To see the output of your simulation in Flux, you would need to define what point in the circuit represents your output. This is done by attaching a probe to the node or nodes of interest.
From your project description, I'm assuming that the output of your circuit is at the output pin of OP1 (OP1:OUT). Here's how you would attach the probe to this point to see the output:
Find the op-amp in your schematic named OP1.
At the OUT pin of the OP1, attach a voltage probe.
Initiate a simulation run.
Observe the simulation results in the 'graph view' window. The voltage over time at the output pin (OP1:OUT) where the probe is attached will be plotted.
Please note that the simulation results would depend on the type of analysis you are performing (transient analysis, AC analysis, etc.). Also, ensure that the circuit is set up correctly with power applied to the Op-Amp and a valid input is given. If you haven't done so already, you might need to connect the other pins of the Op-Amp appropriately to see meaningful results.
Remember: Always be sure to configure your simulation settings according to your specific design requirements, including simulation time and points per division.
If you are looking to simulate a DC analysis in Flux, you can follow these steps:
Set up your analysis: In simulation settings, select 'DC analysis'.
For DC analysis, make sure you have defined your DC sources value.
Attach a probe: Find the op-amp (OP1) in your schematic. Attach a DC probe at the OUT pin of the OP1.
Run the simulation: Start the DC analysis run.
Check the results: After the simulation run ends, you’ll see the results in the 'graph view' window. The DC voltage at OP1's OUT pin will be displayed.
In your case, your circuit contains an op-amp and resistors, V1 is probably simulating a DC voltage source. Assuming that pin 1 (ANODE) of the V1 represents actual voltage source and pin 2 (CATHODE) points to GND, you will see the DC operating point of your circuit at the OUT pin of the op-amp (OP1:OUT).
Always ensure that your power supply voltage (if any), resistances, and other values are defined as needed for your circuit to operate correctly under DC conditions.
2y
1
R2
Resistance
10kΩ
R1
Resistance
1kΩ
V1
OP1
Spatial Peach Flying Cab
Welcome 👋
Flux helps you build PCBs faster with an AI teammate!
Create your account to collaborate, stay updated, fork your own version, and get instant answers from our AI agent.
manikanta107
copilot
manikanta107
copilot