eUSB Repeater

Overview

CT20603 IP implements a dual-role capable eUSB2 repeater enabling an eUSB2 PHY in SOCs to support connections with USB2.0 compliant hosts and peripherals (hubs, HDDs and SDDs, …).
It works with an eUSB2 PHY in SOCs in order to support Host, Peripheral or Dual Role Repeater modes.
This enables communication between SOCs realized in highly scaled LV processes lacking 3.3V support with the plethora of standard USB2.0 devices.
Packets are forwarded between eD+/eD- and D+/D- preserving timings required by the eUSB2 and USB2.0 specifications.

The analog blocks of the CT20603 implement a half-duplex nonlinear re-driver, controlled by a two-level state machine that handles Port Reset and Repeater Configuration.

The digital portion:
• Monitors levels on a_edp and a_edm lines upon d_por or HW reset to perform Repeater Configuration;
• Handles Host and Peripheral Repeater Operations;
• Handles REP and NREP modes, monitors and generates the correct signaling during NREP modes;
• Implements the state machines controlling the repeater operation and generates signals powering up and down the sub-blocks in the different states.

Key Features

  • Universal Serial Bus 2.0 Specifications compliant
  • Embedded USB2 (eUSB2) Physical Layer Supplement 1.1 compliant
  • Dual role capable: Role detection and configuration
  • Integrated pull-down resistors on both eUSB2 and USB2.0 ends
  • Integrated pull-up resistors on USB2.0 port
  • Supports all USB2.0 speed modes through speed detection and negotiation: High Speed operation (480Mb/s); Full Speed operation (12Mb/s); Low Speed operation (1.5Mb/s)
  • Low power consumption

Block Diagram

eUSB Repeater Block Diagram

Applications

  • Intra-System USB communication
  • Handheld devices
  • Interface to mass-storage devices

Deliverables

  • Datasheet
  • GDS2 and LVS Netlist
  • Footprint (.LEF)
  • HDL models
  • RTL netlist
  • Test Specifications
  • Integration guidelines
  • Verification environment

Technical Specifications

Maturity
Silicon Proven
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Semiconductor IP