AFBR-5905Z Avago Technologies US Inc., AFBR-5905Z Datasheet

TXRX OPT OC3 MTRJ SFF 2X5DIP

AFBR-5905Z

Manufacturer Part Number
AFBR-5905Z
Description
TXRX OPT OC3 MTRJ SFF 2X5DIP
Manufacturer
Avago Technologies US Inc.
Datasheet

Specifications of AFBR-5905Z

Applications
General Purpose
Wavelength
1300nm
Voltage - Supply
3.3V
Connector Type
MTRJ
Mounting Type
Through Hole
Data Rate Max
0.1Gbps
Supply Voltage
3.3V
Wavelength Typ
1308nm
Leaded Process Compatible
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Data Rate
-
Lead Free Status / RoHS Status
Lead free / RoHS Compliant, Lead free / RoHS Compliant
Other names
516-1994
AFBR-5905Z/5905AZ
ATM Multimode Fiber Transceivers
in 2 x 5 Package Style
Data Sheet
Description
The AFBR-5905Z family of transceivers from Avago pro-
vide the system designer with products to implement a
range of solutions for multimode fiber SONET OC-3 (SDH
STM-1) physical layers for ATM and other services. These
transceivers are all supplied in the new industry standard
2 x 5 DIP style with a MT-RJ fiber connector interface.
ATM 2 km Backbone Links
The AFBR-5905Z is a 1300 nm product with optical perfor-
mance compliant with the SONET STS-3c (OC-3) Physical
Layer Interface Specification. This physical layer is defined
in the ATM Forum User-Network Interface (UNI) Speci-
fication Version 3.0. This document references the ANSI
T1E1.2 specification for the details of the interface for 2
km multimode fiber backbone links. The ATM 100 Mb/s-
125 MBd Physical Layer interface is best implemented
with the AFBR- 5903Z family of FDDI Transceivers which
are specified for use in this 4B/5B encoded physical layer
per the FDDI PMD standard.
Transmitter Sections
The transmitter section of the AFBR-5905Z utilizes a 1300
nm InGaAsP LED. This LED is packaged in the optical sub-
assembly portion of the transmitter section. It is driven by
a custom silicon IC which converts differential PECL logic
signals, ECL referenced (shifted) to a +3.3 V supply, into an
analog LED drive current.
Description
The AFBR-5905Z family of
transceivers from Agilent
provide the system designer
with products to implement a
range of solutions for
multimode fiber SONET OC-3
(SDH STM-1) physical layers
for ATM and other services.
These transceivers are all
supplied in the new industry
standard 2 x 5 DIP style with
a MT-RJ fiber connector
interface.
ATM 2 km Backbone Links
The AFBR-5905Z is a 1300 nm
product with optical
performance compliant with
the SONET STS-3c (OC-3)
Physical Layer Interface
Specification. This physical
layer is defined in the ATM
Forum User-Network Interface
(UNI) Specification Version 3.0.
This document references the
ANSI T1E1.2 specification for
the details of the interface for
2 km multimode fiber
backbone links.
The ATM 100 Mb/s-125 MBd
Physical Layer interface is best
implemented with the AFBR-
5903Z family of FDDI
Transceivers which are
specified for use in this 4B/5B
encoded physical layer per the
FDDI PMD standard.
Features
• Multisourced 2 x 5 package style with MT-RJ
• Single +3.3 V power supply
• Wave solder and aqueous wash process compatibility
• Full compliance with ATM Forum UNI SONET OC-3
• RoHS compliant
• Receiver output squelch function enabled
Applications
• Multimode fiber ATM backbone links
• Multimode fiber ATM wiring closet to desktop links
Ordering Information
The AFBR-5905Z 1300 nm product is available for produc-
tion orders through the Avago Component Field Sales Of-
fices and Authorized Distributors world wide.
receptacle
multimode fiber physical layer specification
AFBR-5905Z = 0°C to +70°C
AFBR-5905AZ = -40°C to +85°C.
in 2 x 5 Package Style
Data Sheet
Transmitter Sections
The transmitter section of the
AFBR-5905Z utilizes a 1300
nm InGaAsP LED. This LED is
packaged in the optical
subassembly portion of the
transmitter section. It is driven
by a custom silicon IC which
converts differential PECL
logic signals, ECL referenced
(shifted) to a +3.3 V supply,
into an analog LED drive
current.
Receiver Sections
The receiver section of the
AFBR-5905Z utilizes an
InGaAs PIN photodiode
coupled to a custom silicon
transimpedance preamplifier
IC. It is packaged in the
optical subassembly portion of
the receiver.
This PIN/preamplifier combina-
tion is coupled to a custom
quantizer IC which provides
the final pulse shaping for the
logic output and the Signal
Detect function. The Data
output is differential. The
Signal Detect output is single-
ended. Both Data and Signal
Detect outputs are PECL
compatible, ECL referenced
(shifted) to a 3.3 V power
supply. The receiver outputs,
Data Out and Data Out Bar,
Features
• Multisourced 2 x 5 pack
• Single +3.3 V power sup
• Wave solder and aqueo
• Full compliance with AT
• RoHS compliant
• Receiver output squelch
Applications
• Multimode fiber ATM ba
• Multimode fiber ATM w
Ordering Information
The AFBR-5905Z 1300
product is available fo
production orders thro
Agilent Component Fie
Offices and Authorized
Distributors world wid
AFBR-5905Z = 0°C to
AFBR-5905AZ
+85°C.
with MT-RJ receptacle
process compatibility
UNI SONET OC-3 multim
physical layer specifica
enabled
links
closet to desktop links
= -40°

Related parts for AFBR-5905Z

AFBR-5905Z Summary of contents

Page 1

... DIP style with ATM 2 km Backbone Links a MT-RJ fiber connector The AFBR-5905Z is a 1300 nm product with optical perfor- interface. mance compliant with the SONET STS-3c (OC-3) Physical ATM 2 km Backbone Links Layer Interface Specification. This physical layer is defined ...

Page 2

... Receiver Sections The receiver section of the AFBR-5905Z utilizes an InGaAs PIN photodiode coupled to a custom silicon transimped- ance preamplifier IC packaged in the optical sub- are squelched at Signal Detect assembly portion of the receiver. This PIN/preamplifier Deassert. That is, when the combination is coupled to a custom quantizer IC which ...

Page 3

OVERALL RECEPTACLE CENTER LINE) Case temperature measurement point 13.59 9.6 (0.378) (0.535) MAX. MAX. 12 (0.472) 9.3 9.8 (0.366) (0.386) MAX. MAX. Ø 1.07 (0.042) DIMENSIONS IN MILLIMETERS (INCHES) NOTES: 1. THIS PAGE DESCRIBES THE MAXIMUM ...

Page 4

RX Top View RECEIVER SIGNAL GROUND RECEIVER POWER SUPPLY o o SIGNAL DETECT 3 o RECEIVER DATA OUT BAR RECEIVER DATA OUT Figure 3. Pin Out Diagram. Pin Descriptions: Pin Descriptions: Pin 1 Receiver ...

Page 5

Application Information The Applications Engineering group is available to assist 125 µm fiber cables only. The you with the technical understanding and design trade- area under the curves offs associated with these transceivers. You can contact represents the remaining OPB ...

Page 6

... HFBR-5905 SERIES taken in the handling and assembly of these transceiv 10-5 ers to prevent damage which may be induced by electro 10-6 CENTER OF SYMBOL static discharge (ESD). The AFBR-5905Z series of transceiv 10 10-8 ers meet MIL-STD- 883C Method 3015.4 Class 2 products 10 10-10 Care should be used to avoid shorting the receiver data or ...

Page 7

Board Layout - Decoupling Circuit, Ground Planes and Termination Circuits Board Layout - Decoupling Circuit, Ground Planes and It is important to take care in Termination Circuits the layout of your circuit It is important to take care in the ...

Page 8

Note 100 nF Figure 8. Alternative Termination Circuits 7.11 Ø 1.4 ±0.1 (0.28) (0.055 KEEP OUT AREA ...

Page 9

Regulatory Compliance Regulatory Compliance These transceiver products are These transceiver products are intended to enable com- intended to enable commercial mercial system designers to develop equipment that com- system designers to develop plies with the various international regulations governing equipment ...

Page 10

OF PCB TO MIN. BOTTOM OF OPENING) DIMENSIONS IN MILLIMETERS (INCHES) Figure 10. Recommended Panel Mounting Absolute Maximum Ratings Stresses in excess of the absolute ...

Page 11

... A CC AFBR-5905AZ (T = -40°C to +85° Parameter Supply Current Power Dissipation Data Input Current - Low Data Input Current - High Receiver Electrical Characteristics AFBR-5905Z (T = 0°C to +70° AFBR-5905AZ(T = -40°C to +85° Parameter Supply Current Power Dissipation Data Output Voltage - Low Data Output Voltage - High ...

Page 12

... Spectral Width - FWHM - RMS Optical Rise Time Optical Fall Time Systematic Jitter Contributed by the Transmitter Random Jitter Contributed by the Transmitter Receiver Optical and Electrical Characteristics AFBR-5905Z (T = 0°C to +70° AFBR-5905AZ (T = -40°C to +85° Parameter Input Optical Power Minimum at Window Edge ...

Page 13

... Data Out and Data Out Bar go to steady PECL levels High and Low respectively. 23. The AFBR-5905Z transceiver complies with the requirements for the trade-offs between center wavelength, spectral width, and rise/ fall times shown in Figure 11. This figure is derived from the FDDI PMD standard (ISO/IEC 9314-3 : 1990 and ANSI X3 ...

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