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910nm Semiconductor Optical Amplifier(Nonlinear)
This is a polarization-insensitive optical amplifier. It utilizes advanced epitaxial wafer growth and optoelectronic packaging technologies to achieve high output saturation power, low noise figure, and high gain over a broad spectral bandwidth.
Product features:Wide optical bandwidth;High output power;Low polarization sensitivity;Multi-quantum well (MQW) structure
Part Number:MP-SOA-910-24db-25-SA
Application area:Telecom and data communications | All-optical logic and signal processing
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Center wavelength Spectral width
900-920nm 20-30nm

Detailed parameters
Laser specifications
Electrical/optical characteristics (Tsub=25°C, CW bias, unless otherwise noted)
Item | symbol | Test conditions | Min. value | Typical values | Max. value | unit |
Fiber optic gain | G | CW, IF = 300mA | 20 | 24 | 28 | dB |
Forward current | IF | 300 | 350 | mA | ||
Forward voltage | VF | 2.5 | V | |||
Center wavelength | λc | CW, IF = 300mA | 900 | 910 | 920 | nm |
Spectral width | Δλ | CW, IF = 300mA | 20 | 25 | 30 | nm |
Saturation power | PS | CW, IF = 300mA | 8 | 9 | 10 | dBm |
Noise figure | NF | CW, IF = 300mA | 7 | 8 | 9 | dB |
Gain ripple | δG | CW, IF = 300mA | 1 | 2 | dB | |
Polarization-related gain | PDG | CW, IF = 300mA | 10 | dB | ||
Chiller voltage | VC | IF=EOL, TC=70°C | 2.7 | V | ||
Cooler current | IC | IF=EOL, TC=70°C | 1.4 | A | ||
Thermal resistance | Ro | TLD=25°C, B=3900±100K | 9.5 | 10.0 | 10.5 | kΩ |
Absolute maximum rated parameters
Item | symbol | Rating | unit |
LD forward current | If | 400 | mA |
LD reverse voltage | Vr | 1.8 | V |
Operating temperature | TC | -20 to +70 | °C |
Storage temperature | Tstg | -20 to +85 | °C |
Cooling current | IC | 1.4 | A |
Ordering information
MP-SOA-W□□□□-☆-A8▽-XX
□□□□:Wavelength
680:680nm
910: 910nm
* * * * *
1550:1550nm
1650:1650nm
☆ : Output Power
A: 5dbm
B: 10dbm
▽:Spectral Width
1:60-70nm
2:30-40nm
XX: Fiber and Connector Type
SASA=(HI780+ FC/APC)+(HI780+ FC/APC)
SPSP=(HI780+ FC/PC)+(HI780+ FC/PC)
PPPP=(PM Fiber+ FC/PC)+(PM Fiber+ FC/PC)
PAPA=(PM Fiber+ FC/APC)+(PM Fiber+ FC/APC)
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