PIC12(L)F1501, PIC16(L)F150x Brief Datasheet by Microchip Technology

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6‘ MICROCHIP
2011 Microchip Technology Inc. Advance Information DS41454C-page 1
PIC12(L)F1501/PIC16(L)F150X
High-Performance RISC CPU:
C Compiler Optimized Architecture
Only 49 Instructions
Up to 14 Kbytes Linear Program Memory
Addressing
Up to 512 bytes Linear Data Memory Addressing
Operating Speed:
- DC – 20 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
Flexible Oscillator Structure:
16 MHz Internal Oscillator Block:
- Factory calibrated to ±1%, typical
- Software selectable frequency range from
16 MHz to 31 kHz
31 kHz Low-Power Internal Oscillator
Three External Clock modes up to 20 MHz
Special Microcontroller Features:
Operating Voltage Range:
- 1.8V to 3.6V (PIC12LF1501/PIC16LF150X)
- 2.3V to 5.5V (PIC12F1501/PIC16F150X)
Self-Programmable under Software Control
Power-on Reset (POR)
Power-up Timer (PWRT)
Programmable Low-Power Brown-Out Reset
(LPBOR)
Extended Watchdog Timer (WDT):
- Programmable period from 1 ms to 256s
Programmable Code Protection
In-Circuit Serial Programming™ (ICSP™) via Two
Pins
Enhanced Low-Voltage Programming (LVP)
Power-Saving Sleep mode:
- Low-Power Sleep mode
- Low-Power BOR (LPBOR)
Integrated Temperature Indicator
Low-Power Features
(PIC12LF1501/PIC16LF150X):
Standby Current:
- 20 nA @ 1.8V, typical
Watchdog Timer Current:
- 300 nA @ 1.8V, typical
Operating Current:
-30 A/MHz @ 1.8V, typical
Timer1 Oscillator:
- 600 nA @ 32 kHz, 1.8V, typical
(PIC16LF1508/09 devices only)
Peripheral Features:
Analog-to-Digital Converter (ADC):
- 10-bit resolution
- Up to 12 external channels
- 2 internal channels:
- Fixed Voltage Reference channel
- Temperature Indicator channel
- Auto acquisition capability
- Conversion available during Sleep
Up to 2 Comparators:
- Rail-to-rail inputs
- Power mode control
- Software controllable hysteresis
Voltage Reference module:
- Fixed Voltage Reference (FVR) with 1.024V,
2.048V and 4.096V output levels
- Up to 1 rail-to-rail resistive 5-bit DAC with
positive and negative reference selection
Up to 17 I/O Pins and 1 Input-only Pin:
- High current sink/source 25 mA/25 mA
- Individually programmable weak pull-ups
- Individually programmable interrupt-on-
change (IOC) pins
Timer0: 8-Bit Timer/Counter with 8-Bit
Programmable Prescaler
Enhanced Timer1:
- 16-bit timer/counter with prescaler
- External Gate Input mode
Timer2: 8-Bit Timer/Counter with 8-Bit Period
Register, Prescaler and Postscaler
Four 10-bit PWM modules
Up to 1 Master Synchronous Serial Port (MSSP)
with SPI and I2C™ with:
- 7-bit address masking
- SMBus/PMBus™ compatibility
Up to 1 Enhanced Universal Synchronous Asyn-
chronous Receiver Transmitter (EUSART):
- RS-232, RS-485 and LIN compatible
8/14/20-Pin, 8-Bit Flash Microcontrollers Product Brief
PIC12(L)F1501/PIC16(L)F150X
DS41454C-page 2 Advance Information 2011 Microchip Technology Inc.
- Auto-baud detect
- Auto-wake-up on Start
Up to 4 Configurable Logic Cell (CLC) modules:
- Up to 16 selectable input source signals
- Four inputs per module
- Software control of combinational/sequential
logic/state/clock functions
- AND/OR/XOR/D Flop/D Latch/SR/JK
- External or internal inputs/outputs
- Operation while in Sleep
Numerically Controlled Oscillator (NCO):
- 20-bit accumulator
- 16-bit increment
- True linear frequency control
- High-speed clock input
- Selectable Output modes
- Fixed Duty Cycle (FDC)
- Pulse Frequency Modulation (PFM)
Complementary Waveform Generator (CWG):
- Up to 8 selectable signal sources
- Selectable falling and rising edge dead-band
control
- Polarity control
- Up to 4 auto-shutdown sources
- Multiple input sources: PWM, CLC, NCO
TABLE 1: PIC12(L)F1501/PIC16(L)F150X FAMILY TYPES
FIGURE 1: 8-PIN PDIP, SOIC, MSOP, DFN DIAGRAM FOR PIC12(L)F1501
Device Program
Memory Flash
(words)
SRAM
(bytes) I/Os 10-bit A/D
(ch) Comparators DAC Timers
8/16-bit PWM EUSART MSSP CWG CLC NCO ICD XLP
PIC12F1501
PIC12LF1501 1024 64 6 4 1 1 2/1 4 1 2 1 — —
PIC16F1503
PIC16LF1503 2048 128 12 8 2 1 2/1 4 1 1 2 1
PIC16F1507
PIC16LF1507 2048 12818 12 —2/1 4 —121
PIC16F1508
PIC16LF1508 4096 2561812 2 12/1 4 1 1141V3X
PIC16F1509
PIC16LF1509 8192 5121812 2 12/1 4 1 1141V3X
Note: Pin details are subject to change.
PDIP, SOIC, MSOP, DFN (2X3)
1
2
3
4
8
7
6
5
VDD
RA5
RA4
MCLR/VPP/RA3
VSS
RA0/ICSPDAT
RA1/ICSPCLK
RA2
PIC12(L)F1501
Note: See Table 2 for location of all peripheral functions.
1““ ”H” H 090“ 1111111 itii ¢¢¢¢ 600w
2011 Microchip Technology Inc. Advance Information DS41454C-page 3
PIC12(L)F1501/PIC16(L)F150X
FIGURE 2: 14-PIN PDIP, SOIC, TSSOP DIAGRAM FOR PIC16(L)F1503
FIGURE 3: 16-PIN QFN DIAGRAM FOR PIC16(L)F1503
PDIP, SOIC, TSSOP
PIC16(L)F1503
1
2
3
4
14
13
12
11
5
6
7
10
9
8
VDD
RA5
RA4
MCLR/VPP/RA3
RC5
RC4
RC3
VSS
RA0/ICSPDAT
RA1/ICSPCLK
RA2
RC0
RC1
RC2
Note: See Table 3 for location of all peripheral functions.
Note: See Table 3 for location of all peripheral functions.
-
78
2
3
1
11
12
5
9
10
13141516
6
4
RA5
RA4
MCLR/VPP/RA3
RC4
RC3
RC1
RC2
RC0
RA0/ICSPDAT
RA2
RA1/ICSPCLK
Vss
VDD
NC
RC5
NC
PIC16(L)F1503
QFN (3x3)
00000 itiit iiitt 00000
PIC12(L)F1501/PIC16(L)F150X
DS41454C-page 4 Advance Information 2011 Microchip Technology Inc.
FIGURE 4: 20-PIN PDIP, SOIC, SSOP DIAGRAM FOR PIC16(L)F1507/8/9
FIGURE 5: 20-PIN QFN DIAGRAM FOR PIC16(L)F1507/8/9
PDIP, SOIC, SSOP
PIC16(L)F1507/8/9
1
2
3
4
20
19
18
17
5
6
7
16
15
14
VDD
RA5
RA4
MCLR/VPP/RA3
RC5
RC4
RC3
VSS
RA0/ICSPDAT
RA1/ICSPCLK
RA2
RC0
RC1
RC2
8
9
10
13
12
11
RC6
RC7
RB7
RB4
RB5
RB6
Note 1: See Table 4 for location of all PIC16(L)F1507 peripheral functions.
2: See Table 5 for location of all PIC16(L)F1508/9 peripheral functions
-
89
2
3
1
14
15
16
10
11
6
12
13
17181920
7
5
4
PIC16(L)F1507/8/9
MCLR/VPP/RA3
RC5
RC4
RC3
RC6
RC7
RB7
RB4
RB5
RB6
RC1
RC0
RA2
RA1/ICSPCLK
RA0/ICSPDAT
Vss
VDD
RA4
RA5
RC2
QFN (4x4)
Note 1: See Table 4 for location of all PIC16(L)F1507 peripheral functions.
2: See Table 5 for location of all PIC16(L)F1508/9 peripheral functions
m
2011 Microchip Technology Inc. Advance Information DS41454C-page 5
PIC12(L)F1501/PIC16(L)F150X
TABLE 2: 8-PIN ALLOCATION TABLE (PIC12(L)F1501)
TABLE 3: 14-PIN ALLOCATION TABLE (PIC16(L)F1503)
I/O
8-Pin PDIP/SOIC/MSOP/DFN
ADC
Reference
Comparator
Timer
CWG
NCO
CLC
PWM
Interrupt
Basic
RA0 7AN0 DACOUT1 C1IN+ CWGB(1) CLC2IN1 PWM2 IOC ICSPDAT
RA1 6AN1 VREF+C1IN0- NCOOUT(1) CLC2IN0 IOC ICSPCLK
RA2 5AN2 DACOUT2 C1OUT T0CKI CWGA(1)
CWGFLT
CLC1OUT(1) PWM1 INT
IOC
RA3 4 — T1G(2) CLC1IN0 IOC MCLR
VPP
RA4 3AN3 C1IN1- T1G(1) CWGB(2) CLC1OUT(2) PWM3 IOC CLKOUT
RA5 2 — T1CKI CWGA(2) NCOCLK
NCOOUT(2)CLC2OUT
CLC1IN1
PWM4 IOC CLKIN
VDD 1 — — VDD
VSS 8 — — VSS
Note 1: Default location for peripheral pin function. Alternate location can be selected using the APFCON register.
2: Alternate location for peripheral pin function selected by the APFCON register.
I/O
14-Pin PDIP/SOIC/TSSOP
16-Pin QFN
ADC
Reference
Comparator
Timer
CWG
NCO
CLC
PWM
MSSP
Interrupt
Basic
RA0 13 12 AN0 DACOUT1 C1IN+ IOC ICSPDAT
RA1 12 11 AN1 VREF+ C1IN0-
C2IN0- IOC ICSPCLK
RA2 11 10 AN2 DACOUT2 C1OUT T0CKI CWGFLT CLC1OUT(1) PWM3 — INT
IOC
RA3 4 3 T1G(2) CLC1IN0 SS(2) IOC MCLR
VPP
RA4 3 2 AN3 T1G(1) NCOOUT(2) SDO(2) IOC CLKOUT
RA5 2 1 T1CKI NCOCLK CLC1IN1 IOC CLKIN
RC0 10 9AN4 C2IN+ CLC2OUT SCL
SCK — —
RC1 9 8 AN5 — C1IN1-
C2IN1- NCOOUT(1) PWM4 SDA
SDI — —
RC2 8 7 AN6 — C1IN2-
C2IN2- SDO(1) — —
RC3 7 6 AN7 — C1IN3-
C2IN3- — — CLC2IN0 PWM2 SS(1) — —
RC4 6 5 C2OUT CWGB CLC2IN1 — —
RC5 5 4 CWGA CLC1OUT(2) PWM1 — —
VDD 116 — — VDD
VSS 14 13 VSS
Note 1: Default location for peripheral pin function. Alternate location can be selected using the APFCON register.
2: Alternate location for peripheral pin function selected by the APFCON register.
PIC12(L)F1501/PIC16(L)F150X
DS41454C-page 6 Advance Information 2011 Microchip Technology Inc.
TABLE 4: 20-PIN ALLOCATION TABLE (PIC16(L)F1507)
I/O
20-Pin PDIP/SOIC/SSOP
20-Pin QFN
ADC
Reference
Timer
CWG
NCO
CLC
PWM
Interrupt
Basic
RA0 19 16 AN0 IOC ICSPDAT
RA1 18 15 AN1 VREF+ — IOC ICSPCLK
RA2 17 14 AN2 T0CKI CWGFLT CLC1OUT(1) PWM3 INT
IOC
RA3 4 1 CLC1IN0 IOC MCLR
VPP
RA4 320 AN3 T1G IOC CLKOUT
RA5 219 T1CKI NCOCLK IOC CLKIN
RB4 13 10 AN10 IOC
RB5 12 9AN11 IOC
RB6 11 8 — IOC
RB7 10 7 — IOC
RC0 16 13 AN4 CLC2OUT — —
RC1 15 12 AN5 NCOOUT(1) PWM4 — —
RC2 14 11 AN6 — —
RC3 7 4 AN7 CLC2IN0 PWM2 — —
RC4 6 3 CWGB CLC2IN1 — —
RC5 5 2 CWGA CLC1OUT(2) PWM1 — —
RC6 8 5 AN8 NCOOUT(2) — —
RC7 9 6 AN9 — — — CLC1IN1 — —
VDD 118 — — VDD
VSS 20 17 — — — VSS
Note 1: Default location for peripheral pin function. Alternate location can be selected using the APFCON register.
2: Alternate location for peripheral pin function selected by the APFCON register.
2011 Microchip Technology Inc. Advance Information DS41454C-page 7
PIC12(L)F1501/PIC16(L)F150X
TABLE 5: 20-PIN ALLOCATION TABLE (PIC16(L)F1508/9)
I/O
20-Pin PDIP/SOIC/SSOP
20-Pin QFN
ADC
Reference
Comparator
Timer
CWG
NCO
CLC
PWM
EUSART
MSSP
Interrupt
Basic
RA0 19 16 AN0 DACOUT1 C1IN+ IOC ICSPDAT
ICDDAT
RA1 18 15 AN1 VREF+C1IN0-
C2IN0- CLC4IN1 IOC ICSPCLK
ICDCLK
RA2 17 14 AN2 DACOUT2 C1OUT T0CKI CWGFLT CLC1OUT(1) PWM3 — INT
IOC
RA3 4 1 T1G(2) CLC1IN0 SS(2) IOC MCLR
VPP
RA4 320 AN3 T1OSCO
T1G(1) IOC OSC2
CLKOUT
RA5 219 T1OSCI
T1CKI NCOCLK IOC OSC1
CLKIN
RB4 13 10 AN10 CLC3IN0 SDA
SDI IOC
RB5 12 9AN11 CLC4IN0 RX
DX IOC
RB6 11 8 — SCL
SCK IOC
RB7 10 7 — CLC3OUT TX
CK IOC
RC0 16 13 AN4 C2IN+ CLC2OUT — —
RC1 15 12 AN5 C1IN1-
C2IN1- NCOOUT(1) PWM4 — —
RC2 14 11 AN6 C1IN2-
C2IN2- — —
RC3 7 4 AN7 C1IN3-
C2IN3- CLC2IN0 PWM2 — —
RC4 6 3 C2OUT CWGB CLC4OUT
CLC2IN1 — —
RC5 5 2 CWGA CLC1OUT(2) PWM1 — —
RC6 8 5 AN8 NCOOUT(2) CLC3IN1 SS(1) — —
RC7 9 6 AN9 CLC1IN1 SDO — —
VDD 118 — — VDD
VSS 20 17 ———— — VSS
Note 1: Default location for peripheral pin function. Alternate location can be selected using the APFCON register.
2: Alternate location for peripheral pin function selected by the APFCON register.
PIC12(L)F1501/PIC16(L)F150X
DS41454C-page 8 Advance Information 2011 Microchip Technology Inc.
NOTES:
QUALITY MANAGEMENT SYSTEM CERTIFIED BY DNV = ISO/TS 169492009:
2011 Microchip Technology Inc. Advance Information DS41454C-page 9
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
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OTHERWISE, RELATED TO THE INFORMATION,
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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.
© 2011, Microchip Technology Incorporated, Printed in the
U.S.A., All Rights Reserved.
Printed on recycled paper.
ISBN: 978-1-61341-392-0
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.
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.
6‘ ‘MICRDCHIP
DS41454C-page 10 Advance Information 2011 Microchip Technology Inc.
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