![]() A current could make the metal corrode and the connector strip stop working. That’s why Apple automatically disables the lightning connector when your phone detects liquid in it. The same goes for the metal pins inside your lightning port.īut without an electrical current passing through these metal pins, the liquid shouldn’t cause any lasting damage (unless it leaves residue on the pins). This means that the metal components inside your phone can still corrode and cease working properly if they come into contact with liquid of any kind. Water-resistant iPhones aren’t waterproof. In fact, if you have an iPhone 8 or later, your iPhone is water-resistant.īut being water-resistant doesn’t mean your phone can’t suffer from liquid damage. So what? Isn’t my iPhone water-resistant anyway? What if my iPhone is water-resistant?Įvery iPhone in Apple’s current lineup is water-resistant. Ok, so I left my phone in the bathroom while I showered. Spilled drink – spilling coffee or water on your iPhone is another sure way to get it wet.Pool – jumping in the pool with your phone in your pocket will certainly get it wet!.Rain – if you get caught outside in a rain storm or even just a shower, your phone can get wet.Shower – if you leave your iPhone in the bathroom while you shower, the humidity can get quite high, creating a build-up of moisture inside your charging port.There are a lot of different ways this can happen, but here are some of the most common: When you see the “ Liquid Detected in Lightning Connector” alert, it means that either your phone’s charging port or the lightning charging cable is wet or moist. The “lightning connector” is just a fancy term for your iPhone’s charging port. You need a 20W or higher power adapter to fast charge your iPhone 12 and later.9 Conclusion What does it mean when there is liquid in the lightning connector Charge time varies with settings and environmental factors actual results will vary.Ģ. Fast-charge testing conducted with drained iPhone units. Testing conducted by Apple in August 2022 using preproduction iPhone 14, iPhone 14 Plus, iPhone 14 Pro, and iPhone 14 Pro Max units and software and accessory Apple USB-C Power Adapter (20W Model A2305). Testing conducted by Apple in February 2022 using preproduction iPhone SE (3rd generation) units and software and accessory Apple USB-C Power Adapter (20W Model A2305). ![]() Charge time varies with environmental factors actual results will vary. Testing conducted by Apple in August 2021 using preproduction iPhone 13 mini, iPhone 13, iPhone 13 Pro, and iPhone 13 Pro Max units and software and accessory Apple USB-C Power Adapter (20W Model A2305). Testing conducted by Apple in September 2020 using preproduction iPhone 12, iPhone 12 mini, iPhone 12 Pro, and iPhone 12 Pro Max units and software and accessory Apple USB-C Power Adapter (20W Model A2305). Testing conducted by Apple in February 2020 using preproduction iPhone SE (2nd generation) units and software and accessory Apple USB-C Power Adapters (18W Model A1720 and 30W Model A1882). Testing conducted by Apple in August 2019 using preproduction iPhone 11, iPhone 11 Pro, and iPhone 11 Pro Max units and software and accessory Apple USB-C Power Adapters (18W Model A1720, 29W Model A1540, 30W Model A1882, 61W Model A1947, and 87W Model A1719). Testing conducted by Apple in August 2017 using preproduction iPhone X, iPhone 8, and iPhone 8 Plus units and software, and in August 2018 using preproduction iPhone XS, iPhone XS Max, and iPhone XR units and software, with accessory Apple USB-C Power Adapters (18W Model A1720, 29W Model A1540, 30W Model A1882, 61W Model A1718, 87W Model A1719). ![]()
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