3858_08 RENESAS | Alldatasheet

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3858 Group Standard Characteristics

Standard Characteristics Example Standard characteristics described below are just examples of the 3858 Group's characteristics and are not guaranteed. For rated values, refer to "3858 Group Datasheet". (1) Power Supply Current Standard Characteristics Example (Vcc-Icc) Power Source Voltage Vcc [V] Fig.1 Vcc-Icc (QzROM version, high-speed mode) Fi g.2 Vcc-Icc (QzROM version, middle-speed mode) Fig.3 Vcc-Icc (QzROM version, low-speed mode) Fi g.4 Vcc-Icc (QzROM version, increment at A/D conversion executed) Fig.5 Vcc-Icc (QzROM version, at WIT instruction executed Fi g.6 Vcc-Icc (QzROM version, at WIT instruction executed in middle-speed mode ) in low-speed mode ) Power Source Voltage Vcc [V] At WIT instruction executed (ceramic oscillation, Ta = 25 ° C,f(XIN)=8MHz, output transistor is in the cut-off state) When system is operating in low-speed mode (crystal oscillation, Ta = 25 °C, output transistor is in the cut-off state) QzROM version At WIT instruction executed (crystal oscillation, Ta = 25 ° C,f(XCIN)=32KHz, output transistor is in the cut-off state) Power Supply Current Icc [mA] Power Source Voltage Vcc [V] QzROM version Power Supply Current Icc [mA] At 8 MHz high-speed mode, increment at A/D conversion executed (ceramic oscillation, Ta = 25 °C, output transistor is in the cut-off state) QzROM version Power Supply Current Icc [mA] Power Source Voltage Vcc [V] Power Source Voltage Vcc [V] When system is operating in high-speed mode (ceramic oscillation, Ta = 25 °C, output transistor is in the cut-off state) When system is operating in middle-speed mode (ceramic oscillation, Ta = 25 °C, output transistor is in the cut-off state) QzROM version (A/D conversion not executed) Power Supply Current Icc [mA] QzROM version (A/D conversion not executed) QzROM version (A/D conversion not executed) Power Supply Current Icc [mA] Power Supply Current Icc [uA] Power Source Voltage Vcc [V] f(XIN)=12MHz f(XIN)=8MHz 0.0 0.5 1.0 1.5 2.0 2.5 3.0 3.5 4.0 4.5 5.0 f(XIN)=12MHz f(XIN)=8MHz 0.0 0.5 1.0 1.5 2.0 high-speed mode WIT middle-speed mode WIT f(XIN)=32KHz low-speed mode WIT 0.0 10.0 20.0 30.0 40.0 50.0 low-speed mode WIT A/D conversion executed A/D conversion not executed REJ99B1152-0100 ©2008. Renesas Technology Corp., All rights reserved. July 2008 Page 1 of 6

(2) Power Supply Current Standard Characteristics Example (f(XIN) -Icc) Fig.7 f(XIN) -Icc (QzROM version, high-speed mode) Fi g..8 f(XIN) -Icc (QzROM version, middle-speed mode) Fig..9 f(XIN) -Icc (QzROM version at WIT instruction executed in middle-speed mode) QzROM version Power Supply Current Icc [mA] Oscillation Frequency f(XIN) [ MHz] QzROM version (A/D conversion not executed) Power Supply Current Icc [mA] Oscillation Frequency f(XIN) [ MHz] Power Supply Current Icc [mA] Oscillation Frequency f(XIN) [ MHz] When system is operating in middle-speed mode (ceramic oscillation, Ta = 25 °C, output transistor is in the cut-off state) QzROM version (A/D conversion not executed) At WIT instruction executed in middle-speed mode (ceramic oscillation, Ta = 25 °C, output transistor is in the cut-off state) When system is operating in high-speed mode (ceramic oscillation, Ta = 25 °C, output transistor is in the cut-off state) 0.0 1.0 2.0 3.0 4.0 5.0 6.0 7.0 6 8 10 12 14 16 Vcc = 5.0 V Vcc = 4.0 V 0.0 0.5 1.0 1.5 2.0 2.5 3.0 6 8 10 12 14 16 Vcc = 5.0 V Vcc = 2.7 V 0.0 0.5 1.0 1.5 2.0 6 8 10 12 14 16 Vcc = 5.0 V Vcc = 2.7 V REJ99B1152-0100 ©2008. Renesas Technology Corp., All rights reserved. July 2008 Page 2 of 6

(3) Port Standard characteristics Example (VOH-IOH) VOH-IOH (Vcc = 5.0 V, Ports P0, P1,P20, P21,P24-P27, P3, P4) VOH-IOH (Vcc = 2.7 V, Ports P0, P1, P20,P21,P24-P27, P3, P4) P3, P4) Ports P0,P1,P20,P21,P24-P27, P3, P4) (4) Port Standard Characteristics Example (VOL-IOL) VOL-IOL (Vcc = 5.0 V, Ports P0, P20,P21,P24-P27, P3, P4) VOL-IOL (Vcc = 2.7 V, Ports P0, P20,P21,P24-P27, P3, P4) Fig. 12 QzROM version, VOL-IOL Fig. 13 QzROM version, VOL-IO L (Vcc = 5.0 V, Ports P0, P20,P21,P24-P27, P3, P4) (Vcc = 2.7 V, Ports P0, P20,P21,P24-P27, P3, P4) VOL-IOL (Vcc = 5.0 V, Ports P1) VOL-IOL (Vcc = 2.7 V, Ports P1) Fig. 14 QzROM version, VOL-IOL (Vcc = 5.0 V, Port P1) Fig. 15 QzROM version, VOL-IO L (Vcc = 2.7 V, Ports P1) "L" Output Voltage VOL [V] "H" Output Voltage VOH [V] QzROM version "L" Output Current IOL [mA] "H" Output Current IOH [mA] QzROM version "H" Output Voltage VOH [V] QzROM version "L" Output Voltage VOL [V] "L" Output Voltage VOL [V] "L" Output Current IOL [mA] "L" Output Current IOL [mA] "L" Output Voltage VOL [V] QzROM version "H" Output Current IOH [mA]"L" Output Current IOL [mA] QzROM version QzROM version -50 -40 -30 -20 -10 012345 Ta=25°C Ta= -20°C 012345 -20 -15 -10 012345 Ta = 25°C 012345 012345 012345 Ta=25°C Ta=-20°C Ta=-20°C Ta=25°C Ta=-20°C Ta=-20°C Ta=25°C Ta=-20°C Ta=25°C REJ99B1152-0100 ©2008. Renesas Technology Corp., All rights reserved. July 2008 Page 3 of 6

(5) Port Standard Characteristics Example (Vcc-IIL) (6) Port Standard Characteristics Example (Vcc-VIHL) Vcc-IIL (When connecting pull-up transistor, Ports P0,P1, P20, P21, P24-P27, P3, P4) Vcc-VIHL (I/O Ports (CMOS) , Ta = 25 °C, Ports P0) Fig. 16 QzROM version, Vcc-IIL (when connecting pull-up transistor, Fig. 17 QzROM version , Vcc-VIHL (I/O Ports (CMOS) , Ta = 2 5 °C, Ports P0) Ports P0,P1, P20, P21, P24-P27, P3, P4) Vcc-VIHL (RESET pin, Ta = 25 °C) Vcc-VIHL (XIN pin, Ta = 25 °C) Fig. 18 QzROM version, Vcc-VIHL (RESET pin) Fig..19 QzROM version, Vcc-VIHL (XIN pin) Vcc-VIHL (INT0~INT2, Ta = 25 °C) Vcc-HYS (INT0~INT2 pin , Ta = 25 °C) Fig. 20 QzROM version, Vcc-VIHL (INT0/P41 pin) Fig.21 QzROM version, Vcc-HYS (INT0/P41) Power Source Voltage Vcc [V] Input Voltage VIHL [V] Input Voltage VIHL [V] Power Source Voltage Vcc [V] Power Source Voltage Vcc [V] QzROM versionQzROM version "L" Input Current IIL [uA] Hysteresis HYS [V] Input Voltage VIHL [V] Input Voltage VIHL [V] Power Source Voltage Vcc [V] QzROM version QzROM version Power Source Voltage Vcc [V] QzROM version QzROM version Power Source Voltage Vcc [V] -120 -100 -80 -60 -40 -20 Ta=-20°C Ta=85°C Ta=25°C 123456 VIH VIL 123456 VIH VIL 123456 VIH VIL 123456 VIH VIL 0.0 0.2 0.4 0.6 0.8 123456 REJ99B1152-0100 ©2008. Renesas Technology Corp., All rights reserved. July 2008 Page 4 of 6

Vcc-HYS (RESET pin, Ta = 25 °C) Fig. 22 QzROM version, Vcc-HYS (RESET pin) (7) Port Standard Characteristics Example (VIN-II (AD) ) Fig. 23 QzROM version, VIN-II (AD) (f(Xin) =12.5 MHz high-speed mode ) Fig.24 QzROM version, VIN-II (AD) (f(Xin) =8 MHz high- speed mode ) Fig.25 QzROM version, VIN-II (AD) (f(Xin) = 4 MHz high-speed mode ) Input Voltage VIN [V] VIN-II (AD) (A/D converter operationg, f(Xin) =8 MHz, high-speed mode Vcc = 5.0 V, Ta = 25 °C) VIN-II (AD) (A/D converter operation, f(Xin) = 12.5 MHz,high-speed mode Vcc = 5.0 V, Ta = 25 °C) VIN-II (AD) (A/D converter operation, f(Xin) = 4 MHz, high-speed mode, Vcc Input Current II (AD) [uA] Input Voltage VIN [V] Input Voltage VIN [V] QzROM version QzROM version QzROM version Input Current II (AD) [uA] QzROM version Input Current II (AD) [uA] Power Source Voltage Vcc [V] Hysteresis HYS [V] 0.0 0.2 0.4 0.6 0.8 1.0 123456 -1.0 -0.5 0.0 0.5 1.0 012345 -1.0 -0.5 0.0 0.5 1.0 012345 A/D conversion clock: f(XIN) -1.0 -0.5 0.0 0.5 1.0 012345 REJ99B1152-0100 ©2008. Renesas Technology Corp., All rights reserved. July 2008 Page 5 of 6

(8) A/D Conversion Accuracy Characteristics A/D conversion accuracy standard characteristics example-1

  • Vcc = 5.12[V] • Tem p. = 25[°C]
  • VREF = 5.12[V] • CPU mode = hi gh-speed mode
  • f(XIN) = 12.5[MHz] • A/D conversion clock = f (XIN)/2 Fig. 26 A/D conversion accuracy standard characteristics M38588 A/D CONVERTER STEP WIDTH MEASUREMENT 1LSB Width Error REJ99B1152-0100 ©2008. Renesas Technology Corp., All rights reserved. July 2008 Page 6 of 6

To our customers, Old Company Name in Catalogs and Other Documents On April 1st, 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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