Diodes Incorporated — Analog and discrete power solutions
W QFN5050 32

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PI6C4921504TQ

Automotive LVDS Buffer 4 output

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Description

The PI6C492150xTQ is an automotive high-performance LVDS fanout buffer device which supports up to 1.5GHz frequency. This device is ideal for systems that need to distribute low-jitter clock signals to multiple destinations.

Feature(s)

  • 2/4 LVDS Outputs with 2 Banks
  • Supports LVPECL, LVDS, HCSL, CML, CMOS or Crystal Input
  • LVCMOS Reference Output Up to 200MHz
  • Up to 1.5GHz Output Frequency for Differential Outputs
  • Ultra-low Additive Phase Jitter: <0.03ps (Differential 156.25MHz, 12KHz to 20MHz Integration Range)
  • Selectable Reference Inputs Support Either Single-Ended or Differential or Xtal
  • Low Skew Between Outputs within Banks (<40ps)
  • Low Delay from Input to Output (Tpd typical <1.5ns)
  • Separate Input Output Supply Voltage for Level Shifting
  • 5V / 3.3V Power Supply
  • AEC-Q100 Qualified, Automotive Grade 1 Support
  • Ambient Operating Temperature: -40°C to 125°C
  • Totally Lead-Free & Fully RoHS Compliant (Notes 1 & 2)
  • Halogen and Antimony Free. “Green” Device (Note 3)
  • The PI6C492150xTQ is suitable for automotive applications requiring specific change control; this part is AEC-Q100 qualified, PPAP capable, and manufactured in IATF 16949 certified facilities. https://www.diodes.com/quality/product-definitions/
  • Packaging (Pb-free & Green):
    • 32-pin WQFN (ZHW)

Application(s)

  • Networking Systems, including Switches and Routers
  • High-Frequency Backplane-based Computing and Telecom Platforms
  • ADAS
  • Automotive Infotainment

Product Specifications

Product Parameters

Compliance (Only Automotive(Q) supports PPAP) Automotive
Function Buffer
Number of Outputs 4
Output Type(s) LVDS
Maximum Output Frequency (MHz) 1500
Additive Jitter (ps) <0.03
Supply Voltage (V) 2.5, 3.3
Input Type(s) Crystal, LVCMOS, LVDS
Skew (ps) <40
Ambient or Junction Temperature (°C) -40 to 125

Related Content

Packages

Technical Documents

Recommended Soldering Techniques

TN1.pdf