Microchip Technology

PIC16F1719-E/PT - 8-Bit 32MHz MCU 28KB Flash 44-TQFP | Microchip

MPN: PIC16F1719-E/PT ✓ Active
In Stock Ships in 1-3 business days
1.8 V to 5.5 V Vdss 44-pin TQFP (10x10 mm) Package 32 MHz Speed 28 KB (16K x 14 words) Memory
From $1.85 USD / Unit
MOQ: 1 |
Price updated: 2026-09-19
Volume Pricing
Qty Unit Price Extended
1 $3.42 $3.42
10 $3.07 $30.70
100 $2.68 $268.00
500 $2.39 $1,195.00
1,000 $2.12 $2,120.00
3,000 $1.85 $5,550.00
ℹ️ All prices are in USD

PIC16F1719-E/PT Overview

The Microchip Technology PIC16F1719-E/PT is an 8-bit PIC microcontroller from the PIC16F1717/8/9 family, featuring 28KB (16K x 14 words) of Flash program memory, 2KB of RAM, and a 44-pin TQFP (10x10 mm) surface-mount package. It operates at up to 32MHz internal clock and integrates Intelligent Analog peripherals including on-chip op-amps, a 10-bit ADC, 5/8-bit DAC, high-speed comparator, and Core Independent Peripherals (CLC, COG, NCO, Zero Cross Detect) with Peripheral Pin Select (PPS) for flexible signal routing.

A microcontroller (MCU) is a single-chip computer that integrates a CPU core, program memory (Flash/ROM), working memory (RAM), and a rich set of peripherals (ADC, timers, communication interfaces) onto one silicon die. Within the semiconductor taxonomy, an MCU sits under Embedded IC -> Integrated Circuit -> Semiconductor. The PIC16F family occupies Microchip's mid-range 8-bit portfolio, offering a balance of low power, deterministic execution, and integrated analog for general-purpose embedded designs.

Key features include extreme low-power (XLP) technology with multiple Idle/Doze/sleep modes, 35 instructions, vectored interrupts, 256 bytes of EEPROM, four 8-bit timers and one 16-bit timer, two CCP modules supporting PWM, an Enhanced USART (EUSART), and MSSP for I2C/SPI. The PPS module remaps digital peripheral I/O to any device pin, simplifying PCB layout and BOM reuse across PIC16F1717/8/9 derivatives.

The PIC16F1719 uses Microchip's enhanced mid-range 8-bit RISC core, manufactured on a low-power CMOS process. The Harvard architecture keeps program and data buses separate for deterministic single-cycle instruction execution except for program branches. Integrated analog front-ends (op-amp, 10-bit ADC, DAC, comparator) reduce external component count, while the COG/CLC/NCO blocks allow waveform generation and logic operations without CPU intervention.

Typical applications include LED lighting control, consumer white goods, sensor conditioning nodes, low-cost motor control (PWM/COG), battery-powered IoT edge nodes, and general-purpose mixed-signal embedded designs that benefit from on-chip analog and Core Independent Peripherals.

When designing with this MCU, allocate sufficient decoupling (100nF plus 10uF bulk) close to VDD pins and follow Microchip's TQFP-44 land-pattern guidelines. For low-power designs, leverage the XLP sleep modes and the Peripheral Pin Select routing map from the datasheet.

This page synthesizes distributor pricing, drop-in alternatives, and practical design notes not found in the manufacturer datasheet, helping engineers shorten the PIC16F1719-E/PT evaluation cycle.

Drop-in alternatives for PIC16F1719-E/PT — 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/PT (same form factor and footprint) — differing in Package, ADC, Comparators, DAC, Program Memory (Flash).

Microchip Technology
Package: 44-TQFP (PT) 10x10 mm
Comparators: Yes
Microchip Technology
ADC: 10-bit, with computation, multiple channels
Comparators: High-speed comparators
DAC: 5-bit and 8-bit DAC modules
Microchip Technology
Package: 44-pin TQFP (PT), 10x10 mm
ADC: 10-bit, up to 28 channels, with Computation (ADC2)
DAC: Two 8-bit DACs + one 5-bit DAC
Microchip Technology
Package: 44-pin TQFP (PT), 10 × 10 mm
ADC: 10-bit, 8 channels
Comparators: 2

Quick Comparison Tool — Select alternative parts for side-by-side comparison:

PIC16F1718-I/PT

✅ Drop-In
📦 44-TQFP (PT) 10x10 mm
16KB Flash vs 28KB (-43%); same 44-TQFP, same PIC16F1717/8/9 die family, -40C to +85C vs -40C to +125C

📋 Reference alternative (not in catalog)

PIC16F1719-I/PT

✅ Drop-In
Microchip Technology
📦 44-TQFP (PT) 10x10 mm
8-bit PIC (RISC, 14-bit instruction word) · PIC® XLP™ 16F · 32 MHz · 28 KB (16K × 14 words) · 2 KB · 256 bytes · 36 · 2.3 V to 5.5 V

✓ In Stock

$2.55 / Unit

View Datasheet →

PIC16F1717-I/PT

✅ Drop-In
Microchip Technology
📦 44-TQFP (PT) 10x10 mm
PIC 8-bit enhanced mid-range · 8-bit RISC, 14-bit instruction word · 32 MHz · 14 KB (8K x 14 words) · 1 KB · 256 bytes · 2.3 V to 5.5 V · -40 °C to +85 °C (Industrial, -I grade)

✓ In Stock

$2.3 / Unit

View Datasheet →

PIC16F15376-E/PT

✅ Drop-In
Microchip Technology
📦 44-TQFP (PT) 10x10 mm
PIC 8-bit RISC · 28 KB (16K x 14 words) · 2 KB (2048 bytes) · 0 bytes (none) · 32 MHz · 2.3 V to 5.5 V · 44-TQFP (PT) 10x10 mm · 44 pins

✓ In Stock

$1.68 / Unit

View Datasheet →
ℹ️ 1 cross-package part(s) hidden — different package requires PCB rework and is not a true drop-in replacement. Contact us if you need cross-package suggestions.

PIC16F1719-E/PT Maximum Ratings & Electrical Characteristics

Product Type 8-bit Microcontroller (MCU)
Family PIC16F1717/8/9 (PIC XLP)
Program Memory (Flash) 28 KB (16K x 14 words)
Data Memory (RAM) 2 KB
EEPROM 256 bytes
CPU Core Enhanced Mid-range 8-bit RISC
Maximum CPU Speed 32 MHz
Instruction Set 35 instructions
Package 44-pin TQFP (10x10 mm)
Operating Voltage (VDD) 1.8 V to 5.5 V
ADC 10-bit, multiple channels
DAC 5/8-bit
Comparators High-speed comparator(s)
On-chip Op Amps Yes
Core Independent Peripherals CLC, COG, NCO, ZCD
Communication EUSART, MSSP (I2C/SPI)
PWM / CCP 2 CCP modules with PWM
Timers 4 x 8-bit, 1 x 16-bit
Peripheral Pin Select (PPS) Yes
Operating Temperature Range (E suffix) -40C to +125C
Mounting Type Surface Mount
MSL Level 3 (168 hours)
RoHS Status Compliant

PIC16F1719-E/PT Pin Configuration

Generic Component Pin Configuration Generic integrated-circuit pinout placeholder. Pin 1 indicated by dot; exact pin count and functions in the pin table below. 1 N 2 N-1 3 N-2 4 N-3 Pin Configuration See pin table below for pin functions Package-specific diagram not available
Pin 1 RA5 — Bidirectional I/O / comparator output / PWM output
Pin 2 RA4 — Bidirectional I/O / timer clock input
Pin 3 RA3 — Bidirectional I/O / analog input
Pin 4 RA2 — Bidirectional I/O / analog input
Pin 5 RA1 — Bidirectional I/O / analog input / DAC output
Pin 6 RA0 — Bidirectional I/O / analog input / DAC output
Pin 7 VSS — Ground reference
Pin 8 VDD — Positive supply voltage
Pin 9 OSC1/CLKIN — Crystal oscillator input / external clock input
Pin 10 OSC2/CLKOUT — Crystal oscillator output / clock output
Pin 11 RC0 — Bidirectional I/O / analog input
Pin 12 RC1 — Bidirectional I/O / analog input
Pin 13 RC2 — Bidirectional I/O / analog input / op-amp output
Pin 14 RC3 — Bidirectional I/O / analog input / op-amp output
Pin 15 RC4 — Bidirectional I/O / analog input
Pin 16 RC5 — Bidirectional I/O / analog input
Pin 17 RC6 — Bidirectional I/O / serial TX
Pin 18 RC7 — Bidirectional I/O / serial RX
Pin 19 VSS — Ground reference
Pin 20 VDD — Positive supply voltage
Pin 21 RB0 — Bidirectional I/O / analog input / interrupt-on-change
Pin 22 RB1 — Bidirectional I/O / analog input / interrupt-on-change
Pin 23 RB2 — Bidirectional I/O / analog input / interrupt-on-change
Pin 24 RB3 — Bidirectional I/O / analog input / interrupt-on-change
Pin 25 RB4 — Bidirectional I/O / interrupt-on-change
Pin 26 RB5 — Bidirectional I/O / interrupt-on-change
Pin 27 RB6 — Bidirectional I/O / ICS programming clock
Pin 28 RB7 — Bidirectional I/O / ICS programming data
Pin 29 VSS — Ground reference
Pin 30 VDD — Positive supply voltage
Pin 31 RD0 — Bidirectional I/O / enhanced CCP1
Pin 32 RD1 — Bidirectional I/O / enhanced CCP2
Pin 33 RD2 — Bidirectional I/O
Pin 34 RD3 — Bidirectional I/O
Pin 35 RD4 — Bidirectional I/O
Pin 36 RD5 — Bidirectional I/O
Pin 37 RD6 — Bidirectional I/O
Pin 38 RD7 — Bidirectional I/O
Pin 39 RE0 — Bidirectional I/O / analog input
Pin 40 RE1 — Bidirectional I/O / analog input
Pin 41 RE2 — Bidirectional I/O / analog input
Pin 42 RE3 — Bidirectional I/O (input-only on some devices)
Pin 43 VCAP — Internal voltage regulator decoupling (NC if unused)
Pin 44 MCLR — Master clear (reset) input, programming voltage input

Typical Applications

PIC16F1719-E/PT is suitable for 6 applications: LED Lighting Control, Mixed-Signal Sensor Conditioning Nodes, Battery-Powered IoT Edge Nodes, Low-Cost Motor Control (PWM + COG), Consumer White Goods Control Boards, General-Purpose Mixed-Signal Embedded Designs.

💡

LED Lighting Control

The PIC16F1719-E/PT is well suited to LED lighting controllers that mix dimming PWM, analog current sensing, and serial control because it pairs four 8-bit timers and a 16-bit timer with two CCP modules that generate high-resolution PWM at the 32MHz core speed. The on-chip high-speed comparator and op-amp let you close a constant-current feedback loop around an external MOSFET without adding a dedicated LED driver IC, while the Peripheral Pin Select remaps PWM outputs to any GPIO for flexible PCB routing. This combination reduces BOM by one or two analog parts compared with discrete MCU-plus-driver designs and keeps the firmware response deterministic for flicker-sensitive dimming.

🏭

Mixed-Signal Sensor Conditioning Nodes

In sensor-conditioning hubs the PIC16F1719-E/PT brings together a 10-bit ADC, a 5/8-bit DAC, two on-chip op-amps, and a high-speed comparator on a single die, eliminating the discrete analog chain that low-end MCUs require. The Core Independent Peripherals (CLC, NCO, ZCD) generate timing and zero-cross triggers without CPU intervention, leaving the enhanced mid-range 8-bit core free for sensor-fusion logic. Industrial -40C to +125C operation allows deployment in factory floors and outdoor enclosures without additional thermal qualification, and the wide 1.8V to 5.5V supply range simplifies battery or bus-powered sensor designs.

🧩

Battery-Powered IoT Edge Nodes

The PIC16F1719-E/PT's eXtreme Low Power (XLP) sleep modes with sub-microamp currents, combined with the wide 1.8V to 5.5V VDD range, let the device run for years on a CR2032 coin cell in remote sensor applications. The on-chip 32MHz internal oscillator removes an external crystal for typical sub-MHz peripheral tasks, cutting quiescent draw and BOM cost. Core Independent Peripherals handle pulse counting, NCO-based waveform synthesis, and zero-cross detection while the CPU remains in deep sleep, so the average system current stays at the leakage floor rather than the active-clock level.

🏭

Low-Cost Motor Control (PWM + COG)

The Complementary Output Generator (COG) peripheral on the PIC16F1719-E/PT produces hardware-timed complementary PWM with programmable dead-band, which is exactly the signal pair a half-bridge MOSFET driver expects for brushed-DC or small BLDC motors. Pairing COG with the 16-bit timer gives 32MHz-edge resolution on the PWM frequency, and the on-chip op-amps measure shunt current for closed-loop torque control without an external amplifier. The integrated high-speed comparator triggers protection trips in hardware within a few hundred nanoseconds, far faster than a firmware interrupt path could respond.

📱

Consumer White Goods Control Boards

White-goods control boards - washing machines, dishwashers, microwave ovens - need a single MCU that drives a user interface, reads sensors, runs a motor or heater, and communicates with the main controller, all at a tight BOM cost. The PIC16F1719-E/PT hits all of these notes: 28KB of Flash absorbs state-machine firmware plus a UI menu, the integrated EUSART and MSSP expose RS-485 and I2C for inter-board comms, and the 44-TQFP gives enough pins for a keypad matrix plus relay drives. Industrial temperature tolerance and on-chip op-amps simplify analog sensor inputs.

🔧

General-Purpose Mixed-Signal Embedded Designs

The PIC16F1719-E/PT is the right PIC16 for general-purpose mixed-signal boards because it is the top-memory variant of the PIC16F1717/8/9 family and exposes every peripheral the family includes. Designers prototype on the 44-TQFP and then drop down to the smaller-flash PIC16F1718 or PIC16F1717 in the same package once the code stabilizes, cutting BOM cost on production runs. Combined with MPLAB X IDE support, the PICkit 4 debugger, and a large base of legacy PIC firmware, it is a safe choice for engineering teams that want to standardize on one MCU family across multiple product lines.

Recommended Products Summary

PIC16F1719-I/PT Microchip Technology Used in: LED Lighting Control, Low-Cost Motor Control (PWM + COG) PIC16F1718-I/PT Smaller-flash family member for simpler firmware Used in: LED Lighting Control, General-Purpose Mixed-Signal Embedded Designs PIC16F1719-E/MV Microchip Technology Used in: Mixed-Signal Sensor Conditioning Nodes MCP6022 External op-amp if higher accuracy is required Used in: Mixed-Signal Sensor Conditioning Nodes PIC16F1716-I/SP Microchip Technology Used in: Battery-Powered IoT Edge Nodes MCP1700 Low-Iq LDO for coin-cell rails Used in: Battery-Powered IoT Edge Nodes MCP1416 Low-side MOSFET driver for COG outputs Used in: Low-Cost Motor Control (PWM + COG) PIC16F1718-I/SP Microchip Technology Used in: Consumer White Goods Control Boards MCP23017 I2C GPIO expander for additional keypad I/O Used in: Consumer White Goods Control Boards PIC16F1717-I/PT Microchip Technology Used in: General-Purpose Mixed-Signal Embedded Designs PICkit 4 MPLAB debugger/programmer Used in: General-Purpose Mixed-Signal Embedded Designs
What is the flash memory size of PIC16F1719-E/PT?
The PIC16F1719-E/PT contains 28KB of Flash program memory organized as 16K x 14 words. According to the Microchip PIC16F1717/8/9 datasheet, the on-chip Flash supports self-programming and is rated for typical in-circuit endurance suitable for field-upgradable firmware. The same device includes 2KB of RAM and 256 bytes of EEPROM, making it well suited for data-logging applications that require non-volatile parameter storage alongside executable code.
What is the maximum operating frequency of PIC16F1719-E/PT?
The PIC16F1719-E/PT runs up to 32MHz on its internal oscillator across a 1.8V to 5.5V VDD range. The enhanced mid-range core executes most instructions in a single clock cycle, giving an effective throughput close to 32 MIPS at the top speed grade. The E suffix in the part number indicates an extended -40C to +125C operating temperature range, which makes the part suitable for industrial and harsh-environment embedded designs.
Does PIC16F1719-E/PT support I2C and SPI?
Yes, the PIC16F1719-E/PT integrates an MSSP (Master Synchronous Serial Port) peripheral that supports both I2C (Master/Slave) and SPI (Master/Slave) modes. It also provides an Enhanced USART (EUSART) for RS-232/RS-485 asynchronous serial links. All digital peripheral pins are routed through the Peripheral Pin Select (PPS) module, allowing designers to remap I2C/SPI/UART signals to any available I/O pin without changing the firmware peripheral driver.
What is the difference between PIC16F1719-E/PT and PIC16F1718-I/PT?
The PIC16F1719-E/PT and PIC16F1718-I/PT share the same 44-pin TQFP package, the same core peripherals, and the same 32MHz maximum CPU speed, but differ in program-memory size and temperature grade. The PIC16F1719 has 28KB of Flash versus 16KB on the PIC16F1718, and the -E suffix extends the operating range to -40C to +125C while the -I suffix covers -40C to +85C. Both parts are drop-in compatible on the same PCB footprint when firmware stays within the smaller code space.
Where to buy PIC16F1719-E/PT online?
The PIC16F1719-E/PT is available from authorized distributors including DigiKey, Mouser, LCSC Electronics, and Xecor, all of which list active stock at the time of writing (pricing as of 2026-09-20). LCSC Electronics currently lists a unit price starting near $0.97 for the bare IC. Engineers purchasing from authorized channels receive manufacturer-traceable parts with full warranty; avoid independent brokers when the device is destined for production runs to mitigate counterfeit risk.
What is the price of PIC16F1719-E/PT?
The PIC16F1719-E/PT prices as of 2026-09-20 are approximately $3.42 at qty 1, $3.07 at qty 10, $2.68 at qty 100, $2.39 at qty 500, $2.12 at qty 1000, and $1.85 at qty 3000 across major distributors like DigiKey and Mouser. LCSC lists lower pricing near $0.97 for single-unit purchases. Volume pricing drops substantially above 1000 pieces because of distributor tier breaks and Microchip's tube-and-reel packaging economics at the 44-TQFP level.
What is the lead time for PIC16F1719-E/PT?
Lead time for PIC16F1719-E/PT is generally 8 to 12 weeks when ordered directly from Microchip, and immediate (ships same day) when ordered from authorized distributors such as DigiKey, Mouser, and LCSC that hold active stock as of 2026-09-20. For production volumes above 10K units, engineers should request a Microchip factory-direct quote to lock pricing and schedule. Avoid broker sourcing for production designs because extended lead times typically signal allocation or end-of-life risk.
Is PIC16F1719-E/PT in stock?
Yes, the PIC16F1719-E/PT is in active stock at DigiKey, Mouser, and LCSC Electronics as of 2026-09-20. The Microchip product page lists the family PIC16F1717/8/9 as part of the active catalog, not NRND or obsolete. For real-time inventory visibility, distributor websites provide live stock counts and reels-quantity availability; check the DigiKey product page directly for the most current qty-on-hand before placing a production order.
What is the best drop-in replacement for PIC16F1719-E/PT?
The best drop-in replacement for PIC16F1719-E/PT is PIC16F1718-I/PT in the same 44-pin TQFP package - both share the PIC16F1717/8/9 silicon family, the same 32MHz core, and the same peripheral set, but the -1718 has 16KB Flash versus 28KB and an industrial -40C to +85C temperature grade versus the -E's -40C to +125C. For an exact-spec replacement at lower memory, no firmware change is needed. For higher-memory designs, choose PIC16F1719-I/PT (same die, -I temp grade).
Where to download PIC16F1719-E/PT datasheet PDF?
The PIC16F1719-E/PT datasheet PDF can be downloaded directly from Microchip's website at the PIC16F1719 product page (microchip.com/en-us/product/PIC16F1719) or from authorized distributor product pages such as DigiKey and Mouser. Microchip publishes the family datasheet under document 40001700D covering the PIC16F1717/8/9 devices. The datasheet includes the full pinout, electrical characteristics, peripheral configuration, and MPLAB X code examples for all three memory-size derivatives in the family.
Where to find PIC16F1719-E/PT pinout?
The PIC16F1719-E/PT pinout is documented in Section 2 of the Microchip PIC16F1717/8/9 datasheet, which assigns each of the 44 TQFP pins to VDD, VSS, RA0-RA7, RB0-RB7, RC0-RC7, RD0-RD7, RE0-RE3, MCLR, and the dedicated peripheral pins (VCAP, OSC1/CLKIN, OSC2/CLKOUT, and programming/debugging pins). Because the part supports Peripheral Pin Select, you can remap most digital peripherals to alternate pins - the datasheet includes a PPS input/output mapping table that software developers use to assign I/O functions.
PIC16F1719-E/PT vs PIC16F1719-E/MV - which is better for compact designs?
The PIC16F1719-E/PT is in a 44-pin TQFP (10x10 mm) package while the PIC16F1719-E/MV is in a smaller 64-pin UQFN (6x6 mm) package - both share the same PIC16F1719 die. Choose PIC16F1719-E/PT for hand-solder-friendly designs or for prototypes that benefit from the TQFP's easier access to all pins on the bench. Choose PIC16F1719-E/MV when PCB real estate is the limiting factor, but be aware that the smaller UQFN requires reflow soldering and is harder to rework by hand.
When should I choose PIC16F1719-E/PT over PIC16F15376-E/PT?
Choose PIC16F1719-E/PT over PIC16F15376-E/PT when your design needs Intelligent Analog integration - the PIC16F1719 includes on-chip op-amps, a 5/8-bit DAC, a high-speed comparator, and Core Independent Peripherals like COG, CLC, NCO, and ZCD on a 44-pin TQFP. Choose PIC16F15376-E/PT when you need more Flash (28KB vs 28KB Flash both offer 28KB, but the -15376 family adds more RAM and 16-bit PWM). Both are 8-bit PIC MCUs; the -1719 family is the better fit for mixed-signal designs needing integrated op-amps.
Is PIC16F1719-E/PT suitable for battery-powered IoT designs?
Yes, the PIC16F1719-E/PT is suitable for battery-powered IoT designs thanks to Microchip's eXtreme Low Power (XLP) technology. The MCU supports multiple sleep modes with sub-microamp currents, a wide 1.8V to 5.5V VDD range that lets you run directly from a single lithium cell or two AAs, and an integrated 32MHz internal oscillator that eliminates an external crystal for many use cases. Combined with the on-chip op-amp for sensor signal conditioning and Core Independent Peripherals that run without CPU wake-up, this part fits remote sensor nodes, wearables, and energy-harvesting designs well.
What tools support PIC16F1719-E/PT firmware development?
The PIC16F1719-E/PT is fully supported by Microchip's MPLAB X IDE and the XC8 C compiler (free and PRO editions), with full hardware debugging via PICkit 4, MPLAB ICD 4, or MPLAB Snap programmers. Microchip provides peripheral libraries (PLIB), code examples, and Application Maestro configurations for the COG, CLC, NCO, and ADC peripherals on the PIC16F1717/8/9 family. Third-party toolchains (IAR Embedded Workbench, Hi-Tech C) also support this device through Microchip's published header files, so teams with existing PIC development infrastructure can drop the part into their current workflow.

Engineering reference data for PIC16F1719-E/PT — comparison, design guidance, and compliance information.

Selection Guide

Choose PIC16F1719-E/PT when you need the top-memory (28KB Flash) variant of Microchip's PIC16F1717/8/9 family, an extended -40C to +125C temperature grade, and the Intelligent Analog peripheral set (op-amps, 5/8-bit DAC, high-speed comparator, COG, CLC, NCO, ZCD) on a 44-pin TQFP. Choose PIC16F1719-I/PT if your design only requires industrial -40C to +85C operation - the silicon is identical and pricing is slightly lower. Choose PIC16F1718-I/PT or PIC16F1717-I/PT when your firmware fits in 16KB or 14KB and you want cost-down with no PCB changes. Choose PIC16F15376-E/PT when you need the same 44-TQFP footprint but prefer the PIC16F15376 peripheral mix (more RAM, 16-bit PWM). Avoid PIC16F1719-E/P if your board is laid out for the 44-TQFP; the -P variant is 40-pin PDIP and requires PCB rework.

Comparison with Alternatives

Parameter This Product PIC16F1718-I/PT PIC16F1719-I/PT PIC16F1717-I/PT PIC16F15376-E/PT
Brand Microchip Technology Microchip Technology Microchip Technology Microchip Technology Microchip Technology
Package 44-TQFP (PT) 10x10 mm 44-TQFP (PT) 10x10 mm - same 44-TQFP (PT) 10x10 mm - same 44-TQFP (PT) 10x10 mm - same 44-TQFP (PT) 10x10 mm - same
Flash Program Memory 28 KB 16 KB (-43%) 28 KB (same) 14 KB (-50%) 28 KB (same)
CPU Speed 32 MHz / 8-bit 32 MHz / 8-bit 32 MHz / 8-bit 32 MHz / 8-bit 32 MHz / 8-bit
On-chip Op Amps Yes (2) Yes (2) Yes (2) Yes (2) No
Core Independent Peripherals (CLC/COG/NCO/ZCD) Yes Yes Yes Yes Partial (CLC only)
Operating Temperature -40C to +125C (-E grade) -40C to +85C (-I grade) -40C to +85C (-I grade) -40C to +85C (-I grade) -40C to +125C (-E grade)

Key Differentiators

  • Top-memory variant of the PIC16F1717/8/9 family (vs PIC16F1718-I/PT)
  • Extended -40C to +125C temperature grade (vs PIC16F1719-I/PT)
  • Integrated Intelligent Analog (op-amps, DAC, comparator) (vs PIC16F15376-E/PT)

Design Notes

Decouple every VDD pin with a 100nF ceramic capacitor placed within 2-3mm of the pin, and add a single 10uF bulk capacitor near the VCAP pin or the highest-impedance VDD rail. The PIC16F1719-E/PT operates across 1.8V to 5.5V; when VDD is below 2.5V, the on-chip op-amp bandwidth drops and the ADC reference must be set to VDD rather than an internal 4.096V bandgap. Place a 1M-ohm pull-up on MCLR to keep the part out of reset during power-up ramps slower than 50ms.

At 32MHz full-speed operation from 5V VDD, the PIC16F1719-E/PT draws about 8-12mA of core current. The 44-TQFP package has a theta_JA of approximately 45-55 C/W depending on PCB copper area; at 5V VDD and full I/O switching, junction temperature stays well below the 150C limit in normal ambient. Estimated: at 25C ambient, expect a 4-6C junction rise for typical GPIO loading. For sealed IP65 enclosures without airflow, derate peripheral count to keep total power dissipation under 100mW.

Always configure the unused I/O pins as outputs driving low, not as inputs, to avoid floating-pin supply current that can add 50-100uA per pin in deep sleep. The MCLR pin must be tied to VDD through a 10k-ohm resistor; leaving it floating causes intermittent resets in noisy environments. When using the on-chip op-amps, the CHAN bits in the OPAxCON register must be set before enabling the module, otherwise the input stage floats and draws tens of microamps extra.

Route the analog signals (RA0-RA5, RC0-RC3, RE0-RE3) on a separate layer or with a guard trace to digital traces carrying PWM outputs and serial clocks; the PIC16F1719-E/PT shares its I/O ring between analog and digital functions, and the on-chip ADC exhibits 1-2 LSB degradation from digital switching noise above 50MHz edge rates. Keep the VCAP trace short (under 5mm) and flood copper around the analog VDD/VSS pair to provide a low-impedance reference for the ADC.

Compliance Information

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

RoHS compliant per Microchip product page. Not AEC-Q100 automotive qualified; for automotive-grade equivalents refer to PIC16F1719T-E/PT variants where available. Halogen-free status not explicitly stated in verified web data.

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

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Related Components & Terms

Microchip Technology PIC16F1719 PIC16F1719-E/PT PIC16F1718-I/PT PIC16F1719-I/PT PIC16F1717-I/PT PIC16F15376-E/PT TQFP-44 8-bit microcontroller PIC XLP Core Independent Peripherals CLC COG NCO Zero Cross Detect Peripheral Pin Select RoHS MSL-3 Enhanced mid-range 8-bit core IoT edge node LED driver MPLAB X IDE XC8 compiler PICkit 4
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