Ericsson Internal Ericsson Internal E PRODUCT STABLE OF CONTEPECIFICATION NTS 1 (1)1 (4) PrPreparepareedd ( (aallsso so subjubjecectt r reesponsisponsibbllee i iff othotheerr)) NNoo EAB/FAC/P Jakub Brindell EAB/FC/P Jakub Brindell 00151/1301-BMR 2-EN-LZ660 00+ Uen T146 391 Technical Specication ApprApprovoved Ced Checked hecked DDate ate RReevv RRefereferencence e EN/LZT 146 391 R4B May 2009 PKU 5000E series EAB/FC/P Jakub BriEAB/FAC/P Jakub Brindell ndell EJEJAKBRIAKBRI 20092009-05-04--11 E 14 F Ericsson AB DC/DC converters, Input 18-72 V, Output up to 10 A/35 W Ke y Features Industry standard Sixteenth-brick 33.02 x 22.86 x 7.50 mm (1.3 x 0.9 x 0.295 in.) Wide Input range 18-72 V in High efficiency, typ. 91.7 % at 5 V half load & 27 V in 1500 V input to output isolation dc Surface mount option Meets safety requirements according to IEC/EN/UL 60950 More than 1.71 million hours MTBF General Characteristics Input under voltage protection Over temperature protection Output over voltage protection Output short circuit protection Safety Approvals Design for Environment Remote control Highly automated manufacturing ensures quality ISO 9001/14001 certified supplier 113613 Meets requirements in high-temperature lead-free soldering processes. Contents General Information .............................................................2 Safety Specification .............................................................3 Absolute Maximum Ratings ............................................................. 4 Product Program Ordering No. 3.3 V/10 A Electrical Specification PKU 5310E PI ..................................... 5 5 V/7 A Electrical Specification PKU 5311E PI ..................................... 8 12 V/2,75 A Electrical Specification PKU 5313E PI ...................................11 15 V/2 A Electrical Specification PKU 5315E PI ...................................14 EMC Specification ...........................................................17 Operating Information ...........................................................18 Thermal Consideration ...........................................................20 Connections ...........................................................20 Mechanical Information ...........................................................21 Soldering Information ...........................................................23 Delivery Package Information ...........................................................24 Product Qualification Specification ...........................................................25 Ericsson Internal E PRODUCT SPECIFICATION 2 (4) Prepared (also subject responsible if other) No. EAB/FAC/P Jakub Brindell 1/1301-BMR 660 00+ Uen 2 Technical Specication Approved Checked Date Rev Reference EN/LZT 146 391 R4B May 2009 PKU 5000E series EAB/FAC/P Jakub Brindell EJAKBRI 2009-05-11 E Ericsson AB DC/DC converters, Input 18-72 V, Output up to 10 A/35 W General Information Compatibility with RoHS requirements Ordering Information The products are compatible with the relevant clauses and See Contents for individual product ordering numbers. requirements of the RoHS directive 2002/95/EC and have a maximum concentration value of 0.1% by weight in Option Suffix Ordering No. Surface mount SI PKU 5310E SI homogeneous materials for lead, mercury, hexavalent Positive Remote Control Logic P PKU 5310E PIP chromium, PBB and PBDE and of 0.01% by weight in Lead length 3.69 mm (0.145 in) LA PKU 5310E PILA homogeneous materials for cadmium. Lead length 4.57 mm (0.180 in) LB PKU 5310E PILB Lead length 5,33 mm (0.210 in) PI PKU 5310E PI Exemptions in the RoHS directive utilized in Ericsson AB Note 1: If several options needed below sequence is to be used: Positive logic option, LA length. Example: PKU 5310E PIPLA products include: - Lead in high melting temperature type solder (used to Reliability solder the die in semiconductor packages) The Mean Time Between Failure (MTBF) is calculated at - Lead in glass of electronics components and in full output power and an operating ambient temperature electronic ceramic parts (e.g. fill material in chip (T ) of +40C. Different methods could be used to calculate A resistors) the predicted MTBF and failure rate which may give - Lead as an alloying element in copper alloy containing different results. Ericsson Power Modules currently uses up to 4% lead by weight (used in connection pins made two different methods, Ericsson failure rate data system of Brass) DependTool and Telcordia SR332. Quality Statement Predicted MTBF for the series is: - 1.71million hours according to Telcordia SR332, The products are designed and manufactured in an issue 1, Black box technique. industrial environment where quality systems and methods like ISO 9000, 6 (sigma), and SPC are intensively in use The Ericsson failure rate data system is based on field to boost the continuous improvements strategy. Infant tracking data. The data corresponds to actual failure rates mortality or early failures in the products are screened out of components used in Information Technology and and they are subjected to an ATE-based final test. Telecom (IT&T) equipment in temperature controlled Conservative design rules, design reviews and product environments(T = -5...+65C). Telcordia SR332 is a A qualifications, plus the high competence of an engaged commonly used standard method intended for reliability work force, contribute to the high quality of our products. calculations in IT&T equipment. The parts count procedure used in this method was originally modelled on the methods Warranty from MIL-HDBK-217F, Reliability Predictions of Electronic Warranty period and conditions are defined in Equipment. It assumes that no reliability data is available on Ericsson AB General Terms and Conditions of Sale. the actual units and devices for which the predictions are to be made, i.e. all predictions are based on generic reliability Limitation of Liability parameters. Ericsson AB does not make any other warranties, expressed or implied including any warranty of merchantability or fitness for a particular purpose (including, but not limited to, use in life support applications, where malfunctions of product can cause injury to a persons health or life).