# SPDX-FileCopyrightText: 2024 Brent Rubell for Adafruit Industries
 #
 # SPDX-License-Identifier: MIT
-import pytest
+import pytest  # pylint: disable=unused-import
 import board
 import analogio
 
+
 # Analog Outputs
 def test_Ax_OUTPUT():
     """Test analog output pin functionality."""
-    assert board.board_id == "GENERIC_AGNOSTIC_BOARD"
+    assert board.board_id == "OS_AGNOSTIC_BOARD"
     pin_out = analogio.AnalogOut(board.Ax_OUTPUT)
 
     # Test boundaries of setting the value and reading it back
 
 def test_Ax_INPUT_RAND_INT():
     """Test random integer from pin Ax_INPUT_RAND_INT"""
-    assert board.board_id == "GENERIC_AGNOSTIC_BOARD"
+    assert board.board_id == "OS_AGNOSTIC_BOARD"
     pin_random = analogio.AnalogIn(board.Ax_INPUT_RAND_INT)
 
     assert isinstance(pin_random.value, int)
 
 def test_Ax_INPUT_FIXED_INT_PI():
     """Test fixed integer from pin Ax_INPUT_FIXED_INT_PI"""
-    assert board.board_id == "GENERIC_AGNOSTIC_BOARD"
+    assert board.board_id == "OS_AGNOSTIC_BOARD"
     pin_pi = analogio.AnalogIn(board.Ax_INPUT_FIXED_INT_PI)
 
     assert pin_pi.value == 31415
 
 def test_Ax_INPUT_WAVE_SINE():
     """Test sine wave from pin Ax_INPUT_WAVE_SINE"""
-    assert board.board_id == "GENERIC_AGNOSTIC_BOARD"
+    assert board.board_id == "OS_AGNOSTIC_BOARD"
     pin_sine_wave = analogio.AnalogIn(board.Ax_INPUT_WAVE_SINE)
 
     # Run through the sine wave once
-    for i, expected_value in enumerate(sine_wave):
+    for expected_value in sine_wave:
         assert pin_sine_wave.value == expected_value
 
-
     # Run through the sine wave again to ensure it loops back correctly
-    for i, expected_value in enumerate(sine_wave):
+    for expected_value in sine_wave:
         assert pin_sine_wave.value == expected_value
 
     pin_sine_wave.deinit()
 
 def test_Ax_INPUT_WAVE_SAW():
     """Test sawtooth wave from pin Ax_INPUT_WAVE_SAW"""
-    assert board.board_id == "GENERIC_AGNOSTIC_BOARD"
+    assert board.board_id == "OS_AGNOSTIC_BOARD"
     pin_saw_wave = analogio.AnalogIn(board.Ax_INPUT_WAVE_SAW)
 
     # Run through the sine wave once
-    for i in range(len(sawtooth_wave)):
-        assert pin_saw_wave.value == sawtooth_wave[i]
+    for expected_value in sawtooth_wave:
+        assert pin_saw_wave.value == expected_value
 
     # Run through the sine wave again to ensure it loops back correctly
-    for i in range(len(sawtooth_wave)):
-        assert pin_saw_wave.value == sawtooth_wave[i]
-
+    for expected_value in sawtooth_wave:
+        assert pin_saw_wave.value == expected_value
 
     pin_saw_wave.deinit()