Datasheet Texas Instruments CDCLVD110VFR

ManufacturerTexas Instruments
SeriesCDCLVD110
Part NumberCDCLVD110VFR
Datasheet Texas Instruments CDCLVD110VFR

1-to-10 LVDS clock buffer up to 900MHz with minimum skew for clock distribution 32-LQFP -40 to 85

Datasheets

Programmable Low-Voltage 1:10 LVDS Clock Driver datasheet
PDF, 513 Kb, Revision: C, File published: Jan 14, 2008
Extract from the document

Prices

Status

Lifecycle StatusNRND (Not recommended for new designs)
Manufacture's Sample AvailabilityNo

Packaging

Pin32
Package TypeVF
Industry STD TermLQFP
JEDEC CodeS-PQFP-G
Package QTY1000
CarrierLARGE T&R
Device MarkingCDCLVD110
Width (mm)7
Length (mm)7
Thickness (mm)1.4
Pitch (mm).8
Max Height (mm)1.6
Mechanical DataDownload

Eco Plan

RoHSCompliant

Application Notes

  • Benefits of Using TI's Non-PLL Clock Buffer: Best in Class Phase Noise/Phase
    PDF, 560 Kb, File published: Jul 18, 2003
    This application report presents various jitter and phase noise measurements of three differential clock drivers. A Texas Instruments device was compared to two independent competitor devices. This report proves that clock buffer selection does have an impact on the total system timing budget, particularly when the system has two different input signals connected. Buffers must be able to resist th
  • DC-Coupling Between Differential LVPECL, LVDS, HSTL, and CML
    PDF, 135 Kb, File published: Feb 19, 2003
  • AC Coupling Between Differential LVPECL, LVDS, HSTL and CML (Rev. C)
    PDF, 417 Kb, Revision: C, File published: Oct 17, 2007
    This report provides a quick reference of ac-coupling techniques for interfacing between different logic levels. The four differential signaling levels found in this reportare low-voltage positive-referenced emitter coupled logic (LVPECL), low-voltage differential signals (LVDS), high-speed transceiver logic (HSTL), and current-modelogic (CML). From these four differential signaling levels, 16

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Manufacturer's Classification

  • Semiconductors > Clock and Timing > Clock Buffers > Differential