(2-1) A silicon diode has a saturation current of 0.01 μA at room temperature (25°c). Find the saturation current at 125°c.
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- Determine the negative resistance for the tunnel diode in the figure between ?T = 0.2 ? and ?T = 0.4A silicon diode has a saturation current of 1 pA at 20°C. Find diode bias voltage when diode current is 3 mA. a 1.103 V b 0.832 V c 0.724 V d 2.132 VA silicon diode has reverse saturation current of 2.5 μA ac 300 k . Find forward voltage for a forward current of 10 mA .
- Analyze the given circuit and determine the minimum and maximum input voltage that the given Zener diode can regulate. For the diode given Iz= 0.25MA (show all necessary steps and formulae required in the answer sheet) Rs on 220 Vz- 10 V VOUT-10V VIN =400 mW PI A- В I E E E E ofIn the circuit shown below, the ideality factorn of the diode is unity and the voltage drop across it is 0.7 V. The dynamic resistance of the diode at room temperature is approximately 1.7 V 31 k2The reverse saturation current of a diode at 20°C is 10 nA. What will be the value of the reverse saturation current at 100°C?
- A zener diode exhibits a certain change in VZ for a certain change in IZ on a portion of the linear characteristic curve between IZK and IZM as illustrated in Figure 5. Calculate the zener impedance.2. A silicon diode has a reverse saturation current of 50nA at room temperature. If the operating temperature is raised by 50C, what is now the reverse saturation current?-VBIAS + 0.7 VBIAS - 0.7 -VBIAS - 0.7 With the given circuit below, before the diode will become forward-biased and conduct, the voltage must equ v VBIAS + 0.7 Silicon diode) at the point before diode. R1 I D, VIN VOUT VBIAS =