jxp-01lmad1 JDS Uniphase Corporation, jxp-01lmad1 Datasheet - Page 15

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jxp-01lmad1

Manufacturer Part Number
jxp-01lmad1
Description
Multiprotocol Xfp Optical Transceiver --1310 Nm Dfb For Up To 10-km Reach
Manufacturer
JDS Uniphase Corporation
Datasheet
15
Section 4
Other information related to the transceiver includes:
Section 4.1 Packing and Handling Instructions
Section 4.2 Electrostatic Discharge
Section 4.3 Eye Safety
4.1 Package and Handling Instructions
Connector Covers
The transceiver is supplied with an LC duplex receptacle. The connector plug
supplied protects the connector during standard manufacturing processes and
handling by preventing contamination from dust, aqueous solutions, body oils, or
airborne particles.
Note: It is recommended that the connector plug remain on whenever the
transceiver optical fiber connector is not inserted.
Recommended Cleaning and De-greasing Chemicals
JDSU recommends the use of methyl, isopropyl, and isobutyl alcohols for cleaning.
Do not use halogenated hydrocarbons (e.g. trichloroethane, ketones such as acetone,
chloroform, ethyl acetate, MEK, methylene chloride, methylene dichloride, phenol,
N-methylpyrolldone).
This product is not designed for aqueous wash.
Housing
The transceiver housing is made from zinc.
4.2 Electrostatic Discharge
Handling
Normal electrostatic discharge (ESD) precautions are required during the handling
of this module. This transceiver is shipped in ESD protective packaging. It should
be removed from the packaging and otherwise handled in an ESD protected
environment utilizing standard grounded benches, floor mats, and wrist straps.
Test and Operation
In most applications, the optical connector will protrude through the system
chassis and be subjected to the same ESD environment as the system. Once
properly installed in the system, this transceiver should meet and exceed common
ESD testing practices and fulfill system ESD requirements.
Typical of optical transceivers, this module’s receiver contains a highly sensitive
optical detector and amplifier which may become temporarily saturated during
an ESD strike. This could result in a short burst of bit errors. Such an event might
require that the application re-acquire synchronization at the higher layers (for
example, a serializer/deserializer chip).
MULTIPROTOCOL XFP OPTICAL TRANSCEIVER
—1310 NM DFB FOR UP TO 10-KM REACH
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