Some smart locks are vulnerable to being manipulated with a magnet, if they’re poorly designed, since someone can just manipulate the motor from outside.
But since smart locks generally also have a traditional mechanical mechanism for backup, aren’t they inherently always less secure than a traditional lock since you can find the weakest link in either of the two mechanisms?
Yup. The backup for battery failure on this model is that the bottom of the plate can accept power from the pins of a 9V battery, held there just long enough to punch in the code.
Things might be different by now, but when I was researching this I decided on the Yale x Nest.
It’s more secure than a keyed lock in the following ways:
It’s less secure than a physical traditional lock in the following ways:
It’s basically the same level of security in the following ways:
Overall, I’d say it’s more secure against real-world risk, where the weakest link tends to be the people you share your keys with.
Some smart locks are vulnerable to being manipulated with a magnet, if they’re poorly designed, since someone can just manipulate the motor from outside.
But since smart locks generally also have a traditional mechanical mechanism for backup, aren’t they inherently always less secure than a traditional lock since you can find the weakest link in either of the two mechanisms?
Usually yes, but this person is saying theirs does not have a physical keyhole.
Yup. The backup for battery failure on this model is that the bottom of the plate can accept power from the pins of a 9V battery, held there just long enough to punch in the code.