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circuit_design:uebung_2.1.5 [2021/11/12 22:06] tfischercircuit_design:uebung_2.1.5 [2023/03/27 14:13] (aktuell) mexleadmin
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-<panel type="info" title="Task 2.1.5 two LEDs on one digital output"> <WRAP group><WRAP column 2%>{{fa>pencil?32}}</WRAP><WRAP column 92%> +<panel type="info" title="Exercise 2.1.5 Two LEDs on one digital output"> <WRAP group><WRAP column 2%>{{fa>pencil?32}}</WRAP><WRAP column 92%> 
-For a circuit you need to control two LEDs, but unfortunately only one digital output is free. The supply voltage of the microcontroller and the board is 5V. LED1 should have a forward voltage $U_{f,1}=2.3V$ (red), LED2 should have a forward voltage $U_{f,2}=2.1V$ (green).+For a circuityou need to control two LEDs, but unfortunatelyonly one digital output is free.  
 +The supply voltage of the microcontroller and the board is $5~\rm V$ 
 +LED1 should have a forward voltage $U_{\rm F,1}=2.3~\rm V$ (red), LED2 should have a forward voltage $U_{\rm F,2}=2.1~\rm V$ (green).
  
   - Design a circuit from the existing voltage levels so that both LEDs can be driven. \\ Existing voltage levels:   - Design a circuit from the existing voltage levels so that both LEDs can be driven. \\ Existing voltage levels:
-    - Supply: $5V+    - Supply: $5~\rm V
-    - Digital output: $5V$, $0V$ or high impedance+    - Digital output: $5~\rm V$, $0~\rm V$ or high impedance
          
   - Calculate the values for the other necessary components <WRAP onlyprint> \\ \ \ \ \ \ \ \ \ \ \ \ \ </WRAP>.   - Calculate the values for the other necessary components <WRAP onlyprint> \\ \ \ \ \ \ \ \ \ \ \ \ \ </WRAP>.
 </WRAP></WRAP></panel> </WRAP></WRAP></panel>