Uploaded February 2024 | Updated September 2026, 11 hours ago
The shaft is intended to go into the collet of the milling machine …
↓↓↓ Complete description, time index and links below ↓↓↓
Most of the time, when working with my small Proxxon milling combo (link below), I align my parts visually: I move the compound table until a center drill in the mill collet is on top of the lines I scribed into the part.
But the tip of a center drill is not really pointed, which makes this method cumbersome and a wee bit imprecise. So we will make some pointed metal shaft that can be clamped into the mill collet.
00:00 Intro – a 6mm pointed mild steel shaft
00:23 Purpose – center drills don’t cut it for visual alignment
02:10 Turning (1) – the face of the round stock, tool alignment
04:18 Turning (2) – down from a diameter of 8mm to 6mm
08:36 Turning (3) – polishing with sandpaper and steel wool
09:24 Turning (4) – the end to a 30° tip with the compound
10:45 Parting – off the part from the round stock
11:49 Turning (5) – the other face of the part, filing the edge
12:03 Turning (6) – fitting the shaft (sandpaper and steel wool)
14:31 Wrap-up – that took about three hours, bye
Small Projects youtube.com/playlist?list=PLwq-2MnM58FIYvR6bny0fwgH4PFyIIeqR
Proxxon BFW 40/E, BFB 2000, KT 150 Mill/Drill Combo “Unboxing”/Features youtu.be/AKdBRVT9RWs
#proxxon #shaft #alignment #project #projects #build #robertssmorgasbord
The shaft is intended to go into the collet of the milling machine …
↓↓↓ Complete description, time index and links below ↓↓↓
Most of the time, when working with my small Proxxon milling combo (link below), I align my parts visually: I move the compound table until a center drill in the mill collet is on top of the lines I scribed into the part.
But the tip of a center drill is not really pointed, which makes this method cumbersome and a wee bit imprecise. So we will make some pointed metal shaft that can be clamped into the mill collet.
00:00 Intro – a 6mm pointed mild steel shaft
00:23 Purpose – center drills don’t cut it for visual alignment
02:10 Turning (1) – the face of the round stock, tool alignment
04:18 Turning (2) – down from a diameter of 8mm to 6mm
08:36 Turning (3) – polishing with sandpaper and steel wool
09:24 Turning (4) – the end to a 30° tip with the compound
10:45 Parting – off the part from the round stock
11:49 Turning (5) – the other face of the part, filing the edge
12:03 Turning (6) – fitting the shaft (sandpaper and steel wool)
14:31 Wrap-up – that took about three hours, bye
Small Projects youtube.com/playlist?list=PLwq-2MnM58FIYvR6bny0fwgH4PFyIIeqR
Proxxon BFW 40/E, BFB 2000, KT 150 Mill/Drill Combo “Unboxing”/Features youtu.be/AKdBRVT9RWs
#proxxon #shaft #alignment #project #projects #build #robertssmorgasbord








![Melexis MLX90363 Triaxis® Magnetometer & Arduino MCU – The Details (11)
Covering the parameters ORTH_SEL, ORTH_XY and MAPXYZ …
↓↓↓ Complete description, time index and links below ↓↓↓
In the previous video we’ve improved the oscillator frequency measurement, determined/verified the axes of the chip and tackled the first two parameters – VIRTUALGAINMIN/-MAX (link below). Now we’ll have a look at the next parameters.
We start with some errata regarding VIRTUALGAINMIN/-MAX. Then we read up on the ORTH_[SEL|XY|B1B2] parameters in the datasheet and experiment with ORTH_SEL and ORTH_XY. We also look at MAPXYZ and do some housekeeping.
00:00 Intro – we’ll be going through more parameters
00:45 Errata – VIRTUALGAINMIN/-MAX application
03:24 ORTH_[SEL|XY|B1B2] – according to the datasheet
09:02 Housekeeping 1 – active/updateOrth…() methods
11:53 Experimenting – effect of ORTH_SEL and ORTH_XY
25:16 MAPXYZ – mapping X/Y/Z to B1/B2/B3 channels
28:21 Houskeeping 2 – renaming MapXYZ enumerators
30:08 Wrap-up – more config parameters to follow, bye
Tutorials https://www.youtube.com/playlist?list=PLwq-2MnM58FKn3920rc1V0qoTsQDheTIw
Melexis MLX90363 Triaxis® Magnetometer & Arduino MCU – The Basics https://youtu.be/XAbHbonRWEk
Melexis MLX90363 Triaxis® Magnetometer & Arduino MCU – The Details (1) https://youtu.be/w1Tx66HK83Q
Melexis MLX90363 Triaxis® Magnetometer & Arduino MCU – The Details (2) https://youtu.be/HDymx1VU_a8
Melexis MLX90363 Triaxis® Magnetometer & Arduino MCU – The Details (3) https://youtu.be/6rkxCzaH1hQ
Melexis MLX90363 Triaxis® Magnetometer & Arduino MCU – The Details (4) https://youtu.be/8s34R9XDqzk
Melexis MLX90363 Triaxis® Magnetometer & Arduino MCU – The Details (5) https://youtu.be/MrlVVu7uIHg
Melexis MLX90363 Triaxis® Magnetometer & Arduino MCU – The Details (6) https://youtu.be/5g_6NYy5Qcg
Melexis MLX90363 Triaxis® Magnetometer & Arduino MCU – The Details (7) https://youtu.be/0tTG7peMkSI
Melexis MLX90363 Triaxis® Magnetometer & Arduino MCU – The Details (8) https://youtu.be/xaL3Or_DVjI
Melexis MLX90363 Triaxis® Magnetometer & Arduino MCU – The Details (9) https://youtu.be/JhSwvkAOEUc
Melexis MLX90363 Triaxis® Magnetometer & Arduino MCU – The Details (10) https://youtu.be/YmZj0D8PAvE
My code https://drive.google.com/drive/folders/1CLvym6ytoPLXkoji6DU-rJKnTpFYmiu6?usp=sharing
Melexis MLX90636 Datasheet https://media.melexis.com/-/media/files/documents/datasheets/mlx90363-datasheet-melexis.pdf
Getting Started Guide for MLX90363 | Melexis https://media.melexis.com/-/media/files/documents/application-notes/mlx90363-getting-started-guide-application-note-melexis.pdf?la=en
#arduino #magnetometer #microcontroller #spi #tutorials #tutorial #how-to #robertssmorgasbord Melexis MLX90363 Triaxis® Magnetometer & Arduino MCU – The Details (11)](https://i.ytimg.com/vi/HtG6XRlLfJg/mqdefault.jpg)

