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1AB196360006-GT
OPTO TRX SFP L-4.1 DDM -40/+85 ALU Compatible
The GigaTech Products 1AB196360006-GT is programmed to be fully compatible and functional with all
intended ALCATEL switching devices. This SFP optical transceiver is based on the ATM/SONET/SONET
standard and is designed to be compliant with SFF-8472 SFP Multi-source Agreement (MSA). This
module is designed for single mode fiber and operates at a nominal wavelength of 1310nm.
Features:
• Up to 622MBd bi-directional data links
• Hot-pluggable SFP footprint
• Uncooled 1310nm DFB laser transmitter
• Duplex LC Connectors
• Built in Digital Diagnostics
• Up to 40km over 9/125 SMF
• Single power supply 3.3V
• Operating temperature range
I-Temp: -40℃ to 85℃
Compliance:
• ANSI-T1.646, ATM and SONET and SDH for OC-12/STM-4
• SFP MSA SFF-8472
• RoHS
• Class 1 laser product EN 60825
Applications
• SONET OC-12 LR-1/SDH STM L-4.1
Warranty:
GigaTech Branded Optical Transceivers- Lifetime Warranty
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Optical Center Wavelength
Generated Jitter (peak to peak)
Compliant with SONET OC-12/SDH STM-4 Standard
Optical Center Wavelength
Average Rx Sensitivity @ OC-12
Loss of Signal-Deasserted
Loss of Signal-Hysteresis
Input differential impedance
Single ended data input swing
Transmit Disable Assert Time
Single ended data output swing
General Specifications
Optical Characteristics - Transmitter
1AB196360006-GT
OPTO TRX SFP L-4.1 DDM -40/+85 ALU Compatible
Optical Characteristics - Receiver
Electrical Characteristics – Transmitter
Electrical Characteristics – Receiver
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1AB196360006-GT
OPTO TRX SFP L-4.1 DDM -40/+85 ALU Compatible
Digital Diagnostic Functions
The SFP supports the 2-wire serial communication protocol as defined in the SFF 8472. Digital diagnostic
information are accessible over the 2-wire interface at the address 0xA2. Digital Diagnostics are internally
calibrated by default. A micro controller unit inside the transceiver gathers the monitoring information and reports
the status of transceiver.
Transceiver Temperature- Internally measured, represented as a 16 bit signed twos complement value in
increments of 1/256 degrees Celsius, Temperature accuracy is better than ±3 degrees Celsius over specified
operating temperature and voltage.
Transceiver Supply Power- Internally measured, represented as a 16 bit unsigned integer with the voltage
defined as the full 16 bit value (0 – 65535) with LSB equal to 100 μVolt, yielding a total range of 0 to +6.55 Volts.
Transceiver TX bias current- Internally measured, represented as a 16 bit unsigned integer with the current
defined as the full 16 bit value (0 – 65535) with LSB equal to 2 μA, yielding a total range of 0 to 131mA. Accuracy is
better than ±10% over specified operating temperature and voltage.
Transceiver TX output power- Internally measured, represented as a 16 bit unsigned integer with the power
defined as the full 16 bit value (0 – 65535) with LSB equal to 0.1 μW. Data is assumed to be based on measurement
of laser monitor photodiode current. Accuracy is better than ±3dB over specified temperature and voltage. Data is
not valid when the transmitter is disabled.
Transceiver RX received optical power- Internally measured, represented as a 16 bit unsigned integer with the
power defined as the full 16 bit 35 value (0 – 65535) with LSB equal to 0.1 μW. Accuracy is better than ±3dB over
specified temperature and voltage.
Dimensions
ALL DIMENSIONS ARE ±0.2mm UNLESS OTHERWISE SPECIFIED UNIT: mm