SPC-03-ELR-47CDA SOURCE | Alldatasheet
Document overview
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- PDF pages: 9
Technical content
Features
- Single 3.3V supply
- 34dB Minimum Link Budget
- DFB Laser
- 1470nm to 1610nm CWDM Wavelengths
- SFP MSA SFF-8074i Compatible
- Telcordia GR-253 OC-3/ITU-T G.957 STM-1 Compliant
- Commercial and Industrial Temperature
- Digital Diagnostic SFF-8472 Compliant
- RoHS-5 Compliant (lead exemption)
- Telcordia GR-468 Compliant Parameter Symbol Min. Typical Max. Unit Supply Voltage Vcc 3.135 3.3 3.465 V Total Current (-40 to -5 ºC)a Icc - - 500 mA Total Current (-5 to 85 ºC) Icc - - 300 mA Total Current Each Supply Pin Icc - - 300 mA Power Supply Noise Rejection PSR 100 - - mVp-p Operating Case Temperature (-CXX) Top -5 - 70 ºC Operating Case Temperature (-TXX) Top -40 - 85 ºC Storage Temperature Tst -40 - 85 ºC Data Rate OC-3/STM-1 DR - 155 - Mbps a) Deviation from the SFP MSA General Operation
155 Mbps CWDM SFP Transceiver
Rev A.1 LUMINENTOIC.COM Parameter Symbol Min Typical Max Unit Input Differential Impedence Rin 80 100 120 Ω PECL Single-Ended Data Input Swing Vin,p-p 250 - 1200 mV TxFault_Fault Vfault 2 - Vcc V TxFault_Normal Vnormal Vee - Vee+0.5 V TxDisable_Disable Vd 2 - Vcc V TxDisable_Enable Ven Vee - Vee+0.8 V Transmitter Specifications (Electrical) Parameter Symbol Min Typical Max Unit Receive Power Lowc Rsens,low - -36 -34 dBm Receive Power Highc Rsens,high -10 - - dBm Damage Threshold For Receiver Pin,damage 4 - - dBm Wavelengthd λ 1260 - 1620 nm LOS Assert -44 - - dBm LOS De-Assert - - -34 dBm LOS Hysteresis 0.5 - - dB c) at 10-10 BER,PRBS 223-1 d) Operational over 1200 to 1625 nm range Receiver Specifications (Optical) Parameter Symbol Min Typical Max Unit PECL Single-Ended Data Output Swing Vout, p-p 185 - 800 mV Data Output Rise Time tr - - 1000 ps Data Output Fall Time tf - - 1000 ps Receiver Specifications (Electrical) Parameter Symbol Min Typical Max Unit Tx Disable Negate Time t_on - - 5 ms Tx Disable Assert Time t_off - - 10 µs Time To Initialize, Including Reset Of Tx Fault t_init - - 300 ms Start-up time from <0ºC t_start_up - - 60 sec Tx Fault Assert Time t_fault - - 100 µs Tx Disable To Reset t_reset 10 - - µs LOS Assert Time t_loss_on - - 100 µs LOS De-Assert Time t_loss_off - - 100 µs Serial ID Clock Rate f_serial_clock - - 100 kHz RX_LOS Voltage (High) 2 - - V RX_LOS Voltage (Low) - - 0.8 V LOS Output Voltage-Fault VLOS fault 2 - Vcc V LOS Output Voltage-Normal VLOSnormal Vee - Vee+0.5 V MOD_DEF (0:2)-High Vh 2 - Vcc V MOD_DEF (0:2)-LOW Vl Vee - Vee+0.5 V Timing and Electrical
Rev A.1 LUMINENTOIC.COM Parameter Range Accuracy Unit Calibration Formula Temperature (-CDA) -5 to 70 ± 3 º C Internal Tc(C)=Tad(16 bit signed twos complement)/256 Temperature (-TDA) -40 to 85 ± 3 º C Internal Tc(C)=Tad(16 bit signed twos complement)/256 Voltage 0 to Vcc 0.1 V Internal V(Volts)=Vad(16 bit unsigned integer)*0.1 Bias current 0 to 120 5 mA External I(mA)=Islope*Iad(16 bit unsigned integer)+Ioffset TX Power 0 to +5 ± 3 dBm External TX_PWR(µW)=TX_PWRslope*TX_PWRad(16 bit unsigned integer +TX_PWRoffset RX Power -34 to -10 ± 3 dBm External RX_PWR(µW)=A0+A1*x+A2*x^2+A3*x^3+A4*x^4 Diagnostics λ Wavelength Ordering Code λC Unit Code λC Unit Code λC Unit Code λC Unit 47 1471 nm 49 1491 nm 51 1511 nm 53 1531 nm 55 1551 nm 57 1571 nm 59 1591 nm 61 1611 nm SPC-03-ELR-xxCDA See table below for “XX” values
Rev A.1 LUMINENTOIC.COM Name of Field Description of Field Address Hex ASCII Vendor Name SFP Vendor name(ASCII) 20 4C L 21 55 U 22 4D M 23 49 I 24 4E N 25 45 E 26 4E N 27 54 T 28 4F O 29 49 I 30 43 C Vendor OUI IEEE vendor OUI code for LuminentOIC Inc. 37 00 38 06 39 B5 Vendor P/N Part number in ASCII, e.g. SPC-03-ELR-xxCDA 40 53 S 41 50 P 42 43 C 43 30 0 44 33 3 45 45 E 46 4C L 47 52 R 48 x x 49 x x 50 43 C 51 44 D 52 41 A EEPROM Serial ID
Rev A.1 LUMINENTOIC.COM Pin Function Notes
1 VeeT
2 TX_FAULT Open Collector
3 TX_DISABLE Internally Pulled High
4 MOD_DEF2 Serial Data Input
5 MOD_DEF1 Serial Clock Input
6 MOD_DEF0 Internally Grounded
7 NC Not Connected
8 LOS Open Collector
9 VeeR RX Ground
10 VeeR RX Ground
11 VeeR RX Ground
12 RXD- RX Data Negative
13 RXD+ RX Data Positive
14 VeeR RX GND
15 VccR TX and RX Powera
16 VccT TX and RX Powera
17 VeeT TX GND
18 TXD+ TX Data Positive
19 TXD- TX Data Negative
20 VeeT TX GND
a) deviations from the SFP MSA
Rev A.1 LUMINENTOIC.COM Outline Drawing Units in mm(inch)
Rev A.1 LUMINENTOIC.COM Suggested Transceiver Interface Protocol IC SerDes Laser Driver Receiver Amplifier LuminentOIC SFP Vcc 10F 0.1F .01F VCCT 10K TX_DISABLE TX_FAULT TD + TD - VEET .01F .01F 100 VCCR 10F 0.1F .01F .01F 100 EEPROM MOD_DEF 2 MOD_DEF 1 MOD_DEF 0 RD + RD - RX_LOS TX_DISABLE TX_FAULT RX_LOS R1R1R1 R VEER Vcc R1=4.7K to 10K
Rev A.1 LUMINENTOIC.COM
Ordering Information
Part Numbering Definition: SPC - 03 - ELR - x x Temperature Diagnostic Revision -xx SPC = SFP , CWDM 03 = Data Rate ELR = Reach xx = 1xx1 nm center wavelength xx = Customer Specifics A = Design Rev. D = Digital Diagnostics N = No Diagnostics Operating Temperature C = Commercial Temp. (-5 to 70º C) T = Commercial Temp. (-40 to 85º C) Available Options: SPC-03-ELR-xxCDA SPC-03-ELR-xxCNA SPC-03-ELR-xxTDA SPC-03-ELR-xxTNA
LUMINENTOIC.COM IMPORTANT NOTICE! All information contained in this document is subject to change without notice, at LuminentOIC’s sole and absolute discretion. LuminentOIC warrants performance of its products to current specifications only in accordance with the company’s standard one-year warranty; however, specifications designated as “preliminary” are given to describe components only, and LuminentOIC expressly disclaims any and all warranties for said products, including express, implied, and statutory warran ties, warranties of merchantability, fitness for a particular purpose, and non-infringement of proprietary rights. Please refer to the company’s Terms and Conditions of Sale for further warranty information. LuminentOIC assumes no liability for applications assistance, customer product design, software performance, or infringement of patents, services, or intellectual property described herein. No license, either express or implied, is granted under any patent right, copyright, or intellectual property right, and LuminentOIC makes no representations or warranties that the product(s) described herein are free from patent, copyright, or intellectual property rights. Products described in this docu- ment are NOT intended for use in implantation or other life support applications where malfunction may result in injury or death to persons. LuminentOIC customers using or selling products for use in such applications do so at their own risk and agree to fully defend and indemnify LuminentOIC for any damages resulting from such use or sale. THE INFORMATION CONTAINED IN THIS DOCUMENT IS PROVIDED ON AN “AS IS” BASIS. Customer agrees that LuminentOIC is not liable for any actual, consequential, exemplary, or other damages arising directly or indirectly from any use of the information contained in this document. Customer must contact LuminentOIC to obtain the latest version of this publication to verify, before placing any order, that the information contained herein is current. © LuminentOIC, Inc. 2003 All rights reserved Handling Precautions: This device is susceptible to damage as a result of electrostatic discharge (ESD). A static free environment is highly recommended. Follow guidelines according to proper ESD procedures. Laser Safety: Radiation emitted by laser devices can be dangerous to human eyes. Avoid eye exposure to direct or indirect radiation. Warnings: Legal Notes: Rev A.1