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1/49 XCM519 series 600ma synchronous step-down dc/dc converter + low voltage input ldo general description the XCM519 series is a multi combination module ic which comprises of a 600ma driver transistor built-in synchronous step?down dc/dc converter and a low voltage input ldo regulator. the device is housed in small usp-12b01 package which is ideally suited for space conscious applications. battery operated portable products require high efficiency so that a dual dc/dc converter is often used. the xcm5 19 can replace this dual dc/dc to elim inate one inductor and reduce output noise. the dc/dc converter and the ldo regulator blocks are isolated in the package so that noise interference from the dc/dc to the ldo regulator is minimal. a low output voltage and low on-resistance ldo regulator is adde d in series to the dc/dc output so that one another low output voltage is created with a high efficiency and low noise. with comparison to the dual dc/dc solution, one inductor can be eliminated which results in parts reduction and board space saving. applications ? mobile phones, smart phones ? bluetooth equipment ? portable communication modems ? portable game consoles ( top view ) * the dashed lines denot e the connection using through-holes at the backside of the pc board. etr2421-003 ? typical application circuit typical performance characteristics dropout voltage vs. output current vrout=1.2v 0 50 100 150 200 250 300 0 100 200 300 400 output current: iout(ma) dropout voltage: vdif(mv) vbias=3.0v vbias=3.3v vbias=3.6v vbias=4.2v vbias=5.0v ta=25 features 2/49 XCM519 series ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? pin no . XCM519 xc9235/xc9236 xc6601 1 dcout v out D 2 agnd agnd D 3 en1 ce D 4 v in2 D v in 5 v ss2 D v ss 6 vrout D v out 7 en2 D ce 8 nc D D 9 v bias D v bias 10 v in1 v in D 11 pgnd pgnd D 12 lx lx D ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? pin no XCM519 functions 1 dcout dc/dc block: output voltage 2 agnd dc/dc block: analog ground 3 en1 dc/dc block: chip enable 4 v in2 voltage regulator block: power input 5 v ss2 voltage regulator block: ground 6 vrout voltage regulator block: output 7 en2 voltage regulator block: enable 8 nc no connection 9 v bias voltage regulator block: power input 10 v in1 dc/dc block: power input 11 pgnd dc/dc block: power ground 12 lx dc/dc block: switching note: * a dissipation pad on the reverse side of the package should be electrically isolated. ? *1: electrical potential of the xc 9235/xc9236?s dissipation pad should be v ss level. *2: electrical potential of the xc 6601?s dissipation pad should be v ss level. care must be taken for an electrical potential of each diss ipation pad so as to enhance mounting strength and heat release when the pad needs to be connected to the circuit. pin assignment pin configuratioin (top view) (bottom view) 3/49 x cm519 series ? ? ? ? ordering information XCM519a ????? dc/dc block pwm fixed control XCM519b ????? dc/dc block pwm/pfm automatic switching control ? designator ? dc/dc block voltage regulator block ? ? oscillation frequency ? c l auto discharge soft start pull-down a 1.2m not available standard not available b 3.0m not available standard not available c 1.2m available high speed not available d 3.0m available high speed not available ? ? ? ? ? designator ?? ? ?? dcout vrout 01 1.8v 1.2v 02 1.8v 1.5v 03 1.5v 1.2v 04 1.8v 1.0v 05 1.5v 1.0v ? ? designator description symbol description ? oscillation frequency and options see the chart below ? ? output voltage internally set sequential number relating to output voltage (see the chart below) ? package d usp-12b01 ? device orientation r embossed tape, standard feed product classification *this series are semi-custom products. for other combinations of output voltages pleas e consult with your torex sales contact. *when the dcout pin is connected to v in2 , dcout pin output voltage can be fixed in the range of 1.0v ? 3.0v. 4/49 XCM519 series ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ta = 2 5 ? (*1) i vrout =less than pd / (v in2 -v rout ) ? parameter symbol ratings units v in1 voltage v in1 - 0.3 ? 6.5 v lx voltage v lx - 0.3 ? v in1 + 0.3 or 6.5 v dcout voltage v dcout - 0.3 ? 6.5 v en1 voltage v en1 - 0.3 ? 6.5 v lx current i lx 1500 ma v bias voltage v bias v ss - 0.3 ? 7.0 v v in2 voltage v in2 v ss - 0.3 ? 7.0 v vrout current i vrout 700 (*1) ma v ss - 0.3 ? v bias + 0.3 vrout voltage v rout v ss - 0.3 ? v in2 + 0.3 v en2 voltage v en2 v ss - 0.3 ? 6.5 v power dissipation (ta=25 ? ) usp-12b01 pd 150 mw junction temperature tj 125 ? operating temperature range topr -40 ? +85 ? storage temperature range tstg -55 ? +125 ? r2 r1 error amp. vref with soft start, ce phase compensation pwm/pfm selector current feedback current limit pwm comparator logic synch buffer drive r3 r4 uvlo uvlo cmp ramp wave generator osc lx ce/mode control logic ce/ vshort ce r2 r1 error amp. vref with soft start, ce phase compensation pwm/pfm selector current feedback current limit pwm comparator logic synch buffer drive r3 r4 uvlo uvlo cmp ramp wave generator osc lx v ss v in v out ce/mode control logic vshort xc9235a/xc9236a xc9235b/xc9236b (cl?C ???` v ss v in v out block diagrams maximum absolute ratings available with c l discharge, high speed soft-start * xc9235 control scheme is a fixed pwm because that the ?ce/mode control logic? outputs a low level signal to the ?pwm/pfm sele ctor?. * xc9236 control scheme is an auto pwm/pfm switching because the ?ce/mode control logic? outputs a high level signal to the ?pw m/pfm selector?. *diodes inside the circuit are an esd protection diode and a parasitic diode. xc6601b (without pull-down) 5/49 x cm519 series electrical characteristics ? XCM519xa (dc/dc block) v dcout =1.8v, f osc =1.2mhz, ta=25 ? test conditions: unless otherwise stated, v in = 5.0v, v dcout(e) = setting voltage note: *1: including hysteresis width of operating voltage. *2: effi = { ( output voltage output current ) ? ? ( input voltage input current) } 100 *3: on resistance ( )= (v in - lx pin measurement voltage) ? ? 100ma *4: design value *5: when temperature is high, a current of approximately 10 a (maximum) may leak. *6: time until it short-circuits dcout with gnd via 1 of resistor from an operational state and is set to lx=0v from current limit pulse generating. *7: v dcout (e) +1.2v<2.7v, v in =2.7v. *8: when the difference between the input and the output is small, some cycles may be skipped completely before current maximiz es. if current is further pulled from this state, output vo ltage will decrease because of p-ch driver on resistance. *9: current limit denotes the level of detection at peak of coil current. *10: "h" 1 v in ? v in - 1.2v, "l" 1 + 0.1v ? - 0.1v *11: XCM519a series exclude i pfm and maxi pfm because those are only for the pfm control?s functions. * the electrical characteri stics above are when the other channel is in stop mode. parameter symbol conditions min. typ. max. units circuit output voltage v dcout when connected to external components, v in1 = v en1 =5.0v, i out1 =30ma 1.764 1.800 1.836 v ? operating voltage range v in1 ? 2.7 - 6.0 v ? maximum output current i out1max when connected to external components, v in1 =dcout(e)+2.0v, v en1 =1.0v (*8) ? 600 - - ma ? uvlo voltage v uvlo v en1 =v in1, dcout=0v, voltage which lx pin holding ?l? level (*1, *10) ? 1.00 1.40 1.78 v ? (XCM519aa) - 22 50 supply current i dd v in1 =v en1 =5.0v, dcout=dcout(e)1.1v (XCM519ba) - 15 33 ? stand-by current i stb v in1 =5.0v, v en1 =0v, dcout=dcout(e) 1.1v - 0 1.0 a ? oscillation frequency f osc when connected to external components, v in1 = dcout(e) +2.0v,v en1 =1.0v, i out1 =100ma (*11) 1020 1200 1380 khz ? pfm switching current ? when connected to external components, v in1 =v dcout(e) +2.0v, v en1 =v in1 , i out1 =1ma (*11) 120 160 200 ma ? pfm duty limit ? d limit_pfm v en1 =v in1 =(c-1), i out1 =1ma (*11) - 200 - % ? maximum duty ratio d max v in1 = v en1 =5.0v, dcout=dcout(e) 0.9v 100 - - % ? minimum duty ratio d min v in1 = v en1 =5.0v, dcout=dcout(e) 1.1v - - 0 % ? efficiency (*2) effi when connected to external components, v en1 =v in1 1 dcout(e) +1.2v (*7) , i out1 =100ma - 92 - % ? lx sw "h" on resistance 1 r lxh v in1 = v en1 =5.0v, dcout =0v,i lx =100ma (*3) - 0.35 0.55 ? ? lx sw "h" on resistance 2 r lxh v in1 = v en1 =3.6v, dcout =0v,i lx =100ma (*3) - 0.42 0.67 ? ? lx sw "l" on resistance 1 r lxl v in1 = v en1 =5.0v (*4) - 0.45 0.66 ? lx sw "l" on resistance 2 r lxl v in1 = v en1 =3.6v (*4) - 0.52 0.77 ? lx sw "h" leak current (*5) i leakh v in1 = dcout =5.0v, v en1 =0v, v lx =0v - 0.01 1.0 a ? lx sw "l" leak current (*5) i leakl v in1 = dcout =5.0v, v en1 =0v, v lx =5.0v - 0.01 1.0 a ? current limit (*9) i lim v in1 =v en1 =5.0v, dcout = dcout(e) 0.9v 900 1050 1350 ma ? output voltage temperature characteristics dcout / (dcout ~ topr) i out1 =30ma -40 ?? topr ? 85 ? ? - 100 - ppm/ ? ? en1 "h" level voltage v en1h dcout=0v, applied voltage to v en, voltage changes lx to ?h? level (*10) 0.65 - 6.0 v ? en1 "l" level voltage v en1l dcout=0v, applied voltage to v en, voltage changes lx to ?l? level (*10) v ss - 0.25 v ? en1 "h" current i en1h v in1 =v en1 =5.0v, dcout=0v - 0.1 - 0.1 a ? ? en1 "l" current i en1l v in1 =5.0v, v en1 =0v, dcout=0v - 0.1 - 0.1 a ? ? soft start time t ss when connected to external components, v en1 =0v v in1 , i out1 =1ma ? 0.5 1.0 2.5 ms ? latch time t lat v in = v en =5.0v, dcout=0.8 dcout(e) short lx at 1 ? resistance (*6) ? 1.0 - 20.0 ms ? short protection threshold voltage ? v short sweeping dcout, v in1 =v en1 = 5.0v, short lx at 1 ? resistance, dcout voltage which lx becomes ?l? level within 1ms ? 0.675 0.900 1.125 v ? 6/49 XCM519 series electrical characteristics (continued) ? XCM519xb 1ch (dc/dc block) v dcout =1.8v, f osc =3.0mhz, ta=25 test conditions: unless otherwise stated, v in1 =5.0v, v dcout(e) = nominal voltage note: *1: including hysteresis width of operating voltage. *2: effi = { ( output voltage output current ) ? ? ( input voltage input current) } 100 *3: on resistance ( )= (v in - lx pin measurement voltage) ? ? 100ma *4: design value *5: when temperature is high, a current of approximately 10 a (maximum) may leak. *6: time until it short-circuits dcout with gnd via 1 of resistor from an operational state and is set to lx=0v from current limit pulse generating. *7: v dcout (e) +1.2v<2.7v, v in =2.7v. *8: when the difference between the input and the output is small, some cycles may be skipped completely before current maximiz es. if current is further pulled from this state, output vo ltage will decrease because of p-ch driver on resistance. *9: current limit denotes the level of detection at peak of coil current. *10: "h" 1 v in ? v in - 1.2v, "l" 1 + 0.1v ? - 0.1v *11: XCM519a series exclude i pfm and d limit_pfm because those are only for the pfm control?s functions. * the electrical characteri stics above are when the other channel is in stop mode. parameter symbol conditions min. typ. max. units circuit output voltage v dcout when connected to external components, v in1 = v en1 =5.0v, i out1 =30ma 1.764 1.800 1.836 v ? operating voltage range v in1 ? 2.7 - 6.0 v ? maximum output current i out1max when connected to external components, v in1 =v dcout(e) +2.0v, v en1 =1.0v (*8) ? 600 - - ma ? uvlo voltage v uvlo v en1 =v in1, dcout=0v, voltage which lx pin holding ?l? level (*1, *10) ? 1.00 1.40 1.78 v ? (XCM519ab) - 46 65 supply current i dd v in1 =v en1 =5.0v, dcout= ? e 1.1v (XCM519bb) - 21 35 ? stand-by current i stb v in1 =5.0v, v en1 =0v, dcout= ? e 1.1v - 0 1.0 a ? oscillation frequency f osc when connected to external components, v in1 = ? e +2.0v,v en1 =1.0v, i out1 =100ma 2550 3000 3450 khz ? pfm switching current i pfm when connected to external components, v in1 = ? e +2.0v, v en1 =v in1 , i out1 =1ma (*11) 170 220 270 ma ? pfm duty limit d limit_pfm v en1 =v in1 =(c-1) i out1 =1ma (*11) - 200 300 % ? maximum duty ratio d max v in1 =v en1 =5.0v, dcout= ? e 0.9v 100 - - % ? minimum duty ratio d min v in1 =v en1 =5.0v, dcout= ? e 1.1v - - 0 % ? efficiency effi when connected to external components, v en1 =v in1 1 ? e +1.2v, i out1 =100ma ? - 86 - % ? lx sw "h" on resistance 1 r lxh v in1 = v en1 =5.0v, dcout=0v,i lx =100ma (*3) - 0.35 0.55 ? ? lx sw "h" on resistance 2 r lxh v in1 = v en1 =3.6v, dcout=0v,i lx =100ma (*3) - 0.42 0.67 ? ? lx sw "l" on resistance 1 r lxl v in1 = v en1 =5.0v (*4) - 0.45 0.66 ? lx sw "l" on resistance 2 r lxl v in1 = v en1 =3.6v (*4) - 0.52 0.77 ? lx sw "h" leak current (*5) i leakh v in1 = dcout=5.0v, v en1 =0v, v lx =0v - 0.01 1.0 a ? ? lx sw "l" leak current (*5) i leakl v in1 = dcout=5.0v, v en1 =0v, v lx =5.0v - 0.01 1.0 a ? ? current limit (*9) ? v in1 =v en1 =5.0v, dcout= ? e 0.9v 900 1050 1350 ma ? output voltage temperature characteristics ? ? ? ? ~ ;679 e ? i out1 =30ma -40 ?? topr ? 85 ? - 100 - ppm/ ? ? en1 "h" level voltage v en1h dcout=0v, applied voltage to v en, voltage changes lx to ?h? level (*10) 0.65 - 6.0 v ? en1 "l" level voltage v en1l dcout=0v, applied voltage to v en, voltage changes lx to ?l? level (*10) v ss - 0.25 v ? en1 "h" current i en1h v in1 =v en1 =5.0v, dcout=0v - 0.1 - 0.1 a ? ? en1 "l" current i en1l v in1 =5.0v, v en1 =0v, dcout=0v - 0.1 - 0.1 a ? ? soft start time t ss when connected to external components, v en1 =0v v in1 , i out1 =1ma 0.5 0.9 2.5 ms ? latch time t lat v in1 =v en1 =5.0v, dcout=0.8 ? e short lx at 1 ? resistance (*6) 1.0 - 20 ms ? short protection threshold voltage v short sweeping dcout, v in1 =v en1 =5.0v, short lx at 1 ? resistance, dcout voltage which lx becomes ?l? level within 1ms 0.675 0.900 1.125 v ? 7/49 x cm519 series electrical characteristics (continued) XCM519xc 1ch (dc/dc block) v dcout =1.8v, f osc =1.2mhz, ta=25 test conditions: unless otherwise stated, v in1 =5.0v, v dcout(e )= nominal voltage note: *1: including hysteresis width of operating voltage. *2: effi = { ( output voltage output current ) ? ? ( input voltage input current) } 100 *3: on resistance ( )= (v in - lx pin measurement voltage) ? ? 100ma *4: design value *5: when temperature is high, a current of approximately 10 a (maximum) may leak. *6: time until it short-circuits dcout with gnd via 1 of resistor from an operational state and is set to lx=0v from current limit pulse generating. *7: v dcout (e) +1.2v<2.7v, v in =2.7v. *8: when the difference between the input and the output is small, some cycles may be skipped completely before current maximiz es. if current is further pulled from this state, output vo ltage will decrease because of p-ch driver on resistance. *9: current limit denotes the level of detection at peak of coil current. *10: "h" 1 v in ? v in - 1.2v, "l" 1 + 0.1v ? - 0.1v *11: XCM519a series exclude i pfm and d limt_pfm because those are only for the pfm control?s functions. * the electrical characteristics above ar e when the other channel is in stop mode. parameter symbol conditions min. typ. max. units circuit output voltage ? v dcout when connected to external components, v in1 =v en1 =5.0v,i out1 =30ma 1.764 1.800 1.836 v ? operating voltage range ? v in1 ? 2.7 - 6.0 v ? maximum output current i out1max when connected to external components, v in1 =dcout(e)v+2.0v,v en1 =1.0v (*8) 600 - - ma ? voltage ? v uvlo v en1 =v in1 | dcout=0v, voltage which lx pin holding ?l? level (*1, *10) ? 1.00 1.40 1.78 v ? ? ? |