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  ram ( 8-bit) rom ( 8-bit) 64 k type MN101C74D (under development) package 128 k 2 k 6 k qfp100-p-1818b *lead-free , lqfp100-p-1414 *lead-free (under planning), mlga100-l-1010 *lead-free (under planning) mn101c74g (under development) MN101C74D , mn101c74f, mn101c74g minimum instruction execution time 0.1 s (at 3.0 v to 3.6 v, 10 mhz) 0.235 s (at 1.8 v to 3.6 v, 4.25 mhz) 62.5 s (at 1.8 v to 3.6 v, 32 khz) * the lower limit for operation guarantee for flash memory built-in type is 2.2 v. interrupts ? reset  watchdog  external 0  external 1  external 2  external 3  external 4  external 5  external 6 (key interrupt dedicated)  timer 0  timer 1  timer 2  timer 3  timer 6  time base  timer 7 (2 systems)  timer 8 (2 systems)  serial 0 (2 systems)  serial 1 (2 systems)  serial 3  a/d conversion finish  automatic transfer finish timer counter timer counter 0 : 8-bit 1 (square-wave/8-bit pwm output, event count, generation of remote control carrier, simple pulse width measurement, added pluse (2-bit) system pwm output) (square-wa ve/pwm output to large current terminal pc3 possible) clock source 1/2, 1/4 of system clock frequency; 1/1, 1/4, 1/16, 1/32, 1/64 of osc oscillation clock frequency; 1/1 of xi oscillation clock frequency; external clock input interrupt source coincidence with compare register 0 timer counter 1 : 8-bit 1 (square-wave output, event count, synchronous output event) clock source 1/2, 1/8 of system clock frequency; 1/1, 1/4, 1/16, 1/64, 1/128 of osc oscillation clock frequency; 1/1 of xi oscillation cloc k frequency; external clock input; timer counter 8 output interrupt source coincidence with compare register 1 timer counter 0, 1 can be cascade-connected. timer counter 2 : 8-bit 1 (square-wave output, added pluse (2-bit) system pwm output, pwm output, serial transfer clock output, event count, synchronous output event, simple pulse width measur ement) (square-wave/pwm output to large current terminal pc5 possible) clock source 1/2, 1/4 of system clock frequency; 1/1, 1/4, 1/16, 1/32, 1/64 of osc oscillation clock frequency; 1/1 of xi oscillation clock frequency; external clock input interrupt source coincidence with compare register 2 timer counter 3 : 8-bit 1 (square-wave output, event count, generation of r emote control carrier, serial transfer clock) clock source 1/2, 1/8 of system clock frequency; 1/1, 1/4, 1/16, 1/64, 1/128 of osc oscillation clock frequency; 1/1 of xi oscillation clock frequency; external clock input interrupt source coincidence with compare register 3 timer counter 2, 3 can be cascade-connected. timer counter 6 : 8-bit freerun timer clock source 1/1 of system clock frequency; 1/1, 1/128, 1/8192 of osc oscillation clock frequency; 1/1, 1/128, 1/8192 of xi oscillation clock frequency interrupt source coincidence with compare register 6 timer counter 7 : 16-bit 1 (square-wave output, 16-bit pwm output (cycle / duty continuous variable), event count, synchronous output event, pulse width measurement, input capture, real time output control, high performance igbt output (cycle/duty can be changed constantly)) (square-wave/pwm output to large current terminal pc4 possible) clock source 1/1, 1/2, 1/4, 1/16 of system clock fr equency; 1/1, 1/2, 1/4, 1/16 of osc oscillation clock frequency; 1/1, 1/2, 1/4, 1/16 of external clock input frequency interrupt source coincidence with compare register 7 (2 lines), input capture register mad00048bem 96 k mn101c74f (under planning) 6 k
MN101C74D, mn101c74f, mn101c74g timer counter (continue) timer counter 8: 16 bit 1 (square-wave/16-bit pwm output [duty continuous variable], event count, pulse width measurement, input capture) (square-wave/pwm output to large cur rent terminal pc6 possible) clock source 1/1, 1/2, 1/4, 1/16 of system clock frequency; 1/1, 1/2, 1/4, 1/16 of osc oscillation clock frequency; 1/1, 1/2, 1/4, 1/16 of external clock input frequency interrupt source coincidence with compare register 8 (2 lines), input capture register timer counters 7, 8 can be cascade-connected. (square-wave output, pwm is possible as a 32-bit timer.) time base timer (one-minute count setting) clock source 1/1 of osc oscillation clock frequency; 1/1 of xi oscillation clock frequency interrupt source 1/128, 1/256, 1/512, 1/1024, 1/4096, 1/8192, 1/16384, 1/32768, of clock source frequency watchdog timer interrupt source 1/65536, 1/262144, 1/1048576 of system clock frequency serial 0 : synchronous type/uart (full-duplex) 1 clock source 1/2, 1/4 of system clock frequency; pulse output of timer counter 1 or 2; 1/2, 1/4, 1/16, 1/64 of osc oscilla tion clock frequency, external clock serial 1 : synchronous type/uart (full-duplex) 1 clock source 1/2, 1/4 of system clock frequency; pulse output of timer counter 2 or 3; 1/2, 1/4, 1/16, 1/64 of osc oscilla tion clock frequency, external clock serial 3 : synchronous type/single-master i 2 c 1 clock source 1/2, 1/4 of system clock frequency; pulse output of timer counter 2 or 3; 1/2, 1/4, 1/16, 1/32 of osc oscilla tion clock frequency, external clock serial 4 : i 2 c slave 1 applicable for i 2 c high-speed transfer mode, 7-bit/10-bit address setting, general call i/o pins 87  common use  specified pull-up resistor available  input/output selectable (bit unit) i/o a/d inputs 10-bit 16-ch. (with s/h) lcd 47 segments 4 commons (static, 1/2, 1/3, or 1/4 duty) lcd power supply separated from vdd (usable if vdd vlcd 3.6 v) lcd power step-up circuit contained (3/2, 2 and 3 times) lcd power shunt resistance contained lcd reference voltage is contained. special ports buzzer output, remote control carrier signal output, high-current drive port see the next page for pin assignment and support tool. mad00048bem max. transfer cycles 255 starting factor external request, va rious types of interrupt, software transfer mode 1-byte transfer, word transfer, burst transfer serial interface dma controller (automatic data transfer) rom correction correcting address designation: up to 7 addresses possible
pin assignment qfp100-p-1818b * lead-free lqfp100-p-1414 * lead-free mlga100-l-1010 * lead-free mad00048bem electrical characteristics supply current limit symbol condition min typ max unit parameter idd1 f osc = 4 mhz, vdd = 3 v 1 1.8 ma idd2 fx = 32 khz, vdd = 3 v 4 15 a idd3 fx = 32 khz, vdd = 3 v, ta = 25c 2 5 a idd4 fx = 32 khz, vdd = 3 v, ta = ? 40 c to +85c 10 a idd5 vdd = 3 v, ta = 25 c2 a idd6 vdd = 3 v, ta = ? 40c to +85 c8 a operating supply current supply current at halt supply current at stop MN101C74D mn101c74f mn101c74g vlc2 vlc1 c2 tm0o/led3/pc3 tm7o/led4/pc4 tm2o/led5/pc5 vss osc1 tm8o/led6/pc6 osc2 vdd xi xo nc vref+ mmod nrst/p27 com1/p91 com0/p90 com2/p92 com3/p93 vlc3/p94 p50/seg31/a0 p47/seg32/d7/key7/sdo7 p46/seg33/d6/key6/sdo6 p45/seg34/d5/key5/sdo5 p44/seg35/d4/key4/sdo4 p43/seg36/d3/key3/sdo3 p42/seg37/d2/key2/sdo2 p05/seg41/nwe p00/seg46/buzzer/sda4b p25/irq5 p24/irq4 p23/irq3 p02/seg44/sysclk/sbt3b/scl3b p55/seg26/a5 p54/seg27/a4 p53/seg28/a3 p01/seg45/nbuzzer/scl4b pa7/an7/sbi3a pb0/an8/sda4a pb1/an9/scl4a pb2/an10/sbt0a pb3/an11/sbo0a/txd0a pb4/an12/sbi0a/rxd0a pb5/an13/sbt1 pb6/an14/sbo1/txd1 pb7/an15/sbi1/rxd1 p10/tm0io/rmout p11/tm1io p12/tm2io p13/tm3io p14/tm7io p15/tm8io p20/irq0 p21/acz1/irq1 p22/irq2 seg0/p87 seg1/p86 seg2/p85 seg3/p84 seg4/p83 seg5/p82 seg6/p81 seg7/p80 seg8/p77 seg9/p76 seg10/p75 seg11/p74 seg12/p73 seg13/p72 a17/seg14/p71 a16/seg15/p70 a15/seg16/p67 a14/seg17/p66 a13/seg18/p65 a12/seg19/p64 a11/seg20/p63 a10/seg21/p62 a9/seg22/p61 a8/seg23/p60 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 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 74 73 72 71 70 69 68 67 66 65 64 63 62 61 60 59 58 57 56 55 54 53 52 51 100 99 98 97 96 95 94 93 92 91 90 89 88 87 86 85 84 83 82 81 80 79 78 77 76 75 c1/rxd0b/sbi0b/led0/pc0 txd0b/sbo0b/led1/pc1 p56/seg25/a6 a7/seg24/p57 p52/seg29/a2 p51/seg30/a1 p03/seg43/ndk/sbo3b/sda3b p04/seg42/ncs/sbi3b p41/seg38/d1/key1/sdo1 p40/seg39/d0/key0/sdo0 p06/seg40/nre pa0/an0 pa1/an1 pa4/an4 pa5/an5/sbt3a/scl3a pa2/an2 pa3/an3 sbt0b/led2/pc2 pa6/an6/sbo3a/sda3a
MN101C74D, mn101c74f, mn101c74g mad00048bem type mn101cf74g (under development) rom ( 8-bit) 128 k ram ( 8-bit) 6 k minimum instruction execution time 0.1 s (at 3.0 v to 3.6 v, 10 mhz) 0.235 s (at 2.2 v to 3.6 v, 4.25 mhz) 62.5 s (at 2.2 v to 3.6 v, 32 khz) package qfp100-p-1818b *lead-free , lqfp100-p-1414 *lead-free (under planning) mlga100-l-1010 *lead-free (under planning) support tool flash memory built-in type in-circuit emulator px-ice101c / d + px-prb101c74-qfp100-p-1818b-m (under development) px-ice101c / d + px-prb101c74-lqfp100-p-1414-m (under planning)
request for your special attention and precautions in using the technical information and semiconductors described in this material (1) an export permit needs to be obtained from the competent authorities of the japanese government if any of the products or technical information described in this material and controlled under the "foreign exchange and foreign trade law" is to be exported or taken out of japan. (2) the technical information described in this material is limited to showing representative characteristics and applied circuits examples of the products. it neither warrants non-infringement of intellectual property right or any other rights owned by our company or a third party, nor grants any license. (3) we are not liable for the infringement of rights owned by a third party arising out of the use of the technical information as described in this material. (4) the products described in this material are intended to be used for standard applications or general elec- tronic equipment (such as office equipment, communications equipment, measuring instruments and house- hold appliances). consult our sales staff in advance for information on the following applications: ? special applications (such as for airplanes, aerospace, automobiles, traffic control equipment, combus- tion equipment, life support systems and safety devices) in which exceptional quality and reliability are required, or if the failure or malfunction of the products may directly jeopardize life or harm the human body. ? any applications other than the standard applications intended. (5) the products and product specifications described in this material are subject to change without notice for modification and/or improvement. 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 specifica- tions satisfy your requirements. (6) when designing your equipment, comply with the guaranteed values, in particular those of maximum rat- ing, the range of operating power supply voltage, and heat radiation characteristics. 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. (7) when using products for which damp-proof packing is required, observe the conditions (including shelf life and amount of time let standing of unsealed items) agreed upon when specification sheets are individually exchanged. (8) this material may be not reprinted or reproduced whether wholly or partially, without the prior written permission of matsushita electric industrial co., ltd. 2003 sep


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