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  r1154x series 150ma voltage regulator (wide input voltage range) no.ea-100-061107 1 outline the r1154x series are cmos-based voltage regulator (v r) ics. the r1154xxxxxx has features of high output voltage accuracy and ultra-low supply current. a peak curr ent limit circuit, a short current limit circuit, and a thermal shutdown circuit are built in the r1154x series. the regulator output voltage is fixed in the r1154xxxxb, while adjustable type is the r1154x001c. output voltage accuracy is 2.0%. since the packages for these ics are the sot-89-5 and sot-23-5, high density mounting of the ics on boards is possible. features ? supply current ............................................................. typ. 5.0 a ? standby current ........................................................... typ. 0.1 a ? output voltage accuracy.............................................. 2.0% ? wide output volt age range ........................................ 2.5v to 12.0v(xxxb) adjustable in the range of 2.5v to v in or 24.0v (001c) ? input voltage ................................................................ max. 24.0v ? output current ............................................................. min. 140ma (v in = v out +2.0v, 2.5v output type) min. 150ma (v in = v out +2.0v, 3.0v output type) ? package ....................................................................... sot-89 -5, sot-23-5 ? built-in peak current limit circuit ? short current limit circuit ? thermal shutdown circuit applications ? power source for home appliances such as refrigerat ors, rice cookers, electronic water warmers, etc. ? power source for car audio equipment, ca r navigation system, and etc system. ? power source for notebook pcs, digital tvs, cordless phones, and lan system. ? power source for copiers, printers, facsimiles, and scanners.
r1154x 2 block diagrams r1154xxxxb r1154xxxxc fixed output voltage ad justable output type v out gnd v in ce vref thermal protection short protection + - peak current protection v out gnd v in ce vref thermal protection short protection + - peak current protection adj selection guide the output voltage can be selected at the user?s request. the selection can be made with designating the part number as follows; r1154xxxx x-xx -x part number a b c d e code contents a designation of package type; h: sot-89-5 n: sot-23-5 b designation of output voltage: adjustable: 001 (reference voltage = 2.5v) fixed: stepwise setting in the range from 2.5v to 12.0v c designation of output type; b: fixed output type c: adjustable output type d designation of taping type;t1, t2 (sot-89-5), tr (sot-23-5) (refer to taping specifications) e designation of composition of plating: ? f: lead free plating (sot-23-5,sot-89-5)
r1154x 3 pin configuration sot-89-5 sot-23-5 5 4 1 2 3 12 3 54 (mark side) pin description ? sot-89-5 pin no symbol description 1 v out voltage regulator output pin 2 gnd ground pin 3 ce chip enable pin 4 nc/adj b version: no connection c version: reference voltage of adjustable output pin 5 v dd input pin ? sot-23-5 pin no symbol description 1 v out voltage regulator output pin 2 gnd ground pin 3 v dd input pin 4 nc/adj b version: no connection c version: reference voltage of adjustable output pin 5 ce chip enable pin
r1154x 4 absolute maximum ratings symbol item rating unit v in input voltage 26.0 v v ce input voltage (ce input pin) -0.3 to v in +0.3 v v out output voltage -0.3 to v in +0.3 v v adj output voltage (adj pin) -0.3 to v in +0.3 v i out output current 250 ma power dissipation (sot-23-5) * note1 420 p d power dissipation (sot-89-5) * note1 900 mv topt operating temperature -40 to +105 c tstg storage temperature -55 to +125 c *note1) for power dissipation please refer to package information to be described. electrical characteristics ? r1154xxxxb topt = 25 c symbol item conditions min. typ. max. unit v in input voltage 24 v v out output voltage v in = v out +2.0v 0.98 1.02 v i out output current v in ? v out = 2.0v refer to the output current table i ss supply current v in = v ce v in -v out =2.0v 5 10 a istandby standby current v in = 24v, v ce = 0v 0.1 1.0 a ? v out / ? i out load regulation v in ? v out = 2.0v 1ma < = < = ? v out / ? v in line regulation i out = 20ma v out +1v < = < = = 20ma refer to the dropout voltage table ? v out / ? topt output voltage temperature coefficient v in ? v out = 2.0v i out = 20ma ? 40c < = < = 100 ppm/ c i lim short current limit v out = 0v 45 ma v ceh ce ?h? input voltage 2.1 v in v v cel ce ?l? input voltage 0.0 0.3 v t sd thermal shutdown temperature junction temperature 150 c t sr thermal shutdown released temperature junction temperature 125 c
r1154x 5 ? r1154xxxxc topt = 25 c symbol item conditions min. typ. max. unit v in input voltage 24 v v out output voltage v in = v out +2.0v,v out = v adj i out = 20ma 2.45 2.50 2.55 v i out output current v in = v out +2.0v,v out = v adj 140 ma i ss supply current v in = v out +2.0v,v out = v adj v ce = v in 5 10 a istandby standby current v in = 24v, v out = v adj v ce = 0v 0.1 1.0 a ? v out / ? i out load regulation v in = v out +2.0v,v out = v adj 1ma < = < = ? v out / ? v in line regulation v out +1v < = < = = v adj ,i out = 20ma 0.05 0.20 %/v v dif dropout voltage v out = v adj ,i out = 20ma 0.20 0.40 v ? v out / ? topt output voltage temperature coefficient v in = v out +2.0v,v out = v adj i out = 20ma -40c < = < = 100 ppm/ c i lim short current limit v out = v adj = 0v 45 ma v ceh ce ?h? input voltage 2.1 v in v v cel ce ?l? input voltage 0.0 0.3 v t sd thermal shutdown temperature junction temperature 150 c t sr thermal shutdown released temperature junction temperature 125 c
r1154x 6 ? output current (topt=25c) output current (ma) output voltage v out (v) min. 2.5 < = v out < = < = v out < = ? load regulation (topt=25c) load regulation (mv) output voltage v out (v) typ. max. 2.5 < = v out < = 3.0 20 50 3.1 < = v out < = 5.0 30 75 5.1 < = v out < = 12.0 40 115 ? dropout voltage (topt=25c) dropout voltage (v) output voltage v out (v) typ. max. 2.5 < = v out < = 7.0 0.20 0.40 7.1 < = v out < = 10.0 0.25 0.50 10.1 < = v out < = 12.0 0.30 0.55 typical applications ce c in in out c out v in v out gnd ce c in in out c out v in adj v out gnd fixed output voltage type adjustable type
r1154x 7 test circuits ce c in in out i out c out v dd v out gnd r1154xxxxb series ce c in in out i ss c out v dd v out gnd r1154xxxxb series r1154xxxxb standard test circuit r1154xxxxb supply current test circuit ce in out i out c out v dd v out gnd r1154xxxxb series p .g. ce c in in out c out i1 i2 v dd v out gnd r1154xxxxb series r1154xxxxb input transient response test circuit r1154xxxxb load regulation test circuit ce c in in out i out c out v dd v out adj gnd r1154x001c series r1 r2 ce c in in out i ss c out v dd v out adj gnd r1154x001c series r1 r2 r1154x001c standard test circuit r1154x001c supply current test circuit ce in out i out c out v dd v out adj gnd r1154x001c series r1 r2 p .g. ce c in in out c out v dd v out adj gnd r1154x001c series r1 r2 i1 i2 r1154x001c input transient response test circuit r1154x001c load transient response test circuit
r1154x 8 typical characteristics 1) output voltage vs. output current r1154x025b r1154x025b 3 2 1.5 2.5 1 0.5 0 output voltage v out (v) 0 200 100 300 output current i out (ma) v in =3.5v 4.0v 4.5v 5.5v topt=25?c 3 2 1.5 2.5 1 0.5 0 output voltage v out (v) 0 200 100 300 output current i out (ma) -40?c 105?c 25?c v in =4.5v r1154x030b r1154x030b 3.5 3 2 1.5 2.5 1 0.5 0 output voltage v out (v) 0 200 100 300 output current i out (ma) v in =4.0v 4.5v 5.0v 6.0v topt=25?c 3.5 3 2 1.5 2.5 1 0.5 0 output voltage v out (v) 0 200 100 300 output current i out (ma) -40?c 105?c 25?c v in =5.0v r1154x050b r1154x050b 6 4 3 5 2 1 0 output voltage v out (v) 0 200 100 300 output current i out (ma) v in =6.0v 6.5v 7.0v 8.0v topt=25?c 6 4 3 5 2 1 0 output voltage v out (v) 0 200 100 300 output current i out (ma) 25?c 105?c -40?c v in =7.0v
r1154x 9 r1154x090b r1154x090b 10 4 3 5 6 7 8 9 2 1 0 output voltage v out (v) 0 200 100 300 output current i out (ma) v in =10.0v 12v 11v 10.5v topt=25?c 10 4 3 5 6 7 8 9 2 1 0 output voltage v out (v) 0 50 150 250 200 100 300 output current i out (ma) -40?c 25?c 105?c v in =11.0v 2) input voltage vs. output voltage (topt=25c) r1154x025b r1154x030b 3.5 3 2.5 2 1.5 output voltage v out (v) 020 15 10 525 input voltage v in (v) i out =1ma i out =20ma i out =40ma 4 3.5 3 2.5 2 output voltage v out (v) 020 15 10 525 input voltage v in (v) i out =1ma i out =20ma i out =40ma r1154x050b r1154x090b 6 5.5 5 4.5 4 output voltage v out (v) 020 15 10 525 input voltage v in (v) i out =1ma i out =20ma i out =40ma 10 9.5 9 8.5 8 output voltage v out (v) 020 15 10 525 input voltage v in (v) i out =1ma i out =20ma i out =40ma
r1154x 10 3) dropout voltage vs. output current r1154x025b r1154x030b 2.5 2 1.5 1 0.5 0 dropout voltage v dif (v) 0 120 100 140 80 60 40 20 160 output current i out (ma) topt=105?c 25?c -40?c 2.5 2 1.5 1 0.5 0 dropout voltage v dif (v) 0 120 100 140 80 60 40 20 160 output current i out (ma) topt=105?c 25?c -40?c r1154x050b r1154x090b 2.5 2 1.5 1 0.5 0 dropout voltage v dif (v) 0 120 100 140 80 60 40 20 160 output current i out (ma) topt=105?c -40?c 25?c 2.5 2 1.5 1 0.5 0 dropout voltage v dif (v) 0 120 100 140 80 60 40 20 160 output current i out (ma) topt=105?c 25?c -40?c 4) output voltage vs. temperature r1154x025b r1154x030b 2.60 2.55 2.50 2.45 2.40 output voltage v out (v) -50 50 0 100 temperature topt(?c) v in =4.5v, i out =20ma 3.10 3.05 3.00 2.95 2.90 output voltage v out (v) -50 50 0 100 temperature topt(?c) v in =5.0v, i out =20ma
r1154x 11 r1154x050b r1154x090b 5.2 5.1 5.0 4.9 4.8 output voltage v out (v) -50 50 0 100 temperature topt(?c) v in =7.0v, i out =20ma 9.4 9.2 9.0 8.8 8.6 output voltage v out (v) -50 50 0 100 temperature topt(?c) v in =11.0v, i out =20ma 5) supply current vs. input voltage (topt=25c) r1154x025b r1154x030b 12 8 10 4 6 2 0 supply current i ss ( a) 020 15 10 525 input voltage v in (v) 12 8 10 4 6 2 0 supply current i ss ( a) 020 15 10 525 input voltage v in (v) r1154x050b r1154x090b 12 8 10 4 6 2 0 supply current i ss ( a) 020 15 10 525 input voltage v in (v) 12 8 10 4 6 2 0 supply current i ss ( a) 020 15 10 525 input voltage v in (v)
r1154x 12 6) supply current vs. temperature r1154x025b r1154x030b 12 8 10 4 6 2 0 supply current i ss ( a) -50 100 50 0 temperature topt(?c) v in =4.5v 12 8 10 4 6 2 0 supply current i ss ( a) -50 100 50 0 temperature topt(?c) v in =5.0v r1154x050b r1154x090b 12 8 10 4 6 2 0 supply current i ss ( a) -50 100 50 0 temperature topt(?c) v in =7.0v 12 8 10 4 6 2 0 supply current i ss ( a) -50 100 50 0 temperature topt(?c) v in =11.0v 7) input transient response (i out =20ma, c out =0.1f, topt=25c) r1154x025b -2 2 0 4 6 8 10 12 14 10 8 6 4 0 2 15 10 5 0 -10 -5 time t(ms) output voltage v out (v) input voltage v in (v) input voltage output voltage
r1154x 13 r1154x030b -2 2 0 4 6 8 10 12 14 10 8 6 4 0 2 15 10 5 0 -10 -5 time t(ms) output voltage v out (v) input voltage v in (v) input voltage output voltage r1154x050b -2 0 -1 123456 20 16 18 12 14 8 10 0 4 6 2 15 10 5 0 -10 -5 time t(ms) output voltage v out (v) input voltage v in (v) input voltage output voltage r1154x090b -2 0 -1 123456 24 20 22 16 18 12 14 4 8 10 6 20 10 15 5 0 -5 time t(ms) output voltage v out (v) input voltage v in (v) input voltage output voltage
r1154x 14 8) load transient response (c out = 0.1 f, topt = 25 c) r1154x025b -0.5 0.5 0 1 1.5 2 2.5 3 7 5 6 1 3 4 2 30 10 0 20 -10 -20 -30 time t(ms) output voltage v out (v) output current i out (ma) output current 20ma 1ma output voltage v in =4.5v r1154x030b -0.5 0.5 0 1 1.5 2 2.5 3 8 6 7 2 4 5 3 30 10 0 20 -10 -20 -30 time t(ms) output voltage v out (v) output current i out (ma) output current 20ma 1ma output voltage v in =5.0v r1154x050b -0.5 0.5 0 1 1.5 2 2.5 3 9 7 8 3 5 6 4 30 10 0 20 -10 -20 -30 time t(ms) output voltage v out (v) output current i out (ma) output current 20ma 1ma output voltage v in =7.0v
r1154x 15 r1154x090b -0.5 0.5 0 1 1.5 2 2.5 3 13 11 12 7 9 10 8 30 10 0 20 -10 -20 -30 time t(ms) output voltage v out (v) output current i out (ma) output current 20ma 1ma output voltage v in =11.0v 9) thermal shutdown characteristics r1154x050b 04080 20 60 100 120 140 160 180 junction temperature tjct( c) 0 1 2 3 4 5 8 7 6 output voltage v out (v) v in =10v, i out =1ma
r1154x 16 technical notes phase compensation phase compensation of the r1154x series has been m ade internally for stable operation even though the load current would vary. therefore, without the capacitors, c in and c out , the output voltage is regulated, however, for more stable operation, use capacitors as c in and c out . especially, if the input line is long and impedance is high, c in is necessary, moreover, if you use c out , transient response will be improved. recommended value is in the range from 0.1 f to 2.2 f. wiring should be made as short as possible. connect the capacitor, c in between v dd pin and gnd pin and c out between v out and gnd as close as possible. ce c in v in v dd gnd r1154xxxxb series c out v out i out ce c in v in v dd gnd r1154x001c series c out i out v out adj r1 r2 r1154xxxxb typical application r1154xxxxc typical application thermal shutdown thermal shutdown function is included in the r1154x se ries, if the junction temperature is equal or more than +150 c(typ.), the operation of regulator would stop. after that, when the junction temperature is equal or less than +125 c(typ.), the operation of regulator would restar t. unless the cause of rising temperature would remove, the regulator repeats on and off, and output waveform would be like consecutive pulses. chip enable circuit do not make voltage level of chip enable pin keep floating level, or in between v ih and v il . unless otherwise, output voltage would be unstable or indefinite , or unexpected current would flow internally. * technical notes on output voltage setting of c type figure 1. adjustable regulator (c type) gnd r1 r ic v out adj r2 i1 i2 2.5v v out i ic
r1154x 17 the output voltage of regulator in r1154xxxxc ma y be adjustable for any output voltage between its 2.5v reference and its v dd setting level. an external pair of resi stors is required, as shown in figure 1. the complete equation for the output voltage is described step by step as follows; i1 = i ic + i2............................................................................................................................. ........ (1) i2 = 2.5/r2 ......................................................................................................................... ......... (2) thus, i1 = i ic +2.5/r2 ........................................................................................................................ ..... (3) therefore, v out = 2.5+r1 i1 ........................................................................................................................ (4) put equation (3) into equation (4),then v out = 2.5+r1(i ic +2.5/r2) = 2.5(1+r1/r2)+r1 i ic ....................................................................................................... (5 ) in 2nd term, or r1 i ic will produce an error in v out . in equation (5), i ic = 2.5/r ic ............................................................................................................................... ... (6) r1 i ic = r1 2.5/r ic = 2.5 r1/r ic .................................................................................................................... (7) for better accuracy, choosing r1 (< pac k age information pe-sot-23-5-071228 ? sot-23-5 (sc-74a) unit: mm package dimensions 2.9 0.2 0.4 0.1 1.9 0.2 (0.95) (0.95) 54 123 +0.2 ? 0.1 1.6 +0.2 ? 0.1 1.1 +0.1 ? 0.05 0.15 2.8?0.3 0 to 0.1 0.8 0.1 0.2 min. taping specification 2.0max. 0.3?0.1 4.0?0.1 2.0?0.05 4.0?0.1 3.3 3.2 8.0?0.3 1.75?0.1 3.5?0.05 1.5 +0.1 0 ? 1.1 0.1 tr user direction of feed taping reel dimensions reuse reel (eiaj-rrm-08bc) (1reel=3000pcs) 2 0.5 11.4 1.0 9.0 0.3 13 0.2 ? 60 ? +1 0 180 ? 0 ? 1.5 21 0.8
pac k age information pe-sot-23-5-071228 power dissipation (sot-23-5) this specification is at mounted on board. power dissipation (p d ) depends on conditions of mounting on board. this specification is based on the measurement at the condition below: (power dissipation (sot-23-5) is substitution of sot-23-6.) measurement conditions standard land pattern environment mounting on board (wind velocity=0m/s) board material glass cloth epoxy plastic (double sided) board dimensions 40mm 40mm 1.6mm copper ratio top side : approx. 50% , back side : approx. 50% through-hole 0.5mm 44pcs measurement result (topt=25 c, tjmax=125 c) standard land pattern free air power dissipation 420mw 250mw thermal resistance ja = (125 ? 25 c)/0.42w = 238 c/w 400 c/w 0 50 100 25 75 85 125 150 ambient temperature ( c) 0 200 100 300 400 250 420 500 600 power dissipation p d (mw) on board free air 40 40 power dissipation measurement board pattern ic mount area unit : mm recommended land pattern 0.7 max. 0.95 0.95 1.9 2.4 1.0 (unit: mm)
package information pe-sot-89-5-071210 ? sot-89-5 unit: mm package dimensions 4.5 ? taping specification (t1: standard type) 2.5max. 0.3 ? ? taping reel dimensions reuse reel (eiaj-rrm-12bc) (1reel=1000pcs) 20.5 ? 60 ? 180 ?.5 +1 0 0 210.8 15.41.0 130.3 130.2 ?
package information pe-sot-89-5-071210 power dissipation (sot-89-5) this specification is at mounted on board. power dissipation (p d ) depends on conditions of mounting on board. this specification is based on the measurement at the condition below: measurement conditions high wattage land pattern standard land pattern environment mounting on board (wind velocity=0m/s) mounting on board (wind velocity=0m/s) board material glass cloth epoxy plastic (doubl e sided) glass cloth epoxy plastic (double sided) board dimensions 30mm 30 15 7.5 30 15 7.5 50 50 high wattage standard power dissipation measurement board pattern ic mount area (unit : mm) recommended land pattern (sot-89-5) 1.0 0.7 max. 0.7 max. 1.5 1.5 45
mark information me-r1154n-0409 r1154n series mark specification ? sot-23-5 (sc-74a) 1 2 3 4 5 1 , 2 , 3 : product code (refer to part number vs. product code) 4 , 5 : lot number ? part number vs. product code product code product code product code product code part number 1 2 3 part number 1 2 3 part number 1 2 3 part number 1 2 3 r1154n001c j 2 4 r1154n055b j 5 5 r1154n086b j 8 6 r1154n117b j 1 7 r1154n025b j 2 5 r1154n056b j 5 6 r1154n087b j 8 7 r1154n118b j 1 8 r1154n026b j 2 6 r1154n057b j 5 7 r1154n088b j 8 8 r1154n119b j 1 9 r1154n027b j 2 7 r1154n058b j 5 8 r1154n089b j 8 9 r1154n120b j 2 0 r1154n028b j 2 8 r1154n059b j 5 9 r1154n090b j 9 0 r1154n029b j 2 9 r1154n060b j 6 0 r1154n091b j 9 1 r1154n030b j 3 0 r1154n061b j 6 1 r1154n092b j 9 2 r1154n031b j 3 1 r1154n062b j 6 2 r1154n093b j 9 3 r1154n032b j 3 2 r1154n063b j 6 3 r1154n094b j 9 4 r1154n033b j 3 3 r1154n064b j 6 4 r1154n095b j 9 5 r1154n034b j 3 4 r1154n065b j 6 5 r1154n096b j 9 6 r1154n035b j 3 5 r1154n066b j 6 6 r1154n097b j 9 7 r1154n036b j 3 6 r1154n067b j 6 7 r1154n098b j 9 8 r1154n037b j 3 7 r1154n068b j 6 8 r1154n099b j 9 9 r1154n038b j 3 8 r1154n069b j 6 9 r1154n100b j 0 0 r1154n039b j 3 9 r1154n070b j 7 0 r1154n101b j 0 1 r1154n040b j 4 0 r1154n071b j 7 1 r1154n102b j 0 2 r1154n041b j 4 1 r1154n072b j 7 2 r1154n103b j 0 3 r1154n042b j 4 2 r1154n073b j 7 3 r1154n104b j 0 4 r1154n043b j 4 3 r1154n074b j 7 4 r1154n105b j 0 5 r1154n044b j 4 4 r1154n075b j 7 5 r1154n106b j 0 6 r1154n045b j 4 5 r1154n076b j 7 6 r1154n107b j 0 7 r1154n046b j 4 6 r1154n077b j 7 7 r1154n108b j 0 8 r1154n047b j 4 7 r1154n078b j 7 8 r1154n109b j 0 9 r1154n048b j 4 8 r1154n079b j 7 9 r1154n110b j 1 0 r1154n049b j 4 9 r1154n080b j 8 0 r1154n111b j 1 1 r1154n050b j 5 0 r1154n081b j 8 1 r1154n112b j 1 2 r1154n051b j 5 1 r1154n082b j 8 2 r1154n113b j 1 3 r1154n052b j 5 2 r1154n083b j 8 3 r1154n114b j 1 4 r1154n053b j 5 3 r1154n084b j 8 4 r1154n115b j 1 5 r1154n054b j 5 4 r1154n085b j 8 5 r1154n116b j 1 6
mark information me-r1154h-0310 r1154h series mark specification ? sot-89-5 (refer to part number vs. product code) 1 2 3 4 5 6 1 : g (fixed) 2 , 3 , 4 : product code 5 , 6 : lot number ? part number vs. product code product code product code product code product code part number 1 2 3 4 part number 1 2 3 4 part number 1 2 3 4 part number 1 2 3 4 r1154h025b g 0 2 5 r1154h055b g 0 5 5 r1154h085b g 0 8 5 r1154h115b g 1 1 5 r1154h026b g 0 2 6 r1154h056b g 0 5 6 r1154h086b g 0 8 6 r1154h116b g 1 1 6 r1154h027b g 0 2 7 r1154h057b g 0 5 7 r1154h087b g 0 8 7 r1154h117b g 1 1 7 r1154h028b g 0 2 8 r1154h058b g 0 5 8 r1154h088b g 0 8 8 r1154h118b g 1 1 8 r1154h029b g 0 2 9 r1154h059b g 0 5 9 r1154h089b g 0 8 9 r1154h119b g 1 1 9 r1154h030b g 0 3 0 r1154h060b g 0 6 0 r1154h090b g 0 9 0 r1154h120b g 1 2 0 r1154h031b g 0 3 1 r1154h061b g 0 6 1 r1154h091b g 0 9 1 r1154h032b g 0 3 2 r1154h062b g 0 6 2 r1154h092b g 0 9 2 r1154h001c g 0 0 1 r1154h033b g 0 3 3 r1154h063b g 0 6 3 r1154h093b g 0 9 3 r1154h034b g 0 3 4 r1154h064b g 0 6 4 r1154h094b g 0 9 4 r1154h035b g 0 3 5 r1154h065b g 0 6 5 r1154h095b g 0 9 5 r1154h036b g 0 3 6 r1154h066b g 0 6 6 r1154h096b g 0 9 6 r1154h037b g 0 3 7 r1154h067b g 0 6 7 r1154h097b g 0 9 7 r1154h038b g 0 3 8 r1154h068b g 0 6 8 r1154h098b g 0 9 8 r1154h039b g 0 3 9 r1154h069b g 0 6 9 r1154h099b g 0 9 9 r1154h040b g 0 4 0 r1154h070b g 0 7 0 r1154h100b g 1 0 0 r1154h041b g 0 4 1 r1154h071b g 0 7 1 r1154h101b g 1 0 1 r1154h042b g 0 4 2 r1154h072b g 0 7 2 r1154h102b g 1 0 2 r1154h043b g 0 4 3 r1154h073b g 0 7 3 r1154h103b g 1 0 3 r1154h044b g 0 4 4 r1154h074b g 0 7 4 r1154h104b g 1 0 4 r1154h045b g 0 4 5 r1154h075b g 0 7 5 r1154h105b g 1 0 5 r1154h046b g 0 4 6 r1154h076b g 0 7 6 r1154h106b g 1 0 6 r1154h047b g 0 4 7 r1154h077b g 0 7 7 r1154h107b g 1 0 7 r1154h048b g 0 4 8 r1154h078b g 0 7 8 r1154h108b g 1 0 8 r1154h049b g 0 4 9 r1154h079b g 0 7 9 r1154h109b g 1 0 9 r1154h050b g 0 5 0 r1154h080b g 0 8 0 r1154h110b g 1 1 0 r1154h051b g 0 5 1 r1154h081b g 0 8 1 r1154h111b g 1 1 1 r1154h052b g 0 5 2 r1154h082b g 0 8 2 r1154h112b g 1 1 2 r1154h053b g 0 5 3 r1154h083b g 0 8 3 r1154h113b g 1 1 3 r1154h054b g 0 5 4 r1154h084b g 0 8 4 r1154h114b g 1 1 4


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