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What is PIC16LF1708?

This electronic component, produced by the manufacturer "Microchip", performs the same function as "14/20-Pin 8-Bit Advanced Analog Flash Microcontrollers".


PIC16LF1708 Datasheet PDF - Microchip

Part Number PIC16LF1708
Description 14/20-Pin 8-Bit Advanced Analog Flash Microcontrollers
Manufacturers Microchip 
Logo Microchip Logo 


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PIC16(L)F1704/8
14/20-Pin 8-Bit Advanced Analog Flash Microcontrollers
High-Performance RISC CPU
• C Compiler Optimized Architecture
• Only 49 Instructions
• Up to 14 Kbytes Linear Program Memory
Addressing
• Operating Speed:
- DC – 32 MHz
- 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
• High-Endurance Flash Data Memory (HEF)
- 128 bytes of nonvolatile data storage
- 100k erase/write cycles
Flexible Oscillator Structure
• 16 MHz Internal Oscillator Block:
- Accurate to ±1%, typical
- Software selectable frequency range from
16 MHz to 250 kHz
- PLL multiplier to 32 MHz
• 31 kHz Low-Power Internal Oscillator
• External Oscillator Block with:
- Three crystal/resonator modes up to 20 MHz
- Three external clock modes up to 20 MHz
• Fail-Safe Clock Monitor:
- Allows for safe shutdown if peripheral clock
stops
• Two-Speed Oscillator Start-up
• Oscillator Start-up Timer (OST)
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 µA @ 32 kHz, 1.8V, typical
- 32 µA/MHz @ 1.8V, typical
Special Microcontroller Features
• Operating Voltage Range:
- 1.8V-3.6V (PIC16LF1704/8)
- 2.3V-5.5V (PIC16F1704/8)
• Temperature Range:
- Industrial: -40°C to 85°C
- Extended: -40°C to 125°C
• Power-on Reset (POR)
• Low Power Brown-Out Reset (LPBOR)
• Extended Watch-Dog Timer (WDT):
- Programmable period from 1 ms to 256s
• Programmable Code Protection
• In-Circuit Serial Programming™ (ICSP™) via
Two Pins
• In-Circuit Debug (ICD) via Two Pins
• Enhanced Low-Voltage Programming (LVP)
• Power-Saving Sleep mode
Digital Peripheral Features
• Up to 17 I/O Pins and one Input-only Pin:
- High current sink/source for LED drivers
- Individually programmable weak pull-ups
- Interrupt-on-change pin option with edge
selectable option
• 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:
- Up to three (TMR2/4/6)
- 8-Bit Timer/Counter
- 8-Bit Period Register
- Prescaler and Postscaler
• Capture, Compare, PWM (CCP) Module
• Master Synchronous Serial Port (SSP) with SPI
and I2C 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
2013-2015 Microchip Technology Inc.
DS40001715D-page 1

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PIC16LF1708 equivalent
Pin Allocation Tables
TABLE 1: 14/16-PIN ALLOCATION TABLE (PIC16(L)F1704)
RA0 13 12 AN0 VREF- C1IN+
RA1 12 11 AN1 VREF+ C1IN0-
C2IN0-
RA2 11 10 AN2 —
RA3
4
3——
DAC1OUT1
— — — ——
DAC1OUT2
ZCD
T0CKI(1)
— — — ——
— — ——
— — ——
COGIN(1)
— — ——
— IOC Y
— IOC Y
— INT(1) Y
IOC
— IOC Y
RA4
3
2 AN3 —
— — T1G(1) — — — — — —
SOSCO
RA5
2
1——
— — T1CKI(1) — — — — — CLCIN3(1)
SOSCI
RC0
10
9 AN4 —
C2IN+ OPA1IN+
— ——
SCK(1)
SCL(3)
RC1
9
8 AN5 — C1IN1- OPA1IN-
— ——
SDI(1)
— CLCIN2(1)
C2IN1-
SDA(3)
RC2
8
7 AN6 — C1IN2- OPA1OUT
— ——
— —— —
C2IN2-
RC3
7
6 AN7 — C1IN3- OPA2OUT
C2IN3-
— CCP2(1)
SS(1)
— CLCIN0(1)
RC4
6
5——
— OPA2IN-
— ——
— — CK(1) CLCIN1(1)
RC5
5
4——
— OPA2IN+
— CCP1(1)
— RX(1,3)
VDD 1 16 — —
— — — — — — —— —
VSS 14 13 — —
— — — — — — —— —
———
— C1OUT
— — — CPP1 PWM3OUT COGA SDA(3) CK CLC1OUT
———
OUT(2)
———
— C2OUT
——
— — — CPP2 PWM4OUT COGB SCL(3) DT(3) CLC2OUT
— ——
COGC SDO
TX CLC3OUT
———
— ——
COGD SCK
Note
1:
2:
3:
Default peripheral input. Input can be moved to any other pin with the PPS input selection registers. See Register 12-1.
All pin outputs default to PORT latch data. Any pin can be selected as a digital peripheral output with the PPS output selection registers. See Register 12-3.
These peripheral functions are bidirectional. The output pin selections must be the same as the input pin selections.
IOC
IOC
IOC
IOC
IOC
IOC
IOC
IOC
Y
Y
Y
Y
Y
Y
Y
Y
ICSPDAT
ICSPCLK
MCLR
VPP
CLKOUT
OSC2
CLKIN
OSC1
VDD
VSS


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