The diagram shows a transistor used to interface a logic gate to a lamp for it to be fully lit. Resistance of lamp=80 ohms 9V Signal from logic gate OV V₁ Logic gate Output 0.2V 3.3V Lamp a) The logic gate outputs 0.3 for logic 0,and 3.3V for logic 1. Complete the table below to show the effect of these signals on the transistor and lamp by: i) Adding the correct voltages to the V1 column ii)writing either 'Off' or On to show the state of the lamp V1(V) same as VB When filly lit the, the lamp passes a current of 100mA. The transistor has a current gain, beta ẞ of 60 b)Calculate the base current, lg. c)Using KVL find the voltage drop across R. Sate of lamp

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The diagram shows a transistor used to interface a logic gate to a lamp for it to be fully lit. Resistance of lamp=80 ohms
9Vo
Signal from
logic gate
Ovo
R
Logic gate Output
0.2V
3.3V
IB
V₁
Lamp
a) The logic gate outputs 0.3 for logic 0,and 3.3V for logic 1.
Complete the table below to show the effect of these signals on the transistor and lamp by:
i) Adding the correct voltages to the V1 column
ii)writing either 'Off' or On to show the state of the lamp
V1(V) same as VB
When filly lit the, the lamp passes a current of 100mA.
The transistor has a current gain, beta ẞ of 60
b)Calculate the base current, IB.
c)Using KVL find the voltage drop across R.
Sate of lamp
Transcribed Image Text:The diagram shows a transistor used to interface a logic gate to a lamp for it to be fully lit. Resistance of lamp=80 ohms 9Vo Signal from logic gate Ovo R Logic gate Output 0.2V 3.3V IB V₁ Lamp a) The logic gate outputs 0.3 for logic 0,and 3.3V for logic 1. Complete the table below to show the effect of these signals on the transistor and lamp by: i) Adding the correct voltages to the V1 column ii)writing either 'Off' or On to show the state of the lamp V1(V) same as VB When filly lit the, the lamp passes a current of 100mA. The transistor has a current gain, beta ẞ of 60 b)Calculate the base current, IB. c)Using KVL find the voltage drop across R. Sate of lamp
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