The GPON is an intermediate device for PON evolution. It adopts TFF technology and can coexist GPON, XG(S)-PON, NG-PON2 and OTDR signals in the same network environment. GPON and XG(S)-PON allow GPON and XG(S)-PON to coexist in the existing network without affecting existing services, and realize smooth evolution from GPON to XG(S)-PON, which is stable, reliable and convenient to manage , to meet the service rate upgrade requirements. At the same time, the broadband working range of 1260-1660nm provides support conditions for the evolution of PON.
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FMU-WDM43O, TFF, GPON/XG(S)-PON/NG-PON2/OTDR Coexistence Wavelength Division Multiplexer, Support Four in One
FMU-WDM43O, TFF, GPON/XG(S)-PON/NG-PON2/OTDR Coexistence Wavelength Division Multiplexer, Support Four in One
XG(S)-PON 1260~1280 & 1575~1581nm
NG-PON2 1524~1544 & 1596~1603nm
OTDR 1640~1660nm
XG(S)-PON ≤1.1dB
NG-PON2 ≤1.4dB
OTDR ≤1.7dB
XG(S)-PON ≥30dB
NG-PON2 ≥30dB
OTDR ≥15dB
Connectivity Solutions
FMU-WDM43O, TFF, GPON/XG(S)-PON/NG-PON2/OTDR Coexistence Wavelength Division Multiplexer, Support Four in One
The GPON is an intermediate device for PON evolution. It adopts TFF technology and can coexist GPON, XG(S)-PON, NG-PON2 and OTDR signals in the same network environment. GPON and XG(S)-PON allow GPON and XG(S)-PON to coexist in the existing network without affecting existing services, and realize smooth evolution from GPON to XG(S)-PON, which is stable, reliable and convenient to manage , to meet the service rate upgrade requirements. At the same time, the broadband working range of 1260-1660nm provides support conditions for the evolution of PON.
XG(S)-PON 1260~1280 & 1575~1581nm
NG-PON2 1524~1544 & 1596~1603nm
OTDR 1640~1660nm
XG(S)-PON ≤1.1dB
NG-PON2 ≤1.4dB
OTDR ≤1.7dB
XG(S)-PON ≥30dB
NG-PON2 ≥30dB
OTDR ≥15dB
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247,00 € (Excl. VAT)
293,93 € (Incl. VAT)