AFBR-5715LZ Avago Technologies US Inc., AFBR-5715LZ Datasheet - Page 6

TXRX OPTICAL SFP DMI STD LATCH

AFBR-5715LZ

Manufacturer Part Number
AFBR-5715LZ
Description
TXRX OPTICAL SFP DMI STD LATCH
Manufacturer
Avago Technologies US Inc.
Datasheets

Specifications of AFBR-5715LZ

Data Rate
1.25Gbps
Wavelength
850nm
Applications
Ethernet
Voltage - Supply
3.135 V ~ 3.465 V
Connector Type
LC Duplex
Mounting Type
SFP
Function
Designed for those applications requiring DMI features.
Product
Transceiver
Maximum Rise Time
0.26 ns/0.22 ns (Typ)
Maximum Fall Time
0.26 ns/0.22 ns (Typ)
Pulse Width Distortion
0.227 ns (Max)/0.266 ns (Max)
Operating Supply Voltage
3.135 V to 3.465 V
Maximum Operating Temperature
+ 85 C
Minimum Operating Temperature
- 10 C
Package / Case
SFP
Optical Fiber Type
TX/RX
Data Transfer Rate
1250MBd
Optical Rise Time
0.26/0.22ns
Optical Fall Time
0.26/0.22ns
Jitter
0.227/0.266ns
Operating Temperature Classification
Commercial
Peak Wavelength
850nm
Package Type
SFP
Operating Supply Voltage (min)
3.135V
Operating Supply Voltage (typ)
3.3V
Operating Supply Voltage (max)
3.465V
Operating Temp Range
-10C to 85C
Mounting
Snap Fit To Panel
Pin Count
20
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Lead Free Status / RoHS Status
Lead free / RoHS Compliant, Lead free / RoHS Compliant
Fiber Compatibility
The AFBR-571xZ transciever is capable of transmission
at 2 to 550 meters with 50/125 μm fi ber, and at 2 to 275
meters with 62.5 125 μm fi ber, for 1.25 GBd Ethernet. It
is capable of transmission up to 500m with 50/125 μm
fi ber and up to 300m with 62.5/125 μm fi ber, for 1.0625
GBd Fiber Channel.
Application Support
To assist in the transceiver evaluation process, Agilent
off ers a 1.25 Gbd Gigabit Ethernet evaluation board
which facilitates testing of the AFBR-571xZ. It can be
obtained through the Agilent Field Organization by ref-
erencing Agilent part number HFBR-0571.
A Reference Design including the AFBR-571xZ and the
HDMP-1687 GigaBit Quad SerDes is available. It may be
obtained through the Agilent Field Sales organization.
Regulatory Compliance
See Table 1 for transceiver Regulatory Compliance. Certi-
fi cation level is dependent on the overall confi guration
of the host equipment. The transceiver performance is
off ered as a fi gure of merit to assist the designer.
Electrostatic Discharge (ESD)
The AFBR-571xZ exceeds typical industry standards and is
compatible with ESD levels found in typical manufactur-
ing and operating environments as described in Table 1.
There are two design cases in which immunity to ESD
damage is important.
The fi rst case is during handling of the transceiver prior
to insertion into the transceiver port. To protect the trans-
ceiver, it’s important to use normal ESD handling precau-
tions. These precautions include using grounded wrist
straps, work benches, and fl oor mats in ESD controlled
6
areas. The ESD sensitivity of the AFBR-571xZ is compat-
ible with typical industry production environments.
The second case to consider is static discharges to the
exterior of the host equipment chassis after installation.
To the extent that the optical interface is exposed to the
outside of the host equipment chassis, it may be subject
to system-level ESD requirements.
Electromagnetic Interference (EMI)
Equipment using the AFBR-571xZ family of transceivers
is typically required to meet the require ments of the
FCC in the United States, CENELEC EN55022 (CISPR 22)
in Europe, and VCCI in Japan.
The metal housing and shielded design of the AFBR-
571xZ minimize the EMI challenge facing the host equip-
ment designer.
EMI Immunity
Equipment hosting AFBR-571xZ modules will be sub-
jected to radio-frequency electromagnetic fi elds in some
environments. The transceiver has excellent immunity to
such fi elds due to its shielded design.
Flammability
The AFBR-571xZ transceiver is made of metal and high
strength, heat resistant, chemically resistant, and UL
94V-0 fl ame retardant plastic.
Customer Manufacturing Processes
This module is pluggable and is not designed for aqueous
wash, IR refl ow, or wave soldering processes.

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