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  page 1 of 12 d s - 5 1 9 2 r e v 0 1 ja n. 9, 2 009 preliminary datasheet tp t -mr-04-ccdl5 a features ? compliant with the 300 pin sff msa ? support multi-rate from 9.953gb/s to 11.3gbps ? full c-band integrated tunable laser and mz modulator ? high sensitivity pin receiver ? 50ghz channel spacing ? 800ps/nm chromatic dispersion ? 16-bit parallel 622.08mbps lvds data interface ? compliant i2c msa (edition 4.0) interface for monitoring/control ? built-in sbs dither ? optional optical tx trace id (tx_trace) ? supply voltage: +5.0v, +3.3v, and -5.2v ? compact size (2?x3?x0.53?) or (2?x3?x0.45?) ? operating case temperature: -5 o c to +70 o c applications ? metro/regional/long haul dwdm system ? sonet/sdh, ethernet and fiber channel system at standard and fec rates ? sparing and inventory reduction ? optical transport network (otn) system description tpt-mr-04-ccdl5a c- band tunable 300 pin sff transponder is designed for dwdm system applications with dispersion window from -800 to +800ps/nm. it provides mu lti-rate capability from 9.95gbps to 11.3gbps. the integrated c band tunable laser and mz modulator transmitter converts the electrical data into a 10gbit/s optical signal. the low noise pin receiver converts the incoming optical signal back to electrical data. the mux section multiplexes 16 parallel 622mb/s electrical channels into a 10gb/s serial data stream and sends it to the transmitter. the demux section demultiplexes the 10gb/s electrical data stream into 16 parallel 622mb/s electrical channels. the parallel data is sent out to and receive from the 300-pin msa (multi source agreement) compliant connector. the transmitter and receiver reference clock rates are selectable: divide by either 16 or 64.
page 2 of 12 d s - 5 1 9 2 r e v 0 1 ja n. 9, 2 009 preliminary datasheet tp t -mr-04-ccdl5 a function block diagram 16:1 mux & cmu modulator driver tunable laser & modulator controller tunable laser w/ inp mz modulator txtrace txdout 16 txdin+/-[15:0] txpiclk+/- txmclk+/- txpclk+/- tx micro-controller mod_reset i2c clk i2c data i2cadd[2:0] scl1 sda1 rs232 16 rxdout+/-[15:0] rxpoclk+/- rxmclk+/- rxrefclk+/- bias rxdtv rx data 1:16 demux & cdr rx tx control alarms monitors lsenable txlockerr lspowmon txreset txalmint lsbiasmon txfifores almint lswavemon dloopenb lstempalm lstempmon txrefsel lspowalm txlinetimsel txfifoerr txratesel rx control alarms monitors rxlckref rxlockerr rxpowmon rxreset rxpowalm rxmclksel rxsigalm rxrefsel rxalmint rxmutedout rxmutepoclk rxmutemclk lloopenb rxratesel on board i2c devices txrefclk bitrate/16, or bitrate/64 sbs 16:1 mux & cmu modulator driver tunable laser & modulator controller tunable laser w/ inp mz modulator txtrace txdout 16 txdin+/-[15:0] txpiclk+/- txmclk+/- txpclk+/- tx micro-controller mod_reset i2c clk i2c data i2cadd[2:0] scl1 sda1 rs232 16 rxdout+/-[15:0] rxpoclk+/- rxmclk+/- rxrefclk+/- bias rxdtv rx data 1:16 demux & cdr rx rx tx control alarms monitors lsenable txlockerr lspowmon txreset txalmint lsbiasmon txfifores almint lswavemon dloopenb lstempalm lstempmon txrefsel lspowalm txlinetimsel txfifoerr txratesel rx control alarms monitors rxlckref rxlockerr rxpowmon rxreset rxpowalm rxmclksel rxsigalm rxrefsel rxalmint rxmutedout rxmutepoclk rxmutemclk lloopenb rxratesel on board i2c devices txrefclk bitrate/16, or bitrate/64 sbs absolute maximum ratings table 1 absolute maximum ratings parameter symbol min. max. unit storage temperature t s -40 85 c v cc -0.5 5.5 v v dd -0.5 3.575 v supply voltage v ee -6.0 0.3 v max rx input power p in_max 2 dbm operating relative humidity (non-condensing) rh 5 85 % electro-static discharge esd - 500 v recommended operating conditions table 2 - recommended operating conditions parameter symbol min. typ. max. unit operating case temperature t c -5 - 70 c v cc 4.75 5.0 5.25 v v dd 3.13 3.3 3.46 v supply voltage v ee -5.46 -5.2 -4.94 v i cc - - 250 ma i dd - - 1800 1) ma supply current i ee - - 800 2) ma power consumption pd - 7 10 w power supply noise rejection - - 50 mvp-p bit rate br 9.95 - 11.3 gbps
page 3 of 12 d s - 5 1 9 2 r e v 0 1 ja n. 9, 2 009 preliminary datasheet tp t -mr-04-ccdl5 a note: 1) transient current up to 2000ma. 2) transient current up to 1300ma. optical interface characteristics table 3 - optical characteristics parameter symbol min. typical max. unit notes transmitter wavelength range c (f c ) 1528.77 (196.1) - 1563.86 (191.7) nm thz 1 output power p out 3 - 6 dbm output power stability p -0.5 - 0.5 db output power at laser disable p out-off -30 dbm channel spacing cs 50 - - ghz wavelength tuning accuracy ? -25 25 pm wavelength stability drift -25 25 pm tuning time t tuning 30 s side mode suppression ratio smsr 45 db chirp ( ) -0.1 0.1 extinction ratio er 12 db output optical eye compliant with telcordia gr-253-core and itu-t g.691 20khz~80mhz 0.3 uipp 2 jitter generation 4mhz~80mhz 0.1 uipp 2 receiver centre wavelength c 1528 1565 nm 3 receiver sensitivity p in_l -18 -17 dbm 4 receiver overload p in_h 0 dbm 4 optical path penalty opp 2 db chromatic dispersion tolerance cdt -800 800 ps/nm reflection of receiver -27 db jitter tolerance compliant with telcordia gr-253 and itu-t g.825 jitter transfer compliant with telcordia gr-253 and itu-t g.825 mechanical housing fiber pigtail length fiber _l 1000 1200 mm 76.07x55.75x13.46 mm 5 module dimension lxwxh 2.995x2.195x0.53 inch 5 notes: 1. 89 channel tuning range is the standard spec. wider tuning range is ava ilable upon special request 2. measured with a nrz prbs 2 31 -1 test pattern @ 9.95328gbps. 3. the rx can accept a wider input wavelength range fr om 1290 to 1605nm with some performance degradation.
page 4 of 12 d s - 5 1 9 2 r e v 0 1 ja n. 9, 2 009 preliminary datasheet tp t -mr-04-ccdl5 a 4. measured with a nrz prbs 2 31 -1 test pattern @ 9.95328gbps, ber 1x10-12, back to back. 5. thinner thickness of 0.449? or 11 .40mm housing is also available. electrical interface characteristics table 4 - lvds input/output specification parameter symbol min. typical max. unit notes lvds interface input high-voltage v ih 925 2400 mv input low-voltage v il 825 1900 mv input common mode voltage v ic 850 1800 mv single-ended input-voltage swing v sin 100 650 mv differential input-voltage swing v din 200 1300 mv input differential impedance r id 80 100 120 output high-voltage v oh 1160 1550 mv output low-voltage v ol 925 1200 mv output common mode voltage vcm 1050 1425 mv single-ended output-voltage swing v sout 250 450 mv differential output-voltage swing v dout 500 900 mv output differential impedance r od 40 100 140 rise time/fall time t rise/fall 100 250 ps clock signal duty cycle t dc 45 50 55 % differantial voltage (v od or v id ) vp vn common mode voltage (v cmi or v cmd ) definition of differantial voltage levels table 5 - lvttl input/output specification parameter symbol min. typical max. unit notes input high voltage v ih 2.0 v input low voltage v il 0.65 v input high current i ih 45 a input low current i lh 30 a output high voltage v ih 2.4 v i oh =600 a output low voltage v il 0.4 v i ol =-600 a rise time/fall time t rise/fall 1 15 ns 10pf capacitive load operating frequency f operating 10 mhz
page 5 of 12 d s - 5 1 9 2 r e v 0 1 ja n. 9, 2 009 preliminary datasheet tp t -mr-04-ccdl5 a clock and data interfaces table 6- reference clock characteristics parameter symbol min. typical max. unit notes transmitter frequency txrefclkp txrefclkn 155.52/622.08 mhz serial data-rate is 9.953gbps frequency tolerance -100 +100 ppm 20ppm is required to meet sonet output frequency spec 200 800 ps 155.52mhz, 20% to 80% amplitude rise/fall time tr/tf 100 300 ps 622.08mhz, 20% to 80% amplitude duty cycle t dc 45 50 55 % receiver frequency rxrefclkp rxrefclkn 155.52/622.08 mhz serial data-rate is 9.953gbps frequency tolerance -100 +100 ppm 200 800 ps 155.52mhz, 20% to 80% amplitude rise/fall time tr/tf 100 300 ps 622.08mhz, 20% to 80% amplitude duty cycle t dc 45 50 55 % table 7 - transmitter/receiver parallel data/clock interface parameter symbol level notes transmitter 16-bit parallel date input txdin[0:15]p/n lvds tx din0:lsb, txdin15:msb transmitter source synchronous parallelinput clock txpiclkp/n lvds transmitter counter clock txpclkp/n lvds receiver 16-bit parallel date output rxdout[0:15]p/n lvds rxdout0:lsb, rxdout15:msb receiver source synchronous parallel output clock rxpoclkp/n lvds
page 6 of 12 d s - 5 1 9 2 r e v 0 1 ja n. 9, 2 009 preliminary datasheet tp t -mr-04-ccdl5 a table 8 - transmitter/receiver parallel data/clock timing parameter symbol min. typical max. unit notes transmitter data/clock timing: serdes input timing at serdes pin duty cycle(t w /t o ) t dc 40 50 60 % txpiclk rise and fall time tr/tf 100 300 ps 20 ? 80% setup time ts 300 ps txdin hold time th 300 ps txpiclkp txdin[0:15]p/n to tw th ts ts: measuring from the lhs inner data eye to the immediate rising edge of clock pulse th: measuring from the rising edge of clock pulse to the inner rhs of data eye receiver data/clock timing: serd es output timing at serdes pin duty cycle(t w /t o ) t dc 45 55 % rxpoclk rise and fall time tr/tf 100 300 ps 20 ? 80% tcq_min, -250 250 ps rxdout data/clock skew tcq_max -250 250 ps rxpoclkp r xd o u t[0:15]p /n to tw tcq_max tcq_min table 9 - monitor clock parameter symbol level notes transmitter monitor clock txmclkp/n lvds the lvds txmclk is either a 1/16 or 1/64 replica of the clock used to time the serial data output. the rate of the txmclk is always the same as that of the txrefclk receiver monitor clock rxmclkp/n lvds the lvds rxmclk is a 1/16 or 1/64 replica of the clock recovered from the incoming data
page 7 of 12 d s - 5 1 9 2 r e v 0 1 ja n. 9, 2 009 preliminary datasheet tp t -mr-04-ccdl5 a digital control signal table 10 - input digital signals function symbol level description note l module reset module reset mod_reset lvttl h normal operation reset both tx and rx section (lvttl with pull-up resistor) transmitter l 1/64 data-rate select the frequency of txrefclk txrefsel lvttl h 1/16 data-rate (lvttl with pull-up resistor) l enable enable internal line timing txlinetimsel lvttl h normal operation (lvttl with pull-up resistor) l normal operation enable/disable laser lsenable lvttl h laser disabled (lvttl with pull-down resistor) l mux fifo reset mux fifo reset txfifores lvttl h normal operation internally txfifoerr is connected to txfifores, txfifoerr will initiate a fifo reset (lvttl with pull-up resistor) receiver l 1/64 data-rate select the frequency of rxrefclk rxrefsel lvttl h 1/16 data-rate (lvttl with pull-down resistor) l 1/64 data-rate select the frequency of rxmclk rxmclksel lvttl h 1/16 data-rate (lvttl with pull-up resistor) l lock to rxrefclk lock rxpoclk to rxrefclk rxlckref lvttl h normal operation (lvttl with pull-up resistor) l mutes the rxdout[0:15] mutes the rxdout[0:15] rxmutedout lvttl h normal operation (lvttl with pull-up resistor) l mutes the rxmclk mutes the receiver output monitor clock rxmutemclk lvttl h normal operation (lvttl with pull-up resistor) l mutes the rxpoclk mutes receiver parallel output clock rxpoclk rxmutepoclk lvttl h normal operation (lvttl with pull-up resistor)
page 8 of 12 d s - 5 1 9 2 r e v 0 1 ja n. 9, 2 009 preliminary datasheet tp t -mr-04-ccdl5 a digital alarm signal table 11 - alarms digital signals function symbol level description note common digital signal l any alarm from both transmitter and receiver indicates all alarm active almint lvttl h normal operation activation time: 50ms deactivation time: 50ms transmitter l alarm active loss of tx pll lock txlockerr lvttl h normal operation loss of transmitter pll lock activation time: 1ms deactivation time: 1ms l alarm active (fifo overflow) mux fifo error txfifoerr lvttl h normal operation internally txfifoerr is connected to txfifores, l alarm active (laser bias current alarm) laser bias out of range lsbiasalm lvttl h normal operation activation time: 50 ms deactivation time: 50 ms l alarm active laser temperature out of range lstempalm lvttl h normal operation activation time : 50ms deactivation time : 50ms l alarm active laser output power out of range lspowalm lvttl h normal operation bol activation time : 50ms deactivation time : 50ms l alarm from transmitter tx alarms txalmint lvttl h normal operation activation time: 50 ms; deactivation time: 50 ms receiver l alarm active loss of rx pll lock rxlockerr lvttl h normal operation activation time: 1ms deactivation time: 1ms l alarm active loss of receiver signal power alarm rxpowalm lvttl h normal operation activation time: <100 s deactivation time: <100 s l alarm from receiver rx alarms rxalmint lvttl h normal operation activation time: 50 ms; deactivation time: 50 ms
page 9 of 12 d s - 5 1 9 2 r e v 0 1 ja n. 9, 2 009 preliminary datasheet tp t -mr-04-ccdl5 a analog monitoring signal table 12 - monitor signals function symbol min. typ. max. unit transmitter normalized laser power monitor voltage bol 0.47 0.5 0.53 v laser power monitor voltage slope lspowmon 0.25 v change for 50% power variation laser bias monitor voltage offset 0.2 0 2 v laser bias monitor voltage slope lsbiasmon 18 20 22 mv/ma normalized laser temperature monitor voltage 2.4 2.5 2.6 v laser temperature monitor voltage slope lstempmon 23 25 27 mv/ receiver input optical power monitor voltage slope 6 8 10 v/mw input optical power monitor error rxpowmon -2 +2 db i2c serial interface table 13 ? i2c interface function symbol level description note i2cad0 lvttl i2c address input for module addressing (lsb) (lvttl with pull-down resistor) i2cad1 lvttl i2c address input for module addressing (lvttl with pull-down resistor) i2c address i2cad2 lvttl i2c address input for module addressing (msb) (lvttl with pull-down resistor) i2c clock i2cclock open collector i2c clock input/output for remote access n/a i2c data i2cdata open collector i2c data input/output for remote access n/a
page 10 of 12 d s - 5 1 9 2 r e v 0 1 ja n. 9, 2 009 preliminary datasheet tp t -mr-04-ccdl5 a pin definitions table 14 - pin function definitions k j h g f e d c b a 1 +5v nuc gnd rxdout12p nuc rxdout8p gnd rxdout4p gnd rxdout0p 2 +5v ffu gnd rxdout12n nuc rxdout8n gnd rxdout4n gnd rxdout0n 3 rxratesel0 rxratesel1 nuc gnd rxpowmon gnd i2cad0 gnd rxdtv gnd 4 +3.3v nuc gnd rxdout13p +3.3v rxdout9p gnd rxdout5p gnd rxdout1p 5 +3.3v nuc gnd rxdout13n +3.3v rxdout9n gnd rxdout5n gnd rxdout1n 6 rxreset nuc dloopenb gnd rxpowalm gnd i2cad1 gnd rxmute dout gnd 7 +3.3v ffu gnd rxdout14p +3.3v rxdout10p gnd rxdout6p gnd rxdout2p 8 +3.3v ffu gnd rxdout14n +3.3v rxdout10n gnd rxdout6n gnd rxdout2n 9 rxmutepoclk nuc ffu gnd nuc gnd i2cad2 gnd rxlckref gnd 10 -5.2v nuc gnd rxdout15p -5.2v rxdout11p gnd rxdout7p gnd rxdout3p 11 -5.2v nuc gnd rxdout15n -5.2v rxdout11n gnd rxdout7n gnd rxdout3n 12 rxmutemclk nuc ffu gnd rxsigalm gnd mod_reset gnd rxmclksel gnd 13 -5.2v ffu gnd ffu -5.2v rxpoclkp gnd rxmclkp gnd rxrefclkp 14 -5.2v rxalmint gnd ffu -5.2v rxpoclkn gnd rxmclkn gnd rxrefclkn 15 i2cclock nuc almint gnd rxrefsel gnd ffu gnd rxlockerr gnd 16 +5v txalmint gnd txdin12p nuc txdin8p gnd txdin4p gnd txdin0p 17 +5v ffu gnd txdin12n nuc txdin8n gnd txdin4n gnd txdin0n 18 i2cdata nuc ffu gnd lsbiasmon gnd lspowmon gnd nuc gnd 19 +3.3v nuc gnd txdin13p +3.3v txdin9p gnd txdin5p gnd txdin1p 20 +3.3v nuc gnd txdin13n +3.3v txdin9n gnd txdin5n gnd txdin1n 21 txratesel0 txratesel1 ffu gnd lsenable gnd lstempmon gnd nuc gnd 22 +3.3v ffu gnd txdin14p +3.3v txdin10p gnd txdin6p gnd txdin2p 23 +3.3v ffu gnd txdin14n +3.3v txdin10n gnd txdin6n gnd txdin2n 24 txreset nuc ffu gnd lsbiasalm gnd ffu gnd ffu gnd 25 -5.2v nuc gnd txdin15p -5.2v txdin11p gnd txdin7p gnd txdin3p 26 -5.2v nuc gnd txdin15n -5.2v txdin11n gnd txdin7n gnd txdin3n 27 txfifores nuc lloopenb gnd lstempalm gnd ffu gnd txpiclksel gnd 28 -5.2v ffu gnd txpiclkp -5.2v txpclkp gnd txmclkp gnd txrefclkp 29 -5.2v txtrace gnd txpiclkn -5.2v txpclkn gnd txmclkn gnd txrefclkn 30 txfifoerr nuc linetimesel gnd txrefsel gnd lspowalm gnd txlockerr gnd ffu: reserved for future use nuc: no use connection
page 11 of 12 d s - 5 1 9 2 r e v 0 1 ja n. 9, 2 009 preliminary datasheet tp t -mr-04-ccdl5 a mechanical design diagram the mechanical design diagram is shown in figure 2. figure 2, mechanical diagram ordering information example: part no. product description tpt-mr- 04 - c cd l5 a-xxx general c-band tunable, 9.95~11.3gbps, zero-chirped optical transmitter, 10g sff 300pin, lc connector, -5c~+70c 1 23 4 5 67 8 910111213 141516 tpt -mr - xx - x cd xx a -x x x customer code : revision : a : revision a; b : revision b;? manufacture internal use tuing range: c: c band ; l: l band ; s: s band chirp value: 04: 0 chirp ; 08: pre-chirped multi-rate: fixed 10g sff 300 pin tunable transponde r connetor type : f : fc (upc polish); l : lc (upc polish); s : sc (upc polish); x : cusomer specify rohs compliance : 0 : non rohs; 5 : rohs compliant with all exemptions; f : rohs compliant, lead free solder; 14, 15, 16 13 12 11 9, 10 8 6, 7 4, 5 1, 2, 3
page 12 of 12 d s - 5 1 9 2 r e v 0 1 ja n. 9, 2 009 preliminary datasheet tp t -mr-04-ccdl5 a warnings handling precautions: this device is susceptible to damage as a result of electrostatic discharge (esd). a static free environment is highly recommended. follow guidelines a ccording 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. legal notice important notice! all information contained in this document is subject to change without notice, at s ource photonics?s sole and absolute discret ion. source photonics warrants performance of its products to current specifications only in accordance with the company?s standard one-year warranty; however, specifications designated as ?pre liminary? are given to describe components only, and source photon ics expressly disclaims any and all warranties for said products, in cluding express, implied, and statutory warranties, warranties of merchantability, fitness for a particular purpose, and non-infringem ent of proprietary rights. please refer to the company?s te rms and conditions of sale for further warranty information. source photonics assumes no liability for applications assistance, customer product design, software performance, or infringeme nt of patents, services, or intellectual property described herein. no license, either expr ess or implied, is granted under any paten t right, copyright, or intellectual property right, and source photonics ma kes no representations or warranties that the product(s) desc ribed herein are free from patent, copyright, or intellectual property rights. products described in this document are not intended f or use in implantation or other life support applications where malfunction may result in injury or death to persons. source photonics cu stomers using or selling products for use in such applications do so at their own risk and agree to fully defend and indemnify source p hotonics 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 source photonics is not liable for any actual, consequential, ex emplary, or other damages arising directly or indirectly from any use of the inf ormation contained in this document. customer must contact source photoni cs to obtain the latest version of this publication to verify, before placing any order, that the inform ation contained herein is current. contact u.s.a headquaters 20550 nordhoff street chatsworth, ca 91311 usa tel: +1-818-773-9044 fax: +1-818-773-0261 china building #2&5, west export processing zone no. 8 kexin road, hi-tech zone chengdu, 611731, china tel: +86-28-8795-8788 fax: +86-28-8795-8789 ch taiwan 9f, no 81, shui lee rd. hsinchu, taiwan r.o.c. tel: +886-3-5169222 fax: +886-3-51692 ? copyright source photonics, inc. 2007~2009 all rights reserved


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