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Evolution of Apple’s A Series Processors

Apple company embraces proprietary technology while other companies outsource. Apple keeps things in-house whenever possible and chips found in iOS devices are not expected. While Samsung, Microsoft, and HTC rely on Qualcomm and intel for chipsets Apple has its own team of engineers to work on the proprietary design which is exclusive to their devices.

Apple silicon is a series of systems on a chip (SoC) and system in a package (SiP) processor designed by Apple Inc., mainly using the ARM architecture. Mac computers as well as iPhones, iPad, Apple TVs, and Apple Watch, and products such as AirPods, HomePod, iPod Touch, and airbags are all based on the same.

So, I am going to take a fair evolution of Apple silicon a series of systems on a chip (SoC) and system in a package (SiP) processor designed by Apple Inc.

Apple A4

The A4 commercially debuted in 2010, on Apple’s iPad tablet. and was later used in the iPhone 4 smartphone, the fourth-generation iPod Touch, and the 2nd-generation Apple TV

Core features of Apple A4:

Apple A5

The A5 replaced the A4 manufactured by Samsung. The chip commercially debuted with the release of Apple’s iPad 2 tablet in March 2011. Followed by its release in the iPhone 4S smartphone later that year.

Core features of Apple A5:

Apple A5X

The Apple A5X is an SoC announced on March 7, 2012, at the launch of the third-generation iPad. It is a high-performance variant of the Apple A5; Apple claims it has twice the graphics performance of the A5. It was superseded in the fourth-generation iPad by the Apple A6X processor.

Core features of Apple A5X:

Apple A6

The Apple A6 is a PoP SoC introduced on September 12, 2012, at the launch of the iPhone 5, then a year later was inherited by its minor successor the iPhone 5C. Apple states that it is up to twice as fast and has up to twice the graphics power compared to its predecessor the Apple A5. It is 22% smaller and draws less power than the 45 nm A5.

Core features of Apple A6:

 Apple A6X

Like the A6, this SoC continues to use the dual-core Swift CPU, but it has a new quad-core GPU and quad-channel memory.

Core features of Apple A6X:

Apple A7

The Apple A7 is a 64-bit PoP SoC whose born with iPhone 5S, which was introduced on September 10, 2013. The chip would also be used in the iPad Air, iPad Mini 2, and iPad Mini 3. Apple states that it is up to twice as fast and has up to twice the graphics power compared to its predecessor the Apple A6. The Apple A7 chip is the first 64-bit chip to be used in a smartphone and later a tablet computer.

Core features of Apple A7:

Apple A7

The first appearance of the iPhone 6 and iPhone 6 Pro arrived with Apple A7 with the enhancement in processor, on 9 September 2014.

Core features of Apple A8:

It contains 2 billion transistors. Despite that being double the number of transistors compared to the A7, its physical size has been reduced by 13% to 89 mm2 (consistent with a shrink only, not known to be a new microarchitecture)ARMv8-A.Apple A8X.         

 Apple A8X

The Apple A8X is a 64-bit SoC introduced at the launch of the iPad Air 2 on October 16, 2014.

Core features of Apple A8X:

Apple A9

The Apple A9 is a 64-bit ARM-based SoC that first appeared in the iPhone 6S and 6S Plus, which were introduced on September 9, 2015.

Core features of Apple A9:

Apple A9X

The Apple A9X is a 64-bit SoC that was announced on September 9, 2015, and released on November 11, 2015.

       Core features of Apple A9X:

Apple A10 Fusion

The Apple A10 Fusion is a 64-bit ARM-based SoC that first appeared in the iPhone 7 and 7 Plus, which were introduced on September 7, 2016.

      Core features of Apple A10

Apple A10X Fusion

The Apple A10X Fusion is a 64-bit ARM-based SoC that first appeared in the 10.5″ iPad Pro and the second generation of the 12.9″ iPad Pro, which was both announced on June 5, 2017.

Core features of Apple A10X:

 A11 Bionic

The Apple A11 Bionic is a 64-bit ARM-based SoC[87] that first appeared in the iPhone 8, iPhone 8 Plus, and iPhone X, which were introduced on September 12, 2017.

Core features of Apple A10X:

Apple A12 Bionic

The Apple A12 Bionic is a 64-bit ARM-based SoC that first appeared in the iPhone XS, XS Max, and XR, which were introduced on September 12, 2018.

Core features of Apple A12 Bionic:

Apple A12X Bionic

The Apple A12X Bionic is a 64-bit ARM-based SoC that first appeared in the 11.0″ iPad Pro and the third generation of the 12.9″ iPad Pro, which was both announced on October 30, 2018.

Core features of Apple A12X Bionic:

Apple A12Z Bionic

The Apple A12Z Bionic is an updated version of the A12X Bionic, first appearing in the fourth generation iPad Pro, which was announced on March 18, 2020.

Core features of Apple A12Z:

The A12Z is also used in the Developer Transition Kit prototype computer that helps developers prepare their software for Macs based on Apple silicon.

Apple A13 Bionic

The Apple A13 Bionic is a 64-bit ARM-based SoC that first appeared in the iPhone 11, 11 Pro, and 11 Pro Max, which were introduced on September 10, 2019.

Core features of Apple A13:

The Studio Display (announced March 8, 2022)The entire A13 SoC features a total of 18 cores – a six-core CPU, four-core GPU, and an eight-core Neural Engine processor, which is dedicated to handling on-board machine learning processes; four of the six cores on the CPU are low-powered cores that are dedicated to handling less CPU-intensive operations, such as voice calls, browsing the Web, and sending messages, while two higher-performance cores are used only for more CPU-intensive processes, such as recording 4K video or playing a video game.

Apple A14 Bionic

The Apple A1 14 arrived on October 23, 2020. with several positive changes.

Core features of Apple A14 Bionic:

Apple A15 Bionic

The Apple A15 Bionic is a 64-bit ARM-based SoC that first appeared in the iPhone 13, unveiled on September 14, 2021.

Core features of Apple A7:

Hence, above all, I have provided you with various changes and revolutions throughout the generation of the Apple A series, So while collecting information stay connected for further knowledge.

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