A5WLSN85ADMA0541 AOI | Alldatasheet
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Fiber Channel 4xFC (4.25Gbps) Fiber Channel 2xFC (2.125Gbps) Fiber Channel 1xFC (1.0625Gbps) Gigabit Ethernet (1.25Gbps) SFP Type Dual LC Transceiver 850nm VCSEL Laser PIN Photo Detector 150m transmission with 50/125um MMF 70m transmission with 62.5/125um MMF 3.3V single power supply Compliant with SFP MSA Compliant with FC-PI-2 Hot pluggable Serial ID information support Digital diagnostic SFF-8472 compliant Compliant with RoHS Compliant with UL & TUV Form Factor Date Rate Media Distance Wavelength (nm) TX Power (dBm) RX Sensitivity (dBm) Voltage (V) Coupling Signal Detect DDM (Y/N) Temperature (°C) Part Number SFP-Dual-LC 4.25G MMF 150m 850 -2.5 ~ -9 < -15 3.3 AC/AC TTL Y -5 ~ +70 A5WLSN85ADMA0541
SFP Dual LC 4.25G (Multi Rate) MMF 150m 850nm Transceiver Page 2 of 12 80-21-0541 REV 002 www.ao-inc.com © Applied Optoelectronics, Inc. 2014 APPLIED OPTOELECTRONICS, INC. Absolute Maximum Ratings Parameter Symbol Conditions Min Max Unit Storage Temperature TS -- -40 +85 °C Storage Relative Humidity RH -- 5 95 % Supply Voltage VCC -- 0 4.0 V Recommended Operating Conditions Parameter Symbol Conditions Min Typ Max Unit Operating Temperature (Case) TC A5WL-SN85-ADMA -5 -- 70 °C Supply Voltage VCC -- 3.13 3.3 3.47 V Supply Current ITX +IRX -- -- -- 300 mA Data Rate DR -- -- 4.25 Gbps
Electrical Characteristics
Parameter Symbol Conditions Min Typ Max Unit Transmitter Differential Input Impedance RDI -- -- 100 -- Ohm Differential Input Voltage VDI AC-Coupled, peak to peak 0.50 -- 2.40 V Tx Disable Input-High VDISH 2.0 -- VCC+0.3 V Tx Disable Input-Low VDISL 0 -- 0.8 V Tx Fault Output-High VFOH 2.0 -- VCC+0.3 V Tx Fault Output-Low VFOL 0 -- 0.8 V Receiver Differential Output Impedance RDO -- -- 100 -- Ohm Differential Output Voltage VDO AC-Coupled, peak to peak 0.37 -- 2.00 V Rx LOS Output-High VLOSH 2.00 -- VCC+0.3 V Rx LOS Output-Low VLOSL 0.00 -- 0.80 V Optical Characteristics Parameter Symbol Conditions Min Typ Max Unit Transmitter Optical Center Wavelength λc -- 830 850 860 nm Spectral Width (RMS) -- -- 0.85 nm Optical Output Power Po Coupling into a 62.5/125um MMF -9 -- -2.5 dBm Optical Modulation Amplitude OMA @4.25Gb/s 247 -- -- uW Optical Rise/Fall Time t r / t f 20 % to 80% Values Eye Mask -- Compliant with FC-PI-2 Receiver Operating Wavelength λ -- 770 850 860 nm Receiver Overload PINMAX 1 0 -- -- dBm Receiver Sensitivity@4.25Gbps PINMIN 1 -- -- -15 dBm Receiver Sensitivity@2.125Gbps PINMIN 1 -- -- -17 dBm Receiver Sensitivity@1.25Gbps PINMIN 1 -- -- -17 dBm Receiver Sensitivity@1.0625Gbps PINMIN 1 -- -- -17 dBm Rx LOS Assert PA -- -30 -- -- dBm Rx LOS De-Assert PD -- -- -- -17 dBm Rx LOS Hysteresis PA-PD -- 0.5 -- -- dB 1. Measured with PRBS 27 –1 at 10-12 BER
SFP Dual LC 4.25G (Multi Rate) MMF 150m 850nm Transceiver Page 3 of 12 80-21-0541 REV 002 www.ao-inc.com © Applied Optoelectronics, Inc. 2014 APPLIED OPTOELECTRONICS, INC. Recommended Host Board Power Supply Circuit Recommended Interface Circuit Protocol IC Laser Driver 1000.01uF 0.01uF Preamp& Quantizer 0.01uF 0.01uF 4.7K to 10K 0.1uF SerDes IC 100 Serial IDPLD/PAL 1uH 1uH 10uF 0.1uF 10uF 0.1uF 3.3V 4.7K to 10K4.7K to 10K4.7K to 10K 4.7K to 10K4.7K to 10K Protocol VCC Protocol Vcc Tx_Disable Tx_Fault Rx_LOS 3.3V SFP Modules VccT Tx_Disable Tx_Fault TD+ TD- VeeT VccR RD+ RD- Rx_LOS VeeR MOD_DEF(0) MOD_DEF(1) MOD_DEF(2)
SFP Dual LC 4.25G (Multi Rate) MMF 150m 850nm Transceiver Page 4 of 12 80-21-0541 REV 002 www.ao-inc.com © Applied Optoelectronics, Inc. 2014 APPLIED OPTOELECTRONICS, INC. Pin Description Pin Function Definitions Pin No. Pin Name Function Plug Seq. Note
1 VeeT Transmitter Ground 1
2 TX Fault Transmitter Fault Indication 3 1
3 TX Disable Transmitter Disable 3 2
4 MOD_DEF 2 Module Definition 2 3 3
5 MOD_DEF 1 Module Definition 1 3 3
6 MOD_DEF 0 Module Definition 0 3 3
7 Rate Select No connection 3 4
8 LOS Loss of Signal 3 5
9 VeeR Receiver Ground 1 6
10 VeeR Receiver Ground 1 6
11 VeeR Receiver Ground 1 6
12 RD - Inv. Receiver Data Out 3 7
13 RD + Receiver Data Out 3 7
14 VeeR Receiver Ground 1 6
15 VccR Receiver Power 2 8
16 VccT Transmitter Power 2 8
17 VeeT Transmitter Ground 1 6
18 TD + Transmitter Data In 3 9
19 TD - Inv. Transmitter Data In 3 9
20 VeeT Transmitter Ground 1 6
SFP Transceiver Electric Pad Layout Diagram of Host Board Connector Block Pin Numbers and Names
SFP Dual LC 4.25G (Multi Rate) MMF 150m 850nm Transceiver Page 5 of 12 80-21-0541 REV 002 www.ao-inc.com © Applied Optoelectronics, Inc. 2014 APPLIED OPTOELECTRONICS, INC. Notes: Plug Seq.: Pin engagement sequence during hot plugging. 1. TX Fault is an open collector/drain output, which should be pulled up with a 4.7K – 10KΩ resistor on the host board. Pull up voltage between 2.0V and VccT, R+0.3V. When high, 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 pulled up within the modu le with a 4.7 – 10 KΩ resistor. Its states are: Low (below 0.8V): Transmitter on (>0.8, < 2.0V): Undefined High (above 2.0v): Transmitter Disabled Open: Transmitter Disabled 3. Mod-Def 0,1,2. These are the module definition pins. They should be pulled up with a 4.7K - 10KΩ resistor on the host board. The pull-up voltage shall be VccT or VccR Mod-Def 0 is grounded by the module to indicate that the module is present Mod-Def 1 is the clock line of two wire serial interface for serial ID Mod-Def 2 is the data line of two wire serial interface for serial ID 4. This is an optional input used to control the receiver bandwidth for compatibility with multiple data rates (most likely Fib er Channel 1x and 2x Rates). If implemented, the input will be internally pull ed down with > 30kΩ resistor. The input states are: Low (below 0.8V): Reduced Bandwidth (>0.8 , < 2.0V): Undefined High (above 2.0 V): Full Bandwidth Open: Reduced Bandwidth 5. LOS (Loss of Signal) is an open collector/drain output, which should be pulled up with a 4.7K -10KΩ resistor on the host board. Pull up voltage between 2.0V and VccT, R+0.3V. When high, this output indicates the received optical power is below the worst -case receiver sensitivity (as defined by the standard in use). Low indicates normal operation. In the low state, the output will be pulled to < 0.8V. 6. VeeR and VeeT may be internally connected within the SFP module. 7. RD-/+: These are the differential receiver outputs. They are AC coupled 100Ω differential lines which should be terminated with 100Ω (differential) at the user SERDES. The AC coupling is done inside the module and is thus not required on the host board. 8. VccR and VccT are the receiver and transmitter power supplies. Maximum supply current is 300 mA. Recommended host board power supply filtering is shown below. Inductors with DC resistance of less than 1Ω should be used in order to maintain the required voltage at the SFP input pin with 3.3V supply voltage. When the recommended supply filtering network is used, hot plugging of the SFP transceiver module will result in an inrush current of no more than 30 mA greater than the steady state value. VccR and VccT may be internally connected within the SFP transceiver module. 9. TD-/+: These are the differential transmitter inputs. They are AC-coupled, differential lines with 100Ω differential termination inside the module. The AC coupling is done inside the module and is thus not required on the host board. The inputs will accept differential swings of 500 – 2400 mV (250 – 1200 mV single-ended), though it is recommended that values between 500 and 1200 mV differential (250 – 600 mV single-ended) be used for best EMI performance.
SFP Dual LC 4.25G (Multi Rate) MMF 150m 850nm Transceiver Page 6 of 12 80-21-0541 REV 002 www.ao-inc.com © Applied Optoelectronics, Inc. 2014 APPLIED OPTOELECTRONICS, INC. Mechanical Design Diagram
SFP Dual LC 4.25G (Multi Rate) MMF 150m 850nm Transceiver Page 7 of 12 80-21-0541 REV 002 www.ao-inc.com © Applied Optoelectronics, Inc. 2014 APPLIED OPTOELECTRONICS, INC. EEPROM Memory contents Address A0h AOI A5WLSN85ADMA0541 E130 Add Name of field Description ACSII HEX
0 Identifier 03:SFP or SFP “Plus” Transceiver 03
1 Ext. Identifier SFP Transceiver 04
2 Connector 07:LC 07
4 SONET/SDH 00
5 SONET/SDH 00
6 Ethernet 01: 1000BASE-SX 01
7 Fiber Channel 20:intermediate distance 20
8 Fiber Channel 40:Shortwave laser 40
9 Fiber Channel 0C:Multimode,50um,62.5um 0C
10 Fiber Channel 15:1X/2X/4X FC 15
11 Encoding 01:8B10B, 05:SONET, 01
12 BR, Nominal 100Mbps/unit -> HEX (2B:4.25G) 2B
13 Rate Identifier Rate Select 00
14 Length(9um, km) 1km /unit -> HEX 00
15 Length (9um) 100m /unit -> HEX 00
16 Length (50um), OM2 10m /unit -> HEX 0F:150M 0F
17 Length (62.5um), OM1 10m /unit -> HEX 07:70M 07
18 Length (Copper) 1m /unit -> HEX 00
19 Length (50 um), OM3 10m /unit -> HEX 00
Vendor name SFP Vendor Name (ASCII) A 41
21 O 4F
22 I 49
SFP Dual LC 4.25G (Multi Rate) MMF 150m 850nm Transceiver Page 8 of 12 80-21-0541 REV 002 www.ao-inc.com © Applied Optoelectronics, Inc. 2014 APPLIED OPTOELECTRONICS, INC. 34 20 35 20
36 Reserved Reserved 00
Vendor OUI SFP Vendor IEEE company ID, No ID set "00" 38 00 39 00 Vendor PN SFP Vendor Part Number (ASCII) A 41 41 5 35
42 W 57
43 L 4C
44 S 53
45 N 4E
48 A 41
49 D 44
50 M 4D
51 A 41
Vendor rev Vendor Revision level (ASCII) A 41 57 20 58 20 59 20 Wavelength 1nm /unit -> HEX 61 52 62 Wavelength 0.01nm /unit -> HEX 00
63 CC_BASE Check Sum 0 to 62 byte 45
65 18:TX-DIS,TX_Fault 1A:TX-DIS,TX_Fault,RX-LOS 1A
66 BR, max 1% /unit 00
67 BR, min 1% /unit 00
Vendor SN Vendor SN (ASCII) XX 69 XX 70 XX 71 XX
SFP Dual LC 4.25G (Multi Rate) MMF 150m 850nm Transceiver Page 9 of 12 80-21-0541 REV 002 www.ao-inc.com © Applied Optoelectronics, Inc. 2014 APPLIED OPTOELECTRONICS, INC. 72 XX 73 XX 74 XX 75 XX 76 XX 77 XX 78 XX 79 XX 80 XX 81 XX 82 XX 83 XX Date code Year (ASCII) XX 85 XX Month (ASCII) XX 87 XX Day (ASCII) XX 89 XX Blank 91 20
92 Diagnostic Monitoring Type 58:W/I DDM(Ext_Cal),
68:W/I DDM(Int_Cal) 58
93 Enhanced Options E0:A/W, Tx_Dis, Tx_fault
F0:A/W, Tx_Dis, Tx_fault, Rx_LOS F0 94 SFF-8472 Compliance 01:9.3, 02:9.5, 03:10.2, 04:10.4 04
95 CC_EXT Check Sum 64 to 94 byte XX
SFP Dual LC 4.25G (Multi Rate) MMF 150m 850nm Transceiver Page 10 of 12 80-21-0541 REV 002 www.ao-inc.com © Applied Optoelectronics, Inc. 2014 APPLIED OPTOELECTRONICS, INC. 110 00 111 00 112 00 113 00 114 00 115 00 116 00 117 00 118 00 119 00 120 00 121 00 122 00 123 00 124 00 125 00 126 00 127 00
SFP Dual LC 4.25G (Multi Rate) MMF 150m 850nm Transceiver Page 11 of 12 80-21-0541 REV 002 www.ao-inc.com © Applied Optoelectronics, Inc. 2014 APPLIED OPTOELECTRONICS, INC. Module Label
SFP Dual LC 4.25G (Multi Rate) MMF 150m 850nm Transceiver Page 12 of 12 80-21-0541 REV 002 www.ao-inc.com © Applied Optoelectronics, Inc. 2014 APPLIED OPTOELECTRONICS, INC. Regulatory Compliance Item Standard Electromagnetic Interference (EMI) FCC Part 15 Class B EN55022 Class B (CISPR 22B) VCCI Class B Electrostatic Discharge to the Electrical Pins (ESD) MIL-STD-883E Method 3015.7 Electrostatic Discharge to the Receptacle (ESD) IEC 61000-4-2 RoHS 2011/65/EU Laser Eye Safety FDA 21CFR 1040.10 and 1040.11 Component Recognition UL and TUV Laser Safety Information All versions of this laser are Class 1 laser products per IEC1/EN2 60825-1. Users should observe safety precautions such as those recommended by ANSI3 Z136.1-2000, ANSI Z36.2-1997 and IEC 60825-1. This product conforms to FDA (CDRH) 21 CFR 1040.10 and 1040.11 except for deviations of laser safety class designation pursuant to 'Laser Notice No.50' . Product labeling: If labeling is not affixed to the module due to size constraints; then rather, labeling is placed on the outside of the shipping box. This product is not shipped with a power supply. Caution: use of controls or adjustments or performance of procedures other than those specified herein may result in hazardous radiation exposure. Certifications UL 60950-1 (E243407) TUV EN60950-1, EN 60825-1, EN 60825-2 Documentation is available upon request. (1) IEC is a registered trademark of the International Electrotechnical Commission (2) Within Europe the IEC standard has been adopted as a European Normative standard known as EN 60825, and each European country will have its own version of this standard, for example, the British Standards version known as BS EN 60825. There can be small differ ences between the different countries versions of EN 60825, and these are in part caused by the process of translating the standard into the n ative language of that country. (3) ANSI is a registered trademark of the American National Standards Institute Note : All information contained in this document is subject to change without notice. Class 1 Laser Product Compliance with 21 CFR 1040.10 and 1040.11