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PIC17C752-08/CL Datasheet(PDF) 237 Page - Microchip Technology |
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PIC17C752-08/CL Datasheet(HTML) 237 Page - Microchip Technology |
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237 / 328 page ![]() © 1998 Microchip Technology Inc. Preliminary DS30289A-page 237 PIC17C7XX 20.1 DC CHARACTERISTICS PIC17C7XX-16 (Commercial, Industrial) PIC17C7XX-33 (Commercial, Industrial) DC CHARACTERISTICS Standard Operating Conditions (unless otherwise stated) Operating temperature -40˚C ≤ TA ≤ +85˚C for industrial and 0˚C ≤ TA ≤ +70˚C for commercial Param. No. Sym Characteristic Min Typ† Max Unit s Conditions D001 VDD Supply Voltage 4.5 VBOR * – – 5.5 5.5 V V PIC17C7XX - 33, PIC17C7XX - 16 PIC17C7XX - 16 (BOR enabled)(Note 5) D002 VDR RAM Data Retention Voltage (Note 1) 1.5 * – – V Device in SLEEP mode D003 VPOR VDD start voltage to ensure internal Power-on Reset signal –VSS – V See section on Power-on Reset for details D004 SVDD VDD rise rate to ensure proper operation 0.085 * – – V/ms See section on Power-on Reset for details D005 VBOR Brown-out Reset voltage trip point 3.65 – 4.35 V D006 VPORTP Power-on Reset trip point – 2.2 – V VDD = VPORTP D010 D011 D012 D013 D015 IDD Supply Current (Note 2) – – – – – TBD TBD TBD TBD TBD 6 * 12 24 * 38 * 50 mA mA mA mA mA FOSC = 4 MHz (Note 4) FOSC = 8 MHz FOSC = 16 MHz FOSC = 25 MHz FOSC = 33 MHz * These parameters are characterized but not tested. † Data in "Typ" column is at 5V, 25˚C unless otherwise stated. These parameters are for design guidance only and are not tested. Note 1: This is the limit to which VDD can be lowered in SLEEP mode without losing RAM data. 2: The supply current is mainly a function of the operating voltage and frequency. Other factors such as I/O pin loading and switching rate, oscillator type, internal code execution pattern, and temperature also have an impact on the current consumption. The test conditions for all IDD measurements in active operation mode are: OSC1 = external square wave, from rail to rail; all I/O pins tristated, pulled to VDD or VSS, T0CKI = VDD, MCLR = VDD; WDT disabled. Current consumed from the oscillator and I/O’s driving external capacitive or resistive loads needs to be con- sidered. For the RC oscillator, the current through the external pull-up resistor (R) can be estimated as: VDD /(2 • R). For capacitive loads, the current can be estimated (for an individual I/O pin) as (CL • VDD) • f CL = Total capacitive load on the I/O pin; f = average frequency the I/O pin switches. The capacitive currents are most significant when the device is configured for external execution (includes extended microcontroller mode). 3: The power-down current in SLEEP mode does not depend on the oscillator type. Power-down current is measured with the part in SLEEP mode, with all I/O pins in hi-impedance state and tied to VDD or VSS. 4: For RC osc configuration, current through Rext is not included. The current through the resistor can be esti- mated by the formula IR = VDD/2Rext (mA) with Rext in kOhm. 5: This is the voltage where the device enters the Brown-Out-Reset. When BOR is enabled, the device (-16) will operate correctly to this trip point. |
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