Computers use parts to save things. 
Computers use parts to save files. 
Computers need ways to talk to storage parts. 
Western Digital and Compaq helped make it in 1986. It was used for hard drives and CD drives.
Later, a new way called ATAPI was added. 
PATA cables have a limit on how long they can be. Because of this, they are usually inside the computer. PATA was very common because it was cheap. Now, a newer tool called SATA has mostly replaced it.
Computers need a way to talk to their storage parts. For many years, a standard called Parallel ATA, or PATA, did this job. 
This way of working uses a special method to move information. In the past, a separate card had to manage the hard drive. With PATA, the drive has its own controller built right inside it. 
History shows how this technology grew over time. Western Digital and Compaq first developed it in 1986. 
There are many different versions of this standard with specific facts. In 1994, the ATA-1 standard was officially recognized.
Even though PATA is older, it connects to things you might know. For example, some small memory cards called Compact Flash use a tiny version of this interface. 
Parallel ATA, often called PATA, is a standard interface for computer storage. It allows a computer to communicate with devices like hard disks, floppy disks, and optical drives. 
The mechanism of PATA relies on a major shift in how hardware is controlled. In older systems, a separate controller card was needed to manage the mechanical parts of a drive. PATA uses Integrated Drive Electronics, or IDE, which means the controller is built directly into the drive itself. 
As the technology evolved, different standards and versions emerged. The original interface was known as ATA or AT Attachment, designed for the 16-bit ISA bus. In 1994, the ATA-1 standard was officially recognized. Later, the ATA-2 specification introduced several enhancements. One major addition was the ATAPI, or ATA Packet Interface.
The history of PATA began with a collaboration between Western Digital and Compaq in 1986. They developed the IDE interface to remain compatible with existing IBM PC hard drive software. The first such drives appeared in Compaq computers in 1986, followed by a separate offering from Conner Peripherals in June 1987. For a long time, these interfaces were found on host bus adapters or sound cards. Eventually, they became embedded directly into the Southbridge chip on a computer's motherboard. In 2003, the introduction of SATA led to the original ATA being officially renamed Parallel ATA to avoid confusion.
Performance and capacity have changed significantly through different versions. The ATA/ATAPI-4 standard introduced Ultra DMA transfer modes. These modes initially supported speeds between 16 and 33 MB/s. Later versions of PATA can reach speeds of up to 133 MB/s. To achieve these higher speeds, newer versions required 80-wire cables to reduce electrical interference known as crosstalk. 
One surprising aspect of PATA history involves the limitations of the system BIOS. Early BIOS software often had artificial limits on how large a drive could be. One limit occurred at 504 MiB because some BIOSes could not handle certain numerical values. Another famous limit was the 8.4 gigabyte barrier, caused by limits in both the BIOS and MS-DOS. To fix this, manufacturers sometimes included small programs to override these limits during startup. Eventually, the Enhanced Disk Drive (EDD) extension allowed for much larger addressing.
Parallel ATA technology still connects to several modern or specialized systems. For example, Compact Flash memory cards use a miniature version of the IDE-ATA interface to function. 

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