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Oki MSM66207 User's Manual

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1. Unit mm QFJ68 P S950 1 27 4 55 0 2 ee oja sie 6 er q S N INDEX MARK Mirror finish Q 08 0 635MN 1 27 0 81MAX N o SEATING PLANE L1 HH TUTTI TT THT 0 180 23 15 0 25 Package material Epoxy resin Lead frame material Cu alloy Pin treatment Solder plating Solder plate thickness 5 um or more Package weight g 4 50 TYP Notes for Mounting the Surface Mount Type Package The SOP QFP TSOP SOJ QFJ PLCC SHP and BGA are surface mount type packages which are very susceptible to heat in reflow mounting and humidity absorbed in storage Therefore before you perform reflow mounting contact Oki s responsible sales person for the product name package name pin number package code and desired mounting conditions reflow method temperature and times 29 30 OKI Semiconductor MSM66201 66P201 66207 66P207 Unit mm ADIP64 C 750 1 78 30 15 0 25 0 05 19 0530 30 Notes for Mounting the Surface Mount Type Package The SOP QFP TSOP SOJ QFJ PLCC SHP and BGA are surface mount type packages which are very susceptible to heat in reflow mounting and humidity absorbed in storage Therefore before you perform reflow mounting contact Oki s responsible sales person for the product name package name pin number package co
2. Nn Min Typ Max Parameter Symbol Condition n m Unit Resolution n See n 10 10 Bit Absolute Error EA circuit i le 3 88 i Vn Vpp um Relative Error R Vag GND 0V 1 5 1 0 Zero Point Error Ez Analog input source 0 0 3 0 12 0 impedance LSB Full Scale Error Er lt 5kQ 0 5 l 0 3 5 3 5 Differential Linearity Error Ep One channel 43 0 42 0 conversion time Crosstalk Ec tc 64us 0 5 405 Vpp 5V Ta 25 C HALT HOLD ti d i UNIDOS Vpp 5V 10 fogc 10MHz Ta 40 to 85 C a Min Typ Max Parameter Symbol Condition Unit Resolution n See SR 10 10 Bit Absolute Error EA LIN i m z 28 50 i Vn Vpp MUNERE Relative Error R Vac GND 0V 41 0 0 5 Zero Point Error Ez Analog input source 40 5 405 420 41 0 impedance LSB Full Scale Error Er lt 5kQ 1 0 1 5 3 5 2 0 Differential Linearity Error Ep One channel 20 10 conversion time Crosstalk Ec tc 64us 0 5 05 Vpp 5V Ta 25 C 24 30 MSM66201 66P201 66207 66P207 OKI Semiconductor e Recommended circuit Reference Voltage VREF Vpp 45V dt T 0 1 47 01 47 Ri uF uF uF uF e
3. Register addressing Page addressing Pointing register indirect addressing Stack addressing Immediate value addressing 5 ports x 8 bits Each bit can be assigned to input or output 1 port x 8 bits 4 Auto reload timer mode Clock output mode Capture register mode Real time output mode 1channel Synchronous UART switchable mode with baud rate generators 4 8 channels 1 Internal 16 external 2 Software clock stop mode Software CPU stop mode Hardware CPU stop mode 1 30 OKI Semiconductor MSM66201 66P201 66207 66P207 Package 64 pin plastic shrink DIP SDIP64 P 750 1 78 MSM66201 xxxSS MSM66P201 xxxSS MSM66207 xxxSS MSM66P207 xxxSS 64 pin plastic QFP OFP64 P 1414 0 80 BK MSM66201 xxxGSBK MSM66207xxxGS BK 68 pin plastic QFJ PLCC QFJ68 P 5950 1 27 MSM66201 xxxJS MSM66P201 xxxJS MSM66207 xxxJS MSM66P207 xxxJS 64 pin ceramic piggyback ADIP64 C 750 1 78 MSM66G207VS xxx indicates the code number The piggyback type is used only for engineering samples 2 30 MSM66201 66P201 66207 66P207 OKI Semiconductor BLOCK DIAGRAM r o L 0d QV 0 0d 00V 8x LS L0c99INSIN SXIL L0c99INSIN Lx Km lt gt Kr KR P3 EK P2 lt gt Po Ld SLV k Ldi 8Y SS m LS ec cc a 2 SS SE cC CzZL LLI GO a 4 AQV3d wow NEN s o Sa 83
4. Parameter Symbol Condition Min Max Unit Clock OSC Pulse Width tow 50 Serial Clock Pulse VVidth teckw Stow Output Data Setup Time terMXS 8tyw 40 SE Output Data Hold Time teTMXH 6tew 20 Ci 50pF Input Data Setup Time SRMXS 2l w 10 Input Data Hold Time teRMXH 50 Slave mode Vpp 5V 10 Ta 40 to 85 C Parameter Symbol Condition Min Max Unit Clock OSC Pulse Width tow 50 Serial Clock Pulse Width teckw Stow Output Data Setup Time tersxs 6tyw 40 Output Data Hold Time sTSXH CI 50pF 6tgw 20 Input Data Setup Time tensxs 100 Input Data Hold Time tsRSXH 100 22 30 OKI Semiconductor ISTXH dens OKI Semiconductor MSM66201 66P201 66207 66P207 A D Converter Characteristics e Operating range Parameter Symbol Condition Min Typ Max Unit Power Supply Voltage Vpp fosc lt 10MHz 45 5 5 Analog Reference Voltage Vn 4 5 Vpp V Analog Input Voltage VAI VaG VR Analog Reference Power RR Vag GND DY 16 A ko Voltage Resistance Operating Temperature Top Vpp 5V 10 40 85 C e A D Converter accuracy Normal operation mode Vpp 5V 10 fosc 10MHz Ta 40 to 85 C
5. 3 46 P5 0 AI0 A11 P1 3 4 45 P4 7 TRNS3 A12 P1 4 5 44 P4 6 TRNS2 A13 P1 5 6 43 P4 5 TRNS1 A14 P1 6 7 42 P4 4ITRNSO A15 P1 7 8 41 P4 3 PWM1 P2 0 9 40 P4 2 PWMO P2 1 10 39 P4 1 TM1CK P2 2 11 38 P4 0 TMOCK CLKOUT P2 3 12 37 P3 7 TM3I0 RESOUT 13 36 P3 6 TM2I0 ALE T4 35 P3 5 TM110 PSEN 15 C 34 P3 4 TMOIO RD 16 33 P3 3 INTT EB ERE R ERI E S E E RI E El B e gt lt o ob s e m oi TIT TITI PEPPPEPSS ano Go as E CO XxX x x x E oaf ef SC e 64 Pin Plastic QFP 5 30 MSM66201 66P201 66207 66P207 OKI Semiconductor PIN CONFIGURATION TOP VIEW Continued gt Rc ow rod uw edm E E S n lt re s s g s s Z 2 E lt E RII ILLIS E S 8 ES 8 B Bi E ILI LINVE Ed PF C 0I0INL y d er OILIALL G Ed 97 0IZIN1 9 d Zt OIEIWLI d BP ON IEF YJOIN LO td OS YILINLUL vd ES OINMd c vd ES LINMd E vd ES 0SNH1 y vd VS LSNH1 9 vd SS ZSNH1 9 pd 9S gSNHI rd ZS 0IV 0 Sa BE LIV L Sd 6S zIV z 9d 09 C e ed agia baH d ka N H kel H li RE eo ot OQ b 3 8 O9 r S c Zort wm iO w w w Z E ZZ ee ei ei ei ei ei ei D D D D D c5 gt D n D Oo n nm n n ox s lt S Q e TS SH
6. Ex LEIO t4 4114114 HITIOHINOJ INILSAS a a os al SHQ 8 X AZE d309310 NOILONYLSNI WOH nw V SHQ 8 X 0L WV Cx INOJ dya Jd AGOINIIN SINYLSNOJ H AGVGOAINIL d01V Inn NJ N JJV W gyl P oO 1 0 0311 dSS Tam TN H nosy NVGHdisId mmm um e LINI C d IdfHHINI T O1NI C d RS INN V0 IWWd Etd WMd gt _ OWMd 2 bd Le ONE 7 IW 9d AN02 a 0 Wed lt gA SNHL Z vd a NOIL l I lt das 0SNH1 yyd gt 2XU9 Zd lH0d ox 2XH Zd wis gt in XH I Ed OIEINL d t0 lt gt UJINIL 0I0N L P d e W2LNULtd M W20NU0td 3 30 OKI Semiconductor MSM66201 66P201 66207 66P207 PIN CONFIGURATION TOP VIEW ADO PO 0 1 64 Von AD1 P0 1 2 U 63 VREF AD2 PO 2 3 62 AGND AD3 PO 3 4 61 P5 7 AI7 ADA PO A 5 60 P5 6 AI6 AD5 POS 6 59 P5 5
7. Input Leakage Current 3 6 7 1 1 Input Current 5 Illu Vi Vpp 0V 17 20 LA Input Current 8 10 10 H Output Current 1 2 H Output Current 2 k 1 A L Output Current 1 Ipse 10 E L Output Current 2 v 5 Output Leakage Current 1 2 4 Lo Vo Vpp 0V 2 uA Input Capacitance Ci f 1MHz 5 Output Capacitance Co Ta 25 C 7 pr Analog Reference Power ler AD in operation 0 3 2 mA Supply Gurrent A D stopped 0 5 10 HA Current Consumption E Vpp 2V 0 2 10 uA during STOP 1 100 Current Consumption lii Z 6 10 during HALT fosc 10MHz 8 15 f No Load 20 35 mA Current Consumption Ipp d 30 40 Note Applied to PO Applied to P1 P2 P3 and P4 Applied to P5 Applied to ALE PSEN RD WR and RESOUT 1 2 3 4 5 Applied to RES and NMI 6 7 8 Applied to READY and EA Applied to FLT Applied to OSCp Vpp or GND for ports serving as the input pin No load for any other Applied to MSM66P201 66P207 19 30 OKI Semiconductor MSM66201 66P201 66207 66P207 AC Characteristics External program memory control Vpp 5V 10 Ta 40 to 85 C Parameter Symbol Condition Min Max Unit Clock OSC Pulse tow 50 ALE Pulse Width taw
8. User Stack Pointer USP Indirect r Example LC A 100H USP peii ROM USP gt gt 0 to 65535 3 Index Register X1 X2 Indirect F Example LG A 100H X1 1 ROM XI I i 0 to 65535 b RAM Indirect r Example LC A 2000H 80H RAM 80H ROM 0 to 65535 16 30 OKI Semiconductor MSM66201 66P201 66207 66P207 MEMORY MAPS Program Memory Space 0000H 0000H Vector Table Area T 0027H 40 bytes nterna 0028H VCAL ROM Area Table Area 0037H 16 bytes 0038H 7FFFH External Memory FFFFH 7FFFH MSM66201 3FFFH Data Memory Space 0000H 0000H 007FH SFR Area Special i 0080H Function Zero 00BFH PR Area Registors Page OOCOH 7777777771 OOFFH PORT A DC 100H TIMER PWM Internal 007FH etc i RAM 0080H PRO 4 Area PR1 82 PR2 T 047FH PR3 T X2 PRA DP PR5 86 PR6 USP sien pegi xterna Memoly Area JL FFFFH 047FH MSM66201 027FH Low Order High Order 17 30 OKI Semiconductor MSM66201 66P201 66207 66P207 ABSOLUTE MAXIMUM RATINGS Ta 25 C Parameter Symbol Condition Rating Unit Supply Vol
9. lt lt lt lt lt 22222228 dd N3Sd 31V DEI d 1n0319 ccd L d 0 d ON ZldialvY 9 Ld V IV D Ld lV V Ld clV Ld LIV Ld 0LV L Ld 6V 0 Ld 8V NC No connection pin 68 Pin Plastic QFJ PLCC 6130 OKI Semiconductor MSM66201 66P201 66207 66P207 PIN DESCRIPTION Symbol Type Description P0 0 P0 7 1 0 PO 8 bit input output port Each bit can be assigned to input or output ADO AD7 AD Outputs the lower 8 bits of program counter during external program memory fetch and receives the addressed instruction under the control of PSEN This pin also outputs the address and outputs or inputs data during an external data memory access instruction under the control of ALE RD and VVR P1 0 P1 7 1 0 P1 8 bit input output port Each bit can be assigned to input or output A8 A15 A Outputs the upper 8 bits of program counter PCg 45 during external program memory fetch This pin also outputs the upper 8 bits of address during external data memory access instructions P2 0 P2 2 1 0 P2 8 bit input output port Each bit can be assigned to input or output P2 3 CLKOUT CLKOUT Output pin for supplying a clock to peripheral circuits P2 4 HOLD HOLD Input pin to request the CPU to enter the hardware power down state P2 5 HLDA HLDA HOLD ACKNOWLEDGE the HLDA signal appears in response to the HOLD signal and indicates that the CPU has entered the power down state P2 6 TyC TyC Tran
10. 80H 0051 Serial port transmission data buffer register STBUF W undefined 0054 Serial port receiving mode control register SRCON R W 00H 0055 Serial port receiving data buffer register SRBUF R undefined 0056 Serial port receiving error register SRSTAT FOH 0058s A D scan mode register ADSCAN R W 80H 0059 A D select mode register ADSEL A0H 0060 oe A D conversion result register 0 ADCRO R 8 16 undefined Note A x mark in the address column indicates that there is a bit that does not exist in the register 11 30 OKI Semiconductor MSM66201 66P201 66207 66P207 SFR Continued Address Name Abbreviated R W 8 16 bit Reset HEX Name operation e A D conversion result register 1 ADCR1 0063 Fu s ND conversion result register 2 ADCR2 0065 C a A D conversion result register 3 ADCR3 0067 R undefined 00687x 0069 A D conversion result register 4 ADCR4 O06Ax f 006 A D conversion result register 5 ADCR5 006C _ A D conversion result register 6 ADCR6 8 16 006D 006Exx f OF A D conversion result register 7 ADCR7 0070 00H PWM 0 counter PWMCO F 0071 00H 0072 00H 073 PWM 0 register PWMRO om RE PWM 1 counter PWMC1 RW Le 0075 00H PWM 1 register PWMR1 NE 0077 00H 0078 PWM 0 control register PWCONO 00H 007A PWM 1 countrol register PWCON1 00H Note A mark in the a
11. AI5 AD6 P0 6 _ 7 C 58 P5 4 Al4 AD7 P0 7 8 57 P5 3 AI3 A8 P10 9 56 P5 2 Al2 A9 P1 1 10 55 P5 1 AH A10 P1 2 11 54 P5 0 Al0 A11 P1 3 12 53 P4 7 TRNS3 M12 P1 4 13 52 P4 6 TRNS2 M3 P1 5 14 51 P4 5 TRNS1 A14 P1 6 15 50 P4 4 TRNSO A15 P1 7 16 49 P4 3 PWM1 P2 0 17 48 P4 2 PWMO P2 1 18 47 P4 1 TM1CK P22 19 46 P4 0 TM00K CLKOUT P2 3 20 45 P3 7 TM3IO RESOUT 21 44 P3 6TM210 ALE 22 43 P3 5 TM110 PSEN 23 42 P3 4 TMOIO RD 24 41 P3 3 INTT WR 25 40 P3 2 INTO READY 26 39 P3 1 RXD FA 27 C 38 P3 0 TXD FLT 28 37 P2 7 RXC RES 29 36 P2 6 TXC osco 30 35 P2 5 HLDA OSC1 31 34 P2 4 HOLD GND 32 33 NMI 64 Pin Plastic Shrink DIP 4130 OKI Semiconductor MSM66201 66P201 66207 66P207 PIN CONFIGURATION TOP VIEW Continued sdasas58 roO m zo lt lt lt lt lt lt e lt lt lt lt lt ROO 6 Y eo qd Ga uz mox S S s S 5 5 ES S ZS 6 e e 6 E E B 5 E E s ll E E E 6 E E el A8 P1 0 1 48 P5 2 AI2 A9 P1 1 2 9 47 P5 1 Al1 A10 P1 2
12. Package The SOP QFP TSOP SOJ QFJ PLCC SHP and BGA are surface mount type packages which are very susceptible to heat in reflow mounting and humidity absorbed in storage Therefore before you perform reflow mounting contact Oki s responsible sales person for the product name package name pin number package code and desired mounting conditions reflow method temperature and times 27 30 OKI Semiconductor MSM66201 66P201 66207 66P207 Unit mm QFP64 P 1414 0 80 BK 016 82 0 3 014 0 0 2 INDEX MARK Mirror finish 0 17 0 05 2 4MAX 0 1660 0 67 0 15 042 SEATING PLANE Package material Epoxy resin Lead frame material 42 alloy Pin treatment Solder plating Solder plate thickness 5 um or more Package weight g 0 87 TYP Notes for Mounting the Surface Mount Type Package The SOP QFP TSOP SOJ QFJ PLCC SHP and BGA are surface mount type packages which are very susceptible to heat in reflow mounting and humidity absorbed in storage Therefore before you perform reflow mounting contact Oki s responsible sales person for the product name package name pin number package code and desired mounting conditions reflow method temperature and times 28 30 OKI Semiconductor MSM66201 66P201 66207 66P207
13. SCB2 0 15 0 PC LRB SSP 15 0 mI X1 X2 DP USP 7 0 7 0 R1 RO R3 R2 R5 R4 R7 R6 9 30 OKI Semiconductor MSM66201 66P201 66207 66P207 SFR Address Name Symbol R W 8 16 bit Reset HEX Operation am System stack printer Ese m Local register base ms undefined 0003 ALRB zem R W 8 16 e Program status word AFSW a 0005 PSWH DCH zs I Accumulator ACG m 0010 Standby control register SBYCON FSH 0011 Watchdog timer WDT W aa 0012 Peripheral control register PRPHF R W FDH 0013 Stop code acceptor STPACP W o EN Interrupt request register IRQ wl 0019 8 16 00H 001A 00H omg Interrupt enable register IE 00H 00106 External linterrupt control register EXICON FCH 0020 Port 0 data register PO undefined 0021 Port 0 mode register POIO 00H 0022 Port 1 data register P1 undefined 0023 Port 1 mode register P1IO R W 00H 0024 Port 2 data register P2 undefined 0025 Port 2 mode register P210 8 00H 00267x Port 2 secondary function control register P2SF 07H 0028 Port 3 data register P3 undefined 0029 Port 3 mode register P310 00H 002A Port 3 secondary function control register P3SF 00H 002C Port 4 data register P4 undefined 002D Port 4 mode register palo 00H 002E Port 4 secondary funct
14. Al0 7 GND 0V Analog Input AGND 0 1 uF e R Analog input source impedance lt 5kQ e A D Converter conversion characteristics 1 HEX EF Er MAX MIN Fi Ideal Conversion center line ______ Actual Conversion width Conversion Code Actual Conversion center line l VREF V Ez Ez MIN Kia Analog Input Conversion Characteristics Diagram 1 25130 OKI Semiconductor MSM66201 66P201 66207 66P207 Absolute error EA The absolute error indicates a difference between actual conversion and ideal conversion excluding a quantizing error The absolute error of the A D converter gets larger as it approaches the zero point or full scale Refer to Conversion Characteristics Diagram 1 Relative error Eg The relative error indicates a deviation from a line which connects the center point of the zero point conversion width with that of the full scale conversion width excluding a quantizing error The relative error of this A D converter is almost due to a differential linearity error Zero point error Ez and full scale error Ep The zero point error and full scale error indicate a difference between actual conversion and ideal conversion at the zero point and full scale respectively Refer to Conversion Characteristics Diagram 1 A D Converter Conversion Characteristics 2 temperature characteristics HEX LSB 25 C 3FF al 85 C 3 H ES Conversion Dif
15. E2E1027 27 Y4 This version Jan 1998 Previous version Nov 1996 OKI Semiconductor MSM66201 66P201 66207 66P207 OLMS 66K Series 16 Bit Microcontroller GENERAL DESCRIPTION The MSM66201 66207 is a high performance microcontroller that employs OKI original nX 8 200 CPU core This chip includes a 16 bit CPU ROM RAM I O ports multifunction 16 bit timers 10 bit A D converter serial I O port and pulse width modulator PWM The MSM66P201 66P207 is the OTP One Time Programmable version of the MSM66201 66207 FEATURES 64K address space for program memory 64K address space for data memory High speed execution Minimum cycle for instruction Powerful instruction set Abundant addressing modes O port Input output port Input port Built in multifunctional 16 bit timer Following 4 modes can be set for each timer Serial port 16 bit pulse width modulator Watchdog timer Transition detector e 10 bit A D converter Interrupts Nonmaskable Maskable Stand by function STOP mode HALT mode HOLD mode Internal ROM MSM66201 16K bytes MSM66207 32K bytes Internal RAM MSM66201 512 bytes MSM66207 1024 bytes 400ns 10M Hz Instruction set superior in orthogonal matrix 8 16 bit data transfer instructions 8 16 bit arithmetic instructions Multiplication and division operation instructions Bit manipulation instructions Bit logic instrucitons ROM table reference instructions
16. Stevv 20 PSEN Pulse Width tpw Atyw 20 PSEN Pulse Delay Time tpAD l w 20 tow 20 Low Address Setup time taas 219w 35 2tow 20 H Low Address Hold Time TAAH Ci 50pF tevv 20 tew440 High Address Delay Time TAAD tow 20 tow 40 High Address Hold Time tapy tow 20 tow 40 Instruction Setup Time tis 100 Instruction Hold Time Du 0 tow 20 e External data memory control Vpp 5V 10 Ta 40 to 85 C Parameter Symbol Condition Min Max Unit Clock OSC Pulse tow 50 ALE Pulse Width taw Stevv 20 RD Pulse Width trw 4tgw 20 E WR Pulse Width tww Atow 20 RD Pulse Delay Time trap tow 20 tow 20 WR Pulse Delay Time twap tow 20 tow 20 Low Address Setup Time taas 2tyw 35 2tow 20 Low Address Hold Time TAAH CL 50pF low 20 tow 40 ns High Address Setup Time TAAD tow 20 tow 40 High Address Hold Time TARH tow 20 tow 40 High Address Hold Time tawH tow 20 tow 40 Memory Data Setup Time tus 100 Memory Data Hold Time tun 0 tow 20 Data Delay Time top tow 20 tow 40 Data Hold Time DH l w 20 tow 40 20 30 MSM66201 66P201 66207 66P207 ca lt m e gt em he ta ET 1 RAP8 15 e tawH 21 30 OKI Semiconductor MSM66201 66P201 66207 66P207 e Serial port control Master mode Vpp 5V 10 Ta 40 to 85 C
17. ddress column indicates that there is a bit that does not exist in the register 12 30 OKI Semiconductor MSM66201 66P201 66207 66P207 ADDRESSING MODES The MSM66201 66207 provides independent 64K byte data and 64K byte program space with various types of addressing modes These modes are shown below for both RAM for data space and ROM for program space 1 RAM Addressing Modes for data space 11 Register Direct Addressing F Example ROR DP DP 12 Displacement Addressing a Zero Page A 18H SFR 0018H b Direct Page F Example I ST xx00H A off 10H RAM xx10H 13 Pointing Register PR Indirect Addressing a Data Point DP Indirect r Example Del RAM D b User Stack Pointer USP Indirect F Example SRL 10H USP RAM USP 128 to 427 E W 13 30 OKI Semiconductor MSM66201 66P201 66207 66P207 c Index Register X1 X2 Indirect r Example INC 300H X1 mm RAM X1 01065535 A EI 14 Immediate Addressing F Example MOV ssp 27FH 2 ROM Addressing Modes for program space 2 1 Direct Addressing Example LC A 200H ROM tes 0200H 2 2 Simple Indirect Addressing a Local R
18. de and desired mounting conditions reflow method temperature and times 30 30 This datasheet has been dovvnload from www datasheetcatalog com Datasheets for electronics components
19. egister Indirect F Example LC A ERO ROM ERO r b Pointing Register Indirect 1 Data Pointer DP Indirect r Example LC A DP ROM D H 2 User Stack Pointer USP Indirect F Example LC A USP ROM USP 14 30 OKI Semiconductor MSM66201 66P201 66207 66P207 23 3 Index Register X1 X2 Indirect r Example PG SE ROM x H c System Stack Pointer SSP Indirect F Example E AE RM l SSP TEM d Local Register Base LRB Indirect F Example L ALES ROM LRB ge e RAM Indirect r Example J A 0COH RAM ROM 000H Double Indirect Addressing a Data Pointer DP Double Indirect r Example J DPJ pM RAM ROM pp b User Stack Pointer USP Double Indirect F Example LC A 2 USP RAM USP i ROM 128 to 127 15 30 OKI Semiconductor MSM66201 66P201 66207 66P207 c Index Register X1 X2 Double Indirect Example LC A 10000H x1 RAM ROM 0 to 65535 2 4 Indirect Addressing with 16 bit Offset a Pointing Register Indirect 1 Data Pointer DP Indirect F Example LG A 100H DP ROM DP I A 0 to 65535 2
20. ernal memory PSEN 0 Program Strobe Enable The strobe pulse to fetch to external program memory RD 0 Output strobe activated during a bus read cycle Used to enable data onto the bus from the external data memory WR 0 Output strobe during a bus write cycle Used as write strobe to external data memory READY I Used when the CPU accesses low speed peripherals EA I Normaly set to H level If set to L level the CPU fetches the code from external program memory FLT I If FLT is H level ALE WR RD PSEN are set to H level when reset If FLT is set to L ALE WR RD PSEN are set to floating level when reset RES I RESET input pin osco I Basic clock oscillation pin OSCT 0 Basic clock oscillation pin NMI Non maskable interrupt input pin falling edge VREF Reference voltage input pin for A D converter AGND Ground for A D converter Von System power supply GND Ground 8 30 OKI Semiconductor MSM66201 66P201 66207 66P207 REGISTERS Accumulator Control Register CR Pointing Register PR Index Register 1 Index Register 2 Data Pointer User Stack Pointer Local Register ERO ER1 ER2 ER3 ACC 15 0 PSW Bit15 Carry flag CY Bit14 Zero flag ZF Bit13 Half carry flag HC Bit12 Data descriptor DD Bit8 Master interrupt priority flag MIP Bit 9 5 4 User flag MIP Bit 2 0 System control base 2 0
21. ferential Code Linearity 2 During normal operation 1 L During HALT 000 0 Eta IVI 40 485 C Analog Input Temparature Ta Conversion Characteristics Conversion Characteristics Diagram 2 1 Diagram 2 2 Differential linearity error Ep The differential linearity error indicates a difference between the actual conversion width actual step width and ideal value 1LSB With this A D converter a voltage for actual conversion is shifted and the inclination of a voltage is changed with changes of temperature see Conversion Characteristics Diagram 2 1 Specifications described in the foregoing tables are established from Eta shown in Conversion Characteristics Diagram 2 1 Ep Eta 1 LSB Conversion Characteristics Diagram 2 2 shows temperature characteristics of differential linearity of Esin Conversion Characteristics Diagram 2 1 26 30 OKI Semiconductor MSM66201 66P201 66207 66P207 PACKAGE DIMENSIONS Unit mm SDIP64 P 750 1 78 57 6 0 3 eieieieieieieieieieieieleieieleieieieiefeieielefeieleleteielel x O INDEX MARK 2 10 0 1 Z Ox 0 25 905 1 24 TYP 1778 0 4833 er Package material Epoxy resin Lead frame material Cu alloy Pin treatment Solder plating Solder plate thickness 5 um or more Package weight g 8 70 TYP Notes for Mounting the Surface Mount Type
22. ion control register PASF 00H 002F Port 5 P5 R 0030 00H 08 Timer 0 counter TMO 00H a Timer 0 register TMRO 2 0033 00H 0034 ias 19 00H 0935 Timer 1 counter TM1 00H NL SU Timer 1 register TMR1 E 0037 00H Note A x mark in the address column indicates that there is a bit that does not exist in the register 10 30 OKI Semiconductor MSM66201 66P201 66207 66P207 SFR Continued Addres Name Abbreviated p w 8 1 6 bit Reset HEX Name Operation e Timer 2 counter TM2 GC 0039 00H 003A 00H 0088 Timer 2 register TMR2 00H 0036 Ge 00H 08D Timer 3 counter TM3 00H 003E 00H OF Timer 3 register TMR3 00H 0040 Timer 0 control register TCONO 00H 0041 Timer 1 control register TCON1 00H 0042 Timer 2 control register TCON2 RW 00H 0043 Timer 3 control register TCON3 00H 0046 Transition detector register TRNSIT undefined 0048 Serial port transmission baud rate generator counter STTM 00H 0049 Serial port transmission baud rate generator register STTMR 00H 004A Serial port transmission baud rate generator control STTMC OCH register 004C Serial port receiving baud rate generator counter SRTM 8 00H 004D Serial port receiving baud rate generator register SRTMR 00H 004E Serial port receiving baud rate generator control SRTMC OEH register 0050 Serial port transmission mode control register STCON
23. smitter clock input output pin P2 7 RxC RxC Receiver clock input output pin P3 0 TxD 1 0 P3 8 bit input output port Each bit can be assigned to input or output P3 1 RxD TxD Transmitter data output pin P3 2 INTO RxD Receiver data input pin P3 3 INT1 INT Interrupt request input pin P3 4 TMOIO Falling edge trigger or level trigger is selectable P3 5 TM1I0 TMOIO TMSIO One of the following signals is output or input P3 6 TM2I0 Clock at twice the frequency range of the 16 bit timer overflow P3 7 TM3I0 Load trigger signal to the capture register input Setting value output Whether the signal is input or output depends on the mode P4 0 TMOCK 1 0 P4 8 bit input output port Each bit can be assigned to input or output P4 1 TM1CK TMOCK TM1CK Clock input pins of timer 0 timer 1 P4 2 PWMO TRANS Transition detector P4 3 PWM1 The input pins which sense the falling edge and set the flag P4 4 P4 7 PWM 16 bit pulse width modulator output pin TRANS0 TRANS3 P5 0 P5 7 P5 8 bit input port AIO Al7 Al Analog signal input pin for A D converter 7 30 OKI Semiconductor MSM66201 66P201 66207 66P207 PIN DESCRIPTION Continued Symbol Type Description RESOUT 0 Outputs H level in the case of internal reset Reset to L level by program ALE 0 Address Latch Enable The timing pulse to latch the lower 8 bits of the address output from port 0 when the CPU accesses the ext
24. tage Vpp 0 3 to 7 0 Input Voltage VI 0 3 to Vpp 0 3 Output Voltage Vo GND AGND 0V 0 3 to Vpp 0 3 V Analog Ref Voltage VREF 0 3 to Vpp 0 3 Analog Input Voltage Val 0 3 to VREF 64 pin shrink DIP 930 Power Dissipation Po her package 64 pin QFP 565 mW 68 pin QFJ 1120 Storage Temperature TsTe 55 to 150 C RECOMMENDED OPERATING CONDITIONS Parameter Symbol Condition Range Unit Supply Voltage Vpp fosc 10MHz 4 5 to 5 5 V Memory Hold Voltage VppH fosc OHZ 2 0 to 5 5 Operating Frequency fosc Vpp 5V 10 Oto 10 MHz Ambient Temperature Ta 40 to 85 C MOS load 20 Fan Out N PO 2 TIL load po p P4 1 18730 OKI Semiconductor MSM66201 66P201 66207 66P207 ELECTRICAL CHARACTERISTICS DC Characteristics Vpp 5V 10 Ta 40 to 85 C Parameter Symbol Condition Min Typ Max Unit H Input Voltage 1 3 6 2 4 Vpp 0 3 H Input Voltage 5 7 V B 4 0 Vpp 0 3 H Input Voltage 8 4 2 Vpp 0 3 H Input Voltage 2 3 6 Vpp 0 3 L Input Voltage 1 2 3 6 0 3 0 8 L Input Voltage 5 7 VIL 0 3 0 8 V L Input Voltage 8 0 3 0 4 H Output Voltage 1 4 Vos l 400uA 4 2 H Output Voltage 2 l 200uA 4 2 m L Output Voltage 1 4 U l 3 2mA 0 4 L Output Voltage 2 l 1 6mA 0 4

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