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  data sheet 1 2003-04-24 small form factor single mode 1300 nm 622 mbit/s transceiver 2x5 pinning with lc? connector, with collar v23818-h18-lxx/lxxx preliminary data file: 1119 part number pinning operating temperature signal detect data outputs if sd is low in- put out- put v23818-h18-l37 2x5 ?5c to 70c lvpecl switched to low dc dc v23818-h18-l36 ?40c to 85c v23818-h18-l47 ?5c to 70c lvttl ac ac v23818-h18-l46 ?40c to 85c v23818-h18-l437 ?5c to 70c lvpecl active dc dc v23818-h18-l436 ?40c to 85c v23818-h18-l447 ?5c to 70c lvttl ac ac v23818-h18-l446 ?40c to 85c lc? is a trademark of lucent fiber optics features  small form factor msa compliant transceiver 1)  rj-45 style lc? connector system  half the size of sc duplex 1x9 transceiver  single power supply (3.3 v)  extremely low power consumption  loss of optical signal indicator  laser disable input  lvpecl differential inputs and outputs  distance up to 21 km on single mode fiber (smf)  class 1 fda and iec laser safety compliant  multisource footprint  small footprint for high channel density  ul 94 v-0 certified  compliant with fcc (class b) and en 55022  sff evaluation board v23818-s5-v13 (ac/ac) or v23818-s5-v14 (dc/dc) available upon request 1) msa documentation can be found at www.infineon.com/fiberoptics under transceivers.
v23818-h18-lxx/lxxx pin configuration data sheet 2 2003-04-24 pin configuration figure 1 pin description pin no. symbol level/logic description 1 v eer ground receiver signal ground 2 v ccr power supply receiver power supply 3 sd lvttl or lvpecl output 1) 1) lvpecl output active high for v23818-h18-l37/l36/l437/l436. lvttl output active high for v23818-h18-l47/l46/l447/l446. receiver optical input level monitor 4 rd? lvpecl output receiver data out bar 5 rd+ lvpecl output receiver data out 6 v cct power supply transmitter power supply 7 v eet ground transmitter signal ground 8 tdis lvttl input transmitter disable 9 td+ lvpecl input transmitter data in 10 td? lvpecl input transmitter data in bar ms mounting studs hl housing leads tx rx hl hl hl hl 12345 6 7 8 9 10 top view ms ms file: 1331
v23818-h18-lxx/lxxx pin configuration data sheet 3 2003-04-24 v eer / v eet connect pins 1 and 7 to signal ground. v ccr / v cct a 3.3 v dc power supply must be applied at pins 2 and 6. a recommended power supply filter network is given in the termination scheme. locate power supply filtering directly at the transceiver power supply pins. proper power supply filtering is essential for good emi performance. td+ / td? transmitter data lvpecl level inputs. for v23818-h18-l47/l46/l447/l446 terminated and ac coupled internally. for v23818-h18-l37/l36/l437/l436 use termination and coupling as shown in the termination scheme. rd? / rd+ receiver data lvpecl level outputs. for v23818-h18-l47/l46/l447/l446 biased and ac coupled internally. for v23818-h18-l37/l36/l437/l436 use termination and coupling as shown in the termination scheme. tdis a logical lvttl high input will disable the laser. to enable the laser, an lvttl low input must be applied. leave pin unconnected if feature not required. sd lvttl output for v23818-h18-l47/l46/l447/l446. lvpecl output for v23818-h18- l37/l36/l437/l436. a logical high output indicates normal optical input levels to the receiver. low optical input levels at the receiver result in a low output. signal detect can be used to determine a definite optical link failure; break in fiber, unplugging of a connector, faulty laser source. however it is not a detection of a bad link due to data- related errors. ms mounting studs are provided for transceiver mechanical attachment to the circuit board. they also provide an optional connection of the transceiver to the equipment chassis ground. the holes in the circuit board must be tied to chassis ground. hl housing leads are provided for additional signal grounding. the holes in the circuit board must be included and tied to signal ground.
v23818-h18-lxx/lxxx description data sheet 4 2003-04-24 description the infineon 622 megabit single mode transceiver ? part of infineon small form factor transceiver family ? complies with the atm forum?s network compatible atm for local network applications document and ansi?s broadband isdn - customer installation interfaces, physical media dependent specification, t1.646-1995, sonet oc-12 ir-1, telcordia gr-253-core and stm-4 s-4.1 (itu-t g.957). the appropriate fiber optic cable is 9 m single mode fiber with lc connector. the infineon oc-12 single mode transceiver is a single unit comprised of a transmitter, a receiver, and an lc receptacle. this design frees the customer from many alignment and pc board layout concerns. this transceiver supports the lc connectorization concept, which competes with utp/ cat 5 solutions. it is compatible with rj-45 style backpanels for fiber-to-the-desktop applications while providing the advantages of fiber optic technology. the receptacle accepts the new lc connector. the small form factor is specially developed for distances of up to 15 km. the module is designed for low cost lan and wan applications. it can be used as the network end device interface in mainframes, workstations, servers, and storage devices, and in a broad range of network devices such as bridges, routers, hubs, and local and wide area switches. this transceiver operates at 622 mbit/s from a single power supply (+3.3 v). the full differential data inputs and outputs are lvpecl compatible. supported link lengths category within standard reach unit min. max. 1) 1) maximum reach over fiber type sm-g.652 as defined by itu-t g.957 and telcordia gr-253-core standards. longer reach possible depending upon link implementation. sdh stm s-4.1 0 15,000 meters sonet oc-12 ir-1 0 21,000
v23818-h18-lxx/lxxx description data sheet 5 2003-04-24 functional description of sff transceiver this transceiver is designed to transmit serial data via single mode fiber. figure 2 functional diagram the receiver component converts the optical serial data into an electrical data (rd+ and rd?). the signal detect output (sd) shows whether an optical signal is present. the transmitter part converts electrical lvpecl compatible serial data (td+ and td?) into optical serial data. the module has an integrated shutdown function that switches the laser off in the event of an internal failure. reset is only possible if the power is turned off, and then on again. ( v cct switched below v th ). laser driver laser monitor power control sd td+ rd+ rd ? td ? tx coupling unit rx coupling unit e/o o/e o/e tdis file: 1351 single mode fiber automatic shut-down limiting amp tia
v23818-h18-lxx/lxxx description data sheet 6 2003-04-24 figure 3 transceiver pitch regulatory compliance feature standard comments esd: electrostatic discharge to the electrical pins eia/jesd22-a114-b (mil-std 883d method 3015.7) class 1c immunity: against electrostatic discharge (esd) to the duplex lc receptacle en 61000-4-2 iec 61000-4-2 discharges ranging from 2kv to 15 kv on the receptacle cause no damage to transceiver (under recommended conditions). immunity: against radio frequency electromagnetic field en 61000-4-3 iec 61000-4-3 with a field strength of 3 v/m, noise frequency ranges from 10 mhz to 2 ghz. no effect on transceiver performance between the specification limits. emission: electromagnetic interference (emi) fcc 47 cfr part 15, class b en 55022 class b cispr 22 noise frequency range: 30 mhz to 18 ghz (13.97) .550 *) *) min. pitch between sff transceiver according to msa. dimensions in (mm) inches file: 1501
v23818-h18-lxx/lxxx technical data data sheet 7 2003-04-24 technical data exceeding any one of these values may destroy the device immediately. absolute maximum ratings parameter symbol limit values unit min. max. package power dissipation 0.9 w supply voltage v cc ? v ee 4v data input levels v cc +0.5 v ee ?0.5 v differential data input voltage swing v id pk-pk 5 v operating case temperature v23818-h18-l36/l46/l436/l446 v23818-h18-l37/l47/l437/l447 ?40 ?5 85 70 c storage ambient temperature ?40 85 c soldering conditions temp/time 260/10 c/s recommended operating conditions parameter symbol limit values unit min. typ. max. ambient temperature 1) 3) 1) for v23818-h18-l36/l46/l436/l446. t amb ?40 85 c ambient temperature 2) 3) 2) for v23818-h18-l37/l47/l437/l447. 3) ambient operating temperature requires a 2 ms ?1 airflow over the device. ?5 70 power supply voltage v cc ? v ee 3.14 3.3 3.46 v supply current i cc 230 ma transmitter data input high voltage v ih ? v cc ?1165 ?880 mv differential data input voltage swing v id pk-pk 250 1600 mv data input low voltage v il ? v cc ?1810 ?1475 mv data input rise/fall time t i 120 ps receiver input center wavelength rx 1260 1580 nm
v23818-h18-lxx/lxxx technical data data sheet 8 2003-04-24 the electro-optical characteristics described in the following tables are valid only for use under the recommended operating conditions. transmitter electro-optical characteristics transmitter symbol limit values unit min. typ. max. output power (average) 1) 1) into single mode fiber, 9 m diameter p o ?15 ?8 dbm center wavelength c 1274 1356 nm spectral width (rms) 2.5 nm extinction ratio (dynamic) er 8.2 db eye diagram ed itu-t g.957 mask pattern reset threshold for v cct 2) 2) laser power is shut down if power supply is below v th and switched on if power supply is above v th after t res . v th 2.7 v power on delay 2) t del 30 ms jitter generation 3) 3) the transceiver is specified to meet the sonet/sdh jitter performance as outlined in itu-t g.958 and telcordia gr-253. jitter generation is defined as the amount of jitter that is generated by the transceiver. the jitter generation specifications are referenced to the optical oc-12 signals. if no or minimum jitter is applied to the electrical inputs of the transmitter, then jitter generation can simply be defined as the amount of jitter on the tx optical output. the sonet specifications for jitter generation are 0.01 ui rms, maximum and 0.1 ui pk-pk, maximum. for sdh, 10 mui rms, maximum. both are measured with a 12 khz - 5 mhz filter in line. a ui is a unit interval, which is equivalent to one bit slot. at oc-12, the bit slot is 1.6 ns, so the jitter generation specification translates to 16 ps rms, max. and 160 ps pk-pk, max. j ge pk-pk 0.1 ui j ge rms 0.01 ui
v23818-h18-lxx/lxxx technical data data sheet 9 2003-04-24 receiver electro-optical characteristics receiver symbol limit values unit min. typ. max. sensitivity (average power) 1) p in ?28 dbm saturation (average power) p sat ?8 dbm signal detect assert level 2) p sda ?28 dbm signal detect deassert level 3) p sdd ?37 dbm signal detect hysteresis p sda ? p sdd 3db signal detect assert time 2) t ass 0.1 ms signal detect deassert time 3) t das 0.35 ms output voltage 4) v oh ? v cc ?1110 ?650 mv output voltage 4) v ol ? v cc ?1800 ?1300 mv differential data output voltage swing 4) v od pk-pk 1000 2000 mv signal detect output high voltage lvpecl 5) 6) v sdh ? v ee v cc ?1200 v cc ?820 mv signal detect output low voltage lvpecl 5) 6) v sdl ? v ee v cc ?1900 v cc ?1580 mv signal detect output high voltage lvttl 5) 7) v sdh 2.4 v signal detect output low voltage lvttl 5) 7) v sdl 0.5 v 1) minimum average optical power at which the ber is less than 1x10 ?10 . measured with a 2 23 ?1 nrz prbs as recommended by ansi t1e1.2, sonet oc-12, and itu-t g.957. 2) an increase in optical power above the specified level will cause the signal detect to switch from a low state to a high state (high active output). 3) a decrease in optical power below the specified level will cause the signal detect to switch from a high state to a low state. 4) load is 100 ? differential. 5) internal load is 510 ? to gnd, no external load necessary. signal detect is a high active output. high level means signal is present, low level means loss of signal. 6) for v23818-h18-l37/l36/l437/l436. 7) for v23818-h18-l47/l46/l447/l446.
v23818-h18-lxx/lxxx eye safety data sheet 10 2003-04-24 eye safety this laser based single mode transceiver is a class 1 product. it complies with iec 60825-1 and fda 21 cfr 1040.10 and 1040.11. to meet laser safety requirements the transceiver shall be operated within the absolute maximum ratings. attention: all adjustments have been made at the factory prior to shipment of the devices. no maintenance or alteration to the device is required. tampering with or modifying the performance of the device will result in voided product warranty. note: failure to adhere to the above restrictions could result in a modification that is considered an act of ?manufacturing?, and will require, under law, recertification of the modified product with the u.s. food and drug administration (ref. 21 cfr 1040.10 (i)). figure 4 required labels figure 5 laser emission laser data wavelength 1300 nm total output power (as defined by iec: 7 mm aperture at 14 mm distance) < 2 mw total output power (as defined by fda: 7 mm aperture at 20 cm distance) < 180 w beam divergence 4 class 1 laser product iec complies with 21 cfr 1040.10 and 1040.11 fda file: 1401 109876 2345 1 tx rx indication of laser aperture and beam top view file: 1332
v23818-h18-lxx/lxxx emi-recommendations data sheet 11 2003-04-24 emi-recommendations to avoid electromagnetic radiation exceeding the required limits please take note of the following recommendations. when gigabit switching components are found on a pcb (multiplexers, clock recoveries etc.) any opening of the chassis may produce radiation also at chassis slots other than that of the device itself. thus every mechanical opening or aperture should be as small as possible. on the board itself every data connection should be an impedance matched line (e.g. strip line, coplanar strip line). data, datanot should be routed symmetrically, vias should be avoided. a terminating resistor of 100 ? should be placed at the end of each matched line. an alternative termination can be provided with a 50 ? resistor at each (d, dn). in dc coupled systems a thevenin equivalent 50 ? resistance can be achieved as follows: for 3.3 v: 125 ? to v cc and 82 ? to v ee , for 5 v: 82 ? to v cc and 125 ? to v ee at data and datanot. please consider whether there is an internal termination inside an ic or a transceiver. in certain cases signal gnd is the most harmful source of radiation. connecting chassis gnd and signal gnd at the plate/bezel/chassis rear e.g. by means of a fiber optic transceiver may result in a large amount of radiation. even a capacitive coupling between signal gnd and chassis may be harmful if it is too close to an opening or an aperture. if a separation of signal gnd and chassis gnd is not planned, it is strongly recommended to provide a proper contact between signal gnd and chassis gnd at every location where possible. this concept is designed to avoid hotspots. hotspots are places of highest radiation which could be generated if only a few connections between signal and chassis gnd exist. compensation currents would concentrate at these connections, causing radiation. by use of gigabit switching components in a design, the return path of the rf current must also be considered. thus a split gnd plane of tx and rx portion may result in severe emi problems. a recommendation is to connect the housing leads to signal gnd. however, in certain applications it may improve emi performance by connecting them to chassis gnd. the cutout should be sized so that all contact springs make good contact with the face plate. please consider that the pcb may behave like a waveguide. with an r of 4, the wavelength of the harmonics inside the pcb will be half of that in free space. in this scenario even the smallest pcbs may have unexpected resonances.
v23818-h18-lxx/lxxx recommended termination schemes data sheet 12 2003-04-24 recommended termination schemes 2x5 dc/dc transceiver figure 6 file: 1392 c1/2/3 c4/5/6/7 c8/9/10 l1/2 *) r1 r2/3 r4/5 place r1/4/5 close to serdes chip. place r2/3 close to infineon transceiver. *) the inductors may be replaced by appropriate ferrite beads. = 4.7 ... 10 f = 100 nf = design criterion is the resonance frequency only. the self resonant frequency of the capacitor must be in the vicinity of the nominal data rate. short traces are mandatory. = 1 ... 4.7 h = 100 ? (depending on serdes chip used, ensure proper 50 ? termination to v ee or 100 ? differential is provided. check for termination inside of serdes chip). = 150 ? = biasing for outputs depending on serializer. c6 c7 8 tdis 100 ? laser driver signal detect limiting amplifier pre- amp serdat in ? serdat in + serdat out serdat out ? serializer/ deserializer rd ? ecl/ pecl driver receiver pll etc. sff transceiver 5 4 3 2 6 10 9 1 7 sd v eet td+ td ? v cct v ccr sd rd ? rd+ v eer v cc r4 r5 l1 l2 c2 c1 r2 r3 r1 c3 c4 c5 v cc serdes v cc 3.3 v rd+ tdis + c8 c9 c10
v23818-h18-lxx/lxxx recommended termination schemes data sheet 13 2003-04-24 2x5 ac/ac transceiver figure 7 file: 1393 c1/2/3 c4/5/6 l1/2 *) r1/2/3/4 r5/6 place r1/2/3/4/5/6 close to serdes chip. *) the inductors may be replaced by appropriate ferrite beads. = 4.7 ... 10 f = design criterion is the resonance frequency only. the self resonant frequency of the capacitor must be in the vicinity of the nominal data rate. short traces are mandatory. = 1 ... 4.7 h = depends on serdes chip used, ensure proper 50 ? termination to v ee or 100 ? differential is provided. check for termination inside of serdes chip. = biasing (depends on serdes chip). 8 tdis laser driver signal detect limiting amplifier pre- amp serdat in ? serdat in + serdat out serdat out ? serializer/ deserializer rd ? ecl/ pecl driver receiver pll etc. sff transceiver 5 4 3 2 6 10 9 1 7 sd v eet td+ td ? v cct v ccr sd rd ? rd+ v eer v cc r5 r6 l1 l2 c2 c1 c3 v cc serdes v cc 3.3 v rd+ tdis + r3 r4 r1 r2 100 ? c4 c5 c6
v23818-h18-lxx/lxxx package outlines data sheet 14 2003-04-24 package outlines figure 8 a) recommended bezel position drawing shown is with collar dimensions in mm [inches] file: 1212
edition 2003-04-24 published by infineon technologies ag, st.-martin-strasse 53, d-81541 mnchen, germany ? infineon technologies ag 2003. all rights reserved. attention please! the information herein is given to describe certain components and shall not be considered as warranted characteristics. terms of delivery and rights to technical change reserved. we hereby disclaim any and all warranties, including but not limited to warranties of non-infringement, regarding circuits, descriptions and charts stated herein. infineon technologies is an approved cecc manufacturer. information for further information on technology, delivery terms and conditions and prices please contact your nearest infineon technologies office in germany or our infineon technologies representatives worldwide. warnings due to technical requirements components may contain dangerous substances. for information on the types in question please contact your nearest infineon technologies office. infineon technologies components may only be used in life-support devices or systems with the express written approval of infineon technologies, if a failure of such components can reasonably be expected to cause the failure of that life-support device or system, or to affect the safety or effectiveness of that device or system. life-support devices or systems are intended to be implanted in the human body, or to support and/or maintain and sustain and/or protect human life. if they fail, it is reasonable to assume that the health of the user or other persons may be endangered. for questions on technology, delivery and prices please contact the infineon technologies offices in germany or the infineon technologies companies and representatives worldwide: see our webpage at http://www.infineon.com. v23818-h18-lxx/lxxx revision history: 2003-04-24 ds1 previous version: 2001-10-01 page subjects (major changes since last revision) document completely revised; v23818-h18-l17/l16/l57/l56 (2x10) removed, v23818-h18-l437/l436/l447/l446 (2x5) added.


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