summaryrefslogtreecommitdiff
path: root/181/CH4/EX4.8/example4_8.sce
diff options
context:
space:
mode:
Diffstat (limited to '181/CH4/EX4.8/example4_8.sce')
-rwxr-xr-x181/CH4/EX4.8/example4_8.sce30
1 files changed, 30 insertions, 0 deletions
diff --git a/181/CH4/EX4.8/example4_8.sce b/181/CH4/EX4.8/example4_8.sce
new file mode 100755
index 000000000..32c2ee292
--- /dev/null
+++ b/181/CH4/EX4.8/example4_8.sce
@@ -0,0 +1,30 @@
+// Calculate labeled Voltages
+// Basic Electronics
+// By Debashis De
+// First Edition, 2010
+// Dorling Kindersley Pvt. Ltd. India
+// Example 4-8 in page 211
+
+clear; clc; close;
+
+// Given Data
+Vbe=0.7; // Base-Emitter voltage of BJT in V
+Vcc2=10; // DC voltage across Collector in V
+Vee2=-15; // DC voltage across Emitter in V
+Rc2=5*10^3; // Collector Resistance in K-ohms
+// Beta Current Gain of BJT is Infinity
+
+// Calculations
+Vb1=0;
+Ve1=-0.7;
+Ve2=0.7;
+Vc2=Vee2+Rc2*((Vcc2-Vbe)/Rc2);
+
+printf("Circuit 1:\n(a)Base Voltage = %0.1f V\n(b)Emitter Voltage = %0.1f V\n",Vb1,Ve1);
+printf("Circuit 2:\n(a)Emitter Voltage = %0.1f V\n(b)Collector Voltage = %0.1f V\n",Ve2,Vc2);
+
+//Results
+// Circuit 1 : Base Voltage = 0 V
+// Circuit 1 : Emitter Voltage = -0.7 V
+// Circuit 2 : Emitter Voltage = 0.7 V
+// Circuit 2 : Collector Voltage = -5.7 V