PTN2111

Features: • 100 ps part-to-part skew• 35 ps output-to-output skew• Differential design• Meets LVDS specification for driver outputs and receiver inputs• Reference voltage available output VBB• Low voltage VCC range of +2.375 V to 2.625 V• High signalling r...

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SeekIC No. : 004466979 Detail

PTN2111: Features: • 100 ps part-to-part skew• 35 ps output-to-output skew• Differential design• Meets LVDS specification for driver outputs and receiver inputs• Reference volta...

floor Price/Ceiling Price

Part Number:
PTN2111
Supply Ability:
5000

Price Break

  • Qty
  • 1~5000
  • Unit Price
  • Negotiable
  • Processing time
  • 15 Days
Total Cost: $ 0.00

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Upload time: 2024/4/28

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Product Details

Description



Features:

• 100 ps part-to-part skew
• 35 ps output-to-output skew
• Differential design
• Meets LVDS specification for driver outputs and receiver inputs
• Reference voltage available output VBB
• Low voltage VCC range of +2.375 V to 2.625 V
• High signalling rate capability (above 622 MHz)
• Supports open, short, and terminated input fail-safe (HIGH output state)
• Programmable drivers power off control
• Available in LQFP32 package




Pinout

  Connection Diagram


Specifications

SYMBOL PARAMETER LIMITS UNIT
VCC Supply voltage 0.3 to 2.8 V
IOSD
Driver short circuit current continuous
ESD Electrostatic discharge (Human Body Model 1.5 k, 100 pF) >2 kV
Tj Junction temperature 150 °C



Description

The PTN2111 is a low skew programmable 1:10 LVDS clock distribution device. The selected input signal is fanned out to 10 identical differential outputs.

The PTN2111 features an 11-bit Shift Register with a serial-in and a Control Register. The purpose of the Control Register is to enable or power off each output clock channel and to select the clock input.

The PTN2111 is specifically designed, modeled and produced with low skew as the key goal. Optimal design and layout serve to minimize gate-to-gate skew within a device. The final result is a dependable guaranteed low skew device.

The PTN2111 can be used for high performance clock distribution in +2.5 V systems with LVDS levels. Designers can take advantage of the device's performance to distribute low skew clocks across the backplane or the board.




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