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-rw-r--r--examples/other/i2c_stts75_sensor/README38
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diff --git a/examples/other/i2c_stts75_sensor/README b/examples/other/i2c_stts75_sensor/README
index 9d775af..91e3ff6 100644
--- a/examples/other/i2c_stts75_sensor/README
+++ b/examples/other/i2c_stts75_sensor/README
@@ -5,45 +5,9 @@ README
This example program sends some characters on USART1.
Afterwards it connects to an STTS75 sensor (ST LM75 compatible)
at adress A0/1/2=0 and sets reverse polarity, 26 degree Tos and Thyst.
+
It reads out the temperature and submits the temperature over USART1 in
binary format (ASCII 0/1).
The terminal settings for the receiving device/PC are 115200 8n1.
-
-Building
---------
-
- $ make
-
-Running 'make' on the top-level libopenstm32 directory will automatically
-also build this example. Or you can build the library "manually" and
-then run 'make' in this directory.
-
-You may want to override the toolchain (e.g., arm-elf or arm-none-eabi):
-
- $ PREFIX=arm-none-eabi make
-
-For a more verbose build you can use
-
- $ make V=1
-
-
-Flashing
---------
-
-You can flash the generated code using OpenOCD:
-
- $ make flash
-
-Or you can do the same manually via:
-
- $ openocd -f interface/jtagkey-tiny.cfg -f target/stm32.cfg
- $ telnet localhost 4444
- > reset halt
- > flash write_image erase i2c_stts75_sensor.hex
- > reset
-
-Replace the "jtagkey-tiny.cfg" with whatever JTAG device you are using, and/or
-replace "stm.cfg" with your respective config file.
-