SLLSE75B May   2011  – July 2016 TLK10002

PRODUCTION DATA.  

  1. Features
  2. Applications
  3. Description
  4. Revision History
  5. Description (continued)
  6. Pin Configuration and Functions
  7. Specifications
    1. 7.1  Absolute Maximum Ratings
    2. 7.2  ESD Ratings
    3. 7.3  Recommended Operating Conditions
    4. 7.4  Thermal Information
    5. 7.5  10-Gbps Power Characteristics - 1.0 V
    6. 7.6  10-Gbps Power Characteristics - 1.5 V
    7. 7.7  10-Gbps Power Characteristics - 1.8 V
    8. 7.8  Transmitter and Receiver Characteristics
    9. 7.9  MDIO Timing Requirements
    10. 7.10 JTAG Timing Requirements
    11. 7.11 Typical Characteristics
  8. Detailed Description
    1. 8.1 Overview
    2. 8.2 Functional Block Diagram
    3. 8.3 Feature Description
      1. 8.3.1  High-Speed Side Receiver Jitter Tolerance
      2. 8.3.2  Lane Alignment Scheme
      3. 8.3.3  Lane Alignment Components
      4. 8.3.4  Lane Alignment Operation
      5. 8.3.5  Channel Synchronization
      6. 8.3.6  Line Rate, SERDES PLL Settings, and Reference Clock Selection
      7. 8.3.7  Clocking Architecture
      8. 8.3.8  Loopback Modes
      9. 8.3.9  Deep Remote Loopback
      10. 8.3.10 Shallow Remote Loopback and Serial Retime
      11. 8.3.11 Deep Local Loopback
      12. 8.3.12 Shallow Local Loopback
      13. 8.3.13 Test Pattern Generation and Verification
      14. 8.3.14 Latency Measurement Function
      15. 8.3.15 Power-Down Mode
      16. 8.3.16 High Speed CML Output
      17. 8.3.17 High Speed Receiver
      18. 8.3.18 Loss of Signal Indication (LOS)
      19. 8.3.19 MDIO Management Interface
      20. 8.3.20 MDIO Protocol Timing
      21. 8.3.21 Clause 22 Indirect Addressing
    4. 8.4 Device Functional Modes
      1. 8.4.1 Transmit (Low Speed to High Speed) Data Path
      2. 8.4.2 Receive (High Speed to Low Speed) Data Path
      3. 8.4.3 1:1 Retime Mode
    5. 8.5 Programming
      1. 8.5.1 Power Sequencing Guidelines
    6. 8.6 Register Maps
  9. Application and Implementation
    1. 9.1 Application Information
    2. 9.2 Typical Application
      1. 9.2.1 Design Requirements
      2. 9.2.2 Detailed Design Procedure
      3. 9.2.3 Application Curve
    3. 9.3 Initialization Setup
      1. 9.3.1 4:1 Mode (9.8304 Gbps on HS Side, 2.4576 Gbps Per Lane on LS Side)
      2. 9.3.2 2:1 Mode (9.8304 Gbps on HS Side, 4.9152 Gbps Per Lane on LS Side, Only Lanes 0 and 1 on LS Side Active)
      3. 9.3.3 1:1 Mode (4.9152 Gbps on HS Side, 4.9152Gbps on LS side, Only Lane 0 on LS Side Active)
  10. 10Power Supply Recommendations
  11. 11Layout
    1. 11.1 Layout Guidelines
      1. 11.1.1 AC Coupling
      2. 11.1.2 TLK10002 Clocks: REFCLK, CLKOUT - General Information
      3. 11.1.3 External Clock Connections
      4. 11.1.4 TLK10002 Control Pins and Interfaces
        1. 11.1.4.1 MDIO Interface
        2. 11.1.4.2 JTAG Interface
        3. 11.1.4.3 Unused Pins
    2. 11.2 Layout Example
  12. 12Device and Documentation Support
    1. 12.1 Receiving Notification of Documentation Updates
    2. 12.2 Community Resources
    3. 12.3 Trademarks
    4. 12.4 Electrostatic Discharge Caution
    5. 12.5 Glossary
  13. 13Mechanical, Packaging, and Orderable Information

Description (continued)

The TLK10002 performs 1:1, 2:1 and 4:1 serialization of the 8B/10B encoded data streams presented on its low-speed (LS) side data inputs. The serialized 8B/10B encoded data is presented on the high-speed (HS) side outputs. Likewise, the TLK10002 performs 1:1, 1:2 and 1:4 deserialization of 8B/10B encoded data streams presented on its high-speed side data inputs. The deserialized 8B/10B encoded data is presented on the low-speed side outputs. Depending on the serialization or deserialization ratio, the low-speed side data rate can range from 0.5 Gbps to 5 Gbps and the high-speed side data rate can range from 1 Gbps to 10 Gbps. Both low-speed and high-speed side data inputs and outputs are of differential current mode logic (CML) type with integrated termination resistors. In the 1:1 mode, the input can be raw (non-8B/10B encoded) data, allowing for transmission of PRBS data through the device.

The TLK10002 performs data serialization or deserialization and clock extraction as a physical layer interface device. Flexible clocking schemes are provided to support various operations. They include the support for clocking with an externally-jitter-cleaned clock recovered from the high-speed side.

The TLK10002 provides two low-speed side and two high-speed side loopback modes for self-test and system diagnostic purposes.

The TLK10002 has built-in pattern generation and verification to help in system tests. The low speed side supports generation and verification of PRBS 27-1, 223-1, and 231-1 patterns. In addition to those PRBS patterns, the high-speed side supports High, Low, Mixed, and CRPAT long and short pattern generation and verification.

The TLK10002 has an integrated loss-of-signal (LOS) detection function on both high-speed and low-speed sides. LOS is asserted in conditions where the input differential voltage swing is less than the LOS assert threshold. The input differential voltage swing must exceed the de-assert threshold for the LOS condition to be cleared.

Lane alignment for each channel is achieved through a proprietary lane alignment scheme implemented on the low-speed side interface. The interfaced upstream link partner device needs to implement the lane alignment scheme for the correct link operation. Normal link operation resumes only after lane alignment is achieved.

The two TLK10002 channels are fully independent. They can be operated with different reference clocks, at different data rates, and with different serialization or deserialization ratios.

The low-speed side of the TLK10002 is ideal for interfacing with an FPGA or ASIC located on the same local physical system. The high-speed side is ideal for interfacing with remote systems through an optical fiber, an electrical cable, or a backplane interface. The TLK10002 supports operation with SFP and SFP+ optical modules.