Hardware
- 1.51 OLED ssd1309 SPI
- TPS61040DBVR (DCDC Vbat --> 12.5V)
- TP4054 (charge)
- PCB (0.8mm)
A open source transparent watch, ultra-thin, BLE, 20mm strap
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Hardware
LCEDA.zipSCH&PCB_V1.1x-zip-compressed - 829.58 kB - 08/17/2021 at 02:51 |
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CH573DS1.PDFkswps - 1.13 MB - 08/07/2021 at 08:31 |
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CH573SCH_R0_1v2.pdfkswps - 85.87 kB - 08/07/2021 at 08:31 |
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ZJY-2856KLBAG01.pdf1.51 oled modulekswps - 16.30 MB - 07/21/2021 at 10:16 |
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SSD1309.pdfICkswps - 1.72 MB - 07/21/2021 at 10:16 |
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Next, I'll add more low-power processing, as well as more types of clocks that show different clocks whenever I wake up my watch
I've been able to get data on BMA423, but some features don't work.
I temporarily purchased some QMA7981 as an alternative.
But while I wait, I'll continue to see what the problem is.
After receiving PCB v1.1 and welding, everything is working fine.
Next I'll start writing code.
I printed the 3D case and the assembly worked well.
Version 1.0 has some minor issues.
In version 1.1 I modified the position of the connector.
Use lceda to open the source file.
I finally received the PCB today.
The schematic and pcb have been drawn and are ready to be sent to the manufacturer
There are two acceleration sensors, one of which you can select as needed.
Because ch573 does not support hardware IIC, the SPI interface is used to communicate with the accelerometer.
If you have any better suggestions, please let me know.
A few days ago, I received the CH573 development board from WCH, so I'd like to try this chip.
I've ported the u8g2 library to this chip.
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