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PIC24FJ128GA204-I/ML
Basic Information Overview
- Category: Microcontroller
- Use: Embedded systems, industrial control, consumer electronics
- Characteristics: High performance, low power consumption, large memory capacity
- Package: QFN-44
- Essence: 16-bit microcontroller with integrated peripherals
- Packaging/Quantity: Tray, 160 pieces per tray
Specifications
- Architecture: 16-bit
- CPU Speed: Up to 16 MIPS
- Flash Memory: 128 KB
- RAM: 8 KB
- Operating Voltage Range: 2.0V to 3.6V
- Operating Temperature Range: -40°C to +85°C
- Number of I/O Pins: 36
- Communication Interfaces: UART, SPI, I2C, USB
- Analog-to-Digital Converter (ADC): 10-bit, up to 16 channels
- Timers: Multiple timers/counters with various modes
- PWM: Up to 5 channels
- Interrupt Sources: External and internal
- Oscillator Options: Internal oscillator, external crystal or resonator
Detailed Pin Configuration
The PIC24FJ128GA204-I/ML has a total of 44 pins. The pin configuration is as follows:
- VDD - Power supply voltage
- VSS - Ground
- AN0 - Analog input channel 0
- AN1 - Analog input channel 1
- AN2 - Analog input channel 2
- AN3 - Analog input channel 3
- AN4 - Analog input channel 4
- AN5 - Analog input channel 5
- AN6 - Analog input channel 6
- AN7 - Analog input channel 7
- AN8 - Analog input channel 8
- AN9 - Analog input channel 9
- AN10 - Analog input channel 10
- AN11 - Analog input channel 11
- AN12 - Analog input channel 12
- AN13 - Analog input channel 13
- AN14 - Analog input channel 14
- AN15 - Analog input channel 15
- VREF- - Reference voltage negative terminal
- VREF+ - Reference voltage positive terminal
- AVSS - Analog ground
- AVDD - Analog power supply voltage
- OSC1/CLKI - Oscillator input/Clock input
- OSC2/CLKO - Oscillator output/Clock output
- TMS - JTAG Test Mode Select
- TCK - JTAG Test Clock
- TDO - JTAG Test Data Out
- TDI - JTAG Test Data In
- PGC - Programming and Debugging Clock
- PGD - Programming and Debugging Data
- MCLR - Master Clear Reset
- RB0/AN5 - General-purpose I/O or Analog input
- RB1/AN6 - General-purpose I/O or Analog input
- RB2/AN7 - General-purpose I/O or Analog input
- RB3/AN8 - General-purpose I/O or Analog input
- RB4/AN9 - General-purpose I/O or Analog input
- RB5/AN10 - General-purpose I/O or Analog input
- RB6/AN11 - General-purpose I/O or Analog input
- RB7/AN12 - General-purpose I/O or Analog input
- RB8/AN13 - General-purpose I/O or Analog input
- RB9/AN14 - General-purpose I/O or Analog input
- RB10/AN15 - General-purpose I/O or Analog input
- RB11 - General-purpose I/O
- RB12 - General-purpose I/O
Functional Features
- High-performance 16-bit CPU with up to 16 MIPS operation speed
- Large memory capacity for storing program code and data
- Integrated peripherals such as UART, SPI, I2C, and USB for communication
- Analog-to-Digital Converter (ADC) for precise analog measurements
- Multiple timers/counters with various modes for accurate timing control
- Pulse Width Modulation (PWM) for controlling analog outputs
- Flexible interrupt system for handling external and internal events
- Various oscillator options for clock generation
Advantages and Disadvantages
Advantages:
- High performance and low power consumption
- Ample memory capacity for complex applications
- Wide range of integrated peripherals for versatile functionality
- Precise analog measurement capabilities
- Flexible timing control and PWM for accurate output control
- Extensive interrupt system for efficient event handling
- Multiple oscillator options for flexible clock generation
Disadvantages:
- Limited number of I/O pins compared to some other microcontrollers
- Requires additional
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Question: What are the key features of PIC24FJ128GA204-I/ML?
Answer: The PIC24FJ128GA204-I/ML features 16-bit microcontroller architecture, 128 KB flash program memory, and 8 KB RAM.
Question: How can I interface external peripherals with PIC24FJ128GA204-I/ML?
Answer: You can use the various communication interfaces such as SPI, I2C, UART, and USB to interface external peripherals with PIC24FJ128GA204-I/ML.
Question: What development tools are available for programming PIC24FJ128GA204-I/ML?
Answer: Development tools such as MPLAB X IDE and MPLAB XC16 Compiler can be used for programming PIC24FJ128GA204-I/ML.
Question: Can PIC24FJ128GA204-I/ML be used in low-power applications?
Answer: Yes, PIC24FJ128GA204-I/ML features low-power modes and can be used in battery-powered or energy-efficient applications.
Question: What are the recommended operating conditions for PIC24FJ128GA204-I/ML?
Answer: The recommended operating voltage range is 2.0V to 3.6V, and the temperature range is -40°C to 125°C.
Question: Is there a development board available for PIC24FJ128GA204-I/ML?
Answer: Yes, there are several development boards available from Microchip and third-party manufacturers that support PIC24FJ128GA204-I/ML.
Question: Can PIC24FJ128GA204-I/ML be used in industrial control applications?
Answer: Yes, PIC24FJ128GA204-I/ML is suitable for industrial control applications due to its robust features and performance.
Question: What are the available analog-to-digital converter (ADC) channels in PIC24FJ128GA204-I/ML?
Answer: PIC24FJ128GA204-I/ML features up to 10 ADC channels with 10-bit resolution.
Question: Are there any application notes or reference designs available for PIC24FJ128GA204-I/ML?
Answer: Yes, Microchip provides application notes, reference designs, and example code for implementing various solutions using PIC24FJ128GA204-I/ML.
Question: Can PIC24FJ128GA204-I/ML be used in motor control applications?
Answer: Yes, PIC24FJ128GA204-I/ML supports motor control applications through its advanced PWM and timer modules.