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author | priyanka | 2015-06-24 15:03:17 +0530 |
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committer | priyanka | 2015-06-24 15:03:17 +0530 |
commit | b1f5c3f8d6671b4331cef1dcebdf63b7a43a3a2b (patch) | |
tree | ab291cffc65280e58ac82470ba63fbcca7805165 /latex/tmp_2609_data.txt | |
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diff --git a/latex/tmp_2609_data.txt b/latex/tmp_2609_data.txt new file mode 100755 index 000000000..e2e43187d --- /dev/null +++ b/latex/tmp_2609_data.txt @@ -0,0 +1,123 @@ +13#Voltage Regulators#13.9#Regulated Power Supply#ex_13_9.sce#2609/CH13/EX13.9/ex_13_9.sce#S##89211 +13#Voltage Regulators#13.8#Adjustable Voltage regulator#ex_13_8.sce#2609/CH13/EX13.8/ex_13_8.sce#S##89210 +13#Voltage Regulators#13.7#Value of R1#ex_13_7.sce#2609/CH13/EX13.7/ex_13_7.sce#S##89209 +13#Voltage Regulators#13.6#Calculate Iext#ex_13_6.sce#2609/CH13/EX13.6/ex_13_6.sce#S##89208 +13#Voltage Regulators#13.5#Design a regulator circuit#ex_13_5.sce#2609/CH13/EX13.5/ex_13_5.sce#S##89207 +13#Voltage Regulators#13.4#Determine the output#ex_13_4.sce#2609/CH13/EX13.4/ex_13_4.sce#S##89206 +13#Voltage Regulators#13.3#Calculate Load Current#ex_13_3.sce#2609/CH13/EX13.3/ex_13_3.sce#S##89205 +13#Voltage Regulators#13.2#Load Regulation#ex_13_2.sce#2609/CH13/EX13.2/ex_13_2.sce#S##89204 +13#Voltage Regulators#13.10#Regulated Power Supply#ex_13_10.sce#2609/CH13/EX13.10/ex_13_10.sce#S##89212 +13#Voltage Regulators#13.1#Regulation#ex_13_1.sce#2609/CH13/EX13.1/ex_13_1.sce#S##89203 +12#Operational Transconductance Amplifier#12.1#f3dB frequency#ex_12_1.sce#2609/CH12/EX12.1/ex_12_1.sce#S##89202 +11#Non linear applications of opamp#11.8#Calculate Output#ex_11_8.sce#2609/CH11/EX11.8/ex_11_8.sce#S##89201 +11#Non linear applications of opamp#11.7#Calculate Output#ex_11_7.sce#2609/CH11/EX11.7/ex_11_7.sce#S##89200 +11#Non linear applications of opamp#11.4#Output Voltage#ex_11_4.sce#2609/CH11/EX11.4/ex_11_4.sce#S##89199 +11#Non linear applications of opamp#11.3#Output Voltage#ex_11_3.sce#2609/CH11/EX11.3/ex_11_3.sce#S##89198 +11#Non linear applications of opamp#11.1#Output Voltage#ex_11_1.sce#2609/CH11/EX11.1/ex_11_1.sce#S##89197 +10#Comparators#10.5#Threshold and hysteresis voltage#ex_10_5.sce#2609/CH10/EX10.5/ex_10_5.sce#S##89196 +10#Comparators#10.4#Output Voltage#Ex10_4.sce#2609/CH10/EX10.4/Ex10_4.sce#S##99996 +10#Comparators#10.3#Phase shift#ex_10_3.sce#2609/CH10/EX10.3/ex_10_3.sce#S##89195 +10#Comparators#10.2#Upper and Lower Trip points#ex_10_2.sce#2609/CH10/EX10.2/ex_10_2.sce#S##89194 +10#Comparators#10.1#Output Voltage#Ex10_1.sce#2609/CH10/EX10.1/Ex10_1.sce#S##99995 +9#Active Filters#9.9#Second order Butterworth filter#Ex9_9.sce#2609/CH9/EX9.9/Ex9_9.sce#S##99968 +9#Active Filters#9.8#Second order Butterworth filter#Ex9_8.sce#2609/CH9/EX9.8/Ex9_8.sce#S##99967 +9#Active Filters#9.7#Retune the high pass filter#Ex9_7.sce#2609/CH9/EX9.7/Ex9_7.sce#S##99966 +9#Active Filters#9.6#First order high pass filter#Ex9_6.sce#2609/CH9/EX9.6/Ex9_6.sce#S##99965 +9#Active Filters#9.5#Convert Cutoff frequency#Ex9_5.sce#2609/CH9/EX9.5/Ex9_5.sce#S##99964 +9#Active Filters#9.4#First order low pass filter#Ex9_4.sce#2609/CH9/EX9.4/Ex9_4.sce#S##99963 +9#Active Filters#9.3#Find Bandwidth#Ex9_3.sce#2609/CH9/EX9.3/Ex9_3.sce#S##99962 +9#Active Filters#9.20#Second order notch filter#Ex9_20.sce#2609/CH9/EX9.20/Ex9_20.sce#S##99978 +9#Active Filters#9.2#First order low pass filter#Ex9_2.sce#2609/CH9/EX9.2/Ex9_2.sce#S##99961 +9#Active Filters#9.18#Design a band pass filter#Ex9_18.sce#2609/CH9/EX9.18/Ex9_18.sce#S##99977 +9#Active Filters#9.17#Design a band pass filter#Ex9_17.sce#2609/CH9/EX9.17/Ex9_17.sce#S##99976 +9#Active Filters#9.16#Design a band pass filter#Ex9_16.sce#2609/CH9/EX9.16/Ex9_16.sce#S##99975 +9#Active Filters#9.15#Design a band pass filter#Ex9_15.sce#2609/CH9/EX9.15/Ex9_15.sce#S##99974 +9#Active Filters#9.14#Third order low pass butterworth filter#Ex9_14.sce#2609/CH9/EX9.14/Ex9_14.sce#S##99973 +9#Active Filters#9.13#Second order low pass filter#Ex9_13.sce#2609/CH9/EX9.13/Ex9_13.sce#S##99972 +9#Active Filters#9.12#Second order low pass filter#Ex9_12.sce#2609/CH9/EX9.12/Ex9_12.sce#S##99971 +9#Active Filters#9.11#Low pass bessel filter#Ex9_11.sce#2609/CH9/EX9.11/Ex9_11.sce#S##99970 +9#Active Filters#9.10#Second order low pass filter#Ex9_10.sce#2609/CH9/EX9.10/Ex9_10.sce#S##99969 +8#Frequency Synthesizers and PLL#8.3#Clock frequency and no of bits#ex_8_3.sce#2609/CH8/EX8.3/ex_8_3.sce#S##89193 +8#Frequency Synthesizers and PLL#8.2#Design a FM demodulator#ex_8_2.sce#2609/CH8/EX8.2/ex_8_2.sce#S##89192 +8#Frequency Synthesizers and PLL#8.1#Lock Capture and pullin range#ex_8_1.sce#2609/CH8/EX8.1/ex_8_1.sce#S##89191 +7#The 555 timer#7.7#Astable Multivibrator#ex_7_7.sce#2609/CH7/EX7.7/ex_7_7.sce#S##89190 +7#The 555 timer#7.6#Astable Multivibrator#ex_7_6.sce#2609/CH7/EX7.6/ex_7_6.sce#S##89189 +7#The 555 timer#7.5#Astable Multivibrator#ex_7_5.sce#2609/CH7/EX7.5/ex_7_5.sce#S##89188 +7#The 555 timer#7.4#Design a square wave generator#ex_7_4.sce#2609/CH7/EX7.4/ex_7_4.sce#S##89187 +7#The 555 timer#7.3#Astable Multivibrator#ex_7_3.sce#2609/CH7/EX7.3/ex_7_3.sce#S##89186 +7#The 555 timer#7.2#Value of R#ex_7_2.sce#2609/CH7/EX7.2/ex_7_2.sce#S##89185 +7#The 555 timer#7.1#Monostable Multivibrator#ex_7_1.sce#2609/CH7/EX7.1/ex_7_1.sce#S##89184 +6#Oscillators and waveform generators#6.9#Frequency of oscillation#Ex6_9.sce#2609/CH6/EX6.9/Ex6_9.sce#S##99950 +6#Oscillators and waveform generators#6.8#Causes of distortion#Ex6_8.sce#2609/CH6/EX6.8/Ex6_8.sce#S##99949 +6#Oscillators and waveform generators#6.7#Design a quadrature oscillator#Ex6_7.sce#2609/CH6/EX6.7/Ex6_7.sce#S##99948 +6#Oscillators and waveform generators#6.6#Frequency of oscillation#Ex6_6.sce#2609/CH6/EX6.6/Ex6_6.sce#S##99947 +6#Oscillators and waveform generators#6.5#Design a wein bridge oscillator#Ex6_5.sce#2609/CH6/EX6.5/Ex6_5.sce#S##99946 +6#Oscillators and waveform generators#6.3#Design a wein bridge oscillator#Ex6_3.sce#2609/CH6/EX6.3/Ex6_3.sce#S##99945 +6#Oscillators and waveform generators#6.19#V0 V7 I and fo#Ex6_19.sce#2609/CH6/EX6.19/Ex6_19.sce#S##99960 +6#Oscillators and waveform generators#6.18#Design a function generator#Ex6_18.sce#2609/CH6/EX6.18/Ex6_18.sce#S##99959 +6#Oscillators and waveform generators#6.17#Series and parallel resonant frequencies#Ex6_17.sce#2609/CH6/EX6.17/Ex6_17.sce#S##99958 +6#Oscillators and waveform generators#6.16#Frequency of output#Ex6_16.sce#2609/CH6/EX6.16/Ex6_16.sce#S##99957 +6#Oscillators and waveform generators#6.15#Triangular wave generator#Ex6_15.sce#2609/CH6/EX6.15/Ex6_15.sce#S##99956 +6#Oscillators and waveform generators#6.14#Peak output voltage#Ex6_14.sce#2609/CH6/EX6.14/Ex6_14.sce#S##99955 +6#Oscillators and waveform generators#6.13#Triangular wave generator#Ex6_13.sce#2609/CH6/EX6.13/Ex6_13.sce#S##99954 +6#Oscillators and waveform generators#6.12#Frequency of output#Ex6_12.sce#2609/CH6/EX6.12/Ex6_12.sce#S##99953 +6#Oscillators and waveform generators#6.11#Find Rf and C#Ex6_11.sce#2609/CH6/EX6.11/Ex6_11.sce#S##99952 +6#Oscillators and waveform generators#6.10#Design a square wave generator#Ex6_10.sce#2609/CH6/EX6.10/Ex6_10.sce#S##99951 +6#Oscillators and waveform generators#6.1#Design a RC phase shift oscillator#Ex6_1.sce#2609/CH6/EX6.1/Ex6_1.sce#S##99944 +5#Linear Applications of OPamps#5.9#Output Voltage#ex_5_9.sce#2609/CH5/EX5.9/ex_5_9.sce#S##89220 +5#Linear Applications of OPamps#5.8#Output Voltage#ex_5_8.sce#2609/CH5/EX5.8/ex_5_8.sce#S##89219 +5#Linear Applications of OPamps#5.6#Gain and Impedence#ex_5_6.sce#2609/CH5/EX5.6/ex_5_6.sce#S##89218 +5#Linear Applications of OPamps#5.5#Instrumentation Amplifier#ex_5_5.sce#2609/CH5/EX5.5/ex_5_5.sce#S##89217 +5#Linear Applications of OPamps#5.4#Output Voltage#ex_5_4.sce#2609/CH5/EX5.4/ex_5_4.sce#S##89216 +5#Linear Applications of OPamps#5.3#Output Voltage#ex_5_3.sce#2609/CH5/EX5.3/ex_5_3.sce#S##89215 +5#Linear Applications of OPamps#5.20#Rf Ri and Cf#Ex5_20.sce#2609/CH5/EX5.20/Ex5_20.sce#S##99943 +5#Linear Applications of OPamps#5.2#Resistor R1 and R2#ex_5_2.sce#2609/CH5/EX5.2/ex_5_2.sce#S##89214 +5#Linear Applications of OPamps#5.19#Design a differentiator#Ex5_19.sce#2609/CH5/EX5.19/Ex5_19.sce#S##99942 +5#Linear Applications of OPamps#5.18#Design a differentiator#Ex5_18.sce#2609/CH5/EX5.18/Ex5_18.sce#S##99941 +5#Linear Applications of OPamps#5.17#Output of opamp#Ex5_17.sce#2609/CH5/EX5.17/Ex5_17.sce#S##99940 +5#Linear Applications of OPamps#5.16#Design required circuit#Ex5_16.sce#2609/CH5/EX5.16/Ex5_16.sce#S##99939 +5#Linear Applications of OPamps#5.14#Output Voltage#ex_5_14.sce#2609/CH5/EX5.14/ex_5_14.sce#S##89222 +5#Linear Applications of OPamps#5.13#Output of opamp#Ex5_13.sce#2609/CH5/EX5.13/Ex5_13.sce#S##99938 +5#Linear Applications of OPamps#5.11#Resistor Ri and Rf#ex_5_11.sce#2609/CH5/EX5.11/ex_5_11.sce#S##89221 +5#Linear Applications of OPamps#5.1#Output Voltage#ex_5_1.sce#2609/CH5/EX5.1/ex_5_1.sce#S##89213 +4#Opamps with negative feedback#4.9#Variation in output Voltage#ex_4_9.sce#2609/CH4/EX4.9/ex_4_9.sce#S##89179 +4#Opamps with negative feedback#4.8#Output Voltage#ex_4_8.sce#2609/CH4/EX4.8/ex_4_8.sce#S##89178 +4#Opamps with negative feedback#4.7#Acl Rif Rof#ex_4_7.sce#2609/CH4/EX4.7/ex_4_7.sce#S##89177 +4#Opamps with negative feedback#4.6#Close Loop Voltage Gain#ex_4_6.sce#2609/CH4/EX4.6/ex_4_6.sce#S##95883 +4#Opamps with negative feedback#4.5#Non Inverting Amplifier#ex_4_5.sce#2609/CH4/EX4.5/ex_4_5.sce#S##95882 +4#Opamps with negative feedback#4.4#Input and output impedence#ex_4_4.sce#2609/CH4/EX4.4/ex_4_4.sce#S##89174 +4#Opamps with negative feedback#4.3#Impedence and gain#ex_4_3.sce#2609/CH4/EX4.3/ex_4_3.sce#S##89173 +4#Opamps with negative feedback#4.2#Acl Rif Rof fodash#ex_4_2.sce#2609/CH4/EX4.2/ex_4_2.sce#S##99936 +4#Opamps with negative feedback#4.13#Input and output impedence#ex_4_13.sce#2609/CH4/EX4.13/ex_4_13.sce#S##95884 +4#Opamps with negative feedback#4.12#Calculate Gain#ex_4_12.sce#2609/CH4/EX4.12/ex_4_12.sce#S##99937 +4#Opamps with negative feedback#4.11#Gain and Bandwidth#ex_4_11.sce#2609/CH4/EX4.11/ex_4_11.sce#S##89181 +4#Opamps with negative feedback#4.10#Gain and impedence#ex_4_10.sce#2609/CH4/EX4.10/ex_4_10.sce#S##89180 +4#Opamps with negative feedback#4.1#Bandwidth with feedback#ex_4_1.sce#2609/CH4/EX4.1/ex_4_1.sce#S##89171 +3#Operational Amlifiers and their Parameters#3.7#Limiting Frequency#ex_3_7.sce#2609/CH3/EX3.7/ex_3_7.sce#S##89170 +3#Operational Amlifiers and their Parameters#3.6#Close Loop Voltage Gain#ex_3_6.sce#2609/CH3/EX3.6/ex_3_6.sce#S##89169 +3#Operational Amlifiers and their Parameters#3.5#Slew rate#ex_3_5.sce#2609/CH3/EX3.5/ex_3_5.sce#S##89168 +3#Operational Amlifiers and their Parameters#3.4#Maximum Frequency#ex_3_4.sce#2609/CH3/EX3.4/ex_3_4.sce#S##89167 +3#Operational Amlifiers and their Parameters#3.3#Maximum Voltage#ex_3_3.sce#2609/CH3/EX3.3/ex_3_3.sce#S##89166 +3#Operational Amlifiers and their Parameters#3.2#Time taken#ex_3_2.sce#2609/CH3/EX3.2/ex_3_2.sce#S##89165 +3#Operational Amlifiers and their Parameters#3.1#Open loop gain#ex_3_1.sce#2609/CH3/EX3.1/ex_3_1.sce#S##89164 +2#Differentials Aplifiers#2.9#Operating point Gain and Resistance#ex_2_9.sce#2609/CH2/EX2.9/ex_2_9.sce#S##95879 +2#Differentials Aplifiers#2.8#RC RE Rid Rid#ex_2_8.sce#2609/CH2/EX2.8/ex_2_8.sce#S##95878 +2#Differentials Aplifiers#2.7#Q point and voltage gain#ex_2_7.sce#2609/CH2/EX2.7/ex_2_7.sce#S##95877 +2#Differentials Aplifiers#2.6#Gain and input resistance#ex_2_6.sce#2609/CH2/EX2.6/ex_2_6.sce#S##95876 +2#Differentials Aplifiers#2.5#Operating point Gain and Resistance#ex_2_5.sce#2609/CH2/EX2.5/ex_2_5.sce#S##99935 +2#Differentials Aplifiers#2.4#Gain and CMRR#ex_2_4.sce#2609/CH2/EX2.4/ex_2_4.sce#S##95874 +2#Differentials Aplifiers#2.3#Current Ad Ac CMRR#ex_2_3.sce#2609/CH2/EX2.3/ex_2_3.sce#S##95873 +2#Differentials Aplifiers#2.2#Output Voltage and percent error#ex_2_2.sce#2609/CH2/EX2.2/ex_2_2.sce#S##99934 +2#Differentials Aplifiers#2.11#Gain and input resistance#ex_2_11.sce#2609/CH2/EX2.11/ex_2_11.sce#S##95880 +2#Differentials Aplifiers#2.10#Differential input resistance#ex_2_10.sce#2609/CH2/EX2.10/ex_2_10.sce#S##89162 +2#Differentials Aplifiers#2.1#Output Voltage#ex_2_1.sce#2609/CH2/EX2.1/ex_2_1.sce#S##95872 +1#Constant Current Sources#1.9#Calculate Current#ex_1_9.sce#2609/CH1/EX1.9/ex_1_9.sce#S##89151 +1#Constant Current Sources#1.8#Design a widlar current source#ex_1_8.sce#2609/CH1/EX1.8/ex_1_8.sce#S##89150 +1#Constant Current Sources#1.7#Design a widlar current source#ex_1_7.sce#2609/CH1/EX1.7/ex_1_7.sce#S##89149 +1#Constant Current Sources#1.6#Find Iout#ex_1_6.sce#2609/CH1/EX1.6/ex_1_6.sce#S##89148 +1#Constant Current Sources#1.5#Modified current mirror circuit#ex_1_5.sce#2609/CH1/EX1.5/ex_1_5.sce#S##89147 +1#Constant Current Sources#1.4#Design a current mirror circuit#ex_1_4.sce#2609/CH1/EX1.4/ex_1_4.sce#S##89146 +1#Constant Current Sources#1.3#Design a current source#ex_1_3.sce#2609/CH1/EX1.3/ex_1_3.sce#S##89145 +1#Constant Current Sources#1.2#Design a current mirror circuit#ex_1_2.sce#2609/CH1/EX1.2/ex_1_2.sce#S##89144 +1#Constant Current Sources#1.10#Determine IC1 and IC2#ex_1_10.sce#2609/CH1/EX1.10/ex_1_10.sce#S##95871 +1#Constant Current Sources#1.1#Design a current mirror circuit#ex_1_1.sce#2609/CH1/EX1.1/ex_1_1.sce#S##89143 |