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  ericsson internal product specificatio n 1 ( 4 ) prepared (also subject responsible if other) no. eab/fac/p johan h?rman 1/1301 - bmr 461 uen approved checked date rev reference 2013- 08- 28 a y key features ? small package 12 .2 x 12 .2 x 8. 0 mm ( 0. 48 x 0. 48 x 0.3 15 in) ? 0. 6 v - 5.0 v output voltage range ? high efficiency, typ. 9 6 % at 12 vin, 5vout a nd 80% load ? configuration control and monitoring via pmbus ? adaptive compensation of pwm control loop & fast loop transient response ? synchonization input & phase spreading /interleaving ? voltage tracking & voltage margining ? mtbf 24 mh general characteristics ? f or narrow board pitch applications (15 mm/0.6 in) ? pre- bias start - up and shut down ? monotonic & soft start power up ? input under voltage shutdown ? otp, output ovp, ocp ? remote control & power good ? differential sense pins ? voltage setting via pin - strap or pmbus ? advanced configurable via graphical use r interface ? iso 9001/14001 certified supplier ? highl y automated manufacturing ensures quality safety approvals design for environment meets requirements in high - temperature lead - free soldering processes. ericsson internal table of contents 2 ( 3 ) prepared (also subject responsible if other) no. eab/fac/p susanne eriksson bpow 00201 - 00152 uen approved checked date rev reference eab/fac/p [susanne eriksson] 2009- 07- 10 d d contents ordering information ................................ ............................. 2 general information ............................................................. 2 safety specification ............................................................. 3 absolute maximum ratings ............................................................. 4 electrical specification 12 a / 0. 6- 5. 0 v bmr461 3001 ....................................... 5 emc specification ........................................................... 15 ope rating information ........................................................... 16 thermal consideration ........................................................... 25 connections ........................................................... 26 mechanical information ........................................................... 32 soldering information ........................................................... 33 delivery information ........................................................... 34 produc t qualification specification ........................................................... 35 e bmr461 series pol regulators input 4.5-14 v, output up to 12 a / 60 w 1/287 01-bmr 461 uen a august 2013 ? ericsson ab technical speci?cation
ericsson internal product specificatio n 2 ( 4 ) prepared (also subject responsible if other) no. eab/fac/p johan h?rman 1/1301 - bmr 461 uen approved checked date rev reference 2013- 08- 28 a y ordering information product program output bmr 46 1 0. 6 - 5. 0 v, 12 a/ 60 w product number and packaging bmr 4 6 1 n 1 n 2 n 3 n 4 /n 5 n 6 n 7 n 8 options n 1 n 2 n 3 n 4 / n 5 n 6 n 7 n 8 output current / mechanical / digital interface / configuration file / packaging / options description n 1 n 2 n 3 n 4 n 5 n 6 n 7 n 8 3 0 01 001 c 12a lga pmbus and analog pin strap standard configuration antistatic tape & reel of 280 products (1 full reel/box = 280 products . sample delivery avalable in lower quantities ) example : product number bmr 461 3001 /001c equals a 12a , lga , pmbus and analog pin strap, standard configuration variant. general information reliability the failure rate ( ) and mean time between failures (mtbf= 1/ ) is calculated at max output power and an operating ambient temperature (t a ) of +40c . ericsson power modules uses telcordia sr - 332 issue 2 method 1 to calculate the mean steady - state failure rate and standard deviation ( ). telcordia sr - 332 issue 2 also provides techniques to estimate the upper confidence levels of failure rates based on the mean and standard deviation. mean steady - state failure rate, std. deviation, 40 nfailures/h 8.2 nfailures/h mtbf (mean value) for the bmr 46 1 series = 24.98 mh. mtbf at 90% confidence level = 19.77 mh compatibility with rohs requirements the products are compatible with the relevant clauses and requirements of the rohs directive 2002/95/ec and have a maximum concentration value of 0.1% by weight in homogeneous materials for lead, mercury, hexavalent chromium, pbb and pbde and of 0.01% by weight in homogeneous materials for cadmium. exemptions in the rohs directive utilized in ericsson power modules products are found in the statement of compliance document. ericsson power modules fulfills and will c ontinuously fulfill all its obligations under regulation (ec) no 1907/2006 concerning the registration, evaluation, authorization and restriction of chemicals (reach) as they enter into force and is through product materials declarations preparing for the obligations to communicate information on substances in the products. quality statement the products are designed and manufactured in an industrial environment where quality systems and methods like iso 9000, six sigma, and spc are intensively in use t o boost the continuous improvements strategy. infant mortality or early failures in the products are screened out and they are subjected to an ate - based final test. conservative design rules, design reviews and product qualifications, plus the high competence of an engaged work force, contribute to the high quality of the products. warranty warranty period and conditions are defined in ericsson power modules general terms and conditions of sale. limitation of liability ericsson power modules 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 person?s hea lth or life). ? ericsson ab 201 3 the information and specifications in this technical specification is believed to be correct at the time of publication. however, no liability is accepted for inaccuracies, printing errors or for any consequences thereof . ericsson ab reserves the right to change the contents of this technical specification at any time without prior notice. e bmr461 series pol regulators input 4.5-14 v, output up to 12 a / 60 w 1/287 01-bmr 461 uen a august 2013 ? ericsson ab technical speci?cation 2
ericsson internal product specificatio n 3 ( 4 ) prepared (also subject responsible if other) no. eab/fac/p johan h?rman 1/1301 - bmr 461 uen approved checked date rev reference 2013- 08- 28 a y safety specification general information ericsson power modules dc/dc converters and dc/dc regulators are designed in accordance with safety standards iec/en/ul 60950 -1 safety of information technology equipment . iec/en/ul 60950 - 1 contains requirements to prevent injury or damage due to the following hazards: ? electrical shock ? energy hazards ? fire ? mechanical and heat hazards ? radiation hazards ? chemical hazards on - board dc/dc converters and dc/dc regulators are defined as component power supplies. as components they cannot fully comply with the provisions of any safety requirements without ?conditions of acceptability?. clearan ce between conductors and between conductive parts of the component power supply and conductors on the board in the final product must meet the applicable safety requirements. certain conditions of acceptability apply for component power supplies with limi ted stand - off (see mechanical information for further information). it is the responsibility of the installer to ensure that the final product housing these components complies with the requirements of all applicable safety standards and regulations for th e final product. component power supplies for general use should comply with the requirements in iec 60950 - 1, en 60950 - 1 and ul 60950 -1 safety of information technology equipment. there are other more product related standards, e.g. ieee 802.3 csma/cd (e thernet) access method , and ets -300132-2 power supply interface at the input to telecommunications equipment, operated by direct current (dc) , but all of these standards are based on iec/en/ul 60950 - 1 with regards to safety. ericsson power modules dc/dc converters and dc/dc regulators are ul 60950 - 1 recognized and certified in accordance with en 60950 -1. the flammability rating for all construction parts of the products meet requirements for v - 0 class material according to iec 60695 -11 - 10, fire hazard testing, test flames ? 50 w horizontal and vertical flame test methods. the products should be installed in the end - use equipment, in accordance with the requirements of the ultimate application. normally the output of the dc/dc converter is considered as se lv (safety extra low voltage) and the input source must be isolated by minimum double or reinforced insulation from the primary circuit (ac mains) in accordance with iec/en/ul 60950 - 1. isolated dc/dc converters it is recommended that a slow blow fuse is to be used at the input of each dc/dc converter. if an input filter is used in the circuit the fuse should be placed in front of the input filter. in the rare event of a component problem that imposes a short circuit on the input source, this fuse will provide the following functions: ? isolate the fault from the input power source so as not to affect the operation of other parts of the system. ? protect the distribution wiring from excessive current and power loss thus preventing hazardous overheating. the galvanic isolation is verified in an electric strength test. the test voltage (v iso ) between input and output is 1500 vdc or 2250 vdc (refer to product specification). 24 v dc systems the input voltage to the dc/dc converter is selv (safety extra low vol tage) and the output remains selv under normal and abnormal operating conditions. 48 and 60 v dc systems if the input voltage to the dc/dc converter is 75 vdc or less, then the output remains selv (safety extra low voltage) under normal and abnormal ope rating conditions. single fault testing in the input power supply circuit should be performed with the dc/dc converter connected to demonstrate that the input voltage does not exceed 75 vdc. if the input power source circuit is a dc power system, the sou rce may be treated as a tnv - 2 circuit and testing has demonstrated compliance with selv limits in accordance with iec/en/ul60950 - 1. non - isolated dc/dc regulators the input voltage to the dc/dc regulator is selv (safety extra low voltage) and the output remains selv under normal and abnormal operating conditions. e bmr461 series pol regulators input 4.5-14 v, output up to 12 a / 60 w 1/287 01-bmr 461 uen a august 2013 ? ericsson ab technical speci?cation 3
ericsson internal product specificatio n 1 ( 13 ) prepared (also subject responsible if other) no. eab/fjb/gm qlaandr 2/1301 - bmr 461 uen approved checked date rev reference eab/fjb/gm (micubor) 2013- 08- 27 a absolute maximum ratings characteristics min typ max unit t p1 operating t emperature (see thermal consideration section) - 40 1 20 c t s storage temperature - 40 125 c v i input voltage (see operating information section for input and ou t put voltage relations) - 0.3 18 v logic i/o voltage ctrl, sa0 , sa1, salert, scl, sda, vset , sync , pg , cs_ vtrk - 0.3 4 v ground voltage differential -s , pref , gnd - 0.3 0.3 v analog pin voltage v o , +s - 0.3 5.5 v stress in excess of absolute maximum ratings may cause permanent damage. absolute maximum ratings, sometimes referred to as no destruction limits, are normally tested with one parameter at a time exceeding the limits in the electrical specification . if exposed to stress above these limits, function and performance may degrade in an unspecified manner. configuration file this product is designed with a digital control circuit. the control circuit uses a configuration file which determines the functionality and performance of the product. the electrical specification table shows parameter values of functionality and performance with the default configuration file, unless otherwise specified. the default configuration file is designed to fit most application needs with focus on high efficiency. if different characteristics are required it is possible to change the configuration file to optimize certain performance chara cteristics. in this technical specification examples are included to show the possibilities with digital control. see operating information section for information about trade offs when optimizing certain key performance characteristics. fundamental circuit diagram controller and digital interface c o c pref cs_vtrk salert scl sda ctrl sy nc sa0 -s +s gnd vout sa1 vset pg vin i e bmr461 series pol regulators input 4.5-14 v, output up to 12 a / 60 w 1/287 01-bmr 461 uen a august 2013 ? ericsson ab technical speci?cation 4
ericsson internal product specificatio n 2 ( 13 ) prepared (also subject responsible if other) no. eab/fjb/gm qlaandr 2/1301 - bmr 461 uen approved checked date rev reference eab/fjb/gm (micubor) 2013- 08- 27 a electrical specification bmr 46 1 3 00 1 t p1 = - 3 0 to + 9 5 c , v i = 4.5 to 14 v , v i > v o + 1.0 v typical values gi ven at: t p1 = +25c , v i = 12.0 v, max i o , unless otherwise specified under conditions. default c onfiguration f ile, 190 10- cda 102 0370/001 . v o defined by pin strap. external c in = 47 f ceramic + 270 f/ 10 m? electrolytic , c out = 3 x100 f + 0.1 f ceramic. see operating information section for selection of capacitor types. sense pins are connected to the output pins. characteristics conditions min t yp max unit v i input voltage 4. 5 14 v v o output voltage without pin strap 0 v output voltage adjustment range 0.6 0 5.0 v output voltage adjustment including pmbus margining 0.50 5.25 v output voltage set - point resolution 1.2 mv output voltage accuracy incl uding line, load, temp - 1 1 % v o internal resistance +s/ - s to vout/gnd 4 7 +s bias current 50 a - s bias current - 35 a line regulation i o = max i o v o = 0.6 v 1 mv v o = 1.2 v 2 v o = 1.8 v 3 v o = 3.3 v 4 v o = 5.0 v 7 load regulation i o = 0 - 100% v o = 0.6 v 1 mv v o = 1.2 v 1 v o = 1.8 v 1 v o = 3.3 v 2 v o = 5.0 v 2 v oac output ripple & noise (up to 20 mhz) v o = 0.6 v 10 mvp -p v o = 1.2 v 10 v o = 1.8 v 11 v o = 3.3 v 19 v o = 5.0 v 2 5 i o output current 0 12 a i s static input current at max i o v o = 0.6 v 0.7 a v o = 1.2 v 1.3 v o = 1.8 v 2.0 v o = 3.3 v 3.5 v o = 5.0 v 5.2 i lim current limit threshold 15 17 a i sc short circuit current rms, h iccup mode , v o = 3.3 v , 4 m? short 3 a efficiency 50% of max i o v o = 0.6 v 78.8 % v o = 1.2 v 87.5 v o = 1.8 v 90.8 v o = 3.3 v 94.1 v o = 5.0 v 95.4 i o = max i o v o = 0.6 v 81.3 % v o = 1.2 v 89.0 v o = 1.8 v 91.8 v o = 3.3 v 94.6 v o = 5.0 v 95.8 p d power dissipation at max i o v o = 0.6 v 1. 66 w v o = 1.2 v 1.78 v o = 1.8 v 1.9 3 v o = 3.3 v 2.2 4 v o = 5.0 v 2. 6 3 e bmr461 series pol regulators input 4.5-14 v, output up to 12 a / 60 w 1/287 01-bmr 461 uen a august 2013 ? ericsson ab technical speci?cation 5
ericsson internal product specificatio n 3 ( 13 ) prepared (also subject responsible if other) no. eab/fjb/gm qlaandr 2/1301 - bmr 461 uen approved checked date rev reference eab/fjb/gm (micubor) 2013- 08- 27 a characteristics conditions min typ max unit p li input idling power i o = 0 v o = 0.6 v 0. 7 0 w v o = 1.2 v 0. 7 0 v o = 1.8 v 0.7 1 v o = 3.3 v 0.8 0 v o = 5.0 v 0.9 2 p ctrl input standby power turned off with ctrl - pin 0.2 5 w c i internal input capacitanc e v i = 0 v 47 f c o internal output capacitance v o = 0 v 47 f v o = 3.3 v 2 4 v o = 5.0 v 15 c out total output capacitance effective capacitance note 1 55 f v tr1 load transient peak voltage deviation load step 25 - 75- 25 % of max i o , d i/dt = 1.5 a/ s c o =3x100 f + 270 f v o = 3.3 v 60 mv t tr1 load transient recovery time 25 s f sw switching frequency 600 khz switching frequency range pmbus configurable frequency_switch note 2 300- 1000 khz switching frequency set - point accur acy - 10 5 10 % external sync duty cycle 40 60 % synchronization frequency tolerance external clock source - 10 10 % input under voltage lockout (hardware controlled) threshold, v uvlo rising edge 3.8 4.1 4.4 v h ysteresis 0.24 v input over voltage lockout (hardware controlled) threshold, v o vlo input rising 14.3 15.2 16 v input turn - on voltage t hreshold 4.35 v threshold range pmbus configurable vin_on 0- 14.7 v input turn - off voltage t hreshold 3.8 v threshold range pmbus co nfigurable vin_off 0- 14.7 v input under/over voltage protection , iuvp/ iovp iuvp t hreshold 4.1 v iuvp t hreshold r ange pmbus configurable vin_uv_fault_limit 0- 14.7 v iovp t hreshold 14.4 v iovp t hreshold r ange pmbus configurable vin_ov_fa ult_limit 0- 14.7 v set point accuracy - 150 150 mv fault response vin_uv_fault_response vin_ov_fault_response shutdown, make continuous restarts at 700 ms interval (hiccup) output voltage over/under voltage protection, ovp/uvp uvp threshold 85 % v o uvp threshold range pmbus configurable vout_uv_fault_limit 0- 100 % v o ovp threshold 115 % v o ovp threshold range pmbus configurable vout_ov_fault_limit 100- 115 % v o fault response vout_u v_fault_response vout_ov_fault_response shutdown, make continuous restarts at 700 ms interval (hiccup) over current protection, ocp ocp t hreshold set value 16 a ocp t hreshold range pmbus configurable iout_oc_fault_limit 0- 18 a fault response iout_oc_fault_response shutdown, make continuous re starts at 700 ms interval (hiccup). note 3. e bmr461 series pol regulators input 4.5-14 v, output up to 12 a / 60 w 1/287 01-bmr 461 uen a august 2013 ? ericsson ab technical speci?cation 6
ericsson internal product specificatio n 4 ( 13 ) prepared (also subject responsible if other) no. eab/fjb/gm qlaandr 2/1301 - bmr 461 uen approved checked date rev reference eab/fjb/gm (micubor) 2013- 08- 27 a characteristics conditions min typ max unit over temperature protection, otp otp threshold note 4 120 c otp threshold range pmbus configurable ot_fault_limit - 40?+120 c otp hysteresis pmbus configurable 15 c fault response ot_fault_response shutdown, make continuous restarts at 700 ms interval (hiccup) over temperature shutdown (hardware controlled) t hreshold note 4 1 50 c hysteresis 20 c accuracy 20 c v ol logic output low signal level scl, sda, sync, salert, pg sink/source current = 4 ma 0.4 v v oh logic output high signal level 2.8 v i ol logic output low sink current 4 ma i oh logic output high source current 4 ma v il logic input low thres hold scl, sda , ctrl , sync 0.8 v v ih logic input high threshold 2 v i il _ctrl logic input low sink current ctrl 0.5 ma i i_leak logic leakage current scl, sda, sync, salert, pg 10 ua f smb smbus operating frequency 400 khz t buf smbus bus free time stop bit to start bit see section smbus ? timing 1.3 s t set smbus sda setup time from scl 100 n s t hold smbus sda hold time from scl 300 n s smbus start/stop condition setup/hold time from scl 600 ns t low scl low period 1.3 s t high scl high period 0.6 s initialization time from v i > v uvlo to ready to be enabled 23 ms soft - start on delay time note 5 delay duration 10 ms delay duration range pmbus configurable ton_delay 1- 145 ms delay set resolution 0. 6 ms delay set accuracy ton_delay value sent versus read - back 0. 3 ms delay accuracy actual delay duration versus ton_delay read - back 0.8 ms soft - start rise time (0 - 100% of v o ) note 5 ramp duration 10 ms ramp duration range pmbus configurable t on_rise 1-( 255 x ramp set resolution) ms ramp set resolution varies with v o 0.4 1 ms ramp set accuracy ton_rise value sent versus read - back 0.5 ms ramp time accuracy actual ramp duration versus ton_rise read - back 10 s compensation calibratio n signal duration 5 ms signal level v o = 0.6 v 3.5 % v o v o = 1.2 ? 3.3 v 2.5 v o = 5.0 v 2 e bmr461 series pol regulators input 4.5-14 v, output up to 12 a / 60 w 1/287 01-bmr 461 uen a august 2013 ? ericsson ab technical speci?cation 7
ericsson internal product specificatio n 5 ( 13 ) prepared (also subject responsible if other) no. eab/fjb/gm qlaandr 2/1301 - bmr 461 uen approved checked date rev reference eab/fjb/gm (micubor) 2013- 08- 27 a characteristics conditions min typ max unit power good , pg pg threshold rising 90 % v o falling 85 % v o tracking mode see section voltage tracking 450 mv pg threshold s range (non - tracking only) pmbus configurable power_good_on power_good_off 0 100 % v o pg delay enabled compensation calibration (default) from v o reaching target to pg assertion 11 ms tracking mode see section voltage tracking 20 ms pg delay disabled compensation calibration from v o reaching pg rising threshold to pg assertion 0 ms tracking mode see section voltage tracking 20 ms tracking input voltage range cs_vtrk pin note 6 0 1.2 v tracking accuracy - 100 100 mv monitoring accuracy input voltage read_vin 3 % v i output voltage read_vout 1 % v o output current read_iout note 7 tp 1 = 0 - 95 c , v i = 4.5 - 14 v, i o > 5 a 8.5 % i o tp 1 = 0 - 95 c , v i = 4.5 - 14 v, i o < 5 a 0.4 a temperature read_ temperature_1 note 4 -5 5 c duty cycle read_duty_cycle duty cycle < 10% -3 3 % duty cycle > 10% -1 0.5 1 % note 1 . value refers to total (internal + external) effective output capacitance. capacitance derating with v o typical for ceramic capacitors (bias characteristics) and temperature variations must be considered for the external capacitor(s). see section external output capacitors. note 2 . a switching frequency close to 475 khz should not be used since this frequency represents a boundary of two operational modes of the product . there are c onfiguration changes to consider when changing the switching frequency, see section switching frequency. note 3. sev ere overcurre nt faults occurring with v o > 2.5v may result in a restart interval of 1200 ms instead of the configured value . note 4 . temperature measured internally at temperature position p3. see section over temperature protection. note 5 . same specifica tion applies for soft - stop and toff_delay/toff_fall if enabled. the internal ramp and delay generators can only achieve certain discrete timing values . a written ton /off_delay or ton/off _rise value will be rounded to the closest achievable value, thus a command read - back provides the actual set value. see section soft - start and soft - stop. note 6.larger tracking input range is provided by external resistor divider, see section voltage tracking. note 7 . at v o > 3.5v and v o / v i in the approximate range 55 - 70 % there may be an additional current monitoring inaccuracy on the negative side up to - 1 a. e bmr461 series pol regulators input 4.5-14 v, output up to 12 a / 60 w 1/287 01-bmr 461 uen a august 2013 ? ericsson ab technical speci?cation 8
ericsson internal product specificatio n 6 ( 13 ) prepared (also subject responsible if other) no. eab/fjb/gm qlaandr 2/1301 - bmr 461 uen approved checked date rev reference eab/fjb/gm (micubor) 2013- 08- 27 a typical characteristics , v o = 0.6 v default configuration, t p1 = +25c bmr 46 1 3001 efficiency powe r dissipation 50 55 60 65 70 75 80 85 90 0 2 4 6 8 10 12 [%] [a] v i 4.5 v 5 v 12 v 14 v 0.0 0.5 1.0 1.5 2.0 2.5 0 2 4 6 8 10 12 [w] [a] v i 4.5 v 5 v 1 2 v 1 4 v effici ency vs. load current and input voltage. dissipated p ower vs. load current and input voltage . output current derating current limit characteristics 0 2 4 6 8 10 12 85 90 95 100 105 [a] [ c] 3.0 m/s 2.0 m/s 1.0 m/s 0.5 m/s nat. c onv. 0.00 0.15 0.30 0.45 0.60 0.75 12 13 14 15 16 17 [v] [a] v i 4.5 v 5 v 1 2 v 1 4 v available load current vs. ambi ent air temperature and airflow at v i = 12 v. see section thermal consideration . output voltage vs. load current and input voltage. output ripple and noise transient response fundamental output voltage ripple at v i = 12 v , c o = 3x100 f , i o = 12 a. scale: 5 mv/div, 1 s/div, 20 mhz bandwidth. see section output ripple and noise. output voltage response to load current step change (3 ? 9 ? 3 a) at v i = 12 v , c o = 3x100 f + 270 f/10m?. default compensation settings. scale: 50 mv/div, 5 a/div, 50 s/div. e bmr461 series pol regulators input 4.5-14 v, output up to 12 a / 60 w 1/287 01-bmr 461 uen a august 2013 ? ericsson ab technical speci?cation 9
ericsson internal product specificatio n 7 ( 13 ) prepared (also subject responsible if other) no. eab/fjb/gm qlaandr 2/1301 - bmr 461 uen approved checked date rev reference eab/fjb/gm (micubor) 2013- 08- 27 a typical characteristics , v o = 1.2 v default c onfiguration, t p1 = +25c bmr 46 1 3001 efficiency powe r dissipation 55 60 65 70 75 80 85 90 95 0 2 4 6 8 10 12 [%] [a] v i 4.5 v 5 v 1 2 v 1 4 v 0.0 0.5 1.0 1.5 2.0 2.5 0 2 4 6 8 10 12 [w] [a] v i 4.5 v 5 v 1 2 v 1 4 v effici ency vs. load current and input voltage . dissipated p ower vs. load current and input voltage . output current derating current limit characteristics 0 2 4 6 8 10 12 85 90 95 100 105 [a] [ c] 3.0 m/s 2.0 m/s 1.0 m/s 0.5 m/s nat. c onv. 0.00 0.30 0.60 0.90 1.20 1.50 12 13 14 15 16 17 [v] [a] v i 4.5 v 5 v 1 2 v 1 4 v availabl e load current vs. ambient air temperature and airflow at v i = 12 v. see section thermal consideration . output voltage vs. load current and input voltage. output ripple and noise transient response fundamental output voltage ripple at v i = 1 2 v , c o = 3x100 f , i o = 12 a. scale: 5 mv/div, 1 s/div, 20 mhz bandwidth. see section output r ipple and noise . output voltage response to load current step change (3 ? 9 ? 3 a) at v i = 12 v , c o = 3x100 f + 270 f/10m?. default compensation settings. scale : 50 mv/div, 5 a/div, 50 s/div. e bmr461 series pol regulators input 4.5-14 v, output up to 12 a / 60 w 1/287 01-bmr 461 uen a august 2013 ? ericsson ab technical speci?cation 10
ericsson internal product specificatio n 8 ( 13 ) prepared (also subject responsible if other) no. eab/fjb/gm qlaandr 2/1301 - bmr 461 uen approved checked date rev reference eab/fjb/gm (micubor) 2013- 08- 27 a typical characteristics , v o = 1.8 v default configuration, t p1 = +25c bmr 46 1 3001 efficiency powe r dissipation 60 65 70 75 80 85 90 95 100 0 2 4 6 8 10 12 [%] [a] v i 4.5 v 5 v 1 2 v 1 4 v 0.0 0.5 1.0 1.5 2.0 2.5 0 2 4 6 8 10 12 [w] [a] v i 4.5 v 5 v 1 2 v 1 4 v effici ency vs. load current and in put voltage. dissipated p ower vs. load current and input voltage . output current derating current limit characteristics 0 2 4 6 8 10 12 85 90 95 100 105 [a] [ c] 3.0 m/s 2.0 m/s 1.0 m/s 0.5 m/s nat. c onv. 0.0 0.4 0.8 1.2 1.6 2.0 12 13 14 15 16 17 [v] [a] v i 4.5 v 5 v 1 2 v 1 4 v available load current vs. ambient air temperature and airflow at v i = 12 v. see section thermal consideration . output voltage vs. load current and input voltage. output ripple and noise transient response fundamental output voltage ripple at v i = 12 v , c o = 3x100 f , i o = 12 a. scale: 5 mv/div, 1 s/div, 20 m hz bandwidth. see s ection output ripple and noise . output voltage response to load current step change (3 ? 9 ? 3 a) at v i = 12 v , c o = 3x100 f + 270 f/10m?. default compensation settings. scale: 50 mv/div, 5 a/div, 50 s/div. e bmr461 series pol regulators input 4.5-14 v, output up to 12 a / 60 w 1/287 01-bmr 461 uen a august 2013 ? ericsson ab technical speci?cation 11
ericsson internal product specificatio n 9 ( 13 ) prepared (also subject responsible if other) no. eab/fjb/gm qlaandr 2/1301 - bmr 461 uen approved checked date rev reference eab/fjb/gm (micubor) 2013- 08- 27 a typical characteristics , v o = 3.3 v default configuration, t p1 = +25c bmr 46 1 3001 efficiency powe r dissipation 70 75 80 85 90 95 100 0 2 4 6 8 10 12 [%] [a] v i 4. 5 v 5 v 12 v 14 v 0.0 0.5 1.0 1.5 2.0 2.5 0 2 4 6 8 10 12 [w] [a] v i 4. 5 v 5 v 12 v 14 v effici ency vs. load current and input voltage. dissipated p ower vs. load current and input voltage . output current derating current limit characteristics 0 2 4 6 8 10 12 85 90 95 100 105 [a] [ c] 3.0 m/s 2.0 m/s 1.0 m/s 0.5 m/s nat. c onv. 0.0 0.6 1.2 1.8 2.4 3.0 3.6 12 13 14 15 16 17 [v] [a] v i 4.5 v 5 v 1 2 v 1 4 v available load current vs. ambient air temperature and airflow at v i = 12 v. see section thermal consideration . output voltage vs. load current and input voltage. output ripple and noise transient response fundamental output voltage ripple at v i = 12 v , c o = 3x100 f , i o = 12 a. scale: 5 mv/div, 1 s/div, 20 mhz bandwidth. see section output ripple and noise . output voltage response to load current step change (3 ? 9 ? 3 a) at v i = 12 v , c o = 3x100 f + 270 f/10m?. default compensation settings. scale: 50 mv/div, 5 a/div, 50 s/div. e bmr461 series pol regulators input 4.5-14 v, output up to 12 a / 60 w 1/287 01-bmr 461 uen a august 2013 ? ericsson ab technical speci?cation 12
ericsson internal product specificatio n 10 ( 13 ) prepared (also subject responsible if other) no. eab/fjb/gm qlaandr 2/1301 - bmr 461 uen approved checked date rev reference eab/fjb/gm (micubor) 2013- 08- 27 a typical characteristics , v o = 5.0 v default configuration, t p1 = +25c bmr 46 1 3001 efficiency powe r dissipation 70 75 80 85 90 95 100 0 2 4 6 8 10 12 [%] [a] v i 6 v 9.6 v 1 2 v 1 4 v 0.0 0.5 1.0 1.5 2.0 2.5 3.0 3.5 0 2 4 6 8 10 12 [w] [a] v i 6 v 9.6 v 1 2 v 1 4 v effici ency vs. load current and inpu t voltage. dissipated p ower vs. load current and input voltage . output current derating current limit characteristics 0 2 4 6 8 10 12 80 85 90 95 100 [a] [ c] 3.0 m/s 2.0 m/s 1.0 m/s 0.5 m/s nat. c onv. 0.0 1.0 2.0 3.0 4.0 5.0 6.0 12 13 14 15 16 17 [v] [a] v i 6 v 9.6 v 1 2 v 1 4 v available load current vs. ambient air temperature and airflow at v i = 12 v. see section thermal consideration . output voltage vs. load current and input voltage. output ripple and noise transient response fundamental output voltage ripple at v i = 12 v , c o = 3x100 f , i o = 12 a. scale: 5 mv/div, 1 s/div, 20 mhz bandwidth. see section output ripple and noise. output voltage response to load current step change (3 ? 9 ? 3 a) at v i = 12 v , c o = 3x100 f + 270 f/10m?. default compensation settings. scale: 50 mv/div, 5 a/div, 50 s/div. e bmr461 series pol regulators input 4.5-14 v, output up to 12 a / 60 w 1/287 01-bmr 461 uen a august 2013 ? ericsson ab technical speci?cation 13
ericsson internal product specificatio n 11 ( 13 ) prepared (also subject responsible if other) no. eab/fjb/gm qlaandr 2/1301 - bmr 461 uen approved checked date rev reference eab/fjb/gm (micubor) 2013- 08- 27 a typical characteristics default configuration, t p1 = + 25c, v o = 3.3 v bmr 46 1 3001 start - up by input source shut - down by input source start - up enabled by applying v i . ton_delay = ton_rise = 10 ms (default) . v i = 12 v , i o = max i o, pg pulled up to v o . scale: 10 or 2 v/div, 10 ms/div. shut - down by removing v i . v i = 12 v, i o = max i o, pg pulled up to v o . scale: 10 or 2 v/div, 1 ms/div. start - up by ctrl signal shutdown by ctrl signal start - up enabled by ctrl signal. ton_delay = ton_rise = 10 ms (default) . v i = 12 v, i o = max i o, pg pulled up to v o . scale: 2 v/div, 10 ms/div . shut - down by ctrl signal. v i = 12 v, i o = max i o, pg pulled up to v o . scale: 2 v/div, 1 ms/div. v i v o pg ctrl v o pg v i v o pg ctrl v o pg e bmr461 series pol regulators input 4.5-14 v, output up to 12 a / 60 w 1/287 01-bmr 461 uen a august 2013 ? ericsson ab technical speci?cation 14
ericsson internal product specificatio n 1 ( 14 ) prepared (also subject responsible if other) no. eab/fjb/gm qlaandr 30/1301 - bmr 461 uen approved checked date rev reference eab/fjb/gm (micubor) 2013- 08- 27 a emc specification conducted emi is measured according to the test set - up below. the fundamental switching frequency is 600 khz. v i = 12 v, v o = 3.3 v , i o = max i o . conducted emi input terminal value (typical for default configuration) . emi without filter . rf current probe 1kh z ? 50mhz c1 to spectrum analyzer dut resistive load battery supply c1 = 10uf / 600vdc feed - thru rf capacitor 800mm 200mm 50 mm test set - up conducted emission, power lead layout recommendations the radiated emi performance of the product will depend on the pwb layout and ground layer design. it is also important to consider the stand - off o f the product. if a ground layer is used, it should be connected to the output of the product and the equipment ground or chassis. a ground layer will increase the stray capacitance in the pwb and improve the high frequency emc performance. output rippl e and noise output ripple and noise is measured according to figure below. a 50 mm conductor works as a small inductor forming together with the two capacitances a damped filter. output ripple and noise test set -up. the digital c ompensation of the product is designed to auto matically provide stability, accurate line and load regulation and good transient performance for a wide range of operating conditions (switching frequency, input voltage, output voltage, output capacitance). inherent from the implementation and normal to the product there will be some low - frequency noise or wander at the output, in addition to the fundamental switching frequency output ripple. the total output ripple and noise is maintained at a low l evel. v i =12 v, v o =3.3 v, i o =12 a, c o = 3x100 f,10 mv/div, 50 s/div example of low frequency noise at the output. vout + s ? s gnd ceramic capacitor 0.1 f tantalum capacitor 10 f load 50 mm conductor 50 mm conductor bnc - contact to oscilloscope c o e bmr461 series pol regulators input 4.5-14 v, output up to 12 a / 60 w 1/287 01-bmr 461 uen a august 2013 ? ericsson ab technical speci?cation 15
ericsson internal product specificatio n 2 ( 14 ) prepared (also subject responsible if other) no. eab/fjb/gm qlaandr 30/1301 - bmr 461 uen approved checked date rev reference eab/fjb/gm (micubor) 2013- 08- 27 a operating i nformation power management overview this product is equipped with a pmbus interface. the product incorpo rates a wide range of readable and configurable power management features that are simple to implement with a minimum of external components. additionally, the product includes protection features that continuously safeguard the load from damage due to unexpected system faults. a fault is also shown as an alert on the salert pin. the product is delivered with a default configuration suitable for a wide range operation in terms of input voltage, output voltage, and load. the configuration is stored in an i nternal non - volatile memory (nvm). all power management functions can be reconfigured using the pmbus interface. please contact your local ericsson power modules representative for design support of custom configurations or appropriate sw tools for design and download of your own configurations. input under voltage lockout, uvl o the product provides a non - configurable under voltage lockout (uvlo) circuit that monitor s the internal supply of the converter. below a certain input voltage level the internal supply will be too low for proper operation and the product will be in under voltage lockout, not switching or responding to the ctrl pin or to pmbus commands. input over voltage lockout, o vlo the product provides a non - configurable over voltage lockout (o vlo) circuit that will shut down the product when the input voltage rises above a certain level. the product will not switch, respond to the ctrl pin or to pmbus commands when being in over voltage lockout. input turn - on and turn - off voltage the prod uct monitors the input voltage and will turn - on and turn- off the output at configured levels (assuming the product is enabled by ctrl pin or pmbus) . the default tur n- on input voltage level is 4.3 5 v whereas the corresponding tur n- off input voltage level i s 3.8 v. the turn - on and turn- off levels may be reconfigured using the pmbus commands vin_on and vin_off. input under voltage protection (iuvp) the product monitors the input voltage continously and will respond as configured when the input voltage fal ls below the configured threshold level. the product can respond in a number of ways as follows: 1. continue operating without interruption. 2. continue operating for a given delay period, followed by an output voltage shutdown if the fault still exists. 3. i mmediate and definite shutdown of output voltage until the fault is cleared by pmbus or the output voltage is re - enabled. 4. i mmediate shutdown of output voltage while the fault is present. operation resumes and the output is enabled when the fault condition no longer exists. the default response is 4. the iuvp function can be reconfigured using the pmbus commands vin_uv _fault_limit and vin_uv_fault_response. input over voltage protection (iovp) the product monitors the input voltage continously and wil l respond as configured when the input voltage rises above the configured threshold level. refer to section ?input under voltage protection? for response configuration options and default setting. input and output impedance the impedance of both the input source and the load will interact with the impedance of the product. it is important that the input source h as low characteristic impedance . if the input voltage source contains significant inductance, the addition of a capacitor with low esr at the input of the product will ensure stable operation. external input capacitors the input ripple rms curr ent in a buck converter can be estimated to eq. 1. ( ) ddii load inputrms ? = 1 , where load i is the output load current and d is the duty cycle. the maximum load ripple current becomes 2 load i . the ripple current is divided into three parts, i.e., currents in the input source, external input capacitor, and internal input capacitor. how the current is divided depends on the impedance of the input source, esr and capacitance values in the capacitors. for most applications non - tantalum capacitors are preferred due to the robustness of such capacitors to accommodate high inrush currents of systems being powered fro m very low impedance sources. it is recommended to use a combination of ceramic capacitors and low - esr electrolytic/polymer bulk capacitors. the low esr of ceramic capacitors effectively limits the input ripple voltage level, while the bulk capacitance min imizes deviations in the input voltage at large load transients. it is recommended to use at least 47 uf of ceramic input capacitance . at duty cycles between 25% and 75% where the input ripple current increases (see eq. 1), additional ce ramic capacitance will help to keep the input ripple voltage low . the e bmr461 series pol regulators input 4.5-14 v, output up to 12 a / 60 w 1/287 01-bmr 461 uen a august 2013 ? ericsson ab technical speci?cation 16
ericsson internal product specificatio n 3 ( 14 ) prepared (also subject responsible if other) no. eab/fjb/gm qlaandr 30/1301 - bmr 461 uen approved checked date rev reference eab/fjb/gm (micubor) 2013- 08- 27 a required bulk capacitance depends on the impedance of the input source and the load transient levels at the output. in general a low - esr bulk capacitor of at least 15 0 uf is recommended. the larger the du ty c ycle is, the larger impact an output load step will have on the input side, thus the larger bulk capacitance is required to limit the input voltage deviation. if several products are connected in a phase spreading setup the amount of input capacitance per product can be reduced. input capacitors must be placed closely and with low impedance connections to the vin and gnd pins in order to be effective. external output capacitors the output capacitor requirement depends on two considerations; output ripple voltage and load transient response. to achieve low ripple voltage, the output capacitor bank must have a low esr value, which is achieved with ceramic output capacitors. a small output voltage deviation during load transients is achieved by using a larger amount of capacitance. designs with little load transients can use fewer capacitors and designs with more dynamic load content will require more load capacitors to achieve a small output deviation . improved transient response can also be achieved by adjusting the settings of the control loop of the product (see section compensation implementation) . it is recommended to locate low esr ceramic and low esr electrolytic/polymer capacitors as close to the load as possible, using several capacitors in parallel to lower the effective esr. it is important to use low resistance and low inductance pcb layouts and cabling in order for capacitance to be effective . the control loop of the product is optimized to operate with low - esr output capacitors and is c apable of achieving a fast loop transient response with a reduced amount of capacitance. t he effective o utput capacitance is recommended to be in the range [c out _ low , c out _ high ] according to equations eq. 2 and eq. 3 below . the compensation implementation of the product is optimized for this range. eq. 2 . ( ) 2 7 _ 106.2 sw low out f c ? = eq. 3 . ( ) 2 7 _ 1016 sw high out f c ? = the product permi ts a large range of output capacitance, thus capacitance above c out_ high is acceptable. this capability is importa nt in applications where the output capacitance may be unknown or not well controlled or in applications where large amount of output capacitance is required. the limit of c out_low must be followed in order to guarantee stability. 10 100 1000 10000 300 400 500 600 700 800 900 1000 [ f] [khz] permissible recommended unstable effective total o utput capacitance limits vs switching frequency. note that eq. 2 and eq. 3 and the chart above refer to the total capacitance at the output, thus including both the capacitance internal to the product and the external capacitance applied in the application. the internal output capacitance is listed in the electrical characteristics table. note also that eq. 2 and eq. 3 and the chart refers to the effective capacitance, not taking into account the capacitance derating that applies for ceramic capacitors with increased voltage or temperature variations . dynamic loop compensation (dlc) the typical design of regulated power converters includes a control function with a feedback loop that can be closed using either analog or digital circuits. the feedback loop is required to provide a stable output voltage, but should be optimized for the output filter to maintain output voltage regulation during transient conditions such as sudden changes in output current and/or input voltage. digi tally controlled converters allow one to optimize loop parameters without the need to change components on the board, however, optimization can still be challenging because the key parameters of the output filter include parasitic impedances in the pcb and the often distributed filter components themselves. dynamic loop compensation has been developed to solve the problem of compensation for a converter with a difficult to define output filter. this task is achieved by utilization of algorithms that can characterize an arbitrary output filter based on behavior of the output voltage in response to a disturbance initiated by the algorithm, or occurring due to the changes in operating conditions, and automatically adjust feedback loop parameters to match the output filter. details of the algorithm that is used to characterize an output filter and the different operational modes can be found in the following sections. e bmr461 series pol regulators input 4.5-14 v, output up to 12 a / 60 w 1/287 01-bmr 461 uen a august 2013 ? ericsson ab technical speci?cation 17
ericsson internal product specificatio n 4 ( 14 ) prepared (also subject responsible if other) no. eab/fjb/gm qlaandr 30/1301 - bmr 461 uen approved checked date rev reference eab/fjb/gm (micubor) 2013- 08- 27 a compensation implementation unlike pid - based digital powe r regulators the product use s a state - space model based algorithm that is valid for both the small - and large - signal response and accounts for duty - cycle saturation effects. this eliminates the need for users to determine and set thresholds for transitioning from linear to nonlinear modes. these capabilities result in fast loop transient response and the possibility of reducing the number of output capacitors. during ramp - up of output voltage, robust and low bandwidth default compensation settings are used based on the default f lc va lue assigned by bits 15:0 in command comp_model . if the switching frequency is changed the default f lc should be adjusted according to eq. 4 to maintain robust settings . no te that it is possible to set any default f lc . eq. 4. 32 _ sw default lc f f = immediately after ramp - up a compensation calibration i s performed by applying an ac low amplitude measurement signal on the output. during calibration the resonant frequency f lc of the power stage is measured and from the result an internal non - linear model is constructed to optimize the bandwidth and transient response of the product. pole locations of the closed system are automatically selected based on switching frequency, measured f lc and the output voltage level. after each performed calibration the user may read out the measured f lc frequency from bits 15:0 in the comp_model command. time output voltage compensation calibration by the pmbus command adaptive_mode the user may select between several different modes of compensation calibration: 1. calibration is perf ormed once after each ramp -up (default) . ( adaptive_mode = 0x02 4b ). 2. calibration is performed once after first ramp - up after input volta ge is applied ( adaptive_mode = 0x12 4b ). 3. calibration is performed continuously after ramp -up at ~800 ms interval ( adaptive_ mode = 0x03 4b ). 4. calibration is disabled ( adaptive_mode = 0x004b ). the default f lc stored in bits 15:0 in comp_model will be applied. 5. calibration is performed continuously in response to a pmbus command. controlled by s et ting /clear ing bit 8 in adaptive_mod e during operation. by setting bit 2 in adaptive_mode a store_user_all command will automatically be performed after the next calibration , effectively storing the measured f lc value in comp_model 15:0 as the default f lc value for subsequent ramp- ups. comp ensation may be set more or less aggressive by adjusting the feedback gain factor, controlled by the pmbus command feedback_effort . this parameter is proportional to the open loop gain of the system . increasing the gain, i.e the control effort , will reduce the voltage deviation at load transients, at the expense of somewhat increased jitter and noise on the output. users also have access to the pmbus command zetap, which corresponds to the damping ratio of the closed loop system. by default the product use s 0.5 as the feedback gain factor and 1.5 for damping ratio , to target a system bandwidth of 10% of the switching frequency. in some operating conditions at low output voltages, it is possible to enhance the recovery time at load release by enabling n egat iv e duty c ycle by pmbus command loop_config. below graphs exemplify the impact on load transient performance when adjusting the feedback gain factor, the damping ratio and the n egativ e duty c ycle feature. 20 30 40 50 60 70 0.2 0.3 0.4 0.5 0.6 0.7 0.8 0.9 1.0 [mv] feedback_effort co=3x100f+270f/10m ? co=3 x1 00f v i =12 v, v o =1.2 v , load step 3 - 9 - 3 a,1 a/us . voltage deviation vs. feedback_effort setting. e bmr461 series pol regulators input 4.5-14 v, output up to 12 a / 60 w 1/287 01-bmr 461 uen a august 2013 ? ericsson ab technical speci?cation 18
ericsson internal product specificatio n 5 ( 14 ) prepared (also subject responsible if other) no. eab/fjb/gm qlaandr 30/1301 - bmr 461 uen approved checked date rev reference eab/fjb/gm (micubor) 2013- 08- 27 a 15.0 18.0 21.0 24.0 27.0 30.0 1.0 1.1 1.2 1.3 1.4 1.5 1.6 1.7 1.8 [us] zetap v i =12 v, v o =1.2 v, c o = 3x100 f + 270 f/10m ? , load step 3 - 9 - 3 a,1 a/us . recovery time to within 1% of v o vs. zetap setting. v i =12 v, v o =0.6 v, c o = 3x100 f + 270f/10m?, load step 3 -9- 3 a,1 a/us . feedback_effort = 0.8, zetap = 1.5. scale: 20 mv/div, 5 a/div, 10 s/div. load release re sponse at enabled/disabled negative duty c ycle at low output voltage. remote sense the produc t has remote sense that can be used to compensate for voltage drops between the output and the point of load. the sense traces should be located close to the pwb ground layer to reduce noise susceptibility. due to derating of internal output capacitance th e voltage drop should be kept below v dropmax = (5.25 ? v out ) / 2. a large voltage drop will impact the electrical performance of the regulator. if the remo te sense is not needed +s must be connected to vout and ?s must be connected to gnd. output voltage control to control the output voltage the product features both a remote control input through the ctrl pin and a pmbus enable function by the command operation . it is also possible to configure the output to be always on. by default the output is controlled by the ctrl pin only. the output voltage control can be reconf igured using the pmbus com mand on_off_config . remote control the product is equipped wit h a remote control function, i.e., the ctrl pin. the remote control can be connected to either the primary negative input connection (gnd) or an external voltage (vext). see absolute maximum rating for maximum voltage level allowed at the ctrl pin. the c trl function allows the product to be turned on/off by an external device like a semiconductor or mechanical switch. the ctrl pin has an internal 6.8 k? pull - up resistor to 3.3 v. the external device must provide a minimum required sink current to guaran tee a voltage not higher than the logic low threshold level (see electrical characteristics). when the ctrl pin is left open, the voltage generated on the ctrl pin is 3.3 v. by default the product provides ?positive logic? rc and will turn on when the ctrl pin is left open and turn off when the ctrl pin is applied to gnd. it is possible to configure ?negative logic? instead by using the pmbus command on_off_config. if the device is to be synchronized to an external clock source, the clock frequency must be stable prior to asserting the ctrl pin. output voltage adjust using pin - strap resistor using an external pin - strap resistor, r set , the output voltage can be set in the range 0.6 v to 5.0 v at 16 different levels shown in the table below. the resis tor should be applied between the vset pin and the pref pin. r set also sets the maximum output voltage; see section ?output voltage range limitation?. the resistor is sensed only at the application of input voltage. changing the resistor value during no rmal operation will not change the output voltage. the input voltage must be at least 1 v larger than the output voltage in order to deliver the correct output voltage. see ordering information for output voltage range. the following table shows recommended resistor values for r set . maximum 1% tolerance resistors are required. ctrl gnd vext r set vset pref enabled dis abled e bmr461 series pol regulators input 4.5-14 v, output up to 12 a / 60 w 1/287 01-bmr 461 uen a august 2013 ? ericsson ab technical speci?cation 19
ericsson internal product specificatio n 6 ( 14 ) prepared (also subject responsible if other) no. eab/fjb/gm qlaandr 30/1301 - bmr 461 uen approved checked date rev reference eab/fjb/gm (micubor) 2013- 08- 27 a v out [v] r set [k] v out [v] r set [k] 0.60 5.11 1.05 17.8 0.70 6.19 1.10 21.5 0.75 7.15 1.2 0 26.1 0.80 8.25 1.5 0 31.6 0.85 9.53 1.8 0 38.3 0.90 11.0 2.5 0 44.2 0.95 12.7 3.3 0 51.1 1.0 0 14.7 5.0 0 59.0 leaving vset open will produce an output voltage of 0 v. usi ng an r set 4.22 k? will put the prod uct in track mode, see section voltage tracking . output voltage adjust using pmbus the output voltage set by pin - strap can be overridden using the pmbus command vout_command. see electrical specification for adjustment range. voltage margining up/down using the pmbus interface it is possible to adjust the output higher or lower than its nominal voltage setting in order to determine whether the load device is capable of operating over its specified supply voltage range. this provides a convenient method for dynamically testing the operation of the load circuit over its supply margin or range. it can also be used to verify the function of supply voltage supervisors. margin limits of the nominal output voltage 5% a re default, but the margin limits can be reconfigured using the pmbus commands vout_margin_low, vout_margin_high . margining is activated by the command operation. output voltage trim the actual output voltage can be trimmed to optimize performance of a specific load by setting a non - zero value for pmbus command vout_trim. the value of vout_trim is summed with vout_command, allowing for multiple products to be commanded to a common nominal value, but with slight adjustments per load. output voltage rang e limitation the output voltage is by default limited to the least of 5.5 v and 110% of the nominal output voltage, where the nominal output voltage is defined by pin - strap or by vout_command in non - volatile memory (see section initialization procedure) . this protects the load from an over voltage due to an accidental ly written wrong vout_command . the limitation applies to the regulated output voltage, rather than the internal value of vout_command. the output voltage limit can be reconfigured using the pmbus command vout_max. output over voltage protection ( ovp ) the product includes over voltage limiting circuitry for protection of the lo ad. the default ovp limit is 15 % above the nominal output voltage. the product can be configured to respond in different ways to the output voltage exceeding the ovp limit : 1. continue operating without interruption. 2. continue operating for a given delay period, followed by an output voltage shutdown if the fault still exists. 3. i mmediate and definite shutdown of output volta ge until the fault is cleared by pmbus or the output voltage is re - enabled. 4. i mmediate shutdown of output voltage while the fault is present. operation resumes and the output is enabled when the fault condition no longer exists. the default response is 4. t he ovp limit and fault response can be reconf igured using the pmbus commands vout_ov_fau lt_limit and vout_ov_fault_response. output under voltage protection ( uvp ) the product includes output under voltage limiting circuitry for protection of the l oad. the default uvp limit is 15% below the nominal output voltage. refer to section ?output over voltage protection? for response configuration options and default setting. power good pg (power good) is an active high open drain output used to indicate when the product is ready to provide regulated output voltage to the load. during startup and during a fault condition, pg is held low. by default, pg is asserted high after the output has ramped to a voltage above 90% of the nominal voltage and a successful c ompensation calibr ation has completed . by default, pg is deasserted if the output voltage falls below 85 % of the nominal voltage. these limits may be changed using the pmbus commands power_good_on and power_good_off . the pg output is not defined during ra mp up of the input voltage due to the initialization of the product. over current protection (ocp) the product includes robust current limiting circuitry for protection at continuous overload. after ramp -up is complete the product can detect an output o verload/short condition. the following ocp response options are available: 1. continue operating without interruption (this could result in permanent damage to the product) . 2. i mmediate and definite shutdown of output voltage until the fault is cleared by pmbus or the output voltage is re - enabled. 3. i mmediate shutdown of output voltage followed by continous restart attempts of the output voltage with a preset interval (?hiccup? mode). the default response from an over current fault is 3. note that delayed shutdown is not supported. the load distribution e bmr461 series pol regulators input 4.5-14 v, output up to 12 a / 60 w 1/287 01-bmr 461 uen a august 2013 ? ericsson ab technical speci?cation 20
ericsson internal product specificatio n 7 ( 14 ) prepared (also subject responsible if other) no. eab/fjb/gm qlaandr 30/1301 - bmr 461 uen approved checked date rev reference eab/fjb/gm (micubor) 2013- 08- 27 a sho uld be designed for the maximum output short circuit current specified. the ocp limit and response can be reconf igured using the pmbus commands iout_oc_fault_limit and iout_oc_fault_response . switching frequen cy the default switching frequency yields optimal performance. the switching frequency can be re - configured in a certain range using the pmbus command frequency_switch . refer to electrical specification for default switching frequency and range. if c hanging the switching frequency more than +/ - 10% from the default value, the following should be considered to maintain reliable operation : ? the default f lc value in comp_model should be adjusted, see section compensation implementation. ? adjustment of the fixeddtr and fixeddtf values in deadtime_gctrl may be required, for higher switching frequencies in particular. changing the switching frequency will affect efficiency/power dissipation, load transient response and output ripple . synchronization the produc t may be synchronize d with an external clock to eliminate beat noise on the input and output voltage lines by connecting the clock source to the sync pin. synchronization can also be utilized for phase spreading, described in section phase spreading. t he clock frequency of the external clock source must be stable prior to enabling the output voltage. further, the pmb us command frequency_switch must be set to a value close to the frequency of the external clock prior to enabling the output voltage, in order to set the internal controller in proper operational mode. the product automatically checks for a clock signal on the sync pin when input power is applied and when the output is enabled. if no incoming clock signal is present, the product will use the in ternal oscillator at the configued switching frequency. in the event of a loss of the external clock signal during normal operation, the product will automatically switch to the internal oscillator and switch at a frequency close to the original sync input frequency. phase spreading when multiple products share a common dc input supply, spreading of the switching clock phase between the products can be utilized. this dramatically reduces input capacitance requirements and efficiency losses, since the pe ak current drawn from the input supply is effectively spread out over the whole switch period. this requires that the products are synchronized. the phase offset is measured from the rising edge of the applied external clock to the center of the pwm pu lse as illustrated below . sync clock pwm pulse ( v o /v i = 0. 33) phase offset = 120 illustration of phase offset. by default the phase offset is controlled by the defined pmbus address (see section pmbus interface) according to the table below. this provides a way to configure phas e spreading with up to eight different phase positions without using a pmbus command. set pmbus address phase offset xxxx000b 0 xxxx001b 60 xxxx010b 120 xxxx011b 180 xxxx100b 240 xxxx101b 300 xxxx110b 90 xxxx111b 270 the default phase offset can be overridden by using the standard pmbus command interleave . the phase offset can then be defined as group in number order interleave offset phase __ _ 360)(_ = interleave_order is in the range 0 -15. number_in_group is in the range 0 - 15 where a value of 0 means 16. the set resolu tion for the pha se offset is 360 / 128 2.8. giving the pmbus command interleave a value of 0x0000 will revert back to the default address controlled phase offset. ericsson provides software tools for convenient configuration of optimized phase spreading, allowing the amount of input capacitance to be significantly reduced. e bmr461 series pol regulators input 4.5-14 v, output up to 12 a / 60 w 1/287 01-bmr 461 uen a august 2013 ? ericsson ab technical speci?cation 21
ericsson internal product specificatio n 8 ( 14 ) prepared (also subject responsible if other) no. eab/fjb/gm qlaandr 30/1301 - bmr 461 uen approved checked date rev reference eab/fjb/gm (micubor) 2013- 08- 27 a initialization procedure the product follows an internal initialization procedure after power is applied to the vin pin (refer to figure below) : 1. self test and memory check. 2. the address pin -s trap resistors are measured and the associated pmbus address is defined. 3. the output voltage pin - strap resistor is measured. the associated output voltage level will be loaded into operational ram memory , unless an overriding pmbus command vout_command has been explicitly written and stored in the user non - volatile m emory (indicated b y bit 0 in command strap_disable). 4. values stored in the user non - volatile m emory (nvm) are loaded into operational ram memory. for pmbus commands listed in the table below, loaded values will be based on the output voltage level loaded in step 3 above, u nless the commands have been explicitly written and stored in the u ser nvm . 5. check for external clock signal at the sync pin and wait for lock if used. once this procedure is compl eted and the initialization time has passed (see electrical specification), the output voltage is ready to be enabled and the pmbus interface can be used. loading of nominal output voltage level. note the following implica tions of the initialization procedure: ? if the rset pin - strap resistance is changed, input voltage will have to be cycled before the output voltage level is affected. ? if vout_command is changed and stored to user nvm, i nput voltage will have to be cycle d b efore the output voltage related commands in the table below are re- scaled according to the new output voltage level . see section pmbus interface for more information about the non - volatile memories (nvm) of the product. vout related pmbus command loade d value unless explicitly written + stored to user nvm . power_good_on 0.90 x loaded vout level power_good_off 0.85 x loaded vout level vout_max 1.10 x loaded vout level vout_margin_high 1.05 x loaded vout level vout_margin_low 0.95 x loaded vout level vout_ov_fault_limit 1.15 x loaded vout level vout_uv_fault_limit 0.85 x loaded vout level soft- start and soft - stop the soft -start and soft - stop control functionality allows the output voltage to ramp - up and ramp- down with defined timing with respect to the control of the output. this can be used to control inrush current and manage supply sequencing of multiple controllers . the rise time is the time taken for the output to ramp to its target voltage while the fall time is the time taken for the ou tput to ramp down from its regulation voltage to less than 10% of that value. the on delay time sets a delay from when the output is enabled until the output voltage starts to ramp up. the off delay time sets a delay from when the output is disabled until the output voltage starts to ramp down. output control v out on delay time rise time fall time off delay time illustration of soft - start and soft - stop s oft- stop is disabled by default but may be enabled through the pmbus command on_off_config . the delay and ramp times can be reconf igured using the pmbus commands ton_delay, ton_rise, toff_delay and toff_fall . the internal delay generator can only achieve certain discrete timing values. a written ton_delay /toff_delay value will be rounded to the closest achievable value, thus a ton _delay /off_de lay read will provide the actual set value. the internal ramp generator can only achieve certain discrete timing values for a given combination of switch frequency, output voltage level, set ramp time and trim data. these values are close, but not exactly the same, when any of the relevant parameters are altered. a written ton_rise /toff_fall value will be rounded to the closest achievable value, thus a ton_rise /toff_fall read will provide the actual set value. u ser nvm vout _command pmbus interface vout_command ram vout_c ommand strap_disable[0]=1? no pin - strap vout r set yes write read strap_disable[0]=1 e bmr461 series pol regulators input 4.5-14 v, output up to 12 a / 60 w 1/287 01-bmr 461 uen a august 2013 ? ericsson ab technical speci?cation 22
ericsson internal product specificatio n 9 ( 14 ) prepared (also subject responsible if other) no. eab/fjb/gm qlaandr 30/1301 - bmr 461 uen approved checked date rev reference eab/fjb/gm (micubor) 2013- 08- 27 a refer to electrical specification for default on delay time and rise time and the configurability ranges and resolutions. the specification provided for soft - start applies also for soft - stop, if enabled. output voltage sequencing a group of products may be configured to power up in a predetermined sequence. this feature is especially useful when powering advanced processors, fpgas, and asics that require one supply to reach its operating voltage prior to another. multi - product sequencing can be achieved by configuring the start delay and rise time of each device through the pmbus interface and by connecting the ctrl pin of each product to a common enable signal . time voltage v out 1 v out 2 illustration of output voltage sequencing . pre - bias startup capability pre - bias startup often occurs in c omplex digital systems when current from another power source is fed back through a dual - supply logic component, such as fpgas or asics. the product incorporates synchronous rectifiers, but will not sink current during startup, or turn off, or whenever a f ault shuts down the product in a pre - bias condition. when the output is enabled the product checks the output for the presence of pre - bias voltage. if the pre- bias voltage is above the output overvoltage threshold the product will not attempt soft - start. i f the pre - bias voltage is less than 200 mv the soft - start is performed assuming no pre - bias. if the pre - bias voltage is above 200 mv but below target output voltage, the product ramps up the output voltage from the pre - bias voltage to the target regulation as shown in the figure below. time soft - start r amp time voltage illustration of pre - bias startup voltage tracking the product supports tracking of the output from a ma ster voltage applied to the cs_vtrk pin. to se lec t the tracking mode, a resistance 4.22 k? must be connected between the vset and pref pins. the tracking ratio used is controlled by an internal feedback divider rdiv and an external resistive voltage divider (r1, r2) which is placed from the supply being tracked to the pref pin . v track (master ) r 2 bmr 461 cs_ vtrk vout vset pref gnd r 1 r set r set 4.22 k? v out (slave ) rdiv tracking mode configuration in tracking mode the output voltage is regulated to the lower of: eq. 5 21 1 rr r rdiv v v track out + = or the output voltage defined by the pmbus command vout_com mand. rdiv is automatically selected based on the value of vout_command as s hown in the table below. if vout_command is not defined by the user , it will default to 5.25 v with rdiv= 0.20272. vout_command [v] rdiv < 0.99 0.99547 0.99 to < 1.12 0.88 222 1.12 to < 1.28 0.76897 1.28 to < 1.50 0.65572 1.50 to < 1.82 0.54247 1.82 to < 2.29 0.42922 2.29 to < 3.12 0.31597 3.12 to < 5.25 0.20272 vout_command not user defined => 5.25 0.20272 for best tracking accuracy it is recommended that once the product is powered up, the vout_command should not be changed so as to cause a change to the operational rdiv. if such a change in vout_command is required, the user e bmr461 series pol regulators input 4.5-14 v, output up to 12 a / 60 w 1/287 01-bmr 461 uen a august 2013 ? ericsson ab technical speci?cation 23
ericsson internal product specificatio n 10 ( 14 ) prepared (also subject responsible if other) no. eab/fjb/gm qlaandr 30/1301 - bmr 461 uen approved checked date rev reference eab/fjb/gm (micubor) 2013- 08- 27 a should save the new value to user non - volatile m emory (using store_user_all command) and recycle the input voltage to set a new rdiv operational value. to simplify resistor selection it is recommended to fix r1 at 10 k? and use the following equation to determine r2: eq. 6 ? ? ? ? ? ? ? ? ? =? 1 1)(2 out track v rdiv v rkr r2 must be chosen so that the cs_ vtrk inpu t does not exceed 1.2 v. as seen in eq. 5 , if the resistor - divider ratio from r1/ / r2 is chosen such that it is equal to the operational rdiv, the output voltage follows the tracking voltage coincidentally. for all other cases, the output voltage follows a ratiometric tracking. these two modes of tracking are further described below. 1. coincident tracking. o utput voltage is ramped at the same rate as the v track voltage . to achieve coincident tracking the desired output voltage should be se t by the pmbus com mand vout_command. r2 should be set so that r2 = r1 / rdiv ? r1 . the output will stop ramping when the vout_command level is reached. time r1 / (r1 + r2) = rdiv voltage v track v out vout_ command coincident voltage tracking example: external v track = 3.3 v target v out = 1.85 v r1 = 10 k? vout_command = 1.85 v => rdiv = 0.42922 r2 = 10 / 0.42922 ? 10 = 13.3 k? 2. ratiomatric tracking. output voltage is ramped at a rate that is a percentage of the v track voltage. to achieve ratiometric tracking , r2 should be set according to eq. 6 with v out b eing the desired output voltage. the pmbus command vout_command should be set equal to or higher than the output voltage given by eq. 5 , or not being set at all giving the default vout_command value 5.25 v. since the target voltage level is decided by the r1/ / r2 divider there will be a small regulation inaccuracy due t o the tolerance of the resistors. note also that v out will be higher than v track if r1 / (r1 + r2) > rdiv. ti me r1 / (r1 + r2) < rdiv voltage v t ra c k v out 21 1 rr r rdiv v track + ratiometric voltage tracking example: external v track = 3.3 v target v out = 1.3 v vout_command not set => rdiv = 0.20272 r1 = 10 k? eq. 6 => ?= ? ? ? ? ? ? ? ? ? = k r 1151 3.120272.0 3.3 102 during voltage tracking c ompensation calibration is triggered when the output voltage is above 450 mv and stable within a 100 mv window for two c onsecutive measurements at 10 ms intervals. when calibration is complete, the power good (pg) output is asserted. the pg output remains asserted until the output voltage falls below 450 mv, as verified at 10 ms intervals. for this reason, the pg output may remain high for as much as 10 ms after the output voltage has fallen below 450 mv. when voltage tracking is enabled t he output over voltag e protection limit is set 12% above vout_command as default . this limit may be reconfigured using the pmb us command vout_ov_fault_limit. output under voltage protection is not functional in tracking mode. soft- start parameters ton_delay and ton_rise are not functional in tracking mode and will be set to their minimum values to prevent interfere nce with tracking . toff_d elay and toff_fall can be used if soft - stop is enabled. in such case the output voltage will follow the least of the output levels given by the soft - stop parameters and the tracking equations. e bmr461 series pol regulators input 4.5-14 v, output up to 12 a / 60 w 1/287 01-bmr 461 uen a august 2013 ? ericsson ab technical speci?cation 24
ericsson internal product specificatio n 11 ( 14 ) prepared (also subject responsible if other) no. eab/fjb/gm qlaandr 30/1301 - bmr 461 uen approved checked date rev reference eab/fjb/gm (micubor) 2013- 08- 27 a t hermal consideration general the product is designed to operate in different thermal environments and sufficient cooling must be provided to ensure reliable ope ration. cooling is achieved mainly by conduction, from the pins to the host board, and convection, which is dependent on the airflow across the product. increased airflow enhances the cooling of the product. the output current derating graph found in the output section for each model provides the available output current vs. ambient air temperature and air velocity at specified v i . the product is tested on a 254 x 254 mm, 35 m (1 oz), test board mounted vertically in a wind tunnel with a cross - section of 608 x 203 mm. the test board has 8 layers. proper cooling of the product can be verified by measur ing the temperature at position s p1 , p2 and p3. the temperature at these position s should not exceed the max values provided in the table below. note that the max value is the absolute maximum rating (non destruction) and that the electrical output data is guaranteed up to t p1 +95c. see design note 019 for further information. definition of product operating t emperature th e product operating temperature is used to monitor the temperature of the product . p roper thermal conditions can be verified by measur ing the temperature at position s p1 , p 2 and p3 . the temperature at these position (t p1 ,t p2 , t p3 ) should not exceed the maximum temperatures in the table below. the number of measurement points may vary with different thermal design and topol ogy. position description max temperature p1 t3 , f et reference point 120c p2 l1, inductor 12 0c (11 0c *) p3 n1, control circuit 11 0c * see section alternative thermal verification . temperature positions and air flow direction. definition of reference temperature t p1 the reference t emperature is used to monitor the temperature limits of the product. tempe rature above maximum t p1 , measured at the reference point p1 is not allowed and may cause degradation or permanent damage to the product. t p1 is also used to define the temperature r ange for normal operating conditions. t p1 is defined by the design and used to guarantee safety margins, proper operation and high reliability of the product. alternative thermal v erification since it is diff icult to access positions p1 and p3 of the pr oduct, measuring the temperature at only position p2 is an alternative method to verify proper thermal conditions. if measuring only t p2 the maximum temperature of p2 must be lowered since in some operating conditions t p1 will be higher than t p2 . using a t emperature limit of 110c for t p2 will make sure that the temperatures at all points p1, p2 and p3 stay below their maximum limits. over temperature protection (otp) the internal temperature of the product is continously monitored at position p3 . when t he internal temperature rises above the configured threshold level the product will respond as configured. the product can respond in a number of ways as follows: 1. continue operating without interruption (this could result in permanent damage to the product ). 2. continue operating for a given delay period, followed by an output voltage shut down if the fault still exists. 3. i mmediate and definite shutdown of output voltage until the fault is cleared by pmbus or the output voltage is re - enabled. 4. i mmediate shutdown of output voltage while the fault is present. operation resumes and the output is enabled when the fault condition no longer exists. default response is 4. the otp protection uses hysteresis so that the fault exists until the temperature has fallen to a c ertain level (ot_warn_limit) below the fault threshold. the default otp threshold and hysteresis are specified in e lectrical characteristics . the otp limit , hysteresis and response can be reconf igured using the pmbus commands ot_fault_limit, ot_warn_lim it and ot_fault_response . the product also incorporates a non - configurable hard - coded thermal shutdown associated with the temperature monitored at position p3 to ensure long - term flash- memory integrity. see electrical characteristics. air flow p1 top view p3 p 2 e bmr461 series pol regulators input 4.5-14 v, output up to 12 a / 60 w 1/287 01-bmr 461 uen a august 2013 ? ericsson ab technical speci?cation 25
ericsson internal product specificatio n 12 ( 14 ) prepared (also subject responsible if other) no. eab/fjb/gm qlaandr 30/1301 - bmr 461 uen approved checked date rev reference eab/fjb/gm (micubor) 2013- 08- 27 a connections pin layout, bottom view . below table gives a brief description of the functionality of each pin. a more detailed description can be found in the different sub sections of the operating information section. pin designation function 1a, 1b 2a, 2b, 2c, 2d vout output voltage 3a, 3b, 4a, 4b, 5a, 5b gnd power ground 5c, 6a, 6b, 6c vin input voltage 1c +s positive sense . connect to output voltage close to the load 1d -s negative sense . connect to power ground close to the load. 1e pg power good output. asserted high when the product is ready to provide regulated output voltage to the load. open drain. see section power good. 1f sa0 pmbus address pin strap . used with external resistors to assign a unique pmbus address to the produ ct. see section pmbus interface. 3e sa1 2f vset output voltage pin strap . used with external resistor to set the nominal output voltage or to select tracking mode. see section output voltage adjust using pin - strap resistor . 3f pref pin- strap reference . ground reference for pin - strap resistors. 6d ctrl remote control. can be used to enable/disable the output voltage of the product. see section remote control. 2e sync external switching frequency synchronization input. see section synchronization. 5f salert pmbus alert . asserted low when any of the configured protection mechanisms indicate a fault. 6e sda pmbus data. data signal for pmbus communication. see section pmbus interface. 6f scl pmbus clock . clock for pmbus communication. see section pmbus interface. 4f cs _vtrk bmr 461 3001: voltage tracking input . allows for tracking of output voltage to an external voltage. see section voltage tracking. bmr 461 xxxx (future product): current sharing bus. if nor tracking or current sharing is used, thi s pin must be connected to pref. 4e rsvd reserved. connect to pref. 5d , 5e nc no connection e bmr461 series pol regulators input 4.5-14 v, output up to 12 a / 60 w 1/287 01-bmr 461 uen a august 2013 ? ericsson ab technical speci?cation 26
ericsson internal product specificatio n 13 ( 14 ) prepared (also subject responsible if other) no. eab/fjb/gm qlaandr 30/1301 - bmr 461 uen approved checked date rev reference eab/fjb/gm (micubor) 2013- 08- 27 a unused p ins unused pins should be connected according to the table below. note that connection of cs_ vtrk to pref is required for normal standalone operation . vset should always have a pin strap resistor . unused pin connection cs_vtrk pref. required for normal operation ctrl open (pin has i nternal pull - up ) rsvd pref or pulled down to pref sync pref or pulled down to pref sa0 pref or open sa1 pref or open sda pull - up resistor to voltage > 2 v scl pull - up resistor to voltage > 2 v pg open salert open typical application circuit vin vout +s bmr461 - s ctrl pg sa0 s a1 vset pref salert scl cs_ vtrk sda sync rsvd gnd v out l o a d v in c o c i r sa0 r sa1 r set 3 x r pu = 2.2 k? 3 - 5 v salert scl sda dgnd typical standalone operation with pmbus communication. pcb layout considera tion the radiated emi performance of the product will depend on the pcb layout and ground layer design. if a ground layer is used, it should be connected to the output of the product and the equipment ground or chassis. a ground layer will increase the stray capacitance in the pcb and improve the high frequency emc performance. further layout recommendations are listed below. ? the pin strap resistors, r set , and r sa0 /r sa1 should be placed as close to the product as possible to minimize loops that may pick up noise. ? avoid current carrying planes under the pin strap resistors and the pmbus signals. ? the capacitor s c i should be placed as close to the input pins as possible. ? the c apacitor s c o should be placed close to the load. ? the point of output voltage sen se should be ?downstream? of c o according to figure below. ? care should be taken in the routing of the connections from the sensed output voltage to the s+ and s ? terminals. these sensing connections should be routed as a differential pair, preferably betwe en ground planes which are not carrying high currents. the routing should avoid areas of high electric or magnetic fields. ? if possible use planes on several layers to carry v i , v o and gnd. there should be a large number of vias close to the vin, vout and gnd pads in order to lower input and output impedances and improve heat spreading between the product and the host board. v o +s scl sda sync load - s bmr 461 c i c o gnd v i r sa0 , r set , r sa1 gnd layout guidelines. e bmr461 series pol regulators input 4.5-14 v, output up to 12 a / 60 w 1/287 01-bmr 461 uen a august 2013 ? ericsson ab technical speci?cation 27
ericsson internal product specificatio n 1 ( 5 ) prepared (also subject respo nsible if other) no. eab/fjb/gm qlaandr 31/1301 - bmr 461 approved checked date rev reference eab/fjb/gm (micubor) 2013- 08- 27 a pmb us i nterface this product provides a pmbus digital interface that enables the user to configure many aspects of the device operation as well as to monitor the input and output voltages, output current and device temperature. the product can be used with any standard two - wire i 2 c or smbus host device. in addition, the product is compatible with pmbus version 1.1 and includes an salert line to help mitigate bandwidth limitations related to continuous fault monitoring. the pmbus signals, scl, sda and salert require passive pull - up resistors as stated in the smbus specification. pull - up resistors are required to guarantee the rise time as follows: scr pp 1 = where r p is the pull - up resistor value and c p is the bus loading. t he maximum allowed bus load is 400 pf. the pull - up resistor should be tied to an external supply voltage in range from 2.7 to 5.5 v, which should be present prior to or during power - up. if the proper power supply is not available, voltage dividers may be applied. note that in this case, the resistance in the equation above corresponds to parallel connection of the resistors forming the voltage divider. see application note an304 for details on interfacing the product with a microcontroller. monitoring via pmbus it is pos sible to mo nitor a wide variety of parameters through the pmbus interface. fault conditions can be monitored using the salert pin, which will be asserted when any number of pre- configured fault or warning conditions occur. it is also possible to continuously monitor one or more of the power conversion parameters including but not limited to the following: ? input voltage (read_vin) ? output voltage (read_vout) ? output current (read_iout) ? internal junction temperature (read_temperature_1) ? switching frequency (read_frequency) ? duty cycle (read_duty_cycle) reading s et p arameters to clearly display the true performance of the product, pmbus command reads of set levels, limits and timing parameters will return the internally used values. for this reason, due to rou nding or internal representation in the controller of the product, there may be a difference between written and read value of a pmbus command. this applies to pmbus commands of type linear or voutlinear. non -v olatile m emory (nvm) the product in corpora tes two non - volatile m emory areas for storage of the supported pmbus commands; the default nvm and the user nvm . the default nvm is pre- loaded with ericsson factory default values. the default nvm is write - protected and can be used to restore the ericsson factory default values through the command restore_default_all. the restore_default_all command will load a nominal output level of 0 v. therefore, after a restore_default_all command is sent, the input voltage must be cycled in order to load correct output voltage level according to vset pin - strap resistor (see section startup procedure). the user nvm is pre - loaded with ericsson factory default values. th e user nvm is writable and open for customization . the values in the u ser nvm are loaded during initialization whereafter commands can be changed through the pmbus interface . the store_user_all command will store the changed parameter s to the user nvm . protecting c ommands the user may write - protect specific pmbus commands i n the user nvm by following the steps below. 1. enter the default password 0x0000 through the command user_passwd. after the correct password is entered, security_level will read back 0x01 instead of default 0x00. 2. if desired, define a new password by writing it to the user_lock command. 3. define which commands should be locked by using the 256 bit command user_conf. setting bit x will write - protect the pmbus command with code x. 4. send command store_user_all. 5. cycle the input voltage. software tools for design and p roduction ericsson provides software tools for configuration and monitoring of this product via the pmbus interface. for more information please contact your local ericsson sales representative. user nvm erics son factory default customizable ram default nvm erics son factory default write - protected restore_default_all write read pmbus interface restore_ user _all store _ user _all initialization e bmr461 series pol regulators input 4.5-14 v, output up to 12 a / 60 w 1/287 01-bmr 461 uen a august 2013 ? ericsson ab technical speci?cation 28
ericsson internal product specificatio n 2 ( 5 ) prepared (also subject respo nsible if other) no. eab/fjb/gm qlaandr 31/1301 - bmr 461 approved checked date rev reference eab/fjb/gm (micubor) 2013- 08- 27 a pmbus a ddressing the pmbus address should be confi gured with resistors connected between the sa0/sa1 pins and the pref pin, as shown in the table and figure below. note that five different values of r sa1 produce the same address. recommended resistor values for hard - wiring pmbus addresses are shown in the table. 1% tolerance resistors are required. the configurable pmbus addresses range from 0x0a to 0x7f. in total 118 device address combinations are provided. r sa1 [k ? ] 4.22 5.11 6.19 7.15 8.25 9.53 11.0 12.7 14.7 17.8 21.5 26.1 31.6 38.3 44.2 51.1 59.0 68.1 86.6 115 r sa0 [k ? ] 140 169 205 237 274 4.22 0x0a 0x22 0x3a 0x52 0x6a 5.11 0x0b 0x23 0x3b 0x53 0x6b 6.19 0x0c 0x24 0x3c 0x54 0x6c 7.15 0x0d 0x25 0x3 d 0x55 0x6d 8.25 0x0e 0x26 0x3e 0x56 0x6e 9.53 0x0f 0x27 0x3f 0x57 0x6f 11.0 0x10 0x28 0x40 0x58 0x70 12.7 0x11 0x29 0x41 0x59 0x71 14.7 0x12 0x2a 0x42 0x5a 0x72 17.8 0x13 0x2b 0x43 0x5b 0x73 21.5 0x14 0x2c 0x44 0x5c 0x74 26.1 0x15 0x2d 0x45 0x5d 0 x75 31.6 0x16 0x2e 0x46 0x5e 0x76 38.3 0x17 0x2f 0x47 0x5f 0x77 44.2 0x18 0x30 0x48 0x60 0x78 51.1 0x19 0x31 0x49 0x61 0x79 59.0 0x1a 0x32 0x4a 0x62 0x7a 68.1 0x1b 0x33 0x4b 0x63 0x7b 86.6 0x1c 0x34 0x4c 0x64 0x7c 115 0x1d 0x35 0x4d 0x65 0x7d 140 0x1e 0x36 0x4e 0x66 0x7e 169 0x1f 0x37 0x4f 0x67 0x7f 205 0x20 0x38 0x50 0x68 0x7f 237 0x21 0x39 0x51 0x69 0x7f schematic of connection of address resistor. optional pmbus addressing the user may leave sa0/sa1 open or shorted to pref. shorting sa0/sa1 to pref corresponds to r sa0 /r sa1 4. 22 k? in the address table above. leaving sa0/sa1 open corresponds to r sa0 /r sa1 274 k? in the address table above. reserved addresses addresses listed in the table below are reserved or assigned according to the smbus specification and may not be usable. refer to the smbus specification for further information. address comment 0 x00 general call address / start byte 0x0 1 cbus address 0x0 2 address reserved for dif ferent bus format 0x0 3 - 0x0 7 reserved for future use 0x0 8 smbus host 0x09 - 0x0b assigned for smart battery 0x0c smbus alert response address 0x28 reserved for access.bus host 0x2c - 0x2d reserved by previous versions of the smbus specification 0x3 7 reserved for access.bus default address 0x40 - 0x44 reserved by previous versions of the smbus specification 0x48 - 0x4b unrestricted addresses 0x61 smbus device default address 0x78 - 0x7b 10- bit slave addressing 0x7c - 0x7f reserved for future use sa0 sa1 pref r sa1 r sa0 e bmr461 series pol regulators input 4.5-14 v, output up to 12 a / 60 w 1/287 01-bmr 461 uen a august 2013 ? ericsson ab technical speci?cation 29
ericsson internal product specificatio n 3 ( 5 ) prepared (also subject respo nsible if other) no. eab/fjb/gm qlaandr 31/1301 - bmr 461 approved checked date rev reference eab/fjb/gm (micubor) 2013- 08- 27 a i 2 c/smbus ? timing setup and hold times timing diagram the setup time, t set , is the time data, sda, must be stable before the rising edge of the clock signal, scl. the hold time t hold , is the time data, sda, must be stable after the ris ing edge of the clock signal, scl. if these times are violated incorrect data may be captured or meta - stability may occur and the bus communication may fail. a ll standard smbus protocols must be followed, including clock stretching. refer to the smbus spec ification, for smbus electrical and timing requirements. the bus - free time (time between stop and start packet) according to electrical specification must be followed. the product supports pec (packet error checking) according to the smbus specification. when sending subsequent commands to the same unit , it is recommended to insert additional delay s after write transactions according to the table below, due to the product?s controller executing processor - intensive tasks. after the output voltage is enabled, it is recommended to wait until pg is asserted (or the equivalent time) before sending commands. pmbus command delay after write before additional command store_user_all 500 ms store_default_all deadtime_gctrl user_conf 350 ms manuf_conf re store_user_all 10 ms restore_default_all frequency_switch vout_droop 0.5 ms iout_cal_gain adaptive_mode feedback_effort loop_config comp_model zetap pmbus commands the product is pmbus compliant. the following table lists all the imple mented pmbus read commands. for more detailed information see pmbus power system management protocol specification; part i ? general requirements, transport and electrical interface and pmbus power system management protocol; part ii ? command language. designation code impl standard pmbus commands control commands page 00h no operation 01h yes on_off_config 02h yes write_protect 10h yes output commands capability (read only) 19h yes vout_mode (read only) 20h yes vout_command 21h yes vout _trim 22h yes vout_cal_offset 23h yes vout_max 24h yes vout_margin_high 25h yes vout_margin_low 26h yes vout_transition_rate 27h yes vout_droop 28h yes max_duty 32h no frequency_switch 33h yes vin_on 35h yes vin_off 36h yes iout_cal_gain 38h yes iout_cal_offset 39h yes vout_scale_loop 29h no vout_scale_monitor 2ah no coefficients 30h no fault limit commands power_good_on 5eh yes power_good_off 5fh yes vout_ov_fault_limit 40h yes vout_ov_warn_limit 42h no vout_uv_warn_limit 43h no vou t_uv_fault_limit 44h yes iout_oc_fault_limit 46h yes iout_oc_lv_fault_limit 48h no iout_oc_warn_limit 4ah no e bmr461 series pol regulators input 4.5-14 v, output up to 12 a / 60 w 1/287 01-bmr 461 uen a august 2013 ? ericsson ab technical speci?cation 30
ericsson internal product specificatio n 4 ( 5 ) prepared (also subject respo nsible if other) no. eab/fjb/gm qlaandr 31/1301 - bmr 461 approved checked date rev reference eab/fjb/gm (micubor) 2013- 08- 27 a designation c ode impl iout_uc_fault_limit 4bh no ot_fault_limit 4fh yes ot_warn_limit 51h yes ut_warn_limit 52h no ut_fault_limit 53h no vin_ov_fault_limit 55h yes vin_ov_warn_limit 57h no vin_uv_warn_limit 58h no vin_uv_fault_limit 59h yes fault response commands vout_ov_fault_response 41h yes vout_uv_fault_response 45h yes ot_fault_response 50h yes ut_fault_response 54h no vin_ ov_fault_response 56h yes vin_uv_fault_response 5ah yes iout_oc_fault_response 47h yes iout_oc_lv_fault_response 49h no iout_uc_fault_response 4ch no ton_max_fault_response 63h yes time setting commands ton_delay 60h yes ton_rise 61h yes toff_de lay 64h yes toff_fall 65h yes ton_max_fault_limit 62h yes status commands (read only) clear_faults 03h yes status_byte 78h yes status_word 79h yes status_vout 7ah yes status_iout 7bh yes status_input 7ch yes status_temperature 7dh yes status_c ml 7eh yes status_mfr_specific 80h yes monitor commands (read only) read_vin 88h yes read_iin 89h no read_vout 8bh yes read_iout 8ch yes read_temperature_1 8dh yes designation c ode impl read_temperature_2 8eh yes read_fan_speed_1 90h no read_d uty_cycle 94h yes read_frequency 95h yes read_pout 96h no read_pin 97h no group commands interleave 37h yes phase_control f0h no identification commands pmbus_revision 98h yes mfr_id 99h yes mfr_model 9ah yes mfr_revision 9bh yes mfr_locati on 9ch yes mfr_date 9dh yes mfr_serial 9eh yes ic_device_id adh yes ic_device_rev aeh yes supervisory commands store_default_all 11h yes restore_default_all 12h yes store_user_all 15h yes restore_user_all 16h yes product specific commands ad aptive_mode d0h yes feedback_effort d3h yes loop_config d5h yes test_mode d9h yes comp_model dbh yes strap_disable dc h yes manuf_conf e0h yes manuf_lock e1h yes manuf_passwd e2h yes user_conf e3h yes user_lock e4h yes user_passwd e5h yes securi ty_level e6h yes deadtime_gctrl e7h yes zetap e8h yes impl is short for implemented. e bmr461 series pol regulators input 4.5-14 v, output up to 12 a / 60 w 1/287 01-bmr 461 uen a august 2013 ? ericsson ab technical speci?cation 31
ericsson internal product spec. mechan ical 1 ( 2 ) prepared (also subject responsible if other) no. epetsch 4/1301 - bmr 461 3001 uen approved checked date rev reference eab/fjb/gm [eksehar] see 1 2013 - 05 - 03 a mechanical information - surface mount version all component placements C whether shown as physical components or symbolical outline C are for reference only and are subject to change throughout the products life cycle, unless explicitly described a nd dimensioned in this drawing. e bmr461 series pol regulators input 4.5-14 v, output up to 12 a / 60 w 1/287 01-bmr 461 uen a august 2013 ? ericsson ab technical speci?cation 32
ericsson internal product specificatio n mechanical. 1 (5) prepared (also subject responsible if other) no. epetsch 5/1301 - bmr 461 3001 uen approved checked date rev reference eab/fjb/gm [ksenia harrisen] see 1 2013- 07- 03 c solderin g information - surface mount ing the surface mount product is intended for forced convection or vapor phase reflow soldering in snpb or pb - free processes. the reflow profile should be optimised to avoid excessive heating of the product. it is rec ommended to have a sufficiently extended preheat time to ensure an even temperature across the host pcb and it is also recommended to minimize the time in reflow. a no - clean flux is recommended to avoid entrapment of cleaning fluids in cavities inside the product or between the product and the host board, since cleaning residues may affect long time reliability and isolation voltage. t p roduct maximum t pin minimum time pin profile product profile t l time in reflow time in preheat / soak zone time 25 c to peak temperature minimum pin temperature recommendations general reflow process specifications snpb eutectic pb - free average ramp - up (t product ) 3c/s max 3c/s max typical sold er melting (liquidus) temperature t l 183c 221c minimum reflow time above t l 30 s 30 s minimum pin temperature t pin 210c 235c peak product temperature t product 225c 260c average ramp - down (t product ) 6c/s max 6c/s max maximum time 25c to peak 6 minutes 8 minutes pin number c1 or d1 are chosen as reference location for the minimum pin temperature recommendation since these will likely be the coolest solder joint during the reflow process. snpb solder processes for snpb solder processes, a pin temperature (t pin ) in excess of the solder melting temperature, (t l , 183c for sn63pb37) for more than 30 seco nds and a peak temperature of 210c is recommended to ensure a relia ble solder joint. for dry packed products only: depending on the type of solder paste and flux system used on the host board, up to a recommended maximum temperature of 245c could be used, if the products are kept in a controlled environment (dry pack ha ndling and storage) prior to assembly. lead - free (pb - free) solder processes for pb - free solder processes, a pin temperature (t pin ) in excess of the solder melting temperature (t l , 217 to 221c for snagcu solder alloys) for more than 30 seconds and a p eak temperature of 235c on all solder joints is recommended to ensure a reliable solder joint. maximum product temperature requirements top of the product pcb near pin a2 or a5 is chosen as reference location s for the maximum (peak) allowed product tem perature (t product ) since the se will likely be the warmest part of the product during the reflow process. snpb solder processes for snpb solder processes, the product is qualified for msl 1 according to ipc/jedec standard j - std - 020c. during reflow t pro duct must not exceed 225 c at any time. pb - free solder processes for pb - free solder processes, the product is qualified for msl 3 according to ipc /jedec standard j - std - 020c. during reflow t product must not exceed 260 c at any time. dry pack inform ation surface mounted versions of the products are delivered in standard moisture barrier bags according to ipc/jedec standard j - std - 033 (handling, packing, shipping and use of moisture/reflow sensitivity surface mount devices). using products in high temperature pb - free soldering processes requires dry pack storage and handling. in case the products have been stored in an uncontrolled environment and no longer can be considered dry, the modules must be baked according to j - std -033. thermocoupler atta chment pin c1 or d1 for measurement of minimum pin (solder joint) temperature tpin top of pwb near pin a2 or a5 for measurement of maximum product temperature, tproduct e bmr461 series pol regulators input 4.5-14 v, output up to 12 a / 60 w 1/287 01-bmr 461 uen a august 2013 ? ericsson ab technical speci?cation 33
ericsson internal product specificatio n mechanical. 2 (5) prepared (also subject responsible if other) no. epetsch 5/1301 - bmr 461 3001 uen approved checked date rev reference eab/fjb/gm [ksenia harrisen] see 1 2013- 07- 03 c surface mount assembly and repair the lga of the product require particular care during assembly since the lgas are hidden between the host board and the product?s pcb. special procedures are required for successful rework of these p roducts. assembly automatic pick and place equipment should be used to mount the product on the host board. the use of a vision system, utilizing the fiducials on the bottom side of the product, will ensure adequate accuracy. manual mounting of solder b ump products is not recommended. this module is not recommended for assembly on the bottom side of a customer board. if such an assembly is attempted, components may fall off the module during the second reflow process. repair for a successful repair ( removal and replacement) of a lga product, a dedicated rework system should be used. the rework system should preferably utilize a reflow station and a bottom side heater might also be needed for the operation. the product is an open frame design with a p ick up surface on a large central component (in this case the choke). this pick up surface can be used for removal of the module provided that it is glued against module pcb before removal to prevent it from separating from the module pcb. for specific in structions regarding removal and re - solder of the module refer to 1541 - bmr 461. delivery package information the products are delivered in antistatic carrier tape (eia 481 standard). carrier tape specifications material ps, antistatic surface resistance < 10 7 ohm/square bakeability the tape is not bakable tape width, w 24 mm [0.94 inch] pocket pitch, p 1 20 mm [ 0.79 inch] pocket depth, k 0 8.6 mm [0.339 inch] reel diameter 330 mm [13 inch] reel capacity 280 products /reel reel weight 116 0 g/full reel e bmr461 series pol regulators input 4.5-14 v, output up to 12 a / 60 w 1/287 01-bmr 461 uen a august 2013 ? ericsson ab technical speci?cation 34
ericsson internal product specificatio n mechanical. 4 (5) prepared (also subject responsible if other) no. epetsch 5/1301 - bmr 461 3001 uen approved checked date rev reference eab/fjb/gm [ksenia harrisen] see 1 2013- 07- 03 c product qualification specification characteristics external visual inspection ipc - a - 610 change of temperature (temperature cycling) iec 60068 -2- 14 na temperature r ange number of cycles dwell/transfer time - 40 to 100 c 1000 15 min/0 - 1 min cold (in operation) iec 60068 -2- 1 ad temperature t a duration - 45c 72 h damp heat iec 60068 -2- 67 cy temperature humidity duration 85 c 85 % rh 1000 hours dry heat iec 60068 -2- 2 bd temperature duration 125 c 1000 h electrostatic discharge susceptibility iec 61340 - 3 - 1, jesd 22 - a114 iec 61340 -3- 2, jesd 22 - a115 human body model (hbm) machine model (mm) class 2, 2000 v class 3, 200 v immersion in cleaning solvents iec 60068 -2- 45 xa , m ethod 2 water glycol ether isopropyl alcohol 55 c 35c 35c mechanical shock iec 60068 -2- 27 ea peak acceleration duration 100 g 6 ms moisture reflow sensitivity j- std -020c l evel 1 (snpb - eutectic) l evel 3 (pb free) 225c 260c operational life test mi l - std - 202g , method 108a duration 1000 h robustness of terminations iec 60068 -2- 21 test ua1 iec 60068 -2- 21 test ue1 through hole mount products surface mount products all leads all leads solderability iec 60068 -2- 58 test td preconditioning temperature , snpb eutectic temperature, pb - free 150c dry bake 16 h 215c 235c vibration, broad band random iec 60068 -2- 64 fh, method 1 frequency spectral density duration 10 to 500 hz 0.07 g 2 /hz 10 min in each 3 perpendicular direction s e bmr461 series pol regulators input 4.5-14 v, output up to 12 a / 60 w 1/287 01-bmr 461 uen a august 2013 ? ericsson ab technical speci?cation 35


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