AFBR-53D5Z Avago Technologies US Inc., AFBR-53D5Z Datasheet - Page 2

TXRX OPTICAL 5V GBE 1X9

AFBR-53D5Z

Manufacturer Part Number
AFBR-53D5Z
Description
TXRX OPTICAL 5V GBE 1X9
Manufacturer
Avago Technologies US Inc.
Series
-r
Datasheet

Specifications of AFBR-53D5Z

Applications
Ethernet
Connector Type
SC
Wavelength
850nm
Voltage - Supply
4.75 V ~ 5.25 V
Mounting Type
Through Hole
Supply Voltage
5V
Wavelength Typ
850nm
Leaded Process Compatible
Yes
Data Rate
-
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Data Rate
-
Lead Free Status / Rohs Status
Lead free / RoHS Compliant
Package and Handling Instructions
Flammability
The AFBR-53D5Z transceiver housing is made of high
strength, heat resistant, chemically resistant, and UL
94V-0 flame retardant plastic.
Recommended Solder and Wash Process
The AFBR-53D5Z is compatible with industry standard
wave or hand solder processes.
Process plug
This transceiver is supplied with a process plug (HFBR-
5000) for protection of the optical ports within the
duplex SC connector receptacle. This process plug pre-
vents contamination during wave solder and aqueous
rinse as well as during handling, shipping and storage.
It is made of a hightemperature, molded sealing mate-
rial that can withstand 80°C and a rinse pressure of 110
lbs per square inch.
Recommended Solder fluxes used with the AFBR-53D5Z
should be water-soluble, organic fluxes. Recommended
solder fluxes include Lonco 3355-11 from London
Chemical West, Inc. of Burbank, CA, and 100 Flux from
Alpha-Metals of Jersey City, NJ.
Recommended Cleaning/Degreasing Chemicals
Alcohols: methyl, isopropyl, isobutyl.
Aliphatics: hexane, heptane Other: soap solution, naph-
tha.
Do not use partially halogenated hydrocarbons such
as 1,1.1 trichloroethane, ketones such as MEK, acetone,
chloroform, ethyl acetate, methylene dichloride, phe-
nol, methylene chloride, or N-methylpyrolldone. Also,
HP does not recommend the use of cleaners that use
halogenated hydrocarbons because of their potential
environmental harm.

Regulatory Compliance
(See the Regulatory Compliance Table for transceiver
performance)
The overall equipment design will determine the certifi-
cation level. The transceiver performance is offered as a
figure of merit to assist the designer in considering their
use in equipment designs.
Electrostatic Discharge (ESD)
There are two design cases in which immunity to ESD
damage is important. The first case is during handling of
the transceiver prior to mounting it on the circuit board.
It is important to use normal ESD handling precautions
for ESD sensitive devices. These precautions include us-
ing grounded wrist straps, work benches, and floor mats
in ESD controlled areas. The transceiver performance
has been shown to provide adequate performance in
typical industry production environments.
The second case to consider is static discharges to the
exterior of the equipment chassis containing the trans-
ceiver parts. To the extent that the duplex SC connector
receptacle is exposed to the outside of the equipment
chassis it may be subject to whatever system-level ESD
test criteria that the equipment is intended to meet. The
transceiver performance is more robust than typical in-
dustry equipment requirements of today.
Electromagnetic Interference (EMI)
Most equipment designs utilizing these high-speed
transceivers 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 Ja-
pan. Refer to EMI section (page 5) for more details.
Immunity
Equipment utilizing these transceivers will be subject
to radio-frequency electromagnetic fields in some en-
vironments. These transceivers have good immunity to
such fields due to their shielded design.

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