Features and Benefits
- 10BASE-T1L IEEE Standard 802.3cg-2019 compliant
- Cable reach up to 1700 m with 1.0 V p-p and 2.4 V p-p
- Supports 1.0 V p-p and 2.4 V p-p transmit levels
- Supports intrinsic safety applications
- Cable fault detection with TDR
- Link quality indicator with MSE
- Frame generator and checker
- Multiple loopback modes
- IEEE test mode support
- MII, RMII and RGMII MAC interfaces
- MDIO Management Interface
- Unmanaged configuration using pin strapping including
- 25 MHz crystal or external clock input (50 MHz for RMII)
- Single or dual supply with 1.8 V or 3.3 V operation
- 3.3 V, 2.5 V, or1.8 V MAC interface VDDIO supply
- Integrated power supply monitoring and POR
- EMC test standards
- IEC 61000-4-4 EFT (±4 kV)
- IEC 61000-4-2 ESD (±4 kV contact discharge)
- IEC 61000-4-2 ESD (±8 kV air discharge)
- IEC 61000-4-5 surge (±4 kV)
- IEC 61000-4-6 conducted immunity (10 V/m)
- IEC 61000-4-3 radiated immunity (Class A)
- EN 55032 radiated emissions (Class B)
- Small package: 40-lead, 6 mm x 6 mm LFCSP
- Temperature range
- Industrial: -40°C to +85°C
- Extended:-40°C to +105°C
The ADIN1100 is a low power, single port, 10BASE-T1L transceiver designed for industrial Ethernet applications and is compliant with the IEEE® 802.3cg-2019™ Ethernet standard for long reach 10 Mbps single pair Ethernet (SPE). The ADIN1100 integrates an Ethernet PHY core with all the associated analog circuitry, input and output clock buffering, the management interface control register and subsystem registers, as well as the MAC interface and control logic to manage the reset, clock control, and pin configuration.
The ADIN1100 supports cable reach of up to 1700 meters with autonegotiation enabled and has ultra low power consumption of 39 mW.
The PHY core supports the 1.0 V p-p operating mode and the 2.4 V p-p operating mode defined in the IEEE 802.3cg standard and can operate from a single power supply rail of 1.8 V or 3.3 V, with the lower voltage option supporting the 1.0 V p-p transmit voltage level.
The ADIN1100 has an integrated voltage supply monitoring circuit and power-on reset (POR) circuitry to improve system level robustness.
The MDIO interface is a 2-wire serial interface for communication between a host processor or MAC and the ADIN1100, thereby allowing access to control and status information in the PHY core management registers. This interface is compatible with both the IEEE 802.3 Standard Clause 22 and Clause 45 management frame structures.
- Process Control
- Factory Automation
- Building Automation
- Field instruments and switches
Markets and Technologies
Want to get started developing a 10BASE-T1L Solution?
Email our team of experts to get samples of the ADIN1100 or an evaluation board.
Product Lifecycle Recommended for New Designs
This product has been released to the market. The data sheet contains all final specifications and operating conditions. For new designs, ADI recommends utilization of these products.
Evaluation Kits (1)
The EVAL-ADIN1100EBZ is a flexible platform enabling quick evaluation of the ADIN1100 robust, low power 10BASE-T1L PHY. The EVAL-ADIN1100EBZ provides 10 Mbps single pair Ethernet (SPE) connections with devices across 1.7 km of cable.
The evaluation board offers two modes of operation for maximum flexibility. Connected to a PC via USB port, the full set of ADIN1100 register settings and features such as link quality monitoring and diagnostics can be accessed with the ADIN1100 GUI software.
Alternatively, the EVAL-ADIN1100EBZ board can operate in stand-alone mode where it is configured by setting hardware configuration links and switches. On-board LEDs provide status indication.
The ADIN1100 data (MII, RMII, and RGMII) and management (MDIO) interfaces are accessible on header connectors for easy connection to an external host controller.
A small prototyping area and test points are provided for experimentation with alternative cable connection topologies including isolation transformers and/or power coupling inductors.
The platform can perform as a 10BASE-T1L to 10BASE-T media converter. This feature enables connection to other devices (demonstration boards or custom prototypes) with a 10BASE-T1L Ether-net port and conversion of the data to standard Ethernet, which is accessible via the RJ45 connector.
Full details about the ADIN1100 are available in the ADIN1100 data sheet, which must be consulted when using the EVAL-ADIN1100EBZ.
Features & Benefits
- User friendly access to all ADIN1100 features
- (GUI) software on PC or standalone hardware configured operation
- Flexible power supplies and prototyping options
- On-board ARM Cortex-M ADuCM4050 microcontroller
- 10BASE-T1L to 10BASE-T media converter
Documentation & Resources
Designing Industrial Connectivity Solutions for The Smart Factory5/17/2022
Intelligent Motion Control Driving Higher Levels of Flexibility, Productivity and Sustainability in Smart Manufacturing10/28/2021
The Future of Industrial Ethernet Connectivity10/19/2020
Industry 4.0 - Industrial Ethernet and the Transition to Time Sensitive Networking5/21/2018
Elevate Surveillance with Cameras that See, Sense and Think9/15/20225 M
ADIN1100: A Robust, Industrial, Low Power 10Base-T1L Ethernet PHY5/19/2023
Connecting Edge Sensors, Accessing New Insights with 10BASE-T1L6/22/2022
Enabling Seamless Connectivity with 10BASE-T1L SPE Ethernet3/23/2022
ADI: Enabling Ethernet to the Field with 10BASE-T1L Connectivity8/16/2021
ADIN1100: Ultra Low Power, Robust, 10Base-T1L PHY7/14/2021
Single Pair Ethernet: 10BASE-T1L Market and Technology Insights7/9/2021
Tips and Tricks for Designing an Ethernet APL Solution7/1/2021
What Matters When It Comes to Choosing an Ethernet PHY2/11/2022
How to Get the Best Results Using LTspice for EMC Simulation—Part 111/1/2021
How a 10BASE-T1L MAC-PHY Simplifies Low Power Processor Ethernet Connectivity4/1/2021
New Single Pair Ethernet: High Quality Asset Health Insights and Power on Two Wires for Condition Monitoring Applications1/22/2021 Thought Leadership
Enabling Seamless Ethernet to the Field with 10BASE-T1L Connectivity6/1/2020
Ethernet-APL: Optimization of Process Automation with Actionable Insights5/1/2020 Thought Leadership
10BASE-T1L: Extending the Scope for Big Data Analytics to the Edge of the Factory Network5/1/2020 Thought Leadership
Robust Ethernet Physical Layer Solutions for Time Critical Communications in Harsh Industrial Environments2/1/2020
Accelerating the Transition to Industry 4.0 with Industrial Ethernet Connectivity2/1/2020 Thought Leadership
Software & Systems Requirements
Tools & Simulations
ADI has always placed the highest emphasis on delivering products that meet the maximum levels of quality and reliability. We achieve this by incorporating quality and reliability checks in every scope of product and process design, and in the manufacturing process as well. "Zero defects" for shipped products is always our goal.View our quality and reliability program and certifications for more information.
|Part Number||Material Declaration||Reliability Data||Pin/Package Drawing||CAD Symbols, Footprints & 3D Models|
|ADIN1100BCPZ||Material Declaration||Reliability Data||40-Lead LFCSP (6mm x 6mm x 0.75mm)|
|ADIN1100BCPZ-R7||Material Declaration||Reliability Data||40-Lead LFCSP (6mm x 6mm x 0.75mm)|
|ADIN1100CCPZ||Material Declaration||Reliability Data||40-Lead LFCSP (6mm x 6mm x 0.75mm)|
|ADIN1100CCPZ-R7||Material Declaration||Reliability Data||40-Lead LFCSP (6mm x 6mm x 0.75mm)|
|Wafer Fabrication Data|
Support & Discussions
RE: ADIN1100 RGMII 2.5 MHz RGMII Transmit Clock Input (TXC) confirmation input or output?
2 week(s) ago in Physical Layer Devices
RE: EVAL-ADIN1100EBZ IEEE-1588 PTP
16 week(s) ago in Physical Layer Devices
Sample & Buy
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Pricing displayed is based on 1-piece. The USA list pricing shown is for budgetary use only, shown in United States dollars (FOB USA per unit), and is subject to change. International prices may vary due to local duties, taxes, fees and exchange rates.