HFBR-5527 Agilent(Hewlett-Packard), HFBR-5527 Datasheet

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HFBR-5527

Manufacturer Part Number
HFBR-5527
Description
125 Megabaud Fiber Optic Transceiver JIS FO7 Connection
Manufacturer
Agilent(Hewlett-Packard)
Datasheet

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Part Number:
HFBR-5527
Manufacturer:
ON
Quantity:
2 000
125 Megabaud Fiber Optic
Transceiver
JIS FO7 Connection
Technical Data
Features
• Data Transmission at Signal
• Compatible with Duplex JIS
• Specified for Use with
• Transmitter and Receiver
• Conductive Plastic Housing
Applications
• Intra-System Links: Board-
• High Voltage Isolation
• Telecommunications
• Computer-to-Peripheral Data
• Industrial Control Networks
• Proprietary LANs
• Digitized Video
• Medical Instruments
• Immune to Lightning and
HCS
5965-7092E (5/97)
Rates of 1 to 125 MBd over
Distances up to 100 Meters
FO7 and Simplex JIS FO5
Connectors
Plastic Optical Fiber (POF),
and with Large Core Silica
Fiber (HCS
Application Circuit
Schematics Available
Provides Electrical Shield
to-Board, Rack-to-Rack
Switching Systems
Links, PC Bus Extension
Voltage Transients
®
is a registered trademark of Spectran Corporation.
®
)
Description
The 125 MBd transceiver is a
cost-effective fiber-optic solution
for transmission of 125 MBd data
up to 100 meters with HCS
fiber. The data link consists of a
650 nm visible, red LED trans-
mitter and a PIN/preamp receiver.
These can be used with low-cost
plastic or hard clad silica fiber.
One millimeter diameter plastic
fiber provides the lowest cost
solution for distances under 25
meters. The lower attenuation of
HCS
sion over longer distance. These
components can be used for high
speed data links without the
problems common with copper
wire solutions.
The transmitter is a high power
650 nm LED. Both transmitter
and receiver are molded in one
housing which is compatible with
the FO7 connector. This con-
nector is designed to efficiently
couple the power into POF or
HCS
®
®
fiber allows data transmis-
fiber.
®
HFBR-5527
With the recommended drive
circuit, the LED operates at
speeds from 1-125 MBd. The
analog high bandwidth receiver
contains a PIN photodiode and
internal transimpedance
amplifier. With the recommended
application circuit for 125 MBd
operation, the performance of the
complete data link is specified for
0-25 meters with plastic fiber. A
wide variety of other digitizing
circuits can be combined with the
HFBR-5527 Series to optimize
performance and cost at higher or
lower data rates.
165

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HFBR-5527 Summary of contents

Page 1

... With the recommended application circuit for 125 MBd operation, the performance of the complete data link is specified for 0-25 meters with plastic fiber. A wide variety of other digitizing circuits can be combined with the HFBR-5527 Series to optimize performance and cost at higher or lower data rates. 165 ...

Page 2

... HFBR-5527 125 MBd Data Link Data link operating conditions and performance are specified for the transmitter and receiver in Recommended Operating Conditions for the Circuits in Figures 1 and 2. Parameter Ambient Temperature Supply Voltage Data Input Voltage - Low Data Input Voltage - High Data Output Load ...

Page 3

Plastic Optical Fiber (1 mm POF) Transmitter Application Circuit: Performance of the transmitter in the recommended application circuit (Figure 1) for POF; 1-125 MBd Parameter Average Optical Power 1 mm POF Average Modulated Power 1 mm POF Optical ...

Page 4

Plastic and Hard Clad Silica Optical Fiber Receiver Application Circuit: [4] Performance of the receiver in the recommended application circuit (Figure 1); 1-125 MBd unless otherwise stated. Parameter Data Output Voltage - Low Data Output Voltage - High ...

Page 5

V ECL SERIAL DATA SOURCE 0.1 µ – µF 0.1 µF 10 µF 0.1 µ ECL SERIAL DATA RECEIVER 120 120 Figure 2. Recommended Power Supply Filter and +5 ...

Page 6

... Megabaud Fiber Optic Link Transmitter/Receiver Description The HFBR-5527 incorporates a 650 nm LED, a PIN photodiode, and transimpedance preamplifier. The 650 nm LED is suitable for use with current peaking to decrease optical response time and can be used with the PIN preamplifier to build an optical transceiver that can be operated at signaling rates from 1 to 125 ® ...

Page 7

... HFBR-5527 Transmitter Electrical/Optical Characteristics Parameter Symbol Transmitter Output Optical Power POF Transmitter Output Optical ® Power, 200 m HCS Output Optical Power Temperature Coefficient Peak Emission Wavelength Peak Wavelength Temperature Coefficient Spectral Width Forward Voltage Forward Voltage Temperature Coefficient Transmitter Numerical ...

Page 8

HP8082A PULSE BCP MODEL 300 GENERATOR 500 MHz BANDWIDTH SILICON AVALANCHE PHOTODIODE HP54002A 50 OHM 50 OHM BNC LOAD OSCILLOSCOPE INPUT POD RESISTOR Figure 5. Test Circuit for Measuring Unpeaked Rise and Fall Times. 2.4 0° C 2.2 25° C ...

Page 9

... It is recommended that pins 5 and 6 be connected to Rx ground to reduce coupling of electrical noise. Refer to Figure 1. The connections between pins 1 and 2 of the HFBR-5527 and pins 13 and 12 of the MC10H116 should be adjacent and nearly the same length to maximize the common mode rejection of the MC10H116 to eliminate cross talk between the transmitter and receiver ...

Page 10

... RECEIVER 9 10 2.3 Figure 9. Recommended Power Supply Filter Circuit. The HFBR-5527 is typically used to construct 125 MBd digital fiber-optic receivers which use the same +5 volt power supply that powers the host system’s microprocessors, CMOS logic, or TTL logic. To build a digital receiver, the analog HFBR-5527 ...

Page 11

BIAS & FILTER CIRCUITS Figure 10. Simplified Receiver Schematic. Figure 11. Typical Pulse Width Distortion vs. Peak Input Power. 4 POSITIVE SUPPLY 900 ANALOG OUTPUT 5.0 mA 2.3 GROUND Figure 12. Typical Output Spectral Noise Density vs. ...

Page 12

... HFBR-5527 Mechanical Dimensions 16 8.5 0.3 4.39 5.85 5.76 0.51 0.64 Printed Circuit Board Layout Dimensions 20.3 1. TOP VIEW ELECTRICAL PIN FUNCTIONS PIN NO OUT 2 RX GND 3 RX GND GND GND* 7 ANODE 8 CATHODE 9 CASE GND 10 CASE GND *NO INTERNAL CONNECTION 176 22 10.16 3.5 2.54 20 ALL DIMENSIONS IN MILLIMETERS (INCHES). ALL DIMENSIONS ± ...

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