AFCT-701SDZ Avago Technologies US Inc., AFCT-701SDZ Datasheet - Page 3

TXRX SFP+ SMF 10BGD 1310NM

AFCT-701SDZ

Manufacturer Part Number
AFCT-701SDZ
Description
TXRX SFP+ SMF 10BGD 1310NM
Manufacturer
Avago Technologies US Inc.
Series
-r
Datasheet

Specifications of AFCT-701SDZ

Data Rate
10.312Gbd
Wavelength
1310nm
Applications
Ethernet
Voltage - Supply
3.135 V ~ 3.465 V
Connector Type
LC Duplex
Mounting Type
SFP
For Use With Fiber Type
Multimode
Function
SFP+ 10 Gb ethernet transceiver
Maximum Forward Current
289 mA
Maximum Power Dissipation
1000 mW
Transmission Distance
10 Km
Product
Transceiver
Diode Capacitance
14 pF
Maximum Rise Time
28 ps
Maximum Fall Time
28 ps
Maximum Output Current
20 mA
Operating Supply Voltage
3.465 V
Maximum Operating Temperature
+ 70 C
Minimum Operating Temperature
0 C
Supply Voltage
3.3V
Wavelength Typ
1310nm
Leaded Process Compatible
Yes
Peak Reflow Compatible (260 C)
Yes
Rohs Compliant
No
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
For Use With
Multimode Glass
Lead Free Status / RoHS Status
Lead free / RoHS Compliant, Contains lead / RoHS non-compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
AFCT-701SDZ
Manufacturer:
Avago Technologies
Quantity:
135
Company:
Part Number:
AFCT-701SDZ
Quantity:
126
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 differential
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 specified range.
Transmit Disable (TX_DISABLE)
The AFCT-701SDZ accepts an LVTTL compatible transmit
disable control signal input which shuts down the trans-
mitter 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 6. 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.
Figure 1. Transceiver functional diagram
3
OPTICAL INTERFACE
LIGHT FROM FIBER
LIGHT TO FIBER
RECEIVER
TRANSMITTER
PHOTO-DETECTOR
DFB
CONTROLLER & MEMORY
AMPLIFICATION
& QUANTIZATION
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 defined as laser
power below or above the specified IEEE 802.3ae speci-
fied 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).
CIRCUITRY
DRIVER &
SAFETY
LASER
RD+ (RECEIVE DATA)
RD– (RECEIVE DATA)
RX_LOS
RS0
RS1
SDA
SCL
MOD-ABS
TX_DISABLE
TD+ (TRANSMIT DATA)
TD– (TRANSMIT DATA)
TX_FAULT
ELECTRICAL INTERFACE

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