Treadmill malfunction: drive PCB can misread the signals and stop or reverse and then accelerate forward.
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Treadmill malfunction: drive PCB can misread the signals and stop or reverse and then accelerate forward.
Treadmill malfunction: drive PCB can misread the signals and stop or reverse and then accelerate forward.
Treadmill malfunction: drive PCB can misread the signals and stop or reverse and then accelerate forward.
Treadmill malfunction: drive PCB can misread the signals and stop or reverse and then accelerate forward.
Treadmill malfunction: drive PCB can misread the signals and stop or reverse and then accelerate forward.
Treadmill malfunction: drive PCB can misread the signals and stop or reverse and then accelerate forward.
This has been identified a rare occurrence, under a specific scenario, where the circuit is found in a latch-up condition on the PCB that controls the safety function of the Magnetic Safety Tether, that when the magnet is pulled loose as during a fall, the treadmill may fail to stop.
This has been identified a rare occurrence, under a specific scenario, where the circuit is found in a latch-up condition on the PCB that controls the safety function of the Magnetic Safety Tether, that when the magnet is pulled loose as during a fall, the treadmill may fail to stop.
This has been identified a rare occurrence, under a specific scenario, where the circuit is found in a latch-up condition on the PCB that controls the safety function of the Magnetic Safety Tether, that when the magnet is pulled loose as during a fall, the treadmill may fail to stop.
This has been identified a rare occurrence, under a specific scenario, where the circuit is found in a latch-up condition on the PCB that controls the safety function of the Magnetic Safety Tether, that when the magnet is pulled loose as during a fall, the treadmill may fail to stop.
This has been identified a rare occurrence, under a specific scenario, where the circuit is found in a latch-up condition on the PCB that controls the safety function of the Magnetic Safety Tether, that when the magnet is pulled loose as during a fall, the treadmill may fail to stop.
This has been identified a rare occurrence, under a specific scenario, where the circuit is found in a latch-up condition on the PCB that controls the safety function of the Magnetic Safety Tether, that when the magnet is pulled loose as during a fall, the treadmill may fail to stop.
This has been identified a rare occurrence, under a specific scenario, where the circuit is found in a latch-up condition on the PCB that controls the safety function of the Magnetic Safety Tether, that when the magnet is pulled loose as during a fall, the treadmill may fail to stop.