Active Transducer Figure P2-95 shows an active transducer whose resistance R ( V T ) varies with the transducer voltage V T as R ( V T ) = 0.5 V T 2 + 1. The transducer supplies a current to a 12 -Ω load. At what voltage will the load current equal 100 mA?
Active Transducer Figure P2-95 shows an active transducer whose resistance R ( V T ) varies with the transducer voltage V T as R ( V T ) = 0.5 V T 2 + 1. The transducer supplies a current to a 12 -Ω load. At what voltage will the load current equal 100 mA?
Solution Summary: The author explains Ohm's law, which states that voltage between two points of conductor is directly proportional to current flowing through it.
Active Transducer Figure P2-95 shows an active transducer whose resistance
R
(
V
T
)
varies with the transducer voltage
V
T
as
R
(
V
T
)
=
0.5
V
T
2
+
1.
The transducer supplies a current to a
12
-Ω
load. At what voltage will the load current equal 100 mA?
-
=
400KHZ.
Q1. In a Boost converter, L = 25 μH, Vin = 12 V, D = 0.4, P = 25 W, and fs
(i) if the output load is changing. Calculate the critical value of the output load P,below which
the converter will enter the discontinuous conduction mode of operation. Assume the total
turn-on loss is equal to 2 W.
(ii) Assuming the input voltage fluctuates from 10 V to 14 V and the output voltage is regulated
to 20 V. Calculate the critical value of the inductance L below which this Boost converter will
enter the discontinuous conduction mode of operation at P = 5 W.
(iii) Draw the waveforms for inductor voltage, inductor current, and the capacitor current for
this Boost converter at the output load that causes it to operate at the border of continuous and
discontinuous modes.
vd tow
77
N₂
AT
22
1-1
Don't use ai to answer I will report you answer
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1- Write radiation resistance (R.) equation for infinitesimal dipole antenna.
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3- Define the Directivity of antenna.
4- Write radar cross section equation.
5- Write the input impedance (Z) expression of lossless transmission line.
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