rite TRUE if the statement is correct but if it's false, change the underlined word or group of words to make the whole statement correct. 1. The JFET fixed bias configuration can be solve easily by using mathematical and graphical approach. _2. The Self-bias configuration has/have two power supply needed to operate the device. 3. The first step in sketching the solution for JFET networks is to draw the transfer curve.

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DIRECTION: Write TRUE if the statement is correct but if it's false, change the underlined word or group
of words to make the whole statement correct.
1. The JFET fixed bias configuration can be solve easily by using mathematical and
graphical approach.
2. The Self-bias configuration has/have two power supply needed to operate the
device.
3. The first step in sketching the solution for JFET networks is to draw the transfer
curve.
4. The first step in finding the Q-point of a JFET network is to plot the network
equation or device bias line.
5. The intersection of the transfer curve and plotted network equation is called the
operating point of the device.
6. There are two points needed to plot the transfer curve of the device.
_7. The plot of the network equation in Self-bias configuration starts from the origin.
8. The two points that is easily plotted to draw the transfer curve are the Ioss and VP.
9. The operating point of a D-MOSFET may exceed the Ioss.
10. Using the Universal JFET bias curve, we need to plot the transfer
curve first.
Transcribed Image Text:DIRECTION: Write TRUE if the statement is correct but if it's false, change the underlined word or group of words to make the whole statement correct. 1. The JFET fixed bias configuration can be solve easily by using mathematical and graphical approach. 2. The Self-bias configuration has/have two power supply needed to operate the device. 3. The first step in sketching the solution for JFET networks is to draw the transfer curve. 4. The first step in finding the Q-point of a JFET network is to plot the network equation or device bias line. 5. The intersection of the transfer curve and plotted network equation is called the operating point of the device. 6. There are two points needed to plot the transfer curve of the device. _7. The plot of the network equation in Self-bias configuration starts from the origin. 8. The two points that is easily plotted to draw the transfer curve are the Ioss and VP. 9. The operating point of a D-MOSFET may exceed the Ioss. 10. Using the Universal JFET bias curve, we need to plot the transfer curve first.
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