16
Table 13. EEPROM Serial ID Memory Contents Enhanced Feature Set Memory (Address A2h)
Byte # Byte # Byte #
Decimal Notes Decimal Notes Decimal Notes
0 Temp H Alarm MSB
[1]
26 Tx Pwr L Alarm MSB
[4]
104 Real Time Rx Pwr MSB
[5]
1 Temp H Alarm LSB
[1]
27 Tx Pwr L Alarm LSB
[4]
105 Real Time Rx Pwr LSB
[5]
2 Temp L Alarm MSB
[1]
28 Tx Pwr H Warning MSB
[4]
106 Reserved
3 Temp L Alarm LSB
[1]
29 Tx Pwr H Warning LSB
[4]
107 Reserved
4 Temp H Warning MSB
[1]
30 Tx Pwr L Warning MSB
[4]
108 Reserved
5 Temp H Warning LSB
[1]
31 Tx Pwr L Warning LSB
[4]
109 Reserved
6 Temp L Warning MSB
[1]
32 Rx Pwr H Alarm MSB
[5]
110 Status/Control
- See Table 15
7 Temp L Warning LSB
[1]
33 Rx Pwr H Alarm LSB
[5]
111 Reserved
8 Vcc H Alarm MSB
[2]
34 Rx Pwr L Alarm MSB
[5]
112 Flag Bits - See Table 16
9 Vcc H Alarm LSB
[2]
35 Rx Pwr L Alarm LSB
[5]
113 Flag Bits - See Table 16
10 Vcc L Alarm MSB
[2]
36 Rx Pwr H Warning MSB
[5]
114 Reserved
11 Vcc L Alarm LSB
[2]
37 Rx Pwr H Warning LSB
[5]
115 Reserved
12 Vcc H Warning MSB
[2]
38 Rx Pwr L Warning MSB
[5]
116 Flag Bits - See Table 16
13 Vcc H Warning LSB
[2]
39 Rx Pwr L Warning LSB
[5]
117 Flag Bits - See Table 16
14 Vcc L Warning MSB
[2]
40-55 Reserved 118-127 Reserved
15 Vcc L Warning LSB
[2]
56-94 External Calibration Constants
[6]
128-247 Customer Writeable
16 Tx Bias H Alarm MSB
[3]
95 Checksum for Bytes 0-94
[7]
248-255 Vendor Specic
17 Tx Bias H Alarm LSB
[3]
96 Real Time Temperature MSB
[1]
18 Tx Bias L Alarm MSB
[3]
97 Real Time Temperature LSB
[1]
19 Tx Bias L Alarm LSB
[3]
98 Real Time Vcc MSB
[2]
20 Tx Bias H Warning MSB
[3]
99 Real Time Vcc LS
[2]
21 Tx Bias H Warning LSB
[3]
100 Real Time Tx Bias MSB
[3]
22 Tx Bias L Warning MSB
[3]
101 Real Time Tx Bias LSB
[3]
23 Tx Bias L Warning LSB
[3]
102 Real Time Tx Power MSB
[4]
24 Tx Pwr H Alarm MSB
[4]
103 Real Time Tx Power LSB
[4]
25 Tx Pwr H Alarm LSB
[4]
Notes:
1. Temperature (Temp) is decoded as a 16 bit signed twos compliment integer in increments of 1/256°C.
2. Supply Voltage (Vcc) is decoded as a 16 bit unsigned integer in increments of 100 μV.
3. Laser bias current (Tx Bias) is decoded as a 16 bit unsigned integer in increments of 2 μA.
4. Transmitted average optical power (Tx Pwr) is decoded as a 16 bit unsigned integer in increments of 0.1 μW.
5. Received average optical power (Rx Pwr) is decoded as a 16 bit unsigned integer in increments of 0.1 μW.
6. Bytes 56-94 are not intended for use with AFCT-701SDZ, but have been set to default values per SFF-8472.
7. Byte 95 is a checksum calculated (per SFF-8472) and stored prior to product shipment.
17
Table 14. EEPROM Serial ID Memory Contents Soft Commands (Address A2h, Byte 110)
Status/
Bit # Control Name Description Notes
7 TX_ DISABLE State Digital state of SFP TX_ DISABLE Input (1 = TX_DISABLE asserted) Note 1
6 Soft TX_ DISABLE Read/write bit for changing digital state of TX_DISABLE function Note 1, 2
5 Reserved
4 Reserved
3 Reserved
2 TX_FAULT State Digital state of the SFP TX_FAULT Output (1 = TX_FAULT asserted) Note 1
1 RX_LOS State Digital state of the SFP RX_LOS Output (1 = RX_LOS asserted) Note 1
0 Data Ready (Bar) Indicates transceiver is powered and real time sense data is ready. (0 = Ready)
Notes:
1. The response time for soft commands of the AFCT-701SDZ is 100 msec as specied by SFF-8472.
2. Bit 6 is logic OR’d with the SFP TX_DISABLE input on contact 3; either asserted will disable the SFP+ transmitter.
Table 15. EEPROM Serial ID Memory Contents Alarms and Warnings (Address A2h, Bytes 112, 113, 116, 117)
Byte Bit Flag Bit Name Description
112 7 Temp High Alarm Set when transceiver internal temperature exceeds high alarm threshold
6 Temp Low Alarm Set when transceiver internal temperature exceeds low alarm threshold
5 Vcc High Alarm Set when transceiver internal supply voltage exceeds high alarm threshold
4 Vcc Low Alarm Set when transceiver internal supply voltage exceeds low alarm threshold
3 Tx Bias High Alarm Set when transceiver laser bias current exceeds high alarm threshold
2 Tx Bias Low Alarm Set when transceiver laser bias current exceeds low alarm threshold
1 Tx Power High Alarm Set when transmitted average optical power exceeds high alarm threshold
0 Tx Power Low Alarm Set when transmitted average optical power exceeds low alarm threshold
113 7 Rx Power High Alarm Set when received average optical power exceeds high alarm threshold
6 Rx Power Low Alarm Set when received average optical power exceeds low alarm threshold
0-5 Reserved
116 7 Temp High Warning Set when transceiver internal temperature exceeds high warning threshold
6 Temp Low Warning Set when transceiver internal temperature exceeds low warning threshold
5 Vcc High Warning Set when transceiver internal supply voltage exceeds high warning threshold
4 Vcc Low Warning Set when transceiver internal supply voltage exceeds low warning threshold
3 Tx Bias High Warning Set when transceiver laser bias current exceeds high warning threshold
2 Tx Bias Low Warning Set when transceiver laser bias current exceeds low warning threshold
1 Tx Power High Warning Set when transmitted average optical power exceeds high warning threshold
0 Tx Power Low Warning Set when transmitted average optical power exceeds low warning threshold
117 7 Rx Power High Warning Set when received average optical power exceeds high warning threshold
6 Rx Power Low Warning Set when received average optical power exceeds low warning threshold
0-5 Reserved
For product information and a complete list of distributors, please go to our website: www.avagotech.com
Avago, Avago Technologies, and the A logo are trademarks of Avago Technologies in the United States and other countries.
Data subject to change. Copyright © 2005-2011 Avago Technologies. All rights reserved.
AV02-1263EN - January 18, 2011
Figure 6. Module drawing
Label format
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Figure 7. Module label

AFCT-701SDZ

Mfr. #:
Manufacturer:
Broadcom / Avago
Description:
Fiber Optic Transmitters, Receivers, Transceivers Transceiver
Lifecycle:
New from this manufacturer.
Delivery:
DHL FedEx Ups TNT EMS
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