture in FMCW radar systems 17 abr 2017

Diseño y desarrollo

Para conocer los términos adicionales o los recursos necesarios, haga clic en cualquier título de abajo para ver la página de detalles cuando esté disponible.

Placa de evaluación

DCA1000EVM — Módulo de evaluación DCA1000 para captura y transmisión de datos en tiempo real

El módulo de evaluación (EVM) DCA1000 proporciona captura y transmisión de datos en tiempo real para tráfico de señalización diferencial de baja tensión (LVDS) de dos y cuatro carriles desde los EVM de sensores de radar AWR e IWR de TI. Los datos se pueden transmitir a través de Ethernet de 1 Gbps (...)

Guía del usuario: PDF
No disponible en TI.com
Placa de evaluación

IWR6843AOPEVM — Módulo de evaluación IWR6843AOP para sensor mmWave de antena en encapsulado (AoP) de 60 GHz de chip

El módulo de evaluación (EVM) de la antena en encapsulado (AoP) IWR6843 es una plataforma de evaluación de sensores mmWave de 60 GHz fácil de usar que se utiliza para evaluar el producto IWR6843AOP, que integra una antena de campo de visión (FoV) amplio. Esta placa permite el acceso a datos y (...)

Guía del usuario: PDF | HTML
Placa de evaluación

MMWAVEICBOOST — Plataforma de tarjeta portadora de sensores mmWave

La tarjeta portadora MMWAVEICBOOST amplía las capacidades de determinados módulos de evaluación mmWave de 60 GHz. Esta placa proporciona desarrollo de software avanzado, funciones de depuración como seguimiento y paso único a través de depuradores compatibles con Code Composers de TI. La interfaz (...)

Guía del usuario: PDF | HTML
Placa de evaluación

D3-3P-DESIGNCORE-RADAR — Módulos de evaluación de radar DesignCore® D3 Embedded

Los sensores en miniatura, las placas de evaluación de sensores y los dispositivos de fusión de sensores de D3 Embedded permiten evaluar rápidamente los módulos de radar D3 con nuestra tecnología de radar mmWave. Estos sensores permiten una fácil integración de algoritmos de radar para aplicaciones (...)

Desde: D3 Embedded
Placa de evaluación

VENTROPIC-3P-4G-IOT-RADAR — Módulo de radar IoT VENTROPIC-4G para SENSORES DE RADAR MMWAVE

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 (...)

Placa de evaluación

VENTROPIC-3P-WIFI-RADAR — Módulo de radar VENTROPIC-WiFi para SENSORES DE RADAR MMWAVE

VENTROPIC-RTL 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 (...)

Sonda de depuración

TMDSEMU110-U — Sonda de depuración XDS110 JTAG

El XDS110 de Texas Instruments es una nueva clase de sonda de depuración (emulador) para procesadores integrados de TI. El XDS110 sustituye a la familia XDS100, al tiempo que es compatible con una mayor variedad de estándares (IEEE1149.1, IEEE1149.7, SWD) en un único pod. Todas las sondas de (...)

Guía del usuario: PDF
Sonda de depuración

TMDSEMU200-U — Sonda de depuración XDS200 USB

El XDS200 es una sonda de depuración (emulador) que se utiliza para depurar dispositivos integrados de TI. Para la mayoría de los dispositivos, se recomienda utilizar el XDS110 (www.ti.com/tool/TMDSEMU110-U), que es más nuevo y de menor costo. El XDS200 es compatible con una amplia variedad de (...)

Sonda de depuración

TMDSEMU560V2STM-U — Sonda de depuración USB de seguimiento del sistema XDS560v2

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 (...)

Sonda de depuración

TMDSEMU560V2STM-UE — Sonda de depuración USB y ethernet de seguimiento del sistema XDS560v2

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 (...)

Sonda de depuración

TMDSEMUPROTRACE — Sonda de depuración PRO de seguimiento y receptora XDS560v2

Importante: El receptor PRO TRACE XDS560v2 es un producto heredado compatible con el trazado de pines para procesadores TI. Para dispositivos nuevos, se recomienda utilizar un receptor de trazado de terceros.

El receptor PRO TRACE XDS560v2 es compatible con las mismas características que la familia (...)

Third-party accessory

D3-3P-D3RCM — D3 Módulos de cámara heredados de la serie de cámaras DesignCore® de Embedded

Las cámaras FPD-Link™ III 1.3 MP D3RCM son módulos de cámara robustos con el sensor de imagen OmniVision® OV10640 o el sensor de imagen SONY® IMX390. Son compatibles con los procesadores de video de radar (RVP) de D3 Embedded con base en nuestros procesadores, diseñados para aplicaciones de (...)

Desde: D3 Embedded
Third-party accessory

WZ-3P-1000303 — Wellenzahl Dielectric Lens HDPE CNC machined

Dielectric lens for RAPIDv3 modules (60 / 77 / 122 GHz) including PCB spacers for RAPIDv3 mounting

Third-party accessory

WZ-3P-1001086 — Wellenzahl Dielectric Lens PLA 3D printed

   Dielectric lens for RAPIDv3 modules (60 / 77 / 122 GHz) including PCB spacers for RAPIDv3 mounting

Kit de desarrollo de software (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 (...)

Productos y hardware compatibles

Productos y hardware compatibles

Iniciar Opciones de descarga
Ejemplo de código o demostración

D3-3P-DEV — Soporte D3 Embedded para cámaras IA, hardware, controladores y firmware

D3 Embedded es una empresa radicada en Estados Unidos que se especializa en soluciones de extremo a extremo que integran detección de visión y radar mmWave, conectividad, procesamiento integrado e inteligencia artificial para aplicaciones de alto rendimiento. Con más de 25 años de experiencia de (...)
Desde: D3 Embedded
GUI para el módulo de evaluación (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
Productos y hardware compatibles

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Primeros pasos

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.
Productos y hardware compatibles

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IDE, configuración, compilador o depurador

CCSTUDIO Code Composer Studio™ integrated development environment (IDE)

CCStudio™ IDE is part of TI's extensive CCStudio™ development tool ecosystem. It is an integrated development environment (IDE) for TI's microcontrollers, processors, wireless connectivity devices and radar sensors. It is comprised of a rich suite of tools used to build, debug, analyze and optimize (...)

Productos y hardware compatibles

Productos y hardware compatibles

Iniciar Opciones de descarga
IDE, configuración, compilador o depurador

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, (...)

Productos y hardware compatibles

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Opciones de descarga
IDE, configuración, compilador o depurador

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, (...)

Productos y hardware compatibles

Productos y hardware compatibles

Opciones de descarga
IDE, configuración, compilador o depurador

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 (...)

Productos y hardware compatibles

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Iniciar Opciones de descarga
Capacitación en línea

RADAR-ACADEMY mmWave Radar Academy

The Radar Academy is a documentation package intended to provide educational resources related to mmWave radar technology
Productos y hardware compatibles

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Herramienta de programación de software

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.

UniFlash can be run from the cloud on the TI Developer Zone or downloaded and used (...)

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Soporte de 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
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Examinar Opciones de descarga
Modelo de simulación

AWR6843AoP, IWR6843AoP BSDL Model

SPRM804.ZIP (274 KB) - BSDL Model
Modelo de simulación

xWR6843AOP IBIS Model

SPRM763.ZIP (2351 KB) - IBIS Model
Herramienta de diseño

MMWAVE-3P-SEARCH — Herramienta de búsqueda de terceros de sensores de radar mmWave

TI se asoció con otras empresas para ofrecer una amplia gama de soluciones que utilizan sensores de radar mmWave de TI y servicios afines. Estas empresas pueden acelerar su camino hacia la producción utilizando el radar mmWave. Descargue esta herramienta de búsqueda para consultar nuestra lista de (...)
Diseños de referencia

TIDA-010281 — Diseño de referencia de detección por radar mmWave para una percepción del robot más segura

Este diseño de referencia presenta un sensor de radar de onda milimétrica (mmWave) de seguridad (IWR6843AOP) y un circuito integrado de administración de potencia (PMIC) de seguridad (LP87745) para permitir una percepción segura en aplicaciones de robótica y automatización industrial. El diseño (...)
Design guide: PDF
Diseños de referencia

TIDEP-01010 — Diseño de referencia de escáner de área con sensor mmWave integrado con antena en el encapsulado

El diseño de referencia TIDEP-01010 aprovecha la tecnología de onda milimétrica (mmWave) de chip único de TI para implementar un escáner de área capaz de detectar y localizar en un espacio 3D. Mediante el uso de sensores mmWave de 60 GHz de TI, la detección de presencia, así como la capacidad de (...)
Design guide: PDF
Esquema: PDF
Diseños de referencia

TIDEP-01018 — Diseño de referencia de puertas automatizadas con sensores mmWave de TI

Este diseño de referencia demuestra el uso de TI IWR6843ISK, un sensor de radar mmWave de chip único con DSP integrado para una aplicación de puerta inteligente automatizada. Este diseño de referencia utiliza la placa portadora industrial (ICB) IWR6843ISK Plus e integra una cadena completa de (...)
Design guide: PDF
Esquema: PDF
Encapsulado Pines Símbolos CAD, huellas y modelos 3D
FCCSP (ALP) 180 Ultra Librarian

Pedidos y calidad

Información incluida:
  • RoHS
  • REACH
  • Marcado del dispositivo
  • Acabado de plomo/material de la bola
  • Clasificación de nivel de sensibilidad a la humedad (MSL)/reflujo máximo
  • Estimaciones de tiempo medio entre fallas (MTBF)/fallas en el tiempo (FIT)
  • Contenido del material
  • Resumen de calificaciones
  • Monitoreo continuo de confiabilidad
Información incluida:
  • Lugar de fabricación
  • Lugar de ensamblaje

Los productos recomendados pueden tener parámetros, módulos de evaluación o diseños de referencia relacionados con este producto de TI.

Soporte y capacitación

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