LMK00301EVAL

LMK00301 Evaluation Board

LMK00301EVAL

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Overview

The LMK00301 Evaluation Board allows functional and performance verification of the LMK00301 high-performance 1:10 differential fanout buffer device.

Features

Features:

  • Low-noise clock fan-out via two banks of five differential outputs and one LVCMOS output
  • Selectable differential output type (LVPECL, LVDS, HCSL, or Hi-Z), selectable per bank via control pins
  • 3:1 input multiplexer with two universal input buffers and one crystal oscillator interface, selectable via control pins
  • Includes DIP switches to configure control pins
  • Single 3.3 V or dual 3.3 V/2.5 V operation using onboard regulator options or direct supply inputs
  • Flexible input/output interface with controlled-impedance traces and edge SMA connectors

Contents:

  • LMK00301EVAL
  • LMK00301 User Guide
Clock buffers
LMK00301 3-GHz, 10-output differential fanout buffer / level translator
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Evaluation board

LMK00301EVAL/NOPB — LMK00301 Evaluation Board

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Latest version
Version: 01.00.00.0E
Release date: 20 Dec 2015
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Products
Clock generators
LMK02000 1 to 800-MHz, precision clock distributor with integrated PLL and 3 LVDS / 5 LVPECL outputs LMK02002 1 to 800-MHz, precision clock distributor with integrated PLL and 4 LVPECL outputs LMK03000 1185 to 1296-MHz, 800fs RMS jitter, precision clock conditioner with integrated VCO LMK03001 1470 to 1570-MHz, 800-fs RMS jitter, precision clock conditioner with integrated VCO LMK03002 1566 to 1724-MHz, 800-fs RMS jitter, precision clock conditioner with integrated VCO LMK03033 1843 to 2160-MHz, 800-fs RMS jitter, precision clock conditioner with integrated VCO LMK03200 Precision 0-delay clock conditioner with integrated VCO LMK03806 Ultra-low jitter clock generator with 14 outputs
Clock buffers
LMK01000 1.6-GHz high performance clock buffer, divider, and distributor with 3 LVDS & 5 LVPECL outputs LMK01010 1.6-GHz high performance clock buffer, divider, and distributor with 8 LVDS outputs LMK01020 1.6-GHz high performance clock buffer, divider, and distributor with 8 LVPECL outputs LMK01801 Dual clock distribution
Clock jitter cleaners
LMK04000 Precision clock conditioners low-noise clock jitter cleaner with cascaded PLLs LMK04001 Low-noise jitter cleaner with 1430 to 1570-MHz VCO:3 outputs for 2VPEC/LVPEC+4 outputs for LVCOMS LMK04002 Low-noise jitter cleaner with 1600 to 1750-MHz VCO:3 outputs for 2VPEC/LVPEC+4 outputs for LVCOMS LMK04010 Low-noise jitter cleaner with 1185 to 1296-MHz VCO:5 outputs for 2VPEC/LVPEC LMK04011 Low-noise jitter cleaner with 1430 to 1570-MHz VCO:5 outputs for 2VPEC/LVPEC LMK04031 Low-noise jitter cleaner with 1430 to 1570-MHz VCO:2 outputs for 2VPEC/LVPEC+LVDS+LVCOMS LMK04033 Low-noise jitter cleaner with 1840 to 2160-MHz VCO:2 outputs for 2VPEC/LVPEC+LVDS+LVCOMS LMK04100 Precision clock conditioners clock jitter cleaner with cascaded PLLs LMK04101 Jitter cleaner with integrated 1430 to 1570-MHz VCO:3 outputs for 2VPEC/LVPEC+4 outputs for LVCOMS LMK04102 Jitter cleaner with integrated 1600 to 1750-MHz VCO:3 outputs for 2VPEC/LVPEC+4 outputs for LVCOMS LMK04110 Jitter cleaner with integrated 1185 to 1296-MHz VCO:5 outputs for 2VPEC/LVPEC LMK04111 Jitter cleaner with integrated 1430 to 1570-MHz VCO:5 outputs for 2VPEC/LVPEC LMK04131 Jitter cleaner with integrated 1430 to 1570-MHz VCO:2 outputs for 2VPEC/LVPEC+LVDS+LVCOMS LMK04133 Jitter cleaner with integrated 1840 to 2160-MHz VCO:2 outputs for 2VPEC/LVPEC+LVDS+LVCOMS LMK04208 Ultra low-noise clock jitter cleaner with 6 programmable outputs LMK04228 Ultra low-noise clock jitter cleaner with dual loop PLLs LMK04806 Low-noise clock jitter cleaner with dual cascaded PLLs and integrated 2.5-GHz VCO LMK04808 Low-noise clock jitter cleaner with dual loop PLLs and integrated 2.9-GHz VCO LMK04816 Three input low-noise clock jitter cleaner with dual loop PLLs LMK04821 Ultra low jitter synthesizer and jitter cleaner with JESD204B support LMK04826 Ultra low-noise JESD204B compliant clock jitter cleaner with integrated 1840 to1970-MHz VCO0 LMK04906 Ultra low noise clock jitter cleaner/multiplier with 6 programmable outputs
RF PLLs & synthesizers
LMX2430 3.0-GHz/0.8-GHz PLLatinum dual high frequency synthesizer for RF personal communications LMX2433 3.6-GHz/1.7-GHz PLLatinum dual high frequency synthesizer for RF personal communications LMX2434 5.0-GHz/2.5-GHz PLLatinum low power dual frequency synthesizer for RF personal communications LMX2470 2.6-GHz delta-sigma fractional-N PLL with 800-MHz integer-N PLL LMX2485 500-MHz to 3-GHz delta-sigma low power dual PLL for RF personal communications LMX2485E 50-MHz to 3-GHz delta-sigma low power dual PLL for RF personal communications LMX2485Q-Q1 500MHz to 3GHz automotive delta-sigma low power dual PLL LMX2486 1-GHz to 4.5-GHz delta-sigma low power dual PLL for RF personal communications LMX2487 1 to 6-GHz delta-sigma low power dual PLLatinum frequency synthesizer with 3.0-GHz integer PLL LMX2487E 3-GHz to 7.5-GHz delta-sigma low power dual PLL for RF personal communications LMX2502 Frequency synthesizer system with integrated VCOs LMX2522 PLLatinum dual frequency synthesizer system with integrated VCOs LMX2531 High performance frequency synthesizer system with integrated VCO LMX2541 Ultra-low noise PLLatinum frequency synthesizer with integrated VCO LMX2581 3.76-GHz wideband frequency synthesizer with integrated VCO
Hardware development
Evaluation board
LMK00301EVAL LMK00301 Evaluation Board LMK01000EVAL 1.6 GHz Low Noise Clock Buffer, Divider, and Distributor LMK03033CEVAL Precision Clock Conditioner with Integrated VCO (1843 - 2160 MHz) LMK03806BEVAL LMK03806B Evaluation Board

Release Infomation

The design resource accessed as www.ti.com/lit/zip/snac014 or www.ti.com/lit/xx/snac014e/snac014e.zip has been migrated to a new user experience at www.ti.com/tool/download/SNAC014. Please update any bookmarks accordingly.
TI's Standard Terms and Conditions for Evaluation Items apply.

Technical documentation

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Type Title Date
* EVM User's guide LMK00301 Evaluation Board User Guide 27 Jan 2012
Certificate LMK00301EVAL/NOPB EU Declaration of Conformity (DoC) 02 Jan 2019

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