PIC16C54C-40/SO this integrated circuit is available in factory sealed anti static packs. at icwhale.com. Please read product page below detail information. including PIC16C54C-40/SO price, data-sheet, in-stock availability, technical difficulties. Also. Quickly Enter the access of compare listing to find out replaceable electronic parts. If you want to retrieve comprehensive data for PIC16C54C-40/SO to optimize the supply chain (including cross references, life-cycle, parametric, counterfeit risk, obsolescence managements forecasts), please contact to our Tech-supports team.
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Application Scenario:
In a beginner-level project, PIC16C54C-40/SO can be utilized to create a simple digital thermometer. This project will involve interfacing a temperature sensor with the microcontroller and displaying the temperature readings on an LCD screen.
Circuit Design:
To build the digital thermometer using PIC16C54C-40/SO, follow these steps:
1. Temperature Sensor Connection:
Connect a temperature sensor, such as a DS18B20 digital temperature sensor, to the microcontroller. Wire the sensor's data pin to one of the digital input/output pins of PIC16C54C-40/SO, such as pin RA0.
2. LCD Display:
Connect a character LCD display to the microcontroller for displaying the temperature readings. Utilize the appropriate pins for data and control signals, such as pins RB0 to RB7 for data and RB6 and RB7 for control signals.
3. Firmware Development:
Write firmware code in assembly or C language to read temperature data from the sensor periodically, process it, and display the results on the LCD screen. Use the microcontroller's built-in timer modules for timing and delay operations.
4. Power Supply:
Ensure a stable power supply for the microcontroller and other components. Use a regulated power supply or batteries to provide the required voltage levels.
Experiment Steps:
Step 1: Connect the DS18B20 temperature sensor to pin RA0 of PIC16C54C-40/SO using a breadboard and jumper wires.
Step 2: Connect the LCD display to pins RB0 to RB7 for data and RB6 and RB7 for control signals.
Step 3: Write and upload the firmware code to the microcontroller using a suitable programmer, such as PICkit.
Step 4: Power up the circuit and observe the temperature readings displayed on the LCD screen.
Step 5: Optionally, calibrate the temperature readings by comparing them with a known reference thermometer and adjusting the firmware code accordingly.
Considerations:
When working on the project, keep the following considerations in mind:
- Data Sheet Reference: Refer to the PIC16C54C-40/SO datasheet for detailed information on pin assignments, electrical characteristics, and programming instructions.
- Sensor Accuracy: Choose a temperature sensor with sufficient accuracy and resolution for the application to ensure reliable temperature measurements.
- LCD Initialization: Properly initialize the LCD display in the firmware code before sending any data or commands to ensure correct operation.
- Power Consumption: Optimize the firmware code and circuit design to minimize power consumption, especially if the project is battery-powered.
- Debugging: Use debugging tools like breakpoints and serial communication for troubleshooting and debugging firmware code issues.
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(1)Such as a deficiency in quantity, delivery of wrong items, and apparent external defects (breakage and rust, etc.), and we acknowledge such problems.
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