HBCU-5710R Avago Technologies US Inc., HBCU-5710R Datasheet - Page 3

Fiber Optic Transceiver,Module

HBCU-5710R

Manufacturer Part Number
HBCU-5710R
Description
Fiber Optic Transceiver,Module
Manufacturer
Avago Technologies US Inc.
Datasheet

Specifications of HBCU-5710R

Data Rate
1.25Gbps
Wavelength
850nm
Voltage - Supply
3.3V
Connector Type
RJ45
Mounting Type
Through Hole
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Applications
-
Lead Free Status / RoHS Status
Lead free / RoHS Compliant, Contains lead / RoHS non-compliant
Other names
516-2009

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
HBCU-5710R
Quantity:
20
Application Support
Evaluation Kit
To help you in your preliminary transceiver evaluation,
Avago Technologies offers a 1.25 GBd Gigabit Ethernet
evaluation board. This board will allow testing of the
electrical parameters of transceiver. Please contact your
local Field Sales representative for availability and order-
ing details.
Reference Designs
Reference designs for the HBCU-5710R electrical trans-
ceiver and the HDMP-1636A physical layer IC are avail-
able to assist the equipment designer. Figure 4 depicts a
typical application configuration, while Figure 5 depicts
the MSA power supply filter circuit design. Please con-
tact your local Field Sales engineer for more information
regarding application tools.
Regulatory Compliance
See Table 1 for transceiver Regulatory Compliance perfor-
mance. The overall equipment design will determine the
certification level. The transceiver performance is offered
as a figure of merit to assist the designer.
Electrostatic Discharge (ESD)
There are two conditions in which immunity to ESD
damage is important. Table 1 documents our immunity
to both of these conditions. The first condition is during
handling of the transceiver prior to insertion into the
transceiver port. To protect the transceiver, it is impor-
tant to use normal ESD handling precautions. These
precautions include using grounded wrist straps, work
benches, and floor mats in ESD controlled areas. The ESD
sensitivity of the HBCU-5710R is compatible with typical
industry production environments. The second condition
is static discharges to the exterior of the host equipment
chassis after installation. To the extent that the RJ45 con-
nector interface is exposed to the outside of the host
equipment chassis, it may be subject to system-level ESD
requirements. The ESD performance of the HBCU-5710R
exceeds typical industry standards.
Immunity
Equipment hosting the HBCU-5710R modules will be sub-
jected to radio-frequency electromagnetic fields in some
environments. The transceivers have good immunity to
such fields due to their shielded design.
3
Figure 3: MDI ( RJ 45 Jack) Pin Assignment
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 22A) in Europe and VCCI in Japan.
The metal housing and shielded design of the HBCU-
5710R minimize the EMI challenge facing the host
equipment designer. These transceivers provide superior
EMI performance. This greatly assists the designer in the
management of the overall system EMI performance.
Flammability
The HBCU-5710R electrical transceiver housing is made
of metal and high strength, heat resistant, chemi-
cally resistant, and UL 94V-0 flame retardant plastic.
Caution
There are no user serviceable parts nor any maintenance
required for the HBCU-5710R. Tampering with or modi-
fying the performance of the HBCU-5710R will result in
voided product warranty. It may also result in improper
operation of the HBCU-5710R circuitry, and possible
overstress of the RJ 45 connector. Device degradation
or product failure may result. Connection of the HBCU-
5710R to a non-approved other 1000BASE-T module,
operating above the recommended absolute maximum
conditions or operating the HBCU-5710R in a manner
inconsistent with its design and function may result in
hazardous radiation exposure and may be considered an
act of modifying or manufacturing an electrical module
product.
PIN 1
PIN 8

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