I couldn’t find any Flux documentation that explains a way to locally remove the solder-mask on the top layer (e.g., to expose copper 2 mm in from the PCB outline). That likely means this specific feature is not available in Flux today.
You can keep an eye on updates or ask the Flux team and other users for advice in the community:
Let's review your project and check for common issues:
Unconnected Components:
Verify that all components have their pins connected to appropriate nets. Components with unconnected required pins may not work as intended.
Power Nets:
Ensure that power pins, such as VDD5V or VDD3V3, are connected to the right nets to supply voltage to the circuit.
Ground Connections:
Make sure all necessary components are connected to the ground, typically represented by the GND net.
Named and Numbered Pins:
Verify that components with specific pin names or numbers have these correctly configured, to ensure correct connections and function mapping.
Component Values:
Check and confirm that the component values (e.g., resistor values in ohms, capacitor values in farads) match the design requirements.
Duplicate Designators:
Avoid duplicate designators like the multiple NC entries with different pin numbers. Ensure each component has a unique designator.
Licensing and Manufacturer Information:
If applicable, ensure licensing and manufacturer information is correctly filled out for traceability and purchasing.
Netlist and Connections:
Confirm that net connections are correctly made, matching design intent.
To identify any particular issues, let's focus on any net errors or unconnected pins. Would you like to examine any specific part or net for issues, or would you like a more detailed check?
To determine if these values are correct, I'll need more context about their use in your circuit. Could you provide details about the specific roles of R4 and R5 in your schematic? For example, are they part of a voltage divider, current limiting, or another function?
this is a circuit of rotorey magnetic encoder and the role of the resistores is to filteration circuit with 702 p trasistors and that which are connected to the as4050 ic ehich is the programable magnetic encoder ic .
Thanks for providing more context! Given that $R4$ and $R5$ are part of a filtering circuit with L2N7002LT1G transistors and are connected to the AS5040 programmable magnetic encoder IC, their values of 500 ohms seem reasonable for such an application.
Filtering circuits typically use resistors in combination with capacitors or inductors to filter signals. The value of 500 ohms for $R4$ and $R5$ is typical for filtering purposes, but you should verify that these resistor values align with the design requirements specified in the AS5040 datasheet or application notes, especially in terms of the cutoff frequency and other filter characteristics.
If any further refinement or simulation is required, feel free to ask for help!
1y
2
Q3
Q1
C1
Capacitance
1uF
C3
C2
Capacitance
5nF
C4
Capacitance
10uF
VDD5V
VSS
P12
VR3
DO
PWM_LSB
P8
R2
Resistance
100 Ω
A_LSB_U
CLK
MAGNINCN
PROG
R3
Resistance
100 Ω
VDD3V3
P6
B
P5
INDEX_W
B_DIR_V
+
P3
P7
VR2
NC
NC
P4
A
P9
VR1
MAGDECN
-
CSN
NC
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mihir31199
copilot