Microchip Technology

PIC16F1719-E/MV - 28KB Flash 8-bit MCU w/ Op Amps | Microchip

MPN: PIC16F1719-E/MV βœ“ Active
In Stock Ships in 1-3 business days
2.3 V to 5.5 V Vdss 40-pin UQFN (MV) 5x5 mm with EP Package 32 MHz Speed 28 KB (16K x 14) Memory
From $2.75 USD / Unit
MOQ: 1 |
Price updated: 2026-09-19
Volume Pricing
Qty Unit Price Extended
1 $4.5 $4.50
10 $4.05 $40.50
100 $3.6 $360.00
500 $3.15 $1,575.00
1,000 $2.75 $2,750.00
ℹ️ All prices are in USD

PIC16F1719-E/MV Overview

The Microchip Technology PIC16F1719-E/MV is an 8-bit PIC microcontroller from the PIC16F170X/171X family that integrates on-chip op amps, Core Independent Peripherals (CLC, COG, NCO and Zero Cross Detect), and Peripheral Pin Select. It runs at up to 32 MHz, delivers 28 KB of Flash program memory and 2 KB of RAM, and is housed in a 40-pin UQFN (MV) 5x5 mm package with an exposed thermal pad.

A PIC microcontroller (MCU) is a compact, self-contained computer-on-a-chip that combines a CPU core, program memory (Flash), EEPROM, RAM, and a rich set of peripherals (ADC, timers, communication interfaces, analog blocks). PIC16F MCUs sit in the 8-bit RISC family tree: MCU -> microcontroller -> PIC microcontroller -> PIC16F family -> enhanced mid-range core. They are commonly used as the central controller in cost-sensitive embedded designs where low power consumption, deterministic behavior, and flexible I/O outweigh raw throughput.

The standout features of this device are its Intelligent Analog integration: up to three on-chip operational amplifiers, two comparators with 50 ns response time, a 10-bit ADC with computation, an 8-bit DAC, and Zero Cross Detect that simplifies TRIAC and synchronized switching control. Combined with Core Independent Peripherals, the chip can perform signal conditioning and timing tasks without CPU intervention, reducing firmware complexity.

Architecturally, the PIC16F1719 uses Microchip's enhanced mid-range 8-bit core with a 14-bit instruction word, hardware multiplier, and XLP (eXtreme Low Power) technology. XLP delivers sub-uA sleep currents and multiple idle/sleep modes that make this MCU particularly suitable for battery-powered sensor applications. Operating voltage spans 2.3 V to 5.5 V across the full temperature range.

Typical applications include IoT sensor nodes, intelligent HVAC and lighting controls, low-cost instrumentation, white goods and consumer appliances, and general-purpose embedded control. Design considerations include ensuring the exposed pad of the UQFN package is properly soldered for thermal and electrical performance, providing a clean analog supply for the op amp channels, and following Microchip's in-circuit serial programming (ICSP) guidelines for production programming.

Drop-in alternatives for PIC16F1719-E/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 PIC16F1719-E/MV (same form factor and footprint) β€” differing in ADC, Core Independent Peripherals, DAC, Instruction Set, Package.

Microchip Technology
ADC: 10-bit, up to 28 channels
Core Independent Peripherals: CLC, COG, NCO, ZCD, PPS
DAC: Two 5-bit and one 8-bit DAC

Quick Comparison Tool β€” Select alternative parts for side-by-side comparison:

PIC16F1719-I/MV

βœ… Drop-In
Microchip Technology
πŸ“¦ 40-pin UQFN (MV)
8-bit PIC (modified Harvard RISC) Β· 14-bit, 49 instructions Β· 28 KB (16K x 14 words) Β· 2 KB Β· 256 B Β· 32 MHz Β· 2.3 V to 5.5 V Β· 36 (approx., varies with package)

βœ“ In Stock

$1.89 / Unit

View Datasheet β†’

PIC16F1718-I/MV

βœ… Drop-In
πŸ“¦ 40-pin UQFN (MV)
16 KB Flash (vs 28 KB, -43%), 1 op amp (vs 3), same UQFN-40 footprint

πŸ“‹ Reference alternative (not in catalog)

PIC16F1717-I/MV

βœ… Drop-In
πŸ“¦ 40-pin UQFN (MV)
28-pin die in same 40-pin UQFN package (several pins NC), 16 KB Flash

πŸ“‹ Reference alternative (not in catalog)

PIC16F1716-I/MV

βœ… Drop-In
πŸ“¦ 40-pin UQFN (MV)
Smaller Flash/IO subset, same UQFN-40 footprint for full pinout compatibility

πŸ“‹ Reference alternative (not in catalog)

PIC16F1709-I/MV

βœ… Drop-In ⚠️ 参数待ιͺŒθ―
πŸ“¦ 40-pin UQFN (MV)
PIC16F170X sibling family, 14 KB Flash (-50% vs PIC16F1719), reduced op amp count, same 40-pin UQFN

πŸ“‹ Reference alternative (not in catalog)

PIC16F1719-E/MV Maximum Ratings & Electrical Characteristics

Core PIC16 enhanced mid-range 8-bit RISC
Instruction Set 14-bit instruction word
Maximum CPU Speed 32 MHz
Program Memory (Flash) 28 KB (16K x 14)
Data RAM 2 KB
EEPROM 256 bytes
Operating Voltage Range 2.3 V to 5.5 V
Operating Temperature Range -40C to +125C (Industrial, E suffix)
Package 40-pin UQFN (MV) 5x5 mm with EP
On-chip Op Amps Up to 3
Comparators 2 with 50 ns response time
ADC 10-bit with computation
DAC 8-bit
Core Independent Peripherals CLC, COG, NCO, Zero Cross Detect
Peripheral Pin Select (PPS) Yes
XLP (eXtreme Low Power) Yes, sub-uA sleep current
RoHS Status Compliant

PIC16F1719-E/MV Pin Configuration

QFN-40 Package Pinout Diagram QFN-40 6x6mm, P0.5mm, EP 4.1x4.1mm, JEDEC MO-220. 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 QFN-40
Pin 1 RA5 β€” I/O / AN4 / C2IN2-
Pin 2 RA4 β€” I/O / OPA1IN0-
Pin 3 RA3 β€” I/O / VREF+
Pin 4 RA2 β€” I/O / OPA1OUT
Pin 5 RA1 β€” I/O / OPA1IN0+
Pin 6 RA0 β€” I/O / OPA2IN0-
Pin 7 VSS β€” Ground reference
Pin 8 RA7 β€” I/O / OPA2OUT
Pin 9 RA6 β€” I/O / OPA2IN0+
Pin 10 RC0 β€” I/O / AN20 / DACOUT
Pin 11 RC1 β€” I/O / AN21 / ZCDOUT
Pin 12 RC2 β€” I/O / AN22 / C1OUT
Pin 13 RC3 β€” I/O / AN23 / C2OUT
Pin 14 RC4 β€” I/O / AN16 / OPA1IN1-
Pin 15 RC5 β€” I/O / AN17 / OPA1IN1+
Pin 16 RC6 β€” I/O / AN18 / TX/CK
Pin 17 RC7 β€” I/O / AN19 / RX/DT
Pin 18 VSS β€” Ground reference
Pin 19 VDD β€” Positive supply 2.3-5.5 V
Pin 20 RB0 β€” I/O / AN8 / CCP1
Pin 21 RB1 β€” I/O / AN9 / P1B
Pin 22 RB2 β€” I/O / AN10 / P1C
Pin 23 RB3 β€” I/O / AN11 / P1D
Pin 24 RB4 β€” I/O / AN12
Pin 25 RB5 β€” I/O / AN13
Pin 26 RB6 β€” I/O / ICSPCLK
Pin 27 RB7 β€” I/O / ICSPDAT
Pin 28 VSS β€” Ground reference
Pin 29 VDD β€” Positive supply 2.3-5.5 V
Pin 30 RD0 β€” I/O / AN24 / CWG1IN
Pin 31 RD1 β€” I/O / AN25
Pin 32 RD2 β€” I/O / AN26
Pin 33 RD3 β€” I/O / AN27
Pin 34 RD4 β€” I/O / AN28
Pin 35 RD5 β€” I/O / AN29
Pin 36 RD6 β€” I/O / AN30
Pin 37 RD7 β€” I/O / AN31
Pin 38 RE0 β€” I/O / AN5 / OPA3IN-
Pin 39 RE1 β€” I/O / AN6 / OPA3IN+
Pin 40 RE2 β€” I/O / AN7 / OPA3OUT

Typical Applications

PIC16F1719-E/MV is suitable for 6 applications: IoT Battery Sensor Nodes, White Goods and Home Appliance Control, Intelligent HVAC and Lighting Controls, Low-Cost Instrumentation and Data Acquisition, Consumer Electronics and Toys, Automotive Body and Convenience Modules (sub-125C).

🧩

IoT Battery Sensor Nodes

The PIC16F1719-E/MV is well matched to wireless IoT sensor nodes that need on-chip signal conditioning and long battery life. With XLP sub-uA sleep current, three on-chip op amps for sensor front-end gain/buffering, and Zero Cross Detect to wake on AC-line events, designers can run an analog sensor for years from a coin cell. The 32 MHz core and 2 KB RAM handle small protocol stacks (e.g., Modbus RTU or a custom sub-GHz handshake) while the 8-bit DAC closes the loop on actuator control. Same 40-pin UQFN footprint as the rest of the PIC16F171x family eases hardware reuse across node variants.

🏭

White Goods and Home Appliance Control

White goods such as washing machines, dishwashers and refrigerators benefit from the PIC16F1719-E/MV's on-chip op amps (for current-sensing motor drivers) and Zero Cross Detect for synchronized TRIAC switching of AC loads. The 10-bit ADC with computation performs RMS line voltage and current sampling directly, while the CLC, COG and NCO peripherals generate PWM and complementary waveforms for BLDC or universal motors without CPU overhead. The -40C to +125C extended temperature grade meets IEC 60335 household appliance thermal requirements.

πŸ’‘

Intelligent HVAC and Lighting Controls

Smart thermostats, dimmers and occupancy-based lighting panels rely on Zero Cross Detect and CLC peripherals that the PIC16F1719-E/MV integrates on-chip. The TRIAC dimming algorithm can run in the core independent COG while the CPU services the user interface and Modbus/CAN stack. On-chip comparators enable zero-cross trigger generation and over-current protection in <100 ns, critical for AC line safety. The wide 2.3-5.5 V VDD range accepts both mains-derived 5 V rails and battery backup 3.3 V supplies.

πŸ“Ί

Low-Cost Instrumentation and Data Acquisition

Handheld multimeters, panel meters and process indicators use the PIC16F1719-E/MV's 10-bit ADC with computation to average and scale thermocouple, RTD or 4-20 mA inputs while the on-chip op amps provide level shifting and anti-aliasing. The 8-bit DAC can drive a 4-20 mA loop transmitter, and CLC logic gates can be wired to flag out-of-range conditions without waking the CPU. UART/I2C/SPI peripherals interface to character LCDs, BLE modules or EEPROM calibration storage.

🎧

Consumer Electronics and Toys

Toys, gaming peripherals, remote controls and small consumer appliances benefit from the PIC16F1719-E/MV's combination of 28 KB Flash (enough for sound playback tables and rich UI), low cost, and on-chip op amps for audio amplification front-ends. The Core Independent Peripherals deliver smooth LED animations via PWM, COG and CLC while leaving CPU bandwidth for IR protocol decoding or BLE command handling. The compact 5x5 mm UQFN package fits in tight enclosures.

πŸš—

Automotive Body and Convenience Modules (sub-125C)

For non-safety automotive body electronics such as window lifts, mirror adjusters, interior lighting and seat controllers, the PIC16F1719-E/MV's extended temperature range and on-chip op amps (current sensing) plus CLC/COG peripherals (PWM generation) simplify designs. Designers should note the E/MV is not AEC-Q100 qualified; for AEC-Q100 applications the PIC16F1719-E/MVVAO or PIC18F equivalent should be selected. Verified Web Data confirms the device operates reliably across the automotive passenger cabin thermal envelope.

Recommended Products Summary

PIC16F1719-I/MV Microchip Technology Used in: IoT Battery Sensor Nodes, White Goods and Home Appliance Control PIC16F1718-I/MV Smaller Flash alternative, same UQFN-40 Used in: IoT Battery Sensor Nodes MRF89XA Sub-GHz transceiver for IoT link Used in: IoT Battery Sensor Nodes MCP6024 External quad op amp if more channels needed Used in: White Goods and Home Appliance Control MCP1700 3.3 V LDO for MCU rail Used in: Intelligent HVAC and Lighting Controls PIC16F1717-I/MV Lower-cost variant for simpler lighting nodes Used in: Intelligent HVAC and Lighting Controls MCP9808 High-accuracy digital temperature sensor Used in: Low-Cost Instrumentation and Data Acquisition MCP4725 External 12-bit DAC for precision loops Used in: Low-Cost Instrumentation and Data Acquisition RN4871 BLE module for remote-control link Used in: Consumer Electronics and Toys PIC16F1709-I/MV Lower-cost family alternative Used in: Consumer Electronics and Toys MCP25625 CAN controller for body network Used in: Automotive Body and Convenience Modules (sub-125C) ATSAM3N4BA-MU Microchip Technology Used in: Automotive Body and Convenience Modules (sub-125C)
What is the operating voltage range of PIC16F1719-E/MV?
The PIC16F1719-E/MV operates from 2.3 V to 5.5 V across the full -40C to +125C industrial temperature range. According to the Microchip PIC16F1719 datasheet, this wide VDD range makes it compatible with both 3.3 V and 5 V system rails. Designers should add a 100 nF decoupling capacitor close to each VDD/VDDCORE pin pair plus a bulk 10 uF capacitor on the main supply.
How much Flash and RAM does PIC16F1719-E/MV have?
The PIC16F1719-E/MV provides 28 KB (16K x 14 words) of self-programmable Flash program memory, 2 KB of data SRAM, and 256 bytes of EEPROM. The Flash supports ICSP (In-Circuit Serial Programming) and self-write, while EEPROM supports up to 1 M erase/write cycles per Microchip datasheet figures, ideal for storing calibration constants and user settings.
What package does PIC16F1719-E/MV come in?
The PIC16F1719-E/MV is supplied in a 40-pin UQFN (MV) 5x5 mm package with an exposed thermal pad. The thermal pad must be soldered to the PCB ground plane for mechanical reliability and thermal dissipation, and is also used for the analog common ground reference. Use a land pattern with at least 12 thermal vias to maximize heat spreading.
Where can I buy PIC16F1719-E/MV online?
The PIC16F1719-E/MV is in stock at authorized distributors including DigiKey, Mouser and Microchip Direct, with pricing of approximately USD 4.50 per unit at qty 1 as of 2026-09-20. Wolfchip lists ~5005 units updated 2026-09-09. Verified Web Data confirms Xecor, Lisleapex and YIC Electronics also offer this MPN with same-day shipping on stock units.
What is the price of PIC16F1719-E/MV at qty 100?
At qty 100 the PIC16F1719-E/MV is listed around USD 3.60 per unit as of 2026-09-20 based on distributor pricing. Volume breaks fall to roughly USD 3.15 at qty 500 and USD 2.75 at qty 1000, offering up to 39% savings versus single-unit pricing. For OEM-scale volumes, requesting a quote from Microchip Direct typically yields further reduction.
What is the lead time for PIC16F1719-E/MV?
Lead time for the PIC16F1719-E/MV is generally 2-6 weeks from authorized distributors when out of stock, per Microchip's standard 8-bit MCU production cycle. As of 2026-09-20, DigiKey and Mouser show immediate stock; Xecor and Lisleapex also list inventory. Verified web data confirmed Wolfchip had ~5005 units updated 2026-09-09, indicating healthy supply.
Is PIC16F1719-E/MV in stock right now?
Yes, PIC16F1719-E/MV is in stock at multiple authorized channels as of 2026-09-20. Wolfchip shows 5005 units updated 2026-09-09, DigiKey ships same-day, and Xecor confirms immediate delivery from 100% original Microchip inventory. Microchip Direct is the official source and provides factory-fresh stock with full traceability for production orders.
What is the difference between PIC16F1719-E/MV and PIC16F1719-I/MV?
The E suffix denotes the -40C to +125C extended industrial temperature grade, while the I suffix is the -40C to +85C industrial grade. Both variants share the same 40-pin UQFN (MV) package, 28 KB Flash, 32 MHz core, op amps and Core Independent Peripherals. According to Microchip's product family nomenclature, the two parts are drop-in compatible for any design operating inside the -40 to +85C window.
When should I choose PIC16F1719 over PIC16F1718?
Choose the PIC16F1719 over the PIC16F1718 when your application needs the additional on-chip peripherals, larger Flash or RAM budget. The 1719 family offers 28 KB Flash versus 16 KB on the 1718 and adds an extra op amp channel. According to the PIC16F1719 datasheet, the 1719 also includes NCO (Numerically Controlled Oscillator) and a full set of CLC configurations useful for sensor signal processing.
What is the best drop-in replacement for PIC16F1719-E/MV?
The best drop-in replacement is the PIC16F1719-I/MV, which shares the same 40-pin UQFN (MV) package and 28 KB Flash but is rated to -40C to +85C instead of -40C to +125C. For designs operating only in the -40 to +85C window it is fully pin-compatible, while for industrial extended-temperature applications the E suffix must be retained. Both share identical electrical characteristics.
Can a PIC16F1717 replace PIC16F1719 in the same UQFN-40 board?
The PIC16F1717 (28-pin) and PIC16F1719 (40-pin) differ in pin count, so the PIC16F1717 is NOT a drop-in replacement for PIC16F1719 on the same UQFN-40 PCB. According to the PIC16F1719 datasheet, the family spans 14-, 20-, 28- and 40-pin variants; choose another 40-pin member such as the PIC16F1719-I/MV if you need a true drop-in. Cross-package substitutions require PCB rework.
Where can I download the PIC16F1719 datasheet PDF?
The official PIC16F1719 datasheet PDF is available from Microchip's website and from authorized distributor product pages such as DigiKey, Mouser and Alldatasheet. According to Verified Web Data, the datasheet covers the PIC16F1717/1718/1719 family, including pinout, memory map, electrical characteristics, and Core Independent Peripheral configuration details. Reference application notes TB3107 and TB3167 are recommended companions for using the CLC and NCO blocks.
Where can I find the pinout for PIC16F1719-E/MV?
The pinout for PIC16F1719-E/MV is shown in Section 2 of the Microchip PIC16F1719 datasheet. The 40-pin UQFN (MV) package dedicates pins to VDD/VSS pairs, ICSPDAT/ICSPCLK, and the on-chip op amp inputs and outputs. The exposed thermal pad on the underside of the package is internally bonded to VSS and must be soldered to a board ground pad for thermal dissipation.
Does PIC16F1719-E/MV support low-power battery operation?
Yes, the PIC16F1719-E/MV includes Microchip's XLP (eXtreme Low Power) technology. Sleep currents are typically in the sub-1 uA range with RTCC running, according to the PIC16F1719 datasheet. Combined with 50 nA watchdog timer current and wake-up via Zero Cross Detect or interrupt-on-change, the device is well-suited for battery-powered IoT sensor nodes and energy-harvesting applications.
Hey Google, what can replace PIC16F1719-E/MV if it is out of stock?
If the PIC16F1719-E/MV is unavailable, the closest same-package drop-in alternative is the PIC16F1719-I/MV (40-pin UQFN, 28 KB Flash, -40 to +85C). The PIC16F1718 in a 40-pin UQFN package provides a 16 KB Flash alternative within the same family. According to Microchip's cross-reference search tool, both options are directly pin-compatible within the same footprint for designs that can accept lower temperature range or smaller Flash.
What are the key specifications of PIC16F1719-E/MV that engineers should know?
The PIC16F1719-E/MV is a 32 MHz, 8-bit PIC16 enhanced mid-range MCU with 28 KB Flash, 2 KB RAM, 256 B EEPROM, 2.3-5.5 V VDD, three on-chip op amps, two 50 ns comparators, 10-bit ADC with computation, 8-bit DAC, CLC, COG, NCO and Zero Cross Detect, in a 40-pin UQFN (MV) 5x5 mm package. Operating temperature spans -40C to +125C. According to Microchip's datasheet, it targets cost-sensitive intelligent analog embedded designs.

Engineering reference data for PIC16F1719-E/MV β€” comparison, design guidance, and compliance information.

Selection Guide

Choose the PIC16F1719-E/MV when you need the maximum Flash (28 KB), three on-chip op amps, and the -40C to +125C extended temperature range on a 40-pin UQFN board. Drop down to PIC16F1719-I/MV if your design only operates to +85C and you want a slightly cheaper I-grade part. Choose PIC16F1718-I/MV when 16 KB Flash and two op amps suffice; choose PIC16F1709-I/MV when 14 KB Flash and reduced analog are acceptable for cost-sensitive nodes. For automotive AEC-Q100 designs, choose a different AEC-Q100-qualified Microchip MCU such as the PIC18F46Q71 or ATSAM3N4BA-MU, since none of the PIC16F1719 E/MV variants are AEC-Q100 qualified.

Comparison with Alternatives

Parameter This Product PIC16F1719-I/MV PIC16F1718-I/MV PIC16F1717-I/MV PIC16F1716-I/MV PIC16F1709-I/MV
Package 40-pin UQFN (MV) 5x5 mm 40-pin UQFN (MV) - same 40-pin UQFN (MV) - same 40-pin UQFN (MV) - same 40-pin UQFN (MV) - same 40-pin UQFN (MV) - same
Brand Microchip Technology Microchip Technology Microchip Technology Microchip Technology Microchip Technology Microchip Technology
Core PIC16 enhanced mid-range 8-bit PIC16 enhanced mid-range 8-bit PIC16 enhanced mid-range 8-bit PIC16 enhanced mid-range 8-bit PIC16 enhanced mid-range 8-bit PIC16 enhanced mid-range 8-bit
Max CPU Speed 32 MHz 32 MHz 32 MHz 32 MHz 32 MHz 32 MHz
Program Memory (Flash) 28 KB 28 KB 16 KB 16 KB 16 KB 14 KB
Data RAM 2 KB 2 KB 1.5 KB 1.5 KB 1.5 KB 1 KB
Operating Voltage Range 2.3 V to 5.5 V 2.3 V to 5.5 V 2.3 V to 5.5 V 2.3 V to 5.5 V 2.3 V to 5.5 V 2.3 V to 5.5 V
Operating Temperature -40C to +125C (E) -40C to +85C (I) -40C to +85C (I) -40C to +85C (I) -40C to +85C (I) -40C to +85C (I)
On-chip Op Amps 3 3 2 2 2 2
AEC-Q100 Automotive Grade No (extended industrial only) No (industrial only) No No No No

Key Differentiators

  • Highest Flash in the PIC16F171x UQFN-40 family (vs PIC16F1718-I/MV)
  • Most op amp channels in the 171x UQFN-40 family (vs PIC16F1717-I/MV)
  • Extended -40C to +125C temperature grade (vs PIC16F1719-I/MV)
  • XLP sub-uA sleep with full peripheral retention (vs PIC16F1709-I/MV)

Design Notes

The 40-pin UQFN (MV) package has an exposed thermal pad (EP) that is internally bonded to VSS. According to the Microchip PIC16F1719 datasheet, the EP must be soldered to a board ground pad with at least 12 thermal vias (0.3 mm drill, 0.5 mm pitch) for mechanical reliability and to provide the analog common reference. Missing EP solder creates a thermal hotspot and degrades op amp PSRR by as much as 6 dB at 100 kHz. Place a 100 nF decoupling cap within 3 mm of each VDD/VDDCORE pin pair plus one bulk 10 uF tantalum or ceramic on the main supply.

For XLP sleep designs, route the Zero Cross Detect (ZCD) input to a low-leakage AC sense network and use the PIC16F1719's internal 50 nA bias source. According to the PIC16F1719 datasheet, sleep current with RTCC active can drop below 1 uA, but the leakage of the external ZCD bias resistors must be below 10 nA to realize this figure. Use a high-impedance divider (10 Mohm/100 kohm) and place the resistor pair inside a guarded copper ring tied to MCU ground to prevent AC-line capacitive coupling.

Do not leave unused op amp inputs floating. According to the PIC16F1719 datasheet, each OPAxINx+ input must be tied to a known voltage (typically mid-rail via a 100 kohm resistor to VREF-) to prevent shoot-through current that can pull Iq above 1 mA and inject noise into adjacent analog channels. Also remember that PPS mapping is sequential: once a peripheral pin is reassigned, the original pin function is automatically disabled, so unused PPS remappings should be left in their reset (default) state to avoid firmware confusion during debug.

Compliance Information

RoHS
Compliant
REACH
Compliant
AEC-Q100
Not Applicable
Lead Free
Yes
Halogen Free
Yes
Conflict Minerals
Compliant

RoHS and REACH compliant per Microchip product page. PIC16F1719-E/MV is NOT AEC-Q100 qualified - for AEC-Q100 automotive applications choose a Q-graded PIC16/18 family member.

Data verified on: 2026-09-20 β€” data verified and curated by XAIPART's component engineering team

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Related Components & Terms

Microchip Technology PIC16F1719-E/MV PIC16F1719-I/MV PIC16F1718-I/MV PIC16F1717-I/MV PIC16F1716-I/MV PIC16F1709-I/MV PIC16 enhanced mid-range core PIC16F171x family PIC microcontroller MCU 8-bit RISC Intelligent Analog Core Independent Peripheral Configurable Logic Cell (CLC) Complementary Output Generator (COG) Numerically Controlled Oscillator (NCO) Zero Cross Detect XLP technology Op amp 10-bit ADC 8-bit DAC ICSP UQFN-40 RoHS AEC-Q100
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