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  data sheet may 15, 2007 eue200/120 series dc-dc converter power module: 42 - 55vdc input; 12vdc output; 200w 42 - 58vdc input; 12vdc output; 120w * ul is a registered trademark of underwriters laboratories, inc. ? csa is a registered trademark of canadian standards association. ? vde is a trademark of verband deutscher elektrotechniker e.v. ** iso is a registered trademark of the international organization of standards ieee and 802 are registered trademarks of the institute of electrical and electronics engineers, incorporated. document no: ds04-006 ver. 1.58 pdf name: eue200_series_ds.pdf applications ? distributed power architectures ? intermediate bus voltage application ? optical and access network equipment ? servers and storage applications ? wireless and enterprise equipment including power over ethernet (poe) options ? negative logic, remote on/off ? baseplate (-h) features ? compliant to rohs eu directive 2002/95/ec (-z versions) ? compliant to rohs eu dir ective 2002/95/ec with lead solder exemption (non-z versions) ? high power density: 238 w/in 3 ? high efficiency ? 95.3% at 11.6v full load ? exceptional thermal performance: 170w at 70 0 c at 1 m/s (200lfm) ? delivers up to 200w output power ? low output ripple and noise ? industry standard eight brick footprint 57.9mm x 22.9mm x 10.4mm (2.28in x 0.9in x 0.41in) ? single unregulated output ? narrow input voltage range ? constant switching frequency ? positive logic, remote on/off ? input over voltage protection ? output overcurrent protection ? over-temperature protection ? auto restart after fault shutdown ? operating temperature range (-40c to 85c) ? ul * 60950-1recognized, csa ? c22.2 no. 60950-1- 03 certified, and vde ? 0805:2001-12 (en60950-1) licensed ? iso** 9001 certified manufacturing facilities ? 2250 vdc isolation tested in compliance with ieee 802.3 poe standards description the eue-series are a new generation of dc/dc power module s designed to support intermediate bus applications where multiple low voltages are generated using discrete/ modular point of load (pol) converters. the eue series provide up to 200 watt output power in an industry standard eighth brick, which makes it an ideal choice for compact space, high current and intermediate bus voltage applications. the converter inco rporates synchronous rectification technology and innovative packaging techniques to achieve ultra high efficiency reaching 95.3% at 11.6v full load. the ultra high efficiency of this converter leads to lower pow er dissipation such that for most applications a heat sink is not required. the eue series power modules are isol ated dc-dc converters that provide a single unregulated output voltage with a 4:1 step-down ratio between input/output. rohs compliant
data sheet may 15, 2007 eue series dc-dc power modules: 42-55/42-58vdc input; 12vdc output; 200/120w tyco electronics power systems 2 absolute maximum ratings stresses in excess of the absolute maximum ratings ca n cause permanent damage to the device. these are absolute stress ratings only, functional operation of the dev ice is not implied at these or any other conditions in excess of those given in the operati ons sections of the data sheet. exposu re to absolute maximum ratings for extended periods can adversely affect the device reliability. parameter device symbol min max unit input voltage continuous eue200 v in -0.3 55 vdc eue120 v in -0.3 58 vdc non-operating condition all -0.3 75 vdc operating ambient temperature all t a -40 85 c (see thermal considerations section) storage temperature all t stg -40 100 c i/o isolation (100% factory hi-pot tested) all ? ? electrical specifications unless otherwise indicated, specificati ons apply over all operating input vo ltage, resistive load, and temperature conditions. parameter device symbol min typ max unit operating input voltage eue200 v in 42 48 55 vdc eue120 v in 42 48 58 vdc maximum input current (eue200:v in =0 to 55v , p o = 200w , max ) eue200 i in,max ? ? 5.6 adc (eue120:v in =0 to 58v , p o = 120w , max ) eue120 i in,max ? ? 3.5 adc inrush transient all i 2 t ? ? 1 a 2 s input reflected ripple current, peak-to-peak (5hz to 20mhz, 12 h source impedance; v in =0 to 55v, p o = 200w , max ;see figure 17) all ? 5 ? map-p input ripple rejection (120hz) all ? 12.3 ? db caution: this power module is not internally fused. an input line fuse must always be used. this power module can be used in a wide variety of appl ications, ranging from simple standalone operation to being part of complex power architecture. to preserve maximum flex ibility, internal fusing is not included; however, to achieve maximum safety and system protection, always us e an input line fuse. the safety agencies require a fast- acting fuse with a maximum rating of 10a (see safety consi derations section). based on the information provided in this data sheet on inrush energy and maximum dc input curr ent, the same type of fuse with a lower rating can be used. refer to the fuse manufacturer?s data sheet for further information.
data sheet may 15, 2007 eue series dc-dc power modules: 42-55/42-58vdc input; 12vdc output; 200/120w tyco electronics power systems 3 electrical specifications (continued) parameter device symbol min typ max unit output voltage set-point (eue200 :v in =v in,nom ,p o =200w, t a =25c) all v o, set ? 12.0 ? v dc (eue120 :v in =v in,nom ,p o =120w, t a =25c) output regulation over line change all 9.8 ? 13.8 v dc over load change all ? 0.5 0.7 v dc temperature (t a =-40 0 c to +85 0 c) all ? 150 __ mv output ripple and noise on nominal output (v in =v in, nom and p o = 200w, max ) rms (5hz to 20mhz bandwidth) all ? 35 __ mv rms peak-to-peak (5hz to 20mhz bandwidth) all ? 50 __ mv pk-pk external capacitance all c o,max ? ? 3000 f output power eue200 p o 0 ? 200 w eue120 p o 0 ? 120 w output current limit inception (hiccup mode) eue200 i o, lim __ 22 __ % i o, max (v in = 48v, t a =25c) eue120 __ 13 __ efficiency v in =v in, nom and p o = 200w, max t a =25c eue200 __ 95.3 __ % v in =v in, nom and p o = 120w, max t a =25c eue120 __ 94.6 __ % switching frequency f sw ? 230 ? khz dynamic load response (di o /dt=1a/ s; v in =v in , nom ; t a =25c ; tested with a 10 f tantalum and a 1.0 f ceramic capacitor across the load) load change from i o = 50% to 75% of i o, max peak deviation eue200 v pk ? 200 ? mv settling time (v o <10% peak deviation) t s ? 200 ? s load change from i o = 75% to 50% of i o, max peak deviation eue200 v pk ? 200 ? mv settling time (v o <10% peak deviation) t s ? 200 ? s isolation specifications parameter symbol min typ max unit isolation capacitance c iso ? 1000 ? pf isolation resistance r iso 10 ? ? m ? general specifications parameter device min typ max unit calculated mtbf per telcordia sr-332 issue 1:method 1,case 3 (v in = 48v,i o = 13.8a, t a =40c,airflow=1m/s(200 lfm)) eue200 1,204,000 hours weight ? 27 (0.9) ? g (oz.)
data sheet may 15, 2007 eue series dc-dc power modules: 42-55/42-58vdc input; 12vdc output; 200/120w tyco electronics power systems 4 feature specifications unless otherwise indicated, specificati ons apply over all operating input vo ltage, resistive load, and temperature conditions. see feature descriptions for additional information. parameter device symbol min typ max unit on/off signal interface (v i = v i ,min to v i , max; open collector or equivalent, signal referenced to v i n (-) terminal) negative logic: device code suffix ?1? logic low =module on, logic high =module off positive logic: no device code suffix required; logic low =module off, logic high =module on logic low specification remote on/off current ?logic low all i on/off D D 1.0 ma on/off voltage: logic low all v on/off 0.0 D 0.8 v logic high-(type=open collector) all v on/off D D 5 v logic high maximum allowable leakage current all i on/off D D 50 a turn-on delay and rise times (i o = i o, max , v in =v in, nom, t a = 25 o c) all t delay enable with vin D 3 D msec t delay = time until v o = 10% of v o,set from either application of vin with remote on/off set to on or operation of remote on/off from off to on with vin already applied for at least one second. t delay enable with on/off D 3 D msec t rise = time for v o to rise from 10% of v o,set to 90% of v o,set . t rise D 12 D msec over temperature protection t ref ? 130 ? c (see thermal considerations section) input undervoltage lockout all v in,uvlo turn-on threshold ? 40 41.9 v turn-off threshold 35.5 36.5 ? v input over voltage shutdown turn-off threshold eue200 v in,ovlo 59.8 62 ? vdc eue120 v in,ovlo 63 66 ? vdc
data sheet may 15, 2007 eue series dc-dc power modules: 42-55/42-58vdc input; 12vdc output; 200/120w tyco electronics power systems 5 characteristic curves the following figures provide typical characteristics for t he eue200b1 (12.0v, 17a) at 25o c. the figures are identical for either positive or neg ative remote on/off logic. 0 1 2 3 4 5 6 35 40 45 50 55 io=22a io=11a io=0a input current (a) input voltage, v in (v) on/off voltage o utput voltage v on/off (v) (2v/div) v o (v) (5v/div) time, t (5 ms/div) figure 1. typical input characteristic at room temperature. figure 4. typical start-up using remote on/off, negative logic version shown. 80 82 84 86 88 90 92 94 96 0 5 10 15 20 25 vin=42v vin=48v vin=55v efficiency (%) output current, i o (a) output current output voltage i o, (a) (5a/div) v o (v) (100mv/div) time, t (500 s/div) figure 2. typical converter efficiency vs. output current at room temperature. figure 5. typical transient response to step increase in output load from 5a to 10a at room temperature and 48 vdc input. output voltage v o (v) (50mv/div) time, t (1 s/div) output current output voltage i o, (a) (5a/div) v o (v) (100mv/div) time, t (500 s/div) figure 3. typical output ripple and noise at room temperature and p o = 200w. figure 6. typical transient response to step decrease in output load from 10a to 5a at room temperature and 48 vdc input. 48 vin 53 vin 42 vin
data sheet may 15, 2007 eue series dc-dc power modules: 42-55/42-58vdc input; 12vdc output; 200/120w tyco electronics power systems 6 characteristic curves (continued) 9 10 11 12 13 14 42 44 46 48 50 52 54 56 io=22a io=11a io=0a input current (a) input voltage, v in (v) figure 7. typical output voltage vs. input voltage characteristic at room temperature. 9 10 11 12 13 14 0 5 10 15 20 25 vin=42v vin=48v vin=55v output voltage (v) output current, i o (a) figure 8. typical output voltage regulation vs. output current at room temperature.
data sheet may 15, 2007 eue series dc-dc power modules: 42-55/42-58vdc input; 12vdc output; 200/120w tyco electronics power systems 7 characteristic curves (continued) the following figures provide typical characteristics for t he eue120b1 (12.0v, 10a) at 25o c. the figures are identical for either positive or neg ative remote on/off logic. 0 0.5 1 1.5 2 2.5 3 3.5 35 40 45 50 55 60 io=12a io =6 a io=0a input current (a) input voltage, v in (v) on/off voltage o utput voltage v on/off (v) (2v/div) v o (v) (5v/div) time, t (5 ms/div) figure 9. typical input characteristic at room temperature. figure 12. typical start-up using remote on/off, negative logic version shown. 70 75 80 85 90 95 100 024681012 vin=42v vin=48v vin=58v efficiency (%) output current, i o (a) output current output voltage i o, (a) (2a/div) v o (v) (100mv/div) time, t (500 s/div) figure 10. typical converter efficiency vs. output current at room temperature. figure 13. typical transient response to step increase in output load from 5.3a to 8.1a at room temperature and 48 vdc input; c o,ext = 370 f. output voltage v o (v) (20mv/div) time, t (1 s/div) output current output voltage i o, (a) (2a/div) v o (v) (100mv/div) time, t (500 s/div) figure 11. typical output ripple and noise at room temperature and p o = 120w. figure 14. typical transient response to step decrease in output load from 8.1a to 5.3a at room temperature and 48 vdc input; c o,ext = 370 f. 48 vin 42 vin 58 vin
data sheet may 15, 2007 eue series dc-dc power modules: 42-55/42-58vdc input; 12vdc output; 200/120w tyco electronics power systems 8 characteristic curves (continued) 10 11 12 13 14 15 42 44 46 48 50 52 54 56 58 io=12a io=6a io=0a input current (a) input voltage, v in (v) figure 15. typical output voltage vs. input voltage characteristic at room temperature. 10 11 12 13 14 15 024681012 vin=42v vin=48v vin=58v output voltage (v) output current, i o (a) figure 16. typical output voltage regulation vs. output current at room temperature.
data sheet may 15, 2007 eue series dc-dc power modules: 42-55/42-58vdc input; 12vdc output; 200/120w tyco electronics power systems 9 test configurations note: measure input reflected-ripple current with a simulated source inductance (ltest) of 12 h. capacitor cs offsets possible battery impedance. measure current as shown above. figure 17. input reflected ripple current test setup. note: use a 1.0 f ceramic capacitor and a 10 f aluminum or tantalum capacitor. sc ope measurement should be made using a bnc socket. position the load between 51 mm and 76 mm (2 in. and 3 in.) from the module. figure 18. output ripple and noise test setup. load contact and supply i i contact v i (+) v i (?) v o1 distribution losses resistance i o v o2 note: all measurements are taken at the module terminals. when socketing, place kelvin connections at module terminals to avoid measurement errors due to socket contact resistance. figure 19. output voltage and efficiency test setup. = v o .i o v in .i in x 100 % efficiency safety considerations for safety-agency approval of the system in which the power module is used, the power module must be installed in compliance with the spacing and separation requirements of the end-use safety agency standard, i.e., ul60950-1, csa c22.2 no. 60950-1- 03, en60950-1 and vde 0805:2001-12. for the converter output to be considered meeting the requirements of safety extra-low voltage (selv), the input must meet selv requirements. for all input voltages, other than dc mains, where the input voltage is less than 60v dc, if the input meets all of the requirements for selv, then: ? the output may be considered selv. output voltages will remain within selv limits even with internally-generated non-selv voltages. single component failure and fault tests were performed in the power converters. ? one pole of the input and one pole of the output are to be grounded, or both circuits are to be kept floating, to maintain the output voltage to ground voltage within elv or selv limits. if the input meets extra-low voltage (elv) requirements, then the converter?s output is considered elv all flammable materials used in the manufacturing of these modules are rated 94v-0, or tested to the ul60950 a.2 for reduced thickness. the input to these units is to be provided with a maximum 10a fast-acting fuse in the unearthed lead.
data sheet may 15, 2007 eue series dc-dc power modules: 42-55/42-58vdc input; 12vdc output; 200/120w tyco electronics power systems 10 feature description remote on/off two remote on/off options are available. positive logic remote on/off turns the module on during a logic-high voltage on the on/off pin, and off during a logic low. negative logic remote on/ off turns the module off during a logic high and on during a logic low. negative logic, device code suffix "1," is the factory-preferred configuration. to turn the power module on and off, the user must supply a swit ch to control the voltage between the on/off terminal and the vi (-) terminal (von/off). the switch can be an open collector or equivalent (see figure 20). a logic low is von/off = 0 v to 0.8 v. the maximum ion/off during a logic low is 1 ma. the switch should maintain a logic-low voltage while sinking 1 ma. during a logic high, the maximum von/off generated by the power module is 5 v. the maximum allowable leakage current of the switch at von/off = 5v is 50 a. if not using the remote on/off feature, perform one of the fo llowing to turn the unit on: for negative logic, short on/off pin to vi(-). for positive logic: leave on/off pin open. v o (+) v o (?) v i (?) + ? i on/off on/off v i (+) loa d v on/off figure 20. circuit configuration for using remote on/off implementation. overcurrent protection to provide protection in an ou tput overload condition, the module is equipped with internal current-limiting circuitry and can endure current limiting for unlimited duration. if the output current exceeds the current limit inception value, the module enters into the hiccup mode operation, where it shuts down and automatically attempts to restart. as long as the fault condition exists, the module will remain in this hiccup mode, and can sustain this mode of operation until the overcurrent fault condition is corrected. input undervoltage lockout at input voltage below the input under voltage lockout limit, the module operation is disabled. the module will begin to operate at an input voltage above the under voltage lockout turn-on/turn-off threshold. overtemperature protection these modules feature an ov ertemperature protection circuit to safeguard against thermal damage. the protection circuit shuts down the module when the maximum device reference temperature is exceeded. when the module cools down and the reference device temperature falls below the recovery threshold, the module will resume operation. input/output over voltage protection the input/output overvoltage protection circuit is designed to shut down the module when the input voltage exceeds the overvoltage threshold. the module will resume operation when the input voltage enters the normal input operating range. thermal considerations the power modules operate in a variety of thermal environments and sufficient cooling should be provided to help ensure reliable operation. thermal considerations incl ude ambient temperature, airflow, module power dissipation, and the need for increased reliability. a reduction in the operating temperature of the module wi ll result in an increase in reliability. the thermal data presented here is based on physical measurements taken in a wind tunnel. heat-dissipating components are mounted on the top side of the module. heat is removed by conduction, convection and radiation to the surrounding environment. proper cooling can be verified by measuring the thermal reference temperature (t ref ). peak temperature (t ref ) occurs at the position indicated in figure 21. for reliable operation this temperature should not ex ceed listed temperature threshold. 17.45 (.687) 14.50 (.571) figure 21. t ref temperature measurement location for vo=12v. the output power of the module should not exceed the rated power for the module as listed in the ordering information table. although the maximum t ref temperature of the power modules is 115c for eue120 and 120oc for eue120: so-8 drain pin must not exceed 115oc. eue200: lf-pak drain tab must not exceed 120oc.
data sheet may 15, 2007 eue series dc-dc power modules: 42-55/42-58vdc input; 12vdc output; 200/120w tyco electronics power systems 11 eue200, you can limit this temperature to a lower value for improved reliability. heat transfer via convection increased airflow over the module enhances the heat transfer via convection. the derating plots in figures 22 to 24 show the maximum output current that can be delivered by each module in the respective orientation without exceeding the maximum t ref temperature versus local ambient temperature (t a ). the plots are for different airflow conditions ranging from 1m/s (200ft./min.) to 3m/s (600 ft./min). the use of figures 22 - 24 is shown in the following example: example what is the minimum airflow necessary for a eue200b1 operating at vi = 48 v, an output power of 150w, and a maximum ambient temperature of 70 c in transverse orientation? solution: given: vi = 48v po = 150w ta = 70 c determine airflow (v) (use figure 23): v = 1.0 m/sec. (200 ft./min.) 0 50 100 150 200 250 20 30 40 50 60 70 80 90 nc 0.5 m/s (100 lfm) 1.0 m/s (200 lfm) 2.0 m/s (400 lfm) output power, p o (w) local ambient temperature, t a ( c) figure 23. output power derating for the eue200b1 (vo = 12.0v) in the transverse orientation; airflow direct ion from vin(-) to vin(+); vin = 48v. 0 50 100 150 200 250 20 30 40 50 60 70 80 90 nc 0.5 m/s (100 lfm) 1.0 m/s (200 lfm) 2.0 m/s (400 lfm) output power, p o (w) local ambient temperature, t a ( c) figure 24. output power derating for the eue200b1-h (vo = 12.0v) in the transverse orientation; airflow direct ion from vin(-) to vin(+); vin = 48v. 90 100 110 120 130 20 30 40 50 60 70 80 90 2 m/s (400lfm) 1 m/s (200lfm) output power, p o (w) local ambient temperature, t a ( c) figure 22. output power derating for the eue120b1 (vo = 12.0v) in the transverse orientation; airflow direct ion from vin(-) to vin(+); vin = 48v.
data sheet may 15, 2007 eue series dc-dc power modules: 42-55/42-58vdc input; 12vdc output; 200/120w tyco electronics power systems 12 layout considerations the eue series power modules have a low profile in order to be used in fine pitch system card architectures. as such, component clearance between the bottom of the power module and the mounting board is limited. avoid placing copper areas on the outer layer directly underneath the power module. also avoid placing via interconnects underneath the power module. for additional layout guide-lines, refer to fltr100v10 data sheet. through-hole lead-free soldering information the rohs-compliant through-hole products use the sac (sn/ag/cu) pb-free solder and rohs-compliant components. they are designed to be processed through single or dual wave soldering machines. the pins have an rohs-compliant finish that is compatible with both pb and pb-free wave soldering processes. a maximum preheat rate of 3 c/s is suggested. the wave preheat process should be such that the temperature of the power module board is kept below 210 c. for pb solder, the recommended pot temperature is 260 c, while the pb-free solder pot is 270 c max. not all rohs-compliant through-hole products can be processed with paste-through-hole pb or pb-free reflow process. if additional information is needed, please consult with your tyco electronics power system representative for more details. post solder cleaning and drying considerations post solder cleaning is usually the final circuit-board assembly process prior to electrical board testing. the result of inadequate cleaning and drying can affect both the reliability of a power module and the testability of the finished circuit-board assembly. for guidance on appropriate soldering, cleaning and drying procedures, refer to tyco electronics board mounted power modules: soldering and cleaning application note (an04-001).
data sheet may 15, 2007 eue series dc-dc power modules: 42-55/42-58vdc input; 12vdc output; 200/120w tyco electronics power systems 13 mechanical outline for through-hole module dimensions are in inches and (millimeters). tolerances: x.xx in. 0.02 in. (x.x mm 0.5 mm) [unless otherwise indicated] x.xxx in 0.010 in. (x.xx mm 0.25 mm) top view* side view bottom view *top side label includes tyco name, product designation, and data code.
data sheet may 15, 2007 eue series dc-dc power modules: 42-55/42-58vdc input; 12vdc output; 200/120w tyco electronics power systems 14 mechanical outline for through-ho le module with base plate. dimensions are in millimeters and (inches). tolerances: x.x mm 0.5 mm ( x.xx in. 0.02 in.) [unless otherwise indicated] x.xx mm 0.25 mm ( x.xxx in 0.010 in.) top view side view bottom view* ? - optional case pin (7 option code) onl y available with heat plate option (-h) *bottom side label includes tyco name, product designation, and data code
data sheet may 15, 2007 eue series dc-dc power modules: 42-55/42-58vdc input; 12vdc output; 200/120w tyco electronics power systems 15 recommended pad layout for through hole modules dimensions are in inches and (millimeters). tolerances: x.xx in. 0.02 in. (x.x mm 0.5 mm) [unless otherwise indicated] x.xxx in 0.010 in. (x.xx mm 0.25 mm) v i (+) on/off ? v i (-) v o (+) v o (-) 1.57 (.062) pin, 2 plcs 57.9 (2.28) 50.80 (2.000) 15.24 (.600 ) 3.8 (.15) 22.8 (.90) 15.24 (.600) 7.62 (.300) 3.81 (.150) 3.6 (.14) 1.02 (.040) pin, 4 plcs ? - optional case pin (7 option code) onl y available with heat plate option (-h)
data sheet may 15, 2007 eue series dc-dc power modules: 42-55/42-58vdc input; 12vdc output; 200/120w world wide headquarters tyco electronics power systems, inc. 3000 skyline drive, mesquite, tx 75149, usa +1-800-843-7497 (outside u.s.a.: +1-972-284-2626 ) www.power.tycoelectronics.com e-mail: techsupport1@tycoelectronics.com europe, middle-east and africa headquarters tyco electronics (uk) ltd tel: +44 (0) 1344 469 300 latin america, brazil, caribbean headquarters tyco electronics power systems tel: +56 2 209 8211 india headquarters tyco electronics systems india pte. ltd. tel: +91 80 841 1633 x3001 asia-pacific headquarters tyco electronics singapore pte. ltd. tel: +65 6416 4283 tyco electronics corporation reserves the right to make changes to the product(s) or information contained herein without notic e. no liability is assumed as a result of their use or application. no rights under any patent accompany the sale of any such product(s) or information. ? 2003 tyco electronics power systems, inc., (mesquite, texas) all international rights reserved. document no: ds04-006 ver. 1.58 pdf name: eue200_series_ds.pdf ordering information please contact your tyco electronics? sales representat ive for pricing, availability and optional features. table 1. device codes product codes input voltage output voltage output power efficiency connector type comcodes eue120b41 48v (42-58vdc) 12.0v 120w 95% through hole 108989736 eue120b41z 48v (42-58vdc) 12.0v 120w 95% through hole cc109126694 eue120b641z 48v (42-58vdc) 12.0v 120w 95% through hole cc109104394 eue120b41-hz 48v (42-58vdc) 12.0v 120w 95% through hole cc109130432 eue200b41 48v (42-55vdc) 12.0v 200w 95% through hole 108988151 eue200b41z 48v (42-55vdc) 12.0v 200w 95% through hole 108995255 EUE200B41-HZ 48v (42-55vdc) 12.0v 200w 95% through hole 108988655 -z indicates rohs compliant modules table 2. device options option device code suffix negative remote on/off logic 1 auto-restart (must be ordered) 4 pin length: 3.68 mm 0.25m m (0.145 in. 0.010 in.) 6 case pin (only available on ?h modules) 7 pin length: 2.79 mm 0.25m m (0.110 in. 0.010 in.) 8 base plate option -h rohs compliant -z note: legacy device codes may contain a ?b option suffix to indi cate 100% factory hi-pot tested to the 1500 vdc isolation volta ge specified in the absolute maximum ratings table. the 100% hi-pot test is now applied to all device codes, with or without the ? b option suffix. existing comcodes for devices with the ?b suffix are still valid; howev er, no new comcodes fo r devices containin g the ? b suffix will be created.


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