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authorpriyanka2015-06-24 15:03:17 +0530
committerpriyanka2015-06-24 15:03:17 +0530
commitb1f5c3f8d6671b4331cef1dcebdf63b7a43a3a2b (patch)
treeab291cffc65280e58ac82470ba63fbcca7805165 /1133/CH9
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-rwxr-xr-x1133/CH9/EX9.1/Example9_1.sce21
-rwxr-xr-x1133/CH9/EX9.10/Example9_10.sce19
-rwxr-xr-x1133/CH9/EX9.11/Example9_11.sce12
-rwxr-xr-x1133/CH9/EX9.11/Fig_exm9_11.xcos1
-rwxr-xr-x1133/CH9/EX9.12/Example9_12.sce32
-rwxr-xr-x1133/CH9/EX9.12/Fig_exm9_12.xcos1
-rwxr-xr-x1133/CH9/EX9.13/Example9_13.sce12
-rwxr-xr-x1133/CH9/EX9.17/Example9_17.sce14
-rwxr-xr-x1133/CH9/EX9.17/Fig_exm9_17.xcos1
-rwxr-xr-x1133/CH9/EX9.18/Example9_18.sce11
-rwxr-xr-x1133/CH9/EX9.18/Fig_exm9_18.xcos1
-rwxr-xr-x1133/CH9/EX9.19/Example9_19.sce14
-rwxr-xr-x1133/CH9/EX9.19/Fig_exm9_19.xcos1
-rwxr-xr-x1133/CH9/EX9.20/Example9_20.sce12
-rwxr-xr-x1133/CH9/EX9.20/Fig_exm9_20.xcos1
-rwxr-xr-x1133/CH9/EX9.21/Example9_21.sce11
-rwxr-xr-x1133/CH9/EX9.26/Example9_26.sce26
-rwxr-xr-x1133/CH9/EX9.26/Fig_exm9_26.xcos1
-rwxr-xr-x1133/CH9/EX9.27/Example9_27.sce19
-rwxr-xr-x1133/CH9/EX9.27/Fig_exm9_27.xcos1
-rwxr-xr-x1133/CH9/EX9.28/Example9_28.sce23
-rwxr-xr-x1133/CH9/EX9.28/Fig_exm9_28.xcos1
-rwxr-xr-x1133/CH9/EX9.3/Example9_3.sce8
-rwxr-xr-x1133/CH9/EX9.32/Example9_32.sce10
-rwxr-xr-x1133/CH9/EX9.33/Example9_33.sce9
-rwxr-xr-x1133/CH9/EX9.34/Example9_34.sce7
-rwxr-xr-x1133/CH9/EX9.35/Example9_35.sce9
-rwxr-xr-x1133/CH9/EX9.36/Example9_36.sce12
-rwxr-xr-x1133/CH9/EX9.38/Example9_38.sce14
-rwxr-xr-x1133/CH9/EX9.39/Example9_39.sce6
-rwxr-xr-x1133/CH9/EX9.4/Example9_4.sce15
-rwxr-xr-x1133/CH9/EX9.4/Fig_exm9_4.xcos1
-rwxr-xr-x1133/CH9/EX9.40/Example9_40.sce10
-rwxr-xr-x1133/CH9/EX9.41/Example9_41.sce9
-rwxr-xr-x1133/CH9/EX9.42/Example9_42.sce8
-rwxr-xr-x1133/CH9/EX9.43/Example9_43.sce6
-rwxr-xr-x1133/CH9/EX9.5/Example9_5.sce15
-rwxr-xr-x1133/CH9/EX9.6/Example9_6.sce9
-rwxr-xr-x1133/CH9/EX9.8/Example9_8.sce30
-rwxr-xr-x1133/CH9/EX9.9/Example9_9.sce17
40 files changed, 430 insertions, 0 deletions
diff --git a/1133/CH9/EX9.1/Example9_1.sce b/1133/CH9/EX9.1/Example9_1.sce
new file mode 100755
index 000000000..1a9c53267
--- /dev/null
+++ b/1133/CH9/EX9.1/Example9_1.sce
@@ -0,0 +1,21 @@
+//Example 9.1
+clc
+disp("The differential amplifier is represented as shown in fig. 9.5.")
+disp("(i) CMRR = 100")
+vd=300-240
+disp(vd," Vd(in uV) = V1 - V2 = ")
+vc=(300+240)/2
+disp(vc," Vc(in uV) = V1+V2 / 2 =")
+disp("CMRR = Ad / Ac")
+ac=5000/100
+disp(ac,"Therefore, Ac =")
+format(6)
+vo=((5000*60)+(50*270))*10^-3
+disp(vo,"Therefore, Vo(in mV) = Ad*Vd + Ac*Vc =")
+disp("(ii) CMRR = 10^5")
+ac=5000/(10^5)
+disp(ac,"Therefore, Ac = Ad / CMRR =")
+vo=((5000*60)+(0.05*270))*10^-3
+format(9)
+disp(vo,"Therefore, Vo(in mV) = Ad*Vd + Ac*Vc =")
+disp("Ideally Ac must be zero and output should be only Ad*Vd which is 5000*60*10^-6 i.e. 300 mV. It can be seen that higher the value of CMRR, the output is almost proportional to the difference voltage Vd, rejecting the common mode signal. So ideal value of CMRR for a differential amplifier is infinity.")
diff --git a/1133/CH9/EX9.10/Example9_10.sce b/1133/CH9/EX9.10/Example9_10.sce
new file mode 100755
index 000000000..b2fa5e1b8
--- /dev/null
+++ b/1133/CH9/EX9.10/Example9_10.sce
@@ -0,0 +1,19 @@
+//Example 9.10
+clc
+disp("From fig 9.45, R1 = 68 k-ohm, R2 = 1.5 k-ohm and V_sat = 13.5 V")
+vut=(1.5/(1.5+68))*13.5
+format(7)
+disp(vut,"V_UT(in V) = R2/R1+R2 * V_sat =")
+vlt=(-1.5/(1.5+68))*13.5
+disp(vlt,"V_LT(in V) = -R2/R1+R2 * V_sat =")
+h=2*0.2913
+disp(h,"Therefore, H(in V) = V_UT - V_LT =")
+disp("Now H = (2*R2 / R1+R2) * V_sat")
+disp("For minimum H, R2 must be minimum and R1 must be maximum")
+r2min=((1.5)-(0.05*1.5))
+format(6)
+disp(r2min,"Therefore, R2_min(in k-ohm) = R2 - 5%*R2 =")
+r2max=((68)+(0.05*68))
+disp(r2max,"Therefore, R1_max(in k-ohm) = R1 + 5%*R1 =")
+hm=((2*1.425)/(71.4+1.425))*13.5
+disp(hm,"Therefore, H_min(in V) =")
diff --git a/1133/CH9/EX9.11/Example9_11.sce b/1133/CH9/EX9.11/Example9_11.sce
new file mode 100755
index 000000000..76df6861b
--- /dev/null
+++ b/1133/CH9/EX9.11/Example9_11.sce
@@ -0,0 +1,12 @@
+//Example 9.11
+clc
+disp("Choose op-amp LM318 with V_sat as +- 13.5 V with supply voltage +- 15 V")
+disp(" V_UT = + 5 V")
+disp("Now V_UT = (R2 / R1+R2)*V_sat")
+disp("Therefore, 5 = (R2 / R1+R2)*13.5")
+disp("Therefore, R1 + R2 = 2.7*R2")
+disp("Therefore, R1 = 1.7*R2")
+disp("Choose R2 = 10 k-ohm")
+r1=1.7*10
+disp(r1,"Therefore, R1(in k-ohm) =")
+disp("The designed circuit is shown in fig.9.46")
diff --git a/1133/CH9/EX9.11/Fig_exm9_11.xcos b/1133/CH9/EX9.11/Fig_exm9_11.xcos
new file mode 100755
index 000000000..f0bced2e2
--- /dev/null
+++ b/1133/CH9/EX9.11/Fig_exm9_11.xcos
@@ -0,0 +1 @@
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diff --git a/1133/CH9/EX9.12/Example9_12.sce b/1133/CH9/EX9.12/Example9_12.sce
new file mode 100755
index 000000000..fd90c4830
--- /dev/null
+++ b/1133/CH9/EX9.12/Example9_12.sce
@@ -0,0 +1,32 @@
+//Example 9.12
+clc
+disp("For the Schmitt trigger")
+disp("V_UT = 2 V, V_LT = -4 V, +-V_sat = +-10 V")
+disp("For unequal UTP and LTP values, a modified circuit is required as shown in the fig.9.52.")
+disp("The voltage V1 decides the UTP and LTP levels. Applying KVL to the output circuit and neglecting op-amp input current we can write,")
+disp("-IR2 - IR1 - x + V0 = 0")
+disp("Therefore, I = V0-x / R1+R2")
+disp("And V1 = IR1 + x")
+disp("Therefore, V1 = (V0-x/R1+R2)*R1 + x")
+disp("For +V_sat = 10 V,")
+disp("V1 = V_UT = 2 V,")
+disp("V0 = 10 V")
+disp("Therefore, 2 = (10-x/R1+R2)*R1 + x (1)")
+disp("For -V_sat = -10 V,")
+disp("V1 = V_LT = -4 V,")
+disp("V0 = -10 V")
+disp("Therefore, -4 = (-10-x/R1+R2)*R1 + x (2)")
+disp("Subtracting equations (2) and (1),")
+disp("Therefore, 6 = 20*R1 / R1+R2")
+disp("Therefore, R1+R2 = 3.333*R1")
+disp("Therefore, R2 = 2.333*R1 (3)")
+disp("Substituting (3) in equation (1)")
+disp("2 = ((10-x)*R1 / 3.333*R1) + x")
+disp("Therefore, 2.333*x = -3.3334")
+x=-3.3334/2.333
+format(7)
+disp(x,"Therefore, x =")
+disp("So actually polarity of the voltage source ''x'' must be opposite to what is assumed earlier as shown in fig.9.52.")
+disp("Choose R1 = 1 k-ohm hence R2 = 2.333 k-ohm")
+disp("Therefore, R_comp = R1 || R2 = 0.7 k-ohm")
+disp("Now as long as V_in is less than V_UT, the output is at +V_sat = 10 V and when V_in > V_UT, the output switches from +V_sat to -V_sat. While as long as V_in > V_LT, the output is at -V_sat = -10 V and when V_in < V_LT, the output switches from -V_sat to +V_sat.")
diff --git a/1133/CH9/EX9.12/Fig_exm9_12.xcos b/1133/CH9/EX9.12/Fig_exm9_12.xcos
new file mode 100755
index 000000000..a34540737
--- /dev/null
+++ b/1133/CH9/EX9.12/Fig_exm9_12.xcos
@@ -0,0 +1 @@
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diff --git a/1133/CH9/EX9.13/Example9_13.sce b/1133/CH9/EX9.13/Example9_13.sce
new file mode 100755
index 000000000..689293bed
--- /dev/null
+++ b/1133/CH9/EX9.13/Example9_13.sce
@@ -0,0 +1,12 @@
+//Example 9.13
+clc
+disp("(a) We know that,")
+vut=(86*15)/(86+100)
+format(5)
+disp(vut," V_UT(in V) = R1*+V_sat / R1+R2 =")
+vlt=(86*-15)/(86+100)
+disp("(b) We know that,")
+disp(vlt," V_LT(in V) = R1*-V_sat / R1+R2 =")
+disp("(c) We know that,")
+f0=1/0.02
+disp(f0," f0(in Hz) = 1 / 2*Rf*C_in*[+V_sat-V_LT/+V_sat-V_UT] =")
diff --git a/1133/CH9/EX9.17/Example9_17.sce b/1133/CH9/EX9.17/Example9_17.sce
new file mode 100755
index 000000000..5a689224b
--- /dev/null
+++ b/1133/CH9/EX9.17/Example9_17.sce
@@ -0,0 +1,14 @@
+//Example 9.17
+clc
+disp("The monostable multivibrator using op-amp produces the pulse waveform. The pulse width is given by,")
+disp(" T = RC*ln[1+V_D1/V_sat / 1-beta]")
+disp("where V_D1 = 0.7 V, +v_sat = +-12 V for op-amp 741")
+disp("beta = R2 / R1+R2 = 0.5 with R1 = R2")
+t=1/(2*10^3)
+format(6)
+disp(t,"T(in sec) = 1/f")
+disp("Choose C = 0.1 uF")
+disp("Therefore, 5*10^-4 = R*0.1*10^-6*ln[1+(0.7/12)/1-0.5]")
+disp("Therefore, R = 6.7 k-ohm")
+disp("Choose R1 = R2 = 10 k-ohm")
+disp("The designed circuit is shown in fig.9.63")
diff --git a/1133/CH9/EX9.17/Fig_exm9_17.xcos b/1133/CH9/EX9.17/Fig_exm9_17.xcos
new file mode 100755
index 000000000..0ee9d01c3
--- /dev/null
+++ b/1133/CH9/EX9.17/Fig_exm9_17.xcos
@@ -0,0 +1 @@
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diff --git a/1133/CH9/EX9.18/Example9_18.sce b/1133/CH9/EX9.18/Example9_18.sce
new file mode 100755
index 000000000..f5de1c0be
--- /dev/null
+++ b/1133/CH9/EX9.18/Example9_18.sce
@@ -0,0 +1,11 @@
+//Example 9.18
+clc
+disp("The required pulse width is,")
+disp(" W = 10 ms")
+disp("The pulse width is given by,")
+disp(" W = 1.1*R*C")
+disp("Therefore, 10*10^-3 = 1.1*R*C")
+disp("Therefore, RC = 9.0909*10^-3")
+disp("Choose C = 0.1 uF")
+disp("Therefore, R = 90.909 k-ohm ~ 91 k-ohm")
+disp("The designed circuit is shown in fig.9.78")
diff --git a/1133/CH9/EX9.18/Fig_exm9_18.xcos b/1133/CH9/EX9.18/Fig_exm9_18.xcos
new file mode 100755
index 000000000..bfe031d02
--- /dev/null
+++ b/1133/CH9/EX9.18/Fig_exm9_18.xcos
@@ -0,0 +1 @@
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diff --git a/1133/CH9/EX9.19/Example9_19.sce b/1133/CH9/EX9.19/Example9_19.sce
new file mode 100755
index 000000000..a095d7a50
--- /dev/null
+++ b/1133/CH9/EX9.19/Example9_19.sce
@@ -0,0 +1,14 @@
+//Example 9.19
+clc
+disp("Fig. 9.79 shows monostable circuit used to drive the relay.")
+disp("This relay should be energized for 5 second to hold heater ''ON'' for 5 seconds. Thus, T_ON for monostable is 5 seconds.")
+disp("We know that the pulse width is given by,")
+disp(" W = 1.1 RC")
+disp("Therefore, 5 = 1.1 RC")
+disp("Now, there are two unknowns. In this case, we have to select value for capacitor and with the selected value we have to find the value of resistance from the formula.")
+disp("Therefore, If capacitor value is 10 uF")
+disp("then 5 = 1.1*R*10 uF")
+r=(5/(1.1*10*10^-6))*10^-3
+format(7)
+disp(r,"Therefore, R(in k-ohm) =")
+disp("The calculated value is not standard value, but we can adjust this value by connecting variable resistance i.e. potentiometer.")
diff --git a/1133/CH9/EX9.19/Fig_exm9_19.xcos b/1133/CH9/EX9.19/Fig_exm9_19.xcos
new file mode 100755
index 000000000..1e7b1a300
--- /dev/null
+++ b/1133/CH9/EX9.19/Fig_exm9_19.xcos
@@ -0,0 +1 @@
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diff --git a/1133/CH9/EX9.20/Example9_20.sce b/1133/CH9/EX9.20/Example9_20.sce
new file mode 100755
index 000000000..12268deb1
--- /dev/null
+++ b/1133/CH9/EX9.20/Example9_20.sce
@@ -0,0 +1,12 @@
+//Example 9.20
+clc
+disp("The requirement is that the door must be open for 15 sec after receiving a trigger signal and then gets shut door automatically. This requires IC 555 in a monostable mode with a pulse width of 15 sec.")
+disp("Therefore, W = 15 sec")
+disp("Now W = 1.1 RC")
+disp("Therefore, 15 = 1.1 RC")
+disp("Choose C = 100 uF")
+r=(15/(1.1*100*10^-6))*10^-3
+format(8)
+disp(r,"Therefore, R(in k-ohm) =")
+disp("The designed circuit is shown in the fig. 9.80")
+disp("The supply voltage 10 or 15 V has no effect on the operation of the circuit or the values of R and C selected.")
diff --git a/1133/CH9/EX9.20/Fig_exm9_20.xcos b/1133/CH9/EX9.20/Fig_exm9_20.xcos
new file mode 100755
index 000000000..8ba7deeb7
--- /dev/null
+++ b/1133/CH9/EX9.20/Fig_exm9_20.xcos
@@ -0,0 +1 @@
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y="180.0"/></TextBlock></root></mxGraphModel><mxCell as="defaultParent" id="5f0ce0e9:13f57136374:-7d3b" parent="5f0ce0e9:13f57136374:-7d3a"/><mxPoint as="origin" x="-1.5"/></XcosDiagram> \ No newline at end of file
diff --git a/1133/CH9/EX9.21/Example9_21.sce b/1133/CH9/EX9.21/Example9_21.sce
new file mode 100755
index 000000000..a42116a2f
--- /dev/null
+++ b/1133/CH9/EX9.21/Example9_21.sce
@@ -0,0 +1,11 @@
+///Example 9.21
+clc
+disp("The frequency of output is given by,")
+f=(1.44/(12*0.01*10^-3))*10^-3
+format(3)
+disp(f," f(in kHz) = 1.44 / (R_A+2*R_B)*C =")
+disp("The duty cycle is given by,")
+d=8/12
+format(7)
+disp(d," D = R_A+R_B / R_A+2*R_B =")
+disp("Thus the duty cycle 66.67%")
diff --git a/1133/CH9/EX9.26/Example9_26.sce b/1133/CH9/EX9.26/Example9_26.sce
new file mode 100755
index 000000000..de90a2355
--- /dev/null
+++ b/1133/CH9/EX9.26/Example9_26.sce
@@ -0,0 +1,26 @@
+//Example 9.26
+clc
+disp("f = 1 kHz")
+disp("D = 75% = 0.75")
+disp("Now f = 1.44 / (R_A+2*R_B)*C")
+disp("Therefore, 1*10^3 = 1.44 / (R_A+2*R_B)*C")
+disp("Therefore, (R_A+2*R_B)*C = 1.44*10^-3 ....(1)")
+disp("Therefore, while %D = ((R_A+R_B)/(R_A+2*R_B))*100")
+disp("Therefore, 0.75 = R_A+R_B / R_A+2*R_B")
+disp("Therefore, R_A+2*R_B = (R_A+R_B)/0.75")
+disp("Therefore, R_A+2*R_B = 1.33*(R_A+R_B)")
+disp("Therefore, 0.66*R_B = 0.33*R_A")
+disp("Therefore, R_B = 0.5*R_A ....(2)")
+disp("Choose C = 0.1 uF")
+disp("Substituting in (1),")
+disp("(R_A+2*R_B)*0.1*10^-6 = 1.44*10^-3")
+disp("Therefore, R_A+2*R_B = 14400 ....(3)")
+disp("Substituting (2) in (3),")
+disp("R_A + 2(0.5*R_A) = 14400")
+ra=(14400/2)*10^-3
+format(4)
+disp(ra,"Therefore, R_A(in k-ohm) =")
+rb=0.5*7.2
+disp(rb,"Therefore, R_B(in k-ohm) =")
+disp("and C = 0.1 uF")
+disp("Hence the circuit diagram is as shown in fig.9.100")
diff --git a/1133/CH9/EX9.26/Fig_exm9_26.xcos b/1133/CH9/EX9.26/Fig_exm9_26.xcos
new file mode 100755
index 000000000..2dde0096a
--- /dev/null
+++ b/1133/CH9/EX9.26/Fig_exm9_26.xcos
@@ -0,0 +1 @@
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diff --git a/1133/CH9/EX9.27/Example9_27.sce b/1133/CH9/EX9.27/Example9_27.sce
new file mode 100755
index 000000000..6f6610cb6
--- /dev/null
+++ b/1133/CH9/EX9.27/Example9_27.sce
@@ -0,0 +1,19 @@
+//Example 9.27
+clc
+disp("T_ON = 0.6 ms, T = 1 ms")
+d=0.6*100
+disp(d,"Therefore, D(in percentage) = t_ON / T =")
+disp("Now D = R_A+R_B / R_A+2*R_B = 0.6")
+disp("Therefore, R_A+R_B = 0.6*R_A + 1.2*R_B")
+disp("Therefore, 0.4*R_B = 0.2*R_B")
+disp("Therefore, R_B = 2*R_A ....(1)")
+disp(" f = 1.44 / (R_A+2*R_B)*C = 1/T = 1000")
+disp("Choose C = 0.1 uF")
+disp("Therefore, R_A+2*R_B = 14400")
+disp("Using (1), 5*R_A = 14400")
+ra=(14400/5)*10^-3
+format(5)
+disp(ra,"Therefore, R_A(in k-ohm) =")
+rb=2.88*2
+disp(rb," R_B(in k-ohm) =")
+disp("The circuit is shown in the fig.9.101")
diff --git a/1133/CH9/EX9.27/Fig_exm9_27.xcos b/1133/CH9/EX9.27/Fig_exm9_27.xcos
new file mode 100755
index 000000000..7b33ea4f0
--- /dev/null
+++ b/1133/CH9/EX9.27/Fig_exm9_27.xcos
@@ -0,0 +1 @@
+<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" title="Fig(exm9_27)"><!--Xcos - 1.0 - scilab-5.4.1 - 20130329 1735--><mxGraphModel as="model"><root><mxCell id="460cf9e9:13f614881ef:-7dbb"/><mxCell id="460cf9e9:13f614881ef:-7dbc" parent="460cf9e9:13f614881ef:-7dbb"/><SuperBlock id="460cf9e9:13f614881ef:-7db9" parent="460cf9e9:13f614881ef:-7dbc" simulationFunctionType="DEFAULT" style="SUPER_f;flip=false;mirror=false"><SuperBlockDiagram as="child" background="-1" title="Untitled - 5:08:11 PM"><!--Xcos - 1.0 - scilab-5.4.1 - 20130329 1735--><Array as="context" scilabClass="String[]"><add value=""/></Array><mxGraphModel as="model"><root><mxCell id="460cf9e9:13f614881ef:-7db7"/><mxCell id="460cf9e9:13f614881ef:-7db8" parent="460cf9e9:13f614881ef:-7db7"/><ImplicitOutBlock id="460cf9e9:13f614881ef:-7db6" ordering="1" parent="460cf9e9:13f614881ef:-7db8" simulationFunctionType="DEFAULT" style="OUTIMPL_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" 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width="8.0" x="-8.0" y="146.0"/></ImplicitInputPort></ImplicitLink></root></mxGraphModel><mxCell as="defaultParent" id="460cf9e9:13f614881ef:-7dbc" parent="460cf9e9:13f614881ef:-7dbb"/></XcosDiagram> \ No newline at end of file
diff --git a/1133/CH9/EX9.28/Example9_28.sce b/1133/CH9/EX9.28/Example9_28.sce
new file mode 100755
index 000000000..2f905dbe7
--- /dev/null
+++ b/1133/CH9/EX9.28/Example9_28.sce
@@ -0,0 +1,23 @@
+//Example 9.28
+clc
+disp("T_ON = T_OFF = 0.5 ms")
+disp("Therefore, T = T_ON + T_OFF = 1 ms")
+disp("i.e. f = 1/T = 1 kHz")
+disp("Now T_d = T_OFF = 0.69*R_B*C")
+disp("Choose C = 0.1 uF")
+rb=((0.5*10^-3)/(0.69*0.1*10^-6))*10^-3
+format(6)
+disp(rb,"Therefore, R_B(in k-ohm) =")
+disp("Now duty cycle is 50% so R_A = R_B = 7.246 k-ohm")
+disp("Practically a modified circuit is required for 50% duty cycle where diode is connected across R_B and charging takes place through R_A and diode. And R_B must be equal to sum of R_A and diode forward resistance. So to have perfect square wave, R_A is kept variable i.e. pot of say 10 k-ohm in this case. It is then adjusted to obtain precise square wave. The resistance required in series with LED to be connected is,")
+disp("R = V_0-V_LED / I_LED")
+disp("Assuming V_LED = 0.7 V")
+r=(5-0.7)/(50*10^-3)
+format(3)
+disp(r,"Current limiting R(ohm) = ")
+disp("The voltage of R is")
+disp("P = (50*10^-3)^2 * 100")
+p = ((50*10^-3)^2)*100
+disp(p,"P(in W) =")
+disp("Both resistors R can be of 1/4 W")
+disp("The required circuit is shown in the fig.9.102")
diff --git a/1133/CH9/EX9.28/Fig_exm9_28.xcos b/1133/CH9/EX9.28/Fig_exm9_28.xcos
new file mode 100755
index 000000000..e556f3410
--- /dev/null
+++ b/1133/CH9/EX9.28/Fig_exm9_28.xcos
@@ -0,0 +1 @@
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x="170.0" y="190.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="260.0" y="190.0"/><mxPoint x="260.0" y="260.0"/><mxPoint x="280.0" y="260.0"/><mxPoint x="280.0" y="270.0"/></Array></mxGeometry><mxCell as="parent" id="3ab92227:13fa46b1daa:-7ea6" parent="3ab92227:13fa46b1daa:-7ea5"/><ImplicitOutputPort as="source" dataType="UNKNOW_TYPE" id="3ab92227:13fa46b1daa:-7da0" ordering="2" parent="3ab92227:13fa46b1daa:-7da3" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort as="target" dataType="UNKNOW_TYPE" id="3ab92227:13fa46b1daa:-7e8a" ordering="6" parent="3ab92227:13fa46b1daa:-7ea3" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="176.0"/></ImplicitInputPort></ImplicitLink><TextBlock id="3ab92227:13fa46b1daa:-7d9c" parent="3ab92227:13fa46b1daa:-7ea6" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;flip=false;mirror=false" value="100 ohm, 1/4 W"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="100 ohm, 1/4 W"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="100 ohm, 1/4 W"/></ScilabString><mxGeometry as="geometry" height="20.0" width="40.0" x="550.0" y="90.0"/></TextBlock><TextBlock id="3ab92227:13fa46b1daa:-7d99" parent="3ab92227:13fa46b1daa:-7ea6" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;flip=false;mirror=false" value="100 ohm, 1/4 W"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="100 ohm, 1/4 W"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data 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width="3"><data column="0" line="0" value="Red LED"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Red LED"/></ScilabString><mxGeometry as="geometry" height="20.0" width="20.0" x="540.0" y="280.0"/></TextBlock></root></mxGraphModel><mxCell as="defaultParent" id="3ab92227:13fa46b1daa:-7ea6" parent="3ab92227:13fa46b1daa:-7ea5"/></XcosDiagram> \ No newline at end of file
diff --git a/1133/CH9/EX9.3/Example9_3.sce b/1133/CH9/EX9.3/Example9_3.sce
new file mode 100755
index 000000000..aa04d62fb
--- /dev/null
+++ b/1133/CH9/EX9.3/Example9_3.sce
@@ -0,0 +1,8 @@
+//Example 9.3
+clc
+disp("I_iOS = 20 nA, I_b = 60 nA")
+disp("Now I_iOS = I_b1 - I_b2 = 20")
+disp(" I_b = I_b1+I_b2 / 2 = 60")
+disp("Therefore, I_b1 + I_b2 = 120")
+disp("Therefore, 2*I_b1 = 140")
+disp("Therefore, I_b1 = 70 nA, I_b2 = 50 nA")
diff --git a/1133/CH9/EX9.32/Example9_32.sce b/1133/CH9/EX9.32/Example9_32.sce
new file mode 100755
index 000000000..2a4b334af
--- /dev/null
+++ b/1133/CH9/EX9.32/Example9_32.sce
@@ -0,0 +1,10 @@
+//Example 9.32
+clc
+disp("For the given DAC,")
+disp(" n = Number of bits = 8")
+disp("(i) Resolution = 2^n = 2^8 = 256")
+disp("i.e. the output voltage can have 256 different values including zero.")
+disp("(ii) V_0FS = Full scale output voltage")
+disp(" = 2.55 V")
+disp("Therefore, Resolution = V_0FS / 2^n - 1 = 2.55 / 2^8 - 1 = 10mV / 1LSB")
+disp("Thus an input change of 1LSB causes the output to change by 10mV")
diff --git a/1133/CH9/EX9.33/Example9_33.sce b/1133/CH9/EX9.33/Example9_33.sce
new file mode 100755
index 000000000..ba2da3b6b
--- /dev/null
+++ b/1133/CH9/EX9.33/Example9_33.sce
@@ -0,0 +1,9 @@
+//Example 9.33
+clc
+disp("For given DAC,")
+disp(" n = 4")
+disp("Therefore, V_0FS = 15 V")
+disp("Therefore, Resolution = V_0FS / 2^n - 1 = 1V / LSB")
+disp("Therefore, V0 = Resolution * D")
+disp("Now D = Decimal of 0110 = 6")
+disp("Therefore, V0 = 1V / LSB * 6 = 6 V")
diff --git a/1133/CH9/EX9.34/Example9_34.sce b/1133/CH9/EX9.34/Example9_34.sce
new file mode 100755
index 000000000..635e70c3a
--- /dev/null
+++ b/1133/CH9/EX9.34/Example9_34.sce
@@ -0,0 +1,7 @@
+//Example 9.34
+clc
+disp("Resolution = V_0FS / 2^n - 1")
+disp("Therefore, 20 = V_0FS / 2^n - 1")
+disp("Therefore, V_0FS = 5.1 V")
+disp(" D = Equivalent of 10000000 = 128")
+disp("Therefore, V0 = Resolution * D = 20 * 128 = 2.56 V")
diff --git a/1133/CH9/EX9.35/Example9_35.sce b/1133/CH9/EX9.35/Example9_35.sce
new file mode 100755
index 000000000..c3371b6f1
--- /dev/null
+++ b/1133/CH9/EX9.35/Example9_35.sce
@@ -0,0 +1,9 @@
+//Example 9.35
+clc
+disp("For given DAC, n = 4, V_0FS = +5 V")
+disp("Resolution = V_0FS / 2^n - 1 = 1/3 V/LSB")
+disp("Therefore, V0 = Resolution * D")
+disp("For D = Decimal od 10000 = 8")
+disp(" V0 = 1/3 * 8 = 2.6667 V")
+disp("For D = Decimal of 1111 = 15")
+disp(" V0 = 1/3 * 15 = 5 V")
diff --git a/1133/CH9/EX9.36/Example9_36.sce b/1133/CH9/EX9.36/Example9_36.sce
new file mode 100755
index 000000000..800e750fc
--- /dev/null
+++ b/1133/CH9/EX9.36/Example9_36.sce
@@ -0,0 +1,12 @@
+//Example 9.36
+clc
+disp("For 12-bit DAC, step size is 8 mV")
+v=(8*10^-3)*((2^12)-1)
+format(6)
+disp(v," V_0FS = 8 mV * 2^12 - 1 =")
+r=((8*10^-3)/32.76)*100
+format(8)
+disp(r,"% Resolution = 8mV/32.76V * 100 =")
+q=(8*10^-3)*1389
+format(7)
+disp(q,"The output voltage for the input 010101101101 is = 8mV * 1389 =")
diff --git a/1133/CH9/EX9.38/Example9_38.sce b/1133/CH9/EX9.38/Example9_38.sce
new file mode 100755
index 000000000..b0ffab528
--- /dev/null
+++ b/1133/CH9/EX9.38/Example9_38.sce
@@ -0,0 +1,14 @@
+//Example 9.38.
+clc
+disp("(a) From equation(1) we have,")
+r=2^8
+format(4)
+disp(r,"Resolution = 2^8 =")
+disp("and from equation(2) we have,")
+disp("Resolution = 5.1V/(2^8 - 1) = 20 mV/LSB")
+disp("Therefore, we can say that to change output by 1 LSB we have to change input by 20 mV")
+disp("(b) For 1.28 V analog input, digital output can be calculated as,")
+d=1.28/(20*10^-3)
+format(3)
+disp(d,"D (in LSBs) = 1.28V / 20 mV/LSB =")
+disp("The binary equivalent of 64 is 0100 0000")
diff --git a/1133/CH9/EX9.39/Example9_39.sce b/1133/CH9/EX9.39/Example9_39.sce
new file mode 100755
index 000000000..88e23762a
--- /dev/null
+++ b/1133/CH9/EX9.39/Example9_39.sce
@@ -0,0 +1,6 @@
+//Example 9.39
+clc
+disp("From equation(3) we get")
+qe=(4.095/(4095*2))*10^3
+format(4)
+disp(qe,"Q_E(in mV) = 4.095 / (4096-1)*2 =")
diff --git a/1133/CH9/EX9.4/Example9_4.sce b/1133/CH9/EX9.4/Example9_4.sce
new file mode 100755
index 000000000..7fa95c0c0
--- /dev/null
+++ b/1133/CH9/EX9.4/Example9_4.sce
@@ -0,0 +1,15 @@
+//Example 9.4
+clc
+disp("V_UT = +4 V, V_LT = -4 V, Supply = +- 15 V")
+disp("+- V_sat = 0.9 x [Supply] = +- 13.5 V = Vo")
+disp("For op-amp 741, I_B(max) = 500 nA")
+disp("Therefore, I2 = 100I_B(max) = 50 uA")
+r2=(4/(50*10^-6))*10^-3
+disp(r2,"Therefore, R2(in k-ohm) = V_UT / I2 =")
+i2=(4/(82*10^3))*10^6
+format(6)
+disp(i2,"Recalculating I2, I2 = V_UT / R2 =")
+r1=((13.5-4)/(48.78*10^-6))*10^-3
+format(7)
+disp(r1,"Therefore, R1 = Vo-V_UT / I2 = +V_sat-V_UT / I2 =")
+disp("The designed circuit is shown in fig")
diff --git a/1133/CH9/EX9.4/Fig_exm9_4.xcos b/1133/CH9/EX9.4/Fig_exm9_4.xcos
new file mode 100755
index 000000000..7956f95c7
--- /dev/null
+++ b/1133/CH9/EX9.4/Fig_exm9_4.xcos
@@ -0,0 +1 @@
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style="TEXT_f;fontStyle=1;flip=false;mirror=false" value="Vo"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Vo"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Vo"/></ScilabString><mxGeometry as="geometry" height="20.0" width="20.0" x="400.0" y="90.0"/></TextBlock><TextBlock id="-33fcee59:13f2f8c40db:-79a7" parent="-33fcee59:13f2f8c40db:-7a20" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;flip=false;mirror=false" value="Vin"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Vin"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Vin"/></ScilabString><mxGeometry as="geometry" height="20.0" width="20.0" x="50.0" y="90.0"/></TextBlock><TextBlock id="-33fcee59:13f2f8c40db:-79a4" parent="-33fcee59:13f2f8c40db:-7a20" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;flip=false;mirror=false" value="741"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="741"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="741"/></ScilabString><mxGeometry as="geometry" height="20.0" width="20.0" x="200.0" y="100.0"/></TextBlock></root></mxGraphModel><mxCell as="defaultParent" id="-33fcee59:13f2f8c40db:-7a20" parent="-33fcee59:13f2f8c40db:-7a1f"/></XcosDiagram> \ No newline at end of file
diff --git a/1133/CH9/EX9.40/Example9_40.sce b/1133/CH9/EX9.40/Example9_40.sce
new file mode 100755
index 000000000..33804bbab
--- /dev/null
+++ b/1133/CH9/EX9.40/Example9_40.sce
@@ -0,0 +1,10 @@
+//Example 9.40
+clc
+disp("We know that,")
+disp("t2 = (V1/VR)*t1")
+t2=83.33
+format(6)
+disp(t2,"(i) t2(in ms) = (100/100)*83.33 =")
+disp("(ii) V1 = 200 mV")
+t2=83.33*2
+disp(t2,"Therefore, t2(in ms) = (200/100)*83.33 =")
diff --git a/1133/CH9/EX9.41/Example9_41.sce b/1133/CH9/EX9.41/Example9_41.sce
new file mode 100755
index 000000000..dba5ed248
--- /dev/null
+++ b/1133/CH9/EX9.41/Example9_41.sce
@@ -0,0 +1,9 @@
+//Example 8.41
+clc
+disp("The digital output is given as,")
+disp("Digital output = (Counts/Second)*t1*(V_i/V_R)")
+disp("Now Clock frequency = 12 kHz")
+disp(" i.e. = 12000 counts/second")
+d=12000*83.33*(100/100)*10^-3
+format(5)
+disp(d,"Therefore, Digital output(in counts) = 12000*83.33*(100/100)*10^-3 =")
diff --git a/1133/CH9/EX9.42/Example9_42.sce b/1133/CH9/EX9.42/Example9_42.sce
new file mode 100755
index 000000000..6b6d044e8
--- /dev/null
+++ b/1133/CH9/EX9.42/Example9_42.sce
@@ -0,0 +1,8 @@
+//Example 9.42.
+clc
+disp(" f = 1 MHz")
+disp("Therefore, T = 1/f = 1 / 1*10^6 = 1 usec")
+disp(" n = 8")
+tc=1*(8+1)
+format(2)
+disp(tc,"Therefore, T_C(in usec) = T*(n+1) =")
diff --git a/1133/CH9/EX9.43/Example9_43.sce b/1133/CH9/EX9.43/Example9_43.sce
new file mode 100755
index 000000000..06248f339
--- /dev/null
+++ b/1133/CH9/EX9.43/Example9_43.sce
@@ -0,0 +1,6 @@
+//Example 9.43
+clc
+disp("The maximum frequency is given by,")
+f=1/(2*%pi*(9*10^-6)*2^8)
+format(6)
+disp(f,"f_max(in Hz) = 1 / 2*pi*(T_C)*2^n =")
diff --git a/1133/CH9/EX9.5/Example9_5.sce b/1133/CH9/EX9.5/Example9_5.sce
new file mode 100755
index 000000000..2518fbe57
--- /dev/null
+++ b/1133/CH9/EX9.5/Example9_5.sce
@@ -0,0 +1,15 @@
+//Example 9.5
+clc
+disp("V_CC = +15 V")
+vsat=0.9*15
+format(5)
+disp(vsat,"Therefore, V_sat(in V) = 0.9 V_CC =")
+disp(" R1 = 51 k-ohm, R2 = 120 ohm")
+vut=(13.5*120)/((51*10^3)+120)
+format(8)
+disp(vut,"V_UT(in V) = +V_sat*R2 / R1+R2 =")
+vlt=(-13.5*120)/((51*10^3)+120)
+disp(vlt,"V_LT(in V) = -V_sat*R2 / R1+R2 =")
+h=(0.03169*2)*10^3
+format(6)
+disp(h,"H(in mV) = V_UT - V_LT =")
diff --git a/1133/CH9/EX9.6/Example9_6.sce b/1133/CH9/EX9.6/Example9_6.sce
new file mode 100755
index 000000000..3af00ba6f
--- /dev/null
+++ b/1133/CH9/EX9.6/Example9_6.sce
@@ -0,0 +1,9 @@
+//Example 9.6
+clc
+disp("As input is applied to the non-inverting terminal, the circuit is non-inverting Schmitt trigger.")
+disp(" R1 = 100 k-ohm, R2 = 1 k-ohm")
+vut=13.5*(1/100)
+format(6)
+disp(vut,"Therefore, V_UT(in V) = +V_sat * R2/R1 =")
+vlt=-13.5*(1/100)
+disp(vlt,"Therefore, V_LT(in V) = -V_sat * R2/R1 =")
diff --git a/1133/CH9/EX9.8/Example9_8.sce b/1133/CH9/EX9.8/Example9_8.sce
new file mode 100755
index 000000000..57dee03a4
--- /dev/null
+++ b/1133/CH9/EX9.8/Example9_8.sce
@@ -0,0 +1,30 @@
+//Example 9.8
+clc
+disp("LTP = -1.5 V and H = 2 V")
+disp("Now H = UTP - LTP")
+disp("Therefore, 2 = UTP - (-1.5)")
+disp("Therefore, UTP = 0.5 V")
+disp("In the fig.9.47, the angle theta can be obtained from equation of sine wave. Sine wave is represented as,")
+disp("V_in = V_p*sin(pi+thata) when pi < omega*t < 2pi")
+disp("At LTP, -1.5 = 5*sin(pi+theta)")
+disp(" = - 5*sin(theta)")
+disp("Therefore, sin(theta) = 0.3")
+t=asind(0.3)
+format(6)
+disp(t,"Therefore, theta(in degree) =")
+disp("The time period of sine wave is,")
+T=1
+disp(T," T(in ms) = 1/f =")
+disp("At UTP, 0.5 = V_p*sin(theta)")
+disp("Therefore, 0.5 = 5 * sin(theta)")
+disp("Therefore, sin(theta) = 0.1")
+t=asind(0.1)
+disp(t,"Therefore, theta(in degree) =")
+disp("The time T1 for output is from 5.739 degree to (180 degree + 17.45 degree)")
+t1=197.45-5.739
+format(7)
+disp(t1,"Therefore, T1(in degree) =")
+T1=(191.71/360)
+disp(T1,"i.e. T1(ms) =")
+t2=1-0.5325
+disp(t2,"and T2(in ms) = T - T1 =")
diff --git a/1133/CH9/EX9.9/Example9_9.sce b/1133/CH9/EX9.9/Example9_9.sce
new file mode 100755
index 000000000..48e230107
--- /dev/null
+++ b/1133/CH9/EX9.9/Example9_9.sce
@@ -0,0 +1,17 @@
+//Example 9.9
+clc
+disp("Given +V_sat = 12 V, -V_sat = -12 V, V_H = 6 V")
+disp("We know that hysteresis width is given as")
+disp(" V_H = (R2/R1+R2)[+V_sat-V_sat]")
+disp("Therefore, R2 / R1+R2 = V_H / +V_sat-V_sat")
+r=6/(24)
+disp(r,"Therefore, R2 / R1+R2 =")
+disp("Therefore, R2 = 0.25R1 + 0.25R2")
+disp("Therefore, 0.75R2 = 0.25R1")
+r2=0.25/0.75
+format(7)
+disp(r2,"Therefore, R2 / R1 =")
+disp("Assuming R2 = 10 k-ohm")
+r1=(10000/0.3333)*10^-3
+format(3)
+disp(r1," R1(in k-ohm) =")