TIDEP-01018

Automated doors reference design using TI mmWave sensors

TIDEP-01018

Design files

Overview

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 chain onto the IWR6843 device. This solution is designed to track a person's position and velocity in order to simulate the opening of a door when they are approaching.

Features
  • Demonstration hardware and software using IWR6843 mmWave radar sensor for entrance systems
  • mmWave technology provides range, velocity, and angle information – ideal for environmental effects
  • Tracking algorithm serves to ensure door should only open when a person is directly approaching
  • Azimuth field of view (FoV): 120 degrees across distance of 5 m
  • Examples of implementation of static clutter and group tracking algorithms
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Design files & products

Design files

Download ready-to-use system files to speed your design process.

PDF | HTML
TIDUER1B.PDF (7021 K)

Reference design overview and verified performance test data

SWRR166B.ZIP (20416 K)

Detailed schematic diagram for design layout and components

SWRR165B.ZIP (23084 K)

Detailed schematic diagram for design layout and components

SWRR164C.ZIP (73375 K)

Detailed schematic diagram for design layout and components

TIDRZR5A.PDF (1220 K)

Detailed schematic diagram for design layout and components

TIDRZR6.PDF (90 K)

Complete listing of design components, reference designators, and manufacturers/part numbers

TIDRZR7A.PDF (729 K)

Detailed overview of design layout for component placement

TIDRZR9.ZIP (2962 K)

Files used for 3D models or 2D drawings of IC components

TIDCFH1.ZIP (7517 K)

Design file that contains information on physical board layer of design PCB

TIDRZR8.PDF (3442 K)

PCB layer plot file used for generating PCB design layout

Products

Includes TI products in the design and potential alternatives.

Industrial mmWave radar sensors

IWR6843Single-chip 60-GHz to 64-GHz intelligent mmWave sensor integrating processing capability

Data sheet: PDF | HTML
Industrial mmWave radar sensors

IWR6843AOPSingle-chip 60-GHz to 64-GHz intelligent mmWave sensor with integrated antenna on package (AoP)

Data sheet: PDF | HTML

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Hardware

Evaluation board

IWR6843ISK-ODS — IWR6843 intelligent mmWave overhead detection sensor (ODS) antenna plug-in module

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 (...)

User guide: PDF | HTML
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Limit: This limit is in place to protect sample purchases for design evaluation and will be removed once more stock is available.
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Evaluation board

IWR6843ISK — IWR6843 intelligent mmWave sensor standard antenna plug-in module

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 (...)

User guide: PDF | HTML
Log in to order
In stock / Out of stock
Limit: This limit is in place to protect sample purchases for design evaluation and will be removed once more stock is available.
Not available on TI.com

Technical documentation

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Type Title Date
* Design guide Automated Doors Reference Design Using TI mmWave Sensors (Rev. B) PDF | HTML Apr. 27, 2020
Technical article Bring intelligence, efficiency and convenience to automated entrance systems with PDF | HTML May 22, 2019

Related design resources

Hardware development

EVALUATION BOARD
IWR6843AOPEVM IWR6843AOP evaluation module for single-chip 60GHz antenna-on-package (AoP) mmWave sensor MMWAVEICBOOST mmWave sensors carrier card platform

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