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  ?all specifications are subject to change without notice.  features industry standard footprint adopted high efciency equipped with a function to vary output over a wide range equipped with remote on/of function protection functions (output over current protection, over temperature protection (ad16r only)) pmh product line up non-insulation type dc-dc converter applications : & " 3 4 xbssbouz 1 model name pmh-ad16rpvmd pmh-ad16rpvwd PMH-AD07RPVWD input voltage 4.5v 5.5v 6v 14v 6v 14v output voltage 0.75v 3.63v 0.75v 5.5v 0.75v 5.5v output current 16a 16a 7a output power 52.8w 80w 35w pmh ad 07r p v w d model-naming method shape (d: smd type) input voltage (m: 5v, w: worldwide) vrm (pol) product polarity of remote control p: positive logic maximum output current 07r: 7a 16r: 16a "ad" (adjustable) is uniformly used because the nominal out - put voltage can be varied over a wide range. series name this means that, in conformity with eu directive 2002/95/ec, lead, cadmium, mercury, hexavalent chro - mium, and specifc bromine-based fame retardants, pbb and pbde, have not been used, except for exempted ap - plications. conformity to rohs directive ?y? -y 'y" r ? . fw  fw  lt ? e ?? y ? 'y" r ? . fw  qi qgb ilb ixt bmqib emq gqt ???? ? e ?? y ? 'y" r ? . fw  ? e ?? y ? ?y? -y 'y" r ? . fw  ? e ?? y ? ?y? -y 'y" r ? . fw  ? e ?? y ? ?y? -y 'y" r ? . fw  ? e ?? y ? ?y? -y 'y" r ? . fw  ?y? -y 'y" r ? . fw  fw  lt ? e ?? y ? 'y" r ? . fw  qi qgb ilb ixt bmqib emq gqt ???? ? e ?? y ? 'y" r ? . fw  ? e ?? y ? ?y? -y 'y" r ? . fw  ? e ?? y ? ?y? -y 'y" r ? . fw  ? e ?? y ? ?y? -y 'y" r ? . fw  ? e ?? y ? ?y? -y 'y" r ? . fw  00-0/2008042/etl_pmh
pmh ?all specifications are subject to change without notice. 2 pmh specifications model items/units pmh-ad16rpvmd pmh-ad16rpvwd PMH-AD07RPVWD i n p u t n o m i n a l v o l t a g e v d c 5 d c 1 2 v o l t a g e r a n g e 0 . 7 5 Q v o Q 3 . 6 3 v ( * 1 ) v d c 4 . 5 - 5 . 5 d c 6 - 1 4 v o l t a g e r a n g e 3 . 6 3 Q v o Q 5 . 5 v ( * 1 ) v - d c 7 - 1 4 e f f i c i e n c y v o = 1 . 2 v ( t y p ) ( * 2 ) 8 6 8 3 7 7 e f f i c i e n c y v o = 1 . 8 v ( t y p ) ( * 2 ) 9 0 8 7 . 5 8 3 e f f i c i e n c y v o = 3 . 3 v ( t y p ) ( * 2 ) 9 4 9 2 . 5 8 9 e f f i c i e n c y v o = 5 . 0 v ( t y p ) ( * 2 ) - 9 5 9 3 o u t p u t m a x i m u m c u r r e n t ( * 3 ) a 1 6 7 m a x i m u m p o w e r ( * 4 ) w 5 2 . 8 8 0 3 5 m a x i m u m l i n e r e g u l a t i o n 0 . 7 5 Q v o Q 3 . 6 3 v ( t y p ) m v 2 1 0 3 m a x i m u m l i n e r e g u l a t i o n 3 . 6 3 Q v o Q 5 . 5 v ( t y p ) m v - 1 5 5 m a x i m u m l o a d r e g u l a t i o n 0 . 7 5 Q v o Q 3 . 6 3 v 0 - 1 0 0 % ( t y p ) m v 5 1 0 3 m a x i m u m l o a d r e g u l a t i o n 3 . 6 3 Q v o Q 5 . 5 v 0 - 1 0 0 % ( t y p ) m v - 1 5 7 m a x p o w e r t o t a l r e g u l a t i o n ( m a x ) ? 5 ? 2 m a x i m u m r i p p l e & n o i s e ( t y p ) ( * 5 ) m v p - p 5 0 5 0 / 8 0 5 0 s t a r t u p t i m e ( t y p ) m s 2 . 5 v o l t a g e a d j u s t a b l e r a n g e ( * 6 ) v d c 0 . 7 5 - 3 . 6 3 0 . 7 5 - 5 . 5 f u n c t i o n o v e r c u r r e n t p r o t e c t i o n ( t y p ) ( * 7 ) a 2 4 . 0 1 0 . 5 o v e r v o l t a g e p r o t e c t i o n n o t a v a i l a b l e o v e r t e m p e r a t u r e p r o t e c t i o n ( t y p ) 1 2 0 n o t a v a i l a b l e r e m o t e s e n s i n g a v a i l a b l e n o t a v a i l a b l e r e m o t e o n / o f f c o n t r o l a v a i l a b l e p a r a l l e l o p e r a t i o n n o t a v a i l a b l e e n v i r o n m e n t o p e r a t i n g t e m p e r a t u r e - 4 0 t o + 8 5 s t o r a g e t e m p e r a t u r e - 5 5 t o + 1 2 5 o p e r a t i n g h u m i d i t y r h 1 0 - 9 5 ( t h e c o n d i t i o n s o f m a x i m u m 3 8 c i n w e t b u l b t e m p e r a t u r e a n d n o n - c o n d e n s a t i o n s h o u l d b e e n s u r e d . ) s t o r a g e h u m i d i t y r h 1 0 - 9 5 ( t h e c o n d i t i o n s o f m a x i m u m 3 8 c i n w e t b u l b t e m p e r a t u r e a n d n o n - c o n d e n s a t i o n s h o u l d b e e n s u r e d . ) v i b r a t i o n 1 0 - 5 0 0 h z , 1 m i n u t e s s w e e p a n d 9 8 m / s 2 ( 1 0 g ) a c c e l e r a t i o n o r 1 . 5 m m t o t a l a m p l i t u d e , 3 d i r e c t i o n s , 0 . 5 h f o r e a c h , i n n o n - o p e r a t i o n s h o c k 9 8 0 m / s 2 ( 1 0 0 g ) , 6 m s , 3 d i r e c t i o n s , 3 t i m e s f o r e a c h , i n n o n - o p e r a t i o n m e c h a n i c a l w e i g h t ( t y p ) g 6 . 5 2 . 5 s i z e ( w x h x d ) m m 3 3 x 6 . 7 x 1 4 . 2 2 0 . 3 x 6 . 0 x 1 1 . 4 3 ( * 1 ) i n p u t v o l t a g e r a n g e d i f f e r s d e p e n d i n g o n t h e v o v a l u e . ( * 2 ) w i t h n o m i n a l i n p u t v o l t a g e , m a x i m u m o u t p u t c u r r e n t , a n d t a = 2 5 c . ( * 3 ) c h e c k t h e o u t p u t c u r r e n t b e c a u s e i t v a r i e s d e p e n d i n g o n t h e u s a g e c o n d i t i o n s a n d t h e v o l t a g e s e t t i n g . ( * 4 ) c h e c k t h e m a x i m u m o u t p u t p o w e r b e c a u s e i t v a r i e s d e p e n d i n g o n t h e o u t p u t v o l t a g e . ( * 5 ) i n 2 0 m h z , n o m i n a l i n p u t v o l t a g e , m a x i m u m o u t p u t c u r r e n t , a n d t a = 2 5 c . t h i s v a l u e i s t h a t i n t h e c o n d i t i o n w h e r e a 1 f c e r a m i c c a p a c i t o r + 1 0 f o s c a p a c i t o r i s a t t a c h e d t o t h e o u t p u t t e r m i n a l . f o r p m h - a d 1 6 r p v w d o n l y , 5 0 m v p - p i n 0 . 7 5 Q v o Q 3 . 6 3 v 8 0 m v p - p i n 3 . 6 3 Q v o Q 5 . 5 v ( * 6 ) r e f e r t o * 1 " i n p u t v o l t a g e r a n g e " . ( * 7 ) a u t o m a t i c a l l y r e s u m e s w h e n t h e c a u s e s a r e r e m o v e d . w i t h n o m i n a l i n p u t / o u t p u t v o l t a g e , m a x i m u m o u t p u t c u r r e n t , a n d t a = 2 5 c , i f n o t s p e c i f i e d s e p a r a t e l y . 6 5 4 3 1 2 33.00 2.5 10.29 1.91 1.6 14.2 7.87 4.83 7.54 6.7max. 1.58 1.22 4.83 4.83 outline drawing 5 4 2 3 1 20.3 2.5 8.64 1.6 11.43 4.83 1.3 4.06 4.57 6.0max. 4.06 6ojunn "mmpxbcmfupmfsbodfjt ? jg oputqfdjpfetfqbsbufmz pmh16 d (smd) type pmh07 d (smd) type model name pmh-ad16rpvmd pmh-ad16rpvwd PMH-AD07RPVWD no.1 vin vin no.2 rc rc no.3 vo sense vo no.4 trim trim no.5 vo gnd no.6 gnd ? terminal assignments
?all specifications are subject to change without notice.  pmh- ad16rpvmd 0vuqvudvssfou "
"ncjfouufnqfsbuvsf ? $
0 0 1 0 2 0 3 0 4 0 5 0 6 0 7 0 8 0 9 0 2 4 6 10 12 14 8 16 18 2m/s 1.5m/s 1m/s 0m/s 0 2 4 6 10 12 14 8 16 18 0vuqvudvssfou "
"ncjfouufnqfsbuvsf ? $
0 1 0 2 0 3 0 4 0 5 0 6 0 7 0 8 0 9 0 2m/s 1.5m/s 1m/s 0m/s 0vuqvudvssfouefsbujohczbncjfouufnqfsbuvsf jo7jo7 boe npvoufepoyynn1$#
0vuqvudvssfou "
"ncjfouufnqfsbuvsf ? $
0 0 1 0 2 0 3 0 4 0 5 0 6 0 7 0 8 0 9 0 2 4 6 10 12 14 8 16 18 in 1.2v output 2m/s 1.5m/s 1m/s 0m/s 0vuqvudvssfou "
"ncjfouufnqfsbuvsf ? $
0 0 1 0 2 0 3 0 4 0 5 0 6 0 7 0 8 0 9 0 2 4 6 10 14 12 8 16 18 in 2.5v output in 1.8v output in 3.3v output 2m/s 1.5m/s 1m/s 0m/s derating curve pmh-ad16rpvmd
?all specifications are subject to change without notice. 4 0vuqvudvssfou "
"ncjfouufnqfsbuvsf ? $
0 2 4 6 8 10 12 14 16 18 0 1 0 2 0 3 0 4 0 5 0 6 0 7 0 8 0 9 0 2m/s 1.5m/s 1m/s 0m/s 0vuqvudvssfou "
"ncjfouufnqfsbuvsf ? $
0 2 4 6 8 10 12 14 16 18 0 1 0 2 0 3 0 4 0 5 0 6 0 7 0 8 0 9 0 2m/s 1.5m/s 1m/s 0m/s 0vuqvudvssfou "
"ncjfouufnqfsbuvsf ? $
0 2 4 6 8 10 12 14 16 18 0 1 0 2 0 3 0 4 0 5 0 6 0 7 0 8 0 9 0 2m/s 1.5m/s 1m/s 0m/s 0vuqvudvssfou "
"ncjfouufnqfsbuvsf ? $
0 2 4 6 8 10 12 14 16 18 0 1 0 2 0 3 0 4 0 5 0 6 0 7 0 8 0 9 0 2m/s 1.5m/s 1m/s 0m/s 0vuqvudvssfou "
"ncjfouufnqfsbuvsf ? $
0 2 4 6 8 10 12 14 16 18 0 1 0 2 0 3 0 4 0 5 0 6 0 7 0 8 0 9 0 2m/s 1.5m/s 1m/s 0m/s in 1.2v output in 2.5v output in 5.0v output in 1.8v output in 3.3v output 0vuqvudvssfouefsbujohczbncjfouufnqfsbuvsf jo7jo7 boe npvoufepoyynn1$#
pmh- ad16rpvwd pmh-ad16rpvwd
?all specifications are subject to change without notice.  0vuqvudvssfou "
"ncjfouufnqfsbuvsf ? $
0 0 1 0 2 0 3 0 4 0 5 0 6 0 7 0 8 0 9 0 2 4 6 8 in 1.2v output 2m/s 1.5m/s 1m/s 0m/s 0vuqvudvssfou "
"ncjfouufnqfsbuvsf ? $
0 0 1 0 2 0 3 0 4 0 5 0 6 0 7 0 8 0 9 0 2 4 6 8 in 2.5v output 8 in 5.0v output 0vuqvudvssfou "
"ncjfouufnqfsbuvsf ? $
0 0 1 0 2 0 3 0 4 0 5 0 6 0 7 0 8 0 9 0 2 4 6 8 in 1.8v output 2m/s 1.5m/s 1m/s 0m/s 0vuqvudvssfou "
"ncjfouufnqfsbuvsf ? $
0 0 1 0 2 0 3 0 4 0 5 0 6 0 7 0 8 0 9 0 100 2 4 6 0vuqvudvssfou "
"ncjfouufnqfsbuvsf ? $
0 0 1 0 2 0 3 0 4 0 5 0 6 0 7 0 8 0 9 0 2 4 6 8 in 3.3v output 2m/s 1.5m/s 1m/s 0m/s 2m/s 1.5m/s 1m/s 0m/s 2m/s 1.5m/s 1m/s 0m/s 0vuqvudvssfouefsbujohczbncjfouufnqfsbuvsf jo7jo7 boe npvoufepoyynn1$#
pmh- ad07rpvwd PMH-AD07RPVWD
pmh ?all specifications are subject to change without notice.  block diagram vin vo sense vout trim gnd gnd control remote on/off pmh- ad16rpvmd pmh- ad16rpvwd vin vout trim gnd gnd control remote on/off pmh- ad07rpvwd
pmh ?all specifications are subject to change without notice.  1-1. connection diagram lin: 1.0h cin. ex: 1000 f (aluminum electrolysis capacitor) + 2x100f (tantalum capacitor) co. ex: 10f (os capacitor) + 1f (ceramic capacitpr) 1-2. output voltage setting output voltage can be programmed within the output volt - age adjustable range by connecting a resistance or ap - plying voltage between trim terminal and gnd terminal. when nothing is connected externally, the output voltage is 0.75v. use the expressions below to calculate the value of resis - tance and the voltage to be applied. pmh-ad16rpvmd setting by external resistance expression setting by voltage application expression v trim=0.6993 ? 0.1690 vout ? 0.7513v pmh-ad16rpvwd setting by external resistance expression setting by voltage application expression v trim=0.7 ? 0.0667 vout ? 0.7525v pmh instruction manual 3fdpnnfoefedjsdvjudpoofdujpoejbhsbn dpoevdujwfqpmznfsuzqf 04dbqbdjups
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1.)"%317.% 1.)"%3178% vo on/off vin r trim co,ex load lin cin,ex 1 6 5 4 3 2 v v r trim= 21105 ? 5100 ? vout ? 0.7513 r trim= 10500 ? 1000 ? vout ? 0.7525 1-3. remote sensing by connecting vo sense terminal (3 pins) to the load terminal, the voltage drop in the system load line can be compensated for. the output voltage compensation value should be within 5% of the output voltage. (voltage drop in rdistribution should be within 5% of the output.) also, the output voltage at the load terminal (load) should be within the voltage adjustable range. when not using the remote sensing function, connect vo sense terminal ( 3 pins) and vo terminal (5 pins). current in the remote sensing line is small. in wiring, due attention should be paid to efect of noise. 1-4. remote on/of output on/of can be controlled by setting a switch (open collector system) between remote on/of terminal (2 pins) and gnd. on/of terminal in low level: output of on/of terminal open: output on low level on/of terminal voltage: von/of < 0.5v on/of terminal source current: lon/of-max. = 200a open on/of terminal maximum voltage: von/of-max. = 5.5v (m type), 14v (w type) allowable leakage current: lon/of-max. = 10a 1-5. over voltage protection this product is not equipped with a function for over volt - age protection. 1. pmh-ad16rpvmd, pmh-ad16rpvwd  (/%  7jo $poofdujpoejbhsbn  3fnpuf0o0gg  7p 3ejtusjcvujpo -0"% 3ejtusjcvujpo  5sjn  7p4fodf $poofdujpo ejbhsbn popgg  3fnpuf0o0gg
pmh ?all specifications are subject to change without notice. 8 2. PMH-AD07RPVWD 2-1. connection diagram lin: 1.0h cin. ex: 1000 f (aluminum electrolysis capacitor) + 2x100f (tantalum capacitor) co. ex: 10f (os capacitor) + 1f (ceramic capacitor) 2-2. output voltage setting output voltage can be programmed within the output volt - age adjustable range by connecting a resistance or ap - plying voltage between trim terminal and gnd terminal. when nothing is connected externally, the output voltage is 0.75v. use the expressions below to calculate the value of resis - tance and the voltage to be applied. setting by external resistance expression setting by voltage application expression v trim = 0.7 - 0.0667x(vout-0.7525) (v) 2-3. remote on/of output on/of can be controlled by setting a switch (open collector system) between remote on/of terminal (2 pins) and gnd. on/of terminal in low level: output of on/of terminal open: output on low level on/of terminal voltage: von/of < 0.5v on/of terminal source current: lon/of-max. = 200a open on/of terminal maximum voltage: von/of-max = 14v allowable leakage current: lon/of-max. = 10a 2-4. over voltage protection this product is not equipped with a function for over volt - age protection. 2-5. over current protection this product is equipped with an over current protection circuit, and if a current over the nominal current fows, the output voltage is lowered. by removing the over current of the load or shorted conditions, the output voltage automati - cally resumes. note that the load current value, in which the over current protection is activated, varies depending on the ambient temperature, input voltage, and set output voltage, etc. 2-6. over temperature protection this product is not equipped with a function for over tem - perature protection. vo on/of f r trim vin co,ex load lin cin,ex 1 5 4 3 2 v v 1.)"%3178% 3fdpnnfoefedjsdvjudpoofdujpoejbhsbn dpoevdujwfqpmznfsuzqf 04dbqbdjups
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r trim= 10500 ? 1000 ? vout ? 0.7525 $poofdujpoejbhsbn popgg  3fnpuf0o0gg 1-6. over current protection this product is equipped with an over current protection circuit, and if a current over the nominal current fows, the output voltage is lowered. by removing the over current of the load or shorted conditions, the output voltage automati - cally resumes. note that the load current value, in which the over current protection is activated, varies depending on the ambient temperature, input voltage, and set output voltage, etc. 1-7. over temperature protection this product is equipped with an over temperature protec - tion circuit.
pmh ?all specifications are subject to change without notice.  3. notes on mounting and handling the connection diagrams in these handling instructions represent the standard connection methods for this product. consult us for use with other connection meth - ods. to reduce ripple & noise voltage, connect a capacitor with 10 0 f or less. series connection or parallel connection is not appli - cable for this product. input fuse is not installed in this product. do not use this product in an overload condition. doing so can cause failure. cleaning is not applicable for this product. use low- residue or non-cleaning fux. notes on storage keep this product indoors with little tem - perature/humidity change and away from direct sunlight. note that if this product is kept in a hot and humid condition or in a condition with drastic temperature changes, it can cause condensation, performance deterioration, or solderability deterio - ration. this product uses multilevel boards. observe the handling instructions described below. other - wise, problems including pattern disconnection in refow may occur (jedec msl level 3). baking process should be applied when 696 hours or over (in 30c, 60% r.h.) has passed after un - packing and the indicator value is 30% or over. recommended baking conditions: 125 c, for 24 hours, 1 time only tray is not heat-resistant. baking should be processed after taking out products from the tray. recommended refow soldering conditions 4vsgbdfufnqfsbuvsfpgqbsut ? $
245 220 100 ? 140s 3fqpxujnf 1sfifbujohufnqfsbuvsf   ? $ ? $ gps ? t 4pmefsjohufnqfsbuvsf   ? $psmpxfs 4pmefsnfmujohufnqfsbuvsf  ? $psvqqfs xjuijo  t ? $ xjuijot 3fqpxgsfrvfodz  ujnfpomz 60s max 180 160


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