VESC Receiver Design


Worked for 1 min 9 sec
Exporting STEP model.
Thought for a moment
Considering project updates
I think I need to create an update log and possibly utilize the export linking skill to reference the final export link. I wonder if I should mention this in the update attachment log, too. It seems like using a project docs tool could help, but I want to ensure it’s loaded properly. I might also need to query if the files are related to the document mutations. Let's figure this out!
Updating attachment log
I need to update the attachment log with the exported link, which means I'll probably need to read the document first. Hm, there's also the flux-export-linking skill that might come in handy, but it's crucial to get the link right. I’m considering if I should use the document linking skill too, just to ensure it references the project correctly. I’ll also check the current status before making
Please send just a top-down 2D file of each side showing the component locations. That should be simpler and faster.
I’d rather get approval on a 2D top-down view of both sides first, and then move to 3D if needed, so we can use time and credits more efficiently.
Agreed — I’ll generate lightweight 2D top-down layout exports first, aiming for top and bottom component-location views before doing any more 3D work.
The 2D SVG export is ready as a ZIP. I’m recording it in the attachment/reference log so this review artifact stays traceable.
Generated the lightweight 2D layout export for component-location review:
I also added it to the Attachment and Reference Log. If this ZIP does not give you clean separate top/bottom views, I’ll generate a simpler side-specific review file next.
Review top-bottom views
Fix export clarity
Check placement constraints
Update review package

Q4
MP2
Q5
MP3
Q3
BT1
Q6
Q2
BT2
Q1
MP1
R118
Resistance
10 kΩ
R49
Resistance
100Ω
R111
Resistance
10kΩ
R123
Resistance
220 ohms
R120
Resistance
4.7 kΩ
J4
R108
Resistance
10kΩ
R51
Resistance
100Ω
R117
Resistance
220 ohms
J1
R116
Resistance
220 ohms
J5
R109
Resistance
10kΩ
R119
Resistance
220 ohms
R106
Resistance
10kΩ
R102
Resistance
100kΩ
R103
Resistance
20kΩ
R48
Resistance
100Ω
R101
Resistance
0Ω
J3
R114
Resistance
10kΩ
R121
Resistance
1 kΩ
R50
Resistance
100Ω
R28
Resistance
4.7Ω
J2
R43
Resistance
4.7Ω
R46
Resistance
39kΩ
R115
Resistance
10kΩ
R107
Resistance
10kΩ
R122
Resistance
10 kΩ
R36
Resistance
39kΩ
R104
Resistance
10kΩ
R29
Resistance
4.7Ω
R110
Resistance
10kΩ
R105
Resistance
10kΩ
R42
Resistance
4.7Ω
R34
Resistance
4.7Ω
R113
Resistance
10kΩ
R35
Resistance
4.7Ω
R30
Resistance
39kΩ
R112
Resistance
10kΩ
C131
Capacitance
100nF
C115
Capacitance
10µF
C129
Capacitance
220nF
TP3
TP4
C124
Capacitance
18pF
Y2
C123
Capacitance
18pF
C126
Capacitance
2.2µF
C118
Capacitance
100nF
C138
Capacitance
100 nF
C128
Capacitance
220nF
TP5
C34
Capacitance
2.2nF
C134
Capacitance
100nF
C108
Capacitance
100nF
C135
Capacitance
100 nF
C136
Capacitance
100 nF
C104
Capacitance
1µF
C105
Capacitance
47µF
C127
Capacitance
220nF
C121
Capacitance
2.2µF
C120
Capacitance
2.2µF
C125
Capacitance
220nF
C117
Capacitance
100nF
C139
Capacitance
100 nF
C106
Capacitance
47µF
C137
Capacitance
100 nF
TP2
C122
Capacitance
100nF
C110
Capacitance
10pF
C107
Capacitance
100nF
TP1
C111
Capacitance
10pF
C102
Capacitance
10µF
C114
Capacitance
10µF
C119
Capacitance
100nF
C109
Capacitance
100nF
C132
Capacitance
100nF
C133
Capacitance
1µF
C101
Capacitance
10µF
C36
Capacitance
2.2nF
C130
Capacitance
100nF
C116
Capacitance
100nF
C103
Capacitance
100nF
R54
Y1
U2
R53
U5
L2
Inductance
2.2nH
U3
L1
Inductance
2.2uH
D1
U6
D2
C112
U4
C113
Capacitance
2.2pF
U1

70A ESC AFHDS Receiver

70A ESC AFHDS Receiver thumbnail