HFBR-1506AMZ/HFBR-2506AMZ
Fiber Optic SMA Transmitters and Receivers
for 16 MBd SERCOS Applications
Data Sheet
Description
Features
SERCOS, an acronym for SErial Realtime COmmunications
Systems, is a standard digital interface for communication
in industrial CNC applications. SERCOS is a European (EN
61491) and international standard (IEC 61491). The optical interface allows data rates of 2,4,8 and 16 MBd and
data transfer between numerical controls and drives via
fiber-optic rings, with voltage isolation and noise immunity. The HFBR-1506AMZ and HFBR-2506AMZ products
have a guaranteed performance up to 16 MBd.
RoHS-Compliant
Meets Industrial SERCOS 16MBd standard
SMA ports
650 nm wavelength
Metal coated, plastic packaging
Specified for use with 1 mm POF and 200 μm HCS
DC - 16 MBd data rate
Applications
Industrial Control Data Links
Factory Automation Data Links
Voltage Isolation Applications
Package Information
Recommended Chemicals for Cleaning/Degreasing
The RoHS-compliant transmitters and receivers are
housed in a low-cost, dual-in-line package that is made
of high strength, heat resistant, chemically resistant and
UL 94V-O (UL file # E121562) flame retardant plastic.
Both the transmitter and receiver are coated with a layer
of conductive alloy for better air discharge (ESD) performance. The package is designed for auto insertion and
wave soldering so it is ideal for high volume production
applications.
Alcohols: methyl, isopropyl, isobutyl.
Aliphatics: hexane, heptane.
Other: soap solution, naphtha.
Do not use partially halogenated hydrocarbons such as
1,1,1 trichloroethane, ketones such as MEK, acetone,
chloroform, ethyl acetate, methylene dichloride, phenol,
methylene chloride or N-methylpyrolldone. Also, Avago
Technologies does not recommend the use of cleaners
that use halogenated hydrocarbons because of their
potential environmental harm.
Handling and Design Information
When soldering, it is advisable to leave the protective
cap on the unit to keep the optics clean. Good system
performance requires clean port optics and cable ferrules
to avoid obstructing the optical path. Clean compressed
air often is sufficient to remove particles of dirt; methanol
on a cotton swab also works well.
CAUTION: The small junction size inherent in the design of these components increases the components’ susceptibility to damage from electrostatic discharge (ESD). 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.
Link Performance Specification
0 °C to +70 °C unless otherwise noted.
Parameter
Symbol
Min
Max
Unit
Condition
Reference
Link distance with HFBR-1506AMZ/2506AMZ
I
0.1
0.1
45
200
m
m
POF
HCS
Note 1, 2, 4, 6
Note 1, 3, 5, 6
Notes:
1. 60 mA nominal drive current.
2. POF HFBR-ExxyyyZ 0.23 dB/m worst case attenuation.
3. HCS 10 dB/km worst case attenuation.
4. Including a 3 dB optical safety margin accounting for link service lifetime.
5. Including a 2 dB optical safety margin accounting for link service lifetime.
6. Signaling rate dc to 16 MBd.
2
HFBR-1506AMZ Transmitter
4
5
PIN
6
The HFBR-1506AMZ transmitter incoporates a 650nm
LED in a metal-coated, plastic housing. The high light
output power enables the use of both plastic optical
fiber (POF) and Hard Clad Silica (HCS). This transmitter
can operate up to 16MBd using a simple driver circuit.
The HFBR-1506AMZ is compatible with SMA connectors.
1
4
5
6
7
8
7
1
8
BOTTOM VIEW,
HFBR-1506AMZ
FUNCTION
CONNECTED TO PIN 4
CONNECTED TO PIN 1
GND
GND
CATHODE
ANODE
SEE NOTE 6
Figure 1.
Absolute Maximum Ratings
Parameter
Symbol
Min
Max
Unit
Storage and Operating Temperature
TS, O
-40
+85
°C
Peak Forward Input Current
IF, PK
90
mA
Average Forward Input Current
IF, AVG
60
mA
Reverse Input Voltage
VR
3
V
Lead Soldering Cycle
Temp
Time
TSOL
TSOL
260
10
°C
s
Notes
1
2, 8
Electrical Characteristics Table
0 °C to +70 °C unless otherwise noted.
Parameter
Symbol
Optical Power Temperature Coefficient
PT/T
Min
Typ1
Max
-0.02
1.8
2.1
Unit
Condition
Notes
dB/°C
2.65
V
Forward Voltage
VF
Forward Voltage Temperature Coefficient
VF/T
Breakdown Voltage
VBR
Peak Emission Wavelength
lPK
Full Width Half Max
FWHM
Diode Capacitance
CO
60
Thermal Resistance
qJC
140
Rise Time (10% to 90%)
tr
15
ns
Fall Time (90% to 10%)
tf
15
ns
IF, dc = 60 mA
Figure 2
-1.8
mV/°C
3.0
13
V
640
650
660
nm
Figure 4
21
30
nm
Figure 4
pF
Figure 2
IF, dc = -10 μA
VF = 0 V, f = 1 MHz
°C/W
Notes 4, 5
10% to 90%
IF = 60 mA
Figure 6
Figure 6
Peak Output Power
0 °C to +70 °C unless otherwise noted.
Model Number
Symbol
Min
Max
Unit
Condition
Reference
HFBR-1506AMZ
Pr
-6.0
-18.0
-2.0
-10.0
dBm
POF, IF, dc = 60 mA
HCS®, IF, dc = 60 mA
Note 7
Figure 3
Notes:
1. For I F_PK > 60 mA, the duty factor must maintain I F_AVG
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