PIC16(L)F1784/6/7 28/40/44-Pin 8-Bit Advanced Analog Flash Microcontroller Product Brief High-Performance RISC CPU: Analog Peripheral Features: • Only 49 Instructions • Operating Speed: - DC – 32 MHz clock input - DC – 125 ns instruction cycle • Interrupt Capability with Automatic Context Saving • 16-Level Deep Hardware Stack with optional Overflow/Underflow Reset • Direct, Indirect and Relative Addressing modes: - Two full 16-bit File Select Registers (FSRs) - FSRs can read program and data memory • Analog-to-Digital Converter (ADC): - Fully differential 12-bit converter - 100 ksps conversion rate - Up to 14 single-ended channels - Up to 7 differential channels - Positive and negative reference selection • 8-bit Digital-to-Analog Converter (DAC): - Output available externally - Positive and negative reference selection - Internal connections to Comparators, Op Amps, Fixed Voltage Reference (FVR) and ADC • Up to four High-Speed Comparators: - 50 ns response time - Rail-to-rail inputs - Software selectable hysteresis - Internal connection to Op Amps, FVR and DAC • Up to three Operational Amplifiers: - Rail-to-rail inputs/outputs - High/Low selectable Gain Bandwidth Product - Internal connection to DAC and FVR • Fixed Voltage Reference (FVR): - 1.024V, 2.048V and 4.096V output levels - Internal connection to ADC, Comparators and DAC Extreme Low-Power (XLP) Management: • Standby Current (PIC16LF1784/6/7): - 50 nA @ 1.8V, typical • Watchdog Timer Current (PIC16LF1784/6/7): - 500 nA @ 1.8V, typical • Timer1 (32.768 kHz Real-Time Clock) Oscillator Current (PIC16LF1784/6/7): - 500 nA @ 1.8V, typical • Operating Current (PIC16LF1784/6/7): - 4 A @ 32 kHz, 1.8V, typical • Operating Current (PIC16LF1784/6/7): - 150 A @ 1 MHz, 1.8V, typical Memory Features: Digital Peripheral Features: • Up to 8 KW Flash Program Memory: - Self-programmable under software control - Programmable code protection - Programmable write protection • 256 Bytes of Data EEPROM • Up to 1K Bytes of RAM High-Performance PWM Controller: • Up to three Programmable Switch Mode Controller (PSMC) modules: - Digital and/or analog feedback control of PWM frequency and pulse begin/end times - 16-bit Period, Duty Cycle and Phase - 16 ns clock resolution - Supports single PWM, complimentary, push-pull and three-phase modes of operation - Dead-band control with 8-bit counter - Auto-shutdown and restart - Leading and falling edge blanking - Burst mode 2012 Microchip Technology Inc. • Timer0: 8-Bit Timer/Counter with 8-Bit Programmable Prescaler • Enhanced Timer1: - 16-bit timer/counter with prescaler - External Gate Input mode - Dedicated low-power 32 kHz oscillator driver • Timer2: 8-Bit Timer/Counter with 8-Bit Period Register, Prescaler and Postscaler • Up to three Capture/Compare/PWM modules (CCP): - 16-bit Capture, maximum resolution 12.5 ns - 16-bit Compare, max resolution 31.25 ns - 10-bit PWM, max frequency 32 kHz • Master Synchronous Serial Port (SSP) with SPI and I2CTM with: - 7-bit address masking - SMBus/PMBusTM compatibility • Enhanced Universal Synchronous Asynchronous Receiver Transmitter (EUSART): - RS-232, RS-485 and LIN compatible - Auto-baud detect - Auto-wake-up on start Advance Information DS41623A-page 1 PIC16(L)F1784/6/7 Oscillator Features: I/O Features: • Operate up to 32 MHz from Precision Internal Oscillator: - Factory calibrated to ±1%, typical - Software selectable frequency range from 32 MHz to 31 kHz • 31 kHz Low-Power Internal Oscillator • 32.768 kHz Timer1 Oscillator: - available as system clock - Low power RTC • External Oscillator Block with: - 4 crystal/resonator modes up to 32 MHz using 4x PLL - 3 external clock modes up to 32 MHz • 4x Phase-Locked Loop (PLL) • Fail-Safe Clock Monitor: - Detect and recover from external oscillator failure • Two-Speed Start-up: - Minimize latency between code execution and external oscillator start-up • Up to 36 I/O Pins and 1 Input-only Pin: - High current sink/source for LED drivers - Individually programmable interrupt-on-change pins - Individually programmable weak pull-ups - Individual input level selection - Slew rate control on selected output pins - Open drain outputs on selected output pins General Microcontroller Features: • • • • • • • • • • Power-Saving Sleep mode Power-on Reset (POR) Power-up Timer (PWRT) Oscillator Start-up Timer (OST) Brown-out Reset (BOR) with Selectable Trip Point Extended Watchdog Timer (WDT) In-Circuit Serial ProgrammingTM (ICSPTM) In-Circuit Debug (ICD) Enhanced Low-Voltage Programming (LVP) Operating Voltage Range: - 1.8V to 3.6V (PIC16LF1784/6/7) - 2.3V to 5.5V (PIC16F1784/6/7) DS41623A-page 2 Advance Information MSSP (I2C™/SPI) Debug(1) XLP PIC16(L)F1782 (1) 2048 256 256 25 11 3 2 1 2/1 2 2 PIC16(L)F1783 (1) 4096 256 512 25 11 3 2 1 2/1 2 2 PIC16(L)F1784 (2) 4096 256 512 36 14 4 3 1 2/1 3 3 PIC16(L)F1786 (2) 8192 256 1024 25 11 4 2 1 2/1 3 3 PIC16(L)F1787 (2) 8192 256 1024 36 14 4 3 1 2/1 3 3 Note 1: I – Debugging, Integrated on Chip; H – Debugging, Requires Debug Header. 2: One pin is input-only. Data Sheet Index: (Unshaded devices are described in this document.) 1: DS41579 PIC16(L)F1782/3 Data Sheet, 28-Pin Flash, 8-bit MCUs. 2: Future Release PIC16(L)F1784/6/7 Data Sheet, 28/40/44-Pin Flash, 8-bit MCUs. EUSART CCP Programmable Switch Mode Controllers (PSMC) Timers (8/16-bit) 8-bit DAC Operational Amplifiers Comparators 12-bit ADC (ch) I/Os(2) Data SRAM (bytes) Data EEPROM (bytes) Program Memory Flash (words) Device Data Sheet Index PIC16(L)F178X Family Types 1 1 1 1 1 1 1 1 1 1 I I I I I Y Y Y Y Y 2012 Microchip Technology Inc. PIC16(L)F1784/6/7 Note: Pin details are subject to change. FIGURE 1: 28-PIN DIAGRAM FOR PIC16(L)F1786 SPDIP, SOIC, SSOP 1 28 RB7 RA0 RA1 2 27 RB6 3 RB5 RA2 4 RA3 RA4 RA5 VSS 5 26 25 24 23 RA7 RA6 RC0 RC1 RC2 RC3 Note: 6 7 8 9 10 11 12 PIC16(L)F1786 VPP/MCLR/RE3 22 21 20 19 RB4 RB3 RB2 RB1 RB0 VDD 13 16 VSS RC7 RC6 RC5 14 15 RC4 18 17 See Table 1 for the location of all peripheral functions. 2012 Microchip Technology Inc. Advance Information DS41623A-page 3 PIC16(L)F1784/6/7 FIGURE 2: 28-PIN DIAGRAM FOR PIC16(L)F1786 28 27 26 25 24 23 22 RA1 RA0 RE3/MCLR/VPP RB7 RB6 RB5 RB4 QFN PIC16(L)F1786 8 9 10 11 12 13 14 1 2 3 4 5 6 7 21 20 19 18 17 16 15 RB3 RB2 RB1 RB0 VDD VSS RC7 RC0 RC1 RC2 RC3 RC4 RC5 RC6 RA2 RA3 RA4 RA5 VSS RA7 RA6 Note: See Table 1 for the location of all peripheral functions. DS41623A-page 4 Advance Information 2012 Microchip Technology Inc. PIC16(L)F1784/6/7 28-Pin SPDIP, SOIC, SSOP 28-Pin QFN, ADC Reference Comparator Operation Amplifiers 8-bit DAC Timers PSMC CCP EUSART MSSP Interrupt Pull-up Basic 28-PIN ALLOCATION TABLE (PIC16(L)F1786) I/O TABLE 1: RA0 2 27 AN0 — C1IN0C2IN0C3IN0C4IN0- — — — — — — — IOC Y — RA1 3 28 AN1 — C1IN1C2IN1C3IN1C4IN1- OPA1OUT — — — — — — IOC Y — RA2 4 1 AN2 VREFDAC1VREF- C1IN0+ C2IN0+ C3IN0+ C4IN0+ OPA1IN- DAC1OUT1 — — — — — IOC Y — RA3 5 2 AN3 VREF+ DAC1VREF+ C1IN1+ — — — — — — — IOC Y — — RA4 6 3 — — C1OUT OPA1IN+ — T0CKI — — — — IOC Y RA5 7 4 AN4 — C2OUT OPA1IN- — — — — — SS IOC Y — RA6 10 7 — — C2OUT(1) — — — — — — — IOC Y VCAP OSC2 CLKOUT RA7 9 6 — — — — — — PSMC1CLK PSMC2CLK PSMC3CLK — — — IOC Y OSC1 CLKIN RB0 21 18 AN12 — C2IN1+ — — — CCP1(1) — — INT IOC Y — RB1 22 19 AN10 — C1IN3C2IN3C3IN3C4IN3- OPA2OUT — — PSMC1IN PSMC2IN PSMC3IN — — — — IOC Y — RB2 23 20 AN8 — — OPA2IN- — — — — — — IOC Y CLKR RB3 24 21 AN9 — C1IN2C2IN2C3IN2C3IN1+ OPA2IN+ — — — CCP2(1) — — IOC Y — RB4 25 22 AN11 — — — — — — — — IOC Y — RB5 26 23 AN13 — C4IN2C3OUT — — T1G — CCP3(1) — SDO(1) IOC Y — RB6 27 24 — — C4IN1+ — — — — — TX(1) CK(1) SDI(1) SDA(1) IOC Y ICSPCLK RB7 28 25 — — — — DAC1OUT2 — — — RX(1) DT(1) SCK(1) SCL(1) IOC Y ICSPDAT RC0 11 8 — — — — — SOSCO T1CKI PSMC1A — — — IOC Y — RC1 12 9 — — — — — SOSCI PSMC1B CCP2 — — IOC Y — RC2 13 10 — — — — — — PSMC1C PSMC3B CCP1 — — IOC Y — RC3 14 11 — — — — — — PSMC1D — — SCK SCL IOC Y — RC4 15 12 — — — — — — PSMC1E — — SDI SDA IOC Y — RC5 16 13 — — — — — — PSMC1F PSMC3A — — SDO IOC Y — RC6 17 14 — — — — — — PSMC2A CCP3 TX CK — IOC Y — RC7 18 15 — — — — — — PSMC2B — RX DT — IOC Y — RE3 1 26 — — — — — — — — — — IOC Y MCLR VPP VDD 20 17 — — — — — — — — — — — — VDD VSS 8, 19 5, 16 — — — — — — — — — — — — VSS Note 1: Alternate pin function selected with the APFCON register. 2012 Microchip Technology Inc. Advance Information DS41623A-page 5 PIC16(L)F1784/6/7 FIGURE 3: 40-PIN PDIP PACKAGE DIAGRAM FOR PIC16(L)F1784/7 40-Pin PDIP Note: DS41623A-page 6 1 40 RB7ICSPDAT RA0 2 39 RB6/ICSPCLK RA1 3 38 RB5 RA2 4 37 RB4 RA3 5 36 RB3 RA4 6 35 RB2 RA5 RE0 7 34 8 33 RB1 RB0 RE1 9 PIC16(L)F1784/7 VPP/MCLR/RE3 32 VDD 31 VSS 30 RD7 29 RD6 RE2 10 VDD 11 VSS 12 RA7 13 28 RD5 RA6 14 27 RD4 RC0 15 26 RC7 RC1 16 25 RC6 RC2 RC3 17 24 RC5 18 23 RD0 19 22 RC4 RD3 RD1 20 21 RD2 See Table 2 for the location of all peripheral functions. Advance Information 2012 Microchip Technology Inc. PIC16(L)F1784/6/7 FIGURE 4: 44-PIN QFN PACKAGE DIAGRAM FOR PIC16(L)F1784/7 Note: RC6 RC5 RC4 RD3 RD2 RD1 RD0 RC3 RC2 RC1 RC0 44 43 42 41 40 39 38 37 36 35 34 44-pin QFN RC7 1 33 RA6 RD4 2 32 RA7 RD5 3 31 N/C RD6 4 30 AVSS RD7 5 29 N/C 28 AVDD VSS 6 PIC16(L)F1784/7 19 20 21 22 RA1 RA2 RA3 RA4 RA0 RA5 23 18 24 11 VPP/MCLR/RE3 10 RB2 17 RB1 ICSPDAT/RB7 RE0 16 25 ICSPCLK/RB6 9 15 RB0 RB5 RE1 13 14 RE2 26 N/C RB4 27 8 12 7 RB3 VDD VDD See Table 2 for the location of all peripheral functions. 2012 Microchip Technology Inc. Advance Information DS41623A-page 7 PIC16(L)F1784/6/7 FIGURE 5: 40-PIN UQFN (5X5) PACKAGE DIAGRAM FOR PIC16(L)F1784/7 31 32 34 33 35 36 37 38 39 40 RC6 RC5 RC4 RD3 RD2 RD1 RD0 RC3 RC2 RC1 40-Pin UQFN (5x5) RC7 RD4 1 2 30 RD5 RD6 RD7 3 29 4 28 VSS VDD RB0 RB1 RB2 6 27 5 PIC16(L)F1784/7 26 7 25 8 24 23 9 20 19 18 17 16 15 14 13 11 22 21 RB3 RB4 RB5 ICSPCLK/RB6 ICSPDAT/RB7 VPP/MCLR/RE3 RA0 RA1 RA2 RA3 12 10 RC0 RA6 RA7 VSS VDD RE2 RE1 RE0 RA5 RA4 Note: DS41623A-page 8 See Table 2 for the location of all peripheral functions. Advance Information 2012 Microchip Technology Inc. PIC16(L)F1784/6/7 FIGURE 6: 44-PIN TQFP PACKAGE DIAGRAM FOR PIC16(L)F1784/7 PIC16(L)F1784/7 33 32 31 30 29 28 27 26 25 24 23 NC RC0 RA6 RA7 VSS VDD RE2 RE1 RE0 RA5 RA4 NC NC RB4 RB5 ICSPCLK/RB6 ICSPDAT/RB7 VPP/MCLR/RE3 RA0 RA1 RA2 RA3 RB0 RB1 RB2 RB3 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 RC7 RD4 RD5 RD6 RD7 VSS VDD 44 43 42 41 40 39 38 37 36 35 34 RC6 RC5 RC4 RD3 RD2 RD1 RD0 RC3 RC2 RC1 NC 44-Pin TQFP Note: See Table 2 for the location of all peripheral functions. 2012 Microchip Technology Inc. Advance Information DS41623A-page 9 PIC16(L)F1784/6/7 40-Pin PDIP 40-Pin UQFN 44-Pin TQFP 44-Pin QFN A/D Reference Comparator Op Amps 8-bit DAC Timers PSMC CCP EUSART MSSP Interrupt Pull-up Basic 40/44-PIN SUMMARY(PIC16(L)F1784/7) I/O TABLE 2: RA0 2 17 19 19 AN0 — C1IN0C2IN0C3IN0C4IN0- — — — — — — — IOC Y — RA1 3 18 20 20 AN1 — C1IN1C2IN1C3IN1C4IN1- OPA1OUT — — — — — — IOC Y — RA2 4 19 21 21 AN2 DAC1VREFVREF- C1IN0+ C2IN0+ C3IN0+ C4IN0+ OPA1IN- DAC1OUT1 — — — — — IOC Y — RA3 5 20 22 22 AN3 DAC1VREF+ VREF+ C1IN1+ — — — — — — — IOC Y — — RA4 6 21 23 23 — — C1OUT OPA1IN+ — T0CKI — — — — IOC Y RA5 7 22 24 24 AN4 — C2OUT OPA1IN- — — — — — SS IOC Y — RA6 14 29 31 33 — — C2OUT(1) — — — — — — — IOC Y VCAP CLKOUT OSC2 RA7 13 28 30 32 — — — — — — PSMC1CLK PSMC2CLK PSMC3CLK — — — IOC Y CLKIN OSC1 RB0 33 8 8 9 AN12 — C2IN1+ — — — PSMC1IN PSMC2IN PSMC3IN CCP1(1) — — INT IOC Y — RB1 34 9 9 10 AN10 — C1IN3C2IN3C3IN3C4IN3- OPA2OUT — — — — — — IOC Y — RB2 35 10 10 11 AN8 — — OPA2IN- — — — — — — IOC Y CLKR RB3 36 11 11 12 AN9 — C1IN2C2IN2C3IN2- OPA2IN+ — — — CCP2(1) — — IOC Y — — RB4 37 12 14 14 AN11 — C3IN1+ — — — — — — — IOC Y RB5 38 13 15 15 AN13 — C4IN2- — — T1G — CCP3(1) — SDO(1) IOC Y — RB6 39 14 16 16 — — C4IN1+ — — — — — TX(1) CK(1) SDA(1) SDI(1) IOC Y ICSPCLK RB7 40 15 17 17 — — — — DAC1OUT2 — — — RX(1) DT(1) SCL(1) SCK(1) IOC Y ICSPDAT RC0 15 30 32 34 — — — — — T1CKI SOSCO PSMC1A — — — IOC Y — — RC1 16 31 35 35 — — — — — SOSCI PSMC1B CCP2 — — IOC Y RC2 17 32 36 36 — — — — — — PSMC1C CCP1 — — IOC Y RC3 18 33 37 37 — — — — — — PSMC1D — — SCL SCK IOC Y — RC4 23 38 42 42 — — — — — — PSMC1E — — SDI SDA IOC Y — RC5 24 39 43 43 — — — — — — PSMC1F — — SDO IOC Y — RC6 25 40 44 44 — — — — — — PSMC2A — TX CK — IOC Y — RC7 26 1 1 1 — — — — — — PSMC2B — RX DT — IOC Y — RD0 19 34 38 38 — — — OPA3IN+ — — — — — — — Y — RD1 20 35 39 39 AN21 — C1IN4C2IN4C3IN4C4IN4- OPA3OUT — — — — — — — Y — — RD2 21 36 40 40 — — — OPA3IN- — — — — — — — Y RD3 22 37 41 41 — — — — — — — — — — — Y RD4 27 2 2 2 — — — — — — PSMC3F — — — — Y Note 1: Alternate pin function selected with the APFCON register. DS41623A-page 10 Advance Information 2012 Microchip Technology Inc. — PIC16(L)F1784/6/7 CCP EUSART MSSP Interrupt Pull-up Basic 3 3 3 — — — — — — PSMC3E — — — — Y — 29 4 4 4 — — C3OUT — — — PSMC3D — — — — Y — RD7 30 5 5 5 — — C4OUT — — — PSMC3C — — — — Y — Timers 28 RD6 A/D RD5 I/O PSMC 8-bit DAC Op Amps Comparator Reference 44-Pin QFN 44-Pin TQFP 40/44-PIN SUMMARY(PIC16(L)F1784/7) (Continued) 40-Pin UQFN 40-Pin PDIP TABLE 2: RE0 8 23 25 25 AN5 — — — — — — CCP3 — — IOC Y — RE1 9 24 26 26 AN6 — — — — — PSMC3B — — — — Y — RE2 10 25 27 27 AN7 — — — — — PSMC3A — — — — Y — RE3 1 16 18 18 — — — — — — — — — — — Y MCLR VPP VDD 11, 32 7, 26 7, 28 7,8, 28 — — — — — — — — — — — — VDD Vss 12, 6, 31 29 6, 6,30, 27 — — — — — — — — — — — — VSS Note 1: 2: Alternate pin function selected with the APFCON register. Function selected with ADCON1 register. 2012 Microchip Technology Inc. Advance Information DS41623A-page 11 PIC16(L)F1784/6/7 APPENDIX A: REVISION HISTORY Revision A (01/2012) Initial Release. DS41623A-page 12 Advance Information 2012 Microchip Technology Inc. Note the following details of the code protection feature on Microchip devices: • Microchip products meet the specification contained in their particular Microchip Data Sheet. • Microchip believes that its family of products is one of the most secure families of its kind on the market today, when used in the intended manner and under normal conditions. • There are dishonest and possibly illegal methods used to breach the code protection feature. All of these methods, to our knowledge, require using the Microchip products in a manner outside the operating specifications contained in Microchip’s Data Sheets. Most likely, the person doing so is engaged in theft of intellectual property. • Microchip is willing to work with the customer who is concerned about the integrity of their code. • Neither Microchip nor any other semiconductor manufacturer can guarantee the security of their code. Code protection does not mean that we are guaranteeing the product as “unbreakable.” Code protection is constantly evolving. We at Microchip are committed to continuously improving the code protection features of our products. Attempts to break Microchip’s code protection feature may be a violation of the Digital Millennium Copyright Act. If such acts allow unauthorized access to your software or other copyrighted work, you may have a right to sue for relief under that Act. Information contained in this publication regarding device applications and the like is provided only for your convenience and may be superseded by updates. It is your responsibility to ensure that your application meets with your specifications. MICROCHIP MAKES NO REPRESENTATIONS OR WARRANTIES OF ANY KIND WHETHER EXPRESS OR IMPLIED, WRITTEN OR ORAL, STATUTORY OR OTHERWISE, RELATED TO THE INFORMATION, INCLUDING BUT NOT LIMITED TO ITS CONDITION, QUALITY, PERFORMANCE, MERCHANTABILITY OR FITNESS FOR PURPOSE. Microchip disclaims all liability arising from this information and its use. Use of Microchip devices in life support and/or safety applications is entirely at the buyer’s risk, and the buyer agrees to defend, indemnify and hold harmless Microchip from any and all damages, claims, suits, or expenses resulting from such use. No licenses are conveyed, implicitly or otherwise, under any Microchip intellectual property rights. Trademarks The Microchip name and logo, the Microchip logo, dsPIC, KEELOQ, KEELOQ logo, MPLAB, PIC, PICmicro, PICSTART, PIC32 logo, rfPIC and UNI/O are registered trademarks of Microchip Technology Incorporated in the U.S.A. and other countries. FilterLab, Hampshire, HI-TECH C, Linear Active Thermistor, MXDEV, MXLAB, SEEVAL and The Embedded Control Solutions Company are registered trademarks of Microchip Technology Incorporated in the U.S.A. Analog-for-the-Digital Age, Application Maestro, chipKIT, chipKIT logo, CodeGuard, dsPICDEM, dsPICDEM.net, dsPICworks, dsSPEAK, ECAN, ECONOMONITOR, FanSense, HI-TIDE, In-Circuit Serial Programming, ICSP, Mindi, MiWi, MPASM, MPLAB Certified logo, MPLIB, MPLINK, mTouch, Omniscient Code Generation, PICC, PICC-18, PICDEM, PICDEM.net, PICkit, PICtail, REAL ICE, rfLAB, Select Mode, Total Endurance, TSHARC, UniWinDriver, WiperLock and ZENA are trademarks of Microchip Technology Incorporated in the U.S.A. and other countries. SQTP is a service mark of Microchip Technology Incorporated in the U.S.A. All other trademarks mentioned herein are property of their respective companies. © 2012, Microchip Technology Incorporated, Printed in the U.S.A., All Rights Reserved. Printed on recycled paper. ISBN: 978-1-61341-990-8 Microchip received ISO/TS-16949:2009 certification for its worldwide headquarters, design and wafer fabrication facilities in Chandler and Tempe, Arizona; Gresham, Oregon and design centers in California and India. The Company’s quality system processes and procedures are for its PIC® MCUs and dsPIC® DSCs, KEELOQ® code hopping devices, Serial EEPROMs, microperipherals, nonvolatile memory and analog products. In addition, Microchip’s quality system for the design and manufacture of development systems is ISO 9001:2000 certified. 2012 Microchip Technology Inc. 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