forked from forks/qmk_firmware
ebb512db82
* Clean up `DEBOUNCE` in config.h, 0-9 * Clean up `DEBOUNCE` in config.h, A * Clean up `DEBOUNCE` in config.h, B * Clean up `DEBOUNCE` in config.h, C * Clean up `DEBOUNCE` in config.h, D * Clean up `DEBOUNCE` in config.h, E * Clean up `DEBOUNCE` in config.h, F * Clean up `DEBOUNCE` in config.h, G * Clean up `DEBOUNCE` in config.h, H * Clean up `DEBOUNCE` in config.h, handwired * Clean up `DEBOUNCE` in config.h, I * Clean up `DEBOUNCE` in config.h, J * Clean up `DEBOUNCE` in config.h, K * Clean up `DEBOUNCE` in config.h, L * Clean up `DEBOUNCE` in config.h, M * Clean up `DEBOUNCE` in config.h, N * Clean up `DEBOUNCE` in config.h, O * Clean up `DEBOUNCE` in config.h, P * Clean up `DEBOUNCE` in config.h, Q * Clean up `DEBOUNCE` in config.h, R * Clean up `DEBOUNCE` in config.h, S * Clean up `DEBOUNCE` in config.h, T * Clean up `DEBOUNCE` in config.h, U * Clean up `DEBOUNCE` in config.h, V * Clean up `DEBOUNCE` in config.h, W * Clean up `DEBOUNCE` in config.h, X * Clean up `DEBOUNCE` in config.h, Y * Clean up `DEBOUNCE` in config.h, Z * Remove default debounce from info.json * Migrate non-default debounce to info.json |
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.. | ||
keymaps/default | ||
config.h | ||
info.json | ||
macro3.c | ||
macro3.h | ||
post_config.h | ||
readme.md | ||
rules.mk |
Macro3
Macro3 is a low-profile macro pad with dual encoder support designed by @davidphilipbarr.
Keyboard Info
- Keyboard Maintainer: filterpaper, davidphilipbarr
- Hardware Supported: Macro3
- Hardware Availability: order PCBs with gerber file from the repository
Make example for this keyboard (after setting up your build environment):
make macro3:default
See the build environment setup and the make instructions for more information. Brand new to QMK? Start with our Complete Newbs Guide.
Bootloader
Enter the bootloader in 3 ways:
- Bootmagic reset: Hold down the top right key and plug in the controller.
- Keycode in layout: Press the key mapped to
QK_BOOT
if it is configured. - Physical reset pins: Briefly short the RST and GND pins on the microcontroller using tweezers, a paperclip, or any other conductive material.