Now showing circuits 43321-43340 of 53511. Sort by

DT2 controller with OpAmps

DT2 controller with OpAmps PUBLIC

This example shows a circuit with a DT2 controller, which k = 1.359 and T = 1. This circuit was designed to achieve, that the high point of the step response is at HP ( 1 | 0.5 ).

by blu3r4y | updated April 25, 2013

YAY JAMA LESSON

YAY JAMA LESSON PUBLIC

by nancelzel | updated April 25, 2013

circuito 2

circuito 2 PUBLIC

by Victorgutif | updated April 25, 2013

circ  

Bogner Alchemist (draft 1)

Bogner Alchemist (draft 1) PUBLIC

by bryantabuteau | updated April 25, 2013

project_3

project_3 PUBLIC

by k.ramankishore | updated April 25, 2013

Hall R-2R Ladder 5S

Hall R-2R Ladder 5S PUBLIC

by Colda | updated April 25, 2013

Robot Full

Robot Full PUBLIC

by vanwilder | updated April 25, 2013

Inductive Sensor

Inductive Sensor PUBLIC

by Qwerx | updated April 24, 2013

Helping

Helping PUBLIC

by RedRabbit | updated April 24, 2013

transmisor

transmisor PUBLIC

by jhonyvillanueva | updated April 24, 2013

BJT

BJT PUBLIC

by sdmurciam | updated April 24, 2013

circuit1

circuit1 PUBLIC

by PaolaRevelo | updated April 24, 2013

paralelo

paralelo PUBLIC

by PaolaRevelo | updated April 24, 2013

kirchoff

kirchoff PUBLIC

by PaolaRevelo | updated April 24, 2013

ECE 110 Car

ECE 110 Car PUBLIC

by vandorna | updated April 24, 2013

Yaak's Light

Yaak's Light PUBLIC

by phineasut | updated April 24, 2013

LAB 9 Level 2 Sharp Q LP

LAB 9 Level 2 Sharp Q LP PUBLIC

by parallel_universe_219 | updated April 24, 2013

LAB 8 RC HP LAB (L1)

LAB 8 RC HP LAB (L1) PUBLIC

by parallel_universe_219 | updated April 24, 2013

Steering Wheel 1

Steering Wheel 1 PUBLIC

by jose_a_v31 | updated April 24, 2013

DRL delay

DRL delay PUBLIC

by PLP | updated April 24, 2013

Tags

555   7805   ac-to-dc   active-filter   amplifier   analog   and   anode   attenuator   atx   audio   automotive   band-reject   bandgap   behavioral   bias-point   bjt   bode   bridge-rectifier   button   calculator   cascaded-filters   cascode   cathode   cmos   colpitts   compensation   constant-current-source   current-limiting   current-mirror   current-monitor   current-regulator   dac   dc-to-ac   device-modeling   differential   differentiator   digital   diode   divider   emitter-follower   feedback   filter   flyback   flyback-diode   frequency-domain   full-wave   guitar   ham-radio   high-pass   high-speed   high-voltage   hv   hysteresis   ic   ignition-coil   induction   inductive   inductive-load   initial-conditions   instrumentation-amplifier   integrator   inverting   jfet   laplace   led   led-array   level-shift   lighting   lipo   lm317   load-cell   logic-gate   low-pass   mechanical   microcontroller   microphone   mosfet   motor   multivibrator   non-inverting   nonlinear   nor   notch   ohms-law   op-amp   optical   or   oscillator   parallel   passive   passive-filter   pcb-design   phase-shift   photodiode   photoresistor   phototransistor   piezo   plants   potentiometer   power   power-supply   power-supply-unit   preamp   pull-down   pull-up   pwm   rc   relaxation-oscillator   relay   resistor-ladder   resonance   rf   rlc   rom   saturation   schmitt-trigger   sensor   series   servo-motor   signal   spark-plug   stability   stepper   summing   superposition   switching   time-constant   transformer   transistor   translinear   twin-t   voltage-divider   voltage-regulator   waveform-arithmetic   wiring   xnor   xor   zener-diode   zero-voltage-switching  

About CircuitLab

CircuitLab is an in-browser schematic capture and circuit simulation software tool to help you rapidly design and analyze analog and digital electronics systems.