Cisco SFP - GE/1G-FC/2G-FC - 850 nm - MM - LC - EXT TEMP network media converter 2000 Mbit/s

Cisco SFP - GE/1G-FC/2G-FC - 850 nm - MM - LC - EXT TEMP. Maximum data transfer rate: 2000 Mbit/s, Cabling technology: 1000Base SX. Connectivity technology: Wired. Maximum transfer distance: 11811" (300 m), Wavelength: 850 nm, Mean time between failures (MTBF): 7919921 h. Compliance industry standards: IEEE-802.3. Power consumption (typical): 1 W
Manufacturer: Cisco
SKU: 10037165
Manufacturer part number: ONS-SE-G2F-SX=
Vendor: Synnex
MSRP: $689.68
$455.62
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The SFP transceiver module is a bidirectional device with a transmitter and receiver in the same physical package. The module interfaces to the network through a connector interface on the electrical ports and through an LC termination connector on the optical ports. Electrical interfaces and dimensions are defined in the SFF-8472 industry-standard multisource agreement (MSA). Transmitter In the transmit direction, the SFP transceiver module receives the electrical signal and transmits this data in an optical signal by using a laser driver that controls the laser diode. The optical output power is held constant by an automatic power control circuit. Receiver In the receive direction, the SFP transceiver module receives an NRZ optical signal and converts it to an electrical equivalent. The receive portion of the module will use some kind of amplifier to control the converted electrical signal. EEPROM This type of SFP transceiver is identified by the standard two-wire serial interface used in EEPROM with an I2C interface (with serial ID functions) that is part of the GBIC specifications and the SFF-8472 MSA. In addition, EEPROM offers an enhanced monitoring interface for optical transceivers as described in SFF-8472, which allows real-time access to the device to enable monitoring of received optical power, laser bias current, laser optical output power, etc.
The SFP transceiver module is a bidirectional device with a transmitter and receiver in the same physical package. The module interfaces to the network through a connector interface on the electrical ports and through an LC termination connector on the optical ports. Electrical interfaces and dimensions are defined in the SFF-8472 industry-standard multisource agreement (MSA). Transmitter In the transmit direction, the SFP transceiver module receives the electrical signal and transmits this data in an optical signal by using a laser driver that controls the laser diode. The optical output power is held constant by an automatic power control circuit. Receiver In the receive direction, the SFP transceiver module receives an NRZ optical signal and converts it to an electrical equivalent. The receive portion of the module will use some kind of amplifier to control the converted electrical signal. EEPROM This type of SFP transceiver is identified by the standard two-wire serial interface used in EEPROM with an I2C interface (with serial ID functions) that is part of the GBIC specifications and the SFF-8472 MSA. In addition, EEPROM offers an enhanced monitoring interface for optical transceivers as described in SFF-8472, which allows real-time access to the device to enable monitoring of received optical power, laser bias current, laser optical output power, etc.
Products specifications
Attribute nameAttribute value
Operating temperature (T-T)-10 - 85 °C
Connector(s)LC-LC
Maximum data transfer rate2000 Mbit/s
Maximum transfer distance11811"
Wavelength850 nm
Cabling technology1000Base SX
Power consumption (typical)1 W
Plug and PlayY
Connectivity technologyWired
InterfaceSFP
Compliance industry standardsIEEE-802.3
Mean time between failures (MTBF)7919921 h
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Products specifications
Attribute nameAttribute value
Operating temperature (T-T)-10 - 85 °C
Connector(s)LC-LC
Maximum data transfer rate2000 Mbit/s
Maximum transfer distance11811"
Wavelength850 nm
Cabling technology1000Base SX
Power consumption (typical)1 W
Plug and PlayY
Connectivity technologyWired
InterfaceSFP
Compliance industry standardsIEEE-802.3
Mean time between failures (MTBF)7919921 h