PI3EQX12904EZHEX

PI3EQX12904EZHEX

Manufacturer No:

PI3EQX12904EZHEX

Manufacturer:

Diodes Incorporated

Description:

SATA EQX V-QFN3590-42 T&R 3.5K

Datasheet:

Datasheet

Delivery:

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PI3EQX12904EZHEX Specifications

  • Type
    Parameter
  • Supplier Device Package
    42-TQFN (9x3.5)
  • Package / Case
    42-VFQFN Exposed Pad
  • Mounting Type
    Surface Mount
  • Operating Temperature
    -40°C ~ 85°C
  • Current - Supply
    -
  • Voltage - Supply
    3.3V
  • Signal Conditioning
    Input Equalization
  • Delay Time
    -
  • Number of Channels
    4
  • Data Rate (Max)
    8Gbps
  • Output
    CML
  • Input
    CML
  • Applications
    PCIe, SATA
  • Type
    Buffer, ReDriver
  • Packaging
    Cut Tape (CT)
  • Packaging
    Tape & Reel (TR)
  • Product Status
    Active
  • Series
    -
The PI3EQX12904EZHEX is a high-speed, low-power, 4-lane, 4-port PCI Express (PCIe) 3.0 redriver integrated circuit chip. It is designed to enhance signal integrity and extend the reach of PCIe signals in various applications. Some of the advantages and application scenarios of this chip are:1. Signal Integrity Enhancement: The PI3EQX12904EZHEX chip provides signal conditioning and equalization capabilities, which help to compensate for signal degradation and improve signal integrity. It can effectively mitigate signal loss and distortion caused by transmission line effects, enabling reliable and error-free data transmission.2. Extended Signal Reach: This chip supports long-reach PCIe connections by compensating for signal attenuation and enabling longer cable lengths. It allows PCIe signals to be transmitted over longer distances without significant loss of signal quality, making it suitable for applications that require extended signal reach.3. High-Speed Data Transmission: With support for PCIe 3.0, the PI3EQX12904EZHEX chip enables high-speed data transmission rates of up to 8 Gbps per lane. It is ideal for applications that demand high bandwidth and fast data transfer, such as high-performance computing, data centers, and storage systems.4. Multiple Port and Lane Support: The chip features 4 ports and 4 lanes, allowing it to handle multiple PCIe connections simultaneously. It can be used to expand the number of PCIe slots in a system or to connect multiple PCIe devices, providing flexibility and scalability in various applications.5. Low Power Consumption: The PI3EQX12904EZHEX chip is designed to operate with low power consumption, making it energy-efficient and suitable for power-sensitive applications. It helps to minimize power consumption while maintaining signal integrity, contributing to overall system efficiency.Application scenarios for the PI3EQX12904EZHEX chip include:1. PCIe Extender Cards: The chip can be used in PCIe extender cards to extend the reach of PCIe signals between a motherboard and peripheral devices. It allows for flexible placement of PCIe devices, enabling better cable management and system organization.2. High-Performance Computing: In high-performance computing systems, the chip can be used to enhance signal integrity and extend the reach of PCIe signals between servers, storage devices, and other components. It ensures reliable and high-speed data transmission in demanding computing environments.3. Data Centers: The chip can be employed in data centers to improve signal integrity and extend PCIe connections between servers, switches, and storage systems. It helps to maintain high-speed data transfer rates and reduce signal degradation in large-scale data center deployments.4. Storage Systems: In storage systems, the chip can be utilized to compensate for signal loss and extend PCIe connections between storage devices, RAID controllers, and servers. It ensures reliable and high-bandwidth data transfer in storage-intensive applications.Overall, the PI3EQX12904EZHEX chip offers advantages such as signal integrity enhancement, extended signal reach, high-speed data transmission, multiple port and lane support, and low power consumption. Its application scenarios span across PCIe extender cards, high-performance computing, data centers, and storage systems.