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DS320PR1601
  • DS320PR1601
  • DS320PR1601

DS320PR1601

ACTIVE

PCIe® 5.0, 32-Gbps, 16-lane linear redriver

Texas Instruments DS320PR1601 Product Info

1 April 2026 1

Parameters

Type

Redriver

Protocols

CXL, PCIe1, PCIe2, PCIe3, PCIe4, PCIe5, UPI

Applications

Rack server, microserver, tower server, high performance computing, hardware accelerator, network attached storage, storage area network (SAN) and host bus adapter (HBA) card, network interface card (NIC), desktop PC, motherboard

Number of channels

32

Speed (max) (Gbpp)

32

Supply voltage (V)

3.3

Rating

Catalog

Operating temperature range (°C)

-40 to 85

Package

NFBGA (ZDG)-354-203.721 mm² 22.89 x 8.9

Features

  • 16-lane linear redriver supporting PCIe 5.0, CXL 2.0, CCIX , and UPI 2.0
  • Supports data rates up to 32-Gbps
  • Intel retimer common footprint compatible
  • 64 integrated AC coupling capacitors on Tx pins inside package saving board space
  • CTLE boosts of 21 dB at 16 GHz
  • Ultra-low latency of 130 ps
  • Low additive random jitter of 50 fs for PRBS data
  • Single 3.3 V supply
  • Low active power of 164 mW/channel
  • I 2C/SMBus or EEPROM programming
  • Automatic receiver detection for PCIe use cases
  • Seamless support for PCIe link training
  • Internal voltage regulator provides immunity to supply noise
  • Support for x4, x8, x16 bus width
  • 8.90 mm × 22.80 mm BGA package
  • 16-lane linear redriver supporting PCIe 5.0, CXL 2.0, CCIX , and UPI 2.0
  • Supports data rates up to 32-Gbps
  • Intel retimer common footprint compatible
  • 64 integrated AC coupling capacitors on Tx pins inside package saving board space
  • CTLE boosts of 21 dB at 16 GHz
  • Ultra-low latency of 130 ps
  • Low additive random jitter of 50 fs for PRBS data
  • Single 3.3 V supply
  • Low active power of 164 mW/channel
  • I 2C/SMBus or EEPROM programming
  • Automatic receiver detection for PCIe use cases
  • Seamless support for PCIe link training
  • Internal voltage regulator provides immunity to supply noise
  • Support for x4, x8, x16 bus width
  • 8.90 mm × 22.80 mm BGA package

Description

The DS320PR1601 is a 32-channel (16-channel in each direction) or x16 (16-lane) low-power high-performance linear repeater or redriver designed to support PCIe 5.0, CXL 2.0, UPI 2.0 and other interfaces up to 32 Gbps.

The DS320PR1601 receivers deploy continuous time linear equalizers (CTLE) to provide a programmable high-frequency boost. The equalizer can open an input eye that is completely closed due to inter-symbol interference (ISI) induced by an interconnect medium, such as PCB traces. The CTLE receiver is followed by a linear output driver. The linear datapaths of DS320PR1601 preserves transmit preset signal characteristics. The linear redriver becomes part of the passive channel that as a whole get link trained for best transmit and receive equalization settings. This transparency in the link training protocol results in best electrical link and lowest possible latency. Low channel-channel cross-talk, low additive jitter and excellent return loss makes the device almost a passive element in the link, but with its equalization.

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The DS320PR1601 is a 32-channel (16-channel in each direction) or x16 (16-lane) low-power high-performance linear repeater or redriver designed to support PCIe 5.0, CXL 2.0, UPI 2.0 and other interfaces up to 32 Gbps.

The DS320PR1601 receivers deploy continuous time linear equalizers (CTLE) to provide a programmable high-frequency boost. The equalizer can open an input eye that is completely closed due to inter-symbol interference (ISI) induced by an interconnect medium, such as PCB traces. The CTLE receiver is followed by a linear output driver. The linear datapaths of DS320PR1601 preserves transmit preset signal characteristics. The linear redriver becomes part of the passive channel that as a whole get link trained for best transmit and receive equalization settings. This transparency in the link training protocol results in best electrical link and lowest possible latency. Low channel-channel cross-talk, low additive jitter and excellent return loss makes the device almost a passive element in the link, but with its equalization.

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