GbE SFP CWDM Transceiver (120km) RCP12SVX

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RoHS Compliant GbE SFP CWDM Transceiver (120km) RCP12SVX Applications Gigabit Ethernet 1x Fiber Channel Features Up to 1.25Gb/s, 120Km optical data link Eight wavelengths CWDM transceivers Uncooled CWDM DFB laser transmitter for 1000Base-LX application (120km) Digital diagnostic SFF-8472 compliant APD receiver with DC-DC and APD bias control circuits Very low jitter Metal package for lower EMI Single power supply voltage : +3.3V Low power dissipation LC duplex connector Three optional operating temperature ranges : Option ST : -5 C to 75 C Option ET : -5 C to 85 C Option IT : -40 C to 85 C Description OE Solutions Small Form Factor Pluggable (SFP) transceivers are compatible with the Small Form Factor Pluggable 20pin Multi-Source Agreement (MSA). RCP12SVX complies with Gigabit Ethernet as specified in IEEE 802.3 and Fiber Channel FC-PI 13.0. Digital diagnostics functions are available via the 2-wire serial bus specified in the SFF-8472 rev.10.4. The transmitter has CWDM DFB laser with eight wavelength options and back facet monitor. The receiver part has an APD-TIA frontend. The transmitter features ac-coupled differential data inputs, and an LVTTL for Tx disable input and Tx fault output. The receiver features differential ac-coupled data outputs and LVTTL for LOS (Loss of Signal) output. Circuit ground is internally isolated from frame ground. www.oesolution.com 1

1. General Operating Conditions Parameter Symbol Min. Typ. Max. Unit Notes Absolute Supply Voltage Vcc_max 0-4.0 V - Operating Voltage Vcc 3.135-3.465 V - Total Current Icc - - 500 ma 3 Operating Case Temperature Top -40-85 C 1,2 Storage Temperature Tst -40-85 C - Notes : 1. Measured on top side front center of SFP module. 2. There are three options of operating maximum temperature: Option ST: standard temperature from -5 o C to 75 o C, Option ET: extended temperature from -5 o C to 85 o C and Option IT: Industrial temperature from -40 o C to 85 o C. 3. for ST and ET, 300mA 2. Transmitter Specifications (Over Operating Case Temperature Range, Vcc = 3.135V to 3.465V) Electrical Characteristics Parameter Symbol Min. Typ. Max. Unit Notes Input Differential Impedance Rin - 100 - Ω - Single Ended Data Input Swing Vin,pp 150-1000 mv - Tx Disable Voltage Vd 2.4 - V - Tx Enable Voltage Ven - - 0.8 V - Optical Characteristics Optical Power 1 Pout 0-5 dbm ST -1-5 ET, IT Optical Extinction Ratio ER 9 - - db 2 1264.5 1271 1277.5 nm Optical Wavelength λ 1284.5 1291 1297.5 nm 1304.5 1311 1317.5 nm 1324.5 1331 1337.5 nm 1344.5 1351 1357.5 nm 1364.5 1371 1377.5 nm 1384.5 1391 1397.5 nm 1404.5 1411 1417.5 nm 1424.5 1431 1437.5 nm 1444.5 1451 1457.5 nm 1464.5 1471 1477.5 nm 1484.5 1491 1497.5 nm 1504.5 1511 1517.5 nm 1524.5 1531 1537.5 nm 1544.5 1551 1557.5 nm 1564.5 1571 1577.5 nm - 2

1584.5 1591 1597.5 nm 1604.5 1611 1617.5 nm Optical Rise/Fall Time tr/tf - - 260 ps 3 Spectral Width (-20dB) σ - - 1 nm - Deterministic Jitter DJ - - 80 ps - Total Jitter TJ - - 227 ps - Dispersion Penalty (120km) DP - - 2 db 4 Notes : 1. Using 9/125 SMF 2. 9dB minimum for Gigabit Ethernet and Fiber Channel 3. Unfiltered, 20%~80% values 4. Measured with a PRBS of 2 7-1 at 1.25Gb/s, 1x 10-12 BER and 9dB extinction ratio Laser Safety: All transceivers in this datasheet are Class I Laser products per FDA/CDRH and IEC-825 standards. They must be operated under specified operating conditions. 3. Receiver Specifications (Over Operating Case Temperature Range, Vcc = 3.135V to 3.465V) Electrical Characteristics Parameter Symbol Min. Typ. Max. Unit Notes Single Ended Data Output Swing Vout,pp 200-600 mv - Data Output Rise/Fall Time tr/tf - - 260 ps 1 Optical Characteristics Average Rx Sensitivity@GbE RSENS1 - - -32 dbm 2 Average Rx Sensitivity@ 1X FC RSENS2 - - -32 dbm 2 Maximum Input Power(overload) Pmax -7 - - dbm - Optical Center Wavelength λc 1260-1620 nm - LOS Assert LOS_A -45 - - dbm - LOS De-assert LOS_D - - -32 dbm - LOS Hysteresis - 0.5 2 5 db - Notes : 1. 20%~80% values 2. Measured with 27-1 PRBS at 1.25Gbps, 1x10-12 BER, and 9.0 db extinction ratio 3

4. Pin Descriptions 20 19 18 17 16 15 14 13 12 11 Tx GND TD- TD+ Tx GND VccT VccR Rx GND RD+ RD- Rx GND 1 2 3 4 5 6 7 8 9 10 Tx GND Tx Fault Tx Disable MOD-DEF(2) MOD-DEF(1) MOD-DEF(0) Rate Select LOS Rx GND Rx GND Top of Board Bottom of Board SFP Transceiver Electrical Pad Layout 5. Pin Descriptions (continued) Pin Symbol Description Plug Seq. * Notes 1 Tx GND Transmitter Ground 1 1 2 Tx Fault Transmitter Fault Indication 3 2 3 Tx Disable Transmitter Disable 3 3 4 MOD-DEF2 Module Definition 2 3 4 5 MOD-DEF1 Module Definition 1 3 4 6 MOD-DEF0 Module Definition 0 3 4 7 Rate-Select No User Connection 3 5 8 LOS Los of Signal 3 6 9 Rx GND Receiver Ground 1 1 10 Rx GND Receiver Ground 1 1 11 Rx GND Receiver Ground 1 1 12 RD- Receiver Negative Data Out 3-13 RD+ Receiver Positive Data Out 3-14 Rx GND Receiver Ground 1 1 15 VccR Receiver Power 2 3.3V±5% 16 VccT Transmitter Power 2 3.3V±5% 17 Tx GND Transmitter Ground 1 1 4

18 TD+ Transmitter Positive Data In 3-19 TD- Transmitter Negative Data In 3-20 Tx GND Transmitter Ground 1 1 *Plug Seq. : Pin engagement sequence during hot plugging Notes : 1. Circuit ground is internally isolated from frame ground. Tx GND and Rx GND may be internally isolated within the TRx module. 2. Tx Fault is an open collector output that shall be pulled up with a 4.7kΩ ~ 10kΩ on the host board. Pull up voltage between 2.0V and VccT + 0.3V. When high, output indicates a laser fault of some kind. When low, output indicates normal operation. The LD output is not turned off in case of Tx Fault 3. Tx Disable is an input that is used to shut down the transmitter optical output. It is pulled up within the TRx with a 4.7kΩ ~ 10kΩ. 4. MOD-DEF 0, 1, 2 are the SFP module definition pins. They should be pulled up with a 4.7kΩ ~ 10kΩ on the host board. The pull-up voltage shall be VccT. MOD-DEF0 indicates that the module is present. MOD-DEF1 is the clock line of 2-wire serial interface for serial ID MOD-DEF2 is the data line of 2-wire serial interface for serial ID 5. OE Solutions RCP12SVX SFP transceivers operate at Gigabit Ethernet, 1x Fiber Channel, and respective protocols without active control. 6. LOS is an open collector output. Shall be pulled up with a 4.7kΩ ~ 10kΩ on host board. Pull up voltage between 2.0 and VccR+0.3. Logic 0 indicates normal operation. 5

6. Outline Drawings Dimensions are in millimeters (inches) 6

7. PCB layout and Bezel recommendation Dimensions are in inches (millimeters) Notes : 1. Datum and basic dimensions established by customer. 2. Pads and vias are chassis ground, 11 locations 3. Thru holes, plating optional. 7

8. PCB layout and Bezel recommendation (continued) Notes : Thru holes, plating optional. Recommended Panel Opening 8

9. Power Supply Information VccT 1µH VccR 1µH 3.3V 10µF 10µF HOST BOARD SFP MODULE Recommended Host Board Supply Filtering Network PROTOCOL Vcc PROTOCOL Vcc 3.3V 10µF 1µH 1µH SFP MODULE Tx_Disable Tx_Fault 4.7kΩ- - 10kΩ Tx_Disable Tx_Fault TD+ VccT 4.7kΩ- - 10kΩ PROTOCOL IC TD- VEE EET 100Ω LASER DRIVER SERDES IC 4.7kΩ- - 10kΩ 10µF VccR RD+ 100Ω RD- PREAMP & QUANTIZER Rx_LOS 3.3V Rx_LOS Rate_Select VEE EER PLD/ PAL 4.7kΩ- 10kΩ 4.7kΩ- 10kΩ 4.7kΩ- 10kΩ MOD_DEF 0 MOD_DEF 1 MOD_DEF 2 SFP Host Board Schematic 9

10. Diagnostics A2h address Parameter Calibration Accuracy Range 96-97 Temperature External +/- 3 o C Note 1 98-99 Vcc External +/- 3% 3.135 to 3.465 100-101 Tx bias External +/- 10% Note 2 102-103 Tx power External +/- 3dB -1 to 5dBm 104-105 Rx Power External +/- 3dB -32 to -7dBm Note: 1) Junction temperature of temperature sensing device. 2) Specified by nominal value 11. Ordering Information Model Name OES P/C Operating Temperature Nominal Wavelength Latch Color Distance 1 Standard Temperature Range (-5 o C to 75 o C) RCP12SVX-S27 48900-5oC to 75oC 1271nm Gray VX(120Km) RCP12SVX-S29 49000-5oC to 75oC 1291nm Violet VX(120Km) RCP12SVX-S31 49100-5oC to 75oC 1311nm Blue VX(120Km) RCP12SVX-S33 49200-5oC to 75oC 1331nm Green VX(120Km) RCP12SVX-S35 49300-5oC to 75oC 1351nm Yellow VX(120Km) RCP12SVX-S37 49400-5oC to 75oC 1371nm Orange VX(120Km) RCP12SVX-S39 49500-5oC to 75oC 1391nm Red VX(120Km) RCP12SVX-S41 49600-5oC to 75oC 1411nm Brown VX(120Km) RCP12SVX-S43 49700-5oC to 75oC 1431nm Black VX(120Km) RCP12SVX-S45 49800-5oC to 75oC 1451nm Yellow Gold VX(120Km) RCP12SVX-S47 42602-5oC to 75oC 1471nm Gray VX(120Km) RCP12SVX-S49 43202-5oC to 75oC 1491nm Violet VX(120Km) RCP12SVX-S51 43802-5oC to 75oC 1511nm Blue VX(120Km) RCP12SVX-S53 44402-5oC to 75oC 1531nm Green VX(120Km) RCP12SVX-S55 45002-5oC to 75oC 1551nm Yellow VX(120Km) RCP12SVX-S57 45602-5oC to 75oC 1571nm Orange VX(120Km) RCP12SVX-S59 46202-5oC to 75oC 1591nm Red VX(120Km) RCP12SVX-S61 46802-5oC to 75oC 1611nm Brown VX(120Km) Extended Temperature Range (-5 o C to 85 o C) RCP12SVX-E27 TBD -5oC to 85oC 1271nm Gray VX(120Km) RCP12SVX-E29 TBD -5oC to 85oC 1291nm Violet VX(120Km) RCP12SVX-E31 TBD -5oC to 85oC 1311nm Blue VX(120Km) RCP12SVX-E33 TBD -5oC to 85oC 1331nm Green VX(120Km) RCP12SVX-E35 TBD -5oC to 85oC 1351nm Yellow VX(120Km) RCP12SVX-E37 TBD -5oC to 85oC 1371nm Orange VX(120Km) RCP12SVX-E39 TBD -5oC to 85oC 1391nm Red VX(120Km) RCP12SVX-E41 TBD -5oC to 85oC 1411nm Brown VX(120Km) RCP12SVX-E43 TBD -5oC to 85oC 1431nm Black VX(120Km) RCP12SVX-E45 TBD -5oC to 85oC 1451nm Yellow Gold VX(120Km) RCP12SVX-E47 42700-5oC to 85oC 1471nm Gray VX(120Km) RCP12SVX-E49 43300-5oC to 85oC 1491nm Violet VX(120Km) RCP12SVX-E51 43900-5oC to 85oC 1511nm Blue VX(120Km) RCP12SVX-E53 44500-5oC to 85oC 1531nm Green VX(120Km) RCP12SVX-E55 45100-5oC to 85oC 1551nm Yellow VX(120Km) RCP12SVX-E57 45700-5oC to 85oC 1571nm Orange VX(120Km) 10

RCP12SVX-E59 46300-5oC to 85oC 1591nm Red VX(120Km) RCP12SVX-E61 46900-5oC to 85oC 1611nm Brown VX(120Km) Industrial Temperature Range (-40 o C to 85 o C) RCP12SVX-I27 42751-40oC to 85oC 1271nm Gray VX(120Km) RCP12SVX-I29 42752-40oC to 85oC 1291nm Violet VX(120Km) RCP12SVX-I31 42753-40oC to 85oC 1311nm Blue VX(120Km) RCP12SVX-I33 42754-40oC to 85oC 1331nm Green VX(120Km) RCP12SVX-I35 42755-40oC to 85oC 1351nm Yellow VX(120Km) RCP12SVX-I37 42756-40oC to 85oC 1371nm Orange VX(120Km) RCP12SVX-I39 TBD -40oC to 85oC 1391nm Red VX(120Km) RCP12SVX-I41 TBD -40oC to 85oC 1411nm Brown VX(120Km) RCP12SVX-I43 42759-40oC to 85oC 1431nm Black VX(120Km) RCP12SVX-I45 42760-40oC to 85oC 1451nm Yellow Gold VX(120Km) RCP12SVX-I47 42801-40oC to 85oC 1471nm Gray VX(120Km) RCP12SVX-I49 43401-40oC to 85oC 1491nm Violet VX(120Km) RCP12SVX-I51 44001-40oC to 85oC 1511nm Blue VX(120Km) RCP12SVX-I53 44601-40oC to 85oC 1531nm Green VX(120Km) RCP12SVX-I55 45201-40oC to 85oC 1551nm Yellow VX(120Km) RCP12SVX-I57 45801-40oC to 85oC 1571nm Orange VX(120Km) RCP12SVX-I59 46401-40oC to 85oC 1591nm Red VX(120Km) RCP12SVX-I61 47001-40oC to 85oC 1611nm Brown VX(120Km) Notes : 1. The transmission distance shown is for guidelines only, not guaranteed. Longer distances can be supported if the power budget of optical link is satisfied. Revision History Date Rev. # Description Author 01/31/2006 Rev. A.1 first release MSPARK 04/01/2009 Rev.A.2 mechanical drawing updated MSPARK 03/19/2011 Rev.A.3 1271~1611nm JSYU Contact Information: OE Solutions Co. Ltd. (Korea) Techno Park, 958-3, Daechon-Dong, Buk-Gu, Gwangju, Korea, 500-470. Tel: +82-62-602-7813, Fax: +82-62-602-7639, www.oesolution.com. OE Solutions America, Inc. 560 Sylvan Avenue, 1 st Floor, Englewood Cliffs, NJ 07632 Tel: 201-568-1188 Fax: 201-568-1177 11