The EMCORE PONA 2100 Series Erbium Doped Fiber Amplifier (EDFA) is an
ideal building block for OEM system integrators. The family of PONA 2100 series
EDFA’s is designed to meet the most demanding noise performance requirements
of CATV applications, and performs all the functions required of an optical
amplifier for system integration. PONA 2100 series EDFA’s provide optical
isolation on the input and output of the gain block 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.
The PONA 2100 series EDFA’s also provide monitors and associated alarms for
all vital characteristics. The optical output of the PONA 2100 series EDFA’s can
be split into multiple ports by an optional external splitter.
Applications
High Performance Supertrunking Links
High Power Distribution Networks
Redundanct Ring Architectures
FTTx Networks.
Features
Full Functionality 1 RU EDFA
Low Noise Figure (Typ < 5.5 dB)
Total Input Power Range: -10 dBm to
+12 dBM
+14 dBm to +30 dBm Output Power
Optional Internal Optical Power Splitters
Standard RS-232 Communications
Standard SNMP Communication
(coming soon)
Key Lock Switch
Standard and Optional Gain Flatness
(1530 nm – 1562 nm)
VFD Panel Status Indicator
Low Electrical Power Consumption
Input/Output Isolation >40/40 dB
Polarization Dependant Gain < 0.1 dB
Polarization Mode Dispersion < 0.5 ps
General and Mechanical Specifications
Property
Operating Wavelength
Operating Case Temperature
Storage Temperature
Operating Humidity
Voltage Supply Range
Optical Connectors
Dimensions in Inches
Requirement
1532 ~ 1565 nm
1545 ~ 1565 nm
-10C to 55C
-40C to 85C
20% to 85%
100 VAC to 240 VAC 50/60 Hz
-36 to –60 V DC
SC/APC; SC/UPC; FC/APC;
FC/UPC; E2000/APC
19.0”W x 14.76”D x 1.72”H
Comments
PONA 2114 – PONA2127
PONA 2130
Standard
Standard
Non-condensing
Standard
Optional
User Specified
19” Rack Mounted, 1U
| REV 2012.01
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.
PONA 2100 Series
DATASHEET | JANUARY 2012
FIBER OPTICS
Optical/Electrical Characteristics
1
Property
Operating Input Power
Operating Input Power
Output Power
Noise Figure
Static Gain Flatness
Dynamic Gain Flatness
Output Power Stability
Power Consumption
(steady state regime)
Symbol
(Units)
Pin (dBm)
Pin (dBm)
Po (dBm)
NF (dB)
GF (dB)
(dB)
(dB)
Psys (W)
Limit
2114
Max
Min
+12
-10
14.0
+/-.25
Typ/Ma
x
Max
Max
Max
Max
4.5/5.0
+/-0.5
+/-1
+/- 0.2
5
PONA Models
2117
+12
-10
17.0
+/- .25
4.5/5.0
+/-0.5
+/-1.25
+/- 0.2
7
Comments
2124
+12
-10
24.0
+/- .25
2120
+12
-10
20.0
+/- .25
4.5/5.0
+/-0.5
+/-1.5
+/- 0.2
9
2122
+12
-10
22.0
+/- .25
4.5/5.0
+/-0.5
+/-2.0
+/- 0.2
12
2127
+12
-10
27.0
+/- .25
5.0/5.5
+/-0.5
+/-2.0
+/- 0.2
35
2130
+12
-10
30.0
+/- .25
5.5/6.0
(Note 7)
(Note 7)
+/- 0.2
40
Typical
(May vary for
some models)
(Note 2)
(Notes 3, 8)
(Note 4)
(Notes 5, 8)
(Note 6)
50 C Case
o
5.0/5.5
+/-0.5
+/-2.0
+/- 0.2
20
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 possible. (Low Noise Figure options with NF
≤
4.0/4.5 dB are available for some models)
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 ≤
+/-1.0dB are available (for some models)
6. Over polarization and temperature
7. Static and Dynamic Gain Flatness for PONA 2130 can be defined for 1545 nm
≤
≤
1562 nm and by special request only.
8. Specific NF and
ΔG
can be guaranteed at a single specified Input Optical Power Level (Pin = Pt + Pp) equal or different from 0 dBm.
(Please contact your Sales Representative for more information)
| REV 2012.01
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.
PONA 2100 Series
DATASHEET | JANUARY 2012
FIBER OPTICS
Outline Drawing
AC versions shown below with 8-port option
DC versions shown below with 8-port option
Compliance Information
89/336/EEC
73/23/EEC
EN 50083-2, (2001)
EN 55013
EN 61000-3-2
EN 55020
EN 61000-4-6
EN 61000-4-3
EN 61000-4-2
EN 61000-4-4
EN 60950
EN 60825-1
EN 60825-2
CDRH
Fit Rate:
Electromagnetic Compatibility Directive, amended by 92/31/EEC & 93/68/EEC
Low Voltage Directive, amended by 93/68/EEC
Cable networks for TV signals, sounds and interactive services, Part 2
Electromagnetic Compatibility for equipment.
Mains Conducted Emissions
Mains Frequency and its Harmonics, Conducted Emissions
Radiation from Active Equipment, Radiated Immunity
Immunity of Active Equipment, Radiated Immunity
Immunity of Active Equipment, Radiated Immunity
Electrostatic Discharge Immunity
Electrical Fast Transient / Burst Immunity
Low Voltage Directives
Laser Safety Requirement
Laser Safety Requirement
Laser Safety Requirement
90% level of confidence < 1700 @ 30C (PONA 2130)
| REV 2012.01
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.
PONA 2100 Series
DATASHEET | JANUARY 2012
FIBER OPTICS
Ordering Information
PONA 21
Optical Output
Power
14 -
14 dBm
17 -
17 dBm
20 -
20 dBm
22 -
22 dBm
24 -
24 dBm
27 -
27 dBm
30 -
30 dBm
-
-
Input Voltage
-
-
*
Connector
GFF/ NF Options
00 -
Standard
01 –
Gain Flattened Option
02
- Low NF Option
03
– Gain Flattened AND Low
NF Option
Output
Ports
1
2
4
8
16
AC
– 90-260V 50/60 Hz
DC
– 48 V
2DC –
Redundant 48 V
SC –
SC/APC (Default Option)
FC
- FC/APC (Default Option)
EC
- E2000/APC
TC
- SC/UPC
GC
- FC/UPC
Notes:
1.
For ordering PONA
preamplifiers
please contact your Sales Representative
2. Only some models can be order with Gain Flattened and/or Low NF options. (-01, -02, and –03 suffixes).
Please contact your
Emcore Sales Representative for details
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 = 1530 ~ 1561 nm (dependant on input source)
Maximum Output Power = 1.0 W (single output, 30 dBm model)
| REV 2012.01
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.
Company project. Functional requirements: jpeg2000 image decoding and display based on wince5 platform. Remuneration is negotiable. Interested parties please send demo to: liqiang@wsn.cn and the rest ...
Dear BOSS, I am currently running the UCOSII 2.52 system.Nothing has happened.
But recently I want to reduce the space occupied by code compilation and optimize the code. I selected the place shown in...
[i=s]This post was last edited by jameswangsynnex on 2015-3-3 19:57[/i]The design and development of a chip first involves designing an application system based on the needs of the product application...
introduction
my country has a vast territory and a large population. The scale of housing construction is huge, and the amount of residential construction is large and wide. It is still on t...[Details]
0 Introduction
With the development of society, people pay more and more attention to security work. Monitoring products have been used in various fields instead of being used only in importan...[Details]
With the advocacy and implementation of the government's Safe City Plan, the security market has increasingly higher requirements for the clarity of surveillance images. Imagine that after a case o...[Details]
Capacitors
are basic components in various electronic devices and are widely used for bypassing, coupling,
filtering
, tuning, etc. in electronic circuits. However, to use capacitors,...[Details]
The rectified DC voltage is then converted back to AC using power electronics such as insulated gate bipolar transistors.
The output voltage is switched on and off at a high frequency, control...[Details]
Currently, each country is developing its own USB interface
charging specifications
, which leads to a major problem that a USB interface
charging
device manufactured in one country...[Details]
Fruit planting is an important part of China's agricultural development, and fruit tree pest control operations are becoming more and more important. At present, the overall level of pesticide applica...[Details]
Distributed Wireless Communication System (DWCS) uses distributed antennas, distributed processing control, joint signal processing and other technologies to improve the system's spectrum efficie...[Details]
For battery-powered portable devices, in addition to breaking through the limitations of processing power, the performance of portable system power supplies also needs to be continuously improved. ...[Details]
The overall operating performance of an electric car depends first on its battery system and motor drive system. The drive system of an electric car is generally composed of three main parts: a con...[Details]
introduction
Temperature and humidity are the main environmental parameters of industrial and agricultural production. It is of great significance to measure them accurately and timely. Using a s...[Details]
Fairchild's FAN6208 is a synchronous rectification (SR) controller for isolated LLC or LC resonant converters that can drive two individual SR MOSFETs emulating the behavior of rectifier diodes. FAN62...[Details]
(1) Open circuit voltage of the battery
(2) Internal resistance of the battery
(3) Battery operating voltage
(4) Charging voltage
Charging voltage refers to the voltage applied ...[Details]
Previously used primarily in high-power power supplies and large industrial and consumer power supplies, supercapacitors are now finding their way into products of all sizes, especially portable de...[Details]
1 Introduction
With the rapid development of my country's economy, the country has introduced a series of policies such as preferential policies, subsidy policies, and old-for-new policies, wh...[Details]