PIC16F1717-I/MV - 8-Bit 32MHz 14KB Flash MCU | Microchip
MPN: PIC16F1717-I/MV β Active| Qty | Unit Price | Extended |
|---|---|---|
| 1 | $3.12 | $3.12 |
| 10 | $2.85 | $28.50 |
| 100 | $2.41 | $241.00 |
| 500 | $2.05 | $1,025.00 |
| 1,000 | $1.72 | $1,720.00 |
PIC16F1717-I/MV Overview
A microcontroller (MCU) is a single-chip computer that integrates a CPU core, memory (Flash for program storage, SRAM for data, and EEPROM for non-volatile data), and programmable peripherals into one package. PIC microcontrollers from Microchip use a modified Harvard RISC architecture with a small, deterministic instruction set, and belong to the broader taxonomy: microcontroller -> embedded processor -> semiconductor device. The '16F' family is characterized by Flash program memory, mid-range core, and low pin-count variants ideal for cost-sensitive designs.
Key features include on-chip operational amplifiers (Op Amps), a 10-bit ADC, a 5/8-bit DAC, high-speed comparators, and Core Independent Peripherals: Configurable Logic Cell (CLC), Complementary Output Generator (COG), Numerically Controlled Oscillator (NCO), and Zero Cross Detect (ZCD). Peripheral Pin Select (PPS) allows flexible signal routing, while XLP technology delivers typical sleep currents in the nanoamp range, suiting battery-powered applications. The 14KB Flash (8K x 14 words) supports in-circuit serial programming (ICSP).
The architecture uses a 14-bit instruction word with a 32MHz internal oscillator, achieving up to 8 MIPS throughput. Peripherals communicate via PPS-mapped I/O to nearly any pin, simplifying PCB layout. Memory-mapped SFRs provide deterministic register access. The integrated op amps and 10-bit ADC enable direct sensor signal conditioning without external analog ICs.
Typical applications include IoT sensor nodes, automotive sensor conditioning, LED lighting controllers, motor control loops, and battery-powered consumer devices. The automotive-grade -I/MV variant operates across -40C to +85C with AEC-Q100 qualification, suiting under-hood and cabin applications.
Designers should leverage PPS to minimize PCB routing complexity and use the CLC for state-machine logic that runs without CPU intervention, reducing firmware complexity and power consumption.
This page synthesizes distributor pricing, drop-in same-package alternatives, and practical design notes not found in the standalone manufacturer datasheet, helping engineers select and source the right MCU for cost-sensitive analog-rich embedded designs.
Drop-in alternatives for PIC16F1717-I/MV β same package, pin-to-pin compatible. Different-package parts requiring PCB rework are excluded.
Variants in this series
Same-series models that are drop-in compatible with PIC16F1717-I/MV (same form factor and footprint) β differing in Package, ADC, DAC, Comparators, Program Memory (Flash).
Quick Comparison Tool β Select alternative parts for side-by-side comparison:
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Request AlternativesPIC16F1717-I/MV Maximum Ratings & Electrical Characteristics
| Core Architecture | PIC RISC 8-bit (mid-range enhanced) |
| Program Memory (Flash) | 14 KB (8K x 14 words) |
| Data RAM | 1 KB |
| Maximum CPU Speed | 32 MHz |
| Operating Voltage Range | 2.5 V / 3.3 V / 5 V |
| ADC | 10-bit |
| DAC | 5/8-bit |
| On-Chip Op Amps | Yes |
| Comparators | High-speed comparators (HS Comp) |
| Core Independent Peripherals | CLC, COG, NCO, ZCD |
| Peripheral Pin Select (PPS) | Yes |
| Communication Interfaces | EUSART, I2C, SPI |
| Package | 40-UQFN (5x5 mm) with Exposed Pad (MV) |
| Operating Temperature Range | -40C to +85C (Industrial, -I) |
| Automotive Qualification | AEC-Q100 |
| Low Power Technology | eXtreme Low Power (XLP) |
| Mounting Type | Surface Mount |
| RoHS Status | Compliant |
PIC16F1717-I/MV Pin Configuration
| Pin 1 | RA0/AN0/C1IN0+/C2IN0+/C3IN0+/OPA1IN0+ β Bidirectional I/O with analog and op-amp input functions |
| Pin 2 | RA1/AN1/C1IN1-/C2IN1-/C3IN1-/OPA1IN0- β Bidirectional I/O with analog and op-amp input functions |
| Pin 3 | RA2/AN2/C1IN0-/C2IN0-/C3IN0-/OPA1OUT β Bidirectional I/O with analog and op-amp output functions |
| Pin 4 | RA3/AN3/C1IN1+/C2IN1+/C3IN1+/VREF+ β Bidirectional I/O with analog and VREF+ input functions |
| Pin 5 | RA4/AN4/C1OUT/T0CKI β Bidirectional I/O with analog and Timer0 clock input |
| Pin 6 | RA5/AN5/C2OUT/VCAP β Bidirectional I/O with analog and voltage regulator bypass |
| Pin 7 | RA6/AN6/C3OUT β Bidirectional I/O with analog and comparator output |
| Pin 8 | RA7/AN7 β Bidirectional I/O with analog input |
| Pin 9 | VSS β Ground reference |
| Pin 10 | VDD β Positive power supply |
| Pin 11 | RB0/AN12/ZCD β Bidirectional I/O with ZCD input |
| Pin 12 | RB1/AN10/C1IN3-/C2IN3-/C3IN3-/OPA2IN0+ β Bidirectional I/O with analog and op-amp functions |
| Pin 13 | RB2/AN8/C1IN2-/C2IN2-/C3IN2-/OPA2IN0- β Bidirectional I/O with analog and op-amp functions |
| Pin 14 | RB3/AN9/C1IN2+/C2IN2+/C3IN2+/OPA2OUT β Bidirectional I/O with analog and op-amp output |
| Pin 15 | RB4/AN11 β Bidirectional I/O with analog input |
| Pin 16 | RB5/AN13/DAC5OUT1 β Bidirectional I/O with DAC output |
| Pin 17 | RB6/ICSPCLK β In-circuit serial programming clock |
| Pin 18 | RB7/ICSPDAT β In-circuit serial programming data |
| Pin 19 | RC0/PWM1/COG1A β Bidirectional I/O with PWM and COG output |
| Pin 20 | RC1/PWM2/COG1B β Bidirectional I/O with PWM and COG output |
| Pin 21 | RC2/PWM3/COG1C β Bidirectional I/O with PWM and COG output |
| Pin 22 | RC3/PWM4/COG1D β Bidirectional I/O with PWM and COG output |
| Pin 23 | RC4/PWM5 β Bidirectional I/O with PWM output |
| Pin 24 | RC5/PWM6 β Bidirectional I/O with PWM output |
| Pin 25 | RC6/TX/CK β EUSART asynchronous transmit / synchronous clock |
| Pin 26 | RC7/RX/DT β EUSART asynchronous receive / synchronous data |
| Pin 27 | RE3/MCLR/VPP β Master clear reset / programming voltage |
| Pin 28 | RD0/AN16 β Bidirectional I/O with analog input |
| Pin 29 | RD1/AN17 β Bidirectional I/O with analog input |
| Pin 30 | RD2/AN18 β Bidirectional I/O with analog input |
| Pin 31 | RD3/AN19 β Bidirectional I/O with analog input |
| Pin 32 | RD4/AN20 β Bidirectional I/O with analog input |
| Pin 33 | RD5/AN21 β Bidirectional I/O with analog input |
| Pin 34 | RD6/AN22 β Bidirectional I/O with analog input |
| Pin 35 | RD7/AN23 β Bidirectional I/O with analog input |
| Pin 36 | RE0/AN5 β Bidirectional I/O with analog input |
| Pin 37 | RE1/AN6 β Bidirectional I/O with analog input |
| Pin 38 | RE2/AN7 β Bidirectional I/O with analog input |
| Pin 39 | VSS β Ground reference |
| Pin 40 | VDD β Positive power supply |
Typical Applications
PIC16F1717-I/MV is suitable for 6 applications: IoT Sensor Nodes, Automotive Sensor Conditioning, LED Lighting Controllers, Battery-Powered Consumer Devices, Industrial Control Loops, Motor Control and BLDC Drivers.
IoT Sensor Nodes
The PIC16F1717-I/MV fits IoT sensor node designs because its on-chip op amps can directly condition bridge sensors, thermocouples, or photodiodes without external analog ICs. The 10-bit ADC samples conditioned signals at rates sufficient for environmental monitoring, while XLP nanoamp sleep currents extend battery life to years on a single coin cell. Core Independent Peripherals like CLC and NCO handle wake-up and timing without CPU intervention, reducing average power. PPS allows flexible PCB routing, and the 32MHz core provides headroom for protocol stacks like LoRaWAN or BLE beaconing. AEC-Q100 qualification also allows deployment in industrial IoT environments.
Recommended
Automotive Sensor Conditioning
The PIC16F1717-I/MV suits automotive sensor modules because it integrates op amps, comparators, and a 10-bit ADC for direct signal chain integration. AEC-Q100 qualification ensures reliability under automotive stress conditions including -40C to +85C operation and load-dump transients. The Peripheral Pin Select (PPS) feature simplifies PCB routing when multiple sensors share the MCU, reducing board area and BOM cost. Typical use cases include seat occupancy detectors, rain sensors, and HVAC climate controls. The 32MHz core handles LIN or CAN network stacks while maintaining real-time response to sensor interrupts.
Recommended
LED Lighting Controllers
The PIC16F1717-I/MV drives LED lighting systems efficiently using its Complementary Output Generator (COG) for precise PWM dimming with programmable dead-band control. The Zero Cross Detect (ZCD) peripheral enables AC mains zero-crossing detection for triac-compatible dimmer interfaces without external optocouplers, reducing system cost. The Numerically Controlled Oscillator (NCO) generates accurate frequency outputs for color-mixing applications. With 14KB Flash and 32MHz performance, the MCU can run DMX512 or DALI protocol stacks while maintaining smooth dimming transitions. AEC-Q100 and industrial temperature range support outdoor and automotive lighting.
Recommended
Battery-Powered Consumer Devices
The PIC16F1717-I/MV is ideal for battery-powered consumer products thanks to XLP (eXtreme Low Power) technology delivering nanoamp sleep currents, extending battery life to multiple years. The wide 2.5V-5V operating range accommodates single-cell Li-ion, two-cell alkaline, and USB-powered designs. Core Independent Peripherals run autonomously in sleep modes, waking the CPU only when necessary. The 5/8-bit DAC provides analog output for voltage reference or audio tone generation. EUSART, I2C, and SPI interfaces support peripheral connectivity, while 14KB Flash accommodates firmware for user interfaces and protocol handling.
Recommended
Industrial Control Loops
The PIC16F1717-I/MV handles industrial control loops because its 32MHz performance and 10-bit ADC sample feedback signals at sufficient rates for PID control of motors, valves, and heaters. The on-chip op amps condition 4-20mA current loops or 0-10V analog signals from industrial sensors directly, eliminating external instrumentation amplifiers. Peripheral Pin Select simplifies PCB layout in densely-packed control panels. The Configurable Logic Cell (CLC) implements custom glue logic in hardware, offloading tasks from the CPU. AEC-Q100 qualification and -40C to +85C operation suit factory automation environments.
Recommended
Motor Control and BLDC Drivers
The PIC16F1717-I/MV supports small motor control applications including brushed DC and low-power BLDC motors, leveraging the Complementary Output Generator (COG) for hardware-based PWM generation with dead-band control. The Numerically Controlled Oscillator (NCO) provides fine frequency synthesis for stepper motor microstepping or tone generation. The on-chip comparators perform back-EMF sensing on BLDC motors, simplifying sensorless commutation. With 32MHz performance and 14KB Flash, the MCU implements field-oriented control algorithms and accepts feedback from Hall sensors or quadrature encoders. AEC-Q100 qualification enables use in automotive accessory motors.
Recommended
Recommended Products Summary
Engineering reference data for PIC16F1717-I/MV β comparison, design guidance, and compliance information.
Selection Guide
Comparison with Alternatives
| Parameter | This Product | PIC16F1718-I/MV | PIC16F1719-I/MV | PIC16F1709-I/MV | PIC16F15356-I/MV | PIC16F1516-I/MV |
|---|---|---|---|---|---|---|
| Package | 40-UQFN (5x5 mm) | 40-UQFN (5x5 mm) - same | 40-UQFN (5x5 mm) - same | 40-UQFN (5x5 mm) - same | 40-UQFN (5x5 mm) - same | 40-UQFN (5x5 mm) - same |
| Brand | Microchip Technology | Microchip Technology | Microchip Technology | Microchip Technology | Microchip Technology | Microchip Technology |
| Program Memory (Flash) | 14 KB | 28 KB (+100%) | 56 KB (+300%) | 8 KB (-43%) | 28 KB (+100%) | 14 KB (same) |
| Data RAM | 1 KB | 2 KB (+100%) | 4 KB (+300%) | 1 KB (same) | 2 KB (+100%) | 1 KB (same) |
| Maximum CPU Frequency | 32 MHz | 32 MHz (same) | 32 MHz (same) | 32 MHz (same) | 32 MHz (same) | 20 MHz (-37%) |
| Core Independent Peripherals | CLC, COG, NCO, ZCD | CLC, COG, NCO, ZCD (same) | CLC, COG, NCO, ZCD (same) | CLC, COG, NCO, ZCD (same) | CLC, NCO, ZCD (no COG) | CLC, NCO (reduced) |
| On-Chip Op Amps | Yes | Yes (same) | Yes (same) | Yes (same) | No | No |
| ADC Resolution | 10-bit | 10-bit (same) | 10-bit (same) | 10-bit (same) | 10-bit (same) | 10-bit (same) |
| Operating Voltage | 2.5V to 5V | 2.5V to 5V (same) | 2.5V to 5V (same) | 2.5V to 5V (same) | 2.3V to 5.5V (wider) | 2.5V to 5V (same) |
| Automotive Grade (AEC-Q100) | Yes | Yes (same) | Yes (same) | Yes (same) | Yes (same) | Yes (same) |
Key Differentiators
- Integrated on-chip op amps eliminate external analog ICs (vs PIC16F15356-I/MV)
- Full Core Independent Peripheral set including COG (vs PIC16F15356-I/MV)
- Same 40-UQFN footprint with 2x memory upgrade path (vs PIC16F1718-I/MV)
Design Notes
The PIC16F1717-I/MV operates from 2.5V to 5V and supports XLP nanoamp sleep currents for battery applications. Decouple VDD with a 100nF ceramic capacitor placed within 5mm of the VDD pins (pin 10 and pin 40 on the UQFN). For noise-sensitive analog measurements, add a 10uF bulk capacitor near the supply pin and route analog VDD separately from digital VDD. The on-chip voltage regulator requires a low-ESR capacitor on the VCAP pin (pin 6) of 100nF minimum.
When routing the 40-UQFN package, prioritize connecting all GND pins (pin 9 and pin 39) directly to a ground plane for thermal dissipation and EMI reduction. Place the 32.768kHz crystal (if used) within 5mm of the OSC pins with a ground guard ring. Use Peripheral Pin Select (PPS) to remap peripherals to convenient physical pins, reducing PCB trace crossings. The exposed pad on the UQFN must be soldered to a pad of at least 4x4mm with multiple thermal vias for proper heat dissipation.
Do not exceed the maximum I/O sink/source current of 25mA per pin or 200mA per port (PORTB, PORTC, etc.). The MCLR pin (pin 27) must be pulled high through a 10k resistor for normal operation; do not leave it floating. When using the ADC, allow adequate acquisition time based on source impedance - typically 1us for 10kohm sources or less. The ICSPDAT and ICSPCLK pins (RB6/RB7) must not be pulled low during normal operation or the device enters programming mode. Configure unused I/O pins as outputs low to minimize power consumption.
Compliance Information
AEC-Q100 qualified for automotive applications. RoHS compliant per Microchip product page. Halogen-free per Microchip environmental certification.