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PIC18F57Q83
  • PIC18F57Q83
  • PIC18F57Q83

PIC18F57Q83

Samples Available

The PIC18-Q83 family expands the 8-bit MCUs by combining an extensive array of Core Independent Peripherals (CIPs) with Controller Area Network (CAN). These cost optimized MCUs contain time-saving CIPs in up to 48-pins with up to 128 KB of flash memory. The family introduces new features and peripherals like the Universal Timer (UTMR) with customization capability; context switching added to the 12-bit ADC with Computation for automating analog signal analysis for real-time system response. Additionally, it includes industry standard options, JTAG Boundary Scan, 32-bit Cyclic Redundancy Check (CRC) with memory scan on boot for added system safety.  System designers can benefit greatly by saving time, as it is significantly easier to configure a hardware-based peripheral, as opposed to...

Microchip Technology PIC18F57Q83 Product Info

16 April 2026 0

Parameters

Program Memory Size (KB)

128

RAM

13000

Data EEPROM (bytes)

1024

Pin Count

48

MVIO Pins

0

Operation Voltage Max.(V)

5.5

Operation Voltage Min.(V)

1.8

ADC Resolution Max

12

ADC Channels

43

Zero Cross Detect

True

Number of Comparators

2

SPI

2

I2C

1

Stand alone PWM

4

Low Power

Yes

Numerically Controlled Oscillator (NCO)

1

Data Signal Modulator (DSM)

1

Features

    Description

    The PIC18-Q83 family expands the 8-bit MCUs by combining an extensive array of Core Independent Peripherals (CIPs) with Controller Area Network (CAN). These cost optimized MCUs contain time-saving CIPs in up to 48-pins with up to 128 KB of flash memory. The family introduces new features and peripherals like the Universal Timer (UTMR) with customization capability; context switching added to the 12-bit ADC with Computation for automating analog signal analysis for real-time system response. Additionally, it includes industry standard options, JTAG Boundary Scan, 32-bit Cyclic Redundancy Check (CRC) with memory scan on boot for added system safety.  System designers can benefit greatly by saving time, as it is significantly easier to configure a hardware-based peripheral, as opposed to writing and validating an entire software routine, to accomplish a task. 

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