LMK04806BEVAL

具有雙串接 PLL 和整合式 2.5 GHz VCO 的時鐘抖動清除器

LMK04806BEVAL

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概覽

The LMK04800 family is the industry's highest performance clock conditioner with superior clock jitter cleaning, generation, and distribution with advanced features to meet next generation system requirements. The dual loop PLLatinum? architecture enables 111 fs rms jitter (12 kHz to 20 MHz) using a low noise VCXO module or sub-200 fs rms jitter (12 kHz to 20 MHz) using a low cost external crystal and varactor diode.

The dual loop architecture consists of two high-performance phase-locked loops (PLL), a low-noise crystal oscillator circuit, and a high-performance voltage controlled oscillator (VCO). The first PLL (PLL1) provides a low-noise jitter cleaner function while the second PLL (PLL2) performs the clock generation. PLL1 can be configured to either work with an external VCXO module or the integrated crystal oscillator with an external tunable crystal and varactor diode. When used with a very narrow loop bandwidth, PLL1 uses the superior close in phase noise (offsets below 50 kHz) of the VCXO module or the tunable crystal to clean the input clock. The output of PLL1 is used as the clean input reference to PLL2 where it locks the integrated VCO. The loop bandwidth of PLL2 can be optimized to clean the far-out phase noise (offsets above 50 kHz) where the integrated VCO outperforms the VCXO module or tunable crystal used in PLL1.

特點
  • Multi-mode: Dual PLL, single PLL, and clock distribution
  • Dual Loop PLLatinum PLL Architecture
    - PLL1
    > Holdover mode when input clocks are lost
    + Automatic or manual triggering/recovery
    - PLL2
    > Integrated Low-Noise VCO
  • 2 redundant input clocks with LOS
    - Automatic and manual switch-over modes
  • 50% duty cycle output divides, 1 to 1045 (even and odd)
  • LVPECL, LVDS, or LVCMOS programmable outputs
  • Precision digital delay, fixed or dynamically adjustable
  • 25 ps step analog delay control.
  • 14 differential outputs. Up to 26 single ended.
    - Up to 6 VCXO/Crystal buffered outputs
  • 0-delay mode

Contents:

  • Evaluation board
  • LPT programming cable (USB interface available separately)
  • Quick start sheet
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LMK04806BEVAL/NOPB — Clock Jitter Cleaner With Dual Cascaded PLLs and Integrated 2.5 GHz VCO

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LMK04806BEVAL/NOPB Clock Jitter Cleaner With Dual Cascaded PLLs and Integrated 2.5 GHz VCO

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TICSPRO-SW — TICS Pro GUI and Live Programming Tool for Clocking Devices

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CDCI6214EVM CDCI6214 超低功耗時鐘產生器評估模組 LMK04208EVM 具有雙路串接 PLL 和整合 2.9 GHz VCO 的雙輸入、6+1 輸出時鐘抖動清除器 LMK04616EVM LMK04616 評估模組 LMK04805BEVAL 具有雙串接 PLL 和整合式 2.2 GHz VCO 的時鐘抖動清除器 LMK04806BEVAL 具有雙串接 PLL 和整合式 2.5 GHz VCO 的時鐘抖動清除器 LMK04816BEVAL 具有雙路串接 PLL 和整合 2.5 GHz VC 的三路輸入、十三路輸出時鐘抖動清除器 LMK04826BEVM LMK04826BEVM 評估模組 LMK04832EVM LMK04832 JESD204B 時鐘抖動清除器/時脈產生器/分配評估模組 LMK61E0MEVM LMK61E0M 超低抖動可程式編輯振盪器評估模組 LMK61E2EVM LMK61E2EVM 超低抖動且可程式編輯之振盪器的評估模組 LMX2581EVM LMX2581 評估模組 LMX2592EVM LMX2592EVM 高效能寬頻頻率射頻合成器 PLLATINUM™ 積體電路 LMX2594EVM 具有相位同步功能且符合 JESD204B 標準的 LMX2594EVM 15 GHz 寬頻射頻合成器評估模組 XMICR-3P-LMX2492 LMX2492 X-MWblock 評估模組 XMICR-3P-LMX2572 LMX2572 X-MWblock 評估模組 XMICR-3P-LMX2592 LMX2592 X-MWblock 評估模組 XMICR-3P-LMX2594 LMX2594 X-MWblock 評估模組 XMICR-3P-LMX2595 LMX2595 X-MWblock 評估模組
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TICSPRO-SW TICS Pro GUI and Live Programming Tool for Clocking Devices

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版本: 1.7.10.1
發行日期: 2025/10/17

TICS Pro 1.7.10.1 installer binary for Windows operating system

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硬體開發
開發板
CDCI6214EVM CDCI6214 超低功耗時鐘產生器評估模組 LMK04208EVM 具有雙路串接 PLL 和整合 2.9 GHz VCO 的雙輸入、6+1 輸出時鐘抖動清除器 LMK04616EVM LMK04616 評估模組 LMK04805BEVAL 具有雙串接 PLL 和整合式 2.2 GHz VCO 的時鐘抖動清除器 LMK04806BEVAL 具有雙串接 PLL 和整合式 2.5 GHz VCO 的時鐘抖動清除器 LMK04816BEVAL 具有雙路串接 PLL 和整合 2.5 GHz VC 的三路輸入、十三路輸出時鐘抖動清除器 LMK04826BEVM LMK04826BEVM 評估模組 LMK04832EVM LMK04832 JESD204B 時鐘抖動清除器/時脈產生器/分配評估模組 LMK61E0MEVM LMK61E0M 超低抖動可程式編輯振盪器評估模組 LMK61E2EVM LMK61E2EVM 超低抖動且可程式編輯之振盪器的評估模組 LMX2581EVM LMX2581 評估模組 LMX2592EVM LMX2592EVM 高效能寬頻頻率射頻合成器 PLLATINUM™ 積體電路 LMX2594EVM 具有相位同步功能且符合 JESD204B 標準的 LMX2594EVM 15 GHz 寬頻射頻合成器評估模組 XMICR-3P-LMX2492 LMX2492 X-MWblock 評估模組 XMICR-3P-LMX2572 LMX2572 X-MWblock 評估模組 XMICR-3P-LMX2592 LMX2592 X-MWblock 評估模組 XMICR-3P-LMX2594 LMX2594 X-MWblock 評估模組 XMICR-3P-LMX2595 LMX2595 X-MWblock 評估模組

文件

TICS Pro 1.7.10.1 Software Manifest

TICS Pro 1.7.10.1 Release Notes

版本資訊

v1.7.10.1 contains a bugfix for ReadAllRegisters API introduced in v1.7.10.0, and replaces v1.7.10.0.

Devices

  • Added LMK5D33414

Improvements

  • See release notes for complete list of updates
  • APIs for GetAllRegisters, GetTableData, ImportRegisters, ExportRegisters, and CloseTICSPro added
  • ReadAllRegisters API returns values

Bugfixes

  • Reading all registers in Simulation/DemoMode no longer overwrites registers with zeros
  • ti_ticspro library TICSProOptions.FromFile method fixed

Known Issues

  • LMK5B and LMK5C family - In some cases, "Assign Selected VCO Settings to Device" and "Apply Output Clock Settings to Device" may need to be pressed twice for certain cascaded configurations to display correctly
  • LMK05318 - In some cases, it is necessary to press "Calculate Frequency Plan" twice for correct VCO2 frequency. This issue is resolved in LMK05318B GUI.
  • Burst mode page looping requires long delays to halt, and halting may crash the GUI. If possible, do not loop in burst mode.
  • User Controls page can sometimes become desynchronized from Raw Registers and other pages. Refer to Raw Registers or other pages for correct values. Saving/Loading and Import/Export of register data is unaffected, and register data will still be written to and read from connected devices correctly.

新功能

  • Added new APIs: GetAllRegisters, GetTableData, ImportRegisters, ExportRegisters, and CloseTICSPro
  • ReadAllRegisters API returns values
  • Reading all registers in Simulation/DemoMode no longer overwrites registers with zeros
  • ti_ticspro library TICSProOptions.FromFile method fixed
  • Added LMK5D33414
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重要文件 類型 標題 格式選項 下載最新的英文版本 日期
* EVM User's guide LMK0480x Evaluation Board Instructions (Rev. B) 2014/8/4
* EVM User's guide LMK048xx Evaluation Board User's Guide 2013/11/26
證書 LMK04806BEVAL/NOPB EU Declaration of Conformity (DoC) 2019/1/2

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