Product Manual
®
Momentus 5400.2 SATA
Removable Drive Cartridge
120GB
100425081
Rev. C
August 2007
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Contents
Introduction. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1
About the Serial ATA interface . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 2
Removable Drive Cartridge specifications . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3
Specification summary . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3
Formatted capacity . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 5
LBA mode . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 5
Default logical geometry . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 5
Physical organization . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 5
Recording and interface technology . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 5
Physical characteristics . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 6
Seek time. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 6
Start/stop times . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 6
Power specifications . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 6
Power consumption . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 6
Deferred spinup . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 8
Conducted noise . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 9
Voltage tolerance . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 9
Power-management modes. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 9
Environmental specifications. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 10
Ambient temperature . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 10
Temperature gradient. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 10
Humidity . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 10
Altitude. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 11
Shock. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 11
2.11.1 Vibration. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 11
Acoustics . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 12
Electromagnetic immunity . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 12
Reliability . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 13
Safety certification . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 13
Environmental protection. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 13
Corrosive environment . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 14
Using the drive . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 15
Handling precautions. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 15
Dimensions . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 15
Normal operation. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 16
Insertion capability. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 16
Write protect switch . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 16
Serial ATA (SATA) interface . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 17
Hot-Plug compatibility . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 17
Serial ATA device plug connector pin definitions. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 17
Supported ATA commands . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 19
Identify Device command. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 22
Set Features command . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 25
S.M.A.R.T. commands. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 26
5.0
Seagate Technology support services. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 27
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List of Figures
Figure 4.
Momentus 5400.2 SATA Removable Drive Cartridge . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1
Typical +5V only startup and operation current profile . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 8
Momentus 5400.2 SATA Removable Drive Cartridge dimensions. . . . . . . . . . . . . . . . . . . . . 15
Write protect switch . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 16
Momentus 5400.2 SATA Removable Drive Cartridge Product Manual, Rev. C
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1.0
Introduction
This manual describes the functional, mechanical and interface specifications for the 120GB Seagate
Momentus® 5400.2 SATA Removable Drive Cartridge (RDC).
These drives provide the following key features:
• Reliable--nonrecoverable read error rate of 1 in 1014 bits read.
• Rugged--can survive up to 1 M drop for all axes and each corner.
• Removable drive cartridges for convenience and portability.
• 5,400 RPM spindle speed.
• 8 Mbyte buffer.
• High instantaneous (burst) data-transfer rates (up to 150 Mbytes per second).
• Tunneling Magnetoresistive (TMR) recording heads.
• State-of-the-art cache and on-the-fly error-correction algorithms.
• Full-track multiple-sector transfer capability without local processor intervention.
• Quiet operation.
• SeaTools diagnostic software performs a drive self-test that eliminates unnecessary drive returns.
• The 3D Defense System™, which includes Drive Defense, Data Defense and Diagnostic Defense, offers the
industry’s most comprehensive protection for disc drives.
• Support for S.M.A.R.T. drive monitoring and reporting.
• Support for Read Multiple and Write Multiple commands.
Figure 1. Momentus 5400.2 SATA Removable Drive Cartridge
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1.1
About the Serial ATA interface
The Serial ATA interface provides several advantages over the traditional (parallel) ATA interface. The primary
advantages include:
• Easy installation and configuration with true plug-and-play connectivity. It is not necessary to set any jump-
ers or other configuration options.
• Thinner and more flexible cabling for improved enclosure airflow and ease of installation.
• Scalability to higher performance levels.
In addition, Serial ATA makes the transition from parallel ATA easy by providing legacy software support. Serial
ATA was designed to allow you to install a Serial ATA host adapter and Serial ATA disc drive in your current
system and expect all of your existing applications to work as normal.
The Serial ATA interface connects each disc drive in a point-to-point configuration with the Serial ATA host
adapter. There is no master/slave relationship with Serial ATA devices like there is with parallel ATA. If two
drives are attached on one Serial ATA host adapter, the host operating system views the two devices as if they
were both “masters” on two separate ports. This essentially means both drives behave as if they are Device 0
(master) devices.
Note. The host adapter may, optionally, emulate a master/slave environment to host software where two
devices on separate Serial ATA ports are represented to host software as a Device 0 (master) and
Device 1 (slave) accessed at the same set of host bus addresses. A host adapter that emulates a
master/slave environment manages two sets of shadow registers. This is not a typical Serial ATA
environment.
The Serial ATA host adapter and drive share the function of emulating parallel ATA device behavior to provide
backward compatibility with existing host systems and software. The Command and Control Block registers,
PIO and DMA data transfers, resets, and interrupts are all emulated.
The Serial ATA host adapter contains a set of registers that shadow the contents of the traditional device regis-
ters, referred to as the Shadow Register Block. All Serial ATA devices behave like Device 0 devices. For addi-
tional information about how Serial ATA emulates parallel ATA, refer to the “Serial ATA: High Speed Serialized
2
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2.0
Removable Drive Cartridge specifications
Unless otherwise noted, all specifications are measured under ambient conditions, at 25°C, and nominal
power. For convenience, the words and phrases RDC, removable drive cartridge, drive, and this drive are used
throughout this manual to indicate the 120GB Momentus 5400.2 SATA Removable Drive Cartridge (RDC).
2.1
Specification summary
The specifications listed below are for quick reference. For details on specification measurement or definition,
see the appropriate section of this manual.
Drive specification
120GB RDC (using ST9120821AS drive)
Formatted Gbytes (512 bytes/sector)
Guaranteed sectors
Bytes per sector
120
234,441,648
512
63
Default sectors per track
Default read/write heads
Default cylinders
16
16,383
4
Physical read/write heads
Discs
2
Recording density in BPI
(bits/inch max)
778k
Track density TPI (tracks/inch max)
126k
98.2
5,400
42
2
Areal density (Mbits/inch max)
Spindle speed (RPM)
Internal transfer rate
(Mbytes/sec max)
I/O data transfer rate
(Mbytes/sec max)
150
ATA data-transfer modes supported
SATA 1.0, Serial ATA Revision 2.5 Specification; PIO modes
0–4; Multiword DMA modes 0–2; UDMA modes 0–6
Cache buffer
8 Mbytes
Height (max)
24.50 +/- 0.2 mm (0.965 +/- .0078 inches)
Width (max)
85.70 +/- 0.3 mm (3.374 +/- 0.0118 inches)
Length (max)
112.28 +/- 0.3 mm (4.420 +/- 0.0118 inches)
Weight (typical)
172 grams (0.379 lb)
5.56
Average latency (msec)
Power-on to ready (typical)
Standby to ready (typical)
Startup current, (typical, peak)
Track-to-track seek time (msec typical)
3.5 sec
3.0 sec
+5V: 1.1A
1.0 (read), 1.5 (write)
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Drive specification
120GB RDC (using ST9120821AS drive)
Average seek, read (msec typical)
Average seek, write (msec typical)
Seek power (typical)
12.5
14.5
2.20 watts
Read/write power (typical)
Idle mode, low power (typical)
Standby mode (typical)
Read: 1.90 watts; Write: 2.30 watts
0.80 watts
0.28 watts**
Sleep mode (typical)
0.28 watts**
Voltage tolerance (including noise)
Ambient temperature
+5.0V ± 5%
5° to 55°C (operating), –40° to 70°C (nonoperating)
Temperature gradient
(°C per hour max)
20°C (operating)
30°C (nonoperating)
Relative humidity
5% to 90% (operating)
5% to 95% (nonoperating)
Relative humidity gradient
30% per hour max
Wet bulb temperature
(°C max)
30 (operating)
40 (nonoperating)
Altitude, operating
–304.8 m to 3,048 m
(–1000 ft to 10,000+ ft)
Altitude, nonoperating
(meters below mean sea level, max)
–304.8 m to 12,192 m
(–1000 ft to 40,000+ ft)
Shock, operating
250
(Gs max at 2 msec)
Shock, nonoperating
(Gs max at 0.5 msec)
1,500
Vibration, operating
0.5 G (0 to peak, 5–500 Hz)
Vibration, nonoperating
2.22 Grms (5-500 Hz random), 30 min. each axis
Frequency (Hz): 5-500; Slope (dB/Oct.):
Power Spectral Density (PSD) (G /Hz) +/- 6dB: 0.01
2
Drive acoustics, sound power (bels)
Idle*
<3.0 bels (typ)
<3.25 bels (max)
Seek
<3.4 bels (typ)
<3.6 bels (max)
14
Nonrecoverable read errors
Annualized Failure Rate (AFR)
Warranty
1 per 10 bits read
0.73%
1 year.
To determine the warranty for a specific drive, use a web
browser to access the following web page:
From this page, click on the “Verify Your Warranty” link. You
will be asked to provide the drive serial number, model num-
ber (or part number) and country of purchase. The system
will display the warranty information for your drive.
Load/Unload (U/UL) cycles
25°C, 50% relative humidity
600,000 software-controlled power on/off cycles
20,000 hard power on/off cycles
32°C, 80% relative humidity
5°C, 80% relative humidity
5°C, 10% relative humidity
55°C, 16% relative humidity
600,000 software-controlled power on/off cycles
20,000 hard power on/off cycles
Supports Hotplug operation per Serial ATA Revision 2.5 specification
Yes (requires COMPRESET from host after a hotplug event)
*During periods of drive idle, some offline activity may occur according to the S.M.A.R.T. specification, which may increase acoustic and
power to operational levels.
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**Typical notebooks will pull power to the drive when entering S3 and S4; while in the S3 and S4 states, drive sleep and drive standby modes
will not contribute to battery power consumption.
2.2
Formatted capacity
Formatted capacity
120 Gbytes
Guaranteed sectors
234,441,648
Bytes per sector
512
2.2.1
LBA mode
When addressing these drives in LBA mode, all blocks (sectors) are consecutively numbered from 0 to n–1,
where n is the number of guaranteed sectors as defined above.
See Section 4.3.1, "Identify Device command" (words 60-61 and 100-103) for additional information about 48-
bit addressing support of drives with capacities over 137 Gbytes.
2.3
Default logical geometry
Cylinders
Read/write heads
Sectors per track
63
16,383
16
LBA mode
When addressing these drives in LBA mode, all blocks (sectors) are consecutively numbered from 0 to n–1,
where n is the number of guaranteed sectors as defined above.
2.4
Physical organization
Drive model
120GB with ST9120821AS
Read/write heads
Number of discs
4
2
2.5
Recording and interface technology
Interface
Serial ATA (SATA)
Recording method
16/17 EPRML
Recording density BPI (bits/inch max)
Track density TPI (tracks/inch max)
778k
126k
2
Areal density (Mbits/inch max)
98.2
Spindle speed (RPM) ( 0.2%)
Maximum Internal transfer rate (Mbytes/sec)
I/O data-transfer rate (Mbytes/sec max)
Interleave
5,400
42
150
1:1
Cache buffer
8 Mbytes (8,192 kbytes)
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2.6
Physical characteristics
Drive specification
Height
(mm)
(inches)
24.50 +/-0.2
0.965 +/-0.0078
Width
(mm)
(inches)
85.70 +/-0.3
3.374 +/-0.0118
Length
(mm)
(inches)
112.28 +/-0.3
4.420 +/-0.0118
Typical weight
(grams)
(pounds)
172
0.379
2.7
Seek time
Seek measurements are taken with nominal power at 25°C ambient temperature. All times are measured using
drive diagnostics. The specifications in the table below are defined as follows:
• Track-to-track seek time is an average of all possible single-track seeks in both directions.
• Average seek time is a true statistical random average of at least 5,000 measurements of seeks between
random tracks, less overhead.
Typical seek times (msec)
Track-to-track
Read
1.0
Write
1.5
Average
12.5
22.0
5.56
14.5
24.0
5.56
Full-stroke
Average latency
Note. These drives are designed to consistently meet the seek times represented in this manual. Physical
seeks, regardless of mode (such as track-to-track and average), are expected to meet the noted
values. However, due to the manner in which these drives are formatted, benchmark tests that
include command overhead or measure logical seeks may produce results that vary from these
specifications.
2.8
Start/stop times
Max @ 25°C
Time to ready
Typical
3.5
Power-on to Ready (sec)
Standby to Ready (sec)
8
8
3.0
2.9
Power specifications
The drive receives DC power (+5V) through a native SATA power connector.
2.9.1 Power consumption
Power requirements for the drives are listed in the table on page 6. Typical power measurements are based on
an average of drives tested, under nominal conditions, at 25°C ambient temperature, after 25 minutes of oper-
ation.
6
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• Spinup power
Spinup power is measured fromthe time ofpower-onto thetimethat the drive spindle reaches operating speed.
• Seek mode
During seek mode, the read/write actuator arm moves toward a specific position on the disc surface and does
not execute a read or write operation. Servo electronics are active. Seek mode power is measured based on
three random seek operations every 100 msecs. This mode is not typical.
• Read/write power and current
Read/write power is measured with the heads on track, based on three 63 sector read or write operations
every 100 msecs.
• Idle mode power
Idle mode power is measured with the drive up to speed, with servo electronics active and with the heads in
a random track location.
• Standby mode
During Standby mode, the drive accepts commands, but the drive is not spinning, and the servo and read/
write electronics are in power-down model
Power dissipation
Spinup
+5V input average (25° C)
1.1 A
Seek
2.20 watts
Read
1.90 watts
Write
2.30 watts
Idle, performance mode*
Idle, active*
Idle, low power mode*
Standby
1.70 watts
0.99 watts
0.80 watts
0.28 watts
Sleep
0.28 watts
*During periods of drive idle, some offline activity may occur according to the S.M.A.R.T. specification, which may increase acoustic and
power to operational levels.
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Figure 2. Typical +5V only startup and operation current profile
2.9.2
Deferred spinup
Momentus 5400.2 SATA drives provide a deferred spinup feature which storage subsystem controllers can use
to sequence disc drive initialization. This is beneficial to systems which include multiple Serial ATA hard disc
drives because it allows subsystem controllers to stagger the spinup of each drive to accommodate available
power supply current. This feature does not impact time-to-ready in typical desktop systems.
To accommodate the deferred spinup of multiple disc drives in an enclosure, Momentus 5400.2 SATA disc
drives will spin up only after power is applied to the drive and after successful PHY (Physical layer) initializa-
tion. PHY initialization occurs after the PHY enters the DP7:DR_Ready state. This state is reached after a suc-
cessful exchange of Out-Of-Band (OOB) signals with a functional host-side Serial ATA port. In desktop
systems, SATA transceivers should initialize OOB as soon as power comes ready to guarantee the drive spins
up quickly. Seagate disc drives will not spin up without an operational host-side Serial ATA transceiver.
Additional details
Upon system power up, PHY communication is initiated with a COMRESET signal, which is generated by the
host-side transceiver. COMRESET is followed by a COMINIT signal generated by the disc drive transceiver.
COMRESET and COMINIT are followed by an exchange of COMWAKE signals and Align primitives. The disc
drive will spin up after the successful exchange of Align primitives cause the PHY to come ready.
For more details, refer to:
• Serial ATA Revision 2.5 Specification.
• SATA 1.0 design guides
Note. These specifications and guides are available on the Serial ATA web site (www.sata-io.org).
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2.9.3
Conducted noise
Input noise ripple is measured at the host system power supply across an equivalent 15-ohm resistive load on
the +5 volt line.
Using 5-volt power, the drive is expected to operate with a maximum of 100 mV peak-to-peak square-wave
injected noise at up to 10 MHz.
Note. Equivalent resistance is calculated by dividing the nominal voltage by the typical RMS read/write
current.
2.9.4
Voltage tolerance
Voltage tolerance (including noise):
5V 5%
2.9.5
Power-management modes
The drive provides programmable power management to provide greater energy efficiency. In most systems,
you can control power management through the system setup program. The drive features the following
power-management modes:
Power modes
Active (operating)
Idle, performance
Idle, active
Heads
Spindle
Rotating
Rotating
Rotating
Rotating
Stopped
Stopped
Buffer
Tracking
Tracking
Floating
Parked
Parked
Parked
Full power
Self refresh—low power
Self refresh—low power
Self refresh—low power
Self refresh—low power
Self refresh—low power
Idle, low power
Standby
Sleep
• Active mode
The drive is in Active mode during the read/write and seek operations.
• Idle mode
The buffer remains enabled, and the drive accepts all commands and returns to Active mode any time disc
access is necessary.
• Standby mode
The drive enters Standby mode when the host sends a Standby Immediate command. If the host has set the
standby timer, the drive can also enter Standby mode automatically after the drive has been inactive for a
specifiable length of time. The standby timer delay is established using a Standby or Idle command. In Standby
mode, the drive buffer is in Self Refresh Low Power mode, the heads are parked and the spindle is at rest.
The drive accepts all commands and returns to Active mode any time disc access is necessary.
• Sleep mode
The drive enters Sleep mode after receiving a Sleep command from the host. In Sleep mode, the drive buffer
is in Self Refresh Low Power mode, the heads are parked and the spindle is at rest. The drive leaves Sleep
mode after it receives a Hard Reset or Soft Reset from the host. After receiving a reset, the drive exits Sleep
mode and enters Standby mode with all current translation parameters intact.
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• Idle and Standby timers
Each time the drive performs an Active function (read, write or seek), the standby timer is reinitialized and
begins counting down from its specified delay times to zero. If the standby timer reaches zero before any
drive activity is required, the drive makes a transition to Standby mode. In both Idle and Standby mode, the
drive accepts all commands and returns to Active mode when disc access is necessary.
2.10
Environmental specifications
Note. The removable drive cartridge should be stored for less than 60 days when exposed to continuous
maximum temperature and humidity conditions of 40°C (104°F) and 80% relative humidity. Exceed-
ing this duration in these conditions may result in loss of data.
2.10.1
Ambient temperature
Ambient temperature is defined as the temperature of the environment immediately surrounding the drive.
Actual drive case temperature should not exceed 65°C (149°F) within the operating ambient conditions.
Above 1,000 feet (305 meters), the maximum temperature is derated linearly by 1°C every 1000 feet.
Operating
Nonoperating
5° to 55°C (41° to 131°F)
–40° to 70°C (–40° to 158°F)
0° to 30°C (0° to 86°F)
0° to 30°C (0° to 86°F)
System storage
Drive cartridge storage
2.10.2
Temperature gradient
Operating
20°C per hour (68°F per hour max), without condensation
30°C per hour (86°F per hour max), without condensation
Nonoperating
2.10.3
Humidity
Refer to the following two sections for relative humitidy and wet bulb terperature specifications.
2.10.3.1 Relative humidity
Operating
5% to 90% noncondensing (30% per hour max)
Nonoperating
5% to 95% noncondensing (30% per hour max)
20% to 40% noncondensing (30% per hour max)
Drive cartridge storage
2.10.3.2
Wet bulb temperature
Operating
Nonoperating
30°C (86°F) max
40°C (104°F) max
25°C (77°F) max
Drive cartridge storage
10
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2.10.4
2.11
Altitude
Operating
–304.8 m to 3,048 m (–1,000 ft to 10,000+ ft)
–304.8 m to 12,192 m (–1,000 ft to 40,000+ ft)
Nonoperating
Shock
All shock specifications assume that the drive is mounted securely with the input shock applied at the drive
mounting screws. Shock may be applied in the X, Y or Z axis.
2.11.0.1
Operating shock
These drives comply with the performance levels specified in this document when subjected to a maximum
operating shock of 250 Gs based on half-sine shock pulses of 2 msec. Shocks should not be repeated more
than two times per second.
2.11.0.2
Nonoperating shock
The nonoperating shock level that the RDC can experience without incurring physical damage or degradation
in performance when subsequently put into operation is 1,500 Gs based on a nonrepetitive half-sine shock
pulse of 0.5 msec duration. This value should be considered equivalent to a 1 M drop to any surface or corner
of the RDC onto a tiled surface over concrete.
2.11.1
Vibration
All vibration specifications assume that the drive is mounted securely with the input vibration applied at the rig-
idly-held RDC. Vibration may be applied in the X, Y or Z axis.
2.11.1.1
Operating vibration
The maximum vibration levels that the drive may experience while meeting the performance standards speci-
fied in this document are specified below.
5–500 Hz
0.5 Gs (0 to peak). Max displacement may apply below 10 Hz.
2.11.1.2
Nonoperating vibration
The maximum nonoperating vibration levels that the drive may experience without incurring physical damage or degrada-
tion in performance when subsequently put into operation are specified below.
Nonoperating random vibration input levels (no hard errors, all axes)
• 2.22 Grms (5-500 Hz random), 30 min. each axis
• Frequency (Hz): 5-500; Slope (dB/Oct.): PSD (G2/Hz) +/- 6dB: 0.01
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2.12
Acoustics
Drive acoustics are measured as overall A-weighted acoustic sound power levels (no pure tones). All mea-
surements are consistent with ISO document 7779. Sound power measurements are taken under essentially
free-field conditions over a reflecting plane. For all tests, the drive is oriented with the cover facing upward.
For seek mode tests, the drive is placed in seek mode only. The number of seeks per second is defined by the
following equation:
(Number of seeks per second = 0.4 / (average latency + average access time))
Idle*
Seek
<3.0 bels (typ)
<3.25 bels (max)
<3.4 bels (typ)
<3.6 bels (max)
Note. *During periods of drive idle, some offline activity may occur according to the S.M.A.R.T. specification, which may increase
acoustic and power to operational levels.
2.13
Electromagnetic immunity
When properly installed in a representative host system, the drive operates without errors or degradation in
performance when subjected to the radio frequency (RF) environments defined below:
Test
Description
Performance level Reference standard
Electrostatic discharge
Radiated RF immunity
Contact, HCP, VCP: 4 kV; Air: 8 kV
B
A
EN 61000-4-2: 95
80 to 1,000 MHz, 3 V/m,
80% AM with 1 kHz sine
900 MHz, 3 V/m, 50% pulse modulation @
200 Hz
EN 61000-4-3: 96
ENV 50204: 95
Electrical fast transient
Surge immunity
1 kV on AC mains, 0.5 kV on
external I/O
B
B
A
EN 61000-4-4: 95
EN 61000-4-5: 95
EN 61000-4-6: 97
EN 61000-4-11: 94
1 kV differential, 2 kV common, AC
mains
Conducted RF immunity
Voltage dips, interrupts
150 kHz to 80 MHz, 3 Vrms, 80% AM with
1 kHz sine
0% open, 5 seconds
0% short, 5 seconds
40%, 0.10 seconds
70%, 0.01 seconds
C
C
C
B
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2.14
Reliability
Measurement type
Specification
14
Nonrecoverable read errors
1 per 10 bits read, max.
Annualized Failure Rate (AFR)
0.73%
At 2000 Power-On Hours (POH), nominal power, 25°C ambient temperature.
Max HDA case temperature: 65°C.
Load/Unload (U/UL)
25°C, 50% relative humidity
600,000 software-controlled power on/off cycles
20,000 hard power on/off cycles
32°C, 80% relative humidity
5°C, 80% relative humidity
5°C, 10% relative humidity
55°C, 16% relative humidity
600,000 software-controlled power on/off cycles
20,000 hard power on/off cycles
Insertion and removal cycles
The Removable Drive Cartridge is designed to achieve 5000 insertion and
removal cycles when mated with a properly-designed receptacle. A cycle is
defined as a complete insertion and removal loop.
Warranty
1 year.
To determine the warranty for a specific drive, use a web browser to access the
following web page:
From this page, click on the “Verify Your Warranty” link. You will be asked to pro-
vide the drive serial number, model number (or part number) and country of pur-
chase. The system will display the warranty information for your drive.
2.15
Safety certification
The drives are recognized in accordance with UL 1950 and CSA C22.2 (950) and meet all applicable sections
of IEC950 and EN 60950 as tested by U.L.
The drive cartridge material meets flammability resistance requirements as specified by UL94V.
2.16
Environmental protection
Seagate designs its products to meet environmental protection requirements worldwide, including regulations
restricting certain chemical substances.
2.16.1
European Union Restriction of Hazardous Substances (RoHS)
The European Union Restriction of Hazardous Substances (RoHS) Directive restricts the presence of chemical
substances, including Lead (Pb), in electronic products effective July 2006.
A number of parts and materials in Seagate products are procured from external suppliers. We rely on the
rep-resentations of our suppliers regarding the presence of RoHS substances in these parts and materials. Our
supplier contracts require compliance with our chemical substance restrictions, and our suppliers document
their compliance with our requirements by providing material content declarations for all parts and materials for
the disc drives documented in this publication. Current supplier declarations include disclosure of the inclusion
of any RoHS-regulated substance in such parts or materials.
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Seagate also has internal systems in place to ensure ongoing compliance with the RoHS Directive and all laws
and regulations which restrict chemical content in electronic products. These systems include standard operat-
ing procedures that ensure that restricted substances are not utilized in our manufacturing operations, labora-
tory analytical validation testing, and an internal auditing process to ensure that all standard operating
procedures are complied with.
2.17
Corrosive environment
Seagate electronic drive components pass accelerated corrosion testing equivalent to 10 years exposure to
light industrial environments containing sulfurous gases, chlorine and nitric oxide, classes G and H per ASTM
B845. However, this accelerated testing cannot duplicate every potential application environment.
Users should use caution exposing any electronic components to uncontrolled chemical pollutants and corro-
sive chemicals as electronic drive component reliability can be affected by the installation environment. The sil-
ver, copper, nickel and gold films used in Seagate products are especially sensitive to the presence of sulfide,
chloride, and nitrate contaminants. Sulfur is found to be the most damaging. In addition, electronic components
should never be exposed to condensing water on the surface of the printed circuit board assembly (PCBA) or
exposed to an ambient relative humidity greater than 95%. Materials used in cabinet fabrication, such as vulca-
nized rubber, that can outgas corrosive compounds should be minimized or eliminated. The useful life of any
electronic equipment may be extended by replacing materials near circuitry with sulfide-free alternatives.
14
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3.0
Using the drive
This section contains handling precautions, dimensions, and instructions for using the drive.
3.1
Handling precautions
Observe the following standard handling precautions:
• Avoid unnecessary handling. When you do handle the drive, avoid bumps and vibration.
• Do not bump, move, or drop the drive while in operation--doing so may damage the drive.
• Do not open the drive enclosure--this will void the product warranty.
• Do not remove the factory-installed labels from the drive or cover them with additional labels. Removal voids
the warranty. Some factory-installed labels contain information needed to service the drive.
3.2
Dimensions
111.4
Dimensions shown in mm
Z
R20.7 X 2
Y
R5.5 X 2
25.0
Y
7.3
20.2
X
X
6.5
44.7
15.5
4.3
9.4
85.6
Y
X
Z
11.3
X
10.3
20.9
Figure 3.
Momentus 5400.2 SATA Removable Drive Cartridge dimensions
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3.3
Normal operation
The removable cartridge drive is designed for insertion into a drive bay within a host enclosure that is specifi-
cally-designed to house Seagate Removable Drive Cartridge units. This host enclosure may be a surveillance
system, a traditional home PC, office PC, an enterprise server host system, or any other host that supports
Momentus 5400.2 SATA Removable Drive Cartridge units.
A properly-designed drive bay allows you to insert the cartridge into the bay and blind mate to the receiving
connector with minimal force. Momentus 5400.2 SATA Removable Drive Cartridge units are hot-pluggable, so
you do not need to power down the host system prior to insertion. Power and interface signal connections are
provided through the SATA connector. The drive will begin spinning just milliseconds after full and proper inser-
tion into the drive bay and will typically be ready for use within 10 seconds after insertion.
3.4
Insertion capability
Insertion cycles (cartridge into properly-designed carrier)
5,000
3.5
Write protect switch
The drive, as shipped from the factory, is configured to allow you to write to and read from the drive. To write
protect the Momentus 5400.2 SATA Removable Drive Cartridge, locate the write protect switch and move the
write protect switch to the position shown in Figure 4 below. Existing data on the drive may still be read, but
writes will be prohibited as long as the switch is in the write protect (locked) position.
The drive is shipped in the unlocked position and this is the default configuration. Verify that the write protect
switch is in the desired position prior to use.
Unlocked switch position (can read and write)
To write protect the drive, move the switch
to the locked position as shown above
Figure 4.
Write protect switch
16
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4.0
Serial ATA (SATA) interface
These drives use the industry-standard Serial ATA interface that supports FIS data transfers. It supports ATA
programmed input/output (PIO) modes 0–4; multiword DMA modes 0–2, and Ultra DMA modes 0–6. The drive
also supports the use of the IORDY signal to provide reliable high-speed data transfers.
For detailed information about the Serial ATA interface, refer to the “Serial ATA: High Speed Serialized AT
Attachment” specification.
4.1
Hot-Plug compatibility
Momentus 5400.2 SATA drives incorporate connectors which enable you to hot plug these drives in accor-
dance with the Serial ATA: High Speed Serialized AT Attachment specification revision 2.0. This specification
hotplug event.
4.2
Serial ATA device plug connector pin definitions
Table 1: Serial ATA connector pin definitions
Segment Pin
Function
Ground
A+
Definition
S1
S2
S3
S4
S5
S6
2nd mate
Differential signal pair A from Phy
A-
Ground
B-
2nd mate
Differential signal pair B from Phy
B+
Signal
S7
Ground
2nd mate
Key and spacing separate signal and power segments
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Table 1:
Serial ATA connector pin definitions
Segment Pin
Function
V33
Definition
P1
P2
P3
P4
P5
P6
P7
P8
3.3V power
V33
3.3V power
V33
3.3V power, pre-charge, 2nd mate
Ground
Ground
Ground
V5
1st mate
2nd mate
2nd mate
5V power, pre-charge, 2nd mate
V5
5V power
Power
P9
V5
5V power
P10
P11
Ground
Reserved
2nd mate
The pin corresponding to P11 in the backplane receptacle connector is also reserved
The corresponding pin to be mated with P11 in the power cable receptacle connector
shall always be grounded
P12
P13
P14
P15
Ground
V12
1st mate.
12V power, pre-charge, 2nd mate
12V power
V12
V12
12V power
Notes:
1. All pins are in a single row, with a 1.27 mm (0.050”) pitch.
2. The comments on the mating sequence apply to the case of backplane blindmate connector only. In this
case, the mating sequences are:
• the ground pins P4 and P12.
• the pre-charge power pins and the other ground pins.
• the signal pins and the rest of the power pins.
3. There are three power pins for each voltage. One pin from each voltage is used for pre-charge when
installed in a blind-mate backplane configuration.
4. All used voltage pins (Vx) must be terminated.
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4.3
Supported ATA commands
Table 2 lists Serial ATA standard commands that the drive supports. For a detailed description of the ATA com-
mands, refer to the Serial ATA: High Speed Serialized AT Attachment specification. See “S.M.A.R.T. com-
Table 2:
Supported ATA commands
Command name
Command code (in hex)
ATA-standard commands
Device Configuration Restore
Device Configuration Freeze Lock
Device Configuration Identify
Device Configuration Set
Download Microcode
Execute Device Diagnostics
Flush Cache
B1h/C0h
B1h/C1h
B1h/C2h
B1h/C3h
92h
90h
E7h
Flush Cache Extended
Identify Device
EAh
ECh
91h
Initialize Device Parameters
Read Buffer
E4h
Read DMA
C8h
25h
Read DMA Extended
Read DMA without Retries
Read Long with Retries
Read Long without Retries
Read Multiple
C9h
22h
23h
C4h
29h
Read Multiple Extended
Read Native Max Address
Read Native Max Address Extended
Read Sectors
F8h
27h
20h
Read Sectors Extended
Read Sectors without Retries
Read Verify Sectors
24h
21h
40h
Read Verify Sectors Extended
Read Verify Sectors without Retries
Seek
42h
41h
70h
Set Features
EFh
F9h
Set Max Address
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Table 2:
Supported ATA commands
Command name
Command code (in hex)
Note: Individual Set Max commands are identi-
fied by the value placed in the Set Max Fea-
tures register as defined to the right.
Address:
Password:
Lock:
Unlock:
Freeze Lock:
00
01
02
03
04
H
H
H
H
H
Set Multiple Mode
C6h
S.M.A.R.T. Disable Operations
S.M.A.R.T. Enable/Disable Autosave
S.M.A.R.T. Enable Operations
S.M.A.R.T. Enable/Disable Auto Offline
S.M.A.R.T. Enable One Attribute Modification
S.M.A.R.T. Execute Offline
S.M.A.R.T. Read Attribute Thresholds
S.M.A.R.T. Read Data
B0h/D9h
B0h/D2h
B0h/D8h
B0h/DBh
B0h/E0h
B0h/D4h
B0h/D1h
B0h/D0h
B0h/D5h
B0h/DAh
B0h/D3h
B0h/D7h
B0h/E1h
B0h/D6h
E8h
S.M.A.R.T. Read Log Sector
S.M.A.R.T. Return Status
S.M.A.R.T. Save Attribute Values
S.M.A.R.T. Write Attribute Thresholds
S.M.A.R.T. Write Attribute Values
S.M.A.R.T. Write Log Sector
Write Buffer
Write DMA
CAh
Write DMA Extended
35h
Write DMA without Retries
Write Long with Retries
Write Long without Retries
Write Multiple
CBh
32h
33h
C5h
Write Sectors
30h 31h
,
Write Sectors Extended
ATA-standard power-management commands
Check Power Mode
34h
98h or E5h
97h or E3h
95h or E1h
99h or E6h
96h or E2h
94h or E0h
Idle
Idle Immediate
Sleep
Standby
Standby Immediate
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Table 2:
Supported ATA commands
Command name
Command code (in hex)
ATA-standard security commands
Security Set Password
Security Unlock
F1h
F2h
F3h
F4h
F5h
F6h
Security Erase Prepare
Security Erase Unit
Security Freeze Lock
Security Disable Password
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4.3.1
Identify Device command
The Identify Device command (command code EC ) transfers information about the drive to the host following
H
power up. The data is organized as a single 512-byte block of data, whose contents are shown in the table on
page 27. All reserved bits or words should be set to zero. Parameters listed with an “x” are drive-specific or
The following commands contain drive-specific features that may not be included in the Serial ATA specifica-
tion.
Word
Description
Value
0C5A
Configuration information:
• Bit 15: 0 = ATA; 1 = ATAPI
• Bit 7: removable media
• Bit 6: removable controller
• Bit 0: reserved
H
0
1
Number of logical cylinders
16,383
2
ATA-reserved
0000
16
H
3
Number of logical heads
4
Retired
0000
0000
H
H
5
Retired
6
Number of logical sectors per logical track: 63
Retired
003F
H
7–9
10–19
20
0000
H
Serial number: (20 ASCII characters, 0000 = none)
ASCII
H
Retired
Retired
Obsolete
0000
0400
0000
x.xx
H
H
H
21
22
23–26
Firmware revision (8 ASCII character string, padded with
blanks to end of string)
27–46
47
Drive model number: (40 ASCII characters, padded with
blanks to end of string)
ST9120821AS
(Bits 7–0) Maximum sectors per interrupt on Read multiple
and Write multiple (16)
8010
H
48
49
Reserved
0000
H
Standard Standby timer, IORDY supported and may be dis-
abled
2F00
H
50
ATA-reserved
0000
0200
0200
0007
H
H
H
H
51
PIO data-transfer cycle timing mode
Retired
52
53
Words 54–58, 64–70 and 88 are valid
Number of current logical cylinders
Number of current logical heads
Number of current logical sectors per logical track
Current capacity in sectors
54
xxxx
xxxx
xxxx
xxxx
H
55
H
H
H
56
57–58
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Word
Description
Value
xxxx
59
Number of sectors transferred during a Read Multiple or
Write Multiple command
H
60–61
Total number of user-addressable LBA sectors available
ST9120821AS = 234,441,648
62
63
Retired
0000
H
Multiword DMA active and modes supported
(see note following this table)
xx07
H
64
65
Advanced PIO modes supported (modes 3 and 4 supported)
0003
0078
H
Minimum multiword DMA transfer cycle time per word
(120 nsec)
H
66
67
Recommended multiword DMA transfer cycle time per word
(120 nsec)
0078
H
Minimum PIO cycle time without IORDY flow control
(240 nsec)
00F0
H
68
69–74
75
76
77
78
79
80
81
82
83
84
85
86
87
88
Minimum PIO cycle time with IORDY flow control (120 nsec)
ATA-reserved
0078
0000
0000
0508
0000
0048
0040
H
H
H
H
H
H
H
Queue depth
Serial ATA capabilities
ATA-reserved
Serial ATA features supported
Serial ATA features enabled
Major version number
003E
H
H
Minor version number
0000
Command sets supported
Command sets supported
Command sets support extension
Command sets enabled
Command sets enabled
Command sets enable extension
306B
H
H
H
H
4001
4000
30xx
0001
4000
H
H
H
Ultra DMA support and current mode
(see note following this table)
xx7F
89
90
92
93
Security erase time
0000
0000
H
H
Enhanced security erase time
Master password revision code
FFFE
H
Hardware reset value
(see description following this table)
xxxx
H
94
Auto acoustic management setting
ATA-reserved
xxxx
H
95–99
0000
H
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Word
Description
Value
100–
103
Total number of user-addressable LBA sectors available
ST9120821AS = 234,441,648
These words are required for drives that support the 48-bit
addressing feature. Maximum value: 0000FFFFFFFFFFFFh.
104–
127
ATA-reserved
0000
0001
H
128
Security status
H
129–
159
Seagate-reserved
xxxx
H
160–
254
ATA-reserved
Integrity word
0000
xxA5
H
H
255
Note. See the bit descriptions below for words 63, 88, 93 and 94 of the Identify Drive data:
Description (if bit is set to 1)
Bit
0
Word 63
Multiword DMA mode 0 is supported.
Multiword DMA mode 1 is supported.
Multiword DMA mode 2 is supported.
Multiword DMA mode 0 is currently active.
Multiword DMA mode 1 is currently active.
Multiword DMA mode 2 is currently active.
Word 88
1
2
8
9
10
Bit
0
Ultra DMA mode 0 is supported.
Ultra DMA mode 1 is supported.
Ultra DMA mode 2 is supported.
Ultra DMA mode 3 is supported.
Ultra DMA mode 4 is supported.
Ultra DMA mode 0 is currently active.
Ultra DMA mode 1 is currently active.
Ultra DMA mode 2 is currently active.
Ultra DMA mode 3 is currently active.
Ultra DMA mode 4 is currently active.
Ultra DMA mode 5 is currently active.
Word 93
1
2
3
4
8
9
10
11
12
13
Bit
13
1 = 80-conductor cable detected, CBLID above VIH
0 = 40-conductor cable detected, CBLID below VIL
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4.3.2
Set Features command
This command controls the implementation of various features that the drive supports. When the drive receives
this command, it sets BSY, checks the contents of the Features register, clears BSY and generates an inter-
rupt. If the value in the register does not represent a feature that the drive supports, the command is aborted.
Power-on default has the read look-ahead and write caching features enabled. The acceptable values for the
Features register are defined as follows:
Table 3:
Set Features command values
02
03
Enable write cache (default).
H
Set transfer mode (based on value in Sector Count register).
Sector Count register values:
H
00 Set PIO mode to default (PIO mode 2).
H
01 Set PIO mode to default and disable IORDY (PIO mode 2).
H
08 PIO mode 0
H
09 PIO mode 1
H
0A PIO mode 2
H
0B PIO mode 3
H
0C PIO mode 4 (default)
H
20 Multiword DMA mode 0
H
21 Multiword DMA mode 1
H
22 Multiword DMA mode 2
H
40 Ultra DMA mode 0
H
41 Ultra DMA mode 1
H
42 Ultra DMA mode 2
H
43 Ultra DMA mode 3
H
44 Ultra DMA mode 4
H
45 Ultra DMA mode 5
H
55
82
Disable read look-ahead (read cache) feature.
Disable write cache
H
H
AA
Enable read look-ahead (read cache) feature (default).
Report full capacity available
H
F1
H
Note. At power-on, or after a hardware or software reset, the default values of the features are as indi-
cated above.
Momentus 5400.2 SATA Removable Drive Cartridge Product Manual, Rev. C
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4.3.3
S.M.A.R.T. commands
S.M.A.R.T. provides near-term failure prediction for disc drives. When S.M.A.R.T. is enabled, the drive moni-
tors predetermined drive attributes that are susceptible to degradation over time. If self-monitoring determines
that a failure is likely, S.M.A.R.T. makes a status report available to the host. Not all failures are predictable.
S.M.A.R.T. predictability is limited to the attributes the drive can monitor. For more information on S.M.A.R.T.
commands and implementation, see the Draft ATA-5 Standard.
SeaTools diagnostic software activates a built-in drive self-test (DST S.M.A.R.T. command for D4 ) that elimi-
H
nates unnecessary drive returns. The diagnostic software ships with all new drives and is also available at:
This drive is shipped with S.M.A.R.T. features disabled. You must have a recent BIOS or software package that
supports S.M.A.R.T. to enable this feature. The table below shows the S.M.A.R.T. command codes that the
drive uses.
Table 4:
S.M.A.R.T. commands
Code in features register
S.M.A.R.T. command
D0
D1
D2
D3
D4
D5
D6
D7
D8
D9
S.M.A.R.T. Read Data
H
H
H
H
H
H
H
H
H
H
Vendor-specific
S.M.A.R.T. Enable/Disable Attribute Autosave
S.M.A.R.T. Save Attribute Values
S.M.A.R.T. Execute Off-line Immediate (runs DST)
S.M.A.R.T. Read Log Sector
S.M.A.R.T. Write Log Sector
Vendor-specific
S.M.A.R.T. Enable Operations
S.M.A.R.T. Disable Operations
S.M.A.R.T. Return Status
DA
H
Note. If an appropriate code is not written to the Features Register, the command is aborted and 0x04
(abort) is written to the Error register.
26
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5.0
Seagate Technology support services
Internet
For information regarding Seagate products and services, visit www.seagate.com. Worldwide support is
available 24 hours daily by email for your questions.
Presales Support:
Technical Support:
Warranty Support:
mySeagate
my.seagate.com is the industry's first Web portal designed specifically for OEMs and distributors. It provides
self-service access to critical applications, personalized content and the tools that allow our partners to
manage their Seagate account functions. Submit pricing requests, orders and returns through a single,
password-protected Web interface-anytime, anywhere in the world.
spp.seagate.com
spp.seagate.com supports Seagate resellers with product information, program benefits and sales tools. You
may register for customized communications that are not available on the web. These communications contain
product launch, EOL, pricing, promotions and other channel-related information. To learn more about the
benefits or to register, go to spp.seagate.com, any time, from anywhere in the world.
Seagate Service Centers
Presales Support
Our Presales Support staff can help you determine which Seagate products are best suited for your specific
application or computer system, as well as product availability and compatibility.
Technical Support
Seagate technical support is available to assist you online at support.seagate.com or through one of our call
centers. Have your system configuration information and your “ST” model number available.
SeaTDD™ (+1-405-324-3655) is a telecommunications device for the deaf (TDD). You can send questions or
comments 24 hours daily and exchange messages with a technical support specialist during normal business
hours for the call center in your region.
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Customer Service Operations
Warranty Service
Seagate offers worldwide customer support for Seagate products. Seagate distributors, OEMs and other direct
customers should contact their Seagate Customer Service Operations (CSO) representative for warranty-
related issues. Resellers or end users of drive products should contact their place of purchase or Seagate
warranty service for assistance. Have your serial number and model or part number available.
Data Recovery Services
Seagate offers data recovery services for all formats and all brands of storage media. Our data recovery
services labs are currently located throughout the world. . Additional information, including an online request
form and data loss prevention resources, is available at http://services.seagate.com/index.aspx
Authorized Service Centers
Seagate Service Centers are available on a global basis for the return of defective products. Contact your
customer support representative for the location nearest you.
USA/Canada/Latin America support services
For an extensive list of telephone numbers to technical support, presales and warranty service in USA/
Global Customer Support
Presales, Technical, and Warranty Support
Call Center
USA, Canada,
and Mexico
Toll-free
Direct dial
1-800-SEAGATE
+1-405-324-4700
Data Recovery Services
Call Center
Toll-free
Direct dial
FAX
USA, Canada,
and Mexico
1-800-475-01435
+1-905-474-2162
1-800-475-0158
+1-905-474-2459
Europe, the Middle East and Africa Support Services
For an extensive list of telephone numbers to technical support, presales and warranty service in Europe, the
Asia/Pacific Support Services
For an extensive list of telephone numbers to technical support, presales and warranty service in Asia/Pacific,
28
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Dimensions 15
Discs 3
dissipation 7
Index
A
Address 19
Altitude 11
E
EPRML 5
European Union Restriction of Hazardous Substanc-
es 13
B
bels 4
BPI 3
F
features 1
C
Cache 3
cache 5
capacity 5
G
Gbytes 5
certification 13
current 3
geometry 5
gradient 4
H
Height 3
height 6
Humidity 10
humidity 4
cycles 13
Cylinders 5
cylinders 3
D
I
density 3
Diagnostics 19
Identify 19
Momentus 5400.2 SATA Removable Drive Cartridge Product Manual, Rev. C
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IEC950 13
Insertion 16
precautions 15
Interface 5
interface 17
Q
Interleave 5
R
is 6
L
latency 3
Length 3
length 6
Load/Unload 13
M
master/slave 2
Microcode 19
N
Reliability 13
noise 9
resistance 9
Retries 19
RF 12
O
RoHS 13
RPM 3
P
S
point-to-point 2
S.M.A.R.T. 20
screws 11
sector 5
sectors 5
30
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Momentus 5400.2 SATA Removable Drive Cartridge Product Manual, Rev. C
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Seagate Technology LLC
920 Disc Drive, Scotts Valley, California 95066-4544, USA
Publication Number: 100425081, Rev. C, Printed in USA
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