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 resistors form two parallel excitation legs. The left and right midpoint terminals are separate differential outputs, never bonded together. Open-circuit differential outputs; no wire or measuring load connects the two midpoints.
Four resistors form two parallel excitation legs. The left and right midpoint terminals are separate differential outputs, never bonded together. Open-circuit differential outputs; no wire or measuring load connects the two midpoints.
Four resistors form two parallel excitation legs. The left and right midpoint terminals are separate differential outputs, never bonded together. Open-circuit differential outputs; no wire or measuring load connects the two midpoints.
Four resistors form two parallel excitation legs. The left and right midpoint terminals are separate differential outputs, never bonded together. Four 1 kΩ arms give equal open-circuit midpoint potentials, without connecting those midpoints by a wire.
Four resistors form two parallel excitation legs. The left and right midpoint terminals are separate differential outputs, never bonded together. Four 1 kΩ arms give equal open-circuit midpoint potentials, without connecting those midpoints by a wire.
Four resistors form two parallel excitation legs. The left and right midpoint terminals are separate differential outputs, never bonded together. Four 1 kΩ arms give equal open-circuit midpoint potentials, without connecting those midpoints by a wire.
Four resistors form two parallel excitation legs. The left and right midpoint terminals are separate differential outputs, never bonded together. A 1.5 kΩ lower-right arm unbalances otherwise equal 1 kΩ legs. Outputs remain differential terminals.
Four resistors form two parallel excitation legs. The left and right midpoint terminals are separate differential outputs, never bonded together. A 1.5 kΩ lower-right arm unbalances otherwise equal 1 kΩ legs. Outputs remain differential terminals.
Four resistors form two parallel excitation legs. The left and right midpoint terminals are separate differential outputs, never bonded together. A 1.5 kΩ lower-right arm unbalances otherwise equal 1 kΩ legs. Outputs remain differential terminals.
Four resistors form two parallel excitation legs. The left and right midpoint terminals are separate differential outputs, never bonded together. Moving the 1.5 kΩ arm to the left reverses the imbalance sign while preserving the same four-node graph.
Four resistors form two parallel excitation legs. The left and right midpoint terminals are separate differential outputs, never bonded together. Moving the 1.5 kΩ arm to the left reverses the imbalance sign while preserving the same four-node graph.
Four resistors form two parallel excitation legs. The left and right midpoint terminals are separate differential outputs, never bonded together. Moving the 1.5 kΩ arm to the left reverses the imbalance sign while preserving the same four-node graph.
Four resistors form two parallel excitation legs. The left and right midpoint terminals are separate differential outputs, never bonded together. 1 kΩ/2.2 kΩ and 10 kΩ/22 kΩ legs have equal midpoint ratios despite different absolute impedances.
Four resistors form two parallel excitation legs. The left and right midpoint terminals are separate differential outputs, never bonded together. 1 kΩ/2.2 kΩ and 10 kΩ/22 kΩ legs have equal midpoint ratios despite different absolute impedances.
Four resistors form two parallel excitation legs. The left and right midpoint terminals are separate differential outputs, never bonded together. 1 kΩ/2.2 kΩ and 10 kΩ/22 kΩ legs have equal midpoint ratios despite different absolute impedances.
Four resistors form two parallel excitation legs. The left and right midpoint terminals are separate differential outputs, never bonded together. Only component R1 is focused; all its catalog pins retain their nets.
Four resistors form two parallel excitation legs. The left and right midpoint terminals are separate differential outputs, never bonded together. Only component R1 is focused; all its catalog pins retain their nets.
Four resistors form two parallel excitation legs. The left and right midpoint terminals are separate differential outputs, never bonded together. Only component R1 is focused; all its catalog pins retain their nets.
Four resistors form two parallel excitation legs. The left and right midpoint terminals are separate differential outputs, never bonded together. Only component R2 is focused; all its catalog pins retain their nets.
Four resistors form two parallel excitation legs. The left and right midpoint terminals are separate differential outputs, never bonded together. Only component R2 is focused; all its catalog pins retain their nets.
Four resistors form two parallel excitation legs. The left and right midpoint terminals are separate differential outputs, never bonded together. Only component R2 is focused; all its catalog pins retain their nets.
Four resistors form two parallel excitation legs. The left and right midpoint terminals are separate differential outputs, never bonded together. Only component R3 is focused; all its catalog pins retain their nets.
Four resistors form two parallel excitation legs. The left and right midpoint terminals are separate differential outputs, never bonded together. Only component R3 is focused; all its catalog pins retain their nets.
Four resistors form two parallel excitation legs. The left and right midpoint terminals are separate differential outputs, never bonded together. Only component R3 is focused; all its catalog pins retain their nets.
Four resistors form two parallel excitation legs. The left and right midpoint terminals are separate differential outputs, never bonded together. Only component R4 is focused; all its catalog pins retain their nets.
Four resistors form two parallel excitation legs. The left and right midpoint terminals are separate differential outputs, never bonded together. Only component R4 is focused; all its catalog pins retain their nets.
Four resistors form two parallel excitation legs. The left and right midpoint terminals are separate differential outputs, never bonded together. Only component R4 is focused; all its catalog pins retain their nets.
Four resistors form two parallel excitation legs. The left and right midpoint terminals are separate differential outputs, never bonded together. The excitation node connects VIN, R1.a, R3.a; the other nets remain distinct.
Four resistors form two parallel excitation legs. The left and right midpoint terminals are separate differential outputs, never bonded together. The excitation node connects VIN, R1.a, R3.a; the other nets remain distinct.
Four resistors form two parallel excitation legs. The left and right midpoint terminals are separate differential outputs, never bonded together. The excitation node connects VIN, R1.a, R3.a; the other nets remain distinct.
Four resistors form two parallel excitation legs. The left and right midpoint terminals are separate differential outputs, never bonded together. The left node connects R1.b, R2.a, VLEFT; the other nets remain distinct.
Four resistors form two parallel excitation legs. The left and right midpoint terminals are separate differential outputs, never bonded together. The left node connects R1.b, R2.a, VLEFT; the other nets remain distinct.
Four resistors form two parallel excitation legs. The left and right midpoint terminals are separate differential outputs, never bonded together. The left node connects R1.b, R2.a, VLEFT; the other nets remain distinct.
Four resistors form two parallel excitation legs. The left and right midpoint terminals are separate differential outputs, never bonded together. The right node connects R3.b, R4.a, VRIGHT; the other nets remain distinct.
Four resistors form two parallel excitation legs. The left and right midpoint terminals are separate differential outputs, never bonded together. The right node connects R3.b, R4.a, VRIGHT; the other nets remain distinct.
Four resistors form two parallel excitation legs. The left and right midpoint terminals are separate differential outputs, never bonded together. The right node connects R3.b, R4.a, VRIGHT; the other nets remain distinct.
Four resistors form two parallel excitation legs. The left and right midpoint terminals are separate differential outputs, never bonded together. The ground node connects R2.b, R4.b, GND; the other nets remain distinct.
Four resistors form two parallel excitation legs. The left and right midpoint terminals are separate differential outputs, never bonded together. The ground node connects R2.b, R4.b, GND; the other nets remain distinct.
Four resistors form two parallel excitation legs. The left and right midpoint terminals are separate differential outputs, never bonded together. The ground node connects R2.b, R4.b, GND; the other nets remain distinct.
Four resistors form two parallel excitation legs. The left and right midpoint terminals are separate differential outputs, never bonded together. Short author component/port IDs and a slash/tilde net name exercise role resolution and JSON pointer escaping, without changing topology.
Four resistors form two parallel excitation legs. The left and right midpoint terminals are separate differential outputs, never bonded together. Short author component/port IDs and a slash/tilde net name exercise role resolution and JSON pointer escaping, without changing topology.
Four resistors form two parallel excitation legs. The left and right midpoint terminals are separate differential outputs, never bonded together. Short author component/port IDs and a slash/tilde net name exercise role resolution and JSON pointer escaping, without changing topology.