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encoder3.py
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encoder3.py
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import pyb
import stm
# This script sets up a timer to do quadrature decoding
#
# THis script assumes that you have a jumper from X1 to X3 and X2 to X4
out_idx = 0
out_seq = [0, 1, 3, 2]
pin_a2 = pyb.Pin('X3', pyb.Pin.OUT_PP)
pin_b2 = pyb.Pin('X4', pyb.Pin.OUT_PP)
def set_out():
print("Writing X4 {:d} X3 {:d}".format((out_seq[out_idx] & 0x02) != 0, (out_seq[out_idx] & 0x01) != 0))
pin_a2.value((out_seq[out_idx] & 0x01) != 0)
pin_b2.value((out_seq[out_idx] & 0x02) != 0)
def incr():
global out_idx
out_idx = (out_idx + 1) % 4
set_out()
def decr():
global out_idx
out_idx = (out_idx - 1) % 4
set_out()
set_out()
pin_a = pyb.Pin('X1', pyb.Pin.AF_PP, pull=pyb.Pin.PULL_NONE, af=pyb.Pin.AF1_TIM2)
pin_b = pyb.Pin('X2', pyb.Pin.AF_PP, pull=pyb.Pin.PULL_NONE, af=pyb.Pin.AF1_TIM2)
enc_timer = pyb.Timer(2, prescaler=1, period=100000)
enc_channel = enc_timer.channel(1, pyb.Timer.ENC_AB)
for i in range(12):
print("Counter =", enc_timer.counter());
incr()
for i in range(24):
print("Counter =", enc_timer.counter());
decr()
for i in range(12):
print("Counter =", enc_timer.counter());
incr()
print("Counter =", enc_timer.counter());