HFBR-0573 Avago Technologies US Inc., HFBR-0573 Datasheet

Fiber Optics, Evaluation Kit

HFBR-0573

Manufacturer Part Number
HFBR-0573
Description
Fiber Optics, Evaluation Kit
Manufacturer
Avago Technologies US Inc.
Datasheet

Specifications of HFBR-0573

Silicon Core Number
HFBR-5601/5602, HFCT-5611/5612
Features
One Fully Assembled GBIC Test Fixture And Literature
Tool / Board Applications
Transceivers
Main Purpose
Interface, Ethernet
Embedded
No
Utilized Ic / Part
HFBR-5601, HFBR-5602, HFCT-5611, HFCT-5612
Primary Attributes
GBIC Gigabit Ethernet or Fibre Channel Applications
Secondary Attributes
Hot Pluggable
Description/function
Fiber Optic Kit
Development Tool Type
Hardware / Software - Eval/Demo Board
Rohs Compliant
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
For Use With/related Products
HFBR-560x, HFCT-561x
Lead Free Status / RoHS Status
Lead free / RoHS Compliant, Contains lead / RoHS non-compliant
HFBR-5601 and HFCT-5611
Product Description Gigabit Interface Converters (GBIC)
for Gigabit Ethernet
Data Sheet
Description
The HFBR-56xx/HFCT-56xx family of interface converters
meet the Gigabit Interface Converter specification Rev.
5.4, an industry standard. The family provides a uniform
form factor for a wide variety of standard connections
to transmission media. The converters can be inserted
or removed from a host chassis without removing
power from the host system.
The converters are suitable for interconnections in the
Gigabit Ethernet hubs and switches environment. The
design of these converters is also practical for other
high performance, point-to-point communication
requiring gigabit interconnections. Since the converters
are hot-pluggable, they allow system configuration
changes simply by plugging in a different type of
converter.
The mechanical and electrical interfaces of these
converters to the host system are identical for all
implementations of the converter regardless of external
media type. A 20-pin connector is used to connect the
converter to the host system. Surge currents are
eliminated by using pin sequencing at this connector
and a slow start circuit. Two ground tabs at this
connector also make contact before any other pins,
discharging possible component-damaging static
electricity. In addition, the connector itself performs a
two-stage contact sequence. Operational signals and
power supply ground make contact in stage 1 while
power makes contact in stage 2.
Features
• Compliant with Gigabit Interface Converter
• HFBR-5601 is compliant with proposed
• HFCT-5611 is compliant with the ANSI 100-SM-LC-L
• Performance:
• Horizontal or vertical installation
• AEL Laser Class 1 eye safe per IEC 60825-1
• AEL Laser Class I eye safe per US 21 CFR
• Hot-pluggable
Applications
• Switch to switch interface
• High speed I/O for file servers
• Bus extension applications
Related Products
• 850 nm VCSEL, 1 x 9 and SFF transceivers for 1000
• 1300 nm, 1 x 9 Laser transceiver for 1000 base-LX
• Physical layer ICs available for optical interface
specification Rev. 5.4 (1)
specifications for IEEE 802.3z/D5.0 Gigabit Ethernet
(1000 Base-SX)
revision 2 10 km link specification
HFBR-5601:
HFCT-5611:
base SX applications (HFBR-53D5,
HFBR-5912E)
applications (HFCT-53D5)
(HDMP-1636A/46A)
500 m with 50/125 µm MMF
220 m with 62.5/125 µm MMF
550 m with 50/125 µm MMF
550 m with 62.5/125 µm MMF
10 km with 9/125 µm SMF

Related parts for HFBR-0573

HFBR-0573 Summary of contents

Page 1

... Product Description Gigabit Interface Converters (GBIC) for Gigabit Ethernet Data Sheet Description The HFBR-56xx/HFCT-56xx family of interface converters meet the Gigabit Interface Converter specification Rev. 5.4, an industry standard. The family provides a uniform form factor for a wide variety of standard connections to transmission media. The converters can be inserted or removed from a host chassis without removing power from the host system ...

Page 2

... The HFCT-5611 complies with Annex F of the GBIC specification Revision 5.4 and reaches 10 km with 9/ 125 µm single mode fiber. Both the HFBR-5601 and the HFCT-5611 are Class 1 Eye Safe laser devices. Serial Identification The HFBR-56xx and HFCT-5611 family complies with Annex D (Module Definition 4) of the GBIC specification Revision 5 ...

Page 3

... GBIC Serial ID Memory Contents - HFBR-5601 Addr Hex ASCII Addr Hex ASCII Addr Hex ASCII Addr Hex ASCII 100 20 3 101 20 0 102 20 3 103 20 2 104 20 8 105 20 3 106 20 4 107 20 3 108 20 7 109 20 3 110 20 0 111 20 9 112 ...

Page 4

GBIC Serial ID Memory Contents - HFCT-5611 Addr Hex ASCII Addr ...

Page 5

... Figure 1. Outline Drawing of HFBR-5601 and HFCT-5611. 5 ...

Page 6

... It may also result in improper operation of the circuitry, and possible overstress of the semiconductor components. Device degradation or product failure may result. Connection of either the HFBR-5601 or the HFCT-5611 to a non-approved optical source, operating above the recommended absolute maximum conditions, or operating in a manner inconsistent with unit design ...

Page 7

SCA-2 Host Connector Characteristics Table 1. SCA-2 Host connector pin assignment Pin Name 1 RX_LOS 2 RGND 3 RGND 4 MOD_DEF(0) 5 MOD_DEF(1) 6 MOD_DEF(2) 7 TX_DISABLE* 8 TGND 9 TGND 10 TX_FAULT Notes: A sequence value of 1 ...

Page 8

... Short Wavelength GBIC: HFBR-5601 Transmitter Section The transmitter section consists of an 850 nm VCSEL in an optical subassembly (OSA), which mates to the fiber cable. The VCSEL OSA is driven by a custom, silicon bipolar IC which converts differential logic signals into an analog Laser Diode drive current. ...

Page 9

... HFBR-5601 Transmitter Electrical Characteristics (T = 0°C to +60° Parameter Transmitter Differential Input Voltage Transmit Fault Load TX-DISABLE Assert Time TX_DISABLE Negate Time Time to initialize, includes reset of TX_FAULT TX_FAULT from fault to assertion TX_DISABLE time to start reset Receiver Electrical Characteristics (T = 0°C to +60° ...

Page 10

... HFBR-5601 Transmitter Optical Characteristics (T = 0°C to +60° Parameter Output Optical Power 50/125 µ 0.20 fiber Output Optical Power 62.5/125 µ 0.275 fiber Optical Extinction Ratio Center Wavelength Spectral Width - rms Optical Rise/Fall Time RIN 12 Total Contributed Jitter Coupled Power Ratio Max ...

Page 11

Long Wavelength GBIC: HFCT-5611 Transmitter Section The transmitter section consists of a 1300 nm MQW Fabry Perot Laser in an optical subassembly (OSA), which mates to the fiber optic cable. The Laser OSA is driven by a custom, silicon bipolar ...

Page 12

HFCT-5611 Transmitter Electrical Characteristics (T = 0°C to +60° Parameter Transmitter Differential Input Voltage Tranmit Fault Load Transmit Fault Output - Low Transmit Fault Output - High TX_DISABLE Assert Time TX_DISABLE ...

Page 13

HFCT-5611 Transmitter Optical Characteristics (T = 0°C to +60° Parameter Output Optical Power 9/125 µm SMF 62.5/125 µm MMF 50/125 µm MMF Optical Extinction Ratio Center Wavelength Spectral Width - rms ...

Page 14

For product information and a complete list of distributors, please go to our web site: Avago, Avago Technologies, and the A logo are trademarks of Avago Technologies, Limited in the United States and other countries. Data subject to change. Copyright ...

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