Factory automation & control
Design smart and efficient factory automation applications to save energy and extend system life with our analog and embedded processing products and expertise
Featured applications
Explore our analog and digital processing products tailored for designing your next generation field transmitter and sensor applications
Design advanced human machine interface (HMI) applications with our Arm®-based microprocessor solutions and analog integrated circuits
Develop the most sophisticated robots of tomorrow with our analog and embedded products and expertise
Design smart and efficient machine vision applications with our analog and embedded processing products
Design smarter and safer automated guided vehicles and autonomous mobile robots with our sensing, high-speed perception and real-time control products
Design high-performance programmable logic controller (PLC) systems with our analog and embedded processing products
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Explore the latest technologies
Why choose TI for factory automation & control?
Increase power efficiency
Our innovative process and package technology enables you to design the smallest, most efficient and best-in-class power system solutions.
Designed to scale
We offer a wide variety of devices enabling multiple protocols, from field to management level, for industrial communications.
Accelerate time to market
Our large selection of reference designs and development tools enables you to develop the solution of tomorrow.
Engineering smarter, more automated factory systems
Building smarter, safer robotics
Our engineers are here to support and address all robotic application types and sub-system challenges that robotics developers face, from industrial and mobile robots to cobots and more. Our innovative technologies such as precise motor control, processing at the edge, smart sensing, and advanced real-time communications are helping you innovate your robot design.
3 trends impacting the future of embedded processing technology
3 ways semiconductors enhance automation and efficiency
E-book: An engineer’s guide to industrial robot designs
Build precise, safe, and power-efficient motor control systems
Choose the best power and size configuration for your robot design with our complete offering of motor control solutions:
- Enable precise, time-sensitive real-time communications between host and client by using MCU-integrated real-time industrial protocols such as ProfiNet and EtherCAT.
- Improve robot motor control system’s response time with our scalable, ultra-low latency, real-time microcontrollers designed for efficiency.
- Design your drive stage to deliver a broad range of power levels with the best efficiency and power density using our gate drivers portfolio.
- Increase robustness, efficiency, and control accuracy with our voltage, current, and position sensor solutions.
Simplifying Robotics Motor Drive Safety Assessments
Design Smaller Safe Torque Off (STO) Systems Using 3-Phase Smart Gate Drivers
How motor drive innovations are helping solve robotic movement design challenges
Featured products for motor control
Longer, faster, smaller
Increased automation is taking Ethernet to the edge. Industrial SPE enables connected edge nodes and distributed processing. Use single-pair Ethernet in your industrial design to move data over TCP/IP anywhere you need it.
- Faster & farther: Enable better system implementation with cable lengths up to 2km, and faster data delivery protocols using our PHYs and processors.
- Minimize implementation cost: Reduce time and cost of upgrade by re-using more existing cabling infrastructure with our low noise receiver architecture.
- Maximize system uptime: Enable remote and predictive maintenance using our proprietary runtime cable diagnostics toolkit. Stay ahead of cable degradation and decrease your system’s downtime.
How to Implement an IEEE 802.3cg or 802.3bu-Compliant PoDL PSE
New Product Update: Ethernet
IEEE 802.3cg 10BASE-T1L Power over Data Lines Powered Device Design (Rev. A)
Featured products for Single-pair-Ethernet (SPE)
Enabling smarter factories
IO-Link is a digital communication protocol used in industrial automation for communication data between sensors, actuators, and controllers. It enables reliable and efficient communication in various industrial applications including assembly lines, robotics and packaging. IO-Link communication in industrial automation provides numerous of advantages.
These include:
- Real-time data and power transmission with transfer speed of up to 230.4 kpbs.
- Simplified installation and configuration, reducing cost.
- Enhanced diagnostic such as device status, configuration and errors.
- Wide range of devices, from sensors, actuators, remote IO and controllers.
Optimizing Field Sensor and Transmitter Applications With MSPM0 MCUs
Implementing an IO-Link master with deterministic timing
Featured products for IO-Link
Unlock seamless connectivity and scalability
Many modern systems now come with communication interfaces to enhance the overall connectivity of a system design but can also result in new challenges for design engineers. We support a wide range of industrial communication standards – from serial interfaces (IO-Link, CAN, RS-485) to industrial Ethernet (10/100/1000 Mbit and multi-protocol industrial Ethernet like EtherCAT, PROFINET, Ethernet/IP, and others) and new technologies such as time-sensitive networks (TSN) and single-pair Ethernet (SPE). This support enables design engineers to have advanced connectivity and scalability to meet the needs of current industry trends.
Factory automation design made simple with multiprotocol industrial Ethernet systems
EtherCAT® protocol: C2000™ real-time controller
Featured products for industrial communication
Streamline functional safety system certification
Factory floors require equipment with monitoring and diagnostic capabilities to reduce the probability of dangerous faults that can result in harm of humans, environment or assets.
We are helping achieve functional safety certification by building customer trust with expertly engineered products to meet industry standards such as IEC 61508, ISO 13849, IEC 61800 and IEC 60730.
Streamlining Functional Safety Certification in Automotive and Industrial
Enabling precision delta‐sigma ADCs in functional safety applications
Understanding Functional Safety FIT Base Failure Rate Estimates per IEC 62380 and SN 29500 (Rev. A)
Featured products for functional safety
Design & development resources
High density isolated PoE and GigE reference design for machine vision cameras and vision sensors
TUV-assessed digital input reference design for IEC 61508 (SIL-2)
Four-port 10BASE-T1L single-pair Ethernet with power over data line reference design
This reference design showcases an Ethernet gateway that functions as a bridge between four 10BASE-T1L single-pair Ethernet (SPE) ports with power over data line (PoDL) and a 1000BASE-T Ethernet port. The four SPE ports function as power source equipment (PSE), providing 24 V to field devices. The (...)
Featured products
Technical resources
Powering the AM62x with the TPS65219 PMIC (Rev. B)
Faster Switching of Large Inductive Loads in Digital Output Modules
Supporting High Voltage Common Mode Using Instrumentational Amplifier
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