User manual SEAGATE SAVVIO 10K.3 SAS REV F
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Manual abstract: user guide SEAGATE SAVVIO 10K.3 SASREV F
Detailed instructions for use are in the User's Guide.
[. . . ] Product Manual
Savvio 10K. 3 SAS
®
Standard Models
Self-Encrypting Drive Models
ST9300603SS ST9146803SS
ST9300503SS ST9146703SS
SED FIPS 140-2 Models
ST9300403SS ST9146603SS
100516229 Rev. F November 2010
© 2010 Seagate Technology LLC. F November 2010 Seagate, Seagate Technology and the Wave logo are registered trademarks of Seagate Technology LLC in the United States and/or other countries. Savvio and SeaTools are either trademarks or registered trademarks of Seagate Technology LLC or one of its affiliated companies in the United States and/or other countries. [. . . ] During idle, the drive heads are relocated every 60 seconds to a random location within the band from three-quarters to maximum track.
Savvio 10K. 3 SAS Product Manual, Rev. F
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General DC power requirement notes. Minimum current loading for each supply voltage is not less than 1. 7% of the maximum operating current shown. The +5V and +12V supplies should employ separate ground returns. Where power is provided to multiple drives from a common supply, careful consideration for individual drive power requirements should be noted. Where multiple units are powered on simultaneously, the peak starting current must be available to each device. Parameters, other than spindle start, are measured after a 10-minute warm up. 7. 2. 1 Conducted noise immunity
Noise is specified as a periodic and random distribution of frequencies covering a band from DC to 10 MHz. Maximum allowed noise values given below are peak-to-peak measurements and apply at the drive power connector.
+5v +12v = = 250 mV pp from 100 Hz to 20 MHz. 250 mV pp from 20 KHz to 5 MHz.
7. 2. 2
Power sequencing
The drive does not require power sequencing. The drive protects against inadvertent writing during power-up and down.
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Savvio 10K. 3 SAS Product Manual, Rev. F
7. 2. 3
Current profiles
The +12V and +5V current profiles for the Savvio 10k. 3 drives are shown below.
Figure 17.
Current profiles for 300GB models
Savvio 10K. 3 SAS Product Manual, Rev. F
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Figure 18.
Current profiles for 146GB models
Note: All times and currents are typical. See Tables 2 and 3 for maximum current requirements.
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Savvio 10K. 3 SAS Product Manual, Rev. F
7. 3
Power dissipation
300 GB models in 3 Gbit operation Typical power dissipation under idle conditions in 3Gb operation is 3. 79 watts (12. 93 BTUs per hour). To obtain operating power for typical random read operations, refer to the following I/O rate curve (see Figure 19). Locate the typical I/O rate for a drive in your system on the horizontal axis and read the corresponding +5 volt current, +12 volt current, and total watts on the vertical axis. To calculate BTUs per hour, multiply watts by 3. 4123.
Figure 19.
300GB (at 3 Gbit) DC current and power vs. input/output operations per second
Savvio 10K. 3 SAS Product Manual, Rev. F
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300GB models in 6 Gbit operation Typical power dissipation under idle conditions in 6Gb operation is 3. 82 watts (13. 03 BTUs per hour). To obtain operating power for typical random read operations, refer to the following I/O rate curve (see Figure 19). Locate the typical I/O rate for a drive in your system on the horizontal axis and read the corresponding +5 volt current, +12 volt current, and total watts on the vertical axis. [. . . ] Table 14: Ready LED Out conditions
LED status 0 Off On On Off 1 Off On Off On
Normal command activity
Ready LED Meaning bit mode page 19h
Spun down and no activity Spun down and activity (command executing) Spun up and no activity Spun up and activity (command executing) Spinning up or down Format in progress, each cylinder change
Blinks steadily (50% on and 50% off, 0. 5 seconds on and off for 0. 5 seconds) Toggles on/off
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Savvio 10K. 3 SAS Product Manual, Rev. F
The Ready LED Out signal is designed to pull down the cathode of an LED. The anode is attached to the proper +3. 3 volt supply through an appropriate current limiting resistor. The LED and the current limiting resistor are external to the drive. [. . . ]
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