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  mitsumi cmos switching regulator (pwm controlled) MM3005~mm3010 cmos switching regulator (pwm controlled) monolithic ic MM3005~mm3010 outline this ic is a pwm controlled switching regulator developed using the cmos process. low ripple and high efficiency of 83% typ. (MM3005e) are achieved through pwm control. further, output voltage is high precision output ?.4%. features 1. ultra low consumption current 17.2? typ. (during operation) (MM3005e) 2. high efficiency 83% typ. (MM3005e) 3. high precision output voltage ?.4% 4. wide operating temperature range - 30?~+85? 5. output voltage 2~5.5v (0.1v can be set in 0.1v steps) package sot-25a (mini mold) applications 1. mobile phones, phs 2. portable md 3. other battery-operated portable equipment mitsumi block diagram MM3005
mitsumi cmos switching regulator (pwm controlled) MM3005~mm3010 mm3006 mm3007 mm3008
mitsumi cmos switching regulator (pwm controlled) MM3005~mm3010 pin assignment mm3009 mm3010 13 5 2 4 sot - 25a (top view) 1 on/off 2 v out 3 nc 4 v ss 5 cont 13 5 2 4 sot - 25a (top view) 1 on/off 2 v out 3 nc 4 v ss 5 ext MM3005 mm3006
mitsumi cmos switching regulator (pwm controlled) MM3005~mm3010 13 5 2 4 sot - 25a (top view) 13 5 2 4 sot - 25a (top view) mm3007 mm3008 13 5 2 4 sot - 25a (top view) 13 5 2 4 sot - 25a (top view) mm3009 mm3010 1 nc 2 v out 3 nc 4 v ss 5 c ont 1 nc 2 v out 3 nc 4 v ss 5 ext 1 v out 2 v dd 3 nc 4 v ss 5 c ont 1 v out 2 v dd 3 nc 4 v ss 5 ext absolute maximum ratings item symbol rating unit storage temperature t stg - 40~+125 c operating temperature t opr - 30~+85 c power supply voltage v dd max. - 0.3~+11 v allowable loss pd 150 mw v out pin voltage v out - 0.3~+11 v on/off pin voltage on/off - 0.3~+11 v cont pin voltage v cont - 0.3~+11 v cont pin current i cont 300 ma recommended operating conditions rank expand table ta=25c item symbol rating unit operating temperature t opr - 30~+85 c input voltage v in +0.9~+9 v MM3005a 2.0v?.4% MM3005b 2.5v?.4% MM3005c 2.7v?.4% MM3005d 2.8v?.4% MM3005e 3.0v?.4% MM3005f 3.3v?.4% MM3005g 3.6v?.4% MM3005h 5.0v?.4% MM3005j 5.2v?.4% MM3005k 5.4v?.4% * in addition to MM3005, mm3006 ~ mm3010 also have rank indications from a ~ k, as above.
mitsumi cmos switching regulator (pwm controlled) MM3005~mm3010 electrical characteristics (except where noted otherwise, ta=25?) item symbol measurement measuring circuit rank min. typ. max. unit circuit input voltage v in 19v operating start voltage v st1 1i out =1ma 0.9 v oscillation start voltage v st2 2 0.8 v operation hold voltage v hld 1i out =1ma 0.7 v a 11.6 19.4 b 14.3 23.9 c 15.5 25.9 d 16.1 26.8 e 17.2 28.7 consumption current 1 i ss1 v out = output voltage 0.95 f 19.1 31.8 ? g 22.4 37.3 h 38.5 64.1 j 43.9 73.1 2 k 45.0 74.9 l 13.2 22.8 a 3.1 6.2 b 3.2 6.3 c 3.2 6.4 d 3.2 6.4 e 3.2 6.4 consumption current 2 i ss2 v out = output voltage+0.5v f 3.3 6.5 ? g 3.3 6.5 h 3.5 6.9 j 3.5 6.9 k 3.5 6.9 l 3.1 6.2 a4571 b6198 c6198 d6198 e78 125 ma switching current i sw v cont =0.4v f 78 125 g78 125 h 114 182 j 114 182 k 114 182 l4571 switching transistor leak current i swo v out =v cont =9v 1 a input stability v out1 1 v in = output voltage 0.4 0.6 30 60 mv load stability v out2 1 i out =10?~i out (following) 1.25 30 60 mv output voltage v out 1t a= - 30~85c ?0 ppm/c temperature coefficient ta oscillation frequency fosc 2 v out = output voltage 0.95 42.5 50 57.5 khz maximum duty ratio maxduty 2 v out = output voltage 0.96 75 83 90 % soft start tss i out =1ma 3 6 12 ms MM3005, mm3007, mm3009 (it is l rank only mm3009.)
mitsumi cmos switching regulator (pwm controlled) MM3005~mm3010 mitsumi item symbol measurement measuring circuit rank min. typ. max. unit circuit a75 b79 c79 d79 e83 efficiency e ffi 1f83 % g83 h87 j87 k87 l75 consumption current while power off * isss 2 on/off pin=0v 0.5 ? on/off pin input voltage v sh 2 v out =output voltage 0.95 0.75 v v sl 2 v out =output voltage 0.95 0.3 v note 1: * consumption current when on/off and power off pin input voltage apply only to MM3005. note 2: if rank is not filled in, applies to all ranks. note 3: i out =output voltage/250 ? note 4: the v dd pin and v out pin are connected for the v dd /v out separated type. mm3006, mm3008, mm3010 electrical characteristics2 (except where noted otherwise, ta=25?) item symbol measurement measuring circuit rank min. typ. max. unit circuit input voltage v in 19v operating start voltage v st1 1i out =1ma 0.9 v oscillation start voltage v st2 2 0.8 v operation hold voltage v hld 1i out =1ma 0.7 v a 14.5 24.1 b 17.8 29.7 c 19.2 32 d2 0 33.3 consumption current 1 i ss1 v out =output voltage 0.95 e 21.4 35.7 ? f 23.7 39.5 g 28.8 48 h5 4 89.9 j 56.2 93.6 2 k 58.9 98.1 a 3.8 7.6 b 3.9 7.7 c 3.9 7.7 d 3.9 7.8 consumption current 2 i ss2 v out =output voltage+0.5v e 3.9 7.8 ? f4 7.9 g4 7.9 h 4.2 8.3 j 4.2 8.3 k 4.2 8.3
mitsumi cmos switching regulator (pwm controlled) MM3005~mm3010 item symbol measurement measuring circuit rank min. typ. max. unit circuit a - 1.9 - 2.9 b - 2.7 - 4 c - 2.7 - 4 d - 2.7 - 4 i exth vext=v out - 0.4v e - 3.5 - 5.3 ma f - 3.5 - 5.3 g - 3.5 - 5.3 h - 5.3 - 8 j - 5.3 - 8 ext pin output current k - 5.3 - 8 a 3.8 5.7 b 5.3 8 c 5.3 8 d 5.3 8 i extl vext=0.4v e7 10.5 ma f7 10.5 g7 10.5 h 10.7 16 j 10.7 16 k 10.7 16 input stability v out1 3 v in =output voltage 0.4~ 0.6 30 60 mv load stability v out2 3 i out =10?~i out (following) 1.25 30 60 mv output voltage temperature coefficient v out 3 ta= - 30~85c ?0 ppm/c ta oscillation frequency fosc 4 v out =output voltage 0.95 85 100 115 khz maximum duty ratio maxduty 4 v out =output voltage 0.96 75 83 90 % soft start tss i out =1ma 3 6 12 ms a76 b80 c80 d80 efficiency effi 3 e84 % f84 g84 h88 j88 k88 consumption current while power off isss 4 power off pin=0v 0.5 ? on/off pin input voltage v sh 4 v out output voltage 0.95 0.75 v v sl v out output voltage 0.95 0.3 notes: 1. the current consumption when powering down and input voltage at the on/off pin apply only to the mm3006. notes: 2. where the rank is omitted, the figure is common to all ranks. notes: 3. i out =output voltage 250 ? notes: 4. connect both v dd and v out pins in models with separate v dd and v out pins.
mitsumi cmos switching regulator (pwm controlled) MM3005~mm3010 mitsumi measuring circuit 1 2 3 4 note 1: coil: l=100? (mitsumi c5-k3l) transistor: sanyo 2sd1628 condenser: c=33? (tantal condenser) base resistor (rb) : 1.0k ? shot key barrier diode: rohm rb491d base resistor (cb) : 2200pf note 2: the cause of oscillation is due to set wiring and capacitance changes in capacitor caused by temperatures changes, so please take extra care in placing the wires.
mitsumi cmos switching regulator (pwm controlled) MM3005~mm3010 description of operation the MM3005 series are pulse width modulation type dc/dc converters. 1: pwm control uses load to change the duty ratio automatically from 0 ~ 83%. 2: a built-in soft start circuit softens the current inrush at start-up. 3: power off pin: stops or starts voltage rise operation. when the power off pin is at low level the internal circuits all stop operating and consumption current is greatly reduced. note that the power off pin structure is open and unstable, so please be sure not to use it open. further, do not impress voltage of 0.3 ~ 0.75v, as this causes consumption current to increase. when not using the power off pin, please connect it to the v out pin. application circuits power off pin operating condition h on l off open irregular when used as voltage drop dc-dc converter.
mitsumi cmos switching regulator (pwm controlled) MM3005~mm3010 mitsumi characteristics MM3005en output voltage3v typ. product 0.0 0.2 0.4 0.6 0.8 1.0 - 40 - 20 0 20 40 60 80 100 1.2 i out =1ma ta ( c) v st1 (v) 0.0 0.2 0.4 0.6 0.8 1.0 ta ( c) v st2 (v) - 40 - 20 0 20 40 60 80 100 starting output voltage - temperature starting oscillator voltage - temperature 0 10 20 30 40 50 v out =output voltage 0.95 ta ( c) i ss1 ( a) - 40 - 20 0 20 40 60 80 100 0 1 2 3 4 5 v out =output voltage+0.5 ta ( c) i ss2 ( a) - 40 - 20 0 20 40 60 80 100 supply current 1 - temperature supply current 2 - temperature 0.0 0.2 0.4 0.6 0.8 1.0 on/off pin=0v ta ( c) i sss ( a) - 40 - 20 0 20 40 60 80 100 supply current (off) - temperature 0 25 50 75 100 125 150 175 200 255 v cont =0.4v ta ( c) i sw (ma) - 40 - 20 0 20 40 60 80 100 switch current - temperature note: these are typical characteristics.
mitsumi cmos switching regulator (pwm controlled) MM3005~mm3010 0.0 0.2 0.4 0.6 0.8 1.0 v out =v cont =10v ta ( c) i swq ( a) - 40 - 20 0 20 40 60 80 100 30 35 40 45 50 55 60 65 70 v out =output voltage 0.95 ta ( c) f osc (khz) - 40 - 20 0 20 40 60 80 100 switch transistor leak current - temperature oscillator frequency - temperature 50 60 70 80 90 100 v out =output voltage 0.95 ta ( c) maxduty (%) - 40 - 20 0 20 40 60 80 100 0.0 0.2 0.4 0.6 0.8 1.0 v out =output voltage 0.95 the oscillation waveform of c ont pin is measured. ta ( c) v sh (v) - 40 - 20 0 20 40 60 80 100 maximum duty cycle - temperature on/off pin input voltage (v sh ) - temperature 0.0 0.2 0.4 0.6 0.8 1.0 v out =output voltage 0.95 the oscillation stop of c ont pin is measured. ta ( c) v sl (v) - 40 - 20 0 20 40 60 80 100 on/off pin input voltage (v sl ) - temperature 0 2 4 6 8 10 12 14 i out =1ma ta ( c) t ss (ms) - 40 - 20 0 20 40 60 80 100 soft start time - temperature note: these are typical characteristics.
mitsumi cmos switching regulator (pwm controlled) MM3005~mm3010 0 50 40 30 20 10 ta=25 c v out (v) i ss1 , 2 ( a) 0246810 0 250 200 150 100 50 ta=25 c, v cont =0.4v v out (v) i sw ( ma) 05 4 3 2 1 supply current 1, 2 - v out switch current - v out 30 40 50 60 70 ta=25 c v out (v) f osc (khz) 05 4 3 2 1 oscillator frequency - v out note: these are typical characteristics.
mitsumi cmos switching regulator (pwm controlled) MM3005~mm3010 v in =1.8v t (10 s/div) output voltage v out (20mv/div) c ont voltage v cont (1v/div) v in =1.8v t (10 s/div) output voltage v out (20mv/div) c ont voltage v cont (1v/div) 1. i out =200? ripple voltage characteristic (MM3005en) 2. i out =10ma v in =1.8v t (10 s/div) output voltage v out (20mv/div) c ont voltage v cont (1v/div) 3. i out =60ma note: these are typical characteristics.
mitsumi cmos switching regulator (pwm controlled) MM3005~mm3010 i out =1ma t (1ms/div) input voltage v in (1v/div) output voltage v out (1v/div) i out =60ma t (1ms/div) input voltage v in (1v/div) output voltage v out (1v/div) 1. v in : 0v 1.8v i out =1ma, v in =1.8v t (1ms/div) input voltage v on/off (1v/div) output voltage v out (1v/div) i out =60ma, v in =1.8v t (1ms/div) input voltage v on/off (1v/div) output voltage v out (1v/div) 2. v on/off : 0v 3.0v i out : 100 a 50ma, v in =1.8v t (200 s/div) load current i out (20ma/div) output voltage v out (50mv/div) 3. load regulation i out : 50ma 100 a, v in =1.8v t (5ms/div) load current i out (20ma/div) output voltage v out (50mv/div) t ransient response (MM3005en) note: these are typical characteristics.
mitsumi cmos switching regulator (pwm controlled) MM3005~mm3010 v in : 1.8v 2.4v, i out =50ma t (100 s/div) input voltage v in (500mv/div) output voltage v out (50mv/div) v in: 2.4v 1.8v, i out =50ma t (200 s/div) input voltage v in (500mv/div) output voltage v out (50mv/div) 4. line regulation 0.0 0.1 0.2 0.3 0.4 0.5 0.6 0.7 0.8 0.9 1.0 010 9 8 7 6 5 4 3 2 1 output current i out (ma) input voltage v in (v) vst1 vhld 0.0 0.1 0.2 0.3 0.4 0.5 0.6 0.7 0.8 0.9 output current i out (ma) 1.0 010 9 8 7 6 5 4 3 2 1 input voltage v in (v) vst1 vhld MM3005en output current - starting output voltage and holding output voltage dependence characteristic input voltage - supply current dependency charavteristic MM3005h 0 50 100 150 200 250 300 350 400 450 input voltage v in (v) 500 0.0 5.0 4.5 4.0 3.5 3.0 2.5 2.0 1.5 1.0 0.5 input current i in ( a) v out =2v v out =3v v out =5v MM3005 note: these are typical characteristics.
mitsumi cmos switching regulator (pwm controlled) MM3005~mm3010 2.95 2.96 2.97 2.98 2.99 3.00 3.01 3.02 3.03 3.04 3.05 0.01 0.1 1 10 100 1000 output current i out (ma) output voltage v out (v) v in = 0.9v v in = 1.2v v in = 1.8v v in = 2.4v 50 55 60 65 70 75 80 85 90 95 100 0.01 0.1 1 10 100 1000 output current i out ( c) efficiency (%) v in = 0.9v v in = 1.2v v in = 1.8v v in = 2.4v output current - output voltage (1) MM3005en (c5-k3l : 47?) (2) MM3005en (c5-k3l : 100?) (3) MM3005en (c5-k3l : 150?) output current - efficiency 2.95 2.96 2.97 2.98 2.99 3.00 3.01 3.02 3.03 3.04 3.05 0.01 0.1 1 10 100 1000 output current i out (ma) output voltage v out (v) v in = 0.9v v in = 1.2v v in = 1.8v v in = 2.4v 50 55 60 65 70 75 80 85 90 95 100 0.01 0.1 1 10 100 1000 output current i out ( c) efficiency (%) v in = 0.9v v in = 1.2v v in = 1.8v v in = 2.4v output current - output voltage output current - efficiency 2.95 2.96 2.97 2.98 2.99 3.00 3.01 3.02 3.03 3.04 3.05 0.01 0.1 1 10 100 1000 output current i out (ma) output voltage v out (v) v in = 0.9v v in = 1.2v v in = 1.8v v in = 2.4v output current - output voltage 50 55 60 65 70 75 80 85 90 95 100 0.01 0.1 1 10 100 1000 output current i out ( c) efficiency (%) v in = 0.9v v in = 1.2v v in = 1.8v v in = 2.4v output current - efficiency reference data note: these are typical characteristics.
mitsumi cmos switching regulator (pwm controlled) MM3005~mm3010 4.90 4.92 4.94 4.96 4.98 5.00 5.02 5.04 5.06 5.08 5.10 0.01 0.1 1 10 100 1000 output current i out (ma) output voltage v out (v) v in = 0.9v v in = 1.8v v in = 3.0v v in = 4.0v 50 55 60 65 70 75 80 85 90 95 100 0.01 0.1 1 10 100 1000 output current i out (ma) efficiency (%) v in = 0.9v v in = 1.8v v in = 3.0v v in = 4.0v output current - output voltage (4) MM3005hn (c5-k3l : 47?) (5) MM3005hn (c5-k3l : 100?) (6) MM3005hn (c5-k3l : 150?) output current - efficiency 4.90 4.92 4.94 4.96 4.98 5.00 5.02 5.04 5.06 5.08 5.10 0.01 0.1 1 10 100 1000 output current i out (ma) output voltage v out (v) v in = 0.9v v in = 1.8v v in =3.0 v v in = 4.0v 55 50 60 65 70 75 80 85 90 95 100 0.01 0.1 1 10 100 1000 output current i out (ma) efficiency (%) v in = 0.9v v in = 1.8v v in = 3.0v v in = 4.0v output current - output voltage output current - efficiency 4.90 4.92 4.94 4.96 4.98 5.00 5.02 5.04 5.06 5.08 output current i out (ma) 5.10 0.01 0.1 1 10 100 1000 output voltage v out (v) v in = 0.9v v in = 1.8v v in = 3.0v v in = 4.0v output current - output voltage 50 55 60 65 70 75 80 85 90 95 100 0.01 0.1 1 10 100 1000 output current i out (ma) efficiency (%) v in = 0.9v v in = 1.8v v in = 3.0v v in = 4.0v output current - efficiency note: these are typical characteristics.
mitsumi cmos switching regulator (pwm controlled) MM3005~mm3010 0 10 20 30 40 50 60 70 80 90 100 0.01 0.1 1 10 100 1000 output current i out (ma) ripple voltage vr (mv) v in = 0.9v v in = 1.8v v in =2.4 v output current - ripple voltage (7) MM3005en (c5-k3l : 47?, c out : 33?) (8) MM3005en (c5-k3l : 100?, c out : 33?) (9) MM3005en (c5-k3l : 150?, c out : 33?) 0 10 20 30 40 50 60 70 80 90 100 0.01 0.1 1 10 100 1000 output current i out (ma) ripple voltage vr (mv) v in = 0.9v v in = 1.8v v in =2.4 v output current - ripple voltage 0 10 20 30 40 50 60 70 80 90 output current i out (ma) 100 0.01 0.1 1 10 100 1000 ripple voltage vr (mv) v in = 0.9v v in = 1.8v v in =2.4 v output current - ripple voltage note: these are typical characteristics. 0 10 20 30 40 50 60 70 80 90 100 0.01 0.1 1 10 100 1000 output current i out (ma) ripple voltage vr (mv) v in = 0.9v v in = 3.0v v in =4.0 v output current - ripple voltage (10) MM3005hn (c5-k3l : 47?, c out : 33?) (11) MM3005hn (c5-k3l : 100?, c out : 33?) (12) MM3005hn (c5-k3l : 150?, c out : 33?) 0 10 20 30 40 50 60 70 80 90 100 0.01 0.1 1 10 100 1000 output current i out (ma) ripple voltage vr (mv) v in = 0.9v v in = 3.0v v in =4.0 v output current - ripple voltage 0 10 20 30 40 50 60 70 80 90 100 0.01 0.1 1 10 100 1000 output current i out (ma) ripple voltage vr (mv) v in = 0.9v v in = 3.0v v in =4.0 v output current - ripple voltage


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