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Your step-by-step guide — send multiplex cc number
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Send multiplex cc number
welcome guys this is Gavin from life learnings comm and this is a 10 3 tutorial of pic16f877a Eggman displays to connect a single 7 segment display to microcontroller we need at least 8 microcontrollers pins to provide data for 7 segment display we are using a 28 pin microcontroller and we have only 3 input/output ports if we use a single port for a single 7 segment display then we can connect only 3 7 segment display to pic16f877a Eggman's then how to achieve this here comes the time multiplexing concept of seven segments where we will use only a single port to provide data for every 7 segment to achieve the concept of multiplexing we have to connect gaiter lines of all the seven segments to a single port of the microcontroller for this video tutorial i am using port c to provide data two to seven segments these two seven segments are common cathode to achieve the time multiplexing concept we need to provide a control signal to activate the seven segments in this case you can see two control signals marked as seg 1 and said 2 for segment 1 and segment 2 we will first activate this segment 1 by providing a ground signal to this pin because this is a common cathode display after a very small delay we will reactivate this 7 segment and we will activate this 7 segment by making a low signal on this pin we will first activate the leftmost 7 segment and we will write a data to display a digit at that time all other 7 segments will remain off then we will shift to the next 7 segment and we will activate that segment to display the next data by following this method we will go to the last 7 segments we will provide a very small delay between the switching of each 7 segment and after that we will get a still display as shown on the right-hand side of this image before starting the programming I want to discuss array and how to access an element from an array first we have to write the data type of an array then give a name to that array and then square brackets I will create the area to save the values from 0 to 9 for 7 segment display we will write the values for digits in between these two curly bracket and at the last a semicolon is required this is the first element of that array which is storing the value 0 x3 F and this is the value of 0 to display on 7 segment I'm using port C for segment data that's why I gave a name to port see as sec data in the same way i give a name to tri-state c resistor we have two pins to switch the seven segments which are connected on our before and our p5 pin as we are using this our before to switch the segment 1 and r b5 to switch the segment 2 I give a name to these two pins as seg 1 and SEC 2 in the same way I define two names for tri-state b4 and tri-state b5 pins first I make these segment data poor is equal to output by defining these segment Direction equal to 0 X is 0 0 then I define the direction of segment control pins to output here I disabled the analog channels on both B by using a and SEL as a resistor so here I am selecting the segment 1 and I am deactivating the segment 2 after activating the required 7 segment I write the data to seven segment port but I am getting the data from there too defined array we have to use the index number to access the elements from that array if I write the name of that array and in the square brackets if I write this 0 then we will get this value from array 0 X 3 F so this value is at index 0 and this value is at index 1 and egg the last this value is at index 9 so if we write the name of that array and if we write any value from 0 to 9 we will get the corresponding data from that index location you can see we are getting the output on a single segment this is because we select this segment by making this egg one control signal low and the other segment is deactivated because the second control signal said 2 is high now I activate segment 2 by making segment to condole pin zero and he activates the segment one by making this segment one control signal to one the segment one is deactivated and segment two is displaying the output because we changed the control signals and the segment one is changed to high and segment two is changed to low I add a delay of 50 milliseconds after every right to the seven segment and I moved these all instructions under the infinite loop you can observe the switching of these two control signals and the data display on these two seven segments at the same time I want to display zero on segment one and I want to display two on segment two so for this we have to change the index number for the array when I write the hex file to pic microcontroller we are getting zero on this segment one and we are getting two on this segment two I will increase the value of delay so that we can observe the switching of seven segments to display two different values I change the delay to three hundred milliseconds after every right to the seven segment so that we can observe the switching of the segment's now it is very clear that we are switching the seven segments to display two different values now after reducing the delay to three milliseconds you can't observe the switching of seven segments and you will get the still display to display the count on seven segment display first I have to declare a variable of character type I declare a character variable count to make the counting from 0 to 99 on the first segment we will display the MSB of count and to get the MSB of the count variable we have to divide it by 10 and then modulus of 10 then we will get the MSB of the count variable we will display the LSB of count variable on segment 2 for that we have to just make a modulus of this count variable and at last I increment the count variable to display the next value on the display so we get the desired output it is displaying a counting but we are not able to see the actual value of the count because it is running at very high speed so to slow down the counting I will use a for loop this for loop will be executed for 100 times for a single-digit and after that for loop we are incrementing the count variable again when the count variable is incremented to next value this for loop will again executed four hundred times display the same digit let's see what is the output of that program on hardware now we are getting the counting but with a reduced speed so guys this is how we can control multiple seven segments from a single port of the microcontroller but keep in mind that we need control signals for every seven segments to activate or to deactivate their seven segments so thanks for watching guys don't forget to subscribe my channel
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