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DP83630

ACTIVE

IEEE 1588 precision-time protocol (PTP) Ethernet PHY transceiver with smaller form factor

Product details

Datarate (Mbps) 10/100 Interface type MII, RMII Number of ports Single Rating Catalog Features Cable diagnostics, FX support, IEEE 1588 PTP, JTAG1149.1 Supply voltage (V) 3.3 I/O supply voltage (typ) (V) 2.5, 3.3 Operating temperature range (°C) -40 to 85 Number of LEDs 3 ESD HBM (kV) 8
Datarate (Mbps) 10/100 Interface type MII, RMII Number of ports Single Rating Catalog Features Cable diagnostics, FX support, IEEE 1588 PTP, JTAG1149.1 Supply voltage (V) 3.3 I/O supply voltage (typ) (V) 2.5, 3.3 Operating temperature range (°C) -40 to 85 Number of LEDs 3 ESD HBM (kV) 8
WQFN (RHS) 48 49 mm² 7 x 7
  • IEEE 1588 V1 and V2 Supported
  • UDP/IPv4, UDP/IPv6, and Layer2 Ethernet Packets Supported
  • IEEE 1588 Clock Synchronization
  • Selectable Frequency Synchronized Low Jitter Clock Output
  • Timestamp Resolution of 8 ns
  • Allows Sub 10 ns Synchronization to Master Reference
  • 12 IEEE 1588 GPIOs for Trigger or Capture
  • Deterministic, Low Transmit and Receive Latency
  • Dynamic Link Quality Monitoring
  • TDR Based Cable Diagnostic and Cable Length Detection
  • 10/100 Mb/s Packet BIST (Built in Self Test)
  • Error-Free Operation up to 150 Meters CAT5 Cable
  • ESD Protection - 8 kV Human Body Model
  • 2.5 V and 3.3 V I/Os and MAC Interface
  • Auto-MDIX for 10/100 Mbps
  • Auto-Crossover in Forced Modes of Operation
  • RMII Rev. 1.2 and MII MAC Interface
  • RMII Master Mode
  • 25 MHz MDC and MDIO Serial Management Interface
  • IEEE 802.3u 100BASE-FX Fiber Interface
  • IEEE 1149.1 JTAG
  • Programmable LED Support for Link, 10 /100 Mb/s Mode, Duplex, Activity, and Collision Detect
  • Optional 100BASE-TX Fast Link-Loss Detection
  • Industrial Temperature Range
  • 48 Pin WQFN Package (7mm) x (7mm)

PHYTER is a trademark of Texas Instruments. All trademarks are the property of their respective owners.

  • IEEE 1588 V1 and V2 Supported
  • UDP/IPv4, UDP/IPv6, and Layer2 Ethernet Packets Supported
  • IEEE 1588 Clock Synchronization
  • Selectable Frequency Synchronized Low Jitter Clock Output
  • Timestamp Resolution of 8 ns
  • Allows Sub 10 ns Synchronization to Master Reference
  • 12 IEEE 1588 GPIOs for Trigger or Capture
  • Deterministic, Low Transmit and Receive Latency
  • Dynamic Link Quality Monitoring
  • TDR Based Cable Diagnostic and Cable Length Detection
  • 10/100 Mb/s Packet BIST (Built in Self Test)
  • Error-Free Operation up to 150 Meters CAT5 Cable
  • ESD Protection - 8 kV Human Body Model
  • 2.5 V and 3.3 V I/Os and MAC Interface
  • Auto-MDIX for 10/100 Mbps
  • Auto-Crossover in Forced Modes of Operation
  • RMII Rev. 1.2 and MII MAC Interface
  • RMII Master Mode
  • 25 MHz MDC and MDIO Serial Management Interface
  • IEEE 802.3u 100BASE-FX Fiber Interface
  • IEEE 1149.1 JTAG
  • Programmable LED Support for Link, 10 /100 Mb/s Mode, Duplex, Activity, and Collision Detect
  • Optional 100BASE-TX Fast Link-Loss Detection
  • Industrial Temperature Range
  • 48 Pin WQFN Package (7mm) x (7mm)

PHYTER is a trademark of Texas Instruments. All trademarks are the property of their respective owners.

The DP83630 Precision PHYTER device delivers the highest level of precision clock synchronization for real time industrial connectivity based on the IEEE 1588 standard. The DP83630 has deterministic, low latency and allows choice of microcontroller with no hardware customization required. The integrated 1588 functionality allows system designers the flexibility and precision of a close to the wire timestamp. The three key 1588 features supported by the device are:

— Packet time stamps for clock synchronization

— Integrated IEEE 1588 synchronized low jitter clock generation

— Synchronized event triggering and time stamping through GPIO

DP83630 offers innovative diagnostic features unique to Texas Instruments, including dynamic monitoring of link quality during standard operation for fault prediction. These advanced features allow the system designer to implement a fault prediction mechanism to detect and warn of deteriorating and changing link conditions. This single port fast Ethernet transceiver can support both copper and fiber media.

The DP83630 Precision PHYTER device delivers the highest level of precision clock synchronization for real time industrial connectivity based on the IEEE 1588 standard. The DP83630 has deterministic, low latency and allows choice of microcontroller with no hardware customization required. The integrated 1588 functionality allows system designers the flexibility and precision of a close to the wire timestamp. The three key 1588 features supported by the device are:

— Packet time stamps for clock synchronization

— Integrated IEEE 1588 synchronized low jitter clock generation

— Synchronized event triggering and time stamping through GPIO

DP83630 offers innovative diagnostic features unique to Texas Instruments, including dynamic monitoring of link quality during standard operation for fault prediction. These advanced features allow the system designer to implement a fault prediction mechanism to detect and warn of deteriorating and changing link conditions. This single port fast Ethernet transceiver can support both copper and fiber media.

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Pin-for-pin with same functionality to the compared device
DP83620 ACTIVE Industrial temperature, 10/100-Mbps Ethernet PHY transceiver with JTAG & fiber support DP83620 is a simplified version of the DP83630, without IEEE1588

Technical documentation

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Type Title Date
* Data sheet DP83630 Precision PHYTER - IEEE® 1588 Precision Time Protocol Transceiver datasheet (Rev. B) 15 Apr 2013
Application note How to Pass IEEE Ethernet Compliance Tests PDF | HTML 20 Sep 2021
Technical article SimpliPHY your Ethernet design, part 1: Ethernet PHY basics and selection process PDF | HTML 11 Mar 2020
Technical article Overcoming Ethernet connectivity challenges on the power grid PDF | HTML 27 Jun 2019
Application note Selection and specification of crystals for Texas Instruments ethernet physical 06 Feb 2019
Technical article How to implement IEEE 1588 time stamping in an Ethernet transceiver PDF | HTML 28 Sep 2016
Application note AN-1469 PHYTER® Design & Layout Guide (Rev. D) 26 Apr 2013
Application note AN-1540 Power Measurement of Ethernet Physical Layer Products (Rev. B) 26 Apr 2013
Application note AN-1548 PHYTER 100 Base-TX Reference Clock Jitter Tolerance (Rev. B) 26 Apr 2013
Application note AN-1729 DP83640 IEEE 1588 PTP Synchronized Clock Output (Rev. D) 26 Apr 2013
Application note AN-1794 Using RMII Master Mode (Rev. A) 26 Apr 2013
Application note AN-2006 Synchronizing a DP83640 PTP Master to a GPS Receiver (Rev. A) 26 Apr 2013
Application note DP83640 Synchronous Ethernet Mode: Achieving Sub-ns Accuracy in PTP Applications (Rev. A) 26 Apr 2013
Application note IEEE 1588 Boundary Clock and Transparent Clock Implementation Using the DP83640 (Rev. A) 26 Apr 2013
Application note IEEE 1588 Precision Time Protocol Time Synchronization Performance (Rev. A) 26 Apr 2013
Application note IEEE 1588 Synchronization Over Standard Networks Using the DP83640 (Rev. A) 26 Apr 2013
Application note Improving Electro-Magnetic Noise Immunity in Serial Communications Systems (Rev. A) 26 Apr 2013
Application note Reducing Radiated Emissions in Ethernet 10/100 LAN Applications (Rev. A) 26 Apr 2013
More literature EMC Test Report 04 Jan 2013
EVM User's guide DP83630 Ethernet Physical Layer Transceiver Demo Board User Guide 25 Jan 2012

Design & development

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

Evaluation board

DP83630-EVK — DP83630 Evaluation Demo Board

DP83640 Basic product evaluation and customer demo board.
User guide: PDF
Not available on TI.com
Development kit

LAUNCHXL2-570LC43 — Hercules TMS570LC43x LaunchPad Development Kit

The Hercules™ TMS570LC43x LaunchPad™ Development Kit is a low-cost evaluation platform based on the highest performance Hercules MCU TMS570LC4357 – lockstep cached 300MHz ARM® Cortex®-R5F based TMS570 series automotive-grade MCU designed to aid in the development of ISO 26262 and IEC 61508 (...)

User guide: PDF
Not available on TI.com
Driver or library

ETHERNET-SW — Ethernet PHY Linux drivers & tools

The Linux drivers for Texas Instruments' Ethernet physical layer (PHY) transceivers support communication through the serial management interface (MDC/MDIO) to configure and read PHY registers.

The USB-2-MDIO software lets you directly access the registers during debug and (...)

Driver or library

SNLC036 Software Design Guide and C Software Reference Library

Supported products & hardware

Supported products & hardware

Products
Ethernet PHYs
DP83630 IEEE 1588 precision-time protocol (PTP) Ethernet PHY transceiver with smaller form factor DP83640 IEEE 1588 precision-time protocol (PTP) Ethernet PHY transceiver
Support software

SNLC035 Logic Vision Software Boundary Scan Cell

Supported products & hardware

Supported products & hardware

Products
Ethernet PHYs
DP83620 Industrial temperature, 10/100-Mbps Ethernet PHY transceiver with JTAG & fiber support DP83630 IEEE 1588 precision-time protocol (PTP) Ethernet PHY transceiver with smaller form factor DP83640 IEEE 1588 precision-time protocol (PTP) Ethernet PHY transceiver DP83848I Industrial temperature, 10/100-Mbps Ethernet PHY transceiver with SNI & JTAG support DP83848YB Extended temperature, 10/100-Mbps Ethernet PHY transceiver with JTAG support DP83865 Gigabit 10/100/1000 PHYTER V Ethernet physical layer transceiver
Support software

USB-2-MDIO USB-2-MDIO Tool v1.0

The USB-2-MDIO software tool lets Texas Instruments' Ethernet PHYs access the MDIO status and device control registers.  The USB-2-MDIO tool includes a LaunchPad™ Development kit for TI's MSP430™ MCUs that is interfaced with a lightweight GUI.  The (...)

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Supported products & hardware

Supported products & hardware

Products
Ethernet PHYs
DP83561-SP Space grade (QMLV-RHA) 10/100/1000 Ethernet PHY with SEFI monitoring suite DP83620 Industrial temperature, 10/100-Mbps Ethernet PHY transceiver with JTAG & fiber support DP83630 IEEE 1588 precision-time protocol (PTP) Ethernet PHY transceiver with smaller form factor DP83640 IEEE 1588 precision-time protocol (PTP) Ethernet PHY transceiver DP83815 10/100 Mbps integrated PCI Ethernet media access controller & physical layer (MacPhyter) DP83816 10/100 Mbps integrated PCI Ethernet media access controller & physical layer (MacPhyter-II) DP83816EX 10/100 Mbps integrated PCI Ethernet media access controller & physical layer (MacPhyter-II) extend DP83822H Extended temperature, robust low-power 10/100-Mbps Ethernet PHY transceiver with 16-kV ESD DP83822HF Extended temperature, robust 10/100-Mbps Ethernet PHY transceiver with fiber support & 16-kV ESD DP83822I Low-power, robust 10/100-Mbps Ethernet PHY transceiver with 16-kV ESD DP83822IF Low-power, robust 10/100-Mbps Ethernet PHY transceiver with fiber support & 16-kV ESD DP83825I Smallest form factor (3-mm by 3-mm), low-power 10/100-Mbps Ethernet PHY transceiver with 50-MHz c DP83826E Low latency 10/100-Mbps PHY with MII interface and enhanced mode DP83826I Low latency 10/100-Mbps PHY, MII interface and enhanced mode with an industrial temperature range DP83843 10/100-Mbps Ethernet PHY transceiver with fiber & AUI support DP83846A Single 10/100 DsPHYTER Ethernet physical layer transceiver DP83847 10/100-Mbps Ethernet PHY transceiver with 5-V tolerant I/Os DP83848-EP Enhanced Product PHYTER extreme temperature single port 10/100 Mb/s Ethernet physical layer DP83848-HT High Temperature PHYTER single port 10/100 Mb/s Ethernet physical layer DP83848C Commercial temperature, 10/100-Mbps Ethernet PHY transceiver with SNI interface & JTAG support DP83848H Extended temperature, 10/100-Mbps Ethernet PHY transceiver in a 40-pin QFN package DP83848I Industrial temperature, 10/100-Mbps Ethernet PHY transceiver with SNI & JTAG support DP83848J Commercial temperature, 10/100-Mbps Ethernet PHY transceiver in a 40-pin QFN package DP83848K Industrial temperature, 10/100-Mbps Ethernet PHY transceiver in a 40-pin QFN package DP83848M Commercial temperature, 10/100-Mbps Ethernet PHY transceiver with 25-MHz clock out DP83848Q-Q1 Automotive Grade 2, 10/100-Mbps Ethernet PHY transceiver DP83848T Industrial temperature, 10/100-Mbps Ethernet PHY transceiver with 25-MHz clock out DP83848VYB High-temperature, low-power 10/100-Mbps Ethernet PHY Transceiver with JTAG support DP83848YB Extended temperature, 10/100-Mbps Ethernet PHY transceiver with JTAG support DP83849C Commercial temperature, dual-port 10/100-Mbps Ethernet PHY transceiver DP83849I Industrial temperature, dual-port 10/100-Mbps Ethernet PHY transceiver with flexible port switchi DP83849ID Industrial temperature, dual-port 10/100-Mbps Ethernet PHY transceiver with fiber support DP83849IF Industrial temperature, dual-port 10/100-Mbps Ethernet PHY transceiver with fiber support & flexible DP83865 Gigabit 10/100/1000 PHYTER V Ethernet physical layer transceiver DP83867CR Low-power, robust gigabit Ethernet PHY transceiver in a small QFN package DP83867CS Low-power, robust gigabit Ethernet PHY transceiver with SGMII DP83867E Extended temperature, robust low-latency gigabit Ethernet PHY transceiver with SGMII DP83867IR Industrial temperature, robust gigabit Ethernet PHY transceiver DP83867IS Industrial temperature, robust gigabit Ethernet PHY transceiver with SGMII DP83869HM Extended temperature, high-immunity gigabit Ethernet PHY transceiver with copper & fiber interface DP83910A CMOS serial network interface (SNI) DP83TC811R-Q1 Low-power 100BASE-T1 automotive PHYTER™ Ethernet physical layer transceiver DP83TC811S-Q1 Automotive Grade 1 low-power 100BASE-T1 Ethernet PHY transceiver with xMII support & dia DP83TC812R-Q1 TC-10 compliant 100BASE-T1 automotive Ethernet PHY with RGMII DP83TC812S-Q1 TC-10 compliant 100BASE-T1 automotive Ethernet PHY with RGMII & SGMII DP83TC813R-Q1 Automotive Low-Power, Small Footprint 100BASE-T1 Ethernet PHY DP83TC813S-Q1 Automotive Low-Power, Small Footprint 100BASE-T1 Ethernet PHY (SGMII) DP83TC814R-Q1 Low-power 100BASE-T1 automotive Ethernet PHY without TC10 DP83TC814S-Q1 Low-power 100BASE-T1 automotive Ethernet PHY without TC10 (SGMII) DP83TD510E IEEE 802.3cg 10BASE-T1L Ethernet PHY DP83TG720R-Q1 1000BASE-T1 automotive Ethernet PHY with RGMII DP83TG720S-Q1 1000BASE-T1 automotive Ethernet PHY with RGMII & SGMII TLK100 Industrial Ethernet PHY TLK105L Industrial temperature, single port 10/100-Mbps Ethernet physical layer TLK106 Industrial temperature, single port 10/100-Mbps Ethernet physical layer transceiver TLK106L Industrial temperature, single port 10/100-Mbps Ethernet physical layer TLK110 Industrial 10/100 Ethernet PHY TLK111 Industrial temperature 10/100-Mbps Ethernet physical layer transceiver
Hardware development
Evaluation board
DP83867ERGZ-S-EVM DP83867ERGZ SGMII 1000M/100M/10M Ethernet PHY Evaluation Module
Development kit
MSP-EXP430F5529LP MSP430F5529 LaunchPad™ development kit for USB
Software
Driver or library
ETHERNET-SW Ethernet PHY Linux drivers & tools
Simulation model

DP83630 BSDL Model

SNLM177.ZIP (1 KB) - BSDL Model
Simulation model

DP83630 IBIS Model (Rev. A)

SNLM147A.ZIP (59 KB) - IBIS Model
Schematic

DP83630-EVK Schematic

SNLR006.PDF (1079 KB)
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

TIDA-00496 — 10/100 Mbps Industrial Ethernet Brick with IEEE 1588 Precision Time Protocol (PTP) Transceiver

TIDA-00496 is a compact brick for demonstrating capabilities of precision PHYTERTM. As more systems in the power grid are using time information for real-time analysis, timing becomes critical. This reference design achieves time synchronization with nanosecond accuracy using IEEE 1588v2 Precision (...)
Design guide: PDF
Schematic: PDF
Reference designs

TIDM-HAHSCPTO — High Availability High Speed Counter (HSC) and Pulse Train Output (PTO) Reference Design

This reference design provides firmware and test platform for two different industrial input/output functions related to motion control: high-speed counter (HSC) and pulse-train output (PTO). The design is based on a microcontroller platform that is suitable for use in industrial applications (...)
Design guide: PDF
Schematic: PDF
Package Pins Download
WQFN (RHS) 48 View options

Ordering & quality

Information included:
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  • Device marking
  • Lead finish/Ball material
  • MSL rating/Peak reflow
  • MTBF/FIT estimates
  • Material content
  • Qualification summary
  • Ongoing reliability monitoring
Information included:
  • Fab location
  • Assembly location

Recommended products may have parameters, evaluation modules or reference designs related to this TI product.

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