TIOL111

ACTIVE

IO-Link device transceiver with integrated surge protection

Product details

Type IO-Link Supply voltage (V) 7 to 36 IEC 61000-4-2 contact (±V) 16000 IEC 61000-4-4 EFT (±V) 4000 IEC 61000-4-5 (surge) (±V) 1200 Current limit (max) (A) 0.35 Features Configurable current limiter, Remote wakeup, Reverse polarity protection Operating temperature range (°C) -40 to 125
Type IO-Link Supply voltage (V) 7 to 36 IEC 61000-4-2 contact (±V) 16000 IEC 61000-4-4 EFT (±V) 4000 IEC 61000-4-5 (surge) (±V) 1200 Current limit (max) (A) 0.35 Features Configurable current limiter, Remote wakeup, Reverse polarity protection Operating temperature range (°C) -40 to 125
VSON (DMW) 10 7.5 mm² 2.5 x 3
  • 7-V to 36-V Supply Voltage
  • PNP, NPN or IO-Link Configurable Output
    • IEC 61131-9 COM1, COM2 and COM3 Data Rate Support
  • Low Residual Voltage of 1.75 V at 250 mA
  • 50-mA to 350-mA Configurable Current Limit
  • Tolerant to ±65-V Transients < 100 µs
  • Reverse Polarity Protection of up to 60 V on L+, CQ and L-
  • Integrated EMC Protection on L+ and CQ
    • ±16 kV IEC 61000-4-2 ESD Contact Discharge
    • ±4 kV IEC 61000-4-4 Electrical Fast Transient
    • ±1.2 kV/500 Ω IEC 61000-4-5 Surge
  • Fast Demagnetization of Inductive Loads
    up to 1.5 H
  • Large Capacitive Load Driving Capability
  • < 2-µA CQ Leakage Current
  • < 1.5-mA Quiescent Supply Current
  • Integrated LDO Options for up to 20 mA Current
    • TIOL111: No LDO
    • TIOL1113: 3.3-V LDO
    • TIOL1115: 5-V LDO
  • Overtemperature Warning and Thermal Protection
  • Remote Wake-up Indicator
  • Fault Indicator
  • Extended Ambient Temperature: –40°C to 125°C
  • 2.5 mm x 3 mm 10-pin VSON Package
  • 7-V to 36-V Supply Voltage
  • PNP, NPN or IO-Link Configurable Output
    • IEC 61131-9 COM1, COM2 and COM3 Data Rate Support
  • Low Residual Voltage of 1.75 V at 250 mA
  • 50-mA to 350-mA Configurable Current Limit
  • Tolerant to ±65-V Transients < 100 µs
  • Reverse Polarity Protection of up to 60 V on L+, CQ and L-
  • Integrated EMC Protection on L+ and CQ
    • ±16 kV IEC 61000-4-2 ESD Contact Discharge
    • ±4 kV IEC 61000-4-4 Electrical Fast Transient
    • ±1.2 kV/500 Ω IEC 61000-4-5 Surge
  • Fast Demagnetization of Inductive Loads
    up to 1.5 H
  • Large Capacitive Load Driving Capability
  • < 2-µA CQ Leakage Current
  • < 1.5-mA Quiescent Supply Current
  • Integrated LDO Options for up to 20 mA Current
    • TIOL111: No LDO
    • TIOL1113: 3.3-V LDO
    • TIOL1115: 5-V LDO
  • Overtemperature Warning and Thermal Protection
  • Remote Wake-up Indicator
  • Fault Indicator
  • Extended Ambient Temperature: –40°C to 125°C
  • 2.5 mm x 3 mm 10-pin VSON Package

The TIOL111(x) family of transceivers implements the IO-Link interface for industrial bidirectional, point-to-point communication. When the device is connected to an IO-Link master through a three-wire interface, the master can initiate communication and exchange data with the remote node while the TIOL111(x) acts as a complete physical layer for the communication.

These devices are capable of withstanding up to 1.2 kV (500 Ω) of IEC 61000-4-5 surge and feature integrated reverse polarity protection.

A simple pin-programmable interface allows easy interfacing to the controller circuits. The output current limit can be configured using an external resistor.

Fault reporting and internal protection functions are provided for under voltage, over current and over temperature conditions.

The TIOL111(x) family of transceivers implements the IO-Link interface for industrial bidirectional, point-to-point communication. When the device is connected to an IO-Link master through a three-wire interface, the master can initiate communication and exchange data with the remote node while the TIOL111(x) acts as a complete physical layer for the communication.

These devices are capable of withstanding up to 1.2 kV (500 Ω) of IEC 61000-4-5 surge and feature integrated reverse polarity protection.

A simple pin-programmable interface allows easy interfacing to the controller circuits. The output current limit can be configured using an external resistor.

Fault reporting and internal protection functions are provided for under voltage, over current and over temperature conditions.

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TIOL112 ACTIVE IO-Link device transceiver with low residual voltage and integrated surge protection Low residual voltage of 0.9 V (max) at 200 mA, lower junction-to-ambient thermal resistance, slower driver slew rates to reduce overshoots

Technical documentation

Design & development

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

Evaluation board

TIOL1115EVM — TIOL1115 IO-Link transceiver evaluation module

The  TIOL1115 EVM provides users with the ability to evaluate TI's TIOL111x family of IO-Link transceivers.  The EVM includes the TIOL1115 which provides full IO-Link functionality and an on-chip 5-V LDO.  With pin- to-pin compatibility throughout the TIOL111 family, the EVM can (...)
User guide: PDF
Not available on TI.com
Simulation model

TIOL111 IBIS Model

SLLM362.ZIP (59 KB) - IBIS Model
Simulation tool

PSPICE-FOR-TI — PSpice® for TI design and simulation tool

PSpice® for TI is a design and simulation environment that helps evaluate functionality of analog circuits. This full-featured, design and simulation suite uses an analog analysis engine from Cadence®. Available at no cost, PSpice for TI includes one of the largest model libraries in the (...)
Simulation tool

TINA-TI — SPICE-based analog simulation program

TINA-TI provides all the conventional DC, transient and frequency domain analysis of SPICE and much more. TINA has extensive post-processing capability that allows you to format results the way you want them. Virtual instruments allow you to select input waveforms and probe circuit nodes voltages (...)
User guide: PDF
Reference designs

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Design guide: PDF
Schematic: PDF
Reference designs

TIDA-01437 — RGB Signal Light With IO-Link Interface Reference Design

This reference design implements a five-segment LED smart stack light with 20 LEDs used in factory floor and industrial process automation of greater complexity. An IO-Link interface is implemented for controlling the stack light and reading back status information. The design features low power (...)
Design guide: PDF
Schematic: PDF
Reference designs

TIDA-010016 — 8 Port IO-Link Master Reference Design

PLC applications requiring fast timing and fast cycle time can now be realized using this reference design which implements, an eight-port IO-Link master. It can be used to build a remote IO gateway to connect to OPC UA, Profinet, EtherCAT or Ethernet IP. A PRU-based frame handler enables a very (...)
Design guide: PDF
Schematic: PDF
Reference designs

TIDA-01386 — Ultrasonic Distance Sensor with IO-Link Reference Design

This reference design features an ultrasonic distance sensor that fits in a M12 housing due to its high integration and an optimized layout. The design offers an IO-Link interface to communicate with the system control, which makes it industry 4.0 ready.  The purpose of ultrasonic (...)
Design guide: PDF
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Reference designs

TIDA-01478 — IO-Link With Digital Output and DC/DC Reference Design

This reference design demonstrates the ability to have a high-density, IO-Link transceiver module, digital output (DO) (1) channel, and a DC-DC buck converter. With the DC-DC this module can power a wide array of external devices, such as microcontrollers (MCUs), sensors, displays, and more. (...)
Design guide: PDF
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Reference designs

TIDA-01335 — Ultra-Small IO-Link Sensor Transmitter with RTD Front End Reference Design

This reference design demonstrates the IO-Link communication in a small form factor of just 6mm PCB width with integrated protection and a resistance temperature detector (RTD) sensor front-end. The highly integrated and tiny IO-Link PHY offers: ESD, EFT, surge protection and reverse polarity (...)
Design guide: PDF
Schematic: PDF
Reference designs

TIDA-00461 — IO-Link Firmware Update Reference Design Leveraging MSP430 FRAM Technology

IO-Link offers new options for communication between the system control and field level. Today, even the smallest sensors have a powerful microcontroller and several thousand lines of software code. Firmware updates may occasionally be necessary, for example, to fix bugs or to enable new (...)
Design guide: PDF
Schematic: PDF
Reference designs

TIDA-01239 — Proximity Switch With CapTIvate Teach Button Reference Design

This reference design demonstrates the implementation of a capacitive touch button using an MSP430™ MCU with CapTIvate™ technology in an ultra-small 3.5-mm width PCB. This button is commonly used as a set button in proximity switches. In combination with the highly integrated IO-Link PHY, a (...)
Design guide: PDF
Schematic: PDF
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