HFBR-5803A HP [Agilent(Hewlett-Packard)], HFBR-5803A Datasheet

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HFBR-5803A

Manufacturer Part Number
HFBR-5803A
Description
FDDI 100 Mb/s ATM and Fast Ethernet Transceivers in Low Cost 1 x 9 Package Style
Manufacturer
HP [Agilent(Hewlett-Packard)]
Datasheet
Description
The HFBR-5800 family of trans-
ceivers from Agilent provide the
system designer with products
to implement a range of Fast
Ethernet, FDDI and ATM
(Asynchronous Transfer Mode)
designs at the 100 Mb/s-125
MBd rate.
The transceivers are all supplied
in the industry standard 1 x 9
SIP package style with either a
duplex SC or a duplex ST*
connector interface.
FDDI PMD, ATM and Fast Ethernet
2 km Backbone Links
The HFBR-5803/5803T are
1300 nm products with optical
performance compliant with the
FDDI PMD standard. The FDDI
PMD standard is ISO/IEC
9314-3:
1990 and ANSI X3.166 - 1990.
These transceivers for 2 km
multimode fiber backbones are
supplied in the small 1 x 9
duplex SC or ST package style.
The HFBR-5803/-5803T is useful
for both ATM 100 Mb/s
interfaces and Fast Ethernet 100
Base-FX interfaces. The ATM
Forum User-Network Interface
(UNI) Standard, Version 3.0,
defines the Physical Layer for
100 Mb/s Multimode Fiber
Interface for ATM in Section 2.3
to be the FDDI PMD Standard.
HFBR-5803/5803T/5803A/5803AT
FDDI, 100 Mb/s ATM, and Fast Ethernet
Transceivers in Low Cost 1 x 9 Package
Style
Data Sheet
Likewise, the Fast Ethernet
Alliance defines the Physical
Layer for 100 Base-FX for Fast
Ethernet to be the FDDI PMD
Standard.
ATM applications for physical
layers other than 100 Mb/s
Multimode Fiber Interface are
supported by Agilent. Products
are available for both the single
mode and the multimode fiber
SONET OC-3c (STS-3c) ATM
interfaces and the 155 Mb/s-194
MBd multimode fiber ATM
interface as specified in the ATM
Forum UNI.
Contact your Agilent sales
representative for information
on these alternative Fast
Ethernet, FDDI and ATM
products.
Ordering Information
The HFBR-5803/5803T/5803A/
5803AT 1300 nm products are
available for production orders
through the Agilent Component
Field Sales Offices and
Authorized Distributors world
wide.
0 °C to +70 °C
HFBR-5803/5803T
-10 °C TO +85 °C
HFBR-5803A/5803AT
Features
• Full compliance with the optical
• Full compliance with the FDDI
• Full compliance with the optical
• Full compliance with the optical
• Multisourced 1 x 9 package style
• Wave solder and aqueous wash
• Manufactured in an ISO 9002
• Single +3.3 V or +5 V power
Applications
• Multimode fiber backbone links
• Multimode fiber wiring closet to
• Very low cost multimode fiber
• Multimode fiber media converters
*ST is a registered trademark of AT&T
Note: The “T” in the product numbers
indicates a transceiver with a duplex ST
connector receptacle.
Product numbers without a “T” indicate
transceivers with a duplex SC connector
receptacle.
performance requirements of the
FDDI PMD standard
LCF-PMD standard
performance requirements of the
ATM 100 Mb/s physical layer
performance requirements of
100 Base-FX version of IEEE 802.3u
with choice of duplex SC or
duplex ST* receptacle
process compatible
certified facility
supply
desktop links
links from wiring closet to
desktop
Lightguide Cable Connectors.

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HFBR-5803A Summary of contents

Page 1

... Agilent Component Field Sales Offices and Authorized Distributors world wide. 0 °C to +70 °C HFBR-5803/5803T -10 °C TO +85 °C HFBR-5803A/5803AT Features • Full compliance with the optical performance requirements of the FDDI PMD standard • Full compliance with the FDDI LCF-PMD standard • ...

Page 2

... PECL logic signals, ECL referenced (shifted +3 supply, into an analog LED drive current. Receiver Sections The receiver sections of the HFBR-5803 and HFBR-5805 series utilize InGaAs PIN photo- diodes coupled to a custom silicon transimpedance preamplifier IC. These are packaged in the optical sub- assembly portion of the receiver ...

Page 3

... ELECTRICAL SUBASSEMBLY DIFFERENTIAL DATA OUT SINGLE-ENDED SIGNAL QUANTIZER IC DETECT OUT DIFFERENTIAL DATA IN DRIVER IC TOP VIEW Figure 1a. ST Connector Block Diagram. Case Temperature Measurement Point 25.40 (1.000) HFBR-5803 AGILENT DATE CODE (YYWW) SINGAPORE + 0.08 0.75 – 0.05 3.30 ± 0.38 + 0.003 10.35 ) (0.030 (0.130 ± 0.015) – 0.002 (0.407) 2.92 (0 ...

Page 4

... MAX. (1.000) HFBR-5803T DATE CODE (YYWW) SINGAPORE 12.0 MAX. (0.471) 3.2 (0.126) 0.46 Ø (0.018) NOTE 1 20.32 [(8x (2.54/0.100)] 17.4 (0.800) (0.685) 22.86 21.4 (0.900) (0.843) 3.6 (0.142) 1.3 (0.051) NOTE 1: PHOSPHOR BRONZE IS THE BASE MATERIAL FOR THE POSTS & PINS WITH TIN LEAD OVER NICKEL PLATING. DIMENSIONS IN MILLIMETERS (INCHES). ...

Page 5

... The cable parameters used come from the ISO/IEC JTC1/SC 25/ WG3 Generic Cabling for Customer Premises per DIS 11801 document and the EIA/TIA-568-A Commercial Building Telecommunications Cabling Standard per SP-2840. 12 HFBR-5803, 62.5/125 µ HFBR-5803 50/125 µ 0.3 0.5 1 ...

Page 6

... µ µH COIL OR FERRITE INDUCTOR. Figure 7. Recommended Decoupling and Termination Circuits damage which may be induced by electrostatic discharge (ESD). The HFBR-5800 series of transceivers meet MIL-STD-883C Method 3015.4 Class 2 products. Care should be used to avoid shorting the receiver data or signal detect outputs directly to ground without proper current limiting impedance ...

Page 7

Solder and Wash Process Compatibility The transceivers are delivered with protective process plugs inserted into the duplex SC or duplex ST connector receptacle. This process plug protects the optical subassemblies during wave solder and aqueous wash processing and acts as ...

Page 8

NOTE 1: MINIMUM DISTANCE FROM FRONT OF CONNECTOR TO THE PANEL FACE. Figure 8a. Recommended Common Mechanical Layout for SC and Connectored Transceivers. Regulatory Compliance These transceiver products are intended to enable ...

Page 9

... TRANSMITTER OUTPUT OPTICAL C CENTER WAVELENGTH - nm HFBR-5803 FDDI TRANSMITTER TEST RESULTS AND tr/f ARE CORRELATED AND C COMPLY WITH THE ALLOWED SPECTRAL WIDTH AS A FUNCTION OF CENTER WAVELENGTH FOR VARIOUS RISE AND FALL TIMES. Figure 9. Transmitter Output Optical Spectral Width (FWHM) vs. Transmitter Output Optical Center Wavelength and Rise/Fall Times ...

Page 10

... TIME INTERVAL 0.10 0.025 0.0 -0.025 -0.05 5.6 10.0 THE HFBR-5803 OUTPUT OPTICAL PULSE SHAPE SHALL FIT WITHIN THE BOUNDARIES OF THE PULSE ENVELOPE FOR RISE AND FALL TIME MEASUREMENTS. Figure 10. Output Optical Pulse Envelope -10 2 BER 2 -12 1 BER ...

Page 11

SIGNAL _ DETECT (ON) SIGNAL _ DETECT (OFF MAX - MAXIMUM ACQUISITION TIME (SIGNAL MAX IS THE MAXIMUM SIGNAL _ DETECT ASSERTION TIME FOR THE STATION MAX SHALL NOT EXCEED ...

Page 12

... B. Ambient Operating Temperature corresponds to transceiver case temperature of -10 °C mininum to +100 °C maximum with necessary airflow applied. Recommended case temperature measurement point can be found in Figure 2. Transmitter Electrical Characteristics (HFBR-5803/5803T 0°C to +70° (HFBR-5803A/HFBR-5803AT -10°C to +85° Parameter Supply Current Power Dissipation ...

Page 13

... Signal Detect Output Voltage - Low Signal Detect Output Voltage - High Signal Detect Output Rise Time Signal Detect Output Fall Time Transmitter Optical Characteristics (HFBR-5803/5803T 0°C to +70° (HFBR-5803A/HFBR-5803AT -10°C to +85° Parameter Output Optical Power BOL 62.5/125 µ 0.275 Fiber EOL ...

Page 14

... Receiver Optical and Electrical Characteristics (HFBR-5803/5803T 0°C to +70° (HFBR-5803A/HFBR-5803AT -10°C to +85° Parameter Input Optical Power Minimum at Window Edge Input Optical Power Minimum at Eye Center Input Optical Power Maximum Operating Wavelength Duty Cycle Distortion Contributed by the Receiver ...

Page 15

This parameter complies with the FDDI PMD requirements for the trade-offs between center wavelength, spectral width, and rise/ fall times shown in Figure 9. 15. This parameter complies with the optical pulse envelope from the FDDI PMD shown in ...

Page 16

For product information and a complete list of distributors, please go to our web site. For technical assistance call: Americas/Canada: +1 (800) 235-0312 or (408) 654-8675 Europe: +49 (0) 6441 92460 China: 10800 650 0017 Hong Kong: (+65) ...

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