The ST Microelectronics reference designs specify a inductor when a ferrite bead is used.
Steps to reproduce
Examine the coil nearest VDDA
Observe an inductor designator
Search for a inductance value
Expected result
A inductance value should accompany the inductor designator.
Actual result
The corresponding bill of materials specifies a ferrite bead.
Workaround
Ignore the inductor and replace with a ferrite bead with 600 Ohms resistance at 100 MHz cycle.
Severity level
This is medium priority because it could lead to power flaws at runtime.
# Correct designator L15 to FB1
## Problem environment
The ST Microelectronics reference designs specify a inductor when a ferrite bead is used.
## Steps to reproduce
1. Examine the coil nearest VDDA
1. Observe an inductor designator
1. Search for a inductance value
## Expected result
A inductance value should accompany the inductor designator.
## Actual result
The corresponding bill of materials specifies a ferrite bead.
## Workaround
Ignore the inductor and replace with a ferrite bead with 600 Ohms resistance at 100 MHz cycle.
## Severity level
This is **medium priority** because it could lead to power flaws at runtime.
Correct designator L15 to FB1
Problem environment
The ST Microelectronics reference designs specify a inductor when a ferrite bead is used.
Steps to reproduce
Expected result
A inductance value should accompany the inductor designator.
Actual result
The corresponding bill of materials specifies a ferrite bead.
Workaround
Ignore the inductor and replace with a ferrite bead with 600 Ohms resistance at 100 MHz cycle.
Severity level
This is medium priority because it could lead to power flaws at runtime.