EEWORLDEEWORLDEEWORLD

Part Number

Search

3998-0SA2-12001

Description
1550 nm Externally Modulated Transmitter
File Size568KB,7 Pages
ManufacturerEMCORE
Websitehttp://www.emcore.com/
Download Datasheet View All

3998-0SA2-12001 Overview

1550 nm Externally Modulated Transmitter

3998 Series 1550 nm
Externally Modulated Transmitter
DATASHEET | AUGUST 2012
FIBER OPTICS
The L-type/D-type/S-type/H-type/F-type/N-type 3998 Series
This product line is a family of state-of-the-art high performance 1550 nm externally
modulated CATV fiber optic transmitters optimized for varying network applications.
Packaged in convenient 1RU housing, this line of optical transmitters couples high optical
output powers, up to 11.0 dBm, with low optical line width resulting in unmatched
performance. The optical modulator, combined with proprietary predistortion circuitry,
provides superior CTB and CSO performance with SBS suppression levels of greater than
21 dBm. Advanced features such as built in field adjustable SBS control and electronic
dispersion compensation allow these transmitters to be quickly optimized in the field for any
link or application without the need to procure specifically tuned transmitters. This affords
the system designer a level of flexibility previously unknown in the CATV market place.
The L-type series are designed as a high performance solution for applications where the
simultaneous transport of CATV and SAT-IF FM signals is required. The SAT-IF signals
can be applied anywhere in the 950 to 2800 MHz band.
The D-type series are designed as a low cost, high performance solution for applications
where the required fiber length is in the range of 20 to 50 kilometers. Advanced, high
power, DFB laser technology allows these transmitters to be fielded without the use of
EDFAs.
The S-type series transmitters are designed to be the most versatile model within the 3998
series family. They can easily be configured to meet most HFC network solutions requiring
link lengths in the range of 50 to 70 kilometers with one EDFA as well as links utilizing
multiple EDFA’s.
The H-type series transmitters are optimized for single EDFA fiber links in the 70 to 90
kilometer range. These transmitters take advantage of our advanced fiber dispersion
compensation circuitry to provide exceptional CATV performance.
The F-type series transmitters are intended for use in FTTx and RFoG architecture designs
requiring high quality transmission over varying transmission lengths and EDFA output
powers. These transmitters successfully support very high optical launch powers while
controlling the detrimental effects of Stimulated Brillouin Scattering (SBS), group velocity
dispersion (GVD), and self phase modulation (SPM).
The N-type series transmitters are intended for use in node-splitting architecture designs
requiring cost effective DWDM transmission over medium length fiber distances.
Applications
High Performance Supertrunking Links
High Power Distribution Networks
Redundant Ring Architectures
FTTx Networks
RFOG Applications
SAT-IF Transport
DWDM Node Splitting
Features
Single or Dual Optical Outputs
QAM Loading to 1003 MHz
Dual Power Supplies and Fans,
Redundant & Hot Swapplable
Front Panel RF Test Point
SNMP Control Interface
WEB GUI
Vacuum Fluorescent Status Display
OMI / RF Gain Adjustment
AGC Select: CW, Video, Manual (No
AGC)
Industry Leading Field Adjustable SBS
Suppression
Field Adjustable Electronic Dispersion
Compensation (EDC)
| REV 2012.08
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.
How should I understand the flying wires in PCB design? Thanks to the experts who can help me solve this problem.
After the pcb generates the network list, many flying wires will appear. When the original is moved, the port through which the flying wire passes will constantly change (sometimes passing through pad...
liang_long PCB Design
Receiver test interference signal problem
[color=#333333]Interference signal problem in receiver test When testing LTE, the interference signal is required to be [/color][color=#000][font=arial]E-UTRA signal, so should FDD/TDD be used as the ...
gurou1 RF/Wirelessly
Questions about TIVA routines
I downloaded the demo yesterday. Then I copied the LCD demo of CH3_1 to my own project and included other .C .H. : After compiling, the following errors occurred: "../main.c", line 156: warning #225-D...
过客浅 Microcontroller MCU
Application of frequency conversion control and human-machine interface in paper machine
The requirements of paper machines for frequency conversion control and the basic control methods of multi-drive systems are introduced, with emphasis on the communication of the human-machine interfa...
frozenviolet Industrial Control Electronics
MicroPython firmware for the Nucleo-F091RC development board
The micropython firmware of the Nucleo-F091RC development board can be written through STLink and then reset. It needs to be connected through terminal software. [list] [*] [/list] [b][color=#5E7384]T...
dcexpert MicroPython Open Source section

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

Robot
development
community

Index Files: 31  2570  1896  540  184  1  52  39  11  4 
Datasheet   0 1 2 3 4 5 6 7 8 9 A B C D E F G H I J K L M N O P Q R S T U V W X Y Z
Room 1530, 15th Floor, Building B, No. 18 Zhongguancun Street, Haidian District, Beijing Telephone: (010) 82350740 Postal Code: 100190
Copyright © 2005-2026 EEWORLD.com.cn, Inc. All rights reserved 京ICP证060456号 京ICP备10001474号-1 电信业务审批[2006]字第258号函 京公网安备 11010802033920号