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MICROCHIP PIC24FV16KM202-E/SS product image
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MICROCHIP PIC24FV16KM202-E/SSRoHS

Manufacturer
MPN
PIC24FV16KM202-E/SS
LCSC Part #
C641973
Packaging
SSOP-28-208mil
Customer #
Key Attributes
PIC 16 Bit 32MHz 23 SSOP-28-208mil Microcontrollers RoHS
Datasheetpdf iconMICROCHIP PIC24FV16KM202-E/SS
In-Stock: 5
5 In stock, ships now
Minimum: 1Multiple: 1Sales Unit: Piece
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QtyUnit PriceTotal Amount
1+$ 7.4817$ 7.48
10+$ 7.3017$ 73.02
30+$ 7.1817$ 215.45
100+$ 7.0633$ 706.33
Standard Packaging47/Full Tube
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Products Specifications

All
TypeDescription
CategoryIntegrated Circuits (ICs)/Embedded/Microcontrollers
ManufacturerMICROCHIP
PackagingSSOP-28-208mil
DAC (Bit)8bit
ADC (Bit)10bit;12bit
Operating Temperature-40℃~+125℃
Program Memory TypeFLASH
Voltage - Supply2V~5V
EEPROM512Byte
Program Storage Size16KB
CPU CorePIC
Core Size16 Bit
CPU Maximum Speed32MHz
Oscillator TypeBuilt-in
Number of I/O23

Features

AI Translation
  • Up to Two 8-Bit Digital-to-Analog Converters (DACs):
    • Soft Reset disable function allows DAC to retain its output value through non-VDD Resets
    • Support for Idle mode
    • Support for left and right justified input data
  • Two Operational Amplifiers (Op Amps):
    • Differential inputs
    • Selectable power/speed levels:
      • Low power/low speed
      • High power/high speed
  • Up to 22-Channel, 10/12-Bit Analog-to-Digital Converter:
    • 100k samples/second at 12-bit conversion rate (single Sample-and-Hold)
    • Auto-scan with Threshold Detect
    • Can operate during Sleep
    • Dedicated band gap reference and temperature sensor input
  • Up to Three Rail-to-Rail Analog Comparators:
    • Programmable reference voltage for comparators
    • Band gap reference input
    • Flexible input multiplexing
    • Low-power or high-speed selection options
  • Charge Time Measurement Unit (CTMU):
    • Capacitive measurement, up to 22 channels
    • Time measurement down to 200 ps resolution
    • Up to 16 external trigger pairs
  • Internal Temperature Sensor with Dedicated A/D Converter Input
  • Modified Harvard Architecture
  • Operating Speed:
    • DC – 32 MHz clock input
    • 16 MIPS at 32 MHz clock input
  • 8 MHz Internal Oscillator:
    • 4x PLL option
    • Multiple clock divide options
    • Fast start-up
  • 17-Bit x 17-Bit Single-Cycle Hardware Fractional/Integer Multiplier
  • 32-Bit by 16-Bit Hardware Divider
  • 16 x 16-Bit Working Register Array
  • C Compiler Optimized Instruction Set Architecture
  • 24-Bit Wide Instructions
  • 16-Bit Wide Data Path
  • Linear Program Memory Addressing, Up to 6 Mbytes
  • Linear Data Memory Addressing, Up to 64 Kbytes
  • Two Address Generation Units (AGUs) for Separate Read and Write Addressing of Data Memory
  • 16 or 32-Bit Time Base
  • 16 or 32-Bit Capture:
    • 4-deep capture buffer
  • 16 or 32-Bit Compare:
    • Single Edge Compare modes
    • Dual Edge Compare/PWM modes
    • Center-Aligned Compare mode
    • Variable Frequency Pulse mode
  • Single Output Steerable mode (MCCP only)
  • Brush DC Forward and Reverse modes (MCCP only)
  • Half-Bridge with Dead-Time Delay (MCCP only)
  • Push-Pull PWM mode (MCCP only)
  • Auto-Shutdown with Programmable Source and Shutdown State
  • Programmable Output Polarity
  • High-Current Sink/Source, 18 mA/18 mA All Ports
  • Independent Ultra-Low Power, 32 kHz Timer Oscillator
  • Up to Two Master Synchronous Serial Ports (MSSPs) with SPI and I²C modes:
    • In SPI mode:
      • User-configurable SCKx and SDOx pin outputs
      • Daisy-chaining of SPI Slave devices
    • In I²C mode:
      • Serial clock synchronization (clock stretching)
      • Bus collision detection and will arbitrate accordingly
      • Support for 16-bit read/write interface
  • Up to Two Enhanced Addressable UARTs:
    • LIN/J2602 bus support (auto-wake-up, Auto-Baud Detect, Break character support)
    • High and low speed (SCI)
    • IrDA mode (hardware encoder/decoder function)
  • Two External Interrupt Pins
  • Hardware Real-Time Clock and Calendar (RTCC)
  • Configurable Reference Clock Output (REFO)
  • Two Configurable Logic Cells (CLCs)
  • Up to Two Single Output Capture/Compare/PWM (SCCP) modules and Up to Three Multiple Output Capture/Compare/PWM (MCCP) modules
  • Wide Operating Voltage Range Options:
    • 1.8V to 3.6V (PIC24F devices)
    • 2.0V to 5.0V (PIC24FV devices)
  • Selectable Power Management modes:
    • Idle: CPU shuts down, allowing for significant power reduction
    • Sleep: CPU and peripherals shut down for substantial power reduction and fast wake-up
    • Retention Sleep mode: PIC24FV devices can enter Sleep mode, employing the Retention Regulator, further reducing power consumption
    • Doze: CPU can run at a lower frequency than peripherals, a user-programmable feature
    • Alternate Clock modes allow on-the-fly switching to a lower clock speed for selective power reduction
  • Fail-Safe Clock Monitor:
    • Detects clock failure and switches to on-chip, low-power RC Oscillator
  • Ultra Low-Power Wake-up Pin Provides an External Trigger for Wake from Sleep
  • 10,000 Erase/Write Cycle Endurance Flash Program Memory, Typical
  • 100,000 Erase/Write Cycle Endurance Data EEPROM, Typical
  • Flash and Data EEPROM Data Retention: 20 Years Minimum
  • Self-Programmable under Software Control
  • Power-on Reset (POR), Power-up Timer (PWRT) and Oscillator Start-up Timer (OST)
  • Watchdog Timer (WDT) with its Own On-Chip RC Oscillator for Reliable Operation
  • On-Chip Regulator for 5V Operation
  • Selectable Windowed WDT Feature
  • Selectable Oscillator Options including:
    • 4x Phase-Locked Loop (PLL)
  • 8 MHz (FRC) Internal RC Oscillator:
    • HS/EC, High-Speed Crystal/Resonator Oscillator or External Clock
  • In-Circuit Serial Programming (ICSP) and In-Circuit Emulation (ICE) – via Two Pins
  • In-Circuit Debugging
  • Programmable High/Low-Voltage Detect (HLVD) module
  • Programmable Brown-out Reset (BOR):
    • Software enable feature
    • Configurable shutdown in Sleep
    • Auto-configures power mode and sensitivity based on device operating speed
    • LPBOR available for re-arming of the POR