PIC16F1713T-I/MV - 8-bit MCU, 32MHz, 7KB Flash, 28-UQFN | Microchip
MPN: PIC16F1713T-I/MV β Active| Qty | Unit Price | Extended |
|---|---|---|
| 1 | $2.45 | $2.45 |
| 10 | $2.18 | $21.80 |
| 100 | $1.92 | $192.00 |
| 500 | $1.65 | $825.00 |
| 1,000 | $1.42 | $1,420.00 |
| 3,300 | $1.18 | $3,894.00 |
PIC16F1713T-I/MV Overview
A microcontroller (MCU) is an integrated circuit that combines a CPU core, program memory, working RAM, and programmable peripherals into a single device, forming the lowest tier of the embedded computing hierarchy alongside microprocessors, SoCs and DSPs. The PIC16F1713 belongs to the broader 8-bit microcontrollers category (MCU -> 8-bit MCU -> PIC16 -> PIC16F171X), which typically trades raw performance for low power consumption, deterministic behaviour, and small code footprint - characteristics that make 8-bit parts popular in cost-sensitive, battery-powered, and real-time-control designs.
Key specifications of the PIC16F1713T-I/MV include 25 general-purpose I/O lines, an extended supply-voltage range from 2.3 V to 5.5 V, XLP (eXtreme Low Power) technology, a 10-bit ADC with up to 17 channels, and a 32 MHz internal oscillator. The 'T' suffix designates Tape & Reel packaging for high-volume automated assembly, while 'I' indicates the industrial operating temperature range of -40C to +85C, and 'MV' denotes the UQFN-28 package.
Architecturally, the device uses a 14-bit instruction word PIC16 core with a modified Harvard architecture and an 8-bit data path, complemented by a hardware multiplier and direct memory access support. The combination of on-chip analog (op-amps, DAC, ADC) with digital Core Independent Peripherals allows designers to implement sensor conditioning, signal generation, and control loops without external components.
Typical applications include LED lighting control, sensor signal conditioning, low-power IoT endpoints, consumer appliance control, battery chargers, fan and pump control, and small motor drivers. The combination of integrated op-amps, DAC and high-speed comparator enables closed-loop analog control tasks that traditionally required dedicated analog ICs.
When designing with this part, engineers should evaluate the op-amp output drive capability versus the application load, leave headroom on the ADC input range to avoid saturation, and use Peripheral Pin Select (PPS) to remap EUSART and SPI functions and simplify PCB routing. The exposed thermal pad of the UQFN-28 package must be soldered to the PCB ground plane to meet the datasheet's thermal and electrical specifications.
This page synthesises distributor pricing, pin-compatible drop-in alternatives sourced from verified web data, and practical design notes that complement (rather than duplicate) the manufacturer datasheet.
Drop-in alternatives for PIC16F1713T-I/MV β same package, pin-to-pin compatible. Different-package parts requiring PCB rework are excluded.
Variants in this series
Same-series models that are drop-in compatible with PIC16F1713T-I/MV (same form factor and footprint) β differing in ADC, Package, Comparators, Core Independent Peripherals, EEPROM Size.
Quick Comparison Tool β Select alternative parts for side-by-side comparison:
PIC16F1713-I/MV
β Drop-Inπ Reference alternative (not in catalog)
PIC16F1716T-I/MV
β Drop-Inπ Reference alternative (not in catalog)
PIC16F1713-E/MV
β Drop-Inβ In Stock
$1.38 / Unit
View Datasheet βPIC16F1713T-I/MV Maximum Ratings & Electrical Characteristics
| Core | PIC16 8-bit RISC |
| Instruction Word | 14-bit |
| Maximum CPU Frequency | 32 MHz |
| Program Flash Memory | 7 KB (4K x 14 words) |
| Data RAM | 512 B |
| Data EEPROM | 256 B |
| Number of I/O Pins | 25 |
| Supply Voltage Range | 2.3 V to 5.5 V |
| ADC | 10-bit, up to 17 channels |
| DAC | 5/8-bit |
| Operational Amplifiers | On-chip, multiple |
| Comparators | High-speed, on-chip |
| Communication Peripherals | 1x EUSART, 1x I2C, 1x SPI |
| PWM / CCP | PWM and CCP modules |
| Core Independent Peripherals | CLC, NCO, COG, Zero-Cross Detect, PPS |
| Package | 28-pin UQFN (4x4 mm) with exposed pad |
| Mounting Type | Surface Mount |
| Operating Temperature | -40C to +85C (Industrial, 'I' suffix) |
| Packaging Form | Tape & Reel ('T' suffix) |
| RoHS Status | Compliant |
PIC16F1713T-I/MV Pin Configuration
| Pin 1 | RA5 β General-purpose I/O / ADC / op-amp output |
| Pin 2 | RA4 β General-purpose I/O / ADC / op-amp inverting input |
| Pin 3 | RA3 β General-purpose I/O / ADC / op-amp non-inverting input |
| Pin 4 | RA2 β General-purpose I/O / ADC / DAC output |
| Pin 5 | RA1 β General-purpose I/O / ADC / comparator input |
| Pin 6 | RA0 β General-purpose I/O / ADC / ICSPDAT |
| Pin 7 | VSS β Ground reference |
| Pin 8 | RA7 β General-purpose I/O / oscillator |
| Pin 9 | RA6 β General-purpose I/O / oscillator |
| Pin 10 | RC0 β General-purpose I/O / PWM |
| Pin 11 | RC1 β General-purpose I/O / PWM / CCP |
| Pin 12 | RC2 β General-purpose I/O / PWM / CCP |
| Pin 13 | RC3 β General-purpose I/O / PWM / SPI SCK |
| Pin 14 | RC4 β General-purpose I/O / SPI SDI |
| Pin 15 | RC5 β General-purpose I/O / SPI SDO |
| Pin 16 | RC6 β General-purpose I/O / UART TX |
| Pin 17 | RC7 β General-purpose I/O / UART RX |
| Pin 18 | VSS β Ground (additional VSS pad) |
| Pin 19 | VDD β Positive supply voltage |
| Pin 20 | RB0 β General-purpose I/O / interrupt-on-change |
| Pin 21 | RB1 β General-purpose I/O / interrupt-on-change |
| Pin 22 | RB2 β General-purpose I/O / interrupt-on-change |
| Pin 23 | RB3 β General-purpose I/O / interrupt-on-change |
| Pin 24 | RB4 β General-purpose I/O / interrupt-on-change |
| Pin 25 | RB5 β General-purpose I/O / interrupt-on-change |
| Pin 26 | RB6 β General-purpose I/O / ICSPCLK |
| Pin 27 | RB7 β General-purpose I/O / ICSPDAT / programming |
| Pin 28 | VDD β Positive supply voltage (second pad) |
Typical Applications
PIC16F1713T-I/MV is suitable for 6 applications: LED Lighting Control, Sensor Signal Conditioning Hubs, Battery-Operated IoT Endpoints, Small Motor and Fan Control, Consumer Appliance Control, Portable Medical and Health Devices.
LED Lighting Control
The PIC16F1713T-I/MV's on-chip op-amps, 10-bit ADC, 5/8-bit DAC, PWM, COG and CLC peripherals make it well suited to drive multi-channel LED lighting. The op-amps condition current-sense signals from high-side shunts, while the ADC samples per-string brightness and the DAC sets reference thresholds; the COG (Complementary Output Generator) and PWM module produce dead-band-corrected MOSFET drive signals at frequencies up to several hundred kHz. With Peripheral Pin Select the SPI interface to a wireless node can be re-routed to any pin, simplifying PCB layout in strip-light or panel designs. The 2.3-5.5 V supply accepts direct battery or USB input, and XLP sleep modes keep standby power under 1 uA for battery-backed emergency fixtures.
Recommended
Sensor Signal Conditioning Hubs
The PIC16F1713T-I/MV's combination of multiple on-chip op-amps, a 10-bit ADC with up to 17 input channels, an integrated high-speed comparator, and a 5/8-bit DAC enables compact sensor-hub designs that traditionally required a dedicated analog front-end. The op-amps implement bridge excitation and instrumentation-amp front-ends for strain gauges, RTDs or thermopiles; the ADC samples conditioned outputs while the DAC sets excitation references. Core Independent Peripherals (CLC, NCO, ZCD) handle zero-crossing detection and threshold gating without waking the CPU. XLP sleep modes with ADC-scan triggering let the device sip current in remote sensor nodes powered by energy harvesting or coin-cell batteries.
Recommended
Battery-Operated IoT Endpoints
The PIC16F1713T-I/MV fits battery-operated IoT endpoint designs thanks to its eXtreme Low Power (XLP) technology, 2.3-5.5 V supply range, and Core Independent Peripherals that keep the CPU asleep while peripherals handle events. In typical sensor-beacon use the part wakes via Zero-Cross Detect or CLC, samples a sensor over ADC, and only then runs CPU code to format and transmit over SPI/UART, dropping back to <1 uA sleep. The 28-UQFN (4x4) footprint fits space-constrained wearable or smart-sensor enclosures, and the exposed thermal pad aids dissipation under high CPU bursts. Tape & Reel (T-suffix) packaging supports volume automated assembly.
Recommended
Small Motor and Fan Control
The PIC16F1713T-I/MV's PWM module, Complementary Output Generator (COG), high-speed comparator, op-amps and zero-cross-detect peripheral combine to drive small BLDC motors, fans, and pumps in a single chip. The COG generates complementary 6-step or sinusoidal drive with programmable dead-time, the comparator senses back-EMF zero-cross events for sensorless commutation, and the op-amps condition current-sense signals. With 32 MHz CPU clock, control loops complete in microseconds, while XLP sleep between commutation events keeps idle current minimal - well suited to USB-powered or battery-powered appliance applications.
Recommended
Consumer Appliance Control
The PIC16F1713T-I/MV is well matched to consumer appliance control boards that need to read analog sensors, drive relays, talk to user-interface keypads and run low-power standby. The 25 I/O pins and Peripheral Pin Select (PPS) allow EUSART, I2C and SPI buses to be reassigned to ease PCB routing on densely-populated boards, while the CLC and NCO peripherals implement timing and waveform synthesis without consuming CPU cycles. The industrial -40 to +85 C temperature range covers appliance ambient requirements, and the UQFN-28 footprint suits the slim geometries of wall-mounted or countertop appliances.
Recommended
Portable Medical and Health Devices
The PIC16F1713T-I/MV supports portable medical and health-device designs thanks to its low-power XLP operation, integrated 10-bit ADC and op-amp chain, and small UQFN-28 package. The op-amps amplify signals from photoplethysmography (PPG) sensors or thermistors while the ADC samples at low duty cycle to preserve battery life; the DAC sets bias for active sensors. With the Core Independent Peripherals handling timing and zero-cross events, the CPU spends most of its time in <1 uA sleep, extending coin-cell or rechargeable Li-ion runtimes. The industrial temperature range accommodates body-worn or hand-held devices.
Recommended
Recommended Products Summary
Engineering reference data for PIC16F1713T-I/MV β comparison, design guidance, and compliance information.
Selection Guide
Comparison with Alternatives
| Parameter | This Product | PIC16F1713-I/MV | PIC16F1716T-I/MV | PIC16F1713-E/MV | PIC16F1713-I/SP | PIC16F1713-E/SS |
|---|---|---|---|---|---|---|
| Package | 28-UQFN (4x4) | 28-UQFN (4x4) - same | 28-UQFN (4x4) - same | 28-UQFN (4x4) - same | SPDIP-28 - different footprint | SSOP-28 - different footprint |
| Brand | Microchip Technology | Microchip Technology | Microchip Technology | Microchip Technology | Microchip Technology | Microchip Technology |
| Program Flash | 7 KB | 7 KB | 14 KB | 7 KB | 7 KB | 7 KB |
| Data RAM | 512 B | 512 B | 1 KB | 512 B | 512 B | 512 B |
| Operating Voltage | 2.3 V to 5.5 V | 2.3 V to 5.5 V | 2.3 V to 5.5 V | 2.3 V to 5.5 V | 2.3 V to 5.5 V | 2.3 V to 5.5 V |
| Operating Temperature | -40C to +85C (Industrial) | -40C to +85C | -40C to +85C | -40C to +125C (Extended) | -40C to +85C | -40C to +125C (Extended) |
| On-chip Op-amps | Yes (multiple) | Yes | Yes | Yes | Yes | Yes |
| DAC | 5/8-bit | 5/8-bit | 5/8-bit | 5/8-bit | 5/8-bit | 5/8-bit |
| Packaging Form | Tape & Reel | Tube | Tape & Reel | Tube | Tube | Tube |
| Approx. Unit Price (qty-1) | $2.45 | $2.45 | $2.95 | $2.85 | $2.45 | $2.85 |
Key Differentiators
- Same 28-UQFN package with double Flash headroom for firmware growth (vs PIC16F1716T-I/MV)
- Extended temperature range variant available in same package (vs PIC16F1713-E/MV)
- Tube-packaged sibling for low-volume prototyping (vs PIC16F1713-I/MV)
Design Notes
The 28-UQFN (4x4 mm) package features an exposed thermal pad that must be soldered to the PCB ground plane to meet the electrical and thermal specifications in the datasheet. Use an array of micro vias to tie the EP to the inner ground plane; missing or insufficient EP soldering can cause erratic ADC readings, increased junction temperature under CPU load, and unexpected reset behaviour. Place the 0.1 uF VDD decoupling capacitor within 3 mm of each VDD pin and a bulk 1-10 uF near the package to suppress switching transients.
Do not assume the on-chip op-amps can drive heavy loads - they are intended for sensor-signal conditioning and bias networks, not for direct speaker or motor drive. According to the Microchip datasheet, the op-amp output drive capability is limited; verify output current per rail against your application load, and add an external buffer transistor or driver if more current is required. Also, leave at least 0.5 V of headroom on the ADC input range to avoid saturation in closed-loop control loops.
Use Peripheral Pin Select (PPS) to remap EUSART, SPI and I2C functions to convenient physical pins early in the PCB layout phase to simplify routing. The PPS registers are remappable after reset but lock after the PPSLOCK bit is set; set them at startup before configuring other peripherals. Keep analog-sensitive traces (ADC inputs, op-amp inverting nodes) short and away from switching signals such as PWM outputs and the COG complementary drive lines to minimise injected noise.
Compliance Information
RoHS compliant and lead-free per Microchip product page; not AEC-Q100 qualified - choose automotive-grade PIC variants (e.g. PIC16F1713-E/MV) for automotive thermal profiles.