How do you put a jumper on a SATA hard drive?

How do you put a jumper on a SATA hard drive?

Four-Pin Seagate SATA Drives

  1. Locate the jumper block on the back of the Seagate SATA hard drive.
  2. Place the jumper over the first and second pin on the right to limit the drive’s data transfer to 1.5 Gigabits per second when it is being used in a server or multi-drive desktop with slow hard drives.

How does IDE cable select work?

For cable select to work, an IDE/EIDE drive must have its jumpers set to CS and be using a cable that supports cable select. Users can identify if the flat ribbon cable supports cable select by examining the cable for any of the below characteristics. The cable is an 80-wire with 40-pin connector Ultra ATA cable.

What do jumpers do?

When you set a jumper, you place a plug on the prongs that completes a contact. In effect, the jumper acts as a switch by closing (or opening) an electrical circuit. Jumpers can be added or removed to change the function or performance of a PC component. A group of jumpers is sometimes called a jumper block .

What are the jumpers on a SATA drive for?

On SATA-II drives, a jumper is sometimes used to set the drive into SATA-I mode for compatibility with older controllers. Show activity on this post. Some SATA drives have jumpers to enable/disable 3Gb/s functionality or other backwards compatibility items.

What is 1.5gb PHY?

PHY stands for “physical layer”. By jumpering pins 5 & 6 will cause the drive to go into a legacy 1.5 Gbit/s mode, rather than its default 3.0 Gbit/s mode. Check out the Wikipedia article on SATA for a bit more info.

Where does the cable IDE 40 pin 40 conductor go?

If using the standard 40-wire cable, the Master goes in the middle connector and the Slave goes in the end connector.

What is hard disk CS?

hard disk, also called hard disk drive or hard drive, magnetic storage medium for a computer. Hard disks are flat circular plates made of aluminum or glass and coated with a magnetic material. Hard disks for personal computers can store terabytes (trillions of bytes) of information.

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