MAFA 1000 Series Erbium Doped Fiber Micro Amplifier
EMCORE’s MAFA 1000 Series Erbium Doped Fiber micro Amplifier (μEDFA)
Gain Block Module is an ideal building block for OEM system integrators. The
family of MAFA 1000 EDFA Gain Blocks is 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 amplifier for system
integration.
MAFA 1000 series EDFA Gain Blocks provide input and output optical isolation for
stable, low noise operation. The input and output optical signal power levels are
detected for monitoring and control. The input optical signal is amplified with
active gain control for a constant output power level or with active output power
control for constant gain mode operation.
The MAFA 1000 series EDFA Gain Blocks also provide monitors and associated
alarms for all critical operating parameters. The optical output of the MAFA 1000
series EDFA Gain Blocks can be split into multiple ports by optional external
splitter. Optional back reflection monitoring feature enables safe output optical
power managing.
The compact mechanical footprint of the MAFA 1000 allows using this unit to be
installed in small space environments.
Applications
CATV Systems
Long Distance RF/Microwave Fiber
Optic Communication Links
Sensing and Control Systems
High Performance Supertrunking Links
High Power Distribtuion Networks
Redundanct Ring Architectures
FTTx Networks
Features
Full Function Fiber Optic Amplifier
Ready for Integration
Low Noise Figure (Typ < 4.5 dB)
Pin: -6 dBm to +12 dBM
Pout: +14 dBm to +23 dBm
RS-232 Monitor and Control Interface
(SNMP V.1 is also possible)
Standard and Optional Gain Flatness
Low Electrical Power Consumption
Input/Output Isolation >40/40 dB
Polarization Dependant Gain < 0.1 dB
Polarization Mode Dispersion < 0.2 ps
Input & Output Return Losses < -40 dB
Output Residual Pump Power < -30 dBm
Back Reflection Monitoring
|
REV 2012.09
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 1000 Series EDFA
DATASHEET | SEPTEMBER 2012
FIBER OPTICS
Optical/Electrical Characteristics
1
Property
Unit
Limit
1014
Operating Input Power
Operating Input Power
Output Power
Noise Figure
Static Gain Flatness
Dynamic Gain Flatness
Output Power Stability
Power Consumption
(Steady state)
Pin (dBm)
Pin (dBm)
Po(dBm)
NF (dB)
ΔGs
(dB)
ΔGd
(dB)
(dB)
Psys(W)
Max
Min
Nominal
Typ
Max
Max
Max
Max
12
-6
14
+/-.25
4.0 dB
+/-0.5
+/-1.0
+/- 0.1
2
Models
1017
12
-6
17
+/- .25
4.0 dB
+/-0.5
+/-1.25
+/- 0.1
3
Comments
1022
12
-6
22
+/- .25
4.0 dB
+/-0.5
+/-2.0
+/- 0.1
6
1020
12
-6
20
+/- .25
4.0 dB
+/-0.5
+/-1.5
+/- 0.1
5
1023
12
-6
23
+/- .25
4.0 dB
+/-0.5
+/-2.0
+/- 0.1
8
Typical
(May vary for some models)
Note 2
@ Pin = 0 dBm, no Pin monitoring
(Notes 3, 7, 8)
(Notes 4)
(Notes 5, 7)
(Note 6)
70 C Case
o
Notes:
1. Unless stated otherwise, all specifications apply over the full operating temperature and humidity ranges
0 dBm. Measuring with 1 input optical signal with Pin
≈
0 dBm and
≈
1550 nm is also available
4. Measured with a swept Probe Signal (Pp), where Pp
≈
0 dBm @ 25C
5. Measured with a swept Probe Signal (Pp), and a fixed Tone Signal (Pt) @ ~ 1550 nm; (Pt
≈
Pp+20 dB; Pt + Pp
≈
0 dBm)
@ 25C; Gain Flattened Options with
ΔG ≤
+/-0.75dB or
ΔG ≤
+/-1.0dB are available (for
some models and for defined
input optical power only)
6. Over polarization and temperature
7. Specific
ΔG
can be guaranteed at a single specified Input Optical Power Level (Pin = Pt + Pp) equal or different from 0
dBm
8. If input power monitoring and input isolation are required then typical NF (Typ) for all units @ Pin = 0 dBm as
4.5 dB
General and Mechanical Specifications
Property
Operating Wavelength
Operating Case Temperature
Storage Temperature
Operating Humidity
Voltage Supply Range
Optical Connectors
Dimensions (mm)
Requirement
1532nm ~ 1565nm
0C to 50C
-40C to 85C
20% to 85%
+12VDC/+5VDC/+3.3VDC
SC; FC; E2000
70 x 90 x 15
Comments
Standard
Standard*
Standard
Non-condensing
All versions**
User Specified
All versions
* - Extended temperature range of –40C to +75C is also possible
** Transient Pulse to +X.XVDC + 5% for < 100 msec
|
REV 2012.09
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 1000 Series EDFA
DATASHEET | SEPTEMBER 2012
FIBER OPTICS
Outline Drawing (dimensions in mm)
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)
Fit Rate: 90% level of confidence - 290 @ 25C
|
REV 2012.09
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.
MAFA1014-SC-00-S-2: 14 dBm gain block with SC/APC optical connectors, standard NG/GF, standard temperature range,
+5VDC power supply
Note:
Only some models can be order with Gain Flattened options. (-01 suffixes).
Please contact your Sales Representative
for details
|
REV 2012.09
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 1000 Series EDFA
DATASHEET | SEPTEMBER 2012
FIBER OPTICS
Laser Safety Information
This product meets the applicable requirements of 21 CFR 1010 & 1040 and is classified as a Class IV laser product based
on the maximum optical output power shown 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.
The laser product report has been submitted to the CDRH and the accession number is expected by October 2006.
Wavelength = 1535 ~ 1565 nm (dependant on input source)
Maximum Output Power = 0.2 W (single output, 23 dBm model)
|
REV 2012.09
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.
Question 1: Can anyone recommend a free jvm for wince? I googled but couldn't find any free ones. Question 2: How does wince support jsp? I found that wince only supports asp. Question 3: Is there a s...
Today I accidentally saw the photos I had saved on my computer. It was a Russian plane. It was hit so badly but still made an emergency landing. The quality is indeed better than the domestic craftsma...
always @(posedge clk)begin wrsigbuf= wrsig;wrsigrise=(~wrsigbuf)wrsig;end says that when wrsig goes from 0 to 1, wrsigrise is 1The analysis is as follows:When wrsig is 0, wrsigbuf and wrsigrise are bo...
When technical developers who have access to core secrets (e.g., those working in smart meter factories who have access to the SLE4442 card passwords used by the company's smart meters for electricity...
At the end of 2009, embedded technology was reviewed. Experts and scholars in the embedded industry gathered together. The three-month search for embedded programming masters by the "Top-E Cup" finall...
International Solar Photovoltaic Network News: Chinese inverter company Sungrow announced that it will build a 3GW photovoltaic inverter manufacturing plant in Bangalore, the capital of Karnataka, ...[Details]
ZTE
The communication embargo incident has impacted the communication industry and sounded the alarm for the semiconductor industry. Let's follow the embedded editor to learn more about the r...[Details]
In our common sense, the word technology often has two definitions. The first is the technology sealed in the laboratory. They are like flowers on the mountain top. Only a few people on the mountai...[Details]
For STM32, there are two ways to reset the software: 1) Use the official software library The system reset function is directly provided in the stm32f10x_nvic.c file of the official software li...[Details]
After searching a lot of information, I finally understood the time base timer. I did not use any library functions but operated the registers directly. The following introduces the systick in STM32...[Details]
This part of the code in the void SystemClock_Config(void) function in the main file generated by stm32cubemx RCC_OscInitStruct.OscillatorType = RCC_OSCILLATORTYPE_HSE; This bug occurs, and the f...[Details]
I used STM32CubeMX V4.22.1 to generate a project including EHT and Lwip. The debugging has been abnormal. After careful inspection, the following problems were found: 1. The hardware uses LAN8720A, b...[Details]
introduction In the general project development process, two or more microcontrollers are often required to communicate to complete data transmission. For example, a quadcopter wirelessly transmits d...[Details]
Recently, the "Smart Photovoltaic Industry Development Action Plan (2018-2020)" jointly issued by six departments has put this concept on the forefront. Photovoltaic smart solutions will become the ne...[Details]
In 2018, the National Development and Reform Commission issued a new photovoltaic subsidy policy. The benchmark on-grid electricity price was significantly reduced, the return on investment decreased,...[Details]
On Sunday, the South Australian government unveiled plans to build the world's largest virtual power plant, which will connect at least 50,000 homes over four years and have a capacity ...[Details]
The adoption of vehicle tracking systems for cars and fleets is increasing. Modern trackers have reduced form factors and increased functionality to support active data transmission for real-time tra...[Details]
In order to strengthen the traceability management of recycling and utilization of power batteries for new energy vehicles, and to standardize and guide all relevant parties to fulfill their tracea...[Details]