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authorMatthias P. Braendli <matthias.braendli@mpb.li>2020-04-07 22:26:46 +0200
committerMatthias P. Braendli <matthias.braendli@mpb.li>2020-04-07 22:26:46 +0200
commit486427acf87e86a4e3d006f10219b08d9ab3e3c4 (patch)
tree51a4e4f6a18091231d44b6eee31c53f119587783 /README.md
parent52c02204ce52595e61ee4d24459bb09cce6f45e8 (diff)
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Replace atmega by stm32f103
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-rw-r--r--README.md12
1 files changed, 4 insertions, 8 deletions
diff --git a/README.md b/README.md
index fe1aee8..0e14d5d 100644
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+++ b/README.md
@@ -7,7 +7,7 @@ combined with the [Anglian 3L transverter](http://www.g4ddk.com/Products.html).
* Designed in KiCad
* Meant to be used with a microwave transverter
* But also stand-alone 28MHz and 144MHz (The IF bands)
-* Using an ATMega controller
+* Using a STM32F103C8T6 controller
* Si5351 clock source (generates 3 clocks)
* An LCD display
* Discarded ideas
@@ -20,17 +20,13 @@ TODO before ordering the PCB
* Microphone input
* Verify microphone pinout for MH-42
- * Is audio level at SSM2167 output sufficient for the SA602A ?
* CW
* Does the trick with the DC bias to leak the LO work ?
* Not tested, but plan B done (J306)
+ * Use an additional PWM output for plan B?
* Put sidetone volume setting before RV303?
-* Consider reordering UI pins, if it simplifies routing
- * Mockup location of potentiometers, encoder, display and buttons
- * Check cabling
-
* Si5153
* Check desired frequencies can be achieved:
* LO1 = 28 - 4.9152 + VFO
@@ -44,7 +40,7 @@ PCB Assembly Plan
* Check output voltages
* Check drop under load
-2. ATmega
+2. STM32F103C8T6
* Programming
* Sidetone low-pass
* Probably need to do a UI proto already
@@ -53,7 +49,7 @@ PCB Assembly Plan
* Check I2C works
4. 8V and 5V relay
- * Check switching with ATmega and validate resistors
+ * Check switching with microcontroller and validate resistors
5. Baseband
1. Crystal filter shape