7
Table 2. Pin Description
Pin Name Function/Description Notes
1 VeeT Transmitter Ground
2 TX_FAULT Transmitter Fault Indication – High indicates a fault condition Note 1
3 TX_DISABLE Transmitter Disable – Module optical output disables on high or open Note 2
4 MOD-DEF2 Module De nition 2 – Two wire serial ID interface data line (SDA) Note 3
5 MOD-DEF1 Module De nition 1 – Two wire serial ID interface clock line (SCL) Note 3
6 MOD-DEF0 Module De nition 0 – Grounded in module (module present indicator) Note 3
7 no connect
8 RX_LOS Loss of Signal – High indicates loss of received optical signal Note 4
9 VeeR Receiver Ground
10 VeeR Receiver Ground
11 VeeR Receiver Ground
12 RD- Inverse Received Data Out Note 5
13 RD+ Received Data Out Note 5
14 VeeR Receiver Ground
15 VccR Receiver Power + 3.3 V Note 6
16 VccT Transmitter Power + 3.3 V Note 6
17 VeeT Transmitter Ground
18 TD+ Transmitter Data In Note 7
19 TD- Inverse Transmitter Data In Note 7
20 VeeT Transmitter Ground
Notes
1. TX_FAULT is an open collector/drain output, which must be pulled up with a 4.7k – 10kΩ resistor on the host board. When high, this output
indicates a laser fault of some kind. Low indicates normal operation. In the low state, the output will be pulled to < 0.8V.
2. TX_DISABLE is an input that is used to shut down the transmitter optical output. It is internally pulled up (within the transceiver) with a 6.8kΩ
resistor.
Low (0 – 0.8V): Transmitter on
Between (0.8V and 2.0V): Unde ned
High (2.0 – Vcc max) or OPEN: Transmitter Disabled
3. The signals Mod-Def 0, 1, 2 designate the two wire serial interface pins. They must be pulled up with a 4.7k – 10kΩ resistor on the host board.
Mod-Def 0 is grounded by the module to indicate the module is present
Mod-Def 1 is serial clock line (SCL) of two wire serial interface
Mod-Def 2 is serial data line (SDA) of two wire serial interface
4. RX_LOS (Rx Loss of Signal) is an open collector/drain output that must be pulled up with a 4.7k – 10kΩ resistor on the host board. When high,
this output indicates the received optical power is below the worst case receiver sensitivity (as de ned by the standard in use). Low indicates
normal operation. In the low state, the output will be pulled to < 0.8V.
5. RD-/+ designate the di erential receiver outputs. They are AC coupled 100Ω di erential lines which should be terminated with 100Ω di erential
at the host SERDES input. AC coupling is done inside the transceiver and is not required on the host board. The voltage swing on these lines will
be between 500 and 1600 mV di erential (250 – 800 mV single ended) when properly terminated.
6. VccR and VccT are the receiver and transmitter power supplies. They are de ned at the SFP connector pin. The maximum supply current is 300
mA and the associated in-rush current will typically be no more than 30 mA above steady state after 500 nanoseconds.
7. TD-/+ designate the di erential transmitter inputs. They are AC coupled di erential lines with 100Ω di erential termination inside the module.
The AC coupling is done inside the module and is not required on the host board. The inputs will accept di erential swings of 400 – 2400 mV
(200 – 1200 mV single ended), though it is recommended that values between 500 and 1200 mV di erential (250 – 600 mV single ended) be
used for best EMI performance.
8
Table 3. Absolute Maximum Ratings
Parameter Symbol Minimum Maximum Unit Notes
Storage Temperature T
S
-40 100 C Note 1,2
Case Operating Temperature T
C
-40 100 C Note 1,2
Relative Humidity RH 5 95 % Note 1
Supply Voltage Vcc
T, R
-0.5 3.8 V Note 1,2,3
Low Speed Input Voltage V
IN
-0.5 Vcc+0.5 V Note 1
Notes
1. Absolute Maximum Ratings are those values beyond which damage to the device may occur if these limits are exceeded for other than a short
period of time. See Reliability Data Sheet for speci c reliability performance.
2. Between Absolute Maximum Ratings and the Recommended Operating Conditions functional performance is not intended, device reliability is
not implied, and damage to the device may occur over an extended period of time.
3. The module supply voltages, V
CC
T and V
CC
R must not di er by more than 0.5V or damage to the device may occur.
Table 4. Recommended Operating Conditions
Parameter Symbol Minimum Maximum Unit Notes
Case Operating Temperature T
C
-40 85 °C Note 1,2
Supply Voltage Vcc
T, R
2.97 3.63 V Note 2
Data Rate 0.614 3.072 Gb/s Note 2
Notes
1. The Ambient Operating Temperature limitations are based on the Case Operating Temperature limitations and are subject to the host system
thermal design.
2. Recommended Operating Conditions are those values for which functional performance and device reliability is implied.
Table 5. Transceiver Electrical Characteristics
(TC = -40°C to 85°C, VccT, VccR = 3.3V ± 10%)
Parameter Symbol Minimum Maximum Unit Notes
AC Electrical Characteristics
Power Supply Noise Rejection (peak-
peak)
PSNR 100 mV Note 1
DC Electrical Characteristics
Module supply current I
CC
300
350
mA
mA
-40°C to 70°C
-40°C to 85°C
Power Dissipation P
DISS
1000 mW
Low Speed Outputs:
Transmit Fault (TX_FAULT),
Loss of Signal (RX_LOS),
MOD-DEF 2
V
OH
2.0 VccT,R+0.3 V Note 2
V
OL
0.6 V
Low Speed Inputs:
Transmit Disable (TX_DIS), Rate Select
(RATE_SELECT)
MOD-DEF 1, MOD-DEF 2
V
IH
2.0 Vcc V Note 3
V
IL
0 0.8 V
Notes
1. Filter per SFP speci cation is required on host board to remove 10 Hz to 2 MHz content.
2. Pulled up externally with a 4.7k – 10kΩ resistor on the host board to 3.3V.
3. Rate_Select, Mod-Def1 and Mod-Def2 must be pulled up externally with a 4.7k – 10kΩ resistor on the host board to 3.3V.
9
Table 6. Transmitter Optical Characteristics
(T
C
= -40°C to 85°C, VccT, VccR = 3.3V ± 10%)
Parameter Symbol Minimum Typical Maximum Unit Notes
Modulated Optical Output Power
(OMA) (Peak-to-Peak)
Tx,OMA 190 300 μW Note 2,6
Average Optical Output Power Pout -9.5 -3.0 dBm Note 1, 2
Center Wavelength
λ
C
1280 1345 nm
Spectral Width – rms
σ,rms
nm Note 6
Optical Rise/Fall Time (8.5 Gb/s) tr, tf 100 ps 20% - 80%
RIN 12 (OMA) RIN -120 dB/Hz
Transmitter Contributed Deterministic
Jitter (0.614 to 3.072 Gb/s)
DJ 50 ps -40/85°C, Note 3
30 ps -20/85°C, Note 3
Transmitter Contributed Total Jitter
(0.614 to 3.072 Gb/s)
TJ 80 ps -40/85°C, Note
4, 5
60 -20/85°C, Note
4, 5
Pout TX_DISABLE Asserted P
OFF
-35 dBm
Notes:
1. Max Pout is the lesser of Class 1 safety limits (CDRH and EN 60825) or receiver power, max.
2. Into single-mode optical  ber.
3. Contributed DJ is measured on an oscilloscope in average mode with 50% threshold and K28.5 pattern.
4. Contributed RJ is calculated for 1x10
-12
BER by multiplying the RMS jitter (measured on a single rise or fall edge) from the oscilloscope by 14.
5. In a network link, each components output jitter equals each component’s input jitter combined with each component’s contributed jitter.
Contributed DJ adds in a linear fashion and contributed RJ adds in a RMS fashion.
6. OMA, center wavelength and spectral width must comply with the Triple Tradeo Curve shown below.

AFCT-57J5APZ

Mfr. #:
Manufacturer:
Broadcom / Avago
Description:
Fiber Optic Transmitters, Receivers, Transceivers SM BTS FP SFP Ind-Temp RoHS
Lifecycle:
New from this manufacturer.
Delivery:
DHL FedEx Ups TNT EMS
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