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PDF PIC16LF1713 Data sheet ( Hoja de datos )

Número de pieza PIC16LF1713
Descripción Cost Effective 8-Bit Intelligent Analog Flash Microcontrollers
Fabricantes Microchip 
Logotipo Microchip Logotipo



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PIC16(L)F1713/6
Cost Effective 8-Bit Intelligent Analog Flash Microcontrollers
Description:
PIC16(L)F1713/6 microcontrollers combine Intelligent Analog integration with low cost and extreme low power (XLP) to
suit a variety of general purpose applications. These 28-pin devices deliver on-chip op amps, Core Independent Periph-
erals (CLC, NCO and COG), Peripheral Pin Select and Zero-Cross Detect, providing for increased design flexibility.
Core Features:
• C Compiler Optimized RISC Architecture
• Only 49 Instructions
• Operating Speed:
- 0-32 MHz clock input
- 125 ns minimum instruction cycle
• Interrupt Capability
• 16-Level Deep Hardware Stack
• Up to Four 8-bit Timers
• One 16-bit Timer
• Power-on Reset (POR)
• Power-up Timer (PWRT)
• Low-Power Brown-Out Reset (LPBOR)
• Programmable Watchdog Timer (WDT) up to
256s
• Programmable Code Protection
Memory:
• Up to 8 Kwords Flash Program Memory
• Up to 1024 Bytes Data SRAM Memory
• Direct, Indirect and Relative Addressing modes
Operating Characteristics:
• Operating Voltage Range:
- 1.8V to 3.6V (PIC16LF1713/6)
- 2.3V to 5.5V (PIC16F1713/6)
• 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
Digital Peripherals:
• Configurable Logic Cell (CLC):
- Integrated combinational and sequential logic
• Complementary Output Generator (COG):
- Rising/falling edge dead-band control/
blanking
• Numerically Controlled Oscillator (NCO):
- Generates true linear frequency control and
increased frequency resolution
- Input Clock: 0Hz < FNCO < 32 MHz
- Resolution: FNCO/220
• Capture/Compare/PWM (CCP) module
• PWM: Two 10-bit Pulse-Width Modulators
• Serial Communications:
- SPI, I2C™, RS-232, RS-485, LIN compatible
- Auto-Baud Detect, auto-wake-up on start
• Up to 35 I/O Pins and One Input Pin:
- Individually programmable pull-ups
- Slew rate control
- Interrupt-on-change with edge-select
• Peripheral Pin Select (PPS):
- Enables pin mapping of digital I/O
Intelligent Analog Peripherals:
• Operational Amplifiers:
- Two configurable rail-to-rail op amps
- Selectable internal and external channels
- 2 MHz gain bandwidth product
• High-Speed Comparators:
- Up to two comparators
- 50 ns response time
- Rail-to-rail inputs
• 10-Bit Analog-to-Digital Converter (ADC):
- Up to 28 external channels
- Conversion available during Sleep
- Temperature indicator
• Zero-Cross Detector (ZCD):
- Detect when AC signal on pin crosses
ground
• 8-Bit Digital-to-Analog Converter (DAC):
- Output available externally
- Internal connections to comparators, op
amps, Fixed Voltage Reference (FVR) and
ADC
• Internal Voltage Reference module
2013-2014 Microchip Technology Inc.
Preliminary
DS40001726B-page 1

1 page




PIC16LF1713 pdf
RC4
RC5
RC6
RC7
RE3
Vdd
Vss
15
16
17
18
1
20
8
19
12 AN16
13 AN17
14 AN18
15 AN19
26
17
5
16
OUT(4)
SDI(1)
SDA(1)
CK(3)
RX(3)
IN(5)
Note 1: Default peripheral input. Alternate pins can be selected as the peripheral input with the PPS input selection registers.
2: All pin digital outputs default to PORT latch data. Alternate outputs can be selected as the peripheral digital 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.
4: Alternate outputs are excluded from solid shaded areas.
5: Alternate inputs are excluded from dot shaded areas.
IOC Y
IOC Y
IOC Y
IOC Y
IOC Y
MCLR
Vpp
Vdd
Vss

5 Page





PIC16LF1713 arduino
PIC16(L)F1713/6
TABLE 1-2: PIC16(L)F1713/6 PINOUT DESCRIPTION (CONTINUED)
Name
Function
Input Output
Type Type
Description
RB1/AN10/C1IN3-/C2IN3-/
OPA2OUT
RB1
AN10
TTL/ST CMOS General purpose I/O.
AN — ADC Channel 10 input.
C1IN3- AN — Comparator C1 negative input.
C2IN3- AN — Comparator C2 negative input.
OPA2OUT
AN Operational Amplifier 2 output.
RB2/AN8/OPA2IN-
RB2
TTL/ST CMOS General purpose I/O.
AN8
AN — ADC Channel 8 input.
OPA2IN-
AN
— Operational Amplifier 2 inverting input.
RB3/AN9/C1IN2-/C2IN2-/
OPA2IN+
RB3
TTL/ST CMOS General purpose I/O.
AN9
AN — ADC Channel 9 input.
C1IN2- AN — Comparator C1 negative input.
C2IN2- AN — Comparator C2 negative input.
OPA2IN+ AN
— Operational Amplifier 2 non-inverting input.
RB4/AN11
RB4
TTL/ST CMOS General purpose I/O.
RB5/AN13/T1G(1)
AN11
RB5
AN — ADC Channel 11 input.
TTL/ST CMOS General purpose I/O.
AN13
AN — ADC Channel 13 input.
RB6/CLCIN2(1)/ICSPCLK
T1G
TTL/ST — Timer1 gate input.
RB6
TTL/ST CMOS General purpose I/O.
CLCIN2 TTL/ST — Configurable Logic Cell source input.
ICSPCLK ST
— Serial Programming Clock.
RB7/DAC1OUT2/DAC2OUT2/
CLCIN3(1)/ICSPDAT
RB7
TTL/ST CMOS General purpose I/O.
DAC1OUT2 —
AN Digital-to-Analog Converter output.
DAC2OUT2 —
AN Digital-to-Analog Converter output.
CLCIN3 TTL/ST — Configurable Logic Cell source input.
RC0/T1CKI(1)/SOSCO
ICSPDAT ST CMOS ICSP™ Data I/O.
RC0
TTL/ST CMOS General purpose I/O.
T1CKI TTL/ST — Timer1 clock input.
RC1/SOSCI/CCP2(1)
SOSCO
RC1
XTAL XTAL Secondary Oscillator Connection.
TTL/ST CMOS General purpose I/O.
SOSCI XTAL XTAL Secondary Oscillator Connection.
RC2/AN14/CCP1(1)
CCP2
RC2
TTL/ST — Capture input
TTL/ST CMOS General purpose I/O.
AN14
AN — ADC Channel 14 input.
RC3/AN15/SCL/SCK(1)
CCP1
RC3
TTL/ST — Capture input
TTL/ST CMOS General purpose I/O.
AN15
SCL/SCK
AN
I2C™
— ADC Channel 15 input.
— I2C/SPI clock input.
Legend: AN = Analog input or output CMOS = CMOS compatible input or output
OD = Open Drain
TTL = TTL compatible input ST = Schmitt Trigger input with CMOS levels I2C™ = Schmitt Trigger input with I2C
HV = High Voltage
XTAL = Crystal levels
Note 1: Default peripheral input. Alternate pins can be selected as the peripheral input with the PPS input selection registers.
2: All pin digital outputs default to PORT latch data. Alternate outputs can be selected as the peripheral digital 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.
2013-2014 Microchip Technology Inc.
Preliminary
DS40001726B-page 11

11 Page







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