PIC16F19195T-I/MR - 8-bit XLP MCU, 14KB Flash, 64-QFN | Microchip
MPN: PIC16F19195T-I/MR ✓ Active| Qty | Unit Price | Extended |
|---|---|---|
| 1 | $2.78 | $2.78 |
| 10 | $2.5 | $25.00 |
| 100 | $2.22 | $222.00 |
| 500 | $1.95 | $975.00 |
| 1,000 | $1.72 | $1,720.00 |
PIC16F19195T-I/MR Overview
An 8-bit PIC microcontroller (MCU) is a Harvard-architecture embedded controller that executes one byte-wide instruction per cycle from internal Flash, providing deterministic real-time response in cost-sensitive applications. Within the broader taxonomy it sits under microcontroller -> embedded controller -> semiconductor device, and is the workhorse of consumer appliances, industrial sensors, and battery-powered LCD products where low active current and deep-sleep nanoWatt XLP modes are essential.
Key features include operation from 1.8V to 5.5V, integrated charge pump for LCD bias generation, high-current I/O for directly driving LEDs and segment lines, and communication peripherals (I2C, SPI, UART/USART, LIN). The XLP technology delivers active currents in the microamp range and deep sleep currents below 100 nA typical, allowing multi-year coin-cell operation in metering and wearable products.
Architecturally, the PIC16F19195 uses a RISC-style 14-bit instruction word with a 16-level hardware stack and 49 instruction set optimized for compiled C code via Microchip's MPLAB XC8 toolchain. The CIP block (CLC, NCO, PWM, COG) offloads timing-critical tasks from the CPU, improving system-level power efficiency.
Typical applications include battery-powered LCD thermostats, household metering displays, IoT sensor nodes with segmented displays, medical glucose/peak-flow meters, and industrial HMI panels. The integrated charge pump eliminates external LCD bias components, reducing BOM cost by up to 30% versus discrete LCD-driver designs.
When designing with this device, ensure the exposed pad is soldered to a continuous ground copper pour of at least 25 mm squared to meet the 9x9 mm QFN thermal envelope. Use MPLAB Code Configurator (MCC) plugins to generate peripheral initialization code, which significantly reduces firmware development time for the CIP peripherals.
This page synthesizes distributor pricing, drop-in same-package alternatives, and practical design notes not found in the manufacturer datasheet alone.
Drop-in alternatives for PIC16F19195T-I/MR — 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 PIC16F19195T-I/MR (same form factor and footprint) — differing in Package, Comparators, Core, Operating Temperature Range.
Quick Comparison Tool — Select alternative parts for side-by-side comparison:
PIC16F19196-I/MR
✅ Drop-In✓ In Stock
$2.16 / Unit
View Datasheet →PIC16F19197-I/MR
✅ Drop-In✓ In Stock
$1.55 / Unit
View Datasheet →PIC16F19195-I/MR
✅ Drop-In📋 Reference alternative (not in catalog)
PIC16F19195-E/MR
✅ Drop-In ⚠️ Specs Unverified✓ In Stock
$1.32 / Unit
View Datasheet →PIC16F19195T-E/MR
✅ Drop-In ⚠️ Specs Unverified📋 Reference alternative (not in catalog)
PIC16F19195T-I/MR Maximum Ratings & Electrical Characteristics
| Core | PIC 8-bit RISC |
| Program Memory | 14 KB Flash (8K x 14 words) |
| RAM | 1 KB |
| EEPROM | 256 bytes |
| Maximum CPU Speed | 32 MHz |
| Operating Voltage Range | 1.8 V to 5.5 V |
| Package | 64-QFN (9x9 mm) with exposed pad |
| Mounting Type | Surface Mount |
| Temperature Range (Industrial) | -40C to +85C |
| Communication Peripherals | I2C, SPI, UART/USART, LIN |
| Analog Peripherals | 12-bit ADC, DAC, low-power comparators |
| LCD Driver | Integrated with charge pump |
| XLP Technology | Yes (eXtreme Low Power) |
| Core Independent Peripherals | CLC, NCO, PWM, COG (CIP) |
| RoHS Status | Compliant |
PIC16F19195T-I/MR 64-qfn (9x9 mm) with exposed pad Pin Configuration Guide
Pin configuration for PIC16F19195T-I/MR (64-qfn (9x9 mm) with exposed pad package). This digital IC includes GPIO, communication interfaces (UART, SPI, I2C), and power pins. Refer to the manufacturer datasheet for alternate pin functions and configuration options. Essential for embedded system design and PCB layout.
No detailed pinout data available for PIC16F19195T-I/MR.
Refer to the datasheet for full pin configuration.
Typical Applications
PIC16F19195T-I/MR is suitable for 6 applications: Battery-Powered LCD Thermostat, Household Metering Display, IoT Sensor Node with Segmented Display, Medical Glucose / Peak-Flow Meter, Industrial HMI Panel with Status LCD, Wearable Fitness Band with Mini Display.
Battery-Powered LCD Thermostat
The PIC16F19195T-I/MR's integrated LCD charge pump and 96-segment driver enable direct connection to a custom segment LCD without external bias components. With XLP nanoWatt sleep current of 50 nA typical and 1.8 uA RTC active current per Microchip datasheet DS40001953, the MCU can run a thermostat display from two AA batteries for over 5 years. The 12-bit ADC and low-power comparator support NTC thermistor sensing, while the CLC peripheral implements hysteresis logic without CPU intervention. Use the 1.8V-5.5V operating range to power directly from alkaline cells. Choose PIC16F19196 if you need more than 96 LCD segments.
Recommended
Household Metering Display
The PIC16F19195T-I/MR is engineered for water, gas, and electricity meters that demand multi-year battery life and segment LCD readouts. Its XLP technology delivers 50 nA typical sleep and the integrated charge pump supports up to 96 LCD segments at low contrast, eliminating external voltage-doubler circuits. The 32 MHz core and 14 KB Flash can host IEC 62056-21 meter protocols. Per Microchip datasheet DS40001953, the 12-bit ADC and DAC enable precise sensor signal conditioning, while UART/USART plus LIN bus simplify AMR connectivity. The 64-QFN (9x9 mm) footprint suits compact meter enclosures.
Recommended
IoT Sensor Node with Segmented Display
The PIC16F19195T-I/MR's XLP technology and on-chip CIP peripherals make it ideal for battery-powered IoT sensor nodes that display readings on a small segment LCD. The CLC, NCO, and PWM Core Independent Peripherals handle sensor pulse counting, PWM-driven LED dimming, and tone generation without CPU wake-up, reducing average current by 60-70 percent versus polled designs. Per Microchip datasheet DS40001953, the device supports 1.8V-5.5V supply and includes I2C/SPI/UART for wireless module connectivity, while the 256-byte EEPROM stores calibration data across power cycles.
Recommended
Medical Glucose / Peak-Flow Meter
The PIC16F19195T-I/MR powers handheld medical meters where regulatory traceability, low BOM cost, and battery longevity are non-negotiable. Its 14 KB Flash and 1 KB RAM host glucose-curve lookup tables and result-history buffering, while the integrated LCD charge pump drives 96-segment numeric displays without external components. Per Microchip datasheet DS40001953, the 12-bit ADC with internal reference provides accurate photometric glucose-strip readout, and the low-power comparator detects strip insertion. XLP nanoWatt sleep extends coin-cell life to over 1000 measurements, supporting IEC 60601-1 portable medical designs.
Recommended
Industrial HMI Panel with Status LCD
The PIC16F19195T-I/MR delivers industrial-grade -40C to +85C operation, 14 KB Flash for Modbus or CANopen stack, and a 96-segment LCD driver for status panels on machinery. The UART/USART plus LIN bus enable simple fieldbus integration, while the 12-bit ADC reads analog sensor inputs directly. Per Microchip datasheet DS40001953, the 32 MHz core supports real-time Modbus RTU response, and the 64-QFN (9x9 mm) package fits behind a compact 96-segment LCD. Choose PIC16F19195T-E/MR for extended -40C to +125C operation in harsh industrial environments.
Recommended
Wearable Fitness Band with Mini Display
The PIC16F19195T-I/MR is suited to wearable fitness bands that combine heart-rate sensing, step counting, and a small status LCD on a single coin-cell battery. Its XLP nanoWatt sleep current of 50 nA typical per Microchip datasheet DS40001953, combined with the CLC-implemented step-counter peripheral, keeps active current under 5 uA average. The integrated charge pump drives 96-segment LCDs for time/date display, while the 12-bit ADC reads photoplethysmography (PPG) sensor output. The 64-QFN (9x9 mm) package occupies under 50 mm squared of PCB, ideal for thin wristbands.
Recommended
Recommended Products Summary
Engineering reference data for PIC16F19195T-I/MR — comparison, design guidance, and compliance information.
Selection Guide
Comparison with Alternatives
| Parameter | This Product | PIC16F19196-I/MR | PIC16F19197-I/MR | PIC16F19195-I/MR | PIC16F19195-E/MR | PIC16F19195T-E/MR |
|---|---|---|---|---|---|---|
| Package | 64-QFN (9x9 mm) | 64-QFN (9x9 mm) - same | 64-QFN (9x9 mm) - same | 64-QFN (9x9 mm) - same | 64-QFN (9x9 mm) - same | 64-QFN (9x9 mm) - same |
| Brand | Microchip Technology | Microchip Technology | Microchip Technology | Microchip Technology | Microchip Technology | Microchip Technology |
| Core | 8-bit PIC16 | 8-bit PIC16 | 8-bit PIC16 | 8-bit PIC16 | 8-bit PIC16 | 8-bit PIC16 |
| Flash / RAM / EEPROM | 14 KB / 1 KB / 256 B | 14 KB / 1 KB / 256 B | 14 KB / 1 KB / 256 B | 14 KB / 1 KB / 256 B | 14 KB / 1 KB / 256 B | 14 KB / 1 KB / 256 B |
| Maximum CPU Speed | 32 MHz / 8 MIPS | 32 MHz / 8 MIPS | 32 MHz / 8 MIPS | 32 MHz / 8 MIPS | 32 MHz / 8 MIPS | 32 MHz / 8 MIPS |
| LCD Segments | 96 | 192 (+96) | 320 (+224) | 96 (same) | 96 (same) | 96 (same) |
| CTMU (Touch Sensing) | No | Yes | Yes | No | No | No |
| Operating Temperature | -40C to +85C (Industrial) | -40C to +85C | -40C to +85C | -40C to +85C | -40C to +125C (Extended) | -40C to +125C (Extended) |
| Operating Voltage | 1.8 V to 5.5 V | 1.8 V to 5.5 V | 1.8 V to 5.5 V | 1.8 V to 5.5 V | 1.8 V to 5.5 V | 1.8 V to 5.5 V |
Key Differentiators
- Only 64-QFN family member at qty-1 price tier (vs PIC16F19196-I/MR)
- Industrial temperature grade vs extended grade alternatives (vs PIC16F19195-E/MR)
- Tape-and-reel vs tube packaging (vs PIC16F19195-I/MR)
Design Notes
The 64-QFN (9x9 mm) package has an exposed thermal pad (EP) that MUST be soldered to a continuous ground copper pour of at least 25 mm squared on the top and bottom layers. Estimated: with EP properly soldered, theta_JA is approximately 25 C/W; without EP soldering it rises to over 60 C/W and the device may exceed its +85C industrial limit at full 32 MHz / 5.5V operation. Use at least four 0.4 mm thermal vias in the EP land pattern to conduct heat into inner ground planes.
Place a 100 nF decoupling capacitor within 3 mm of each VDD pin (multiple VDD pins on 64-QFN) and a single 4.7 uF bulk capacitor near the package. Add a 10 uF bulk capacitor on the LCD charge-pump output (VLCD pin) if using high-segment-count displays. Per Microchip datasheet DS40001953, all VSS pins must be connected to the ground plane, and trace lengths from VDD/VSS to capacitors must be minimized to reduce switching noise coupling into the ADC reference.
Do not leave MCLR floating - tie to VDD through a 10 kohm pull-up or drive from a microcontroller supervisor for production designs, as floating MCLR can cause spurious resets. When migrating from PIC16F19155/PIC16F19156 to PIC16F19195, verify the LCD pin assignments - PIC16F19195 has more LCD segment pins than earlier PIC16F1xxx families. Use the MPLAB Code Configurator (MCC) to regenerate peripheral setup code and avoid register-name mismatches. Always configure unused I/O pins as outputs driving low to minimize sleep current.
Keep the 32 MHz oscillator traces (OSC1/OSC2) or the external crystal within 5 mm of the MCU and surrounded by a ground guard ring. For ADC accuracy, route analog signals (ANx) away from the LCD segment lines and charge-pump switching traces; the LCD charge pump generates up to 3Vpp ripple that can couple into sensitive analog channels if routing is not separated by at least 5 mm or a ground trace.
Compliance Information
RoHS and REACH compliant per Microchip product page. Not AEC-Q100 qualified - this is an industrial/consumer MCU, not automotive grade. Lead-free and halogen-free packaging standard.