And the best part is - there is no excuse for an AC-powered device with a clock to drift at all, ever.
Who needs radio sync signals, NTP servers, or a freaking GPS module (lol) when we have this great hardwired 60 Hz frequency reference which is measured and adjusted for long-term stability...
https://en.wikipedia.org/wiki/Utility_frequency#Long-term_st...
> Today, AC-power network operators regulate the daily average frequency so that clocks stay within a few seconds of correct time. In practice the nominal frequency is raised or lowered by a specific percentage to maintain synchronization. Over the course of a day, the average frequency is maintained at the nominal value within a few hundred parts per million.[19] In the synchronous grid of Continental Europe, the deviation between network phase time and UTC (based on International Atomic Time) is calculated at 08:00 each day in a control center in Switzerland. The target frequency is then adjusted by up to ±0.01 Hz (±0.02%) from 50 Hz as needed, to ensure a long-term frequency average of exactly 50 Hz × 60 s/min × 60 min/h × 24 h/d = 4320000 cycles per day.[20] In North America, whenever the error exceeds 10 seconds for the east, 3 seconds for Texas, or 2 seconds for the west, a correction of ±0.02 Hz (0.033%) is applied. Time error corrections start and end either on the hour or on the half-hour.[21][22] Efforts to remove the TEC in North America are described at electric clock.