AFCT-701SDZ
10Gb Ethernet, 1310 nm, 10GBASE-LR,
SFP+ Transceiver for SMF 10km links
Data Sheet
Description
The Avago AFCT-701SDZ transceiver is part of a family of
SFP+ products. This transceiver utilizes Avagos 1310nm
DFB and PIN Detector technology to provide an IEEE
10Gb Ethernet design compliant with the 10GBASE-LR
standard. The AFCT-701SDZ transceiver is designed to
enable 10Gb Ethernet equipment designs with very high
port density based on the new electrical and mechani-
cal specication enhancements to the well known SFP
specications developed by the SFF Committee. These
specications are referred to as SFP+ to recognize these
enhancements to previous SFP specications used for
lower speed products. Avago Technologies is an active
participant in the SFF Committee specication develop-
ment activities.
Related Products
x AFCT-701ASDZ SFP+ 10 Gigabit Ethernet 10GBASE-
LR transceiver with case temperature operated at
0-85 °C for operation in SMF link applications to 10
km
x AFBR-707SDZ SFP+ 10 Gigabit Ethernet 10GBASE-
LRM transceiver for 220 meter operation in all MMF
link applications including OM1 and OM2 legacy ber
cables and new high bandwidth OM3 ber cables.
x The AFBR-703SDZ (AFBR-703ASDZ) with case
temperature 0-70 (0-85) °C is an SFP+ 10 Gigabit
Ethernet 10GBASE-SR transceiver for use on
multimode ber cables. It is best suited for OM3 high
bandwidth MMF link applications with link lengths up
to 300 meters.
x AFCT-5016Z SFP+ Evaluation Board The purpose of
this SFP+ evaluation board is to provide the designer
with a convenient means for evaluating SFP+ ber
optic transceivers.
Features
x Avago 1310nm DFB source and Transmitter Optical
Subassembly technology
x Avago PIN detector and Receiver Optical Subassembly
technology
x Typical power dissipation 850mW
x Full digital diagnostic management interface
x Avago SFP+ package design enables equipment EMI
performance in high port density applications with
margin to Class B limits
Specications
x Optical interface specications per IEEE 802.3ae
10GBASE-LR
x Electrical interface specications per SFF Committee
SFF 8431 Specications for Enhanced 8.5 and 10
Gigabit Small Form Factor Pluggable Module “SFP+”
x Management interface specications per SFF
Committee SFF 8431 and SFF 8472 Diagnostic
Monitoring Interface for Optical Transceivers
x Mechanical specications per SFF Committee SFF
8432 Improved Pluggable Formfactor “IPF”
x LC Duplex optical connector interface conrming to
ANSI TIA/EA 604-10 (FOCIS 10A)
x Compliant to Restriction on Hazardous Substances
(RoHS) per EU and China requirements
x Class 1 Eye safe per requirements of IEC 60825-1 /
CDRH
2
Installation
The AFCT-701SDZ transceiver package is compliant with
the SFF 8432 Improved Pluggable Formfactor housing
specication for the SFP+. It can be installed in any INF-
8074 or SFF-8431/2 compliant Small Form Pluggable
(SFP) port regardless of host equipment operating status
The AFCT-701SDZ is hot-pluggable, allowing the mod-
ule to be installed while the host system is operating and
on-line. Upon insertion, the transceiver housing makes
initial contact with the host board SFP cage, mitigating
potential damage due to Electro-Static Discharge (ESD).
Digital Diagnostic Interface and Serial Identication
The two-wire interface protocol and signaling detail
are based on SFF-8431. Conventional EEPROM memo-
ry, bytes 0-255 at memory address 0xA0, is organized
in compliance with SFF-8431. New digital diagnostic
information, bytes 0-255 at memory address 0xA2, is
compliant to SFF-8472. The new diagnostic information
provides the opportunity for Predictive Failure Identi-
cation, Compliance Prediction, Fault Isolation and Com-
ponent Monitoring.
Predictive Failure Identication
The AFCT-701SDZ predictive failure feature allows a host
to identify potential link problems before system perfor-
mance is impacted. Prior identication of link problems
enables a host to service an application via “fail over
to a redundant link or replace a suspect device, main-
taining system uptime in the process. For applications
where ultra-high system uptime is required, a digital SFP
provides a means to monitor two real-time laser metrics
asso ciated with observing laser degradation and pre-
dicting failure: average laser bias current (Tx_Bias) and
average laser optical power (Tx_Power).
Compliance Prediction
Compliance prediction is the ability to determine if an
optical transceiver is operating within its operating and
environmental requirements. AFCT-701SDZ devices
provide real-time access to transceiver internal supply
voltage and temperature, allowing a host to identify po-
tential component compliance issues. Received optical
power is also available to assess compliance of a cable
plant and remote transmitter. When operating out of re-
quirements, the link cannot guarantee error free trans-
mission.
Fault Isolation
The fault isolation feature allows a host to quickly pin-
point the location of a link failure, minimizing downtime.
For optical links, the ability to identify a fault at a local
device, remote device or cable plant is crucial to speed-
ing service of an installation. AFCT-701SDZ real-time
monitors of Tx_Bias, Tx_Power, Vcc, Temperature and
Rx_Power can be used to assess local transceiver current
operating conditions. In addition, status ags TX_DIS-
ABLE and Rx Loss of Signal (LOS) are mirrored in memory
and available via the two-wire serial interface.
Component Monitoring
Component evaluation is a more casual use of the AFCT-
701SDZ real-time monitors of Tx_Bias, Tx_Power, Vcc,
Temperature and Rx_Power. Potential uses are as debug-
ging aids for system installation and design, and trans-
ceiver parametric evaluation for factory or eld quali-
cation. For example, temperature per module can be
observed in high density applications to facilitate ther-
mal evaluation of blades, PCI cards and systems.
Description, continued
3
Figure 1. Transceiver functional diagram
LIGHT FROM FIBER
LIGHT TO FIBER
PHOTO-DETECTOR
RECEIVER
AMPLIFICATION
& QUANTIZATION
RD+ (RECEIVE DATA)
RD– (RECEIVE DATA)
RX_LOS
DFB
TRANSMITTER
LASER
DRIVER &
SAFETY
CIRCUITRY
TX_DISABLE
TD+ (TRANSMIT DATA)
TD– (TRANSMIT DATA)
TX_FAULT
ELECTRICAL INTERFACE
SDA
SCL
MOD-ABS
CONTROLLER & MEMORY
OPTICAL INTERFACE
RS0
RS1
Transmitter Section
The transmitter section includes the Transmitter Opti-
cal Sub-Assembly (TOSA) and laser driver circuitry. The
TOSA, containing an Avago designed and manufactured
1310 nm DFB light source, is located at the optical inter-
face and mates with the LC optical connector. The TOSA
is driven by an IC which uses the incoming dierential
high speed logic signal to modulate the laser diode driv-
er current. This Tx laser driver circuit regulates the optical
power at a level within the specied range.
Transmit Disable (TX_DISABLE)
The AFCT-701SDZ accepts an LVTTL compatible trans-
mit disable control signal input which shuts down the
transmitter optical output. A high signal implements this
function while a low signal allows normal transceiver op-
eration. In the event of a fault (e.g. eye safety circuit ac-
tivated), cycling this control signal resets the module as
depicted in Figure 5. An internal pull up resistor disables
the transceiver transmitter until the host pulls the input
low. TX_DISABLE can also be asserted via the two-wire
interface (address A2h, byte 110, bit 6) and monitored
(address A2h, byte 110, bit 7).
The contents of A2h, byte 110, bit 6 are logic OR’d with
hardware TX_DISABLE (contact 3) to control transmitter
operation. The normal behavior of this feature is to reset
a TX disabled transceiver to TX enabled when it is power
cycled or hot-plugged.
Transmit Fault (TX_FAULT)
A catastrophic laser fault will activate the transmitter
signal, TX_FAULT, and disable the laser. This signal is
an open collector output (pull-up required on the host
board). A low signal indicates normal laser operation and
a high signal indicates a fault. A fault is dened as laser
power below or above the specied IEEE 802.3ae speci-
ed min/max range. The TX_FAULT will be latched high
when a laser fault occurs and is cleared by toggling the
TX_DISABLE input or power cycling the transceiver. The
transmitter fault condition can also be monitored via the
two-wire serial interface (address A2, byte 110, bit 2).

AFCT-701SDZ

Mfr. #:
Manufacturer:
Broadcom / Avago
Description:
Fiber Optic Transmitters, Receivers, Transceivers Transceiver
Lifecycle:
New from this manufacturer.
Delivery:
DHL FedEx Ups TNT EMS
Payment:
T/T Paypal Visa MoneyGram Western Union

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