Zener diode-finding Resistor value

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To design a 7.5V zener regulator circuit with a 10V supply, the required resistor value is calculated based on the zener diode's specifications, including its incremental resistance and knee current. The initial calculations suggest a zener voltage (Vz) of 7.14V, leading to confusion over the correct resistor value, which is stated to be 225 ohms. Participants in the discussion express difficulty in understanding how to arrive at this value, particularly when considering the total current flowing through the circuit, which includes both the zener current and the load current from the 1.2 k-ohm resistor. The discrepancy in calculations, with some arriving closer to 130 ohms, highlights the complexity of determining the correct resistor value in zener diode circuits. Clarification on the total current and voltage drops is needed to resolve the confusion surrounding the 225-ohm answer.
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Need some help finding the value of the input Resister...

Design a 7.5V zener regulator circuit using a 7.5 zener specified at 12 mA. The zener has an incremental resistance of 30 ohms and knee current of .5 mA. The regulator operates from a 10 V supply and has a 1.2 k-ohm load. What is the value of R.

I figured the value of Vznot to be 7.14 from the following equation

Vz=Vznot-Iz*rz

The answer is 225 ohms, but I don't understand how that can be...

I know you have to subtract the diode voltage from the 10 v supply, then divide by the total current, but I can't see to find the correct value of the total current.

Any help would be appreciated.
 
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I don't get the 225 Ohm answer either. If the 7.5V zener has 12mA going down through it, and the 1.2k Ohm load resistor next to it has an additional 7.5V / 1.2k Ohm current going through it, then the sum of those currents has to be coming down from the bias resistor, which has 2.5V across it. I get something more like in the 130 Ohm range (not exact). I wonder what we're missing...
 
At least I'm not the only one that is confused why its 225...I'll keep digging...
 

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