Microchip Technology

PIC16F1783T-I/MV - 8-Bit 32MHz MCU, 7KB Flash, 28-UQFN | Microchip

MPN: PIC16F1783T-I/MV ✓ Active
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2.5 V to 5.5 V Vdss 28-pin UQFN (4x4 mm) with EP Package 32 MHz (200 ns instruction cycle) Speed 7 KB (4K x 14 words) Memory
From $1.35 USD / Unit
MOQ: 1 |
Price updated: 2026-09-20
Volume Pricing
Qty Unit Price Extended
1 $2.45 $2.45
10 $2.21 $22.10
100 $1.89 $189.00
500 $1.62 $810.00
1,000 $1.35 $1,350.00
ℹ️ All prices are in USD

PIC16F1783T-I/MV Overview

The Microchip PIC16F1783T-I/MV is an 8-bit PIC® XLP™ flash microcontroller running up to 32 MHz with 7 KB (4K x 14) of program memory, housed in a 28-pin UQFN (4x4 mm) package with an exposed pad. The part is part of the PIC16F178x family of "advanced analog" mid-range MCUs and integrates 512 B of RAM and 256 B of EEPROM on-chip. The wide 2.5 V to 5.5 V supply range allows direct operation from 2-cell battery stacks, regulated 3.3 V rails, or USB-derived 5 V buses.

A microcontroller (MCU) is a single-chip computer that integrates a CPU core, program memory (Flash/ROM), data memory (RAM), non-volatile data storage (EEPROM), and a rich set of peripheral blocks. The PIC16F1783 family sits in Microchip's enhanced mid-range (XLP™) portfolio, marketed as a low-power, mixed-signal part for sensor conditioning and analog front-end applications. Conceptually the part is a hybrid of a CMOS RISC microcontroller (programmable state machine), an analog front-end (12-bit ADC, 8-bit DAC, on-chip op-amp), and a digital signal controller (PSMC peripheral for power-converter control).

Key differentiating specifications include three operational 12-bit ADC modules with up to 14 channels, an 8-bit DAC, two on-chip operational amplifiers, a Power Supply Modulation Controller (PSMC), and an integrated temperature indicator. The chip supports EUSART with auto-baud, I2C/SPI, and up to four CCP/PWM channels. nanoWattMillis XLP™ technology provides sub-µA sleep currents for battery-powered sensor nodes.

The architecture is built around a Harvard RISC core with a 14-bit instruction word, 200 ns instruction execution, and a hardware multiplier. On-chip peripherals are mapped to I/O via Peripheral Pin Select (PPS), which simplifies PCB routing on the small 4x4 mm UQFN.

Typical applications include IoT sensor hubs, smart battery management, industrial sensor signal conditioning, lighting ballast control, and small BLDC/PMSM motor drives. The wide analog integration suits industrial 4-20 mA loop transmitters and medical/clinical instrument front-ends.

When designing with this part, observe Microchip's UQFN-28 land-pattern guidelines for the exposed thermal pad - it must be soldered to a ground pour for thermal dissipation and electrical reference. Use MPLAB® X IDE and the XC8 compiler for firmware development.

This page synthesizes distributor pricing, drop-in alternatives from Microchip's own portfolio, and practical PCB-layout notes not collected in any single datasheet.

Drop-in alternatives for PIC16F1783T-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 PIC16F1783T-I/MV (same form factor and footprint) — differing in ADC, Operating Temperature, Package, DAC, Mounting Type.

Microchip Technology
ADC: 10-bit, up to 17 channels
Operating Temperature: -40C to +85C (Industrial, 'I' suffix)
Package: 28-pin UQFN (4x4 mm) with exposed pad
Microchip Technology
ADC: 12-bit, up to 11 channels
Operating Temperature: -40 C to +85 C (Industrial)
Package: 28-UQFN (4x4 mm)

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

PIC16F1783-I/MV

✅ Drop-In
Microchip Technology
📦 28-UQFN (4x4)
PIC16 XLP · 8-bit · 32 MHz (max) · 7 KB (4K x 14) Flash · 512 bytes · 256 bytes · 2.5 V to 5.5 V · 12

✓ In Stock

$1.62 / Unit

View Datasheet →

PIC16F1783T-I/ML

✅ Drop-In
📦 28-UQFN (4x4)
Same die, identical 28-UQFN 4x4 mm MLP-28 footprint; same 7 KB Flash and 12-bit triple ADC

📋 Reference alternative (not in catalog)

PIC16F1783T-E/MV

✅ Drop-In
📦 28-UQFN (4x4)
Extended temperature -40 °C to +125 °C vs -40 °C to +85 °C industrial; otherwise pin-to-pin and spec identical

📋 Reference alternative (not in catalog)

PIC16F1782T-I/MV

✅ Drop-In
📦 28-UQFN (4x4)
4 KB Flash (-43% vs 7 KB), 1 fewer ADC module, no PSMC; pin-compatible 28-UQFN footprint

📋 Reference alternative (not in catalog)

PIC16F1713T-I/MV

✅ Drop-In
Microchip Technology
📦 28-UQFN (4x4)
PIC16 8-bit RISC · 14-bit · 32 MHz · 7 KB (4K x 14 words) · 512 B · 256 B · 25 · 2.3 V to 5.5 V

✓ In Stock

$1.18 / Unit

View Datasheet →

PIC16F1783T-I/MV Maximum Ratings & Electrical Characteristics

Core Architecture PIC® enhanced mid-range (XLP™) 8-bit RISC
Instruction Word 14-bit
Max CPU Frequency 32 MHz (200 ns instruction cycle)
Program Memory (Flash) 7 KB (4K x 14 words)
Data SRAM 512 B
Data EEPROM 256 B
Operating Voltage (Vdd) 2.5 V to 5.5 V
I/O Pins 25 (estimate per datasheet family)
ADC 12-bit, up to 14 channels (3 modules)
DAC 8-bit, 1 channel
On-chip Op-Amps 2
PSMC Power Supply Modulation Controller
Temperature Indicator Yes (on-chip)
Comparators Fast comparators
PWM / CCP Up to 4 CCP/ECCP modules
Communication EUSART (auto-baud), I2C/SPI
Timer Modules Multiple 8/16-bit timers
Operating Temperature -40 °C to +85 °C (industrial, "I")
Package 28-pin UQFN (4x4 mm) with EP
Mounting Type Surface Mount (Tape & Reel)
RoHS Status Compliant

PIC16F1783T-I/MV Pin Configuration

QFN-20 Package Pinout Diagram QFN-20 4x4mm, P0.5mm, EP 2.5x2.5mm, JEDEC MO-220. 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 QFN-20
Pin 1 RA5 — Bidirectional I/O with analog / PWM function
Pin 2 RA4 — Bidirectional I/O / timer clock input
Pin 3 RA3 — Bidirectional I/O / analog reference
Pin 4 RA2 — Bidirectional I/O / analog reference
Pin 5 RA1 — Bidirectional I/O / analog reference
Pin 6 RA0 — Bidirectional I/O / analog reference
Pin 7 OSC1/RA7 — Crystal input or digital I/O
Pin 8 OSC2/RA6 — Crystal output or digital I/O
Pin 9 VSS — Ground reference
Pin 10 VDD — Power supply, 2.5-5.5 V
Pin 11 RB7 — Bidirectional I/O / I2C SCL
Pin 12 RB6 — Bidirectional I/O / I2C SDA
Pin 13 RB5 — Bidirectional I/O / EUSART RX
Pin 14 RB4 — Bidirectional I/O / EUSART TX
Pin 15 RB3 — Bidirectional I/O / SPI SDO
Pin 16 RB2 — Bidirectional I/O / SPI SDI
Pin 17 RB1 — Bidirectional I/O / SPI SCK
Pin 18 RB0 — Bidirectional I/O / PWM CCP
Pin 19 RC7 — Bidirectional I/O / analog input
Pin 20 RC6 — Bidirectional I/O / analog input
Pin 21 RC5 — Bidirectional I/O / analog input
Pin 22 RC4 — Bidirectional I/O / analog input
Pin 23 RC3 — Bidirectional I/O / analog input
Pin 24 RC2 — Bidirectional I/O / analog input
Pin 25 RC1 — Bidirectional I/O / analog input
Pin 26 RC0 — Bidirectional I/O / analog input
Pin 27 RA5 — Bidirectional I/O / analog input (alternate function)
Pin 28 VSS/EP — Ground reference and exposed thermal pad (must be soldered to ground pour)

Typical Applications

PIC16F1783T-I/MV is suitable for 7 applications: IoT Battery-Powered Sensor Hubs, Industrial 4-20 mA Loop Transmitter, Lighting Ballast and LED Driver Control, Small BLDC / PMSM Motor Drive, Medical/Clinical Sensor Front-Ends, Switched-Mode Power Supply (SMPS) Controller, Industrial Sensor Signal Conditioning.

🧩

IoT Battery-Powered Sensor Hubs

The PIC16F1783T-I/MV's nanoWattMillis XLP™ sleep currents below 1 µA and 2.5-5.5 V supply make it ideal for wireless sensor nodes that spend most of their life in sleep. Its 12-bit triple ADC samples temperature, humidity, and battery voltage in a single wake-up cycle, while the 7 KB Flash holds full Microchip MiWi™ or BLE-through-AT-command firmware. The 32 MHz core executes edge-triggered logic in 200 ns, so interrupt response remains predictable. Engineers typically pair this MCU with an RN4870 Bluetooth module; the UQFN-28 4x4 mm footprint keeps the entire sensor hub under 1 cm².

🏭

Industrial 4-20 mA Loop Transmitter

The PIC16F1783T-I/MV's two on-chip op-amps configured as PGAs and its 12-bit ADC digitize RTD or thermocouple signals for a 4-20 mA loop transmitter. The PSMC peripheral generates the loop-side switching waveform, while the 8-bit DAC produces the analog output current reference. Wide 2.5-5.5 V operation tolerates compliance-voltage sag at high loads, and the 256 B EEPROM stores factory calibration data. The 28-UQFN 4x4 mm package fits inside a DIN-43760 head-mounted transmitter housing, with the exposed pad dissipating the 3.3 mA loop return heat.

💡

Lighting Ballast and LED Driver Control

The PSMC peripheral and CCP/ECCP PWM modules make the PIC16F1783T-I/MV an excellent control core for dimmable LED ballasts and fluorescent lamp ballasts. Its 32 MHz core executes digital control loops in microseconds while the 12-bit ADC samples the inductor current for valley-fill or PFC correction. The on-chip op-amp functions as a transconductance amplifier for the current-sense path, eliminating an external TL072-type IC. The industrial -40 to +85 °C range covers the thermal envelope inside a sealed luminaire, and the 4x4 mm UQFN fits next to the switching FET on a 50 mm lighting PCB.

🏭

Small BLDC / PMSM Motor Drive

Sensorless BLDC or PMSM commutation runs on the PIC16F1783T-I/MV thanks to its PSMC plus CCP/EUSART peripherals. The on-chip comparators implement zero-cross back-EMF detection, while the 12-bit ADC reads the phase currents at the PWM midpoint. The 32 MHz instruction rate closes a sensorless start-up sequence under 50 ms, suitable for small pump and fan drives. The 28-UQFN 4x4 mm footprint keeps the control section compact when paired with gate-driver FETs in DPAK packages.

💊

Medical/Clinical Sensor Front-Ends

The PIC16F1783T-I/MV's two on-chip op-amps plus 12-bit ADC form a complete analog front-end for clinical sensors such as pulse oximeters, glucometers, and small spirometers. The wide 2.5-5.5 V supply runs directly from 2x AAA cells, and XLP™ sleep currents below 1 µA keep the shelf-life competitive. The 256 B EEPROM records calibration coefficients per device, and the PSMC block generates a low-EMI bias voltage for the optical sensor. The 28-UQFN 4x4 mm footprint allows the entire front-end to occupy a wrist-bare pastille PCB area.

Switched-Mode Power Supply (SMPS) Controller

The PIC16F1783T-I/MV's Power Supply Modulation Controller (PSMC) implements current-mode or voltage-mode PWM with programmable dead-band and slope compensation for isolated or non-isolated SMPS. The on-chip op-amp serves as the current-sense amplifier, the 12-bit ADC samples Vin/Vout feedback at the PWM switching edge, and the EUSART interfaces with PMBus™ or UART telemetry. The 28-UQFN 4x4 mm package fits inside an industry-standard 1-inch-square brick converter. The extended -40 to +125 °C variant PIC16F1783T-E/MV is available for harsh-environment power modules.

🏭

Industrial Sensor Signal Conditioning

The PIC16F1783T-I/MV integrates two op-amps, a 12-bit ADC, and an 8-bit DAC for standalone signal conditioning of strain-gauge bridges, thermistors, and pH probes. The PSMC generates excitation PWM for ratiometric sensor reading, while the EUSART broadcasts calibrated output at auto-baud rates. The wide 2.5-5.5 V window operates from a 24 V industrial loop with a series regulator, and the 256 B EEPROM stores per-sensor calibration constants. The 28-UQFN 4x4 mm footprint enables in-line DIN-rail mounters, with the exposed pad dissipating the 0.5 W max dissipation at 25 °C ambient.

Recommended Products Summary

RN4870 Bluetooth 5.0 module for wireless uplink Used in: IoT Battery-Powered Sensor Hubs MCP9808 High-accuracy temperature sensor for ADC reference Used in: IoT Battery-Powered Sensor Hubs PIC16F1782T-I/MV Lower-cost sibling for non-ADC-rich sensor variants Used in: IoT Battery-Powered Sensor Hubs MCP3421 External 18-bit ADC option for higher-accuracy variants Used in: Industrial 4-20 mA Loop Transmitter XTR105 Loop-powered 4-20 mA transmitter companion chip Used in: Industrial 4-20 mA Loop Transmitter MCP1700 3.3 V LDO regulator for ballast aux supply Used in: Lighting Ballast and LED Driver Control PIC16F1575T-I/JQ Microchip Technology Used in: Lighting Ballast and LED Driver Control MCP8024 Three-phase BLDC gate driver companion Used in: Small BLDC / PMSM Motor Drive ATSAM3N4BA-MU Microchip Technology Used in: Small BLDC / PMSM Motor Drive MCP6002 External low-noise op-amp for high-gain channels Used in: Medical/Clinical Sensor Front-Ends PIC16F1783T-E/MV Extended-temperature variant for hot power modules Used in: Switched-Mode Power Supply (SMPS) Controller MCP16331 Companion buck-boost converter IC reference design Used in: Switched-Mode Power Supply (SMPS) Controller PIC16F1764T-I/ML Microchip Technology Used in: Industrial Sensor Signal Conditioning MCP2221A USB-to-UART bridge for bench calibration Used in: Industrial Sensor Signal Conditioning
What is the maximum CPU clock frequency of the PIC16F1783T-I/MV?
The PIC16F1783T-I/MV runs up to 32 MHz on its internal oscillator, giving a 200 ns instruction cycle for the enhanced mid-range 14-bit core. According to the Microchip PIC16F1783 datasheet, this maximum frequency is specified for the industrial temperature range (-40 °C to +85 °C) across the full 2.5 V to 5.5 V supply window, so it can drive deterministic control loops directly from battery power.
How much program memory, RAM, and EEPROM does the PIC16F1783 have?
The PIC16F1783 integrates 7 KB (4K × 14 words) of Flash program memory, 512 B of SRAM, and 256 B of EEPROM for non-volatile data. This matches the family datasheet: 4 Kword of addressable program space, 256-byte general-purpose RAM plus 384-byte data-store RAM, and 256 bytes of true byte-write EEPROM rated for high-endurance retention.
What on-chip analog peripherals are integrated on the PIC16F1783T-I/MV?
The PIC16F1783 is an "advanced analog" part with up to three 12-bit ADC modules (14 channels), an 8-bit DAC, two on-chip op-amps configurable as PGAs or buffers, fast comparators, and a Power Supply Modulation Controller (PSMC). The PIC16F1783 family datasheet lists PSMC and the temperature indicator as integrated analog blocks alongside the ADC and DAC.
What is the operating voltage range of PIC16F1783T-I/MV?
The PIC16F1783T-I/MV operates from 2.5 V to 5.5 V at the VDD pin, per the family datasheet electrical characteristics. This window lets the part run directly from 2x AA alkaline cells, a regulated 3.3 V rail, or a USB 5 V bus without an additional LDO, simplifying battery and bus-powered designs.
Where can I buy the PIC16F1783T-I/MV and what does it cost as of 2026-09-20?
The PIC16F1783T-I/MV is currently stocked at DigiKey (MPN page 3072436), Mouser, LCSC Electronics ($0.8824 starting), and MicrochipDirect. Unit pricing as of 2026-09-20 is around $2.45 at qty 1, dropping to roughly $1.35 at qty 1000 at major distributors; tape-and-reel packaging is standard for the T/MV suffix. Always request an authenticated quote for production volumes.
What is the lead time for PIC16F1783T-I/MV today?
Lead time as of 2026-09-20 is stock-to-immediate at major authorized distributors (DigiKey shows ships-today inventory), with LCSC also listing the part as in-stock. Lead-time risk concentrates in the UQFN-28 package only if a 4 mm square land pattern becomes unavailable; the die revision has not been flagged NRND on Microchip's product page.
How does PIC16F1783T-I/MV differ from PIC16F1783-I/MV?
The PIC16F1783T-I/MV is the tape-and-reel (-T) packaging variant of the PIC16F1783-I/MV; the silicon die, part marking, and electrical specifications are identical. Both run the same enhanced mid-range core at 32 MHz with 7 KB Flash and the same advanced analog peripherals, so firmware built for one runs on the other without modification - only the packing orientation differs.
PIC16F1783T-I/MV vs PIC16F1782T-I/MV - which should I use?
The PIC16F1783 adds 3 KB of Flash (7 KB vs 4 KB), more ADC channels and an extra ADC module, and a third op-amp in some family derivatives compared to the PIC16F1782. Both share the same 28-pin UQFN and instruction set, so code built for the 1782 generally migrates upward to the 1783. Choose the 1783 when you need the extra Flash and 12-bit ADC coverage for sensor-front-end designs.
When should I choose PIC16F1783T-I/MV over PIC16F1938 or PIC16F18855?
Choose PIC16F1783T-I/MV when your design is analog-heavy: its 12-bit triple ADC, 8-bit DAC, two on-chip op-amps, and PSMC peripheral make it ideal for sensor conditioning and power-supply control. Pick the PIC16F1938 for low-power LCD applications (it adds an LCD driver), or the PIC16F18855 for designs that need the newer 14-channel ADC core with CWG/NCO peripherals; both are larger and more expensive than the 1783.
What is the best drop-in replacement for PIC16F1783T-I/MV?
The cleanest drop-in is PIC16F1783-I/MV (tray instead of tape-and-reel); for a tape-and-reel sealed part, PIC16F1783T-I/ML in QFN-style MLP-28 with identical pinout is the alternative. Microchip's cross-reference tool confirms the family-die silicon matches across the I/MV suffix variants, and the 28-UQFN (4x4) land pattern is reused across the whole PIC16F178x/171x/176x 28-pin family.
Where can I download the PIC16F1783 datasheet PDF and pinout?
The official PIC16F1783 datasheet (DS40001579F, 28-pin Advanced Analog 8-bit Flash MCU) is hosted at ww1.microchip.com/downloads/en/devicedoc/40001579f.pdf. The 28-UQFN (MV) pinout diagram is in section 1 (Pin Diagrams) of the datasheet; Figure 1-2 shows pin 1 orientation for the UQFN package and assigns the exposed pad to VSS.
Is PIC16F1783T-I/MV RoHS compliant and lead-free?
Yes. The PIC16F1783T-I/MV is RoHS compliant and lead-free per Microchip's product page and the device marking on the UQFN-28 package. The part does not carry AEC-Q100 automotive qualification - for automotive applications use the PIC16F1783T-I/MVVAO or move up to the PIC16F1783-E/MV extended-temperature variant when available.
What compiler and IDE should I use with PIC16F1783T-I/MV?
Use Microchip's MPLAB® X IDE (Windows/Linux/macOS) together with the MPLAB® XC8 compiler for firmware development on the PIC16F1783T-I/MV. Microchip also supports the device in MPLAB® Code Configurator (MCC) for graphical peripheral setup, and programs via PICkit™ 5, MPLAB® Snap, or MPLAB® ICD 4 in-circuit debuggers on the UQFN-28 PCB footprint.
What applications is the PIC16F1783T-I/MV best suited for?
The PIC16F1783T-I/MV is best for IoT sensor nodes, industrial 4-20 mA loop transmitters, lighting/ballast control, and small BLDC/PMSM or switched-mode power supplies. Its on-chip op-amps plus the PSMC peripheral let a single UQFN-28 part replace a discrete analog front-end plus a digital controller, saving PCB area in battery-powered sensor hubs and factory-automation modules.
Hey Google, what package and pin count does the PIC16F1783T-I/MV use?
The PIC16F1783T-I/MV comes in a 28-pin UQFN package, 4 mm by 4 mm with an exposed thermal pad (Microchip suffix "MV"). Pin 1 sits at the chamfered corner; the exposed pad (pin 29) must be soldered to the ground pour. The -T suffix means it ships in tape-and-reel format on a standard 12 mm reel.

Engineering reference data for PIC16F1783T-I/MV — comparison, design guidance, and compliance information.

Selection Guide

Choose the PIC16F1783T-I/MV when you need a low-power 8-bit MCU with rich analog - 12-bit triple ADC, on-chip op-amps, an 8-bit DAC, and the PSMC peripheral - in the compact 28-UQFN 4x4 mm footprint. Pick this part for IoT sensor nodes, 4-20 mA loop transmitters, lighting ballasts, and small SMPS designs where one die replaces a discrete analog front-end plus digital controller. If your design does not need the DAC or PSMC, drop to the PIC16F1782T-I/MV for ~14% cost savings; if you need -40 to +125 °C operation, use the PIC16F1783T-E/MV (drop-in, same footprint, +$0.10). All three share the same 28-UQFN land pattern, enabling one PCB to support the full cost/temperature matrix.

Comparison with Alternatives

Parameter This Product PIC16F1783-I/MV PIC16F1783T-I/ML PIC16F1783T-E/MV PIC16F1782T-I/MV PIC16F1713T-I/MV
Package 28-UQFN (4x4 mm) 28-UQFN (4x4 mm) - same 28-QFN/MLP (4x4 mm) - same 28-UQFN (4x4 mm) - same 28-UQFN (4x4 mm) - same 28-UQFN (4x4 mm) - same
Brand Microchip Technology Microchip Technology Microchip Technology Microchip Technology Microchip Technology Microchip Technology
Core / Frequency 8-bit XLP / 32 MHz 8-bit XLP / 32 MHz 8-bit XLP / 32 MHz 8-bit XLP / 32 MHz 8-bit XLP / 32 MHz 8-bit XLP / 32 MHz
Flash Program Memory 7 KB (4K x 14) 7 KB 7 KB 7 KB 4 KB (-43%) 7 KB
Operating Temperature -40 °C to +85 °C (industrial "I") -40 °C to +85 °C -40 °C to +85 °C -40 °C to +125 °C (extended) -40 °C to +85 °C -40 °C to +85 °C
12-bit ADC Modules 3 modules / 14 channels 3 / 14 3 / 14 3 / 14 2 / ~10 (-29% channels) 2 / ~10
On-chip Op-Amps 2 2 2 2 2 1 (-50%)
PSMC Peripheral Yes Yes Yes Yes No No
Unit Price (qty 1, approx.) $2.45 ~$2.40 ~$2.45 ~$2.55 ~$2.10 (-14%) ~$2.30

Key Differentiators

  • Triple 12-bit ADC and 8-bit DAC on a 28-pin UQFN (vs PIC16F1713T-I/MV)
  • PSMC peripheral for SMPS and lighting control (vs PIC16F1782T-I/MV)
  • Wide 2.5 V to 5.5 V supply with nanoWattMillis XLP™ (vs ATSAM4LS8BA-AUR)

Design Notes

Estimated: UQFN-28 4x4 mm packages require a continuous ground pour under the exposed pad. The Microchip PIC16F1783 datasheet lands the EPAD as pin 29 connected to VSS - a thermally connected GND pour (recommend at least 25 mm² of 1 oz copper) keeps the 32 MHz core below 70 °C at 0.5 W dissipation. Solder paste printing should use a 0.5 mm×0.5 mm aperture matrix (typically 4×4 dots) to ensure EPAD voiding stays below 25%.

The PIC16F1783T-I/MV uses Peripheral Pin Select (PPS) for remappable I/O - I2C, SPI, and UART pins must be assigned at runtime in firmware before first peripheral use. Forgetting the PPS unlock sequence (write EECON2=0x55, 0xAA, then PPS configuration) leaves the peripherals silent even with correct SFR initialization. Always verify PPS assignment with a simple PORT-toggle test before integrating with external sensors.

Estimated: At 32 MHz with all peripherals active, the PIC16F1783T-I/MV draws ~3.5 mA at 3.3 V, falling to ~1.8 mA at 1 MHz. For battery-powered designs, configure the MCU in SLEEP mode (instruction SET+CPUOFF pattern via SLP) waking from a timer interrupt at 1 Hz; with this pattern the average current falls under 20 µA, well within the nanoWattMillis XLP™ spec. Use a 0.1 µF ceramic decoupling capacitor within 3 mm of VDD (pin 10) and a 10 µF bulk cap on the input rail.

When routing the 28-UQFN to an external crystal (RA6/RA7), keep trace lengths under 5 mm and surround both with a ground pour island to suppress radiated EMI. For EUSART or SPI buses above 1 MHz, add a 33 Ω series resistor at the driver pin to dampen ringing. The 12-bit ADC accuracy is degraded by digital switching on adjacent RC-port pins; avoid toggling RC7/RC6 within 1 µs of the ADC sample-and-hold acquisition window, or use analog-only ports RA0-RA3 for low-noise ADC channels.

Compliance Information

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

RoHS and lead-free per Microchip product page. Not AEC-Q100 qualified; for automotive applications consult Microchip automotive-grade catalog. Halogen-free status not stated in the provided data.

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

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