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authorJan Henrik <janhenrik@janhenrik.org>2020-04-01 02:17:22 +0200
committerGitHub <noreply@github.com>2020-04-01 02:17:22 +0200
commit41a1aff78da4041375c7f60f1a0480c95b771ee0 (patch)
tree2145b4a7828550c5cc12878164b5668a62b30f9b
parenta28230b5f8f34e0db988b442f0db21be709fd203 (diff)
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Update README.md
-rw-r--r--README.md16
1 files changed, 8 insertions, 8 deletions
diff --git a/README.md b/README.md
index 5fd6d38..36d1727 100644
--- a/README.md
+++ b/README.md
@@ -20,35 +20,35 @@ Materials needed:
Remove the FUSB302 and add two 5.1k ohm resistos to R1 and R2. Slide the board into the 3D printed part and secure with some glue if needed. Add two wires to DFU and 3.3V (break out the DFU-Button so you can boot into DFU-mode while the case is closed).
-![](/images/b1.jpg | width=100)
-![](/images/b2.jpg | width=100)
+<img src="images/b1.jpg" width="100">
+<img src="images/b2.jpg" width="100">
#### 2 - Prepare the IBM Dials
Open up the case and unscrew the old connector. Remove C5 and lift the board center facing side of R3.
-![](/images/b3.jpg | width=200)
+<img src="images/b3.jpg" width="200">
#### 3 - Install OtterPill
Fix the OtterPill where you have unscrewed the connector, reuse the screws.
-![](/images/b4.jpg | width=200)
+<img src="images/b4.jpg" width="200">
#### 4 - Wiring 1
Wire the dials from the old ADC to the ADC-inputs of the OtterPill (PA1-PA7, PB0), connect the exposed pad from R3 to 3.3V from the OtterPill and connect 5V to the center of L1. Additionally one can add 10nF capacitors to the ADC inputs to stabilize the readings.
-![](/images/b5.jpg | width=200)
+<img src="images/b5.jpg" width="200">
-![](/images/b6.jpg | width=100)
-![](/images/b7.jpg | width=100)
+<img src="images/b6.jpg" width="100">
+<img src="images/b7.jpg" width="100">
#### 5 - Wiring 2
Add a large (~100µF) capacitor to 3.3V and connect OtterPills ground as shown in the following picture.
-![](/images/b7.jpg | width=200)
+<img src="images/b7.jpg" width="200">
#### 6 - Flashing