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PIC16F570 Datenblatt(PDF) 82 Page - Microchip Technology |
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PIC16F570 Datenblatt(HTML) 82 Page - Microchip Technology |
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82 / 129 page ![]() PIC16F570 DS40001684E-page 82 2013-2014 Microchip Technology Inc. 15.1 DC Characteristics: PIC16F570 (Industrial) DC Characteristics Standard Operating Conditions (unless otherwise specified) Operating Temperature -40 C TA +85C (industrial) Param. No. Sym. Characteristic Min. Typ.(1) Max. Units Conditions D001 VDD Supply Voltage 2.0 — 5.5 V See Figure 15-1 D002 VDR RAM Data Retention Voltage(2) — 1.5* — V Device in Sleep mode D003 VPOR VDD Start Voltage to ensure Power-on Reset —VSS —V See Section 8.5 “Power-on Reset (POR)” for details D004 SVDD VDD Rise Rate to ensure Power-on Reset 0.05* — — V/ms See Section 8.5 “Power-on Reset (POR)” for details D005 IDDP Supply Current During Prog./ Erase —1.0* — mA VDD = 5.0V D010 IDD Supply Current(3,4,6) — — 195 505 300 750 A A FOSC = 4 MHz, VDD = 2.0V FOSC = 4 MHz, VDD = 5.0V — — 310 880 500 1300 A A FOSC = 8 MHz, VDD = 2.0V FOSC = 8 MHz, VDD = 5.0V — 1900 2300 AFOSC = 20 MHz, VDD = 5.0V — — 13 27 22 55 A A FOSC = 32 kHz, VDD = 2.0V FOSC = 32 kHz, VDD = 5.0V D020 IPD Power-down Current(5) — — 0.1 0.35 1.2 3.0 A A VDD = 2.0V VDD = 5.0V D021 IBOR BOR Current(5) — — 3.5 4.0 7.0 9.0 A A VDD = 3.0V VDD = 5.0V D022 IWDT WDT Current(5) — — 1.0 8.0 3.0 16.0 A A VDD = 2.0V VDD = 5.0V D023 ICMP Comparator Current(5) — — 15 60 26 78 A A VDD = 2.0V (per comparator) VDD = 5.0V (per comparator) D024 ICVREF CVREF Current(5) — — 30 75 70 125 A A VDD = 2.0V (high range) VDD = 5.0V (high range) D025 IVFIR Internal 0.6V Fixed Voltage Reference Current(5) — — 100 175 125 205 A A VDD = 2.0V (reference and 1 comparator enabled) VDD = 5.0V (reference and 1 comparator enabled) D026 IAD2 A/D Current — — 0.5 0.8 2.0 4.0 A A 2.0V, No conversion in progress 5.0V, No conversion in progress D027 IOPA Op Amp Current(5) — — 310 330 425 475 A A VDD = 2.0V VDD = 5.0V * These parameters are characterized but not tested. Note 1: Data in the Typical (“Typ.”) column is based on characterization results at 25°C. This data is for design guidance only and is not tested. 2: This is the limit to which VDD can be lowered in Sleep mode without losing RAM data. 3: The supply current is mainly a function of the operating voltage and frequency. Other factors such as bus loading, oscillator type, bus rate, internal code execution pattern and temperature also have an impact on the current consumption. 4: The test conditions for all IDD measurements in active operation mode are: OSC1 = external square wave, from rail-to-rail; all I/O pins tri-stated, pulled to VSS, T0CKI = VDD, MCLR =VDD; WDT enabled/disabled as specified. 5: For standby current measurements, the conditions are the same as IDD, except that the device is in Sleep mode. If a module current is listed, the current is for that specific module enabled and the device in Sleep. 6: Does not include current through REXT. The current through the resistor can be estimated by the formula: I = VDD/2REXT (mA) with REXT in k . |
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