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PIC16LF1618 PDF 데이터시트 : 부품 기능 및 핀배열

부품번호 PIC16LF1618
기능 8-Bit Flash Microcontroller
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PIC16LF1618 데이터시트, 핀배열, 회로
PIC16(L)F1614/8
14/20-Pin, 8-Bit Flash Microcontroller
Description
PIC16(L)F1614/8 microcontrollers deliver on-chip features that are unique to the design for embedded control of small
motors and general purpose applications in 14/20-pin count packages. Features like 10-bit A/D, CCP, 24-bit SMT and
Zero-Cross Detection offer an excellent solution to the variety of applications. The product family also has a CRC+
memory scan and Windowed WDT to support safety-critical systems in home appliances, white goods and other end
equipment.
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
• One 8-Bit Timer
• Four 16-bit Timers
• Low Current Power-on Reset (POR)
• Configurable Power-up Timer (PWRT)
• Brown-out Reset (BOR) with Selectable Trip Point
• Windowed Watchdog Timer (WWDT):
- Variable prescaler selection
- Variable window size selection
- All sources configurable in hardware or
software
Memory
• 4 KW Flash Program Memory
• 512 Bytes Data SRAM Memory
• Direct, Indirect and Relative Addressing modes
• High-Endurance Flash Data Memory (HEF):
- 128 B (nonvolatile), 100K erase/write cycles
Operating Characteristics
• Operating Voltage Range:
- 1.8V to 3.6V (PIC16LF1614/8)
- 2.3V to 5.5V (PIC16F1614/8)
• 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):
- Two CLCs
- Integrated combinational and sequential logic
• Complementary Waveform Generator (CWG):
- Rising and falling edge dead-band control
- Full-bridge, half-bridge, 1-channel drive
- Multiple signal sources
• Two Capture/Compare/PWM (CCP) modules
• PWM: Two 10-bit Pulse-Width Modulators
• Two Signal Measurement Timers (SMT):
- 24-bit timer/counter with prescaler
- Multiple gate and clock inputs
• Angular Timer:
- Single pulse
- Multiple pulses with missing pulse recovery
• 8-Bit Timers (TMR2+HLT/4/6):
- Up to 3 Timer2/4/6 with Hardware Limit Timer
(HLT)
- Monitors Fault Conditions: Stall, Stop, etc.
- Multiple modes
- 8-bit timer/counter with prescaler
- 8-bit period register and postscaler
- Asynchronous H/W Reset sources
• Math Accelerator with Proportional-Integral-
Derivative (PID):
- Four operation modes
- Add and multiply
- Simple multiplier
- Multiply and Accumulate
- Programmable PID controller
• Cyclic Redundancy Check with Memory Scan
(CRC/SCAN):
- Software configurable
• Serial Communications:
- Enhanced USART (EUSART)
- SPI, I2C™, RS-232, RS-485, LIN compatible
- Auto-Baud Detect, Auto-Wake-up on start
2014 Microchip Technology Inc.
Preliminary
DS40001769A-page 1




PIC16LF1618 pdf, 반도체, 판매, 대치품
PIC16(L)F1614/8
TABLE 2: PACKAGES
Packages
PDIP
PIC16(L)F1614
PIC16(L)F1618
SOIC
DFN
UDFN
TSSOP
QFN
UQFN
SSOP

Note: Pin details are subject to change.
PIN DIAGRAMS
FIGURE 1:
14-PIN PDIP, SOIC, TSSOP
VDD
RA5
RA4
MCLR/VPP/RA3
RC5
RC4
RC3
1
2
3
4
5
6
7
14 VSS
13 RA0/ICSPDAT
12 RA1/ICSPCLK
11 RA2
10 RC0
9 RC1
8 RC2
FIGURE 2:
16-PIN QFN
RA5
RA4
RA3/MCLR/VPP
RC5
1
2
3
4
16 15 14 13
12 RA0
11 RA1
10 RA2
9 RC0
5 67 8
FIGURE 3:
20-PIN PDIP, SOIC, SSOP
VDD
RA5
RA4
MCLR/VPP/RA3
RC5
RC4
RC3
RC6
RC7
RB7
1
2
3
4
5
6
7
8
9
10
20 VSS
19 RA0
18 RA1
17 RA2
16 RC0
15 RC1
14 RC2
13 RB4
12 RB5
11 RB6
DS40001769A-page 4
Preliminary
2014 Microchip Technology Inc.

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PIC16LF1618 전자부품, 판매, 대치품
TABLE 4: 20-PIN ALLOCATION TABLE (PIC16(L)F1618)
RA0 19 16 AN0 DAC1OUT C1IN+
— —— —
——
— — IOC Y ICSPDAT
RA1 18 15 AN1
VREF+
C1IN0-
C2IN0-
— —— —
——
— — IOC Y ICSPCLK
RA2 17 14 AN2
— T0CKI(1) — CWG1IN(1) ZCD1IN
——
— INT Y
IOC
RA3 4 1 —
— T6IN(1)
— SMTWIN2(1)
— — IOC Y MCLR
VPP
RA4 3 20 AN3
— T1G(1)
— SMTSIG1(1)
— — IOC Y CLKOUT
RA5 2 19 —
— T1CKI(1)
T2IN(1)
CLCIN3(1) — SMTWIN1(1)
— — IOC Y CLKIN
RB4 13 10 AN10
———
— —— —
— SDI(1)
— IOC Y
RB5 12 9 AN11
———
— RX(1,3)
——
— IOC Y
RB6 11 8 —
———
— —— —
— SCK(1,3)
— IOC Y
RB7 10 7 —
———
— CK(1)
——
— IOC Y
RC0 16 13 AN4
C2IN+ T5CKI(1)
— —— —
——
IOC Y
RC1 15 12 AN5
C1IN1- T4IN(1)
C2IN1-
CLCIN(2)
— SMTSIG2(1)
— IOC Y
RC2 14 11 AN6
C1IN2-
C2IN2-
— —— —
——
IOC Y
RC3 7 4 AN7 — C1IN3- T5G(1) CCP2(1)
C2IN3-
CLCIN0(1)
ATCC(1)
— IOC Y
RC4 6 3 —
— T3G(1)
CLCIN1(1)
——
— HIC4 IOC Y —
RC5 5 2 —
— T3CKI(1) CCP1(1)
——
ATIN(1)
— HIC5 IOC Y —
RC6 8 5 AN8
———
— —— —
— SS(1)
— IOC Y
RC7 9 6 AN9
———
— —— —
——
— IOC Y
VDD
1 18
———
— —— —
——
— ——
VSS 20 17 —
———
— —— —
——
— ——
Note
1:
2:
3:
Default peripheral input. Input can be moved to any other pin with the PPS input selection registers.
All pin outputs default to PORT latch data. Any pin can be selected as a digital peripheral output with the PPS output selection registers.
These peripheral functions are bidirectional. The output pin selections must be the same as the input pin selections.

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