2014 Microchip Technology Inc. Advance Information DS40001751A-page 1
PIC16(L)F1764/5/8/9
Description:
PIC16(L)F176X microcontrollers combine intelligent analog integration with digital peripherals to suit a variety of
functions and end equipment. These 14/20-pin devices provide features like 10-bit A/D, op amps, zero-cross detect,
high current IOs, communication, peripheral pin select and other key peripherals that make this family appealing in
applications looking for design flexibility.
Core Features:
C Compiler Optimized RISC Architecture
Only 49 Instructions
Operating Speed:
- DC – 32 MHz clock input
- 125 ns minimum instruction cycle
Interrupt Capability
16-Level Deep Hardware Stack
Up to Four 8-Bit Timers
Up to Three 16-Bit Timers
Power-on Reset (POR)
Configurable Power-up Timer (PWRT)
Brown-out Reset (BOR) with Selectable Trip Point
Extended Watchdog Timer (EWDT):
- Low-power 31 kHz WDT
- Software-selectable prescaler
- Software-selectable enable
Memory:
Up to 14 KB Flash Program Memory
Up to 1024 Bytes Data RAM Memory
Direct, Indirect and Relative Addressing modes
High Endurance Flash (HEF)
- 128B of nonvolatile data storage
- 100K Erase/Write cycles
Operating Characteristics:
Operating Voltage Range:
- 1.8V to 3.6V (PIC16LF176X)
- 2.3V to 5.5V (PIC16F176X)
Temperature Range:
- Industrial: -40°C to 85°C
- Extended: -40°C to 125°C
eXtreme Low-Power (XLP) Features:
Sleep mode: 50 nA @ 1.8V, typical
Watchdog Timer: 500 nA @ 1.8V, typical
Secondary Oscillator 500 nA @ 32 kHz
Operating Current:
- 8 uA @ 32 kHz, 1.8V, typical
- 32 uA/MHz @ 1.8V, typical
Low-Power BOR (LPBOR):
- 200 nA in Sleep
Digital Peripherals:
Configurable Logic Cell (CLC):
- Up to three CLCs; up to four selected inputs
- Integrated combinational and state logic
Up to Two Complementary Output Generators
(COG):
- Push-Pull, Full-Bridge and Steering modes
Up to Two Capture/Compare/PWM (CCP)
modules
Pulse-Width Modulators (PWM):
- Up to two 10-bit PWMs
- Up to two 16-bit PWMs
Peripheral Pin Select (PPS):
- Configure any digital pin to output
Serial Communications:
- Enhanced USART (EUSART)
- SPI, I2C™, RS-232, RS-485, LIN compatible
- Auto-Baud Detect, auto-wake-up on start
Up to 18 I/O Pins:
- Individually programmable pull-ups
- Slew rate control
- Interrupt-on-change with edge-select
Up to Two Data Signal Modulators (DSM)
Intelligent Analog Peripherals:
10-Bit Analog-to-Digital Converter (ADC):
- Up to 12 external channels
- Conversion available during Sleep
Up to Two Operational Amplifiers (OPA):
- Selectable internal and external channels
- High and low GBWP operating modes
Up to Four Fast Comparators (COMP):
- Low-Power/High-Speed mode
- Up to five external inverting inputs
- Up to eight external non-inverting inputs
- Fixed Voltage Reference at non-inverting
input(s)
- Comparator outputs externally accessible
Digital-to-Analog Converters (DAC):
- Up to two 10-bit resolution DACs
- Up to two 5-bit resolution DACs
14/20-Pin, 8-Bit Flash Microcontroller Product Brief
PIC16(L)F1764/5/8/9
DS40001751A-page 2 Advance Information 2014 Microchip Technology Inc.
Voltage Reference:
- Fixed Voltage Reference (FVR): 1.024V,
2.048V and 4.096V output levels
Zero-Cross Detector (ZCD):
- Detect high voltage AC signal
Programmable Ramp Generator (PRG)
- Slope compensation
- Ramp generation
High Current Drive I/Os:
- 100 mA capacity
- Low voltage
Clocking Structure:
16 MHz Internal Oscillator:
- ±1% at calibration
- Selectable frequency range 32 MHz to 31
kHz
31 kHz Low-Power Internal Oscillator
4x Phase-Locked Loop (PLL):
- For up to 32 MHz internal operation
External Oscillator Block with:
- Three external clock modes up to 32 MHz
TABLE 1: PIC16(L)F1764/5/8/9 FAMILY TYPES
Device
Data Sheet Index
Program Memory Flash
(words)
High-Endurance Flash (B)
Data SRAM (bytes)
I/O Pins
8/16-bit Timer
Comparator
10-bit ADC (ch)
5/10-bit DAC
CCP
10/16-bit PWM
COG
DSM
CLC
Op Amp
Zero-Cross Detect
Programmable Ramp Gen
High Current I/Os
Peripheral Pin Select
EUSART
I2C™/SPI
Debug(1)
PIC16(L)F1764 (A) 4096 128 512 12 4/3 2 8 1/1 11/1 1 1 3 1 1 1 2 Y 1 1 I/H
PIC16(L)F1765 (A) 8192 128 1024 12 4/3 2 8 1/1 11/1 1 1 3 1 1 1 2 Y 1 1 I/H
PIC16(L)F1768 (B) 4096 128 512 18 4/3 412 2/2 22/2 2 2 3 2 1 2 2 Y 1 1 I/H
PIC16(L)F1769 (B) 8192 128 1024 18 4/3 412 2/2 22/2 2 2 3 2 1 2 2 Y 1 1 I/H
Note 1: Debugging Methods: (I) – Integrated on Chip; (H) – via ICD header; E – Emulation Product.
Data Sheet Index:
A. Future Release PIC16(L)F1764/5 Data Sheet, 14-Pin, 8-bit Flash Microcontrollers.
B. Future Release PIC16(L)F1768/9 Data Sheet, 20-Pin, 8-bit Flash Microcontrollers.
Note: For other small form-factor package availability and marking information, please visit
http://www.microchip.com/packaging or contact your local sales office.
TABLE 2: PACKAGES
Packages PDIP SOIC TSSOP QFN SSOP
PIC16(L)F1764 X X X X
PIC16(L)F1765 X X X X
PIC16(L)F1768 X X X X
PIC16(L)F1769 X X X X
Note: Pin details are subject to change.
2014 Microchip Technology Inc. Advance Information DS40001751A-page 3
PIC16(L)F1764/5/8/9
PIN DIAGRAMS
FIGURE 1: 14-PIN PDIP, SOIC, TSSOP
FIGURE 2: 16-PIN QFN (4x4)
PIC16(L)F1764
PIC16(L)F1765
1
2
3
4
14
13
12
11
5
6
7
10
9
8
VDD
RA5
RA4
MCLR/VPP/RA3
RC5
RC4
VSS
RA0/ICSPDAT
RA1/ICSPCLK
RA2
RC0
RC1
RC2RC3
Note: See Tabl e 3 for location of all peripheral functions.
PIC16(L)F1764
PIC16(L)F1765
RA0
RA1
RA2
RC0
9
10
11
12
56
RC4
RC3
RC1
RC2
78
2
3
1
4
RA5
RA4
MCLR/VPP/RA3
RC5
15
16 1314
NC
VDD
NC
VSS
Note: See Tabl e 3 for location of all peripheral functions.
PIC16(L)F1764/5/8/9
DS40001751A-page 4 Advance Information 2014 Microchip Technology Inc.
FIGURE 3: 20-PIN PDIP, SOIC, SSOP
FIGURE 4: 20-PIN QFN (4x4)
PIC16(L)F1768
PIC16(L)F1769
1
2
3
4
14
13
12
11
5
6
7
10
9
8
VDD
RA5
RA4
MCLR/VPP/RA3
RC5
RC4
VSS
RA0
RA1
RA2
RC0
RC1
RC2
RC3
Note: See Tabl e 4 for location of all peripheral functions.
18
17
16
15
20
19
RC6
RC7
RB7
RB4
RB5
RB6
PIC16(L)F1768
PIC16(L)F1769
Note: See Ta bl e 4 for location of all peripheral functions.
15 RA1
RA2
RC0
RC1
RC2
11
12
13
14
67
RC7
RB7
RB4
RB5
RB6
8910
2
3
1
1819
20 1617
5
4
VDD
RA5
RA4
MCLR/VPP/RA3
RC5
RC4
RC3
RC6
VSS
RA0
2014 Microchip Technology Inc. Advance Information DS40001751A-page 5
PIC16(L)F1764/5/8/9
PIN ALLOCATION TABLES
TABLE 3: 14-PIN AND 16-PIN ALLOCATION TABLE (PIC16(L)F1764 AND PIC16(L)F1765)
I/O
14-Pin PDIP/SOIC/TSSOP
16-Pin QFN
ADC
Reference
DAC
Op Amp
Comparator
Zero Cross
Ramp Generator
Timers
PWM
CCP
COG
CLC
DSM
EUSART
MSSP
Interrupts
Pull-ups
Hi Current
Basic
RA0 13 12 AN0 VREF-
DAC1REF-
DAC2REF-
DAC1OUT1
DAC2OUT1
C1IN0+
C2IN0+
IOC Y ICSPDAT
RA1 12 11 AN1 VREF+
DAC1REF+
DAC2REF+
C1IN0-
C2IN0-
IOC Y ICSPCLK
RA2 11 10 AN2 ZCD T0CKI(1) COG1IN(1) INT(1)
IOC
Y
RA3 4 3 T6CKI(1) DSM1CH(1) IOC Y VPP
MCLR
ICD
RA4 3 2 AN3 T1G(1)
SOSCO
DSM1CL(1) IOC Y OSC2
CLKOUT
RA5 2 1 T1CKI(1)
T2CKI(1)
SOSCI
CLCIN3(1) DSM1MOD(1) IOC Y OSC1
CLKIN
RC0 10 9AN4 OPA1IN+ C2IN0+ T5CKI(1) SCL(1)
SCK(1,3) IOC Y
RC1 9 8 AN5 OPA1IN- C1IN1-
C2IN1-
T4CKI(1) CLCIN2(1) SDI(1)
SDA(1,3) IOC Y
RC2 8 7 AN6 OPA1OUT C1IN2-
C2IN2-
RG1IN0 IOC Y
RC3 7 6 AN7 C1IN3-
C2IN3-
T5G(1) CLCIN0(1) SS(1) IOC Y
RC4 6 5 RG1R(1) T3G(1) CLCIN1(1) CK(1) IOC Y Y
RC5 54— RG1F(1) T3CKI(1) CCP1(1) RX(1,3) IOC Y Y
VDD 116 VDD
VSS 14 13 —— ———VSS
OUT(2) C1OUT PWM3OUT CCP1 COG1A CLC1OUT DSM1OUT DT(3) SDO INT
—C2OUT —PWM5OUT COG1B CLC2OUT —TXSDA
(3)
COG1C CLC3OUT CK SCK(3)
COG1D —SCL
Note 1: Default peripheral input. Input can be moved to any other pin with the PPS input selection register.
2: All pin outputs default to PORT latch data. Any pin can be selected as a digital peripheral output with the PPS output selection registers.
3: These peripheral functions are bidirectional. The output pin selections must be the same as the input pin selections.
PIC16(L)F1764/5/8/9
DS40001751A-page 6 Advance Information 2014 Microchip Technology Inc.
TABLE 4: 20-PIN ALLOCATION TABLE ( PIC16(L)F1768 AND PIC16(L)F1769)
I/O
20-Pin PDIP/SOIC/SSOP
20-Pin QFN
ADC
Reference
DAC
Op Amp
Comparator
Zero Cross
Ramp Generator
Timers
PWM
CCP
COG
CLC
DSM
EUSART
MSSP
Interrupts
Pull-ups
Hi Current
Basic
RA0 19 16 AN0 VREF-
DAC1REF-
DAC2REF-
DAC3REF-
DAC4REF-
DAC1OUT1
DAC2OUT1
DAC3OUT1
DAC4OUT1
C1IN0+
C3IN0+
IOC Y ICSPDAT
RA1 18 15 AN1 VREF+
DAC1REF+
DAC2REF+
DAC3REF+
DAC4REF+
C1IN0-
C2IN0-
C3IN0-
C4IN0-
IOC Y ICSPCLK
RA2 17 14 AN2 ZCD T0CKI(1) COG1IN(1)
COG2IN(1) INT(1)
IOC
Y
RA3 4 1 T6CKI(1) DSM1CH(1)
DSM2CH(1) IOC Y VPP
MCLR
ICD
RA4 320 AN3 T1G(1)
SOSCO
DSM1CL(1)
DSM2CL(1) IOC Y OSC2
CLKOUT
RA5 219 T1CKI(1)
T2CKI(1)
SOSCI
CLCIN3(1) DSM1MOD(1)
DSM2MOD(1) IOC Y OSC1
CLKIN
RB4 13 10 AN10 OPA1IN0- SDI(1)
SDA(1,3) IOC Y
RB5 12 9AN11 OPA1IN0+ RX(1,3) IOC Y
RB6 11 8 C1IN1+
C3IN1+
SCL(1)
SCK(1,3) IOC Y
RB7 10 7 C2IN1-
C4IN1+
CK(1) IOC Y
RC0 16 13 AN4 C2IN0-
C4IN0+
T5CKI(1) IOC Y
RC1 15 12 AN5 C1IN1-
C2IN1-
C3IN1-
C4IN1-
T4CKI(1) CLCIN2(1) IOC Y
RC2 14 11 AN6 OPA1OUT
OPA2IN1-
OPA2IN1+
C1IN2-
C2IN2-
RG1IN0
RG2IN1
IOC Y
Note 1: Default peripheral input. Input can be moved to any other pin with the PPS input selection register.
2: All pin outputs default to PORT latch data. Any pin can be selected as a digital peripheral output with the PPS output selection registers.
3: These peripheral functions are bidirectional. The output pin selections must be the same as the input pin selections.
2014 Microchip Technology Inc. Advance Information DS40001751A-page 7
PIC16(L)F1764/5/8/9
RC3 74AN7 OPA2OUT
OPA1IN1-
OPA1IN1+
C1IN3-
C2IN3-
C3IN3-
C4IN3-
RG2IN0
RG1IN1
T5G(1) CCP2(1) CLCIN0(1) IOC Y
RC4 6 3 RG1R(1)
RG2R(1) T3G(1) CLCIN1(1) IOC Y Y
RC5 52— RG1F(1)
RG2F(1) T3CKI(1) CCP1(1) IOC Y Y
RC6 85AN8 OPA2IN0- SS(1) IOC Y
RC7 96AN9 OPA2IN0+ IOC Y
VDD 118
VSS 20 17 ——
OUT(2) C1OUT PWM3OUT CCP1 COG1A CLC1OUT DSM1OUT DT(3) SDO
—C2OUT PWM4OUT CCP2 COG1B CLC2OUT DSM2OUT TX SDA(3)
C3OUT PWM5OUT COG1C CLC3OUT CK SCK(3)
—C4OUT —PWM6OUT COG1D —SCL
COG2A
COG2B
COG2C
COG2D
TABLE 4: 20-PIN ALLOCATION TABLE ( PIC16(L)F1768 AND PIC16(L)F1769)
I/O
20-Pin PDIP/SOIC/SSOP
20-Pin QFN
ADC
Reference
DAC
Op Amp
Comparator
Zero Cross
Ramp Generator
Timers
PWM
CCP
COG
CLC
DSM
EUSART
MSSP
Interrupts
Pull-ups
Hi Current
Basic
Note 1: Default peripheral input. Input can be moved to any other pin with the PPS input selection register.
2: All pin outputs default to PORT latch data. Any pin can be selected as a digital peripheral output with the PPS output selection registers.
3: These peripheral functions are bidirectional. The output pin selections must be the same as the input pin selections.
DS40001751A-page 8 Advance Information 2014 Microchip Technology Inc.
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Trademarks
The Microchip name and logo, the Microchip logo, dsPIC,
FlashFlex, KEELOQ, KEELOQ logo, MPLAB, PIC, PICmicro,
PICSTART, PIC32 logo, rfPIC, SST, SST Logo, SuperFlash
and UNI/O are registered trademarks of Microchip Technology
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Company are registered trademarks of Microchip Technology
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Microchip Technology Inc. in other countries.
Analog-for-the-Digital Age, Application Maestro, BodyCom,
chipKIT, chipKIT logo, CodeGuard, dsPICDEM,
dsPICDEM.net, dsPICworks, dsSPEAK, ECAN,
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GestIC and ULPP are registered trademarks of Microchip
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All other trademarks mentioned herein are property of their
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© 2014, Microchip Technology Incorporated, Printed in the
U.S.A., All Rights Reserved.
Printed on recycled paper.
ISBN: 978-1-63276-174-3
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.
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2014 Microchip Technology Inc. Advance Information DS40001751A-page 9
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