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  mae00021cem MN102H950F type MN102H950F internal rom type external rom (byte) ? ram (byte) 10k package (lead-free) lqfp100-p-1414 minimum instruction execution time [with main clock operated] 58 ns (at 3.0 v to 3.6 v, 34 mhz) ? interrupts /rst pin, watchdog, /nmi pin, timer counter 0 to 9 under? ow, timer counter 10 to 14 under? ow, timer counter 10 to 14 compare capture a, timer counter 10 to 14 compare capture b, atc ch.0 to ch.3 tra nsfer ? nish, external 0 to 4, serial ch.0 to ch.4 tra nsmission, serial ch.0 to ch.4 reception, a/d conversion ? nish ? timer counter timer counter 0 : 8-bit 1 clock source ................ 1/2 of system clock (bosc) frequency; under? ow of timer counter 8 ; tm0io pin; system clock (bosc) interrupt source ........... under? ow of timer counter 0 timer counter 1 : 8-bit 1 clock source ................ 1/2 of system clock (bosc) frequency; under? ow of timer counter 8, 9; timer counter 0 output interrupt source ........... under? ow of timer counter 1 timer counter 2 : 8-bit 1 clock source ................ 1/2 of system clock (bosc) frequency; under? ow of timer counter 8 ; tm2io pin; timer counter 1 output interrupt source ........... under? ow of timer counter 2 timer counter 3 : 8-bit 1 clock source ................ 1/2 of system clock (bosc) frequency; under? ow of timer counter 8 ; tm3io pin; timer counter 2 output interrupt source ........... under? ow of timer counter 3 timer counter 4 : 8-bit 1 clock source ................ 1/2 of system clock (bosc) frequency; under? ow of timer counter 9 ; tm4io pin; system clock (bosc) interrupt source ........... under? ow of timer counter 4 timer counter 5 : 8-bit 1 clock source ................ 1/2 of system clock (bosc) frequency; under? ow of timer counter 8, 9; timer counter 4 output interrupt source ........... under? ow of timer counter 5 timer counter 6 : 8-bit 1 clock source ................ 1/2 of system clock (bosc) frequency; under? ow of timer counter 9 ; tm6io pin; timer counter 5 output interrupt source ........... under? ow of timer counter 6 timer counter 7 : 8-bit 1 clock source ................ 1/2 of system clock (bosc) frequency; under? ow of timer counter 9 ; tm7io pin; timer counter 6 output interrupt source ........... under? ow of timer counter 7 timer counter 8 : 8-bit 1 clock source ................ 1/2 of system clock (bosc) frequency; system clock (bosc); 1/4 of system clock (xi) frequency; tm8io pin interrupt source ........... under? ow of timer counter 8 timer counter 9 : 8-bit 1 clock source ................ 1/2 of system clock (bosc) frequency; under? ow of timer counter 8 ; tm9io pin; timer counter 8 output interrupt source ........... under? ow of timer counter 9 timer counter 10 : 16-bit 1 (timer output, event count, input capture, pwm output, 2-phase encoder input) clock source ................ under? ow of timer counter 8, 9 ; tm10iob pin; 1/2 of system clock (bosc) frequency; 2-phase encode of tm 10 ioa pin/tm10iob pin (1 , 4 ) interrupt source ........... under? ow of timer counter 10; timer counter 10 compare capture a; timer counter 10 compare capture b
mae00021cem MN102H950F timer counter 11 : 16-bit 1 (timer output, event count, input capture, pwm output, 2-phase encoder input) clock source ................ under? ow of timer counter 8, 9 ; tm 11iob pin; 1/2 of system clock (bosc) frequency; 2-phase encode of tm 11 ioa pin/tm 11 iob pin (1 , 4 ) interrupt source ........... under? ow of timer counter 11 ; timer counter 11 compare capture a; timer counter 11 compare capture b timer counter 12 : 16-bit 1 (timer output, event count, input capture, pwm output, 2-phase encoder input) clock source ................ under? ow of timer counter 8, 9 ; tm12iob pin; 1/2 of system clock (bosc) frequency; 2-phase encode of tm 12 ioa pin/tm12iob pin (1 , 4 ) interrupt source ........... under? ow of timer counter 12; timer counter 12 compare capture a; timer counter 12 compare capture b timer counter 13 : 16-bit 1 (timer output, event count, input capture, pwm output, 2-phase encoder input) clock source ................ under? ow of timer counter 8, 9 ; tm13iob pin; 1/2 of system clock (bosc) frequency; 2-phase encode of tm 13 ioa pin/tm13iob pin (1 , 4 ) interrupt source ........... under? ow of timer counter 13; timer counter 13 compare capture a; timer counter 13 compare capture b timer counter 14 : 16-bit 1 (timer output, event count, input capture, pwm output, 2-phase encoder input) clock source ................ under? ow of timer counter 8, 9 ; tm14iob pin; 1/2 of system clock (bosc) frequency; 2-phase encode of tm 14 ioa pin/tm14iob pin (1 , 4 ) interrupt source ........... under? ow of timer counter 14; timer counter 14 compare capture a; timer counter 14 compare capture b ? serial interface serial 0, 1 : 8-bit 1 (transfer direction of msb / lsb selectable, transmission / reception of 7, 8-bit length) clock source ................ 1/8 of timer counter 6 under? ow frequency; 1/8, 1/2 of timer counter 0 under? ow frequency; external pin serial 2, 3 : 8-bit 1 (transfer direction of msb / lsb selectable, transmission / reception of 7, 8-bit length) clock source ................ 1/8 of timer counter 2 under? ow frequency; 1/8, 1/2 of timer counter 4 under? ow frequency; external pin uart 4 (common use with serial 0 to 3) i2c 2 (common use with serial 1,3; single master) ? i/o pins i/o 63 common use : 43 (use of full address, address data separate 16-bit mode) common use : 57 (use of address 16-bit, address data separate 8-bit mode) common use : 56 (use of full address, address data multiplex 16-bit mode) common use : 63 (use of address 16-bit, address data multiplex 8-bit mode) ? a/d converter 10-bit 12 -ch. (with s/h) ? d/a converter 8-bit 4 -ch. ? pwm 16-bit 5-ch. (timer counter 10 to 14 ) ? icr 16-bit 5-ch. (timer counter 10 to 14 ) ? ocr 16-bit 5-ch. (timer counter 10 to 14 ) ? notes address / data separate bus interface; 8 / 16-bit bus width selectable; sram interface address / data multiplex bus interface support
mae00021cem ? electrical charactreistics (supply current) parameter symbol condition limit unit min typ max operating supply current iddopr vi = vdd or vss, output open f = 34 mhz , vdd = 3.3 v 60 ma supply current at stop idds pin with pull-up resistor is open all other input pins and hi-z state input/output pins are simultaneously applied vdd or vss level f = 34 mhz , vdd = 3.3 v, output open 70 a supply current at halt 0 iddh 30 ma (ta = C 40 c to +85 c , vdd = avdd = 3.3 v , vss = avss = 0 v) ? development tools in-circuit emulator px-ice 102h930f-lqfp100-p-1414 ? pin assignment mode osco osci vdd xo pb2, xi vss pb1, /nm i vdd /rst pb0, bosc pa 5, adsep pa 4, /irq4, tm14ic pa 3, /irq3, tm13ic pa 2, /irq2, tm12ic pa 1, /irq1, tm1 1ic pa 0, /irq0, tm10ic p77, tm9io p76, tm8io p75, sbo1, sda1, tm7io p74, sbi1, tm6io p73, sbt1, scl1, tm4io p72, sbo0, tm3io p71, sbi0, tm2io p70, sbt0, tm0io 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 75 74 73 72 71 70 69 68 67 66 65 64 63 62 61 60 59 58 57 56 55 54 53 52 51 76 77 78 79 80 81 82 83 84 85 86 87 88 89 90 91 92 93 94 95 96 97 98 99 100 50 49 48 47 46 45 44 43 42 41 40 39 38 37 36 35 34 33 32 31 30 29 28 27 26 ale, p56 /word, p57 wa it , p60 /re /wel, p62 /weh, p63 vdd tm10ioa, /dmareq1, p80 tm10iob, /dmaack1, p81 tm 11 ioa, sbt2, p82 tm 11 iob, sbi2, p83 tm12ioa, sbo2, p84 tm12iob, sbt3, scl3, p85 tm13ioa, sbi3, p86 tm13iob, sbo3, sda3, p87 av dd dac0, an4, p90 dac1, an5, p91 dac2, an6, p92 dac3, an7, p93 an8, p94 an9, p95 an10, p96 an1 1, p97 av ss a6, ad6 a5, ad5 a4, ad4 a3, ad3 a2, ad2 a1, ad1 a0, ad0 vdd p17, d15 p16, d14 p15, d13 p14, d12 p13, d1 1 p12, d10 p1 1, d9 p10, d8 vss p07, d7 p06, d6 p05, d5 p04, d4 p03, d3 p02, d2 p01, d1 p00, d0 ad7, a7 ad8, a8 ad9, a9 ad10, a10 ad1 1, a1 1 vss ad12, a12 ad13, a13 ad14, a14 ad15, a15 tm0o, a16, p40 tm2o, a17, p41 tm3o, a18, p42 tm4o, a19, p43 vdd an0, a20, p44 an1, a21, p45 st op , an2, a22, p46 wdout , an3, a23, p47 /cs0 /cs1, p51 /cs2, p52 /cs3, p53 tm14ioa, /dmareq0, /breq, /wr, p54 tm14iob, /dmaack0, /brack, p55 MN102H950F lqfp100-p-1414
request for your special attention and precautions in using the technical information and semiconductors described in this book (1) if any of the products or technical information described in this book is to be exported or provided to non-residents, the laws and regulations of the exporting country, especially, those with regard to security export control, must be observed. (2) the technical information described in this book is intended only to show the main characteristics and application circuit examples of the products, and no license is granted under any intellectual property right or other right owned by our company or any other company. therefore, no responsibility is assumed by our company as to the infringement upon any such right owned by any other company which may arise as a result of the use of technical information described in this book. (3) the products described in this book are intended to be used for standard applications or general electronic equipment (such as office equipment, communications equipment, measuring instruments and household appliances). consult our sales staff in advance for information on the following applications: ? special applications (such as for airplanes, aerospace, automobiles, traffic control equipment, combustion equipment, life support systems and safety devices) in which exceptional quality and reliability are required, or if the failure or malfunction of the prod- ucts may directly jeopardize life or harm the human body. ? any applications other than the standard applications intended. (4) the products and product specifications described in this book are subject to change without notice for modification and/or im- provement. at the final stage of your design, purchasing, or use of the products, therefore, ask for the most up-to-date product standards in advance to make sure that the latest specifications satisfy your requirements. (5) when designing your equipment, comply with the range of absolute maximum rating and the guaranteed operating conditions (operating power supply voltage and operating environment etc.). especially, please be careful not to exceed the range of absolute maximum rating on the transient state, such as power-on, power-off and mode-switching. otherwise, we will not be liable for any defect which may arise later in your equipment. even when the products are used within the guaranteed values, take into the consideration of incidence of break down and failure mode, possible to occur to semiconductor products. measures on the systems such as redundant design, arresting the spread of fire or preventing glitch are recommended in order to prevent physical injury, fire, social damages, for example, by using the products. (6) comply with the instructions for use in order to prevent breakdown and characteristics change due to external factors (esd, eos, thermal stress and mechanical stress) at the time of handling, mounting or at customer's process. when using products for which damp-proof packing is required, satisfy the conditions, such as shelf life and the elapsed time since first opening the packages. (7) this book may be not reprinted or reproduced whether wholly or partially, without the prior written permission of matsushita electric industrial co., ltd. industrial co., ltd.


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