March 31, Announcing the PIC16(L)F170X/171X 8-bit MCU Family

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March 31, 2014 Announcing the PIC16(L)F170X/171X 8-bit MCU Family

2 Cost-Effective, Intelligent-Analog 8-bit MCUs Intelligent Analog Integration reduces system BOM cost and board space Two internal Op Amps o Signal amplification/conditioning Zero Cross Detect (ZCD) New! o High-voltage AC signal interface 10-bit ADC, 5-/8-bit DACs, High-Speed Comparators Core Independent Peripherals handle tasks with no code or CPU supervision Configurable Logic Cell (CLC) o MUX for peripheral interconnection Complementary Output Generator (COG) o Complementary waveforms with blanking/phase control Numerically Controlled Oscillator (NCO) o Precision linear frequency control

3 Continued Highly Flexible and Cost Effective for a wide variety of end equipment Peripheral Pin Select (PPS) 1 st for PIC16 MCUs! o Map any digital peripheral to any I/O pin 11 New MCUs Offer a Breadth of Pin Counts, Memory Sizes and Features o 14-, 20-, 28- and 40/44-pin packages o 3.5 KB to 28 KB Flash o 256 B to 2 KB RAM extreme Low Power (XLP) for efficient line & battery powered applications 35 na Sleep Current 30 µa/mhz Active Current

Features/Memory Breadth of Pin Counts, Memory Sizes & Features PIC16F1705 14KB / 0EE / 1KB 8 x 10b ADC, 8b DAC 2 x Op Amps, PPS 4x CLC, COG, 2xCCP SPI/I2C, EUSART, ZCD 2x Comp, 2xPWM PIC16F1709 14KB / 0EE / 1KB 12 x 10b ADC, 8b DAC 2 x Op Amps, PPS 4x CLC, COG, 2xCCP, SPI/I2C, EUSART, ZCD 2x Comp, 2xPWM PIC16F1718 28KB / 0EE / 2KB 17 x 10b ADC, 5b & 8b DAC, 2xOp Amps, ZCD 4x CLC, 2x PWM, NCO COG, SPI/I2C,EUSART PPS, 2xCCP, 2x Comp PIC16F1719 28KB / 0EE / 2KB 28 x 10b ADC, 5b & 8b DAC, 2xOp Amps, ZCD 4x CLC, 2x PWM, NCO COG, SPI/I2C,EUSART PPS, 2xCCP, 2x Comp PIC16F1704 7KB / 0EE / 512B 8 x 10b ADC, 8b DAC 2 x Op Amps, PPS 2x CLC, COG, 2xCCP, SPI/I2C, EUSART, ZCD 2x Comp, 2xPWM PIC16F1708 7KB / 0EE / 512B 12 x 10b ADC, 8b DAC 2x Op Amps, PPS 2x CLC, COG, 2xCCP, SPI/I2C, EUSART, ZCD 2x Comp, 2xPWM PIC16F1716 14KB / 0EE / 1KB 17 x 10b ADC, 5b & 8b DAC, 2xOp Amps, ZCD 4x CLC, 2x PWM, NCO COG, SPI/I2C,EUSART PPS, 2xCCP, 2x Comp PIC16F1717 14KB / 0EE / 1KB 28 x 10b ADC, 5b & 8b DAC, 2xOp Amps, ZCD 4x CLC, 2xPWM, NCO COG, SPI/I2C,EUSART PPS, 2xCCP, 2x Comp PIC16F1703 3.5KB / 0EE / 256B 8 x 10bADC 2 x Op Amp, PPS SPI/I2C, 2xCCP, ZCD PIC16F1707 3.5KB / 0EE / 512B 8 x 10b ADC 2 x Op Amps, PPS SPI/I2C, 2xCCP, ZCD PIC16F1713 7KB / 0EE / 512B 17 x 10b ADC, 5b & 8b DAC, 2xOp Amps, ZCD 4x CLC, 2x PWM, NCO COG,SPI/I2C,EUSART, PPS, 2xCCP, 2x Comp Available Today Available May 2014 14-pin 20-pin 28-pin 40-pin New 8-bit MCUs 4

Relative Features/Memory Easy Migration to Additional Integration PIC16(L)F171X PIC16(L)F151X Gain: NCO, more Memory, more ADC channels, additional 5b DAC PIC16(L)F170X PIC16(L)F150X New 8-bit MCUs Time 5

6 Versatile Functionality to Address Broad Applications Consumer Smoke Detectors Electric Razors Battery Chargers Power Drills Home Appliances Medical Pulse Oximeters Wearable Exercise Monitors Glucose Meters Blood-Pressure Meters Lighting Control Indoor/Outdoor Automotive Lighting Portable Lighting Specialty Lighting

7 Block Diagram

8 Zero Cross Detect New PIC MCU feature! About Zero Cross Detect (ZCD) Senses when high-voltage AC signal on pin crosses through ground Simplifies TRIAC control Minimizes EMI caused by switching transients Switching power ON or OFF when VAC is low Can be used as long-term time reference Senses how often the high-voltage AC line crosses ground Pin is held at constant 1 Vdc; Usually, pin needs to float above and below rails For Use In AC Power Supplies Frequency Counters White Goods TRIAC Control Light-Dimming Control Using TRIAC

9 Peripheral Pin Select First Time on a PIC16! About Peripheral pin Select (PPS) More flexible than previous PPS implementation Configure any digital peripheral to any I/O pin via an internal MUX Ensures layout flexibility Allows routing of PCB traces to minimize EMC effects Completely eliminates pin overlap Total optimization of MCU resources V DD PIC16F1709 20-pin MCU Digital Peripherals V ss For Use In Space-constrained applications Legacy system upgrades Anywhere flexibility is needed PPS enables flexible mapping of any digital peripheral to any I/O pin (green)

10 Inductive Cooktop Demo Design Based on PIC16F1708 MCU

11 MPLAB Code Configurator Innovative, new and easy to use plug-in tool for MPLAB X IDE Generates seamless, easy-to-understand drivers and intializers that are inserted into your project Easy migration between similar MCUs and peripherals Supports PIC16F1704/08 today, PIC16F1713/16 in April 14, all others in C2Q 14 www.microchip.com/mcc

12 MPLAB Code Configurator Continued Easy-to-use GUI that dynamically generates code for integrated peripherals, MCU configurations and I/Os Integrated into MPLAB X IDE to provide a very powerful and extremely easy to use development platform Simplifies MCU device initialization and helps drastically reduce time to market

13 Development Tool Support (All Available Now) Development Platform PICkit 3 Low Pin Count Demo Board (DM164130-9, $25.99) PICDEM Lab Development Kit (DM163045, $134.99) PICDEM 2 Plus (DM163022-1, $99.99) Programmers/Debuggers PICkit 3 (PG164130) MPLAB ICD3 (DV164035) MPLAB PM3 (DV007004) IDE/Compiler MPLAB X IDE MPLAB Code Configurator MPLAB XC8 Compiler All Available Now!

14 Summary Cost-Effective, Intelligent-Analog 8-bit PIC MCUs Intelligent Analog Integration Two internal Op Amps, 10-bit ADC Zero Cross Detect New! 5/8-bit DACs, High-Speed Comparators Core Independent Peripherals Configurable Logic Cell Complementary Output Generator Numerically Controlled Oscillator Highly Flexible and Cost Effective Peripheral Pin Select 1 st for PIC16s! 11 New MCUs Offer a Breadth of Pin Counts, Memory Sizes and Features extreme Low Power Technology 30 µa/mhz active and 35 na sleep www.microchip.com/8bit www.microchip.com/intelligentanalog www.microchip.com/cip

Thank you! Note: The Microchip name and logo, PIC, and MPLAB are registered trademarks of Microchip Technology Incorporated in the U.S.A., and other countries. mtouch, PICkit, and PICDEM are trademark of Microchip Technology Inc. in the U.S.A., and other countries. All other trademarks mentioned herein are the property of their respective companies.

16 Back Up

17 Intelligent Analog Integration Feature Integrated Operational Amplifiers Zero Cross Detect High-speed Comparators with rail-to-rail input/output and hysteresis Benefit Increased analog integration with flexible design options New feature that simplifies TRIAC control and reduces switching transients, thereby reducing voltage spikes, EMI, spark across the contacts and extending relay life Increased voltage detection ranges with no output jitter Result Ability to create powerful signal-conditioning solutions with minimal external components Integrated solution for home appliances and other applications that plug into wall AC power Greater flexibility in system design with low-power enhancements 10-bit ADC Monitor application using feedback from the system, mtouch capacitive-sensing capability Versatile input source for increased control and intelligence Fixed Voltage Reference and 5-/8-bit DAC Increased resolution and stable references, independent of V DD (not susceptible to supply-voltage drifting) Integrated solution, reducing external components and system costs

18 Dual Operational Amplifiers Internal Dual Operation Amplifiers Rail-to-Rail Input/Output Gain Bandwidth Product (GBWP) 2 MHz typical Multiple Input Sources External Pin Fixed Voltage Reference (FVR) 8-bit Digital to Analog Converter (DAC) All pins available externally Two (2) Op-Amps integrated on each PIC16(L)F170X/170X MCU FVR DAC V + Op-Amp V - Vout

19 Dual Operational Amplifiers (cont d) V DD PIC16(L)F170X/171X V DD V DD /2 8-bit DAC V + Op-Amp Vout V DD /2 V - V SS V SS Ex: Voltage Follower Utilize the DAC with Op-amp to create a true DAC with output buffer Op-amp in unity gain configuration for stronger 1:1 output voltage V DD V DD /2 PIC16(L)F170X/171X FVR V + Op-Amp Vout V DD V DD /2 R1 V - V SS V SS Ex: Inverting Amplifier Utilize the FVR with Op-amp to create a inverted analog signal amplifier FVR set to Vdd/2 with signal gain based on ration of R2/R1 R2