AFBR-5803Z Avago Technologies US Inc., AFBR-5803Z Datasheet - Page 9

TXRX OPT 1X9 100MBPS DUPLEX SC

AFBR-5803Z

Manufacturer Part Number
AFBR-5803Z
Description
TXRX OPT 1X9 100MBPS DUPLEX SC
Manufacturer
Avago Technologies US Inc.
Datasheet

Specifications of AFBR-5803Z

Data Rate
100Mbps
Wavelength
1300nm
Applications
General Purpose
Voltage - Supply
3.3V, 5V
Connector Type
SC
Mounting Type
Through Hole
Function
Implement FDDI and ATM at the 100 Mbps/125 MBd rate
Product
Transceiver
Pulse Width Distortion
0.69 ns (Max)/2.14 ns (Max)
Maximum Output Current
50 mA
Operating Supply Voltage
4.75 V to 5.25 V
Maximum Operating Temperature
+ 70 C
Minimum Operating Temperature
0 C
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
For Use With
Multimode Glass
Lead Free Status / RoHS Status
Lead free / RoHS Compliant, Lead free / RoHS Compliant
Other names
516-1991
Regulatory Compliance Table
Electromagnetic Interference (EMI)
Mos­t equipment des­igns­ utilizing thes­e high s­peed trans­-
ceivers­ from Avago Technologies­ will be required to meet
the requirements­ of FCC in the United States­, CENELEC
EN55022 (CISPR 22) in Europe and VCCI in Japan.
In all well-des­igned chas­s­is­, two 0.5” holes­ for ST con-
nectors­ to protrude through will provide 4.6 dB more
s­hielding than one 1.2” duplex SC rectangular cutout.
Thus­, in a well-des­igned chas­s­is­, the duplex ST 1 x 9
trans­ceiver emis­s­ions­ will be identical to the duplex SC 1
x 9 trans­ceiver emis­s­ions­.
Figure 9. Transmitter Output Optical Spectral Width (FWHM) vs. Transmit-
ter Output Optical Center Wavelength and Rise/Fall Times.

Feature
Electros­tatic Dis­charge
(ESD) to the Electrical Pins­
Electros­tatic Dis­charge
(ESD) to the Duplex SC
Receptacle
Electromagnetic Interfer-
ence (EMI)
Immunity
200
180
160
140
120
100
AFBR-5803Z FDDI TRANSMITTER TEST RESULTS
OF λ
COMPLY WITH THE ALLOWED SPECTRAL WIDTH
AS A FUNCTION OF CENTER WAVELENGTH FOR
VARIOUS RISE AND FALL TIMES.
1.5
2.0
2.5
3.0
3.5
1200
C
λ
, ∆λ AND t
C
– TRANSMITTER OUTPUT OPTICAL
CENTER WAVELENGTH –nm
1300
t
OUTPUT OPTICAL
RISE/FALL TIMES – ns
r/f
r/f
1320
– TRANSMITTER
ARE CORRELATED AND
1340
Test Method
MIL-STD-883C
Method 3015.4
Variation of
IEC 801-2
FCC Clas­s­ B
CENELEC CEN55022
Clas­s­ B (CISPR 22B)
VCCI Clas­s­ 2
Variation of IEC 61000-4-3
1360
3.0
3.5
1380
Performance
Meets­ Clas­s­ 1 (<1999 Volts­)
Withs­tand up to 1500 V applied between electrical pins­.
Typically withs­tand at leas­t 25 kV without damage when the Duplex
SC Connector Receptacle is­ contacted by a Human Body Model
probe.
Trans­ceivers­ typically provide a 13 dB margin (with duplex SC
receptacle) or a 9 dB margin (with duplex ST receptacles­ ) to the
noted s­tandard limits­. However, it s­hould be noted that final margin
depends­ on the cus­tomer’s­ board and chas­s­is­ des­ign.
Typically s­how no meas­urable effect from a 10 V/m field s­wept from
10 to 450 MHz applied to the trans­ceiver when mounted to a circuit
card without a chas­s­is­ enclos­ure.
Immunity
Equipment utilizing thes­e trans­ceivers­ will be s­ubject to
radio-frequency electromagnetic fields­ in s­ome environ-
ments­. Thes­e trans­ceivers­ have a high immunity to s­uch
fields­.
For additional information regarding EMI, s­us­ceptibility,
ESD and conducted nois­e tes­ting procedures­ and res­ults­
on the 1 x 9 Trans­ceiver family, pleas­e refer to Applica-
tions­ Note 1075, Tes­ting and Meas­uring Electromagnetic
Compatibility Performance of the AFBR-510X/520X Fiber
Optic Trans­ceivers­.
Transceiver Reliability and Performance Qualification Data
The 1 x 9 trans­ceivers­ have pas­s­ed Avago Technologies­
reliability and performance qualification tes­ting and
are undergoing ongoing quality monitoring. Details­ are
available from your Avago Technologies­ s­ales­ repres­en-
tative.
Accessory Duplex SC Connectored Cable Assemblies
Avago Technologies­ recommends­ for optimal coupling
the us­e of flexible-body duplex SC connectored cable.
Accessory Duplex ST Connectored Cable Assemblies
Avago Technologies­ recommends­ the us­e of Duplex
Pus­h-Pull connectored cable for the mos­t repeatable
optical power coupling performance.

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