Explore branching networks, bridges, transistor stages, and feedback loops. Distinct circuit graphs first, then their values, themes, and focus variants. Drawing, not simulation.
Run the gallery and numeric boundary matrix locally. Check determinism, unchanged inputs, connectivity, and focus geometry.
Ready when you are.
Passing does not mean every input renders. An expected rejection is a passing check, not a renderer bug. Cancelled or errored runs cannot export a complete report.
Four oriented diodes connect two separate AC terminals to DC output/return rails. A resistor and filter capacitor are parallel output branches. AC terminals A/B, full-wave diode bridge, parallel load and filter. No ripple or diode-drop simulation.
Four oriented diodes connect two separate AC terminals to DC output/return rails. A resistor and filter capacitor are parallel output branches. AC terminals A/B, full-wave diode bridge, parallel load and filter. No ripple or diode-drop simulation.
Four oriented diodes connect two separate AC terminals to DC output/return rails. A resistor and filter capacitor are parallel output branches. AC terminals A/B, full-wave diode bridge, parallel load and filter. No ripple or diode-drop simulation.
Four oriented diodes connect two separate AC terminals to DC output/return rails. A resistor and filter capacitor are parallel output branches. A 1 kΩ load and 100 µF filter share the DC rails. No diode drop, ripple or output voltage is calculated.
Four oriented diodes connect two separate AC terminals to DC output/return rails. A resistor and filter capacitor are parallel output branches. A 1 kΩ load and 100 µF filter share the DC rails. No diode drop, ripple or output voltage is calculated.
Four oriented diodes connect two separate AC terminals to DC output/return rails. A resistor and filter capacitor are parallel output branches. A 1 kΩ load and 100 µF filter share the DC rails. No diode drop, ripple or output voltage is calculated.
Four oriented diodes connect two separate AC terminals to DC output/return rails. A resistor and filter capacitor are parallel output branches. A larger explicit filter branch is drawn alongside a 2.2 kΩ load, without predicting ripple or inrush.
Four oriented diodes connect two separate AC terminals to DC output/return rails. A resistor and filter capacitor are parallel output branches. A larger explicit filter branch is drawn alongside a 2.2 kΩ load, without predicting ripple or inrush.
Four oriented diodes connect two separate AC terminals to DC output/return rails. A resistor and filter capacitor are parallel output branches. A larger explicit filter branch is drawn alongside a 2.2 kΩ load, without predicting ripple or inrush.
Four oriented diodes connect two separate AC terminals to DC output/return rails. A resistor and filter capacitor are parallel output branches. 470 Ω and 470 µF illustrate a different load/filter pair, not a certified power supply design.
Four oriented diodes connect two separate AC terminals to DC output/return rails. A resistor and filter capacitor are parallel output branches. 470 Ω and 470 µF illustrate a different load/filter pair, not a certified power supply design.
Four oriented diodes connect two separate AC terminals to DC output/return rails. A resistor and filter capacitor are parallel output branches. 470 Ω and 470 µF illustrate a different load/filter pair, not a certified power supply design.
Four oriented diodes connect two separate AC terminals to DC output/return rails. A resistor and filter capacitor are parallel output branches. A 10 kΩ resistor and 220 µF capacitor retain both parallel branches and the distinct AC nodes.
Four oriented diodes connect two separate AC terminals to DC output/return rails. A resistor and filter capacitor are parallel output branches. A 10 kΩ resistor and 220 µF capacitor retain both parallel branches and the distinct AC nodes.
Four oriented diodes connect two separate AC terminals to DC output/return rails. A resistor and filter capacitor are parallel output branches. A 10 kΩ resistor and 220 µF capacitor retain both parallel branches and the distinct AC nodes.
Four oriented diodes connect two separate AC terminals to DC output/return rails. A resistor and filter capacitor are parallel output branches. Only component D1 is focused; all its catalog pins retain their nets.
Four oriented diodes connect two separate AC terminals to DC output/return rails. A resistor and filter capacitor are parallel output branches. Only component D1 is focused; all its catalog pins retain their nets.
Four oriented diodes connect two separate AC terminals to DC output/return rails. A resistor and filter capacitor are parallel output branches. Only component D1 is focused; all its catalog pins retain their nets.
Four oriented diodes connect two separate AC terminals to DC output/return rails. A resistor and filter capacitor are parallel output branches. Only component D2 is focused; all its catalog pins retain their nets.
Four oriented diodes connect two separate AC terminals to DC output/return rails. A resistor and filter capacitor are parallel output branches. Only component D2 is focused; all its catalog pins retain their nets.
Four oriented diodes connect two separate AC terminals to DC output/return rails. A resistor and filter capacitor are parallel output branches. Only component D2 is focused; all its catalog pins retain their nets.
Four oriented diodes connect two separate AC terminals to DC output/return rails. A resistor and filter capacitor are parallel output branches. Only component D3 is focused; all its catalog pins retain their nets.
Four oriented diodes connect two separate AC terminals to DC output/return rails. A resistor and filter capacitor are parallel output branches. Only component D3 is focused; all its catalog pins retain their nets.
Four oriented diodes connect two separate AC terminals to DC output/return rails. A resistor and filter capacitor are parallel output branches. Only component D3 is focused; all its catalog pins retain their nets.
Four oriented diodes connect two separate AC terminals to DC output/return rails. A resistor and filter capacitor are parallel output branches. Only component D4 is focused; all its catalog pins retain their nets.
Four oriented diodes connect two separate AC terminals to DC output/return rails. A resistor and filter capacitor are parallel output branches. Only component D4 is focused; all its catalog pins retain their nets.
Four oriented diodes connect two separate AC terminals to DC output/return rails. A resistor and filter capacitor are parallel output branches. Only component D4 is focused; all its catalog pins retain their nets.
Four oriented diodes connect two separate AC terminals to DC output/return rails. A resistor and filter capacitor are parallel output branches. Only component RL is focused; all its catalog pins retain their nets.
Four oriented diodes connect two separate AC terminals to DC output/return rails. A resistor and filter capacitor are parallel output branches. Only component RL is focused; all its catalog pins retain their nets.
Four oriented diodes connect two separate AC terminals to DC output/return rails. A resistor and filter capacitor are parallel output branches. Only component RL is focused; all its catalog pins retain their nets.
Four oriented diodes connect two separate AC terminals to DC output/return rails. A resistor and filter capacitor are parallel output branches. Only component C1 is focused; all its catalog pins retain their nets.
Four oriented diodes connect two separate AC terminals to DC output/return rails. A resistor and filter capacitor are parallel output branches. Only component C1 is focused; all its catalog pins retain their nets.
Four oriented diodes connect two separate AC terminals to DC output/return rails. A resistor and filter capacitor are parallel output branches. Only component C1 is focused; all its catalog pins retain their nets.
Four oriented diodes connect two separate AC terminals to DC output/return rails. A resistor and filter capacitor are parallel output branches. The ac_a node connects A, D1.anode, D3.cathode; the other nets remain distinct.
Four oriented diodes connect two separate AC terminals to DC output/return rails. A resistor and filter capacitor are parallel output branches. The ac_a node connects A, D1.anode, D3.cathode; the other nets remain distinct.
Four oriented diodes connect two separate AC terminals to DC output/return rails. A resistor and filter capacitor are parallel output branches. The ac_a node connects A, D1.anode, D3.cathode; the other nets remain distinct.
Four oriented diodes connect two separate AC terminals to DC output/return rails. A resistor and filter capacitor are parallel output branches. The ac_b node connects B, D2.anode, D4.cathode; the other nets remain distinct.
Four oriented diodes connect two separate AC terminals to DC output/return rails. A resistor and filter capacitor are parallel output branches. The ac_b node connects B, D2.anode, D4.cathode; the other nets remain distinct.
Four oriented diodes connect two separate AC terminals to DC output/return rails. A resistor and filter capacitor are parallel output branches. The ac_b node connects B, D2.anode, D4.cathode; the other nets remain distinct.
Four oriented diodes connect two separate AC terminals to DC output/return rails. A resistor and filter capacitor are parallel output branches. The dc_positive node connects D1.cathode, D2.cathode, RL.a, C1.a, VDC; the other nets remain distinct.
Four oriented diodes connect two separate AC terminals to DC output/return rails. A resistor and filter capacitor are parallel output branches. The dc_positive node connects D1.cathode, D2.cathode, RL.a, C1.a, VDC; the other nets remain distinct.
Four oriented diodes connect two separate AC terminals to DC output/return rails. A resistor and filter capacitor are parallel output branches. The dc_positive node connects D1.cathode, D2.cathode, RL.a, C1.a, VDC; the other nets remain distinct.
Four oriented diodes connect two separate AC terminals to DC output/return rails. A resistor and filter capacitor are parallel output branches. The ground node connects D3.anode, D4.anode, RL.b, C1.b, GND; the other nets remain distinct.
Four oriented diodes connect two separate AC terminals to DC output/return rails. A resistor and filter capacitor are parallel output branches. The ground node connects D3.anode, D4.anode, RL.b, C1.b, GND; the other nets remain distinct.
Four oriented diodes connect two separate AC terminals to DC output/return rails. A resistor and filter capacitor are parallel output branches. The ground node connects D3.anode, D4.anode, RL.b, C1.b, GND; the other nets remain distinct.
Four oriented diodes connect two separate AC terminals to DC output/return rails. A resistor and filter capacitor are parallel output branches. Short author component/port IDs and a slash/tilde net name exercise role resolution and JSON pointer escaping, without changing topology.
Four oriented diodes connect two separate AC terminals to DC output/return rails. A resistor and filter capacitor are parallel output branches. Short author component/port IDs and a slash/tilde net name exercise role resolution and JSON pointer escaping, without changing topology.
Four oriented diodes connect two separate AC terminals to DC output/return rails. A resistor and filter capacitor are parallel output branches. Short author component/port IDs and a slash/tilde net name exercise role resolution and JSON pointer escaping, without changing topology.