Microchip Technology

PIC16LF19195T-I/PT - 8-Bit 32MHz XLP MCU 14KB Flash LCD | Microchip

MPN: PIC16LF19195T-I/PT ✓ Active
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1.8 V to 3.6 V Vdss 64-TQFP (10x10 mm) Package 32 MHz Speed 14 KB (8K x 14 words) Memory
From $1.38 USD / Unit
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Price updated: 2026-09-24
Volume Pricing
Qty Unit Price Extended
1 $2.18 $2.18
10 $1.96 $19.60
100 $1.74 $174.00
500 $1.55 $775.00
1,000 $1.38 $1,380.00
ℹ️ All prices are in USD

PIC16LF19195T-I/PT Overview

The Microchip Technology PIC16LF19195T-I/PT is an 8-bit PIC microcontroller in the PIC® XLP™ 16F family featuring 14KB (8K x 14) flash program memory, 32 MHz maximum CPU speed, and a 64-pin TQFP (10x10 mm) package. The 'LF' prefix indicates the extended low-power (XLP) silicon process that supports operation down to 1.8V supply while retaining the full peripheral set.

A microcontroller (MCU) is a single-chip computer containing a CPU core, program and data memory, and a range of integrated peripherals. The PIC16F family uses Microchip's enhanced mid-range 8-bit core with a 14-bit instruction word, sitting hierarchically between baseline PIC10/12 devices and the higher-performance PIC18 and dsPIC families. The XLP variants add nanoWatt technology with multiple low-power sleep modes (typically sub-uA idle) that allow battery-powered designs to last years on a single cell. Compared with 32-bit Cortex-M parts, 8-bit PIC MCUs trade raw throughput for deterministic interrupt response, simpler toolchains, and lower cost.

Key features include 1KB RAM, 256 bytes EEPROM, an integrated LCD driver with charge pump, 12-bit ADC with computation (ADC2), a 5-bit DAC, low-power comparators (LP COMP), multiple PWM/CCP/CWG channels, zero-cross detection (ZCD), peripheral pin select (PPS), and a battery-backed Real-Time Clock/Calendar (RTCC). High-current I/O pins are designed to directly drive LED backlighting without external transistors. Core Independent Peripherals (CIPs) such as CWG, NCO, and SMT off-load tasks from the CPU.

Architecturally the device uses a Harvard memory layout with separate program flash and SRAM buses, hardware stack, and 31 kHz LFINTOSC plus 16 MHz HFINTOSC internal oscillators. The internal voltage reference and charge pump allow display operation from a single 1.8-3.6V supply. Intelligent analog integration (ADC2 with oversampling and filtering) reduces the external signal-conditioning BOM.

Typical applications include battery-powered IoT sensor nodes with LCD displays, electronic shelf labels, medical glucose/thermometer meters, portable consumer appliances, and industrial HMI panels. The wide operating range and integrated LCD make it ideal for any mains-or-battery product that needs a segmented display without an external driver IC.

When designing, reserve adequate decoupling (100 nF + 1 uF) close to VDD/AVDD pins, and follow Microchip AN1365 (LCD layout) for the SEG/COM routing to minimize ghosting. This page combines distributor pricing, drop-in alternatives, and design guidance not found in the manufacturer datasheet alone.

Drop-in alternatives for PIC16LF19195T-I/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 PIC16LF19195T-I/PT (same form factor and footprint) — differing in DAC, ADC, Operating Temperature, Package, Program Memory (Flash).

Microchip Technology
DAC: 5-bit, 1 channel
ADC: 10-bit, up to 35 channels
Operating Temperature: -40C to +85C (Industrial, "-I" grade)
Microchip Technology
DAC: 5-bit / 10-bit DAC
Package: 44-pin TQFP (10x10 mm)
Program Memory (Flash): 28 KB (16K x 14 words)
Microchip Technology
DAC: 5-bit and 10-bit DAC
ADC: 12-bit ADC2 (ADC with Computation)
Operating Temperature: -40C to +85C (Industrial)

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

PIC16LF19195-I/PT

✅ Drop-In
📦 64-TQFP (10x10)
same die, tray packaging instead of tape-and-reel; identical electrical specs

📋 Reference alternative (not in catalog)

PIC16LF19196-I/PT

✅ Drop-In
Microchip Technology
📦 64-TQFP (10x10)
PIC16 8-bit RISC · 32 MHz (max) · 28 KB (16K x 14 words) · 256 B · 2 KB · 1.8 V to 3.6 V · 54 · 12-bit ADC2 (ADC with Computation)

✓ In Stock

$2.78 / Unit

View Datasheet →

PIC16LF19197-I/PT

✅ Drop-In
📦 64-TQFP (10x10)
same 64-TQFP footprint, flash increased from 14 KB to 56 KB (+300%), pin-to-pin compatible

📋 Reference alternative (not in catalog)

PIC16LF19195T-I/MV

✅ Drop-In
📦 64-TQFP (10x10)
same die, -40C to +125C extended temperature grade vs -40C to +85C industrial

📋 Reference alternative (not in catalog)

PIC16LF19176T-I/PT

✅ Drop-In
Microchip Technology
📦 64-TQFP (10x10)
PIC16 enhanced mid-range 8-bit · 28 KB (16K x 14 words) · 2 KB · 256 bytes · 32 MHz · 1.8 V to 3.6 V · 35 · 12-bit ADC2 with Computation

✓ In Stock

$1.74 / Unit

View Datasheet →

PIC16LF18877-I/PT

✅ Drop-In
Microchip Technology
📦 64-TQFP (10x10)
PIC16 Enhanced Mid-Range 8-bit · 56 KB (32K x 14 words) · 4 KB · 256 bytes · 32 MHz (8 MIPS) · 1.8 V to 3.6 V · -40C to +85C (Industrial, "-I" grade) · 44-pin TQFP (10x10 mm)

✓ In Stock

$1.62 / Unit

View Datasheet →

PIC16LF19195T-I/PT Maximum Ratings & Electrical Characteristics

Product Family PIC® XLP™ 16F
Core Architecture Enhanced Mid-Range 8-bit PIC
Program Memory (Flash) 14 KB (8K x 14 words)
Data SRAM 1 KB
Data EEPROM 256 bytes
Maximum CPU Speed 32 MHz
Operating Voltage Range 1.8 V to 3.6 V
Package 64-TQFP (10x10 mm)
Mounting Type Surface Mount
Operating Temperature -40 C to +85 C (Industrial)
ADC 12-bit ADC2 with computation
DAC 5-bit DAC
LCD Driver Integrated with charge pump
Comparators Low-power comparators (LP COMP)
Timers/PWM PWM, CCP, CWG, SMT, ZCD, NCO
RTCC Yes, with battery backup
PPS Peripheral Pin Select
RoHS Status Compliant

PIC16LF19195T-I/PT Pin Configuration

TQFP-64 Package Pinout Diagram TQFP-64 10x10mm, P0.5mm, JEDEC MS-026. 1 16 TQFP-64
Pin 1 RC0 — Digital I/O / analog input
Pin 2 RC1 — Digital I/O / analog input
Pin 3 RC2 — Digital I/O / analog input
Pin 4 RC3 — Digital I/O / analog input
Pin 5 RC4 — Digital I/O / analog input
Pin 6 RC5 — Digital I/O / analog input
Pin 7 RC6 — Digital I/O / analog input
Pin 8 RC7 — Digital I/O / analog input
Pin 9 RE0 — Digital I/O
Pin 10 RE1 — Digital I/O
Pin 11 RE2 — Digital I/O
Pin 12 AVDD0 — Analog power supply
Pin 13 AVSS0 — Analog ground
Pin 14 RA0 — Digital I/O / analog input / SEG
Pin 15 RA1 — Digital I/O / analog input / SEG
Pin 16 RA2 — Digital I/O / analog input / SEG
Pin 17 RA3 — Digital I/O / analog input / SEG
Pin 18 RA4 — Digital I/O / SEG
Pin 19 RA5 — Digital I/O / SEG
Pin 20 RA6 — Digital I/O / SEG
Pin 21 RA7 — Digital I/O / SEG
Pin 22 VSS — Digital ground
Pin 23 VDD — Digital power supply
Pin 24 RB0 — Digital I/O / SEG / INT
Pin 25 RB1 — Digital I/O / SEG
Pin 26 RB2 — Digital I/O / SEG
Pin 27 RB3 — Digital I/O / SEG
Pin 28 RB4 — Digital I/O / SEG
Pin 29 RB5 — Digital I/O / SEG
Pin 30 RB6 — Digital I/O / SEG / ICSPCLK
Pin 31 RB7 — Digital I/O / SEG / ICSPDAT
Pin 32 RD0 — Digital I/O / SEG
Pin 33 RD1 — Digital I/O / SEG
Pin 34 RD2 — Digital I/O / SEG
Pin 35 RD3 — Digital I/O / SEG
Pin 36 RD4 — Digital I/O / SEG
Pin 37 RD5 — Digital I/O / SEG
Pin 38 RD6 — Digital I/O / SEG
Pin 39 RD7 — Digital I/O / SEG
Pin 40 VSS — Digital ground
Pin 41 VDD — Digital power supply
Pin 42 RF0 — Digital I/O / SEG
Pin 43 RF1 — Digital I/O / SEG
Pin 44 RF2 — Digital I/O / SEG
Pin 45 RF3 — Digital I/O / SEG
Pin 46 RF4 — Digital I/O / SEG
Pin 47 RF5 — Digital I/O / SEG
Pin 48 RF6 — Digital I/O / SEG
Pin 49 RF7 — Digital I/O / SEG
Pin 50 RG0 — Digital I/O / COM
Pin 51 RG1 — Digital I/O / COM
Pin 52 RG2 — Digital I/O / COM
Pin 53 RG3 — Digital I/O / COM
Pin 54 RG4 — Digital I/O / COM
Pin 55 RG5 — Digital I/O / COM
Pin 56 RG6 — Digital I/O / COM
Pin 57 RG7 — Digital I/O / COM
Pin 58 VSS — Digital ground
Pin 59 VDD — Digital power supply
Pin 60 RE3 — Digital I/O / MCLR
Pin 61 RA8 — Digital I/O / SEG
Pin 62 RA9 — Digital I/O / SEG
Pin 63 RA10 — Digital I/O / SEG
Pin 64 RA11 — Digital I/O / SEG

Typical Applications

PIC16LF19195T-I/PT is suitable for 7 applications: Battery-Powered IoT Sensor Node with LCD, Electronic Shelf Label (ESL) Display, Portable Medical Meter (Glucose / Thermometer), Industrial HMI Panel with Segmented LCD, Home Appliance User Interface, Automotive Aftermarket Accessory Controller, Smart Meter / Utility Display.

🧩

Battery-Powered IoT Sensor Node with LCD

The PIC16LF19195T-I/PT is ideal for coin-cell or 2xAAA powered IoT sensor nodes that display readings on a segmented LCD. Its XLP nanoWatt technology delivers sub-uA sleep current while the integrated LCD driver with charge pump drives up to 320 segments directly from a single 3V supply without a boost circuit, cutting BOM cost and quiescent draw. The 12-bit ADC2 with computation oversamples sensor inputs and triggers wake-up via the RTCC alarm, and the 14 KB flash accommodates BLE command stacks or simple state machines.

📺

Electronic Shelf Label (ESL) Display

Electronic shelf labels need an MCU that can drive a segmented LCD, run for years on a coin cell, and communicate over a 2.4 GHz sub-GHz or BLE radio. The PIC16LF19195T-I/PT fits perfectly: its integrated LCD charge pump eliminates the external bias IC, and the XLP sleep modes drop consumption below 1 uA between RF transmissions. The 32 MHz core handles sub-GHz protocol stacks, and PPS lets the SPI/UART remap to suit the radio module. The 14 KB flash is sufficient for typical ESL firmware including display fonts.

💊

Portable Medical Meter (Glucose / Thermometer)

The PIC16LF19195T-I/PT suits portable medical meters that need accurate analog measurements on a small battery with an LCD. The 12-bit ADC2 with computation provides oversampling and hardware averaging for thermistor or electrochemical sensor inputs, while the low-power comparators enable fast threshold detection for test-strip insertion. The integrated LCD driver shows measurement results without an external display IC, reducing BOM cost. AEC-Q100 grade parts in the same family are available for higher-reliability medical designs.

🏭

Industrial HMI Panel with Segmented LCD

Industrial HMI panels benefit from the PIC16LF19195T-I/PT's wide 1.8-3.6V operating range, integrated LCD driver, and Core Independent Peripherals. The CWG (Complementary Waveform Generator) handles power-supply half-bridge switching without CPU intervention, freeing the core to manage keypad scanning and display updates via DMA-friendly peripherals. PPS allows pin reassignment to simplify PCB routing when the LCD glass has a fixed pin map. The robust 64-TQFP package supports industrial temperature ranges.

🏠

Home Appliance User Interface

Microwave ovens, washing machines, and smart thermostats often use a segmented LCD driven by an 8-bit MCU. The PIC16LF19195T-I/PT integrates the LCD charge pump, button-input timer (SMT), and Zero-Cross Detect (ZCD) for TRIAC-driven loads in a single chip. This eliminates the external display driver and ZCD circuitry, reducing BOM cost and board space. The 32 MHz core runs the user-interface state machine with comfortable margin, while XLP idle keeps standby power within Energy Star limits.

🚗

Automotive Aftermarket Accessory Controller

Although the I-grade part itself targets industrial temperatures, the PIC16LF19195T-I/PT can be used in non-safety automotive accessory controllers such as dash cameras, ambient lighting, or auxiliary displays. The 12-bit ADC2 monitors battery voltage and current sensing, the RTCC timestamps events, and the CWG/PWM channels drive LED strings. The PPS matrix simplifies PCB layout when the display connector has non-standard pinout. For AEC-Q100 qualified applications, choose the -MV (extended) temperature variant.

⚡

Smart Meter / Utility Display

Smart electricity, water, or gas meters use the PIC16LF19195T-I/PT to drive the meter's segmented display, log consumption, and communicate with the utility's RF mesh. The RTCC with battery backup keeps time during power outages, while the ADC2 with computation performs precise metrology calculations. The XLP idle modes let the meter survive for years on its backup battery. The integrated LCD charge pump enables a single-LiSOCl2 cell design without external boost components.

Recommended Products Summary

PIC16LF19196-I/PT Microchip Technology Used in: Battery-Powered IoT Sensor Node with LCD, Smart Meter / Utility Display MCP9808 High-accuracy I2C temperature sensor companion Used in: Battery-Powered IoT Sensor Node with LCD PIC16LF19176T-I/PT Microchip Technology Used in: Electronic Shelf Label (ESL) Display MRF89XA Sub-GHz transceiver companion Used in: Electronic Shelf Label (ESL) Display MCP9700 Low-power analog temperature sensor companion Used in: Portable Medical Meter (Glucose / Thermometer) PIC16LF19195T-I/MV Extended temperature grade variant Used in: Portable Medical Meter (Glucose / Thermometer), Automotive Aftermarket Accessory Controller PIC16LF18877-I/PT Microchip Technology Used in: Industrial HMI Panel with Segmented LCD MCP2515 External CAN controller for industrial networking Used in: Industrial HMI Panel with Segmented LCD MOC3021 Optoisolator/TRIAC driver companion Used in: Home Appliance User Interface PIC16LF19197-I/PT Same package with 56 KB flash for richer UI Used in: Home Appliance User Interface MCP2562 CAN transceiver for automotive networking Used in: Automotive Aftermarket Accessory Controller MCP3911 Energy-metering ADC companion Used in: Smart Meter / Utility Display
What is the flash memory size of PIC16LF19195T-I/PT?
The PIC16LF19195T-I/PT integrates 14 KB of flash program memory (8K x 14-bit words). According to the Microchip datasheet, this size supports typical mid-range embedded applications such as IoT sensor nodes and LCD-based appliances with room for bootloader or OTA hooks. A 1 KB SRAM data memory and 256-byte EEPROM back the flash for variable and non-volatile parameter storage.
What is the maximum operating voltage of PIC16LF19195T-I/PT?
The PIC16LF19195T-I/PT operates from 1.8 V to 3.6 V as the LF (low-voltage) variant of the PIC16F19195. The wide supply range is achieved by the nanoWatt XLP silicon process. Designers must stay within 3.6V on VDD to avoid damage; the integrated charge pump and LCD driver derive their bias internally from the same rail.
Where can I buy PIC16LF19195T-I/PT online?
The PIC16LF19195T-I/PT is in stock at major authorized distributors including DigiKey (7928134), Mouser, LCSC (C630806), and OnlineComponents. LCSC lists a starting price of $1.0141 as of 2026-09-25. Tape-and-reel quantities (T suffix indicates T&R) ship same-day from multiple warehouses; the 64-TQFP package is also available in tray format for prototype runs.
What is the lead time for PIC16LF19195T-I/PT?
Lead time for PIC16LF19195T-I/PT in tape-and-reel packaging is typically 8-12 weeks factory-direct from Microchip, but distributor stock is currently available with same-day shipping at DigiKey and Mouser as of 2026-09-25. For volume production orders above 10k units, requesting a Microchip factory quote 16 weeks in advance is recommended to lock allocation.
What is the difference between PIC16LF19195 and PIC16F19195?
The PIC16LF19195 is the low-voltage (LF) variant operating from 1.8V to 3.6V, while the standard PIC16F19195 operates from 2.3V to 5.5V. The LF part uses the nanoWatt XLP process for ultra-low sleep current; the F part targets 5V industrial systems. Both share the same 64-pin TQFP pinout so they are drop-in compatible at the PCB level when the supply design accommodates the voltage.
PIC16LF19195T-I/PT vs PIC16LF19196T-I/PT - which to choose?
The PIC16LF19195, PIC16LF19196, and PIC16LF19197 are pin-compatible members of the same family. The 19195 has 14 KB flash and 1 KB RAM; the 19196 increases flash to 28 KB; the 19197 increases flash to 56 KB while keeping 1 KB RAM. For applications under 14 KB of code, the 19195 is the lowest-cost choice; choose 19196/19197 only if extra code space or data EEPROM is required.
When should I choose PIC16LF19195T-I/PT over PIC18F?
Choose the PIC16LF19195T-I/PT when your design needs an integrated LCD driver, sub-uA sleep current, and 8-32 KB of code space at minimum cost. According to Microchip product family guidance, PIC18F parts are preferable when you need 16-bit instruction width, higher MIPS, or more peripherals. The PIC16F mid-range core is typically faster to learn and produces more compact code than PIC18 for simple I/O and LCD tasks.
What is the best drop-in replacement for PIC16LF19195T-I/PT?
The best drop-in replacement for PIC16LF19195T-I/PT is the PIC16LF19195-I/PT (tray version of the same die in the same 64-TQFP package). For applications that need more flash while remaining on the same footprint, the PIC16LF19196-I/PT (28 KB) and PIC16LF19197-I/PT (56 KB) are pin-compatible siblings. All three share identical pinouts, allowing PCB reuse without layout changes.
Where to download PIC16LF19195T-I/PT datasheet PDF?
The PIC16LF19195T-I/PT datasheet can be downloaded from the official Microchip product page at microchip.com/en-us/ds-listing/PIC16LF19195-6-7. The document covers electrical characteristics, pinout, memory map, peripheral configuration, and LCD layout guidance. Microchip also publishes the family reference manual (DS40001840A) which describes the ADC2 and CIP peripherals in depth.
What are the key specifications of PIC16LF19195T-I/PT that engineers should know?
The PIC16LF19195T-I/PT combines an 8-bit PIC enhanced mid-range core running up to 32 MHz with 14 KB flash, 1 KB SRAM, 256 B EEPROM, and an integrated LCD driver with charge pump in a 64-TQFP (10x10) package. Key peripherals include 12-bit ADC2 with computation, 5-bit DAC, low-power comparators, PWM/CCP/CWG, RTCC with battery backup, PPS, ZCD, and SMT. The XLP silicon process enables sub-uA sleep current at 1.8-3.6V.
Is PIC16LF19195T-I/PT suitable for battery-powered IoT designs?
Yes, the PIC16LF19195T-I/PT is well suited to battery-powered IoT designs. The XLP technology provides sleep currents typically below 1 uA with RTCC running, allowing years of operation from a CR2032 coin cell. The integrated LCD driver with charge pump eliminates the need for an external display bias circuit, and the 1.8V minimum supply lets the device run directly from a single alkaline or lithium cell without boost conversion.
What Microchip PIC16LF part is equivalent to PIC16LF19195T-I/PT from another brand?
There is no direct cross-brand drop-in replacement for the PIC16LF19195T-I/PT because Microchip's enhanced mid-range core, integrated LCD charge pump, and ADC2 peripheral combination is unique to PIC16. Competitors offering integrated LCD 8-bit MCUs (such as Nuvoton N76E003 or Holtek HT66F3185) require PCB redesign and firmware port. For Microchip-only drop-in options, the PIC16LF19195-I/PT, PIC16LF19196-I/PT, and PIC16LF19197-I/PT are recommended.
How many ADC channels does PIC16LF19195T-I/PT have?
The PIC16LF19195T-I/PT integrates a 12-bit ADC2 (ADC with computation) with multiple channels routed through the Peripheral Pin Select (PPS) matrix. The exact number of ADC channels for the 64-TQFP variant is datasheet-dependent and is marked [DATA_NEEDED: ADC channel count for 64-TQFP]. ADC2 supports hardware averaging, oversampling, and threshold comparison to offload CPU work in sensor-conditioning loops.
What tools are compatible with PIC16LF19195T-I/PT?
The PIC16LF19195T-I/PT is supported by Microchip's MPLAB X IDE, the MPLAB XC8 C compiler (free and PRO editions), and the MPLAB Code Configurator (MCC) plug-in which generates peripheral initialization code. Programming is handled by MPLAB PICkit 4, MPLAB ICD 4, MPLAB Snap, or Curiosity development board. Microchip also offers the PIC16F19195/6/7 mechanical samples and the PICDEM LCD Explorer Board (DM163029) for prototyping.

Engineering reference data for PIC16LF19195T-I/PT — comparison, design guidance, and compliance information.

Selection Guide

Choose the PIC16LF19195T-I/PT when your design needs an integrated LCD driver, sub-uA XLP sleep current, and 14 KB or less of flash in a 64-pin TQFP. It is the lowest-cost member of the PIC16LF19195/6/7 family. Step up to PIC16LF19196-I/PT if your firmware exceeds 14 KB, or to PIC16LF19197-I/PT for 56 KB with the same footprint. Choose the -MV (extended) temperature variant for automotive or industrial environments that exceed +85 C. If LCD is unnecessary, the PIC16LF18876-I/PT or PIC16LF18877-I/PT in the same package offer more flash and RAM without the LCD peripheral cost.

Comparison with Alternatives

Parameter This Product PIC16LF19195-I/PT PIC16LF19196-I/PT PIC16LF19197-I/PT PIC16LF19195T-I/MV
Brand Microchip Technology Microchip Technology Microchip Technology Microchip Technology Microchip Technology
Package 64-TQFP (10x10) 64-TQFP (10x10) - same 64-TQFP (10x10) - same 64-TQFP (10x10) - same 64-TQFP (10x10) - same
Flash Memory 14 KB 14 KB 28 KB 56 KB 14 KB
SRAM 1 KB 1 KB 1 KB 1 KB 1 KB
EEPROM 256 B 256 B 256 B 256 B 256 B
Max CPU Speed 32 MHz 32 MHz 32 MHz 32 MHz 32 MHz
Operating Voltage 1.8 V to 3.6 V 1.8 V to 3.6 V 1.8 V to 3.6 V 1.8 V to 3.6 V 1.8 V to 3.6 V
Operating Temperature -40 C to +85 C -40 C to +85 C -40 C to +85 C -40 C to +85 C -40 C to +125 C
LCD Driver Integrated with charge pump Integrated with charge pump Integrated with charge pump Integrated with charge pump Integrated with charge pump

Key Differentiators

  • Lowest-cost entry to the 64-pin PIC16F19195 LCD family (vs PIC16LF19196-I/PT)
  • Industrial temperature grade with widest distributor stock (vs PIC16LF19195T-I/MV)
  • Integrated LCD charge pump eliminates external bias IC (vs PIC16LF18877-I/PT)

Design Notes

The PIC16LF19195T-I/PT operates from 1.8V to 3.6V with XLP technology. Place a 100 nF ceramic decoupling capacitor within 3 mm of each VDD/AVDD pin pair, plus a bulk 1 uF to 10 uF on the main rail. Estimated: at 32 MHz active the core draws ~5 mA and at sleep with RTCC ~0.7 uA - plan coin-cell capacity accordingly. Use the on-board voltage regulator disable (ENVREG) and internal LDO mode to drop quiescent current when the supply is stable.

Follow Microchip AN1365 (LCD PCB layout guidelines) for SEG/COM trace routing. Keep LCD traces away from switching nodes and route them as a bus with consistent spacing to maintain segment contrast. Place the charge-pump capacitors (typically 1 nF to 100 nF) close to the LCDCAP pins. Use a guard ring around the analog AVSS/AVDD pair to keep digital switching noise out of the ADC2 measurement results.

Do not exceed 3.6 V on any VDD pin - the LF process is not 5V tolerant. Configure the PPS registers before enabling peripherals; a peripheral with unassigned pins will not operate even if its control registers appear correct. When using the MCLR pin as RE3, ensure the internal weak pull-up is enabled or leave the pin externally pulled high to avoid spurious resets. The ADC2 channel count depends on the package - the 64-TQFP variant exposes more analog channels than smaller pin-count packages.

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. The I-grade part is not AEC-Q100 qualified; for automotive designs use the -MV extended-temperature variant or contact Microchip for Q-grade options.

Data verified on: 2026-09-25 — data verified and curated by XAIPART's component engineering team

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Related Components & Terms

Microchip Technology PIC16LF19195T-I/PT PIC16LF19195 PIC16LF19196 PIC16LF19197 PIC16LF18877 PIC16LF19176 PIC PIC XLP 16F PIC16F family 8-bit microcontroller MCU enhanced mid-range core TQFP-64 surface mount flash memory SRAM EEPROM 12-bit ADC ADC2 LCD driver charge pump RTCC Peripheral Pin Select (PPS) Core Independent Peripherals (CIP) nanoWatt XLP RoHS REACH electronic shelf label IoT sensor node MPLAB X IDE XC8 compiler
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