HFBR-1528 Avago Technologies US Inc., HFBR-1528 Datasheet

XMITTER OPT HI PERFORMANCE HORZ

HFBR-1528

Manufacturer Part Number
HFBR-1528
Description
XMITTER OPT HI PERFORMANCE HORZ
Manufacturer
Avago Technologies US Inc.
Datasheet

Specifications of HFBR-1528

Wavelength
650nm
Spectral Bandwidth
21nm
Voltage - Forward (vf) Typ
2.1V
Current - Dc Forward (if)
60mA
Voltage - Dc Reverse (vr) (max)
3V
Capacitance
60pF
Connector Type
Versatile Link
Function
High Preformance Link Transmitter, High Voltage Transient, Reduces Voltage Transient Susceptibility.
Product
Transmitter
Data Rate
40 MBd
Diode Capacitance
60 pF
Maximum Rise Time
13 ns
Maximum Fall Time
10 ns
Operating Supply Voltage
4.75 V to 5.25 V
Maximum Operating Temperature
+ 85 C
Minimum Operating Temperature
- 40 C
For Use With
Plastic Optical Fiber
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
HFBR-1528Z
Quantity:
600
Part Number:
HFBR-1528Z
Manufacturer:
AVAGO
Quantity:
784
Company:
Part Number:
HFBR-1528Z
Quantity:
8 000
HFBR-0508 Series
HFBR-1528 Transmitter
HFBR-2528 Receiver
10 Megabaud Versatile Link Fiber Optic
Transmitter and Receiver
for 1 mm POF and 200 µm HCS
Data Sheet
Description
The HFBR-0508 Series consists of a fiber-optic trans-
mitter and receiver operating at a 650 nm wave-
length (red). The HFBR-1528 transmitter is an
LED in a low cost plastic housing designed to ef-
ficiently couple power into 200 µm diameter HCS
and 1 mm diameter POF. The HFBR-2528 receiver incor-
porates a PIN detector and digital output IC compatible
with CMOS and TTL logic families.
HFBR-0508 links operate from DC to 10 MBd at distances
up to 50 meters with 1 mm POF and up to 500 meters
with 200 µm HCS
quired when using recommended circuits, simplifying
design.
Versatile Link components can be interlocked (N-
plexed together) to minimize space and to provide
dual connections with the duplex connectors. Up to
eight packages can be interlocked and inserted into a
printed circuit board.
POF and HCS are available in pre-connectored lengths or
can be easily field-terminated. A single transmitter drive
current for POF and HCS allows both fibers to be used
with a single design.
HCS
®
is a registered trademark of SpecTran Corporation.
CAUTION:. It is advised that normal static precautions be taken in handling and assembly
of these components to prevent damage and/or degradation which may be induced by ESD.
®
. No minimum link distances are re-
®
Features
• Data transmission at signal rates of dc to 10 MBd
• Up to 50 meters distances with 1 mm Plastic Optical
• Up to 500 meters distances with 200 µm Hard Clad Silica
• Wide dynamic range receiver allows operation from zero
• Link distances specified for variations in temperature,
• DC coupled receiver with CMOS/TTL output for easy
• Pulse width distortion controlled to limit distortion from
• High noise immunity
• Compatible with Avago’s Versatile Link family of con-
Applications
• Industrial control and factory automation
• Serial field buses
• Intra-system links; Board-to-Board, Rack-to-Rack
• Extension of RS-232, RS-485
• Elimination of ground loops
• High voltage isolation
• Reduces voltage transient susceptibility
Fiber (POF)
(HCS
to maximum link distance with a single transmitter
drive current
power supply, and fiber attenuation
designs: no data encoding or digitizing circuitry re-
quired
low duty cycle or burst mode data
nectors, for easy termination of fiber
®
)

Related parts for HFBR-1528

HFBR-1528 Summary of contents

Page 1

... Description The HFBR-0508 Series consists of a fiber-optic trans- mitter and receiver operating at a 650 nm wave- length (red). The HFBR-1528 transmitter is an LED in a low cost plastic housing designed to ef- ficiently couple power into 200 µm diameter HCS and 1 mm diameter POF. The HFBR-2528 receiver incor- porates a PIN detector and digital output IC compatible with CMOS and TTL logic families ...

Page 2

... POF is HFBR-R/EXXYYY plastic (1 mm) optical fiber. Worst case attenuation used (0.23 dB/m from -40°C to +85°C at 660 nm). 4. HCS is HFBR-H/VXXYYY hard clad silica (200/230 µm) fiber. Worst case attenuation is used (10 dB/km from 0°C to +70°C and 12 dB/km from -40°C to +85°C at 650 nm). ...

Page 3

... T compensation which reduces the variation Typical value measured from junction to PC board solder joint for horizontal mount package, HFBR-1528. 5. Pins 5 and 8 are for mounting and retaining purposes, but are electrically connected; pins 3 and 4 are electrically isolated recommended that pins and 8 all be connected to ground to reduce coupling of electrical noise. ...

Page 4

... Figure 2. Typical Normalized Optical Power vs. Drive Current. HFBR-1528 fig 1 0.8 0.7 -40 - TEMPERATURE – °C Figure 4. Typical Normalized Optical Power vs. Temperature (in Recom- mended Drive Circuit). HFBR-1528 fig 1/2 SN75451 7 DATA 4 Figure 6. Recommended Transmitter Drive Circuit ( Nominal 25°C). HFBR-1528 fig 6 F, HFBR-1528 ...

Page 5

... In recommended receiver circuit, with an optical signal from the recommended transmitter circuit. 7. Pin 4 is electrically isolated internally. Pin 4 may be externally connected to pin 1 for board layout compatibility with HFBR-25X1, HFBR-25X2 and HFBR-25X4. Otherwise it is recommended pin 4 be grounded as in Figure 5. ...

Page 6

... Figure 2. Typical POF Receiver Pulse Width Distortion vs. Optical Power at 10 MBd. -13 -14 -15 -16 -17 -18 4.7 4.8 4.9 Figure 4. Typical POF Receiver Pulse Width Distortion vs. Power Supply Voltage at Low Optical Power, (-21 dBm,pk, 10 MBd DATA -14 - HFBR-2528 fig 2 5.0 5.1 5.2 5.3 5.4 5.5 V – VOLTS CC HFBR-2528 fig 4 ...

Page 7

... MAX. 3.56 (0.140) MIN. 7.62 (0.300) 0.64 (0.025) DIA. NOTE: ALL DIMENSIONS IN MM (INCHES). 1.73 ALL DIMENSIONS ± 0.25 mm UNLESS 3.0 (0.068) OTHERWISE SPECIFIED. (0.118) ELECTRICAL PIN FUNCTIONS TRANSMITTER RECEIVER PIN NO. HFBR-1528 HFBR-2528 1 ANODE SIGNAL CATHODE GROUND 3 GROUND GROUND* GROUND* ...

Page 8

For product information and a complete list of distributors, please go to our website: 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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