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  seiko epson corporation 1 pf913-02 micro mini E0C6006 4-bit single chip microcomputer l e0c6200b core cpu l low voltage and low power l built-in lcd driver l ir output n description micro mini "E0C6006" is a single chip microcomputer for battery-driven products with 7-segment lcd display. it achieves low cost performance, and is suitable for a product added some feature instead of standard ic. it consists that seiko epson's original core cpu e0c6200b, lcd driver (20 segments 4 commons), 128 words ram, 2k words rom, clock timer and so on. n features l cmos lsi 4-bit parallel processing l clock ............................................................... 32.768khz/455khz l instruction set .................................................. 100 instructions l rom capacity ................................................. 2k 12 bits l ram capacity .................................................. 128 4 bits l i/o port ............................................................ i: 8 bits (with pull-down resistor selectable by mask optio n) o: 4 bits i/o: 4 bits l supply voltage detector (svd) ....................... no support l clock timer ...................................................... 1ch. l lcd driver ....................................................... 20 segments 4/3 commons l interrupt ........................................................... external : 2 input interrupts internal : 3 timer interrupts : 1 remote control output control interrupt l operation voltage ........................................... 2.2 to 3.5v l power consumption ........................................ 2.0 m a (32.768khz x'tal, 3.0v, halt) 9.0 m a (32.768khz x'tal, 3.0v, run) l package .......................................................... die form (pad pitch = 130 m m), qfp6-60pin or qfp13-64pin low voltage operation products
2 E0C6006 n block diagram n pin configuration 31 45 16 30 index 15 1 60 46 E0C6006 no. 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 pin name n.c. n.c. n.c. k00 k01 k02 k03 k10 k11 k12 k13 r00 r01 r02 r03 no. 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 pin name r33(rem) seg0 seg1 seg2 seg3 seg4 seg5 seg6 seg7 seg8 seg9 seg10 n.c. seg11 test no. 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 pin name reset seg12 seg13 seg14 seg15 seg16 seg17 seg18 seg19 com3 com2 com1 com0 v l1 v l2 no. 46 47 48 49 50 51 52 53 54 55 56 57 58 59 60 pin name v l3 v adj ca cb v ss osc4 osc3 v s1 osc2 osc1 v dd p03 p02 p01 p00 n.c. = no connection osc1 osc2 osc3 osc4 com0? seg0?9 v dd , v ss v l1 v l3 , v adj ca, cb v s1 k00?03 k10?13 test reset p00?03 r00, r01 r02 (fout, bz) * 1 r03 (bz) * 1 r33 (rem) * 1: terminal specifications can be selected by mask option. core cpu e0c6200b rom 2,048 words 12 bits system reset control interrupt generator ram 128 words 4 bits lcd driver 20 seg 4 com power controller osc clock timer watchdog timer fout & buzzer input port i/o port output port rem qfp6-60pin no. 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 pin name n.c. n.c. n.c. n.c. k00 k01 k02 k03 k10 k11 k12 k13 r00 r01 r02 r03 no. 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 pin name n.c. r33(rem) seg0 seg1 seg2 seg3 seg4 seg5 seg6 seg7 seg8 seg9 seg10 seg11 n.c. test no. 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 pin name reset seg12 seg13 seg14 seg15 seg16 seg17 seg18 seg19 com3 com2 com1 com0 v l1 v l2 v l3 no. 49 50 51 52 53 54 55 56 57 58 59 60 61 62 63 64 pin name n.c. v adj ca cb v ss osc4 osc3 v s1 osc2 osc1 v dd p03 p02 p01 p00 n.c. n.c. = no connection 33 48 17 32 index 16 1 64 49 E0C6006 qfp13-64pin
3 E0C6006 n pin description v dd v ss v s1 v l1 v l2 v l3 ca, cb v adj osc1 osc2 osc3 osc4 k00?03 k10?13 p00?03 r00, r01 r02 r03 r33(rem) seg0?9 com0? reset test pin name (i) (i) i i o i o i i i/o o o o o o o i i in/out power supply pin (+) power supply pin (-) oscillation and internal logic system voltage output pin lcd drive voltage output pin lcd drive voltage output pin lcd drive voltage output pin boost capacitor connecting pin v l1 adjustment input pin oscillation input pin (crystal) oscillation output pin (crystal) oscillation input pin (ceramic or cr * ) oscillation output pin (ceramic or cr * ) input port pin input port pin i/o port pin output port pin output port pin, bz or fout output pin * output port pin or bz output pin * remote control carrier output port pin lcd segment output pin or dc output pin * lcd common output pin (1/3 duty or 1/4 duty are selectable * ) initial reset input pin input pin for test qfp6-60pin 56 50 53 44 45 46 48, 49 47 55 54 52 51 4? 8?1 60?7 12, 13 14 15 16 17?7, 29, 32?9 43?0 31 30 qfp13-64pin 59 53 56 46 47 48 51, 52 50 58 57 55 54 5? 9?2 63?0 13, 14 15 16 18 19?0, 34?1 45?2 33 32 pin no. function * can be selected by mask option n basic external connection diagram reset v v v v v osc1 osc2 vss osc3 osc4 v adj l1 l2 l3 dd s1 x'tal cr c 1 ca cb com0 com3 seg0 seg19 test lcd r tr1 led 3.0v c + r33 (rem) r02 r03 p00?03 k00?03 k10?13 r00?01 vss v dd E0C6006 sr c sr s gx c c l1 c l2 c l3 gc c dc c s1 c a2 r a1 r d rb r rc x'tal c gx cr c gc c dc c sr r a1 r a2 r a3 , r a4 c 1 c s1 c l1 ? l3 crystal oscillator trimmer capacitor ceramic oscillator capacitor capasitor capacitor resistor resistor resistor capacitor capacitor capacitor 32.768khz, c i (max.)=35k w 5?5pf 455khz 100pf 100pf 0.33 f open(vl=1.0v), 2m w (vl=1.5v) short(vl=1.0v), 1m w (vl=1.5v) 100 w 0.1 f 0.1 f 0.1 f [the potential of the substrate (back of the chip) is v dd .] piezo r a3 r a4 note: the above table is simply an example, and is not guaranteed to work.
4 E0C6006 n electrical characteristics l absolute maximum ratings rating supply voltage input voltage (1) input voltage (2) operating temperature storage temperature soldering temperature / time permissible dissipation * 1 * 1: in case of plastic package (qfp6-60pin, qfp13-64pin). symbol v ss v i v iosc topr tstg tsol p d value -5.2 to 0.5 v ss - 0.3 to 0.3 v s1 - 0.3 to 0.3 -20 to 70 -65 to 150 260 c, 10sec ( lead section ) 250 unit v v v c c mw (v dd =0v) l recommended operating conditions condition supply voltage oscillation frequency lcd drive voltage cr oscillation external resistor symbol v ss f osc1 f osc3 v l1 r cr remark v dd =0v duty: 50 5% unit v khz khz v k w (ta=-20 to 70 c) max. -2.2 600 500 typ. -3.0 32.768 455 -1.03 140 min. -3.5 50 -1.6 100 l dc characteristics characteristic high level input voltage (1) low level input voltage (1) high level input voltage (2) low level input voltage (2) high level input current low level input current high level output current (1) low level output current (1) high level output current (2) low level output current (2) high level output current (3) low level output current (3) common output current segment output current (during lcd output) * 1: symbol v ih1 v il1 v ih2 v il2 i ih i il1 i il2 i il3 i il4 i il5 i il6 i oh1 i ol1 i oh2 i ol2 i oh3 i ol3 i oh4 i ol4 i oh5 i ol5 unit v v v v a a a a a a a a ma a ma ma ma a a a a max. 0 0.8? ss 0 0.9? ss 1 -0.35 -0.35 -2 -250 -250 -1.8 -3.0 -3.0 typ. min. 0.2? ss v ss 0.1? ss v ss -1 -5 -5 -50 -50 -13 1.0 1.0 1.0 3.0 3.0 only at read cycle using internal program. condition k00?3, k10?3, p00?3 k00?3, k10?3, p00?3 reset reset v ih =v dd v il1 =v ss k00?3, k10?3, no pull-up v il2 =v ss k00?3, k10?3, pull-up v il3 =v ss reset v il4 =0.2? ss k00?3, k10?3, pull-up v il5 =0.2? ss reset v il6 =v ss p00?3 * 1 v oh1 =0.1? ss r00?3 v ol1 =0.9? ss r00?3 v oh2 =0.1? ss p00?3 v ol2 =0.9? ss p00?3 v oh3 =0.1? ss r33(rem) v ol3 =0.9? ss r33(rem) v oh4 =-0.05v com0? v ol4 =v l3 +0.05v v oh5 =-0.05v seg0?9 v ol5 =v l3 +0.05v (unless otherwise specified: v dd =0v, v ss =-2.2 to -3.5v, v l3 =-3.0v, ta=-20 to 70 c) (unless otherwise specified: v dd =0v, v ss =-2.2 to -3.5v, v l3 =-3.0v, ta=-20 to 70 c) (unless otherwise specified: v dd =0v, v ss =-2.2 to -3.5v, v l3 =-3.0v, ta=-20 to 70 c) (unless otherwise specified: v dd =0v, v ss =-2.2 to -3.5v, v l3 =-3.0v, ta=-20 to 70 c) l analog circuit characteristics and current consumption characteristic lcd drive voltage current consumption * 1: (unless otherwise specified: v dd =0v, v ss =-2.2 to -3.5v, ta=25 c) symbol v l1 v l2 v l3 i op unit v v v a a a max. -0.95 2? l1 +0.1 3? l1 +0.3 5 18 250 typ. -1.03 2 9 130 min. -1.11 2? l1 3? l1 ceramic oscillation (455 khz) or cr oscillation (r cr =140 k w ) condition v adj =v l1 , i l1 =5 a 1 m w load connected between v dd and v l2 (no panel load) 1 m w load connected between v dd and v l3 (no panel load) halt mode, oscc=0 v adj =v l1 osc1 mode, oscc=0 no panel load osc3 mode * 1
5 E0C6006 l oscillation characteristics oscillation characteristics will vary according to different conditions (elements used, boad pattern). use the following char- acteristics are as reference values. osc1 (crystal oscillation) characteristic oscillation start time built-in capacitance (drain) frequency/voltage deviation frequency/ic deviation frequency adjustment range harmonic oscillation start voltage permitted leak resistance symbol t sta c d ? f/ ? v ? f/ ? ic ? f/ ? c g v hho r leak unit sec pf pf ppm ppm ppm v m w max. 3 5 10 -3.5 typ. 20 19 min. -10 40 200 condition v ss =-2.2 to -3.5v package as assembled bare chip v ss =-2.2 to -3.5v c g =5 to 25pf c g =5pf ( v ss ) between osc1 and other pins (unless otherwise specified: v dd =0v, v ss =-3.0v, crystal oscillator: c-002r (c i =35k w ), c g =25pf, c d =built-in, ta=25 c) osc3 (ceramic oscillation) characteristic oscillation start voltage oscillation start time oscillation stop voltage * 1: symbol vsta t sta vstp unit v ms v max. typ. 3 min. -2.2 -2.2 csb455e: made by murata mfg.co. condition (v dd ) v ss =-2.2 to -3.5v (v dd ) (unless otherwise specified: v dd =0v, v ss =-3.0v, ceramic oscillator: csb455e * 1 , c gc =c dc =100pf, ta=25 c) osc3 (cr oscillation) characteristic oscillation frequency oscillation start voltage oscillation start time oscillation stop voltage symbol f osc3 vsta t sta vstp unit khz v ms v max. typ. 280 3 min. -2.2 -2.2 condition (v dd ) v ss =-2.2 to -3.5v (v dd ) (unless otherwise specified: v dd =0v, v ss =-3.0v, r cr =140k w , ta=25 c) E0C6006 oscillation characteristics ?f osc3 vs r cr ?(for reference) condition: ta = 25 c, v dd = gnd, v ss = -3.0 v, non board and package capacitance note: oscillation characteristics are affected by various conditions (board pattern, parts used, etc.). 100 30 50 100 500 1000 f osc3 [khz] 500 1000 r [k ] cr w typ. 200 200
E0C6006 notice: no part of this material may be reproduced or duplicated in any form or by any means without the written permission of seiko ep son. seiko epson reserves the right to make changes to this material without notice. seiko epson does not assume any liability of any kind arising out of any inaccuracies contained in this material or due to its application or use in any product or circuit and, further, there is n o representation that this material is applicable to products requiring high level reliability, such as, medical products. moreover, no license to an y intellectual property rights is granted by implication or otherwise, and there is no representation or warranty that anything made in accord ance with this material will be free from any patent or copyright infringement of a third party. this material or portions thereof may contain technology or the subject relating to strategic products under the control of the foreign exchange and foreign trade control law of japan and may require an export license from the ministry of international trade and industry or other approval from another government agency. ? seiko epson corporation 1999 all right reserved. seiko epson corporation electronic devices marketing division ic marketing & engineering group ed international marketing department i (europe & u.s.a.) 421-8, hino, hino-shi, tokyo 191-8501, japan phone : 042-587-5812 fax : 042-587-5564 ed international marketing department ii (asia) 421-8, hino, hino-shi, tokyo 191-8501, japan phone : 042-587-5814 fax : 042-587-5110 l input current characteristics (for reference) condition: ta = 25c, v dd = 0 v, v ss = -3.0 v reset p ** k ** 0 0 -10 -20 -1 -2 -3 v ih (v) i ih ( a) 0 0 -2 -4 -6 -1 -2 -3 v ih (v) i ih ( a) 0 0 -4 -8 -12 -1 -2 -3 v ih (v) i ih ( a) l output current characteristics (for reference) condition: ta = 25c, v dd = 0 v r0 * , p ** r0 * , p ** r33 (rem) vss 0 10 20 30 vss+1 vss+2 vss+3 v ol (v) i ol (ma) vss = -2.2 v vss = -3.0 v p0 * r0 * p0 * r0 * 0 0 -2 -4 -6 -8 -1 -2 -3 v oh (v) i oh (ma) vss = -2.2 v vss = -3.0 v p0 * r0 * p0 * r0 * 0 0 -10 -20 -30 -1 -2 -3 v oh (v) i oh (ma) vss = -2.2 v vss = -3.0 v


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