Microchip ZL30771LFG7
Microchip ZL30771LFG7

Microchip ZL30771LFG7

Manufacturer No:

ZL30771LFG7

Manufacturer:

Microchip

Package:

Description:

IEEE 1588 and Synchronous Ethernet Packet Single Channel Clock Network Synchronizer

Delivery:

DHL
DHL
DHL
DHL

Payment:

DHL
DHL
DHL
DHL
DHL
DHL
DHL

In Stock :Available

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ZL30771LFG7 information

Microchip ZL30771LFG7 technical specifications, attributes, parameters and parts with similar specifications to Microchip ZL30771LFG7.

  • Type
  • Parameter
  • 5G Product
  • Yes
  • DataCenter
  • No
  • FiveGRAN
  • Yes
  • IEEE1588
  • Yes
  • SmartGrids
  • Yes
  • SyncE
  • Yes
  • Wireline
  • Yes

Download datasheets and manufacturer documentation for Microchip ZL30771LFG7.

The ZL30771 offers one independent timing channel of a combined hardware and software platform including IEEE 1588-2008 Precision Time Protocol Stack and Synchronization Algorithms. Using Microsemi’s miTimePLL timing technology, this device offers new and improved features for 5G transport and wireless infrastructure equipment. This device is ideal for timing card applications in systems that need to support 10G/40G and 100G Phys. 

Click here for the list of supported IEEE 1588-2008 PTP Profiles and Equipment Clock Specifications

Log in to your MyMicrochip account (with SDE enabled) and request for data sheet and the following application notes.


AN3467 Crystals and Oscillators for Next Generation Timing Solutions

ZLAN-649 ZL3067x Power Supply Decoupling and Layout Practices

ZLAN-656 Redwood PSNR

ZLAN-664 Board Design Recommendations for Redwood

ZLAN-672 Generating JESD204B Clock SYSREF Using Redwood

ZLAN-683 Assembly and PCB Layout Guidelines for 80-lead LGA Package

ZLAN-724 Phase Measurement Compensation for Redwood

ZLAN-728 Indirect Read and Write Procedure



  • One independent DPLL channel
  • Precise phase/frequency measurement and tuning lower system latency to meet 4G LTE, 5G & Wireless Infrastructure
  • Ultra-fast lock to GPS/GNSS and 1PPS for faster power-up time for 4G LTE, 5G & Wireless Infrastructure
  • Precise chip-to-chip time interfaces use less backplane traces for 1PPS distribution for chassis systems
  • Split oscillator option lowers cost, lowers jitter, and provides redundancy
  • SyncE assist for high-accuracy IEEE 1588 provide lower cost end applications to assist IEEE1588 for time
  • Sophisticated packet clock recovery algorithms are field proven and most widely deployed by Carriers
  • Fully compliant to EEC (G.8262), SEC (G.813), GR-253 SMC and GR-1244 Stratum 3
  • Packet-timing compliance with ITU-T G.8261, G.8263, G.8273.2 (class A, B, C, D), G.8273.4
  • Enables 5G wireless applications with sub 100ns time/phase alignment requirements
  • Excellent jitter performance of 240fs RMS in the 12 kHz to 20 MHz band meets jitter requirements for 10G/40G and 100G PHYs
  • Two programmable ultra-low jitter synthesizers generate any frequency from 0.5 Hz to 1045 MHz
  • One programmable general purpose synthesizer generates any clock from 0.5 Hz to 180 MHz
  • 8 differential or 16 single ended ultra-low jitter outputs plus two general purpose CMOS outputs
  • Programmable output advancement/delay to accommodate trace delays or compensate for system routing paths
  • Up to three programmable digital PLLs/NCOs with loop bandwidth from 0.1 mHz to 470 Hz synchronize to any clock rate from 0.5 Hz to 900 MHz
  • Accepts up to 10 differential or 10 single ended input references
  • Full reference monitoring of electrical failures
  • Automatic hitless reference switching and digital holdover on reference fail with initial holdover accuracy better than 0.1 ppb
  • Any input reference can be fed with clock, sync (frame pulse), clock /sync pair or clock modulated with sync pulse (embedded PPS ePPS and embedded PP2S ePP2S)
  • Easy Configuration and dynamic programming via SPI/I2C interface
  • Factory programming available
  • Operates from a single crystal resonator or clock oscillator
    • Applications/Uses
    • Central timing function for carrier network equipment compliant to ITU-T G.8262, G.8273.2, G.8273.4
    • Communications systems timed by any combination of Synchronous Ethernet, IEEE 1588 PTP, or GPS/GNSS
    • 5G wireless CU, DU, and RU systems
    • 5G systems with precise time requirements driven by advanced services such as carrier aggregation, coordinated multipoint, OTDOA location, etc.
    • Integrated basestation reference clock for 2G through 4G LTE-A macro and micro cells
    • Carrier routers, access aggregation, wireless backhaul
    • SONET/SDH systems

    User Guide

    PURCHASE

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    MEANS OF PAYMENT

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    IMPORTANT NOTICE

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    Step1:Prepare product

    Step1:Prepare product

    Step2:Desiccant Protection

    Step2:Desiccant Protection

    Step3:Vacuum Packaging

    Step3:Vacuum Packaging

    Step4:Individual Package

    Step4:Individual Package

    Step5:Anti-collision Filling

    Step5:Anti-collision Filling

    Step6:Packaging Box

    Step6:Packaging Box

    SHIPPING COST

    1. Shipping starts at $40, but some countries will exceed $40. For example (South Africa, Brazil, India, Pakistan, Israel, etc.).
    2. Some specific products need to reach the minimum order quantity.
    3. It may cost additional remote fees for delivery if you are in a remote area.

    SHIPPING METHOD

    Currently, our products are shipped through DHL, FedEx, SF, and UPS.

    DELIVERY TIME

    1. Once the goods are shipped, estimated delivery time depends on the shipping methods you chose: FedEx International, 5-7 business days.
    2. For in-stock parts, orders normally could be shipped out within 1-2days.