Renesas 4513 Informations techniques

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To our customers,
Old Company Name in Catalogs and Other Documents
On April 1
st
, 2010, NEC Electronics Corporation merged with Renesas Technology
Corporation, and Renesas Electronics Corporation took over all the business of both
companies. Therefore, although the old company name remains in this document, it is a valid
Renesas Electronics document. We appreciate your understanding.
Renesas Electronics website: http://www.renesas.com
April 1
st
, 2010
Renesas Electronics Corporation
Issued by: Renesas Electronics Corporation (http://www.renesas.com)
Send any inquiries to http://www.renesas.com/inquiry
.
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Résumé du contenu

Page 1 - To our customers

To our customers, Old Company Name in Catalogs and Other Documents On April 1st, 2010, NEC Electronics Corporation merged with Renesas Technology C

Page 2

4513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERS7PIN DESCRIPTIONNamePower supplyGroundVoltage drop detec-tion circuit enab

Page 3 - To all our customers

84513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERSNotes 1: Pins except above have just single function.2: The input of D6,

Page 4

4513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERS9Notes 1: The 4513 Group does not have P32 and P33.2: The 4513 Group does

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104513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERSPORT BLOCK DIAGRAMSDTQA iP 00, P 01K 00PU00DTAiP 02, P 03K 01PU01DTA iP

Page 6 - M34514E8FP

4513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERS11PORT BLOCK DIAGRAMS (continued)Synchronous clock input for serial transf

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124513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERSPORT BLOCK DIAGRAMS (continued)AIN0/CMP0-Q1Q30AIN1/CMP0++-Q32AIN2/CMP1-Q

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4513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERS13PORT BLOCK DIAGRAMS (continued)P 50– P 53DTQO P 5 A i n s t r u c t i

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144513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERSExternal interrupt circuit structure01I2201EXF1I21SNZI1P31/INT101I12Wake

Page 10 - 4513/4514 Group

154513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERSFUNCTION BLOCK OPERATIONSCPU(1) Arithmetic logic unit (ALU)The arithmeti

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164513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERS(5) Stack registers (SKS) and stack pointer (SP)Stack registers (SKs) ar

Page 12 - 2 and P33

Notice 1. All information included in this document is current as of the date this document is issued. Such information, however, is subject to chang

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174513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERS(8) Program counter (PC)Program counter (PC) is used to specify a ROM ad

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184513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERSPROGRAM MEMOY (ROM)The program memory is a mask ROM. 1 word of ROM is co

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194513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERSDATA MEMORY (RAM)1 word of RAM is composed of 4 bits, but 1-bit manipula

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204513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERSINTERRUPT FUNCTIONThe interrupt type is a vectored interrupt branching t

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214513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERS(4) Internal state during an interruptThe internal state of the microcom

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224513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERS(6) Interrupt control registers• Interrupt control register V1Interrupt

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234513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERS(7) Interrupt sequenceInterrupts only occur when the respective INTE fla

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244513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERSTable 7 External interrupt activated conditionsNameExternal 0 interruptE

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254513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERS(1) External 0 interrupt request flag (EXF0)External 0 interrupt request

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264513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERS(3) External interrupt control registers• Interrupt control register I1R

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Regarding the change of names mentioned in the document, such as Mitsubishi Electric and Mitsubishi XX, to Renesas Technology Corp.The semiconductor o

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274513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERSTIMERSThe 4513/4514 Group has the programmable timers.• Programmable tim

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284513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERSCount source• Instruction clock• Prescaler output (ORCLK)• Timer 1 under

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294513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERSFig. 19 Timers structureT4FT3F100100W31,W3001W33(Note 3)01W43(Note 3)11T

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304513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERSTable 10 Timer control registers01010101W210011Stop (state initialized)O

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314513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERS(1) Timer control registers• Timer control register W1Register W1 contro

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324513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERS(6) Timer 3 (interrupt function)Timer 3 is an 8-bit binary down counter

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334513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERSWATCHDOG TIMERWatchdog timer provides a method to reset the system when

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344513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERSSERIAL I/OThe 4513/4514 Group has a built-in clock synchronous serial I/

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354513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERSFig. 23 Serial I/O register state when transferring(1) Serial I/O regist

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364513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERS(5) How to use serial I/OFigure 24 shows the serial I/O connection examp

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DESCRIPTIONThe 4513/4514 Group is a 4-bit single-chip microcomputer de-signed with CMOS technology. Its CPU is that of the 4500 seriesusing a simple,

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374513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERSFig. 25 Timing of serial I/O data transferSINSOUTSCKSOUTSINS0S7’ S1S2S3S

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384513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERSTable 13 Processing sequence of data transfer from master to slave1-byte

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394513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERSA-D CONVERTERThe 4513/4514 Group has a built-in A-D conversion circuit t

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404513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERSQ13Q12Q11Q10A-D control register Q1Not usedAnalog input pin selection bi

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414513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERSTable 16 Change of successive comparison register AD during A-D conversi

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424513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERSFig. 28 Setting registers0 ✕✕1(Bit 3) (Bit 0)A-D control register Q2AIN4

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434513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERS(10) Operation at comparator modeThe A-D converter is set to comparator

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444513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERS(15) Notes for the use of A-D conversion 2Do not change the operating mo

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454513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERSVOLTAGE COMPARATORThe 4513/4514 Group has 2 voltage comparator circuits

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464513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERSVoltage comparator control register Q3 (Note 2)at reset : 00002at RAM ba

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24513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERSPIN CONFIGURATION (TOP VIEW) 4513 GroupM 3 4 5 1 3 M x - X X X S PM 3 4 5

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474513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERSRESET FUNCTIONSystem reset is performed by applying “L” level to RESET

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484513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERS(1) Power-on resetReset can be performed automatically at power on (powe

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494513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERS• Program counter (PC) ...

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504513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERSVOLTAGE DROP DETECTION CIRCUITThe built-in voltage drop detection circui

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514513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERSRAM BACK-UP MODEThe 4513/4514 Group has the RAM back-up mode.When the EP

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524513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERS(4) Return signalAn external wakeup signal is used to return from the RA

Page 52

534513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERSFig. 38 State transitionFig. 39 Set source and clear source of the P fla

Page 53

544513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERSTable 22 Key-on wakeup control register, pull-up control register, and i

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554513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERSCLOCK CONTROLThe clock control circuit consists of the following circuit

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564513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERSClock signal f(XIN) is obtained by externally connecting a ceramicresona

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4513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERS3PIN CONFIGURATION (TOP VIEW) 4514 GroupP12P11P10P03P02P01P00AIN3/CMP1+AIN

Page 57

574513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERSLIST OF PRECAUTIONS➀Noise and latch-up preventionConnect a capacitor on

Page 58

584513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERS➉ A-D converter-1When the operating mode of the A-D converter is changed

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594513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERS16Voltage comparator functionWhen the voltage comparator function is val

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604513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERSSYMBOLThe symbols shown below are used in the following instruction func

Page 61

614513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERSLIST OF INSTRUCTION FUNCTIONGroup-ingRAM addressesFunction(Mj(DP)) ← 1j

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624513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERSLIST OF INSTRUCTION FUNCTION (continued)Function(T1F) = 1 ?After skippin

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634513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERSLIST OF INSTRUCTION FUNCTION (continued)MnemonicTK0ATAK0TPU0ATAPU0TFR0A*

Page 64

644513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERSINSTRUCTION CODE TABLE (for 4513 Group)D3–D0Hex.notation0000000100100011

Page 65

654513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERSINSTRUCTION CODE TABLE (continued) (for 4513 Group)––TJ1A–TQ1ATQ2ATQ3A––

Page 66

664513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERSINSTRUCTION CODE TABLE (for 4514 Group)NOP–POFSNZPDIEIRCSC––AMAMCTYA–TBA

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44513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERSBLOCK DIAGRAM (4513 Group)V o l t a g e d r o p d e t e c t i o n c

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674513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERSINSTRUCTION CODE TABLE (continued) (for 4514 Group)––TJ1A–TQ1ATQ2ATQ3A––

Page 69

ParameterInstruction codeFunctionNumber ofcyclesNumber ofwordsMnemonicType ofinstructionsD9 D8 D7 D6 D5 D4 D3 D2 D1 D0Hexadecimalnotation684513/4514 G

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Skip condition Datailed descriptionCarry flag CY694513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERSTransfers the contents o

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ParameterInstruction codeFunctionNumber ofcyclesNumber ofwordsMnemonicType ofinstructionsD9 D8 D7 D6 D5 D4 D3 D2 D1 D0Hexadecimalnotation704513/4514 G

Page 72

Skip condition Datailed descriptionCarry flag CY714513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERSContinuousdescription–––

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ParameterInstruction codeFunctionNumber ofcyclesNumber ofwordsMnemonicType ofinstructionsD9 D8 D7 D6 D5 D4 D3 D2 D1 D0Hexadecimalnotation724513/4514 G

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Skip condition Datailed descriptionCarry flag CY734513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERS––––––––Skip at uncondit

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ParameterInstruction codeFunctionNumber ofcyclesNumber ofwordsMnemonicType ofinstructionsD9 D8 D7 D6 D5 D4 D3 D2 D1 D0Hexadecimalnotation744513/4514 G

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Skip condition Datailed descriptionCarry flag CY754513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERSWhen bit 2 (I12) of regi

Page 77

ParameterInstruction codeFunctionNumber ofcyclesNumber ofwordsMnemonicType ofinstructionsD9 D8 D7 D6 D5 D4 D3 D2 D1 D0Hexadecimalnotation764513/4514 G

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4513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERS5BLOCK DIAGRAM (4514 Group)V o l t a g e d r o p d e t e c t i o n c

Page 79

Skip condition Datailed descriptionCarry flag CY774513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERS––––––––––––––––––––––––

Page 80

ParameterInstruction codeFunctionNumber ofcyclesNumber ofwordsMnemonicType ofinstructionsD9 D8 D7 D6 D5 D4 D3 D2 D1 D0Hexadecimalnotation784513/4514 G

Page 81

Skip condition Datailed descriptionCarry flag CY794513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERS––––––––––––––––––––––––

Page 82

ParameterInstruction codeFunctionNumber ofcyclesNumber ofwordsMnemonicType ofinstructionsD9 D8 D7 D6 D5 D4 D3 D2 D1 D0Hexadecimalnotation804513/4514 G

Page 83

Skip condition Datailed descriptionCarry flag CY814513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERS–––––(SIOF) = 1––––––(AD

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824513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERSV13V12V11V10V23V22V21V20Serial I/O interrupt enable bitA-D interrupt ena

Page 85

834513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERS01010101W210011Stop (state initialized)OperatingInstruction clock divide

Page 86

844513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERSSelected pinsAIN0AIN1AIN2AIN3AIN4 (Not available for the 4513 Group)AIN5

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854513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERSK03K02K01K00Key-on wakeup control register K0PU03PU02PU01PU00Key-on wake

Page 88

864513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERSTable 25 Product of built-in PROM versionProductM34513E4SP/FPM34513E8FPM

Page 89

64513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERSPERFORMANCE OVERVIEWFunction1231280.75 µs (at 4.0 MHz oscillation frequen

Page 90

874513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERSFig. 52 Flow of writing and test of the product shipped in blankFig. 51

Page 91

884513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERSParameterSupply voltageInput voltage P0, P1, P2, P3, P4, P5, RESET,XIN,

Page 92

894513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERSSymbolVDDVRAMVSSVIHVIHVIHVIHVILVILVILIOH(peak)IOH(avg)IOL(peak)IOL(peak)

Page 93

904513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERSVDD = 2.5 V to 5.5 VVDD = 2.0 V to 5.5 VVDD = 2.5 V to 5.5 VVDD = 4.0 V

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914513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERSELECTRICAL CHARACTERISTICS(Mask ROM version:Ta = –20 °C to 85 °C, VDD =

Page 95

924513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERSA-D CONVERTER RECOMMENDED OPERATING CONDITIONS(Comparator mode included,

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934513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERSBASIC TIMING DIAGRAMVOLTAGE COMPARATOR RECOMMENDED OPERATING CONDITIONS(

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944513/4514 GroupSINGLE-CHIP 4-BIT CMOS MICROCOMPUTERMITSUBISHI MICROCOMPUTERSSDIP32-P-400-1.78Weight(g)– 2.2JEDEC CodeEIAJ Package CodeLead MaterialA

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© 2001 MITSUBISHI ELECTRIC CORP.Printed in Japan (ROD) IINew publication, effective July. 2001.Specifications subject to change without notice.Notes r

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Rev. Rev.No. date1.0 First Edition 9808071.1 Page 1: APPLICATION revised, Table “Under development” eliminated. 010724Pages 10 to 14: PORT BLOCK DIAGR

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