EMCORE’s MAFA 1014-PA Optical Preamplifier Erbium Doped Fiber Gain Block Module is
an ideal building block for system integrators to extend the fiber link for long-haul signal
transport. The MAFA 1014-PA Optical Preamplifier series gain blocks are designed to meet
the most demanding noise performance requirements of fiber optic communications and
control systems and performs all the functions required of an optical preamplifier for system
integration.
The MAFA 1014-PA Optical Preamplifier provides output optical isolation for stable, low
noise operation. The output optical signal power level is detected for monitoring and
control. The very low level input optical signal is amplified with active output power control
for constant current mode operation.
Applications
CATV Systems
Long Distance RF/Microwave Fiber
Optic Communication Links
Sensing and Control Systems
High-Performance Supertrunking Links
High Power Distribution Networks
Redundant Ring Architectures
FTTx Networks
The compact mechanical footprint of the MAFA 1014-PA Optical Preamplifier allows using
this unit to be installed in small space environments.
General and Mechanical Specifications
Parameter
Operating Wavelength
Operating Case Temperature
Storage Temperature
Operating Humidity
Voltage Supply Range
Optical Connectors
Dimensions (mm)
Min
1532
0
-40
20
-
-
-
Typ
-
-
-
-
+12/+5/+3.3
SC; FC; E2000
70 x 90 x 15
Max
1565
50
85
85
-
-
-
Units
nm
°C
°C
%
VDC
-
Mm
Comments
Standard
Standard*
Standard
Non-condensing
All Versions**
User Specified
All Versions
Features
Full Function Fiber Optic pre-Amplifier
Low Noise Figure (NF Typ < 3.3 dB)
Pin > -45 dBm
Pout (saturated):
≈
+14 dBm
Small Signal Gain > 37 dB
Low Electrical Power Consumption
Output Isolation > 40 dB
Polarization Dependant Gain < 0.1 dB
Polarization Mode Dispersion < 0.2 ps
Output Return Losses < -40 dB
Output Residual Pump Power < -40 dBm
* - Extended temperature range of – 40ºC to +75ºC is also possible
** Transient Pulse to +X.X VDC + 5% for < 100 msec
Electrical power must be applied to the unit only after launching input optical
|
REV 2013.09
Information contained herein is deemed reliable and accurate as of the issue date. EMCORE reserves the right to change the design or specification at any time without notice.
MAFA 1014-PA Optical Preamplifier
Erbium Doped Fiber Preamplifier
DATASHEET | SEPTEMBER 2013
FIBER OPTICS
Optical/Electrical Characteristics
1
Property
Operating Input Power
Operating Input Power
Saturated Output Power
Noise Figure
Output Power Stability
Power Consumption
(Steady state)
Unit
Pin (dBm)
Pin (dBm)
Pout (dBm)
NF (dB)
(dB)
Psys(W)
Limit
Max
Min
Nominal
Max
Max
Max
Model 1400
0
-45
14 +/- .25
3.3 dB
+/- 0.1
2
Comments
(Note 1)
-
-
(Notes 2,3)
(Note 4)
(Note 5)
70°C Case
Notes:
1. Unless stated otherwise, all specifications apply over the full operating temperature and humidity ranges
2. Measurement variations
3. Measured @ 1550 nm and Pin = -4 dBm
4. Measure @ 1550 nm and Pin = -30 dBm
5. Over polarization and temperature
Outline Drawing (dimensions in mm)
|
REV 2013.09
Information contained herein is deemed reliable and accurate as of the issue date. EMCORE reserves the right to change the design or specification at any time without notice.
MAFA 1014-PA Optical Preamplifier
Erbium Doped Fiber Preamplifier
DATASHEET | SEPTEMBER 2013
FIBER OPTICS
Compliance and Reliability Information
FCC: Subpart B. Part 15 class “A”: Unintentional Radiators
EN 55013: Sound and Television Broadcast receivers and associated equipment – Radio disturbance characteristics- limits and methods
of measurements – Electric Field Radiation Emissions (2001)
MAFA-PA-1014-SC1-S-2: 14 dBm pre-amp gain block with SC/APC optical connectors, standard temperature range, +5 VDC power
supply
|
REV 2013.09
Information contained herein is deemed reliable and accurate as of the issue date. EMCORE reserves the right to change the design or specification at any time without notice.
MAFA 1014-PA Optical Preamplifier
Erbium Doped Fiber Preamplifier
DATASHEET | SEPTEMBER 2013
FIBER OPTICS
Laser Safety Information
This component product does not meet the applicable requirements of 21 CFR 1010 & 1040 and is classified as a Class IIIb laser product
based on the maximum optical output power defined below. During use as intended, the laser energy is fully contained within the fiber
network such that there is no accessible laser radiation and would meet the requirements for a Class I laser product.
Wavelength = 1532 ~ 1565 nm (dependent on input source)
Maximum Output Power = 200 mW
|
REV 2013.09
Information contained herein is deemed reliable and accurate as of the issue date. EMCORE reserves the right to change the design or specification at any time without notice.
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