Microchip Technology

PIC16LF1782T-I/MV - 32MHz 8-bit MCU with 12-bit ADC | Microchip

MPN: PIC16LF1782T-I/MV ✓ Active
In Stock Ships in 1-3 business days
1.8 V to 5.5 V Vdss UQFN-28 (MV) 4x4 mm Package 32 MHz Speed 3.5 KB (2K x 14 words) Memory
From $1.55 USD / Unit
MOQ: 1 |
Price updated: 2026-09-23
Volume Pricing
Qty Unit Price Extended
1 $2.85 $2.85
10 $2.56 $25.60
100 $2.18 $218.00
500 $1.82 $910.00
1,000 $1.55 $1,550.00
ℹ️ All prices are in USD

PIC16LF1782T-I/MV Overview

The Microchip PIC16LF1782T-I/MV is a low-power 8-bit PIC microcontroller built on the enhanced mid-range PIC16 CPU core, integrating 3.5KB Flash program memory (2K x 14), 256 bytes RAM, and 256 bytes EEPROM in a 28-pin UQFN (MV) package. The device operates from 1.8V to 5.5V with an LF-process variant optimized for nanoWatt XLP ultra-low-power operation, making it suitable for battery-powered and energy-harvesting designs. It combines a 12-bit ADC, 8-bit DAC, op-amp peripherals, and a 32MHz internal oscillator on a single die.

Key features include a 12-bit differential ADC with up to 11 channels, an 8-bit DAC, two operational amplifiers, two 10-bit PWM modules, and support for EUSART, I2C, and SPI communication peripherals. The PIC16LF1782T-I/MV integrates capacitive touch sensing (mTouch) and a hardware multiplier, enabling single-cycle 8x8 multiplication. The 28-pin UQFN (4x4 mm) package provides a compact surface-mount footprint suited for space-constrained PCB layouts.

The PIC16LF1782 uses the enhanced mid-range 16-bit instruction set (49 instructions, 16-bit opcodes) with a 14-bit program word width and a 16-level hardware stack. The CPU executes one instruction per clock cycle at 32MHz, delivering 8 MIPS throughput. Integrated peripherals such as the 12-bit ADC with acquisition timer reduce BOM count in sensor-interface designs. The nanoWatt XLP technology delivers typical sleep currents below 100 nA with retention RAM and Watchdog Timer operation.

Typical applications include industrial sensor conditioning, portable medical instrumentation, battery-powered IoT nodes, low-power motor control loops, LED lighting controllers, and capacitive touch user interfaces. The combination of high-resolution ADC, on-chip op-amps, and DAC enables closed-loop analog signal chain implementations without external active components.

When designing with this device, ensure the UQFN exposed pad is soldered to a sufficient copper pour for thermal dissipation. Use MPLAB X IDE with the XC8 compiler and verify the supply voltage and frequency combination against the device's voltage-frequency derating curve. The 'T' suffix in the part number designates Tape & Reel packaging per Microchip ordering conventions.

This page synthesizes distributor pricing, drop-in alternatives, and practical design notes not found in the manufacturer datasheet. For source pricing and stock data, see the distributor links listed below.

Drop-in alternatives for PIC16LF1782T-I/MV — 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 PIC16LF1782T-I/MV (same form factor and footprint) — differing in Package, ADC, DAC, Core Architecture, Operating Temperature.

Microchip Technology
Package: 28-UQFN (4x4 mm) with exposed pad
ADC: 10-bit, up to 32 channels
DAC: 5-bit and 8-bit on-chip
Microchip Technology
Package: 28-QFN (6x6 mm) with Exposed Pad (ML)
ADC: 12-bit
DAC: 8-bit
Microchip Technology
Package: 40-pin UQFN (MV) 5x5 mm
ADC: 12-bit, up to 32 channels
DAC: 2x 8-bit
Microchip Technology
Package: 40-pin UQFN-EP, 5x5 mm
ADC: 12-bit
DAC: 8-bit

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

PIC16LF1782-I/MV

✅ Drop-In
📦 UQFN-28 (MV) 4x4 mm
Identical silicon die, tray packaging instead of Tape & Reel (T suffix = T&R)

📋 Reference alternative (not in catalog)

PIC16LF1783-I/MV

✅ Drop-In
Microchip Technology
📦 UQFN-28 (MV) 4x4 mm
PIC16 8-bit RISC (modified Harvard) · 32 MHz · 7 KB (4K x 14 words) · 512 bytes · 256 bytes · 12-bit, differential · 8-bit · 1.8 V to 3.6 V (LF variant)

✓ In Stock

$1.21 / Unit

View Datasheet →

PIC16F1782T-I/MV

✅ Drop-In
📦 UQFN-28 (MV) 4x4 mm
Same pinout, F-version (2.3V-5.5V) vs LF (1.8V-5.5V); lower-voltage operation not guaranteed

📋 Reference alternative (not in catalog)

PIC16LF1782-E/MV

✅ Drop-In ⚠️ 参数待验证
📦 UQFN-28 (MV) 4x4 mm
Same die, extended temperature -40C to +125C vs industrial -40C to +85C, otherwise pin-to-pin

📋 Reference alternative (not in catalog)

PIC16LF1784-I/MV

✅ Drop-In ⚠️ 参数待验证
Microchip Technology
📦 UQFN-28 (MV) 4x4 mm
PIC® XLP™ 16F · 8-bit RISC, 14-bit instruction word · 32 MHz · 7 KB (4K x 14) · 512 B · 512 B · 1.8 V to 3.6 V · 40-pin UQFN (MV) 5x5 mm

✓ In Stock

$2.02 / Unit

View Datasheet →

PIC16LF1718T-I/MV

✅ Drop-In
Microchip Technology
📦 UQFN-28 (MV) 4x4 mm
PIC16 enhanced mid-range 8-bit RISC · 28 KB (16K x 14 words) · 2 KB · 256 bytes · 32 MHz · 1.8 V to 3.6 V · 10-bit, up to 32 channels · 5-bit and 8-bit on-chip

✓ In Stock

$0.91 / Unit

View Datasheet →

PIC16LF1782T-I/MV Maximum Ratings & Electrical Characteristics

Core Architecture PIC16 enhanced mid-range (8-bit)
Program Memory (Flash) 3.5 KB (2K x 14 words)
Data SRAM 256 bytes
Data EEPROM 256 bytes
Maximum CPU Frequency 32 MHz
Instruction Throughput 8 MIPS
Operating Voltage Range 1.8 V to 5.5 V
ADC 12-bit differential, up to 11 channels
DAC 8-bit, 1 channel
Operational Amplifiers 2 on-chip
PWM Modules 2 x 10-bit
Communication Peripherals EUSART, I2C, SPI
I/O Pins 24 (max)
Package UQFN-28 (MV) 4x4 mm
Operating Temperature Range -40C to +85C (industrial)
Mounting Type Surface Mount
MSL Level 3
RoHS Status Compliant

PIC16LF1782T-I/MV Pin Configuration

QFN-28 Package Pinout Diagram QFN-28 5x5mm, P0.5mm, EP 3.1x3.1mm, 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 QFN-28
Pin 1 RA0/AN0/C1IN0-/C2IN0-/C3IN0- — Bidirectional I/O / Analog input 0 / Comparator input
Pin 2 RA1/AN1/C1IN1-/C2IN1-/C3IN1- — Bidirectional I/O / Analog input 1 / Comparator input
Pin 3 RA2/AN2/VREF-/DAC1OUT1 — Bidirectional I/O / Analog input 2 / VREF- / DAC output
Pin 4 RA3/AN3/VREF+/C1IN1+ — Bidirectional I/O / Analog input 3 / VREF+ / Comparator input
Pin 5 RA4/AN4/C2OUT/T0CKI — Bidirectional I/O / Analog input 4 / Comparator output / Timer0 clock
Pin 6 RA5/AN5/C1OUT — Bidirectional I/O / Analog input 5 / Comparator output
Pin 7 RA6/OSC2/CLKOUT — Bidirectional I/O / Oscillator output / Clock output
Pin 8 RA7/OSC1/CLKIN — Bidirectional I/O / Oscillator input / External clock
Pin 9 VSS — Ground reference
Pin 10 VDD — Positive supply voltage (1.8V-5.5V)
Pin 11 RB0/AN12/CCP4/SRI — Bidirectional I/O / Analog input / CCP4 / SR latch input
Pin 12 RB1/AN10/C1IN3-/C2IN3-/C3IN3-/SRI — Bidirectional I/O / Analog input / Comparator / SR latch input
Pin 13 RB2/AN8/C1IN2-/C2IN2-/SRI — Bidirectional I/O / Analog input / Comparator / SR latch input
Pin 14 RB3/AN9/C1IN2+/C2IN2+/SRI — Bidirectional I/O / Analog input / Comparator / SR latch input
Pin 15 RB4/AN11/SDA/SDI — Bidirectional I/O / Analog input / I2C data / SPI data in
Pin 16 RB5/AN13/RX/DT — Bidirectional I/O / Analog input / EUSART RX / Data
Pin 17 RB6/TX/CK/SCK/SCL — Bidirectional I/O / EUSART TX / Clock / I2C clock
Pin 18 RB7/CCP3/SDO — Bidirectional I/O / CCP3 / SPI data out
Pin 19 VSS — Ground reference (2nd pad)
Pin 20 VDD — Positive supply (2nd pad)
Pin 21 RC0/SOSCO/T1CKI — Bidirectional I/O / Secondary osc / Timer1 clock
Pin 22 RC1/SOSCI/CCP2 — Bidirectional I/O / Secondary osc / CCP2
Pin 23 RC2/AN14/CCP1 — Bidirectional I/O / Analog input / CCP1
Pin 24 RC3/AN15/SCL/SCK — Bidirectional I/O / Analog input / I2C or SPI clock
Pin 25 RC4/AN16/SDA/SDI — Bidirectional I/O / Analog input / I2C or SPI data
Pin 26 RC5/AN17/RX/DT — Bidirectional I/O / Analog input / EUSART RX
Pin 27 RC6/AN18/TX/CK — Bidirectional I/O / Analog input / EUSART TX
Pin 28 RC7/AN19/SDO — Bidirectional I/O / Analog input / SPI data out

Typical Applications

PIC16LF1782T-I/MV is suitable for 6 applications: Industrial Sensor Signal Conditioning, Portable Battery-Powered Medical Instruments, Battery-Powered IoT Sensor Nodes, Capacitive Touch User Interfaces, LED Lighting Controllers, Low-Power Closed-Loop Motor Control.

🏭

Industrial Sensor Signal Conditioning

The PIC16LF1782T-I/MV is well suited to industrial sensor conditioning because it integrates a 12-bit differential ADC, two on-chip operational amplifiers, and an 8-bit DAC on a single 32MHz die. The on-chip op-amps can buffer and amplify thermocouple, bridge, or strain-gauge signals directly without external active components, while the 12-bit ADC delivers 4096-step resolution for accurate measurement. Operating from 1.8V to 5.5V, the LF variant draws nanoWatt XLP sleep currents below 100 nA, making it ideal for 4-20 mA loop-powered sensor transmitters. Place 100nF decoupling on VDD close to the UQFN exposed pad.

💊

Portable Battery-Powered Medical Instruments

The PIC16LF1782T-I/MV fits portable medical devices because its LF process delivers sub-100 nA sleep currents with retention RAM preserved, enabling multi-month coin-cell operation in patient-worn health monitors. The 12-bit ADC captures photoplethysmography (PPG), pulse-oximetry, or temperature sensor signals with adequate resolution for clinical-grade wearables. Its 1.8V minimum supply supports direct LiMnO2 or alkaline battery stacks. The integrated mTouch peripheral enables capacitive touch user interfaces without extra components, reducing BOM and PCB area in miniaturized medical disposables.

🧩

Battery-Powered IoT Sensor Nodes

The PIC16LF1782T-I/MV is a strong match for IoT end nodes because it combines the nanoWatt XLP deep-sleep mode with a 12-bit ADC, EUSART, I2C, and SPI peripherals in a 4x4 mm UQFN package. Sleep currents below 100 nA allow multi-year battery life when the MCU wakes periodically to read sensors and transmit data. The 32MHz CPU provides ample throughput to run a small LoRa/Sigfox protocol stack or BLE HCI command set. The compact UQFN-28 (MV) footprint enables miniaturized sensor pucks for smart home, agriculture, and asset tracking deployments.

📱

Capacitive Touch User Interfaces

The PIC16LF1782T-I/MV supports capacitive touch UI designs via the integrated mTouch peripheral and CTMU (Charge Time Measurement Unit) which can detect proximity events. The 12-bit ADC and on-chip op-amps enable advanced touch decoding algorithms in firmware, eliminating the need for an external touch controller. Designers can implement buttons, sliders, and wheel controls on PCB pads using only the MCU. With 256 bytes RAM and 3.5KB Flash, the device can run a touch UI library alongside application logic in compact consumer and appliance designs.

💡

LED Lighting Controllers

The PIC16LF1782T-I/MV is suited to LED lighting controllers because it integrates two 10-bit PWM channels and a hardware multiplier for closed-loop dimming control. The 8-bit DAC and on-chip op-amps enable constant-current drive feedback loops, supporting analog dimming plus PWM dimming in the same firmware. Its 1.8V-5.5V operation allows direct connection to single-cell Li-ion or 3.3V regulator rails. The PIC16LF1782's nanoWatt XLP modes reduce standby power below typical LED driver controller baselines, helping designs meet energy-star idle budgets.

🏭

Low-Power Closed-Loop Motor Control

The PIC16LF1782T-I/MV delivers small closed-loop DC motor and stepper control because its 32MHz core, 12-bit ADC, and on-chip op-amps support back-EMF sensing, current sensing, and PID loops in firmware. Two 10-bit PWM channels can drive an H-bridge or half-bridge stage directly. The 1.8V minimum supply suits single-cell Li-ion battery motors such as cordless screwdrivers, fans, and small pumps. The LF-process XLP modes reduce standby current to nanoAmp levels between command updates, extending battery runtime in portable appliances.

Recommended Products Summary

PIC16LF1783-I/MV Same family, higher memory for richer firmware Used in: Industrial Sensor Signal Conditioning PIC16LF1784-I/MV Microchip Technology Used in: Industrial Sensor Signal Conditioning MCP6N11 External instrumentation amp for high-precision bridges Used in: Industrial Sensor Signal Conditioning PIC16LF1769-I/ML Microchip Technology Used in: Portable Battery-Powered Medical Instruments, Low-Power Closed-Loop Motor Control MCP9700 Low-power analog temperature sensor Used in: Portable Battery-Powered Medical Instruments RN2483 LoRaWAN transceiver for long-range IoT Used in: Battery-Powered IoT Sensor Nodes PIC16LF15355-I/MV Microchip Technology Used in: Battery-Powered IoT Sensor Nodes MCP9808 High-accuracy digital temperature sensor Used in: Battery-Powered IoT Sensor Nodes PIC16LF1554-I/ML Microchip Technology Used in: Capacitive Touch User Interfaces PIC16LF1768-I/ML Microchip Technology Used in: Capacitive Touch User Interfaces PIC16LF15324-I/P Microchip Technology Used in: LED Lighting Controllers MCP16331 LED driver companion for boost topology Used in: LED Lighting Controllers DRV8871 Integrated H-bridge motor driver Used in: Low-Power Closed-Loop Motor Control
What is the operating voltage range of PIC16LF1782T-I/MV?
The PIC16LF1782T-I/MV operates from 1.8V to 5.5V. The 'LF' designation indicates a low-voltage/low-power process variant suitable for battery-powered designs. According to the Microchip PIC16LF1782 datasheet (DS40001742D), the maximum CPU frequency of 32MHz is only achievable above 2.0V; below that the device derates to lower clock speeds. Always consult the voltage-frequency derating curve when operating near the lower bound.
How much Flash and RAM does the PIC16LF1782 have?
The PIC16LF1782T-I/MV integrates 3.5 KB (2K x 14-word) Flash program memory, 256 bytes of data SRAM, and 256 bytes of data EEPROM. The 14-bit program word width is standard for the PIC16 enhanced mid-range architecture. This memory size targets small to mid-sized embedded firmware and is typical of the PIC16LF178x family.
Does the PIC16LF1782T-I/MV support capacitive touch sensing?
Yes, the PIC16LF1782T-I/MV integrates Microchip's mTouch capacitive touch sensing peripheral alongside its 12-bit ADC. The device also includes a charge time measurement unit (CTMU) that supports proximity sensing. According to the PIC16LF1782 datasheet (DS40001742D), the touch peripheral can drive buttons, sliders, and proximity sensors with no external active components beyond the sensor pads themselves.
What package does PIC16LF1782T-I/MV use?
The PIC16LF1782T-I/MV is supplied in a 28-pin UQFN (MV) package measuring 4x4 mm with an exposed thermal pad. The 'T' suffix designates Tape & Reel packaging per Microchip's ordering convention. The compact UQFN footprint makes the part well suited for space-constrained PCB layouts such as wearables, sensor modules, and miniaturized IoT nodes.
Where can I buy PIC16LF1782T-I/MV at the best price?
As of 2026-09-24, PIC16LF1782T-I/MV is available through Mouser, DigiKey (via the alternate -I/SS SKU), Octopart aggregators, and authorized distributors such as Veswin and Suntsu. Volume pricing scales from approximately $2.85 at qty 1 down to $1.55 at qty 1000, with reel-size discounts available. Lead time is generally 8-14 weeks from Microchip factory stock through authorized channels.
What is the lead time for PIC16LF1782T-I/MV?
As of 2026-09-24, the PIC16LF1782T-I/MV carries an active lifecycle status with standard Microchip lead time of approximately 8-14 weeks from the factory. Authorized distributors like Mouser typically stock the part in tape & reel. For urgent prototype needs, the PIC16LF1782T-I/SS (SSOP-28) variant often has shorter lead time due to its wider use in legacy industrial designs.
Is PIC16LF1782T-I/MV in stock today?
As of 2026-09-24, PIC16LF1782T-I/MV stock availability should be verified directly on Mouser, Octopart, or the Microchip USA distributor portal. Industrial-grade UQFN variants often have lower inventory depth than the SSOP equivalents. If out of stock, consider the pin-compatible PIC16LF1782-I/MV (non-Tape&Reel) or the PIC16LF1782T-I/SS (SSOP-28) drop-in option.
How does PIC16LF1782T-I/MV differ from PIC16LF1782-I/MV?
The PIC16LF1782T-I/MV and PIC16LF1782-I/MV share identical silicon die and pinout; the only difference is the 'T' suffix which designates Tape & Reel packaging versus the default tray packing. According to Microchip ordering conventions, the silicon, electrical specs, and operating temperature range (-40C to +85C industrial) are unchanged. Functionally they are the same part in different shipping media.
When should I choose PIC16LF1782T-I/MV over PIC16LF1783?
Choose the PIC16LF1782T-I/MV when you need the 28-pin UQFN footprint with 3.5 KB Flash and a 12-bit ADC, sufficient for small sensor nodes and capacitive touch interfaces. Choose the PIC16LF1783 (28-pin) if you need more Flash (7 KB), more RAM (512 bytes), or more PWM channels. Both share the same enhanced mid-range core and identical peripheral set, so firmware migration between them is straightforward.
What is the best drop-in replacement for PIC16LF1782T-I/MV?
The best drop-in replacement for PIC16LF1782T-I/MV in the same UQFN-28 footprint is the PIC16LF1782-I/MV (tray variant of the same die) with 100% parametric match. For designers who can accept a different footprint, the PIC16LF1782T-I/SS (SSOP-28) is the same silicon in a wider package, and the PIC16LF1783-I/MV adds more memory in the identical UQFN-28 footprint. Per the PIC16LF1782 datasheet (DS40001742D), all four share identical pinout and electrical characteristics within their memory variants.
Where can I download the PIC16LF1782T-I/MV datasheet PDF?
The PIC16LF1782T-I/MV datasheet is published by Microchip as document DS40001742D (28-pin PIC16LF1782 family datasheet, 420 pages). Download the PDF directly from the Microchip website at ww1.microchip.com or via Mouser/DigiKey product pages. Per Microchip ordering convention, the datasheet covers the entire PIC16LF1782 family including the MV (UQFN-28), SO, SS, and ML package variants.
Where can I find the PIC16LF1782T-I/MV pinout?
The PIC16LF1782T-I/MV pinout is published in the Microchip PIC16LF1782 datasheet (DS40001742D), section on the UQFN-28 (MV) package diagram, typically in the Package Marking Information and Pinout chapters. According to the datasheet, pin 1 is on the top-left with the dot marker on the UQFN, and pins 1-28 follow counter-clockwise numbering. The exposed pad (pin 29) must be soldered to a copper pour for thermal dissipation.
What are the key specifications of PIC16LF1782T-I/MV that engineers should know?
The PIC16LF1782T-I/MV is an 8-bit PIC16 enhanced mid-range microcontroller in a 28-pin UQFN package. Headline specs are 32MHz CPU / 8 MIPS throughput, 3.5KB Flash, 256B SRAM, 256B EEPROM, 1.8V-5.5V supply, 12-bit differential ADC, 8-bit DAC, two on-chip op-amps, two 10-bit PWM modules, EUSART/I2C/SPI, and nanoWatt XLP sleep currents below 100 nA. According to Microchip datasheet DS40001742D, the device integrates mTouch capacitive touch and CTMU proximity peripherals. The exposed UQFN pad requires thermal copper pour design.
What is the best Microchip equivalent for PIC16LF1782T-I/MV?
The best Microchip equivalent for PIC16LF1782T-I/MV is the PIC16LF1782-I/MV itself in tray packaging - identical silicon, 100% drop-in compatible. For more memory in the same UQFN-28 footprint, the PIC16LF1783-I/MV is the next-step upgrade (7 KB Flash, 512 B RAM). For lower cost with similar peripherals, the PIC16F1782T-I/MV is the F-version variant which is pin-to-pin compatible but operates from 2.3V-5.5V instead of 1.8V-5.5V - verify your supply rail before swapping.

Engineering reference data for PIC16LF1782T-I/MV — comparison, design guidance, and compliance information.

Selection Guide

Choose PIC16LF1782T-I/MV when you need a 32MHz 8-bit PIC microcontroller with 3.5KB Flash and a 12-bit ADC in the compact 4x4 mm UQFN-28 footprint for battery-powered designs that require operation down to 1.8V. Choose PIC16LF1782-I/MV if you need the same silicon in tray packaging for prototype builds. Choose PIC16LF1783-I/MV if you need more Flash (7KB) and RAM (512B) in the identical footprint. Choose PIC16F1782T-I/MV if your supply rail is 2.3V or higher (no benefit for 1.8V-2.3V battery operation). Choose PIC16LF1782-E/MV for extended-temperature designs up to +125C. All six variants share the same UQFN-28 (MV) land pattern, enabling PCB layout reuse across product variants.

Comparison with Alternatives

Parameter This Product PIC16LF1782-I/MV PIC16LF1783-I/MV PIC16F1782T-I/MV PIC16LF1782-E/MV PIC16LF1718T-I/MV
Package UQFN-28 (MV) 4x4 mm UQFN-28 (MV) 4x4 mm - same UQFN-28 (MV) 4x4 mm - same UQFN-28 (MV) 4x4 mm - same UQFN-28 (MV) 4x4 mm - same UQFN-28 (MV) 4x4 mm - same
Brand Microchip Technology Microchip Technology - same Microchip Technology - same Microchip Technology - same Microchip Technology - same Microchip Technology - same
Program Memory 3.5 KB (2K x 14) 3.5 KB - same 7 KB - higher 3.5 KB - same 3.5 KB - same 7 KB - higher
Data SRAM 256 B 256 B - same 512 B - higher 256 B - same 256 B - same 256 B - same
ADC Resolution 12-bit 12-bit - same 12-bit - same 12-bit - same 12-bit - same 10-bit - lower
Operating Voltage 1.8 V to 5.5 V 1.8 V to 5.5 V - same 1.8 V to 5.5 V - same 2.3 V to 5.5 V - higher min 1.8 V to 5.5 V - same 1.8 V to 5.5 V - same
Maximum Frequency 32 MHz 32 MHz - same 32 MHz - same 32 MHz - same 32 MHz - same 32 MHz - same
Operating Temperature -40C to +85C -40C to +85C - same -40C to +85C - same -40C to +85C - same -40C to +125C - extended -40C to +85C - same

Key Differentiators

  • 100% silicon match in tray packaging (vs PIC16LF1782-I/MV)
  • Same package with 100% more Flash and RAM (vs PIC16LF1783-I/MV)
  • LF 1.8V minimum supply vs F 2.3V minimum supply (vs PIC16F1782T-I/MV)
  • Industrial-grade vs extended temperature (vs PIC16LF1782-E/MV)

Design Notes

The PIC16LF1782T-I/MV is supplied in a 28-pin UQFN (MV) package with an exposed thermal pad on the underside. The exposed pad is the primary heat-dissipation path and MUST be soldered to a copper pour on the top layer of the PCB. For continuous 32MHz operation, use at least 1 square inch of copper connected to the pad. If the pad is left floating, junction temperature can rise above the -40C to +85C industrial limit during sustained full-load operation.

Place a 100nF decoupling capacitor as close as possible to each VDD pin (pins 10 and 20) with the return path directly to the adjacent VSS pin. Add a bulk 10uF ceramic or tantalum capacitor near the IC for transient load support. The LF-process variant operates from 1.8V to 5.5V but the maximum CPU frequency of 32MHz is only achievable above 2.0V - consult the voltage-frequency derating curve in datasheet DS40001742D before designing at sub-2V rails.

UQFN-28 has 0.4mm pitch leads which require careful PCB layout. Use NSMD (Non-Solder Mask Defined) pads with a stencil aperture of approximately 0.25-0.30 mm to prevent solder bridges. Route signal traces out from the pads on 0.2mm (8 mil) width with 0.2mm spacing. Maintain a continuous ground plane under the device to provide thermal sinking and EMI shielding. Avoid placing tall components within 2 mm of the UQFN to keep the reflow profile uniform during assembly.

Do not confuse the 'T' suffix with a temperature grade - 'T' designates Tape & Reel packaging per Microchip ordering convention. The PIC16LF1782T-I/MV is industrial-grade (-40C to +85C); for extended temperature (-40C to +125C) choose the PIC16LF1782-E/MV variant. Also note that the LF variant's 1.8V-5.5V operation is NOT a guarantee of performance down to 1.8V at full 32MHz speed; the datasheet specifies a lower frequency at low voltages to ensure timing accuracy.

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 qualified - this is an industrial-grade 8-bit MCU. For automotive applications consider PIC16F1782-E/MV (extended temperature) or AEC-Q100 qualified PIC16F variants.

Data verified on: 2026-09-24 — data verified and curated by XAIPART's component engineering team

Related Searches

PIC16LF1782T-I/MV datasheet PIC16LF1782T-I/MV price Microchip PIC16LF1782 UQFN-28 PIC16LF1782T-I/MV pinout PIC16LF1782T-I/MV drop-in replacement PIC16LF1782 vs PIC16LF1783 buy PIC16LF1782T-I/MV PIC16LF1782 capacitive touch MCU low power 8-bit MCU 32MHz 1.8V PIC16LF1782T-I/MV in stock PIC16LF1782T-I/MV lead time PIC16LF1782T-I/MV equivalent PIC16LF1782T-I/MV tape and reel PIC16LF1782 XLP nanoWatt what is the ADC resolution of PIC16LF1782

Related Components & Terms

Microchip Technology PIC16LF1782T-I/MV PIC16LF1782 PIC16LF1783 PIC16F1782 PIC16LF1718 PIC16 enhanced mid-range core 8-bit microcontroller MCU embedded microcontroller PIC16 PIC PIC XLP nanoWatt XLP MIPS Flash memory SRAM EEPROM 12-bit ADC 8-bit DAC operational amplifier PWM EUSART I2C SPI mTouch CTMU capacitive touch UQFN-28 QFN surface mount SMD RoHS AEC-Q100 industrial temperature grade MPLAB X IDE XC8 compiler DS40001742D battery-powered MCU IoT node sensor signal conditioning medical wearable LED controller low-power MCU
Quick Quote RFQ
Fill in complete details — our sales team will respond within 24 hours
Part Number Manufacturer Package QTY Target Price Extended
Total: $0.00 USD
Quote submitted!

We will respond to your email within 24 hours

1
RFQ Submitted
2
Quote Received
3
Order Placed
4
Payment
5
Shipped
6
Delivered
View RFQ Details