100G ER4 QSFP28 LAN WDM 40km Duplex LC Optical Transceiver Module

SKU: OT-100G-QSFP-ER4

$1,440.00 VAT excl.

  • 100G data rate via 4 × LAN-WDM lanes (~27.95 Gb/s each)
  • Extended reach up to 40 km over single-mode fiber (1310 nm)
  • Duplex LC interface for SMF connection
  • Hot-pluggable QSFP28 form factor
  • Low power consumption (< 5.5 W)
  • Real-time monitoring with DDM/DOM support
  • Built-in TX and RX clock/data recovery (CDR)
  • Fully compliant with QSFP28 MSA, IEEE 802.3ba 100GBASE-ER4, and OTU4/ITU-T G.959.1 standards
  • Operating temperature range: 0 – 70 °C (case), storage: –20 – 85 °C
    SKU: OT-100G-QSFP-ER4 Category: Tags: , , , , Brand:

    The 100GBASE ER4 standards are met by the 100G QSFP28 ER4 transceiver module. The maximum reach distance with single-mode fiber is 40 km. Real-time digital diagnostic monitoring of many transceiver and optical link parameters is supported by the 100G ER4 transceiver. Four channels of 25Gb/s electrical data are converted into four channels of LAN-WDM optical signals by this transceiver, which then multiplexes them into a single 100Gb/s optical stream for transmission. It skillfully de-multiplexes a 100Gb/s optical input back into four separate LAN-WDM optical signal channels on the receiving end. The 100GbE IEEE 802.3ba 100GBASE-ER4 and ITU-T G.959.1 OTU4 (4L1-9C1F) specifications are met by this optical module.

    Form FactorQSFP28ConnectorDuplex LC
    MediaSMFMax. Cable Distance40km
    Data Rate111.8Gbps(4x27.95Gbps)Wavelengths Range1310nm LWDM4
    Transmitter TypeEMLReceiver TypePIN
    Extinction Ratio>8dB
    Supply Voltage3.3V
    Op. Temperature0 to 70°C (32 to 158°F)Humidity(non-condensing)5-85%
    St. Temperature-20 to 85°C (-4 to 185°F)Electrical InterfaceHot-pluggable
    DDM/DOMSupportedProtocols100G Ethernet Compliant
    Compatible Brands

    Generic, Asterfusion, Arista, Nvidia, Juniper, Cisco, HUAWEI, H3C, Ruijie

    Connector

    Duplex LC

    Interface

    QSFP28

    Model

    ER4

    Reach

    40km

    Speed

    100G