Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN: 9780133923605
Author: Robert L. Boylestad
Publisher: PEARSON
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- solve for the collector saturation current of an emitter stabilized bias circuit with Vcc=18V, RB=720k ohms, RC=2.7k ohms, RE=300 ohms and beta=100. A. 6mA B. 7mA C. 8mA D. 9mAarrow_forwardQ16.Determine the Q point of the transistor circuit shown in the figure. Also draw the d.c. load line. Given β = 200 and VBE = 0.7V.arrow_forwardInstruction/s: Draw, Illustrate and label your schematic diagram before solving the problem. 1.) Given a Fixed-Biased transistor circuit with Beta DC is 200 , voltage at common collector is +22v ,base supply voltage is +11V, Base resistor is 47kOhms , collector resistor is 390 ohms ,Voltage at Base-emitter junction is 0.7v. Determine the Q-point of collector current and Voltage at collector-emitter junction. These is the example or guide that might help in answering the problem.arrow_forward
- Problem-5 The LED in Figure below requires 30 mA to emit a sufficient level of light. Therefore, the collector current +Vcc should be approximately 30 mA. For the following circuit values, determine the Re amplitude of the square wave input voltage necessary to make sure that the transistor saturates. Use double the minimum value of base current as a safety ON ON margin to ensure saturation. OFF Vcc = 9 V, VCE(sat) = 0.3 V, Rc = 220 N, RB = 3.3 kÝ Bpc =50, and VleD = 1.6 V. 1arrow_forward1- a. For the circuits given below calculate the currents through the zener diode (V5.1V) and the current through the Si-diode. 1k Ohm 1k Ohm -10V 1k Ohm 12V b. The emitter of an NPN type BJT is connected to ground. Its base is connected to a 5V supply with a 10K resistor. Its collector is connected to the same supply with a 6K resistor. Calculate the range of ß such that the transistor is not saturated.arrow_forwardi need answer asap 26arrow_forward
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