0
TUSB1002A
  • TUSB1002A
  • TUSB1002A

TUSB1002A

ACTIVE

USB3.2 10 Gbps Dual-channel Linear Redriver

Texas Instruments TUSB1002A Product Info

1 April 2026 0

Parameters

Type

Redriver

Function

USB 3.0

USB speed (Mbps)

10000

Number of channels

2

Supply voltage (max) (V)

3.6

Supply voltage (min) (V)

3

Input/output voltage (min) (V)

-0.5

Input/output voltage (max) (V)

4

Configuration

Dual-channel, Dual-lane

Features

High Performance Low Power USB 3.1 Gen 2 10G Redriver

Rating

Catalog

Operating temperature range (°C)

-40 to 85

Supply current (max) (µA)

100000

ESD HBM (typ) (kV)

5

Bandwidth (MHz)

5000

Package

VQFN (RGE)-24-16 mm² 4 x 4

Features

  • Supports USB3.2 x1 SuperSpeed (5Gbps) and SuperSpeedPlus (10Gbps)
  • Supports PCI express Gen3, SATA express, and SATA Gen3
  • Ultra low-power architecture:
    • Disconnect U2, U3: < 1.9mW
    • Shutdown: < 700µW
  • Adjustable voltage output swing linear range up to 1200mVpp
  • No host or device side requirement
  • 16 settings for up to 16dB at 10Gbps of linear equalization
  • Adjustable DC equalization gain
  • Hot-plug capable
  • Pin-to-pin compatible with LVPE502A and LVPE512 USB 3.0 redriver
  • Pin-to-pin compatible with TUSB1002 redriver
  • Temperature range: 0°C to 70°C (commercial) and –40°C to 85°C (industrial)
  • ±5kV HBM ESD
  • Available in single 3.3V supply.
  • Available in 4mm × 4mm VQFN
  • Supports USB3.2 x1 SuperSpeed (5Gbps) and SuperSpeedPlus (10Gbps)
  • Supports PCI express Gen3, SATA express, and SATA Gen3
  • Ultra low-power architecture:
    • Disconnect U2, U3: < 1.9mW
    • Shutdown: < 700µW
  • Adjustable voltage output swing linear range up to 1200mVpp
  • No host or device side requirement
  • 16 settings for up to 16dB at 10Gbps of linear equalization
  • Adjustable DC equalization gain
  • Hot-plug capable
  • Pin-to-pin compatible with LVPE502A and LVPE512 USB 3.0 redriver
  • Pin-to-pin compatible with TUSB1002 redriver
  • Temperature range: 0°C to 70°C (commercial) and –40°C to 85°C (industrial)
  • ±5kV HBM ESD
  • Available in single 3.3V supply.
  • Available in 4mm × 4mm VQFN

Description

The TUSB1002A is the industry’s first dual-channel USB 3.2 x1 SuperSpeedPlus (SSP) redriver and signal conditioner. The device offers low power consumption on a 3.3V supply with its ultra-low-power architecture. The device supports the USB3.2 low power modes which further reduces idle power consumption.

The TUSB1002A implements a linear equalizer, supporting up to 16dB of loss due to inter-symbol interference (ISI). When USB signals travel across a PCB or cable, signal integrity degrades due to loss and inter-symbol interference. The linear equalizer compensates for the channel loss, and thereby, extends the channel length and enables systems to pass USB compliance. The dual lane implementation and small package size provides flexibility in the placement of the TUSB1002A in the USB3.2 path.

The TUSB1002A is available in either a 24-pin 4mm × 4mm VQFN. It is also available in a commercial grade (TUSB1002A) or industrial grade (TUSB1002AI).

The TUSB1002A is the industry’s first dual-channel USB 3.2 x1 SuperSpeedPlus (SSP) redriver and signal conditioner. The device offers low power consumption on a 3.3V supply with its ultra-low-power architecture. The device supports the USB3.2 low power modes which further reduces idle power consumption.

The TUSB1002A implements a linear equalizer, supporting up to 16dB of loss due to inter-symbol interference (ISI). When USB signals travel across a PCB or cable, signal integrity degrades due to loss and inter-symbol interference. The linear equalizer compensates for the channel loss, and thereby, extends the channel length and enables systems to pass USB compliance. The dual lane implementation and small package size provides flexibility in the placement of the TUSB1002A in the USB3.2 path.

The TUSB1002A is available in either a 24-pin 4mm × 4mm VQFN. It is also available in a commercial grade (TUSB1002A) or industrial grade (TUSB1002AI).

Subscribe to Welllinkchips !
Your Name
* Email
Submit a request