| |
Main
Boards |
|
| 1 |
Semiconductor
Devices Characteristics Trainer |
SEMDM100 |
| 2 |
Discrete
Component Trainer |
DCTDM100 |
| 3 |
Discrete
Component Trainer |
DCTDM100L |
| 4 |
Discrete
Component Trainer |
DCTDM101 |
| 5 |
Electronic
Circuits Lab |
ESDM100 |
| 6 |
Basic Electronics
Trainer /Experimenter |
BASICELX100 |
| 7 |
Advanced
Electronics Trainer |
ADELX100 |
| 8 |
Transistor
Circuit Designer/Trainer |
TRCDM100 |
| 9 |
Electronic
Design Experimenter |
DEXPDM100 |
| 10 |
Electronic
Work Station |
EWKSDM100 |
| 11 |
R-L-C
Circuits Trainer |
RLC100 |
| 12 |
SMD Technology
Trainer |
SG2621 |
| 13 |
Basic Radio
Frequency (RF) Lab |
RFLAB100 |
| 14 |
Analog Lab Trainer |
ANALOG100 |
| 15 |
Analog Lab Trainer |
SG2612 |
| |
Ready to Use
Boards for Analog Lab |
|
| 16 |
Diode
Characteristics (Si, Zener, LED) |
AB-01 |
| 17 |
Diodes in DC
circuit |
A-001 |
| 18 |
Transistor
characteristics (CB NPN) |
AB-02 |
| 19 |
Transistor
characteristics (CB PNP) |
AB-03 |
| 20 |
Transistor
characteristics (CE NPN) |
AB-04 |
| 21 |
Transistor
characteristics (CE PNP) |
AB-05 |
| 22 |
Transistor
characteristics (CC NPN) |
AB-06 |
| 23 |
Transistor
characteristics (CC PNP) |
AB-07 |
| 24 |
FET
characteristics |
AB-08 |
| 25 |
Rectifier circuits |
AB-09 |
| 26 |
Half wave
Rectifier |
A-003 |
| 27 |
Full wave
Rectifier |
A-004 |
| 28 |
F-V and V-F
converter |
AB-29 |
| 29 |
V-I and I-V
converter |
AB-30 |
| 30 |
Zener Voltage
regulator |
AB-31 |
| 31 |
Power
supply having two Zener diodes in series |
A-020 |
| 32 |
Transistor series
voltage regulator |
AB-32 |
| 33 |
Transistor shunt
voltage regulator |
AB-33 |
| 34 |
Dual Polarity
Voltage regulated Supply |
A-021 |
| 35 |
Study Full wave
Dual Supplies |
A-028 |
| 36 |
Transistor as a
switch |
AB-46 |
| 37 |
M-Derived band pass and band reject filter |
AB-47 |
| 38 |
M-Derived filter |
AB-48 |
| 39 |
K-Derived filter |
AB-49 |
| 40 |
RLC series and
parallel resonance |
AB-80 |
| 41 |
Ideal Resistance |
A-036 |
| 42 |
Resistance in
series |
A-037 |
| 43 |
Resistance in
parallel |
A-038 |
| 44 |
Voltage multiplier |
AB-87 |
| 45 |
Two port network
parameters |
AB-90 |
| 46 |
Whetstone’s
bridge |
AB-10 |
| 47 |
Maxwell’s
capacitance bridge |
AB-11 |
| 48 |
De-Sauty’s
bridge |
AB-12 |
| 49 |
Schering's bridge |
AB-13 |
| 50 |
Owen's bridge |
AB-57 |
| 51 |
Anderson’s
bridge |
AB-58 |
| 52 |
Maxwell's
inductance bridge |
AB-59 |
| 53 |
Kelvin's bridge |
AB-60 |
| 54 |
Darlington Pair |
AB-14 |
| 55 |
Common Emitter
Amplifier |
AB-15 |
| 56 |
Common Collector
Amplifier |
AB-16 |
| 57 |
Common Base
Amplifier |
AB-17 |
| 58 |
Cascode amplifier |
AB-19 |
| 59 |
RC coupled
Amplifier |
AB-18 |
| 60 |
DC Amplifier |
AB-20 |
| 61 |
Class A Amplifier |
AB-21 |
| 62 |
Class B Amplifier |
AB-22 |
| 63 |
Class C RF tuned
Amplifier |
AB-23 |
| 64 |
Transistorized
Differential amplifier |
AB-41 |
| 65 |
RC coupled
feedback amplifier |
AB-64 |
| 66 |
Phase Locked Loop |
AB-25 |
| 67 |
Multivibrators
(Astable/Monostable) |
AB-28 |
| 68 |
Monostable
Multivibrator using Transistor |
A-014 |
| 69 |
Bistable
Multivibrator using Transistor |
A-015 |
| 70 |
Astable
Multivibrator using Transistor |
A-016 |
| 71 |
Op-Amp
(Inverting/Non inverting/Differentiator) |
AB-42 |
| 72 |
Operational
Amplifier (Adder/Scalar) |
AB-43 |
| 73 |
Operational
Amplifier (Integrator/Differentiator) |
AB-44 |
| 74 |
OP-Amp
based Op-amp |
AB-111 |
| 75 |
Sine, Cosine
Oscillator (using OP-Amp) |
AB-115 |
| 76 |
DC
Ammeter (200 mA) |
AB-35 |
| 77 |
DC
Ammeter (2,20 mA) |
AB-36 |
| 78 |
DC Voltmeter (200
mV, 2V, 20V,200V) with 9V Battery |
AB-38 |
| 79 |
Instrumentation
amplifier |
AB-39 |
| 80 |
Log and antilog
amplifier |
AB-110 |
| 81 |
Window Comparator |
AB-40 |
| 82 |
Peak detector |
AB-112 |
| 83 |
Schmitt Trigger
and Comparator |
AB-45 |
| 84 |
Active filters,
(Low Pass and High Pass) |
AB-51 |
| 85 |
Active Band Pass
Filter |
AB-52 |
| 86 |
Notch Filter
(active + passive) |
AB-53 |
| 87 |
Chebyshev filter |
AB-54 |
| 88 |
Fiber Optic Analog
Link |
AB-56 |
| 89 |
Voltage Controlled
Oscillator |
AB-27 |
| 90 |
Phase Shift
Oscillator |
AB-65 |
| 91 |
Wein Bridge
Oscillator |
AB-66 |
| 92 |
Colpitt’s
Oscillator |
AB-67 |
| 93 |
Hartley oscillator |
AB-68 |
| 94 |
Clapp Oscillator |
AB-69 |
| 95 |
Diode clipper |
AB-88 |
| 96 |
Diode clamper |
AB-89 |
| 97 |
Kirchoff's Laws |
AB-81 |
| 98 |
Thevenin's and
Maximum power transfer Theorem |
AB-82 |
| 99 |
Reciprocity and
superposition Theorem |
AB-83 |
| 100 |
Tellegen's Theorem |
AB-84 |
| 101 |
Norton's theorem |
AB-85 |
| 102 |
Ohm's Law |
A-035 |
| 103 |
Two port network
parameter |
AB-90 |
| 104 |
Optical Transducer
(Photovoltaic cell) |
AB-91 |
| 105 |
Optical Transducer
(Photoconductive cell/LDR) |
AB-92 |
| 106 |
Optical Transducer
(Photo Transistor) |
AB-93 |
| 107 |
Temperature
Transducer (RTD & IC335) |
AB-96 |
| 108 |
Dual Channel
analog Signal Analyzer |
AB-100 |
| 109 |
DSB Modulator and
Demodulator |
AB-101 |
| 110 |
SSB Modulator and
Demodulator |
AB-102 |
| 111 |
FM Modulator and
Demodulator |
AB-106 |
| 112 |
Voltage Follower |
AB-113 |
| 113 |
Two port network
parameter |
AB-90 |
| 114 |
Photovoltaic cell |
AB-91 |
| 115 |
Photoconductive
cell/LDR |
AB-92 |
| 116 |
Ligth emitting
diode in DC circuits |
A-002 |
| 117 |
Characteristics of
LED |
A-022 |
| 118 |
Practically
understood the operation of a seven segment LED Display |
A-023 |
| 119 |
Photo transistor |
AB-93 |
| 120 |
Power Supply for
Analog Boards ( +/- 12V/200mA, + 5V/200mA ) |
AD-01 |
| 121 |
RF Filter (Low pass
and High pass) |
RF-01 |
| 122 |
RF Filter (Band pass
and Band reject) |
RF-02 |
| 123 |
Pierce Crystal
Oscillator |
RF-03 |
| 124 |
NPN Colpitt's Crystal Oscillator |
RF-04 |
| 125 |
Hartley LC
Oscillator |
RF-05 |
| 126 |
Clapp Oscillator |
RF-06 |
| 127 |
RF Tuned Amplifier |
RF-07 |
| 128 |
IF Amplifier |
RF-08 |
| 129 |
Mixer Circuit |
RF-09 |
| |
|
|
| |
Characteristics
- Note: Add Rs 1000 for Two Digital Meters for Characteristics
Trainers |
| 130 |
Characteristics of
Semiconductor Diode |
D01 |
| 131 |
Characteristics
of Zener Diode |
D02 |
| 132 |
Characteristics
of Diode and Zener Diode |
D03 |
| 133 |
Characteristics
of Switching Diode |
D04 |
| 134 |
Characteristics
of Varicap (Varactor) Diode |
D05 |
| 135 |
Characteristics
of Light Emitting Diode (LED) |
D06 |
| 136 |
Characteristics
of Photo Diode |
D07 |
| 137 |
Characteristics
of Infra Red Diode |
D08 |
| 138 |
Characteristics
of Fiber Optic LED |
D09 |
| 139 |
Characteristics
of Laser Diode |
D10 |
| 140 |
Characteristics
of Tunnel diode |
D11 |
| 141 |
Characteristics
of Gunn Diode |
D12 |
| 142 |
Characteristics of
Power Diode |
D13 |
| 143 |
Characteristics of
Pin Diode |
D14 |
| 144 |
Diode
Characteristics Trainer |
D100 |
| 145 |
Characteristics
of Transistor |
T01 |
| 146 |
Characteristics of
Transistor-CE,CB,CC |
T01 |
| 147 |
Characteristics of
Transistor-CE |
T01A |
| 148 |
Characteristics of
Transistor-CB |
T01B |
| 149 |
Characteristics of
Transistor-CC |
T01C |
| 150 |
Characteristics of
Emitter follower |
T01E |
| 151 |
Characteristics
of Field Effect Transistor (FET) |
T02 |
| 152 |
Characteristics
of Junction FET (JFET) |
T03 |
| 153 |
Characteristics
of VFET |
T04 |
| 154 |
Characteristics of
Power Transistors |
T05 |
| 155 |
Transitors
Characteristics Trainer |
T100 |
| 156 |
Characteristics
of DIAC |
THY01 |
| 157 |
Characteristics
of TRIAC |
THY02 |
| 158 |
Characteristics
of DIAC & TRIAC |
THY03 |
| 159 |
Characteristics
of SCR |
THY04 |
| 160 |
Characteristics
of PNPN Switch |
THY05 |
| 161 |
Characteristics
of UniJunction Transistor (UJT) |
THY06 |
| 162 |
Characteristics
of Programmable UJT (PUT) |
THY07 |
| 163 |
Characteristics
of Photo-Transistor |
THY08 |
| 164 |
Characteristics
of MOSFET |
THY09 |
| 165 |
Enhanced and
Depletion Type MOSFET Trainer |
THY09ED |
| 166 |
Characteristics of
CSD MOSFET |
THY10 |
| 167 |
Characteristics of
CSE MOSFET |
THY11 |
| 168 |
Characteristics
of Power MOSFET |
THY12 |
| 169 |
Characteristics of
GTO |
THY13 |
| 170 |
Characteristics
of IGBT |
THY14 |
| 171 |
Characteristics
of SCS |
THY15 |
| 172 |
Characteristics of
SUS |
THY16 |
| 173 |
Characteristics of
SUB |
THY17 |
| 174 |
Characteristics
of Thermistors (NTC and PTC) |
TH01 |
| 175 |
Characteristics of
NTC Bridge Circuit |
TH01A |
| 176 |
Characteristics
of Varistor |
TH02 |
| 177 |
Characteristics
of LEDs |
OPT01 |
| 178 |
Characteristics
of Photo Cell |
OPT02 |
| 179 |
Characteristics of
Photoconductive Cell |
OPT02A |
| 180 |
Characteristics
of Opto-Coupler |
OPT03 |
| 181 |
Characteristics
of Photo Diode |
OPT04 |
| 182 |
Characteristics of
PN Photo Diode |
OPT04A |
| 183 |
Characteristics of
PIN Photo Diode |
OPT04B |
| 184 |
Characteristics of
APD Photo Diode |
OPT04C |
| 185 |
Characteristics
of Photo-Transistor |
OPT05 |
| 186 |
Characteristics
of Photo-Darlington transistor |
OPT06 |
| 187 |
Characteristics
of Seven segment LED Display |
OPT07 |
| 188 |
Characteristics of
Seven segment LED Display - Common Cathode |
OPT07 |
| 189 |
Characteristics of
Seven segment LED Display - Common Anode |
OPT07A |
| 190 |
Characteristics
of Seven segment LCD Display |
OPT08 |
| 191 |
Characteristics
of Alphanumeric Display |
OPT09 |
| 192 |
Characteristics
of LDR |
OPT10 |
| 193 |
Characteristics
of LDR/Photo-Transistor |
OPT05-10 |
| 194 |
Characteristics
of NEON lamps |
OPT11 |
| 195 |
Characteristics
of Photo Thyristors - Opto-SCR |
OPT12 |
| 196 |
Characteristics
of Photo Thyristors - Opto-Triac |
OPT13 |
| 197 |
Characteristics
of Solar Cell |
OPT14 |
| 198 |
Characteristics
of Fiber Optic LED |
OPT15 |
| 199 |
Characteristics
of Laser Diode |
OPT16 |
| 200 |
Characteristics
of Infra red Diode |
OPT17 |
| 201 |
Characteristics
of Infra-red sensors |
OPT18 |
| 202 |
Characteristics
of Photo IC |
OPT19 |
| 203 |
Characteristics of
Filament Lamp |
OPT20 |
| |
|
|
| |
Display Boards |
|
| 204 |
Resistors/Pots/Presets |
DB101 |
| 205 |
Resistors |
DB101A |
| 206 |
Potentiometers |
DB101B |
| 207 |
Capacitors |
DB102 |
| 208 |
Coils |
DB103 |
| 209 |
Connectors |
DB104 |
| 210 |
Wires |
DB105 |
| 211 |
Sockets |
DB106 |
| 212 |
Switches |
DB107 |
| 213 |
Mechanical
Parts |
DB108 |
| 214 |
Relay |
DB109 |
| 215 |
Transformers |
DB110 |
| 216 |
Diodes |
DB111 |
| 217 |
Transistors |
DB112 |
| 218 |
Knobs and Fuses |
DB113 |
| 219 |
Fuses Demo Board |
DB113B |
| 220 |
Semi
Conductor Devices |
DB114 |
| 221 |
Surface Mount Devices |
DB115 |
| 222 |
OPTO Devices |
DB116 |
| 223 |
Band switch |
DB117 |
| 224 |
Stamping
Bobbin |
DB118 |
| 225 |
Hardware Demo Board |
DB119 |
| 226 |
IC's Display Board |
DB120 |
| 227 |
Symbols for
various electrical & electronic components, devices, circuit
functions |
SYMBOL100 |
| 228 |
PCB design kit |
PCB100 |
| 229 |
Component display
boards |
DB100 |
| |
|
|
| |
Power Supply |
|
| 230 |
Half
wave, Full wave and Bridge Rectifiers circuits |
RPS01 |
| 231 |
Half wave
Rectifier Trainer |
RPS01A |
| 232 |
Full wave
Rectifier Trainer |
RPS01B |
| 233 |
Bridge Rectifier
Trainer |
RPS01C |
| 234 |
Junction Diode Rectifier &
Filter Characteristics |
RPS02 |
| 235 |
RPS
using Zener Diode |
RPS03 |
| 236 |
RPS
using Series Transistor |
RPS04 |
| 237 |
RPS
using Shunt Transistor |
RPS05 |
| 238 |
RPS using Series
Transistor and Shunt Transistor |
RPS04-05 |
| 239 |
RPS
using Three terminal Regulators |
RPS06 |
| 240 |
RPS
using Four terminal Regulators |
RPS07 |
| 241 |
Variable
RPS using IC 723 (Low and High Voltage) |
RPS08 |
| 242 |
Variable
RPS using IC 317 |
RPS09 |
| 243 |
RPS
using fold back current limiting |
RPS10 |
| 244 |
RPS
using IC OPAMP (741) |
RPS11 |
| 245 |
Switch
mode power supply (S.M.P.S.). |
RPS12 |
| 246 |
RPS
with short circuit protection |
RPS13 |
| 247 |
Voltage
and Current regulated Power supply |
RPS14 |
| 248 |
Dual
tracking power supply |
RPS15 |
| 249 |
RPS
with crowbar protection |
RPS16 |
| 250 |
Voltage Multiplier
(Doubler,
Tripler, Quadruple) |
RPS17 |
| 251 |
Constant
and Variable Current sources |
RPS18 |
| 252 |
DC
to AC Inverter |
RPS19 |
| 253 |
DC
to DC Converter |
RPS20 |
| 254 |
Precision
Full wave rectifier |
RPS21 |
| 255 |
Half wave/Full wave
Voltage Doublers |
RPS22 |
| 256 |
Study
Of Battery Charger |
RPS23 |
| 257 |
Variable Voltage
Regulator |
RPS24 |
| 258 |
Half wave/Full
wave Voltage Doubler |
RPS25 |
| 259 |
Dual power supply
using center tapped bridge rectifier |
RPS26 |
| 260 |
Characteristics of
C, C-R-C, C-L-C, II type filter Circuit |
RPS27 |
| 261 |
Linear voltage
regulator: Floating & adjustable |
RPS28 |
| 262 |
Regulator
Characteristics with inductance input filter in open Loop |
RPS29 |
| 263 |
Regulator
Characteristics with capacitance input filter in open Loop |
RPS30 |
| 264 |
IC Regulated power
supplies - +ve and –ve |
RPS22 |
| 265 |
To Design and
fabricate a PCB for a regulated power supply |
RPS23 |
| 266 |
Regulated Power
Supply Trainer |
RPS100 |
| 267 |
Regulated Power
Supply Trainer |
RPS100-4 |
| 268 |
Center Tape Bridge
Rectifier Trainer |
RPS100N |
| 269 |
Voltage Regulator
Trainer |
RPS200 |
| 270 |
Single Phase Power
Supply Trainer |
RPS300 |
| 271 |
Double Phase Power
Supply Trainer |
RPS400 |
| 272 |
RPS Design kit |
RPS100K |
| 273 |
Power
Supply Trainer |
PSDM100 |
| |
|
|
| |
Amplifiers |
|
| 274 |
Common
Emitter (CE) Amplifier |
AMP01 |
| 275 |
Common
Base (CB) Amplifier |
AMP02 |
| 276 |
High Frequency
Common Base (CB) Amplifier |
AMP02A |
| 277 |
High Frequency
Common Gate Amplifier |
AMP02B |
| 278 |
Common
collector (CC) Amplifier-Emitter follower |
AMP03 |
| 279 |
CE,
CB & CC Amplifiers |
AMP04 |
| 280 |
CE/CB/CC
configurations to find parameters: Av, Ai, Ri & Ro |
AMP04A |
| 281 |
Two
stage direct Coupled Amplifier |
AMP05 |
| 282 |
Two
stage transformer Coupled Amplifier |
AMP06 |
| 283 |
Two stage LC
coupled amplifier |
AMP06B |
| 284 |
Two
Stage R-C Coupled Transistor Amplifier |
AMP07 |
| 285 |
Single stage RC
coupled transistor CE amplifier |
AMP07A |
| 286 |
Single stage RC
coupled BJT Amplifier |
AMP07A |
| 287 |
Two
Stage R-C Coupled Transistor Amplifier using FET |
AMP07F |
| 288 |
Cascade
Amplifier |
AMP08 |
| 289 |
Cascode
Amplifier |
AMP09 |
| 290 |
Complimentary
Symmetry Power Amplifier |
AMP10 |
| 291 |
Darlington
Transistor Amplifier |
AMP11 |
| 292 |
Differential
Amplifier |
AMP12 |
| 293 |
Negative Feedback Amplifier
(Voltage and Current) |
AMP13 |
| 294 |
Voltage series
feedback amplifier |
AMP13A |
| 295 |
Current series
feedback amplifier |
AMP13B |
| 296 |
Voltage shunt
feedback amplifier |
AMP13C |
| 297 |
Current shunt
feedback amplifier |
AMP13D |
| 298 |
Transistor
Feed Back Amplifier |
AMP14 |
| 299 |
Feedback
Amplifier (4 Types Using Transistors) |
AMP14A |
| 300 |
Feedback
Amplifier (4 Types Using FET & Transistors) |
AMP14B |
| 301 |
Current
Amplifier |
AMP15 |
| 302 |
Class 'A' Power Amplifier |
AMP16 |
| 303 |
Class 'B' Power Amplifier |
AMP17 |
| 304 |
Class 'C' Power Amplifier |
AMP18 |
| 305 |
Class
B Push Pull Amplifier |
AMP19 |
| 306 |
Audio
Amplifier using transistor |
AMP20 |
| 307 |
Audio
Amplifier using IC 810 |
AMP21 |
| 308 |
Audio
Amplifier using LM 380 |
AMP22 |
| 309 |
Narrow
Band Amplifier |
AMP23 |
| 310 |
Wide
Band Amplifier |
AMP24 |
| 311 |
I.F.
Amplifier |
AMP25 |
| 312 |
I.F. Amplifier
using IC 3028 |
AMP25A |
| 313 |
R.F.
Amplifier |
AMP26 |
| 314 |
Class C Tuned
Power Amplifier |
AMP26A |
| 315 |
High
Frequency Amplifier |
AMP27 |
| 316 |
Video
Amplifier |
AMP28 |
| 317 |
Single
Tuned RF Amplifier |
AMP29 |
| 318 |
Tuned Amplifier
and construction of Oscillator |
AMP29A |
| 319 |
Double
Tuned RF Amplifier |
AMP30 |
| 320 |
Single &
Double Tuned RF Amplifier |
AMP29-30 |
| 321 |
DC
amplifier |
AMP31 |
| 322 |
FET
Amplifier |
AMP32 |
| 323 |
Single stage RC
coupled FET amplifier |
AMP32A |
| 324 |
Two Stage R-C
Coupled Amplifier using FET |
AMP32B |
| 325 |
Common Source
Amplifier |
AMP32C |
| 326 |
Source follower
Amplifier |
AMP32D |
| 327 |
FET and BJT
Amplifier |
AMP32E |
| 328 |
MOSFET
Amplifier |
AMP33 |
| 329 |
Chopper
Amplifier |
AMP34 |
| 330 |
Transistor
Biasing Methods |
AMP35 |
| 331 |
Direct
Coupled (Emitter Coupled) Amplifier |
AMP36 |
| 332 |
Single Ended
Amplifier |
AMP37 |
| 333 |
F.E.T.
Biasing Methods |
AMP38 |
| 334 |
Hybrid
(h) Parameter of Transistor |
AMP39 |
| 335 |
Thermal
Stability of Transistor |
AMP40 |
| 336 |
Telephone
Pickup Amplifier |
AMP41 |
| 337 |
Transistor
Curve Tracer |
AMP42 |
| 338 |
Transistor
R-C Time Delay relay circuit |
AMP43 |
| 339 |
Switched
Capacitor amplifier |
AMP44 |
| 340 |
Transistor as a
switch |
AMP45 |
| 341 |
FET as Source
Follower Amplifier |
AMP45 |
| 342 |
FET as a switch |
AMP46 |
| 343 |
E- MOSFET as
switch |
AMP46A |
| 344 |
Current
amplification factor of a transistor |
AMP47 |
| 345 |
Squelch Circuit
for AM radio receiver |
AMP48 |
| 346 |
Transistor
Characteristics in CE CKT |
AMP49 |
| 347 |
Single Stage
Transistor CE Amplifier |
AMP50 |
| 348 |
Class A, B and
Class AB Amplifier |
AMP51 |
| 349 |
IF Amplifier Using
Transistors |
AMP52 |
| 350 |
Transistor with
Inductive & capacitive Load |
AMP53 |
| 351 |
Phase Inverter
Amplifier |
AMP54 |
| 352 |
Double MOSFET
Amplifier |
AMP55 |
| 353 |
LED as pilot
indicator driven by BJT switch |
AMP56 |
| 354 |
AF/RF Amplifier |
AMP57 |
| 355 |
Pulse Amplifier
Trainer |
AMP58 |
| 356 |
Transistor
inverter in relay & LED application. |
AMP59 |
| 357 |
Emitter Follower
Amplifier using Darlington pairs transistors |
AMP60 |
| 358 |
Transistor
Amplifier With Simple Forward and Reverse AGC |
AMP61 |
| 359 |
Transistor
Amplifier Trainer |
AMPDM100 |
| 360 |
BJT Trainer |
BJT100 |
| |
|
|
| |
Oscillators |
|
| 361 |
Hartley's
Oscillator |
OSC01 |
| 362 |
Colpitt's
Oscillator |
OSC02 |
| 363 |
Wein-Bridge
Oscillator |
OSC03 |
| 364 |
Wein
Bridge Oscillator Using JFET |
OSC03A |
| 365 |
Voltage
Controlled Oscillator (VCO) |
OSC04 |
| 366 |
RC
Phase Shift Oscillator |
OSC05 |
| 367 |
Crystal
Oscillator |
OSC06 |
| 368 |
Crystal
Oscillator using CMOS ICs with Power Supply |
OSC06A |
| 369 |
Quartz oscillator |
OSC06A |
| 370 |
Pierce
Oscillator |
OSC07 |
| 371 |
Beat
Frequency Oscillator (BFO) |
OSC08 |
| 372 |
Blocking
Oscillator |
OSC09 |
| 373 |
Twin
T Oscillator |
OSC10 |
| 374 |
Clapp
Oscillator |
OSC11 |
| 375 |
Morse
code oscillator |
OSC12 |
| 376 |
Quadrature
oscillator |
OSC13 |
| 377 |
Triggered
oscillator |
OSC14 |
| 378 |
Oscillator
Building Blocks |
OSC15 |
| 379 |
A.F.
Oscillator - 20 Hz to 20KHz |
OSC16 |
| 380 |
R.F.
Oscillator - 20 KHz to 200 KHz |
OSC17 |
| 381 |
Colpitt's
Oscillator using FET |
OSC18 |
| 382 |
RF-
LC Oscillators |
OSC19 |
| 383 |
UJT
Relaxation oscillator |
OSC20 |
| 384 |
PUT Relaxation
oscillator |
OSC20A |
| 385 |
Tuned
Collector Oscillator |
OSC21 |
| 386 |
Oscillators
Trainer |
OSC100 |
| |
|
|
| |
Generators |
|
| 387 |
Sine
wave generator |
SG01 |
| 388 |
Square
wave generator |
SG02 |
| 389 |
Pulse
generator (Synchronized) |
SG03 |
| 390 |
Ramp
wave generator |
SG04 |
| 391 |
Tri-angle
wave generator |
SG05 |
| 392 |
Square &
Triangle wave generator with Positive and Negative Feedback |
SG05A |
| 393 |
Saw
tooth signal generator (UJT) |
SG06 |
| 394 |
Staircase
Generator |
SG07 |
| 395 |
Puckle's
Sweep Generator |
SG08 |
| 396 |
Boot
Strap Sweep Generator |
SG09 |
| 397 |
Tone
Burst Generator |
SG10 |
| 398 |
Sine-Square
generator |
SG11 |
| 399 |
Function
(Waveform) Generator using IC-566 |
SG12 |
| 400 |
Function
(Waveform) Generator using IC XR2206 |
SG13 |
| 401 |
Function
(Waveform) Generator using IC 8038 |
SG14 |
| 402 |
Gaussian
Noise generator |
SG15 |
| 403 |
Pink
Noise generator |
SG16 |
| 404 |
P.R.B.S.
Noise generator |
SG17 |
| 405 |
Four
decade square wave generator |
SG18 |
| 406 |
Function
generator |
SG19 |
| 407 |
Clock
generator |
SG20 |
| 408 |
Sine/Cosine
generator |
SG21 |
| 409 |
T.V.
Pattern generator |
SG22 |
| 410 |
Audio
signal generator |
SG23 |
| 411 |
R.F.
signal generator |
SG24 |
| 412 |
Video
signal generator |
SG25 |
| 413 |
Digital
Data generator |
SG26 |
| 414 |
Metronome |
SG27 |
| 415 |
UJT Time base
Generator |
SG28 |
| 416 |
Voltage Time Base
Generator |
SG29 |
| 417 |
Current Time Base
Generator |
SG30 |
| |
|
|
| |
Multivibrators |
|
| 418 |
Astable
Multivibrator using transistors |
MUL01 |
| 419 |
Asymmetric Astable
Multivibrators |
MUL01A |
| 420 |
Bistable
Multivibrator using transistors |
MUL02 |
| 421 |
Monostable
Multivibrator using transistors |
MUL03 |
| 422 |
Multivibrators
using transistors |
MUL04 |
| 423 |
Multivibrators
using Opamp |
MUL05 |
| 424 |
Astable
Multivibrators using Opamp |
MUL05A |
| 425 |
Monostable
Multivibrators using Opamp |
MUL05B |
| 426 |
Bistable
Multivibrators using Opamp |
MUL05C |
| 427 |
Multivibrators
using IC 555 |
MUL06 |
| 428 |
Multivibrators
using Digital IC |
MUL07 |
| 429 |
Schmitt's
Trigger |
MUL08 |
| 430 |
Schmitt's
Trigger - FET Binary |
MUL09 |
| 431 |
Monostable
Multivibrator using IC 4047 |
MUL10 |
| 432 |
Multivibrators
Trainer |
MULTIDM100 |
| 433 |
Repetitive
Timer using transistors |
TIM01 |
| 434 |
Sequential
Timer |
TIM02 |
| |
|
|
| |
Filters |
|
| 435 |
Constant
K-type Low Pass Filter |
PF01 |
| 436 |
Constant
K-type High Pass Filter |
PF02 |
| 437 |
Constant K-type
Low pass & High pass Filters |
PF01-02 |
| 438 |
Constant
K-type Band Pass Filter |
PF03 |
| 439 |
Constant
K-type Band reject Filter |
PF04 |
| 440 |
Constant K-type
Band pass & Band stop Filters |
PF03-04 |
| 441 |
Constant K-type
Filters |
PF01-04 |
| 442 |
Constant
M-derived Low Pass Filter |
PF05 |
| 443 |
Constant M-derived
Low pass & High pass Filter |
PF05-06 |
| 444 |
Constant K &
M-derived Low pass Filter |
PF01-05 |
| 445 |
Constant
M-derived High Pass Filter |
PF06 |
| 446 |
Constant K &
M-derived High pass Filter |
PF02-06 |
| 447 |
Constant
M-derived Band Pass Filter |
PF07 |
| 448 |
Constant K &
M-derived Band pass Filter |
PF03-07 |
| 449 |
Constant
M-derived Band Reject Filter |
PF08 |
| 450 |
Constant K &
M-derived Band stop Filter |
PF04-08 |
| 451 |
M-derived Filters |
PF05-08 |
| 452 |
Crystal
Filter |
PF09 |
| 453 |
Lattice
Filter |
PF10 |
| 454 |
Composite
Low Pass Filter |
PF11 |
| 455 |
Composite
High Pass Filter |
PF12 |
| 456 |
Composite Low pass
& High pass Filters |
PF11-12 |
| 457 |
Composite
Band Pass Filter |
PF13 |
| 458 |
Composite
Band Pass & Band Stop Filter |
PF13-14 |
| 459 |
Electromagnetic
Interference Filter (E.M.I.) |
PF14 |
| 460 |
Surface
Acoustic Wave (SAW) Filter |
PF15 |
| 461 |
Ceramic
Filter |
PF16 |
| 462 |
Switched
capacitor Filter |
PF17 |
| 463 |
T-type Attenuator Network |
PF18 |
| 464 |
Symmetrical T
& II Attenuator Trainer |
PF18A |
| 465 |
Simple Capacitive
T & II Filters |
PF18B |
| 466 |
II-type
Attenuators |
PF19 |
| 467 |
Asymmetrical Attenuators |
PF19A |
| 468 |
Asymmetrical T
& II Attenuator Trainer |
PF19A |
| 469 |
T & II-type
Network |
PF18-19 |
| 470 |
Limiters |
PF20 |
| 471 |
Equalizers |
PF21 |
| 472 |
T-PIE Attenuator
Networks |
PF18-21 |
| 473 |
Symmetrical Tee,
II & Bridge Networks |
PF22 |
| 474 |
Asymmetrical Sections |
PF23 |
| 475 |
T & II
Conversion |
PF24 |
| 476 |
Asymmetrical T
network |
PF25 |
| 477 |
Twin-T network
characteristics |
PF26 |
| 478 |
Measurement of
Attenuators |
PF27 |
| 479 |
impedance of
network |
PF28 |
| 480 |
Passive
Filter Trainers |
PFDM100 |
| 481 |
Attenuators
Trainer |
ATTEN100 |
| |
|
|
| |
Theorems |
|
| 482 |
Thevenin's
Theorem |
NT01 |
| 483 |
Norton's
Theorem |
NT02 |
| 484 |
Thevenin's &
Norton's Theorem |
NT01-02 |
| 485 |
Super
Position Theorem |
NT03 |
| 486 |
Reciprocity
Theorem |
NT04 |
| 487 |
Maximum
Power Transfer Theorem |
NT05 |
| 488 |
Kirchoff's
Law |
NT06 |
| 489 |
Kirchoff's
Current Law |
NT06A |
| 490 |
Kirchoff's
Voltage Law |
NT06B |
| 491 |
Ohm's
Law |
NT07 |
| 492 |
Millmann’s
Theorems |
NT08 |
| 493 |
Tellegen’s
Theorem |
NT09 |
| 494 |
Equivalence
of Network |
NT10 |
| 495 |
Balancing
Network |
NT11 |
| 496 |
ABCD Parameters |
NT12 |
| 497 |
Y - Parameters |
NT13 |
| 498 |
Z - Parameters |
NT14 |
| 499 |
Overall ABCD
Parameters |
NT15 |
| 500 |
Overall - Y
Parameters |
NT16 |
| 501 |
Network
Theorems and Laws Trainer |
THDM100 |
| |
|
|
| |
Bridges |
|
| 502 |
Whetstone's
Bridge |
BRG100 |
| 503 |
De-Sauty's
Bridge |
BRG101 |
| 504 |
Maxwell's
Bridge |
BRG102 |
| 505 |
Maxwell’s
Inductance Bridge |
BRG102A |
| 506 |
Maxwell’s
Capacitance Bridge |
BRG102B |
| 507 |
Hay's
Bridge |
BRG103 |
| 508 |
Schering's
Bridge |
BRG104 |
| 509 |
Kelvin's
Bridge |
BRG105 |
| 510 |
Owen's
Bridge |
BRG106 |
| 511 |
Wein's
Bridge |
BRG107 |
| 512 |
Anderson's
Bridge |
BRG108 |
| 513 |
Resonance Bridge
Trainer |
BRG109 |
| 514 |
Campbell’s
Bridge |
BRG111 |
| 515 |
Heavy side Bridge |
BRG112 |
| 516 |
Study of Universal
Bridge for Measurement |
BRG200 |
| 517 |
AC
Bridge's Trainer |
BRG300 |
| |
|
|
| |
Opto Electronics |
|
| 518 |
Relay
circuits using Photo devices |
OPTO01 |
| 519 |
Photo
Electric Relay demonstrator |
OPTO02 |
| 520 |
Dot
bar generator using LM3914 |
OPTO03 |
| 521 |
Experiments
using Incandescent Lamps |
OPTO04 |
| 522 |
Experiments
using LEDs |
OPTO05 |
| 523 |
LED
Intensity and Colour |
OPTO06 |
| 524 |
Visual
persistence |
OPTO07 |
| 525 |
Reverse
Voltage protection of a LED |
OPTO08 |
| 526 |
Schmitt
Trigger Detector verses Photo Transistor |
OPTO09 |
| 527 |
Sources/Sensor
pair operation of Opto Coupler IC |
OPTO10 |
| 528 |
Object counting
with an Infra red interrupter circuits |
OPTO11 |
| 529 |
Twilight
Control using 555 and LDR |
OPTO12 |
| 530 |
Burglar
Alarm using 555 and LDR |
OPTO13 |
| 531 |
Study
of Photo Relay & its application as Burglar Alarm |
OPTO13A |
| 532 |
Lie
detector sensor Trainer |
OPTO14 |
| 533 |
Fantastic
simulated Laser kit |
OPTO15 |
| 534 |
Photo
Electric Switch |
OPTO17 |
| 535 |
Opto
Interrupter |
OPTO18 |
| 536 |
Opto
Transmitter and Receiver |
OPTO19 |
| 537 |
Study Of LED as a
Pilot Indicator Driven By BJT Switch |
OPTO20 |
| 538 |
Opto Isolator
Trainer |
OPTO21 |
| 539 |
Opto-Electronic
Applications using 741 and 555 |
OPOT22 |
| 540 |
Opto
Electronics (Photo Devices) Trainer |
OPTO100 |
| 541 |
Characteristics of
Opto Coupler Using IC MCT2E |
OPTO200 |
| 542 |
Solar
Cell Education kit |
OPTO16 |
| 543 |
Solar
Cell Application Trainer |
SOLAR100 |
| 544 |
Solar Energy
Trainer |
SOLAR101 |
|
|
|
| |
Pulse Electronics |
|
| 545 |
Differentiating
& Integrating Circuit using diode |
BA01 |
| 546 |
Clipping Circuits &
Clamping Circuits using diodes |
BA02 |
| 547 |
Clipping Circuit |
BA02A |
| 548 |
Clamping Circuit |
BA02B |
| 549 |
Non linear wave
shaping – Clippers |
BA02A |
| 550 |
Non linear wave
shaping – Clampers |
BA02B |
| 551 |
Double Diode
Clipper (Diode, Zener & IT) |
BA02C |
| 552 |
Miller
Integrator |
BA03 |
| 553 |
Miller
Sweep Integrator |
BA04 |
| 554 |
Boot
Strap Integrator |
BA05 |
| 555 |
Switched
Capacitor Integrator |
BA06 |
| 556 |
R-C
Circuits and Time Constant |
BA07 |
| 557 |
R-L-C
Circuits |
BA08 |
| 558 |
R-C and L-C
circuits and their applications |
BA09 |
| 559 |
Measurement
of power and power factor of L-R circuits |
BA09A |
| 560 |
Measurement
of power and power factor of L-C-R circuits |
BA09B |
| 561 |
Determination
of impedance of R-C circuits |
BA09C |
| 562 |
Phase
Difference in L-C-R circuits |
BA10 |
| 563 |
Transient
response of 2nd order network |
BA11 |
| 564 |
Series
Resonance |
BA12 |
| 565 |
Parallel
Resonance |
BA13 |
| 566 |
Series
and parallel Resonance |
BA14 |
| 567 |
B-H
curve and Hystresis Loop |
BA15 |
| 568 |
Hystresis Curve
Demonstrator |
BA15A |
| 569 |
Phase
shifter circuit |
BA16 |
| 570 |
Phase sequence
monitoring |
BA17 |
| 571 |
Phase
splitter circuit |
BA18 |
| 572 |
Cross-over
network |
BA19 |
| 573 |
Equalizer
network |
BA20 |
| 574 |
Frequency
selective network |
BA21 |
| 575 |
Transmission
Line Study |
BA22 |
| 576 |
Transfer
function of simple networks |
BA23 |
| 577 |
Lissajous
figure measurement on C.R.O |
BA24 |
| 578 |
Lead
and Lag Networks |
BA25 |
| 579 |
Electromagnetism |
BA26 |
| 580 |
Magnetic
and Electromagnetic Devices |
BA27 |
| 581 |
Determination of
Band Gap in semi conductor Diode |
BA28 |
| 582 |
Transistor Clipper
Circuit |
BA29 |
| 583 |
Transistor Clamper
Circuit |
BA30 |
| 584 |
Transient Response
in R-L & R-C Network: Simulation/Hardware |
BA31 |
| 585 |
Reactive elements
& Time dependent network analysis |
BA32 |
| 586 |
Study
of recovery time of Diodes |
BA33 |
| 587 |
Impedance and
power factor of LCR circuits |
BA34 |
| 588 |
Charging and
Discharging of a condenser |
BA35 |
| 589 |
Peak and average
voltage of AC waveforms |
BA36 |
| 590 |
Determination of
internal resistance of DC power source |
BA37 |
| 591 |
Determination
of electronic charge using rectifier |
BA38 |
| 592 |
Diode limiters |
BA39 |