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FA-TCS12L35-20D & FA-TCS12L53-20D, Bi-Directional Transmission 1.25Gbps SFP Fiber Optic Transceiver
Module 20Km DDM
Main Technical Parameters of Optical Transceiver
1, Average transmitting power Po: Refers to the arithmetic average
value of optical power when signal logic is 1 and 0. PAWG=
(P0+P1)/2;
2, Extinction ratio (Pon/Poff): The comparative value when signal
logic is 1 and 0. ER=10log P1/P0;
3, Center wavelength: optical band is used to transmit optical
signal. Mainly use 850nm, 1310nm and 1550nm;
4, Eye diagram pattern: in high speed optical fiber system, optical
transmit pulse shape is difficult to control, often may be rising
edge, falling edge overshoot, undershoot and ringing. All of these
may lead to worsening of the sensitivity of the receiver, and
therefore must be limited, so ITU-T proposed G.957 specify a eye
diagram template;
5, Receiving sensitivity Pr: Receiving sensitivity means when the
module is working, the minimum receiving power based on a certain
error value (such as BER=10-9);
6, Saturated optical power Ps: means when the module is working,
the maximum receiving power based on a certain error value (such as
BER=10-9);
7, Alarm (H-L): when the module is working, change optical power in
descending order, the alarm output signal level reversal appears
when the optical power decreases to a certain value, optical power
at this time is the alarm signal threshold (PH-L);
8, Cancel alarm (L-H): when the module is working, change optical
power in ascending order, the alarm output signal level reversal
appears when the optical power increases to a certain value,
optical power at this time is the alarm signal threshold (PL-H).
9, Optical Path Penalty: It is receiver’s sensitivity changes
caused by pulse transmission in the optical channel. Factors
causing the Optical Path Penalty mainly includes the nonlinear
effects, chromatic dispersion (CD), polarization mode dispersion
(PMD), polarization dependent loss (PDL), optical channel
reflection and crosstalk etc..
10, Optical Link budget: It is equal to the absolute value of
optical power subtract receiving sensitivity, it is the key to
evaluate transmission distance.
11, Optical power penalty at different wavelength: For example,
G652 SM fiber, loss is 0.4dB/km @ 1310nm and 0.25dB/km @ 1550nm;
50um MM fiber, loss is 4dB/km at 850nm and 2dB/km at 1310nm.
So main technical parameters of fiber optic transceiver includes:
Average transmitting power Po; Extinction ratio (Pon/Poff); Center
wavelength; Eye diagram pattern:; Receiving sensitivity Pr;
Saturated optical power Ps; High-Low Alarm (H-L); Optical Path
Penalty; Optical Link budget; Optical power penalty at different
wavelength and so on.
Optical and Electrical Characteristics Of FA-TCS12L35-20D & FA-TCS12L53-20D
Parameter | Symbol | Min | Typical | Max | Unit | Notes | ||
Transmitter | ||||||||
Center Wavelength | λc | 1260 | 1310 | 1360 | nm | |||
Spectral Width (RMS) | ∆λ | 4 | nm | |||||
Average Output Power | Pout | -9 | 0 | dBm | 1 | |||
Extinction Ratio | ER | 9 | dB | |||||
Optical Rise/Fall Time (20%~80%) | tr/tf | 0.26 | ns | |||||
Data Input Swing Differential | VIN | 400 | 1800 | mV | 2 | |||
Input Differential Impedance | ZIN | 90 | 100 | 110 | Ω | |||
TX Disable | Disable | 2.0 | Vcc | V | ||||
Enable | 0 | 0.8 | V | |||||
TX Fault | Fault | 2.0 | Vcc | V | ||||
Normal | 0 | 0.8 | V | |||||
Receiver | ||||||||
Center Wavelength | λc | 1480 | 1580 | nm | ||||
Receiver Sensitivity | -23 | dBm | 3 | |||||
Receiver Overload | -3 | dBm | 3 | |||||
LOS De-Assert | LOSD | -24 | dBm | |||||
LOS Assert | LOSA | -30 | dBm | |||||
LOS Hysteresis | 1 | 4 | dB | |||||
Data Output Swing Differential | Vout | 400 | 1800 | mV | 4 | |||
LOS | High | 2.0 | Vcc | V | ||||
Low | 0.8 | V |
Product Features
1, Suitable for Gigabit Ethernet, fiber channel, WDM applications;
2, SFP Multi-source package with LC interface;
3, Up to 1.25Gbps data links;
4, Single fiber bi-directional transmission;
5, Support Hot-Pluggable;
6, Single +3.3V power supply;
7, Isolation > 30dB, Cross Talk < -45dB;
8, Compliant with Specifications for IEEE802.3Z;
9, Compliant with Bellcore TA-NWT-000983;
10, Eye safety level meet Laser Class1 and compliant with
IEC60825-1 requirements.