CXP818P48A SONY | Alldatasheet

Document overview

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Technical content

Features

  • A wide instruction set (213 instructions) which cover various types of data — 16-bit arithmetic instruction/multiplication and division instructions/boolean bit operation instruction
  • Minimum instruction cycle During operation 333ns/12MHz (Supply voltage 3.0 to 5.5V) During operation 250ns/16MHz (Supply voltage 4.5 to 5.5V) During operation 122µs/32kHz
  • Incorporated PROM capacity 48Kbytes
  • Incorporated RAM capacity 1344bytes
  • Peripheral functions — A/D converter 8-bit, 12-channel, successive approximation system (Conversion time 20.0µs/16MHz) — Serial interface Incorporated 8-bit and 8-stage FIFO, 1-channel (1 to 8 bytes auto transfer) 8-bit serial I/O, 1-channel — Timer 8-bit timer, 8-bit timer/counter, 19-bit time base timer 32kHz timer/counter — High precision timing pattern generator PPG 19 pins 32-stage programmable RTG 5-pins 2-channel — PWM/DA gate output 12-bit, 2-channel (Repetitive frequency 62kHz/16MHz) — FRC capture unit Incorporated 26-bit and 8-stage FIFO — PWM output 14-bit, 1-channel — Remote control receiving circuit 8-bit pulse measuring counter, 6-stage FIFO
  • Interruption 20 factors, 15 vectors, multi-interruption possible
  • Standby mode SLEEP/STOP
  • Package 100-pin plastic QFP/LQFP – 1 – CXP818P48A E94Z13-ST CMOS 8-bit Single Chip Microcomputer Sony reserves the right to change products and specifications without prior notice. This information does not convey any license by any implication or otherwise under any patents or other right. Application circuits shown, if any, are typical examples illustrating the operation of the devices. Sony cannot assume responsibility for any problems arising out of the use of these circuits. 100 pin QFP (PIastic) 100 pin LQFP (PIastic) Structure Silicon gate CMOS IC

– 2 – CXP818P48A PI6/SO1 PE1/EC /LiteDiagLines PA0 to PA7 PB0 to PB7 PC0 to PC7 PD0 to PD7 PE0 to PE1 PE2 to PE7 PF0 to PF3 PF4 to PF7 PG0 to PG7 PI1 to PI7 PJ0 to PJ7 Vss VDD MP XTAL EXTAL CLOCK GENERATOR/ SYSTEM CONTROL RAM

1344 BYTES

(CH0) FIFO

8 BIT TIMER/COUNTER 0

8 BIT TIMER 1

14 BIT PWM GENERATOR

12 BIT PWM GENERATOR CH0

12 BIT PWM GENERATOR CH1 4PE7/DAB1

/LiteDiagLinesNMI PRESCALER/ TIME BASE TIMER REMOCON INPUT FIFO SERIAL INTERFACE UNIT (CH1) CH0 CH1 PORT J PC3/RTO3 to PC7/RTO7 Vpp PA0/PPO0 to PC2/PPO18 PI3/ADJ Block Diagram

– 3 – CXP818P48A Pin Configuration 1(Top View) 100 pin QFP package PB5/PPO13 PB4/PPO12 PB3/PPO11 PB2/PPO10 PB1/PPO9 PB0/PPO8 PC7/RTO7 PC6/RTO6 PC5/RTO5 PC4/RTO4 PC3/RTO3 PC2/PPO18 PC1/PPO17 PC0/PPO16 PJ7 PJ6 PJ5 PJ4 PJ3 PJ2 PJ1 PJ0 PD7 PD6 PD5 PD4 PD3 PD2 PD1 PD0 PI6/SO1 PI7/SI1 PE0/INT0 PE1/EC/INT2 PE2/PWM0 PE3/PWM1 PE4/DAA0 PE5/DAA1 PE6/DAB0 PE7/DAB1 PG0 PG1 PG2 PG3 PG4 PG5 PG6/EXI0 PG7/EXI1 AN0 AN1 AN2 AN3 PF0/AN4 PF1/AN5 PF2/AN6 PF3/AN7 AV DD AV REF AV SS PF4/AN8 PB6/PPO14 PB7/PPO15 PA0/PPO0 PA1/PPO1 PA2/PPO2 PA3/PPO3 PA4/PPO4 PA5/PPO5 PA6/PPO6 PA7/PPO7 Vpp V DD V SS TX TEX PI1/RMC PI2/PWM PI3/TO/ADJ PI4/INT1/NMI PI5/SCK1 PH7PH6 PH5 PH4 PH3 PH2 PH1 PH0MP RSTV SS XTALEXTAL CS0SI0SO0SCK0 PF7/AN11 PF6/AN10PF5/AN9 4039383736353431 32 33 41 42 43 44 45 46 47 48 49 50 8182838488 87 86 85899010 099 98 97 96 95 94 919293 Note) 1. Vpp (Pin 90) is always connected to VDD . 2. Vss (Pins 41 and 88) are both connected to GND.

– 4 – CXP818P48A Pin Configuration 2(Top View) 100 pin LQFP package PB3/PPO11 PB2/PPO10 PB1/PPO9 PB0/PPO8 PC7/RTO7 PC6/RTO6 PC5/RTO5 PC4/RTO4 PC3/RTO3 PC2/PPO18 PC1/PPO17 PC0/PPO16 PJ7 PJ6 PJ5 PJ4 PJ3 PJ2 PJ1 PJ0 PD7 PD6 PD5 PD4 PD3 PE1/EC/INT2 PE2/PWM0 PE3/PWM1 PE4/DAA0 PE5/DAA1 PE6/DAB0 PE7/DAB1 PG0 PG1 PG2 PG3 PG4 PG5 PG6/EXI0 PG7/EXI1 AN0 AN1 AN2 AN3 PF0/AN4 PF1/AN5 PF2/AN6 PF3/AN7 AV DD AV REF PB4/PPO12 PB5/PPO13 PB6/PPO14 PB7/PPO15 PA0/PPO0 PA1/PPO1 PA2/PPO2 PA3/PPO3 PA4/PPO4 PA5/PPO5 PA6/PPO6 PA7/PPO7 Vpp V DD V SS TX TEX PI1/RMC PI2/PWM PI3/TO/ADJ PI4/INT1/NMI PI5/SCK1 PI6/SO1 PI7/SI1 PE0/INT0 PD2 PD1 PD0 PH7 PH6 PH5 PH4 PH3 PH2 PH1 PH0MP RSTV SS XTALEXTAL CS0SI0SO0SCK0 PF7/AN11 PF6/AN10PF5/AN9 PF4/AN8 AV SS 7677787980 26 27 28 29 30 4039383736353431 32 33 41 42 43 44 45 46 47 48 49 50 8182838488 87 86 85899010 099 98 97 96 95 94 919293 Note) 1. Vpp (Pin 88) is always connected to VDD . 2. Vss (Pins 39 and 86) are both connected to GND.

– 5 – CXP818P48A Output/ Real time Output Output/ Real time Output I/O/ Real time Output I/O/ Real time Output I/O Input/input Input/input/input Output/output Output/output Output/output Output/output Output/output Output/output Input Input/input Output/input I/O Ouput Input Input (Port A) 8-bit output port. Data is gated with PPO contents by OR-gate and they are output. (8 pins) (Port B) 8-bit output port. Data is gated with PPO contents by OR-gate and they are output. (8 pins) (Port C) 8-bit I/O port, enables to specify I/O by bit unit. Data is gated with PPO or RTO contents by OR-gate and they are output. (8 pins) (Port D) 8-bit I/O port. Enable to specify I/O by 4-bit unit. Enables to drive 12mA sink current. (8 pins) (Port E) 8-bit port. Lower 2 bits are input pins and upper 6 bits are output pins. (8 pins) Analog input pins to A/D converter. (12 pins) (Port F) Lower 4 bits are input port and upper 4 bits are output port. Lower 4 bits also serve as standby release input pin. (8 pins) Serial clock (CH0) I/O pin. Serial data (CH0) output pin. Serial data (CH0) input pin. Serial chip select (CH0) input pin. External event input pin for timer/counter. Input pin to request external interruption. Active when falling edge. Input pin to request external interruption. Active when falling edge. PWM output pins. (2 pins) DA gate pulse output pins. (4 pins) Programmable pattern generator (PPG) output. Functions as high precision real time pulse output port. (19 pins) Real time pulse generator (RTG) output. Functions as high precision real time pulse output port. (5 pins) Symbol I/O Description PA0/PPO0 to PA7/PPO7 PB0/PPO8 to PB7/PPO15 PC0/PPO16 to PC2/PPO18 PC3/RTO3 to PC7/RTO7 PD0 to PD7 PE0/INT0 PE1/EC/INT2 PE2/PWM0 PE3/PWM1 PE4/DAA0 PE5/DAA1 PE6/DAB0 PE7/DAB1 AN0 to AN3 PF0/AN4 to PF3/AN7 PF4/AN8 to PF7/AN11 SCK0 SO0 SI0 CS0 Pin Description

– 6 – CXP818P48A PG0 to PG5 PG6/EXI0 PG7/EXI1 PH0 to PH7 PI1/RMC PI2/PWM PI3/TO/ADJ PI4/INT1/ NMI PI5/SCK1 PI6/SO1 PI7/SI1 PJ0 to PJ7 EXTAL XTAL TEX TX RST MP AV DD AV REF AVss V DD Vpp Vss Input Input/input Input/input Output I/O/input I/O/output I/O/output/output I/O/input/input I/O/I/O I/O/output I/O/input I/O Input Output Input Output Input Input Input External input pin to FRC capture unit. (Port G) 8-bit input port. (8 pins) (Port H) N-ch open drain output of middle tension proof (12V) and high current (12mA). (8 pins) Remote control receiving circuit input pin. 14-bit PWM output pin. Timer/counter, 32kHz oscillation adjustment output pin. Input pin to request external interruption and non maskable interruption. Active when falling edge. Serial clock (CH1) I/O pin. Serial data (CH1) output pin. Serial data (CH1) input pin. (Port I) 7-bit I/O port. I/O port can be specified by the bit unit. (7 pins) (Port J) 8-bit I/O port. Function as standby release input can be specified by the bit unit. I/O can be specified by the bit unit. Connecting pin of crystal oscillator for system clock. When supplying the external clock, input the external clock to EXTAL pin and input opposite phase clock to XTAL pin. Connecting pin of crystal oscillator for 32kHz timer clock. When used as event counter, input to TEX pin and leave TX pin open. (Feedback resistor is not removed.) System reset pin of active "Low" level. Microprocessor mode input pin. Always connect to GND. Positive power supply pin of A/D converter. Reference voltage input pin of A/D converter. GND pin of A/D converter. Positive power supply pin. V CC supply for writing of built-in PROM. Under normal operating conditions, connect to VDD . GND pin. Connect both Vss pins to GND. Symbol I/O Description

– 7 – CXP818P48A Data bus RD (Port D) /LiteDiagLines/LiteDiagLines/LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines/LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLinesPort D direction/LiteDiagLines/LiteDiagLines/LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines/LiteDiagLines/LiteDiagLines Port D data High current 12mA IP (Every 4 bits) /LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines PD0 to 3 PD4 to 7 PPO, RTO data Data bus RD (Port C) /LiteDiagLines/LiteDiagLines/LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines/LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines Port C direction /LiteDiagLines/LiteDiagLines/LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines/LiteDiagLines/LiteDiagLines Port C data Input protection circuit IP (Every bit) /LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines Port C 16 pins Hi-Z Hi-Z When reset PA0/PPO0 to PA7/PPO7 PB0/PPO8 to PB7/PPO15 PC0/PPO16 to PC2/PPO18 PC3/RTO3 to PC7/RTO7 Port D 8 pins 8 pins Hi-Z PD0 to PD7 /LiteDiagLines/LiteDiagLines/LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines/LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLinesPPO data Data bus Output becomes active from high impedance by data writing to port register. Port A or Port B RD Input/Output Circuit Formats for Pins Port A Port B Pin Circuit format

– 8 – CXP818P48A RD (Port F) Data bus /LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines IP Input multiplexer A/D converter 2 pins Hi-Z Hi-Z Pin When resetCircuit format PE0/INT0 PE1/EC/INT2 PE2/PWM0 PE3/PWM1 PE4/DAA0 PE5/DAA1 4 pins 2 pins 4 pins Hi-Z Hi-Z H level PE6/DAB0 PE7/DAB1 Data bus RD (Port E) /LiteDiagLines/LiteDiagLines/LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines/LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines/LiteDiagLines /LiteDiagLines /LiteDiagLines /LiteDiagLines /LiteDiagLines/LiteDiagLines/LiteDiagLinesDA gate output Hi-Z control MPX /LiteDiagLines/LiteDiagLines/LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines/LiteDiagLines/LiteDiagLines Port E data Port/DA output select Data bus RD (Port E) /LiteDiagLines/LiteDiagLines/LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines/LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines/LiteDiagLines /LiteDiagLines /LiteDiagLines /LiteDiagLines /LiteDiagLines/LiteDiagLines/LiteDiagLines DA gate output or PWM output Hi-Z control MPX /LiteDiagLines/LiteDiagLines/LiteDiagLines/LiteDiagLines Port E data Port/DA output select /LiteDiagLines /LiteDiagLines /LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines IP RD (Port E) Data bus Schmitt input Port E AN0 to AN3 /LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines IP A/D converter Input multiplexer 4 pins PF0/AN4 to PF3/AN7 Port F Port E Port E

– 9 – CXP818P48A From timer/counter, 32kHz timer /LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines/LiteDiagLines /LiteDiagLines /LiteDiagLines /LiteDiagLines /LiteDiagLines/LiteDiagLines/LiteDiagLines PI2: From 14-bit PWM PI3: MPX /LiteDiagLines/LiteDiagLines/LiteDiagLines/LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines/LiteDiagLines/LiteDiagLines/LiteDiagLines Port I data /LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines IP Data bus RD (Port I) /LiteDiagLines/LiteDiagLines/LiteDiagLines/LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines/LiteDiagLines/LiteDiagLines/LiteDiagLines Port I I/O direction /LiteDiagLines/LiteDiagLines/LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines/LiteDiagLines/LiteDiagLines Port I selection Data bus RD (Port H) /LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines/LiteDiagLines Port H data High current 12mA Middle tension proof 12V 4 pins Hi-Z Pin When resetCircuit format PF4/AN8 to PF7/AN11 A/D converterData bus RD (Port F) /LiteDiagLines/LiteDiagLines/LiteDiagLines/LiteDiagLines /LiteDiagLines Port F selection IP /LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines/LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines/LiteDiagLines/LiteDiagLines Port F data Input multiplexer Port F 8 pins Hi-Z PG0 to PG5 /LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines /LiteDiagLines /LiteDiagLines IP RD (Port G) Schmitt input Data bus Port G 6 pins Hi-Z Hi-Z PG6/EXI0 PG7/EXI1 /LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines /LiteDiagLines /LiteDiagLines IP RD (Port G) Data bus FRC capture unit Port G 2 pins PH0 to PH7 Port H 2 pins Hi-Z PI2/PWM PI3/TO/ADJ Port I Note) For PG4 and PG5 input format, there are CMOS schmitt input and TTL schmitt input with product.

– 10 – CXP818P48A SO0 output enable /LiteDiagLines /LiteDiagLinesSO0 from SIO 3 pins Hi-Z Hi-Z PIn When resetCircuit format PI1/RMC PI4/INT1/NMI PI7/SI1 PI5/SCK1 PI6/SO1 2 pins 8 pins 1 pin Hi-Z Hi-Z Hi-Z PJ0 to PJ7 /LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines Standby release /LiteDiagLines/LiteDiagLines/LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines/LiteDiagLines/LiteDiagLines Port J data /LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines IP Data bus RD (Port J) /LiteDiagLines/LiteDiagLines/LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines/LiteDiagLines/LiteDiagLines Port J direction /LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines Edge detection /LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines/LiteDiagLines /LiteDiagLines /LiteDiagLines /LiteDiagLines /LiteDiagLines/LiteDiagLines/LiteDiagLines MPX /LiteDiagLines/LiteDiagLines/LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines/LiteDiagLines/LiteDiagLines Port I data /LiteDiagLines/LiteDiagLines IP Data bus RD (Port I) /LiteDiagLines/LiteDiagLines/LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines/LiteDiagLines/LiteDiagLines Port I direction /LiteDiagLines/LiteDiagLines/LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines/LiteDiagLines/LiteDiagLines Port I function select /LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines MPX To serial CH1 Serial Note) PI5 is schmitt input PI6 is inverter input From CH1 /LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines PI1: To remote control circuit PI4: To interruption circuit PI7: To serial CH1 /LiteDiagLines/LiteDiagLines/LiteDiagLines/LiteDiagLines Port I data /LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines IP Data bus RD (Port I) /LiteDiagLines/LiteDiagLines/LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines/LiteDiagLines/LiteDiagLines Port I direction Schmitt input Port J CS0 SI0 /LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines IP Schmitt input To SIO 2 pins SO0 Port I Port I

– 11 – CXP818P48A 2 pins Oscillation PIn When resetCircuit format EXTAL XTAL /LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines IP /LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines EXTAL XTAL

  • Shows the circuit composition during oscillation.
  • Feedback resistor is removed during stop. XTAL becomes "H" level. 2 pins Oscillation TEX TX /LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines IP /LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines TEX TX
  • Shows the circuit composition during oscillation.
  • Feedback resistor is removed during 32kHz oscillation circuit stop by software. At this time TEX pin outputs "L" level and TX pin outputs "H" level. 32kHz timer counter 1 pin Hi-Z SCK0 SCK0 output enable /LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines Internal serial clock from SIO /LiteDiagLines /LiteDiagLines IP Schmitt input External serial clock to SIO 1 pin Hi-Z MP /LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines IP CPU mode 1 pin L level RST /LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines IP Schmitt input Pull-up resistorMask option OP

– 12 – CXP818P48A *1 AV DD and VDD should be set to a same voltage. *2 VIN and VOUT should not exceed VDD + 0.3V. *3 The high current operation transistors are the N-CH transistors of the PD and PH ports. Note)Usage exceeding absolute maximum ratings may permanently impair the LSI. Normal operation should better take place under the recommended operating conditions. Exceeding those conditions may adversely affect the reliability of the LSI. Supply voltage Input voltage Output voltage Medium withstand output voltage High level output current High level total output current Low level total output current Operating temperature Storage temperature Allowable power dissipation VDD Vpp AV DD AV SS VIN VOUT VOUTP IOH ∑ IOH IOL IOLC ∑ IOL Topr Tstg PD Low level output current –0.3 to +7.0 –0.3 to +13 AVss to +7.0*1 –0.3 to +0.3 –0.3 to +7.0*2 –0.3 to +7.0*2 –0.3 to +15.0 –50 130 –10 to +75 –55 to +150 600 380 V V V V V V V mA mA mA mA mA mW Incorporated PROM PH pin Total of output pins Other than high current output pins: per pin High current port pin* 3: per pin Total of output pins QFP package type LQFP package type Item Symbol Rating Unit Remarks Absolute Maximum Ratings (Vss = 0V)

– 13 – CXP818P48A Recommended Operating Conditions (Vss = 0V) Analog power supply HIgh level input voltage Low level input voltage Operating temperature Supply voltage 5.5 5.5 5.5 5.5 5.5 5.5 V DD VDD VDD VDD + 0.3 VDD + 0.2 0.3VDD 0.2VDD 0.2VDD 0.8 0.4 0.2 +75 V V V V V V V V V V V V V V V V V V Item Symbol Min. Max. Unit Remarks 4.5 3.0 2.7 2.7 2.5 3.0 0.7V DD 0.8VDD 2.2 VDD – 0.4 VDD – 0.2 –0.3 –0.3 –20 Vpp AV DD VIH VIHS VIHTS VIHEX VIL VILS VILTS VILEX Topr Guaranteed range during low speed mode (1/16 dividing clock) operation Guaranteed operation range by TEX clock Guaranteed data hold operation range during STOP CMOS schmitt input*3 TTL schmitt input*4, *7 EXTAL pin*5, *7 TEX pin*6, *7 EXTAL pin*5, *8 TEX pin*6, *8 *2, *7 *2, *8 CMOS schmitt input*3 TTL schmitt input*4, *7 EXTAL pin*5, *7 TEX pin*6, *7 EXTAL pin*5, *8 TEX pin*6, *8 VDD *1 AV DD and VDD should be set to a same voltage. *2 Normal input port (Each pin of PC, PD, PE0, PE1, PF0 to PF3, PG, PI and PJ), MP pin. *3 Each pin of CS0, SI0, SCK0, RST, PE0/INT0, PE1/EC/INT2, PG (When PG4 and PG5, are CMOS schmitt input product), PI1/RMC, PI4/INT1/NMI, PI5/SCK1 and PI7/SI1. *4 Each pin of PG4 and PG5 (When they are TTL schmitt input product). *5 It specifies only when the external clock is input. *6 It specifies only when the event count clock is input. *7 This case applies to the range of 4.5 to 5.5V supply voltage (VDD ). *8 This case applies to the range of 3.0 to 3.6V supply voltage (VDD ). *9 Vpp and VDD should be set to a same voltage. fc = less than 16MHz fc = less than 12MHz Guaranteed range during high speed mode (1/2 dividing clock) operation Vpp = VDD

– 14 – CXP818P48A VDD = 4.5V, IOH = –0.5mA VDD = 4.5V, IOH = –1.2mA VDD = 4.5V, IOL = 1.8mA VDD = 4.5V, IOL = 3.6mA VDD = 4.5V, IOL = 12.0mA VDD = 5.5V, VIH = 5.5V VDD = 5.5V, VIL = 0.4V VDD = 5.5V, VIH = 5.5V High level output voltage 4.0 3.5 0.5 –0.5 0.1 –0.1 –1.5 V V V V V µA µA µA µA µA µA µA PD, PH PA to PD, PE2 to PE7, PF4 to PF7, PH (V OL only) PI1 to PI7 PJ, SO0, SCK0 EXTAL TEX RST Item Symbol Pins Conditions Min. Other than VDD , Vss, AVDD , and AVss Clock 1MHz 0V other than the measured pins VDD IDD1 IIZ ILOH IDDS1 IDD2 IDDS2 IDDS3 C IN VOH VOL IIHE IILE IIHT IILT IILR Low level output voltage Input current Typ. 0.4 0.6 1.5 –40 –10 –400 ±10 Max. Unit DC Characteristics(VDD = 4.5 to 5.5V)

Electrical Characteristics

(Ta = –10 to +75°C, Vss = 0V) *1 When entire output pins are open. *2 When setting upper 2 bits (CPU clock selection) of clock control register CLC (address: 00FEH ) to "00" and operating in high speed mode (1/2 dividing clock). VDD = 5V ± 0.5V*2 SLEEP mode VDD = 5V ± 0.5V VDD = 5V ± 0.5V Supply current*1 Input capacity VDD = 5.5V, VIL = 0.4V VDD = 5.5V, VI = 0, 5.5V VDD = 5.5V VOH = 12V 16MHz crystal oscillation (C1 = C2 = 15pF) STOP mode (EXTAL pin and TEX pin oscillation stop) I/O leakage current Open drain output leakage current (N-CH Tr OFF in state) PA to PG, PI, PJ, MP AN0 to AN3, CS0, SI0, SO0 SCK0, RST PH 1.5 430 1000 mA mA µA µA µA pF VDD = 3V ± 0.3V SLEEP mode VDD = 3V ± 0.3V 32kHz crystal oscillation (C1 = C2 = 47pF)

– 15 – CXP818P48A VDD = 3.0V, IOH = –0.15mA VDD = 3.0V, IOH = 0.5mA VDD = 3.0V, IOL = 1.2mA VDD = 3.0V, IOL = 1.6mA VDD = 3.0V, IOL = 5mA VDD = 3.6V, VIH = 3.6V VDD = 3.6V, VIL = 0.3V VDD = 3.6V, VIH = 3.6V High level output voltage 2.7 2.3 0.3 –0.3 0.1 –0.1 –0.9 V V V V V µA µA µA µA µA µA µA PD, PH PA to PD, PE2 to PE7, PF4 to PF7, PH (V OL only) PI1 to PI7 PJ, SO0, SCK0 EXTAL TEX RST Item Symbol Pins Conditions Min. Other than VDD , Vss, AVDD , and AVss Clock 1MHz 0V other than the measured pins VDD IDD1 IIZ ILOH IDDS1 IDDS3 C IN VOH VOL IIHE IILE IIHT IILT IILR Low level output voltage Input current Typ. 0.3 0.5 1.0 –20 –10 –200 ±10 Max. Unit DC Characteristics(VDD = 3.0 to 3.6V) (Ta = –10 to +75°C, Vss = 0V) *1 When entire output pins are open. *2 When setting upper 2 bits (CPU clock selection) of clock control register CLC (address: 00FEH ) to "00" and operating in high speed mode (1/2 dividing clock). VDD = 3.3V ± 0.3V*2 SLEEP mode VDD = 3.3V ± 0.3V VDD = 3.3V ± 0.3V Supply current*1 Input capacity VDD = 3.6V, VIL = 0.3V VDD = 3.6V, VI = 0, 3.6V VDD = 3.6V, VOH = 12V 12MHz crystal oscillation (C1 = C2 = 15pF) STOP mode (EXTAL pin and TEX pin oscillation stop) I/O leakage current Open drain output leakage current PA to PG, PI, PJ, MP AN0 to AN3, CS0, SI0, SO0 SCK0, RST PH 0.7 2.5 mA mA µA pF

– 16 – CXP818P48A * tsys indicates three values according to the contents of the clock control register (address; 00FEH ) upper 2 bits (CPU clock selection). tsys [ns] = 2000/fc (Upper 2-bit = "00"), 4000/fc (Upper 2-bit = "01"), 16000/fc (Upper 2-bit = "11") EXTAL tXH tXLtCF tCR 0.4V VDD – 0.4V 1/fc /LiteDiagLines/LiteDiagLines/LiteDiagLines/LiteDiagLines /LiteDiagLines /LiteDiagLines/LiteDiagLines /LiteDiagLines /LiteDiagLines/LiteDiagLines/LiteDiagLines/LiteDiagLines External clock EXTAL XTAL 74HC04/LiteDiagLines/LiteDiagLines/LiteDiagLines/LiteDiagLines /LiteDiagLines /LiteDiagLines/LiteDiagLines /LiteDiagLines /LiteDiagLines/LiteDiagLines/LiteDiagLines/LiteDiagLines Crystal oscillation Ceramic oscillation EXTAL XTAL C 1 C 2 /LiteDiagLines/LiteDiagLines/LiteDiagLines/LiteDiagLines /LiteDiagLines /LiteDiagLines/LiteDiagLines /LiteDiagLines /LiteDiagLines/LiteDiagLines/LiteDiagLines/LiteDiagLines 32kHz clock applying condition crystal oscillation TEX TX C 1 C 2 AC Characteristics (1) Clock timing System clock frequency System clock input pulse width System clock input rise and fall times Event count clock input pulse width Event count clock input rise and fall times System clock frequency Event count clock input pulse width Event count clock input rise and fall times f C tXL, tXH tCR , tCF tEH , tEL tER , tEF fC tTL, tTH tTR , tTF XTAL EXTAL EXTAL EXTAL EC EC TEX TX TEX TEX MHz ns ns ns ns kHz µs ms Item Symbol Pins Conditions Unit Fig. 1, Fig. 2 Fig. 1, Fig. 2 (External clock drive) Fig. 1, Fig. 2 (External clock drive) Fig. 3 Fig. 3 Fig. 2 V DD = 2.7 to 5.5V (32kHz clock applied condition) Fig. 3 Fig. 3 Min. 37.5 tsys · 4* 32.768 Max. 200 (Ta = –10 to +75°C, VDD = 3.0 to 5.5V, Vss = 0V) Fig. 1. Clock timing VDD = 4.5 to 5.5V VDD = 4.5 to 5.5V Fig. 2. Clock applied condition TEX EC tEH tELtEF tER 0.2VDD 0.8VDD tTH tTLtTF tTR Fig. 3. Event count clock timing

– 17 – CXP818P48A Input mode Output mode Input mode Output mode SCK0 input mode SCK0 output mode SCK0 input mode SCK0 output mode SCK0 input mode SCK0 output mode Chip select transfer mode (SCK0 = output mode) Chip select transfer mode (SCK0 = output mode) Chip select transfer mode Chip select transfer mode Chip select transfer mode Note 1) tsys indicates three values according to the contents of the clock control register (address; 00FEH ) upper 2 bits (CPU clock selection). tsys [ns] = 2000/fc (Upper 2-bit = "00"), 4000/fc (Upper 2-bit = "01"), 16000/fc (Upper 2-bit = "11") Note 2)The load of SCK0 output mode and SO0 output delay time is 50pF + 1TTL. (2) Serial transfer (CH0) (Ta = –10 to +75°C, VDD = 4.5 to 5.5V, Vss = 0V) Item CS0 flfi SCK0 delay time CS0 ›fi SCK0 floating delay time CS0 flfi SO0 delay time CS0 ›fi SO0 floating delay time CS0 high level width SCK0 cycle time SCK0 high and low level widths SI0 input setup time (against SCK0 ›) SI0 input hold time (against SCK0 ›) SCK0 flfi SO0 delay time tDCSK tDCSKF tDCSO tDCSOF tWHCS tKCY tKH tKL tSIK tKSI tKSO SCK0 SCK0 SO0 SO0 CS0 SCK0 SCK0 SI0 SI0 SO0 ns ns ns ns ns Symbol Pin Min. tsys + 200 tsys + 200 tsys + 200 tsys + 200 tsys + 200 2tsys + 200 16000/fc tsys + 100 8000/fc – 50 100 200 tsys + 200 100 ns ns ns ns ns ns ns ns ns ns tsys + 200 100 Max. UnitCondition

– 18 – CXP818P48A Input mode Output mode Input mode Output mode SCK0 input mode SCK0 output mode SCK0 input mode SCK0 output mode SCK0 input mode SCK0 output mode Chip select transfer mode (SCK0 = output mode) Chip select transfer mode (SCK0 = output mode) Chip select transfer mode Chip select transfer mode Chip select transfer mode Note 1) tsys indicates three values according to the contents of the clock control register (address; 00FEH ) upper 2 bits (CPU clock selection). tsys [ns] = 2000/fc (Upper 2-bit = "00"), 4000/fc (Upper 2-bit = "01"), 16000/fc (Upper 2-bit = "11") Note 2)The load of SCK0 output mode and SO0 output delay time is 50pF. Serial transfer (CH0) (Ta = –10 to +75°C, VDD = 3.0 to 3.6V, Vss = 0V) Item CS0 flfi SCK0 delay time CS0 ›fi SCK0 floating delay time CS0 flfi SO0 delay time CS0 ›fi SO0 floating delay time CS0 high level width SCK0 cycle time SCK0 high and low level widths SI0 input setup time (against SCK0 ›) SI0 input hold time (against SCK0 ›) SCK0 flfi SO0 delay time tDCSK tDCSKF tDCSO tDCSOF tWHCS tKCY tKH tKL tSIK tKSI tKSO SCK0 SCK0 SO0 SO0 CS0 SCK0 SCK0 SI0 SI0 SO0 ns ns ns ns ns Symbol Pin Min. tsys + 250 tsys + 200 tsys + 250 tsys + 200 tsys + 200 2tsys + 200 16000/fc tsys + 100 8000/fc – 100 100 200 tsys + 200 100 ns ns ns ns ns ns ns ns ns ns tsys + 250 100 Max. UnitCondition

– 19 – CXP818P48A Fig. 4. Serial transfer CH0 timing CS0 SCK0 0.2VDD 0.8VDD tWHCS tDCSK tDCSKF 0.8VDD 0.2VDD 0.8VDD tKCY tKL tKH 0.8VDD 0.2VDD SI0 tSIK tKSI Input data tDCSO tKSO tDCSOF Output data 0.8VDD 0.2VDD SO0

– 20 – CXP818P48A Serial transfer (CH1) (Ta = –10 to +75°C, VDD = 4.5 to 5.5V, Vss = 0V) Item Symbol Pins Min. Max. UnitConditions SCK1 cycle time SCK1 high and low level widths SI1 input setup time (against SCK1 ›) SI1 input hold time (against SCK1 ›) SCK1 flfi SO1 delay time tKCY tKH tKL tSIK tKSI tKSO SCK1 SCK1 SI1 SI1 SO1 Input mode Output mode Input mode Output mode SCK1 input mode SCK1 output mode SCK1 input mode SCK1 output mode SCK1 input mode SCK1 output mode 1000 16000/fc 400 8000/fc – 50 100 200 200 100 200 100 ns ns ns ns ns ns ns ns ns ns Note) The load of SCK1 output mode and SO1 output delay time is 50pF + 1TTL. Serial transfer (CH1) (Ta = –10 to +75°C, VDD = 3.0 to 3.6V, Vss = 0V) Item Symbol Pins Min. Max. UnitConditions SCK1 cycle time SCK1 high and low level widths SI1 input setup time (against SCK1 ›) SI1 input hold time (against SCK1 ›) SCK1 flfi SO1 delay time tKCY tKH tKL tSIK tKSI tKSO SCK1 SCK1 SI1 SI1 SO1 Input mode Output mode Input mode Output mode SCK1 input mode SCK1 output mode SCK1 input mode SCK1 output mode SCK1 input mode SCK1 output mode 1000 16000/fc 400 8000/fc – 100 100 200 200 100 250 100 ns ns ns ns ns ns ns ns ns ns Note) The load of SCK1 output mode and SO1 output delay time is 50pF.

– 21 – CXP818P48A Fig. 5. Serial transfer CH1 timing SCK1 SI1 SO1 tKCY tKL tKH 0.2VDD 0.8VDD tSIK tKSI tKSO Input data Output data 0.2VDD 0.8VDD 0.2VDD 0.8VDD

– 22 – CXP818P48A Conversion time Sampling time Reference input voltage Analog input voltage tCONV tSAMP VREF VIAN IREF Ta = 25°C VDD = AVDD = AVREF = 5.0V VSS = AVSS = 0V Operating mode SLEEP mode STOP mode 32kHz operating mode Linearity error Absolute error Resolution AV REF current AV REF AN0 to AN11 AV REF VDD = AVDD = 4.5 to 5.5V IREFS µs µs V V AV DD 1.0 mA 10 µA 0.6 160/fADC * 12/fADC * AV DD – 0.5 Item Symbol Pins Conditions Min. Typ. Max. Unit Bits (3) A/D converter characteristics(Ta = –10 to +75°C, VDD = AVDD = 4.5 to 5.5V, AVREF = 4.0 to AVDD , Vss = AVSS = 0V) LSB LSB Analog input Linearity error VFTVZT 00H 01H FE H FFH Digital conversion value ∗ The value of fADC is as follows by selecting ADC operation clock (MSC: Address 01FFH bit 0). When PS2 is selected, fADC = fc/2 When PS1 is selected, fADC = fc Fig. 6. Definitions of A/D converter terms (Ta = –10 to +75°C, VDD = AVDD = 3.0 to 3.6V, AVREF = 2.7 to AVDD , Vss = AVSS = 0V) Conversion time Sampling time Reference input voltage Analog input voltage tCONV tSAMP VREF VIAN IREF Ta = 25°C VDD = AVDD = AVREF = 5.0V VSS = AVSS = 0V Operating mode SLEEP mode STOP mode 32kHz operating mode Linearity error Absolute error Resolution AV REF current AV REF AN0 to AN11 AV REF VDD = AVDD = 3.0 to 3.6V IREFS µs µs V V AV DD 0.7 mA 10 µA 0.4 160/fADC * 12/fADC * AV DD – 0.3 Item Symbol Pins Conditions Min. Typ. Max. Unit Bits8 LSB LSB

– 23 – CXP818P48A External interruption high and low level widths Reset input low level width INT0 INT1 INT2 NMI PJ0 to PJ7 RST 32/fc µs µs Item Symbol Pins Conditions Min. Max. Unit tIH tIL tRSL (4) Interruption, reset input (Ta = –10 to +75°C, VDD = 3.0 to 5.5V, Vss = 0V) 0.2VDD 0.8VDD tIH tIL INT0 INT1 INT2 NMI PJ0 to PJ7 (During standby release input) (Falling edge) Fig. 7. Interruption input timing tRSL 0.2VDD RST Fig. 8. Reset input timing (5) Others (Ta = –10 to +75°C, VDD = 3.0 to 5.5V, Vss = 0V) Item EXI input high and low level widths tEIH EXI0 EXI1 ns Symbol Pins Min. tFRC · 8 + 200 + tsys Max. Unit tsys = 2000/fc Conditions Note) tsys indicates three values according to the contents of the clock control register (address; 00FEH ) upper 2 bits (CPU clock selection). tsys [ns] = 2000/fc (Upper 2-bit = "00"), 4000/fc (Upper 2-bit = "01"), 16000/fc (Upper 2-bit = "11") tFRC [ns] = 1000/fc 0.8VDDEXI0 EXI1 tEIH tEIL 0.2VDD Fig. 9. Other timings

– 24 – CXP818P48A Supplement Fig. 10. Recommended oscillation circuit /LiteDiagLines/LiteDiagLines/LiteDiagLines/LiteDiagLines/LiteDiagLines /LiteDiagLines /LiteDiagLines/LiteDiagLines/LiteDiagLines /LiteDiagLines /LiteDiagLines/LiteDiagLines/LiteDiagLines/LiteDiagLines/LiteDiagLines EXTAL XTAL C 1 C 2 Rd (i) (ii) /LiteDiagLines/LiteDiagLines/LiteDiagLines/LiteDiagLines /LiteDiagLines /LiteDiagLines/LiteDiagLines /LiteDiagLines /LiteDiagLines/LiteDiagLines/LiteDiagLines/LiteDiagLines TEX TX C 1 C 2 Rd Manufacturer RIVER ELETEC CO., LTD. KINSEKI LTD. Model HC-49/U03 HC-49/U (-S) fc (MHz) 8.00 10.00 12.00 8.00 10.00 12.00 12 12 16.00 12 12 30 18 470k (ii)32.768kHz 16.00 5 16 12 C 1 (pF) C 2 (pF) Rd ( Ω ) Circuit example (i) (i) Those marked with an asterisk (*) signify types with built-in ground capacitance (C1, C2). Selection Guide * In PG4/SYNC0 pin and PG5/SYNC1 pin. Option item Package ROM capacitance Reset pin pull- up resistor Input circuit format* Mask product PROM product CXP 81720A CXP 81724A CXP 81732A CXP 81740A CXP 81840A CXP 81848A 100-pin plastic QFP/LQFP 20K byte 24K byte 32K byte 40K byte 40K byte 48K byte Existent/Non-Existent CMOS schmitt/TTL schmitt CXP818P48AQ -1- CXP818P48AR -1- CXP818P48AQ -2- 100-pin plastic QFP 100-pin plastic LQFP 100-pin plastic QFP Existent TTL schmitt TTL schmitt CMOS schmitt CXP818P48AR -2- 100-pin plastic LQFP PROM 48K byte CMOS schmitt

– 25 – CXP818P48A Characteristics Curve 0.5 1/2 dividing mode 1/4 dividing mode 1/16 dividing mode SLEEP mode fc – System clock [MHz] IDD vs. fC (VDD = 5.0V, Ta = 25°C, Typical) 51 0 1 6 (50µA) (10µA) 0.1 0.05 0.01 0.5 51 0 1 6 (100µA) 3 45 6 0.1 5.0 1.0 0.05 (50µA) 0.01 (10µA) 10.0 20.0 1/16 dividing mode 1/4 dividing mode SLEEP mode 1/2 dividing mode 3 45 6 5.0 1.0 VDD – Supply voltage [V] SLEEP mode 10.0 20.0 1/2 dividing mode 1/16 dividing mode 1/4 dividing mode 32kHz oscillation 32kHz SLEEP mode IDD – Supply current [mA] IDD – Supply current [mA] IDD vs. VDD (fc = 16MHz, Ta = 25°C, Typical) IDD vs. fC (VDD = 3.3V, Ta = 25°C, Typical) IDD vs. VDD (fc = 12MHz, Ta = 25°C, Typical) IDD – Supply current [mA] IDD – Supply current [mA] fc – System clock [MHz]VDD – Supply voltage [V] 1/2 dividing mode 1/4 dividing mode 1/16 dividing mode SLEEP mode

– 26 – CXP818P48A Package Outline Unit: mm SONY CODE EIAJ CODE JEDEC CODE PACKAGE MATERIAL LEAD TREATMENT LEAD MATERIAL PACKAGE WEIGHT EPOXY RESIN SOLDER PLATING COPPER / 42 ALLOY PACKAGE STRUCTURE 23.9 ± 0.4 QFP-100P-L01 DETAIL A M 100PIN QFP (PLASTIC) 20.0 – 0.1 + 0.4 0° to 15° 0.15 – 0.05 + 0.1 + 0.4 2.75 – 0.15 + 0.35 A 0.65 ±0.12 0.15 0.8 ± 0.2 (16.3) ∗QFP100-P-1420-A 1.4g SONY CODE EIAJ CODE JEDEC CODE PACKAGE MATERIAL LEAD TREATMENT LEAD MATERIAL PACKAGE WEIGHT EPOXY/PHENOL RESIN SOLDER PLATING

42 ALLOY

∗QFP100-P-1414-A 100PIN LQFP (PLASTIC) 16.0 ± 0.2 ∗ 14.0 ± 0.1 75 51 251 + 0.08 (0.22) A 1.5 – 0.1 + 0.2 0.127 – 0.02 + 0.05 0.5 ± 0.2 (15.0) 0° to 10° 0.1 ± 0.1 0.5 ± 0.2 100 0.1 NOTE: Dimension “∗” does not include mold protrusion.