PIC16F1713-I/SP - 8-Bit 32MHz MCU 7KB Flash 28-SPDIP | Microchip
MPN: PIC16F1713-I/SP ✓ Active| Qty | Unit Price | Extended |
|---|---|---|
| 1 | $2.48 | $2.48 |
| 10 | $2.3 | $23.00 |
| 100 | $2.05 | $205.00 |
| 500 | $1.82 | $910.00 |
| 1,000 | $1.65 | $1,650.00 |
PIC16F1713-I/SP Overview
An 8-bit microcontroller (MCU) is a single-chip computer that integrates a CPU, RAM, Flash program memory, and peripherals onto one die. Within the broader taxonomy, the PIC16F1713 belongs to the 8-bit MCU -> microcontroller -> embedded processor -> semiconductor hierarchy. The "enhanced mid-range" PIC16 family uses a 14-bit instruction word that balances code density with peripheral richness, fitting between the baseline PIC10/12/16 and the 16-bit PIC24/dsPIC lines.
Key features include 17-channel 10-bit ADC, two on-chip operational amplifiers with 3MHz gain-bandwidth, two high-speed comparators, a 16-bit Numerically Controlled Oscillator (NCO), Core Independent Peripherals (CLC, COG, Zero-Cross Detect), and Peripheral Pin Select for flexible signal routing. The XLP (eXtreme Low Power) technology delivers nanoWatt sleep currents below 50nA typical, with active current around 1.6mA at 32MHz.
The PIC16F1713 employs a Harvard architecture with separate program and data buses, a hardware stack, and 49 instruction set variants. Hardware multiplier support is absent, but bit-oriented operations, indexed addressing, and single-cycle branching simplify firmware. The device operates from 1.8V to 5.5V across the industrial -40C to +85C temperature range.
Typical applications include consumer appliance control, low-cost sensor conditioning with on-chip op amps, LED lighting with COG peripheral, battery-powered IoT edge nodes benefiting from XLP sleep, HVAC thermostat signal chains, and general-purpose replacement of discrete analog + MCU boards. The combination of analog and digital on one die reduces BOM cost and PCB area in space-constrained products.
When designing with this device, ensure MPLAB X IDE and XC8 compiler compatibility, and budget Flash endurance at 10,000 erase/write cycles minimum for field-upgradable firmware. The 28-SPDIP package suits through-hole prototyping, hand-rework, and educational labs; for high-volume surface-mount, use the SOIC-28 variant PIC16F1713-I/SO.
This page synthesizes distributor pricing, drop-in alternatives, and practical design notes not found in the manufacturer datasheet alone. Engineers evaluating PIC16F1713-I/SP versus PIC16F1716, PIC16F1709, or PIC16F1615 families will find the comparison_table and design_notes sections useful for fast BOM decisions.
Drop-in alternatives for PIC16F1713-I/SP — 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 PIC16F1713-I/SP (same form factor and footprint) — differing in ADC, Data SRAM, Package, Timers, Comparators.
Quick Comparison Tool — Select alternative parts for side-by-side comparison:
PIC16F1716-I/SP
✅ Drop-In✓ In Stock
$0.99 / Unit
View Datasheet →PIC16F1713-E/SP
✅ Drop-In📋 Reference alternative (not in catalog)
PIC16F1713-I/SP Maximum Ratings & Electrical Characteristics
| Core Architecture | PIC16 enhanced mid-range (8-bit) |
| Instruction Set Width | 14-bit |
| Maximum CPU Frequency | 32 MHz |
| Instruction Execution Time | 200 ns (at 20 MHz, 1 instruction cycle = 4 clocks) |
| Program Memory (Flash) | 7 KB (4K x 14 words) |
| Data SRAM | 512 bytes |
| Data EEPROM | 0 bytes |
| Package | 28-pin SPDIP (Skinny Plastic DIP, 7.62mm body width) |
| Mounting Type | Through Hole |
| Operating Voltage Range | 1.8 V to 5.5 V |
| Operating Temperature Range | -40C to +85C (Industrial, "I" suffix) |
| ADC | 10-bit, up to 17 channels |
| On-Chip Operational Amplifiers | 2x op amps (3 MHz GBW typical) |
| Comparators | 2x high-speed comparators |
| Numerically Controlled Oscillator (NCO) | 1x 16-bit NCO |
| PWM Outputs | 2x stand-alone PWM (16-bit) |
| SPI | 1x MSSP (SPI / I2C) |
| I2C | 1x MSSP (SPI / I2C) |
| UART | 1x EUSART (RS-232 / RS-485 capable) |
| Timers | 4x 8-bit + 1x 16-bit |
| Core Independent Peripherals | CLC, COG, NCO, Zero-Cross Detect |
| Peripheral Pin Select (PPS) | Yes |
| XLP Low Power Technology | Yes, nanoWatt sleep currents |
| RoHS Status | Compliant |
| MSL Level | 1 (not moisture sensitive for SPDIP) |
PIC16F1713-I/SP Pin Configuration
| Pin 1 | RA3/AN3/VREF+/T1G/CWG1FLT/MCLR — Digital I/O / Analog input / Voltage reference / Timer1 gate / CWG fault / Master Clear reset |
| Pin 2 | RA4/AN4/T1G/CWG2FLT — Digital I/O / Analog input / Timer1 gate / CWG2 fault input |
| Pin 3 | RA5/AN5/OPA1IN+/SS — Digital I/O / Analog input / Op amp 1 non-inverting input / SPI slave select |
| Pin 4 | RA6/AN6/OPA1IN- — Digital I/O / Analog input / Op amp 1 inverting input |
| Pin 5 | RA7/AN7/OPA1OUT — Digital I/O / Analog input / Op amp 1 output |
| Pin 6 | VSS — Ground reference |
| Pin 7 | RA0/AN0/OPA2IN+ — Digital I/O / Analog input / Op amp 2 non-inverting input |
| Pin 8 | RA1/AN1/OPA2IN- — Digital I/O / Analog input / Op amp 2 inverting input |
| Pin 9 | RA2/AN2/OPA2OUT — Digital I/O / Analog input / Op amp 2 output |
| Pin 10 | RC0/SOSCO — Digital I/O / Secondary oscillator output |
| Pin 11 | RC1/SOSCI — Digital I/O / Secondary oscillator input |
| Pin 12 | RC2/AN8/C1IN+/C2IN+ — Digital I/O / Analog input / Comparator 1/2 non-inverting input |
| Pin 13 | RC3/AN9/C1IN-/C2IN- — Digital I/O / Analog input / Comparator 1/2 inverting input |
| Pin 14 | RC4/C1OUT — Digital I/O / Comparator 1 output |
| Pin 15 | RC5/C2OUT — Digital I/O / Comparator 2 output |
| Pin 16 | RC6/AN10/TX/CK — Digital I/O / Analog input / EUSART TX or clock |
| Pin 17 | RC7/AN11/RX/DT — Digital I/O / Analog input / EUSART RX or data |
| Pin 18 | VDD — Positive supply voltage (1.8V to 5.5V) |
| Pin 19 | VSS — Ground reference |
| Pin 20 | RB0/AN12 — Digital I/O / Analog input |
| Pin 21 | RB1/AN10 — Digital I/O / Analog input |
| Pin 22 | RB2/AN8 — Digital I/O / Analog input |
| Pin 23 | RB3/AN9 — Digital I/O / Analog input |
| Pin 24 | RB4/AN11 — Digital I/O / Analog input |
| Pin 25 | RB5/AN13 — Digital I/O / Analog input |
| Pin 26 | RB6/ICSPCLK — Digital I/O / ICSP clock (programming) |
| Pin 27 | RB7/ICSPDAT — Digital I/O / ICSP data (programming) |
| Pin 28 | VDD — Positive supply voltage (1.8V to 5.5V) |
Typical Applications
PIC16F1713-I/SP is suitable for 6 applications: Consumer Appliance Control, Battery-Powered IoT Sensor Node, HVAC Thermostat Signal Chain, LED Lighting with COG Control, Low-Cost Sensor Conditioning Board, General-Purpose Logic Replacement.
Consumer Appliance Control
The PIC16F1713-I/SP fits consumer appliance control with its 32MHz core and on-chip op amps that condition sensor signals directly without external analog ICs. Two integrated 3MHz op amps handle thermocouple amplification or current-shunt monitoring, while the CLC peripheral creates hardware-timed interlocks that respond in nanoseconds - critical for safety circuits in washing machines, dishwashers, and microwave ovens. The 7KB Flash holds full state-machine code with UART diagnostics for service technicians. Compared to PIC16F1709, the op-amp integration saves $0.15 BOM cost per board at 10Ku volume.
Recommended
Battery-Powered IoT Sensor Node
The PIC16F1713-I/SP suits battery-powered IoT sensor nodes with its XLP nanoWatt technology delivering sleep currents below 50nA typical. The 16-bit NCO generates precise timing for LoRa or sub-GHz wake-up sequences without burning CPU cycles, while the eUSART handles UART-connected radios. Active current of 1.6mA at 32MHz lets a CR2032 coin cell last 3-5 years on duty-cycled edge-node firmware. The 1.8V minimum VDD enables direct 2x AA alkaline operation without boost converters.
Recommended
HVAC Thermostat Signal Chain
The PIC16F1713-I/SP powers HVAC thermostat signal chains where its 17-channel 10-bit ADC scans multiple NTC thermistors while the on-chip op amps buffer high-impedance sensors. Zero-Cross Detect synchronizes TRIAC firing of electric heating loads to mains zero crossings, eliminating inrush noise and extending relay life. The CLC peripheral implements hysteresis and debounce in hardware, freeing the CPU for display and communication tasks. Operating across -40C to +85C, the device survives unconditioned attic and basement installations.
Recommended
LED Lighting with COG Control
The PIC16F1713-I/SP drives LED lighting strips via its Complementary Output Generator (COG), which produces dead-band-controlled PWM with sub-microsecond timing accuracy without CPU intervention. The 16-bit PWM resolution and CLC-based dimming curves support smooth logarithmic brightness ramps that match human eye perception. Operating from 1.8V to 5.5V allows direct Li-ion or 5V USB-C power without additional regulators. The 7KB Flash holds DMX-512 or DALI protocol stacks for professional fixtures.
Recommended
Low-Cost Sensor Conditioning Board
The PIC16F1713-I/SP replaces discrete op-amp + MCU two-board designs by integrating two 3MHz op amps directly on-chip. Strain-gauge bridges, photodiodes, and pH probes connect straight to the analog inputs with software-configurable gain - eliminating external instrumentation amplifiers that cost $0.50 or more. The 10-bit ADC with 17 channels multiplexes multiple sensors, and PPS routes SPI/I2C to any pin, simplifying PCB layout when adding wireless modules or EEPROMs.
Recommended
General-Purpose Logic Replacement
The PIC16F1713-I/SP replaces discrete 74HC logic with software-defined glue logic at 32MHz. CLC peripherals implement AND/OR/XOR/D-Flip-Flop gates in hardware without CPU intervention, achieving nanosecond response times. NCO generates clocks from 0.001Hz to 500kHz for legacy timing requirements. Designers migrating from PIC16F886 or PIC16F1938 benefit from twice the ADC channels and integrated op amps on the same 28-pin SPDIP footprint - making this part a one-for-one cost-neutral modernization.
Recommended
Recommended Products Summary
Engineering reference data for PIC16F1713-I/SP — comparison, design guidance, and compliance information.
Selection Guide
Comparison with Alternatives
| Parameter | This Product | PIC16F1716-I/SP | PIC16F1713-E/SP |
|---|---|---|---|
| Brand | Microchip Technology | Microchip Technology | Microchip Technology |
| Package | SPDIP-28 | SPDIP-28 - same | SPDIP-28 - same |
| Program Memory (Flash) | 7 KB | 14 KB (2x larger) | 7 KB (same) |
| Data SRAM | 512 bytes | 1024 bytes (2x larger) | 512 bytes (same) |
| Maximum CPU Frequency | 32 MHz | 32 MHz (same) | 32 MHz (same) |
| On-Chip Op Amps | 2x (3 MHz GBW) | 2x (3 MHz GBW) | 2x (3 MHz GBW) |
| ADC Resolution / Channels | 10-bit / 17 channels | 10-bit / 17 channels | 10-bit / 17 channels |
| Operating Voltage Range | 1.8 V to 5.5 V | 1.8 V to 5.5 V | 1.8 V to 5.5 V |
| Operating Temperature Range | -40C to +85C (Industrial) | -40C to +85C (Industrial) | -40C to +125C (Extended) |
| Approximate Unit Price (1 pc) | $2.48 USD | $2.85 USD (+15%) | $2.95 USD (+19%) |
Key Differentiators
- Integrated 3MHz op amps eliminate external analog ICs (vs PIC16F1709-I/SP)
- Core Independent Peripherals (CLC, COG, NCO) for hardware state machines (vs PIC16F1615-I/P)
- Memory upgrade path exists within same package (vs PIC16F1716-I/SP)
Design Notes
The PIC16F1713-I/SP VDD pins (pins 18 and 28) must both be connected, and both VSS pins (pins 6 and 19) must be tied to ground - the SPDIP package has split supply rails for analog and digital sections. Place a 100nF decoupling capacitor within 5mm of each VDD pin, plus a 10uF bulk capacitor on the main supply rail. Estimated: at 32MHz active mode the core draws approximately 1.6mA at 3.3V; sleep with XLP and WDT disabled draws below 50nA typical.
At typical 3.3V operation the PIC16F1713-I/SP dissipates under 10mW (1.6mA x 3.3V), well within the SPDIP thermal limits of approximately 600mW. Thermal management is not a design concern for this MCU under standard operating conditions. Estimated: junction temperature rise at 25C ambient with no heatsink is below 4C. For high-pin-count derivatives in UQFN packages, thermal resistance rises to ~70C/W and active current derating may apply.
Keep analog signal traces (RA0-RA7 for op amps and ADC) away from digital switching lines such as the PWM outputs on RC2-RC5. The on-chip op amps have 3MHz GBW - sufficient for thermocouple and strain-gauge conditioning but not for RF - so place the analog input filter capacitor within 2mm of the op-amp input pin. Use a ground pour on the top layer under the analog section, stitching with vias every 5mm to the bottom ground plane. The ICSP pins RB6/RB7 need direct routing to a 6-pin header with no series resistors (per Microchip ICSP specification).
Do not leave the MCLR pin (pin 1) floating - tie it to VDD through a 10k resistor with a 100nF cap to ground for proper reset behavior. Floating MCLR causes random resets in electrically noisy environments. Configure unused I/O pins as outputs with low state to minimize current leakage; do not leave them as inputs with no pull-up. When migrating from PIC16F886 to PIC16F1713, verify the ADC channel mapping - the new device uses AN8-AN13 on PORTB rather than the older AN8-AN13 on PORTE.
Compliance Information
RoHS and REACH compliant per Microchip product declaration. Not AEC-Q100 qualified - choose automotive-grade PIC16F1713 with -E suffix and AEC-Q documentation for automotive designs. Lead-free and halogen-free per Microchip 2026 product family compliance statements.