HFBR-53D5FM HP [Agilent(Hewlett-Packard)], HFBR-53D5FM Datasheet

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HFBR-53D5FM

Manufacturer Part Number
HFBR-53D5FM
Description
1 x 9 Fiber Optic Transceivers for Gigabit Ethernet
Manufacturer
HP [Agilent(Hewlett-Packard)]
Datasheet

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Company
Part Number
Manufacturer
Quantity
Price
Part Number:
HFBR-53D5FM
Manufacturer:
AGILENT
Quantity:
480
1 x 9 Fiber Optic Transceivers
for Gigabit Ethernet
Technical Data
Features
• Compliant with
• Industry Standard
• Performance
• IEC 60825-1 Class 1/CDRH
• Single +5 V Power Supply
• Wave Solder and Aqueous
Specifications for
IEEE- 802.3z Gigabit
Ethernet
Mezzanine Height 1 x 9
Package Style with Integral
Duplex SC Connector
HFBR-53D5:
220 m with 62.5/125 m MMF
500 m with 50/125 m MMF
HFCT-53D5:
550 m with 62.5/125 m MMF
550 m with 50/125 m MMF
10 km with 9/125 SMF
Class I Laser Eye Safe
Operation with PECL Logic
Interfaces
Wash Process Compatible
Applications
• Switch to Switch Interface
• Switched Backbone
• High Speed Interface for
• High Performance Desktops
Related Products
• Physical Layer ICs Available
• Versions of this Transceiver
• Gigabit Interface Converters
Description
The HFBR/HFCT-53D5
transceiver from Agilent
Technologies allows the system
designer to implement a range of
solutions for multimode and
single mode Gigabit Ethernet
applications.
The overall Agilent transceiver
product consists of three
sections: the transmitter and
receiver optical subassemblies,
Applications
File Servers
for Optical or Copper
Interface (HDMP-1636A/
1646A)
Module Also Available for
Fibre Channel
(HFBR/HFCT-53D3)
(GBIC) for Gigabit Ethernet
(CX, SX, LX)
HFBR-53D5 Family,
HFCT-53D5 Family,
an electrical subassembly, and
the package housing which
incorporates a duplex SC
connector receptacle.
Transmitter Section
The transmitter section of the
HFBR-53D5 consists of an
850 nm Vertical Cavity Surface
Emitting Laser (VCSEL) in an
optical subassembly (OSA),
which mates to the fiber cable.
The HFCT-53D5 incorporates a
1300 nm Fabry-Perot (FP) Laser
designed to meet the Gigabit
Ethernet LX specification. The
OSA is driven by a custom,
silicon bipolar IC which converts
differential PECL logic signals
(ECL referenced to a +5 Volt
supply) into an analog laser diode
drive current.
850 nm VCSEL
1300 nm FP Laser

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HFBR-53D5FM Summary of contents

Page 1

... SC connector receptacle. Transmitter Section The transmitter section of the HFBR-53D5 consists of an 850 nm Vertical Cavity Surface Emitting Laser (VCSEL optical subassembly (OSA), which mates to the fiber cable. The HFCT-53D5 incorporates a 1300 nm Fabry-Perot (FP) Laser designed to meet the Gigabit Ethernet LX specification ...

Page 2

... The HFBR/HFCT-53D5 is compatible with industry- standard wave or hand solder processes. Process plug This transceiver is supplied with a process plug (HFBR-5000) for protection of the optical ports within the duplex SC connector receptacle. This process plug prevents contamination during wave solder and aqueous rinse as well as during handling, shipping and storage ...

Page 3

... Connection of the HFBR/HFCT- 53D5 to a nonapproved optical source, operating above the recommended absolute maximum conditions or operating the HFBR/HFCT-53D5 in a manner inconsistent with its design and function may result in hazardous radiation exposure and may be considered an act of modifying or manufacturing a laser product. The person(s) performing such ...

Page 4

... In the HFBR-53D5 there are three key elements to the laser driver safety circuitry: a monitor diode, a window detector circuit, and direct control of the laser bias ...

Page 5

... EMI regulatory standard; and more importantly, it reduces the possibility of interference to neighboring equipment. There are three options available for the HFBR-53D5 and two options for the HFCT-53D5 with regard to EMI shielding which provide the designer with a means to achieve good EMI performance. The EMI ...

Page 6

... Ethernet evaluation board (Part # HFBR-0535). This board allows testing of the fiber-optic VCSEL transceiver. It includes the HFBR-53D5 transceiver, test board, and application instructions. For single mode Absolute Maximum Ratings Parameter Storage Temperature Supply Voltage Data Input Voltage Transmitter Differential Input Voltage Output Current ...

Page 7

... Power dissipation value is the power dissipated in the receiver itself calculated as the sum of the products of V minus the sum of the products of the output voltages and currents. 3. These outputs are compatible with KH, and 100 K ECL and PECL inputs. 4. These are 20-80% values. HFBR-53D5 Family, 850 nm VCSEL Transmitter Optical Characteristics ( + ...

Page 8

Receiver Optical Characteristics ( + 4. 5. Parameter Input Optical Power Stressed Receiver Sensitivity Stressed Receiver Eye Opening at TP4 Receive Electrical 3 dB Upper Cutoff Frequency Operating ...

Page 9

HFCT-53D5 Family, 1300 nm FP-Laser Transmitter Optical Characteristics ( + 4. 5. Parameter Output Optical Power 9 m SMF 62.5 m MMF 50 m MMF Optical Extinction Ratio ...

Page 10

... V Receiver Signal Ground EER Directly connect this pin to receiver signal ground plane. (For HFBR-53D5 RD+ Receiver Data Out RD open-emitter output circuit. Terminate this high-speed differential PECL output with standard PECL techniques at the follow-on device input pin. ...

Page 11

... USE SURFACE-MOUNT COMPONENTS FOR OPTIMUM HIGH-FREQUENCY PERFORMANCE. USE 50 MICROSTRIP OR STRIPLINE FOR SIGNAL PATHS. LOCATE 50 TERMINATIONS AT THE INPUTS OF RECEIVING UNITS. Figure 3. Recommended Gigabit/sec Ethernet HFBR/HFCT-53D5 Fiber-Optic Transceiver and HDMP-1636A/1646A SERDES Integrated Circuit Transceiver Interface and Power Supply Filter Circuits Vdc 0.1 µF ...

Page 12

... DIMENSIONS ARE IN MILLIMETERS (INCHES). ALL DIMENSIONS ARE ± 0.025 mm UNLESS OTHERWISE SPECIFIED. Figure 5. Package Outline Drawing for HFBR-53D5. 12 1.9 ± 0.1 (2X) ø 0.075 ± 0.004 –A– Ø0.000 A M 0.8 ± 0.1 (9X) ø 0.032 ± 0.004 Ø0.000 M ...

Page 13

... DIMENSIONS ARE IN MILLIMETERS (INCHES). ALL DIMENSIONS ARE ± 0.025 mm UNLESS OTHERWISE SPECIFIED. Figure 6. Package Outline for HFBR/HFCT-53D5EM. 13 29.6 UNCOMPRESSED (1.16) 39.6 12.7 (1.56) MAX. (0.50) AREA RESERVED FOR PROCESS PLUG SLOT WIDTH 2.09 10.2 UNCOMPRESSED MAX. (0.08) (0.40) 1.3 (0.05) 20.32 15.8 ± ...

Page 14

... PCB BOTTOM VIEW Figure 7. Suggested Module Positioning and Panel Cut-out for HFBR/HFCT-53D5EM. 0.8 2X (0.032) 0.8 2X (0.032) 9.4 27.4 ± 0.50 (0.37) (1.08 ± 0.02) 6.35 (0.25) MODULE PROTRUSION 14 +0.5 10.9 -0. +0.02 0.43 -0.01 ...

Page 15

... DIMENSIONS ARE IN MILLIMETERS (INCHES). ALL DIMENSIONS ARE ± 0.025 mm UNLESS OTHERWISE SPECIFIED. Figure 8. Package Outline for HFBR/HFCT-53D5FM. 39.6 12.7 (1.56) MAX. (0.50) 1.01 (0.40) AREA RESERVED FOR PROCESS PLUG 25.8 (1.02) MAX. SLOT DEPTH 10.2 MAX. (0.40) 22.0 9.8 MAX. (0.87) (0.386) 20.32 15.8 ± ...

Page 16

... Ordering Information 850 nm VCSEL (SX – Short Wavelength Laser) HFBR-53D5 No shield, plastic housing. HFBR-53D5EM Extended/protruding shield, metallized housing. HFBR-53D5FM Flush shield, metallized housing. 1300 nm FP Laser (LX – Long Wavelength Laser) HFCT-53D5EM Extended/protruding shield, metallized housing. HFCT-53D5FM Flush shield, metallized housing. DIMENSION SHOWN FOR MOUNTING MODULE 1 ...

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