Friday, April 20, 2007

Review Iomega StorCenter Pro NAS 150d (2TB)



+ The Iomega StorCenter Pro 150d network-attached storage drive has a generous capacity;
+ a built-in print server;
+ Gigabit Ethernet;
+ four USB ports for printers or hard drives;
+ backup software included;
+ capable of RAID 0+1 and RAID 5;
+ hot-swappable drive;
+ decent speeds;
+ generous support.

- But no media server features presented.

= The Iomega StorCenter Pro 150d is a network-attached storage drive squarely targeted at the smal l- and home office user. With Gigabit Ethernet, USB port, and generous capacity for a fair price, this NAS drive should satisfy those users.

The Iomega Storcenter Pro 150d is an appreciably large NAS server targeted for small- or home office use. Above-average performance and considerable storage space make this device a great solution for data archiving and backing up PCs in your office. The four built-in USB ports let you expand storage with additional USB hard drives or share a printer across the network (the drive has a built-in print server). For those who are not technically inclined, setup is straightforward and easy. At $800, the 1TB option is priced fairly when considering price versus performance and capacity. We recommend it if you're not tied to ultrahigh performance. If you're looking for media-serving capabilities, consider some home-oriented NAS drives such as the HP Media Vault MV2020 or the Buffalo TeraStation Home Server.

Drive type: network-attached storage drive
Capacities: 1TB, 2TB
Capacity of test unit: 1TB
Number of drives/bays: four drives, installed
Max capacity: N/A
Hot swap/cold swap: hot-swappable drive
Drive speed: 7,200rpm
Cache: 16MB per drive
Dimension: 10.35x7.08x11.54 inches (HWD)
Notable design features: none
Connection options: Gigabit Ethernet
Operating systems supported: MS Windows 2000/XP/XPx64/Vista; Mac OS X (10.3.9 or later); Linux (Red Hat 9, Mandrake 10, Debian 3.0, Gentoo, Fedora Core 3)
Software included: Iomega Discovery Tool Pro, EMC Retrospect Express (includes two client licenses)
RAID implementations: Software RAID 0 and 0+1; hardware RAID 5; JBOD
Any additional features: Two front-mounted USB port and two rear-mounted USB ports for connecting hard drives or printer; built-in print server; TCP/IP; Network File Protocols include FTP, Microsoft CIFS/SMB, Linux/UNIX NFS, and Apple AFP; Network and File Security include ACLs, Kerberos v5.0, and Microsoft AD/NT Domain Controller
Service/support: Two-year standard warranty (up to three-years with $179 extended service plan); 24-7 toll-free phone support while under warranty (after warranty expires, toll-free phone support is available on weekdays, 7 a.m. to 7 p.m. MT); site offers driver/software downloads, live chat with tech support, live user forums, software how-to videos, and FAQs.

CNET Labs throughput tests revealed great write/read speeds. Overall, its performance fell directly between average- and top-performing devices. Writing a 5GB folder of mixed files took 13 minutes, 59 seconds; reading back the same folder took 15 minutes, 22 seconds. The similarly priced Buffalo TeraStation Home Server completed the same tasks in 24 minutes, 56 seconds and in 15 minutes, respectively. Note that if you experience slow read speeds, try a firmware upgrade. We noticed the same problem, and the upgrade fixed it.

http://reviews.cnet.com/Iomega_StorCenter_Pro_NAS_150d_2TB/4505-3190_7-32308210.html?tag=pdtl-list

Internal Hard Drive Buying Guide

What is an internal hard drive?
The internal hard drive is a data storage device installed and used in desktop PCs, workstations, and servers, as well as certain consumer electronic products (these mainly use small form factor internal hard drives) such as digital cameras and digital audio/video players. Internal hard drives provide massive storage capacities for all types of data including images, documents, movies, music, games. This means more fun for you and greater functionality for your computer and devices!

Technical Information
This type of storage device is non-volatile, i.e. it does not require constant power to maintain data. Inside the internal hard drive, there are one or several platters for data storage and read/write heads used to access or record data. A set of components drives the platters and the heads perform data operations on the platters as they spin. The internal hard drive uses a mechanical design, which is very different from that other white hot permanent storage solution - Flash Memory.

Applications overview


Personal storage
Nearly all storage applications on the desktop PC can be classified as personal storage. Personal storage applications do not require the hard drive to work non-stop, meaning they make fewer read/write operations. Most personal storage applications don’t require extreme performance, but high reliability is still a very desirable trait.

Consumer electronics


The consumer electronics domain is an exciting new playing ground for internal hard drives because digital cameras, digital audio/video players are constantly throwing up new requirements regarding capacity and cost, which are exactly what the internal hard drive does best. Since most consumer electronic devices try to be as small as possible, fitting the standard 3.5” hard drive has proven unfeasible. Manufacturers have opted to use the much smaller “Microdrive” instead.

Enterprise storage
Enterprise applications are closely related to workstations and servers, for example, CAD/CAM, digital video editing and production, as well as database. Enterprise storage applications have higher performance and reliability requirements than other applications, and the hard drive workload is very heavy. Server hard drives are expected to run normally without the slightest interruption 24/7.

Understanding Hard Drive Specifications

Form factor
There are several form factors to ensure the compatibility of the internal hard drive with a variety of different devices.

3.5-inch
The 3.5 inch hard drive is the mainstream form factor for the desktop PC and workstation/server hard drives. Though the size of such hard drives is relatively big, they provide the largest data storage capacities. Moreover, desktop PCs and workstations/servers chassis provide more than enough space to install these hard drives.





2.5-inch
Notebook users should be familiar with the 2.5-inch hard drive. You can find more detailed information about the 2.5-inch hard drive in our notebook hard drive buying guide. (link to Notebook hard drive guide). Currently, the 2.5-inch drive is also used as enterprise storage as it offers usable space savings, reduces power consumption and heat, and increased reliability as well.



1.0-inch
1.0-inch hard drives (called the Microdrive by Hitachi) are designed for small consumer electronics such as MP3 players, digital cameras and PDAs. Due to its diminutive size current capacities are only in the several of GBs, but this already represents a significant amount of storage for handheld consumer electronics products.



Capacity
Data storage capacity is very important with internal hard drives because it determines how much data you will be able to store. Currently, the Operating System, 3D games and high definition videos each require several GBs of storage. 3.5-inch internal hard drives can provide over 500GB. Even the tiny 1.0-inch hard drive has reached the amazing capacity of 8GB. We can expect capacities to keep climbing in the future, too.

RPM
Car owners are no strangers to the term RPM (rotations per minute). It is an index used to measure the rotational speed of engines. The spindle speed or the RPM in a hard drive are closely to its performance. A higher RPM results in less time being spent accessing stored data for a higher level of performance. Performance-sensitive enterprise storage applications generally utilize 10,000~15,000 RPM internal hard drives, while personal applications are well-served by 7200RPM products.

Cache
The cache refers to high-speed RAM (random access memory) integrated on the PCB of a hard drive. Cache is used as buffer among the CPU, memory and hard drive. Drives with more cache generally perform at a higher level than drives with less. Cache sizes of 2MB, 8MB and 16MB are currently standard options for 2.5-inch and 3.5-inch internal hard drives, while 1.0-inch products may only be equipped with 128KB.

Interface
The interface is used to connect the hard drive with the computer. Here we list the most commonly used interfaces.

PATA (IDE)

ATA is the acronym for Advanced Technology Attachment. It has been an industry standard hard drive interface for 15 years. ATA uses a 16-bit parallel connection to make the link between storage devices and motherboards, and is also called PATA to distinguish it from the newer SATA standard. In additional, ATA is also known as IDE or EIDE (Enhanced Integrated Drive Electronics).

Currently the two most popular standards for ATA hard drives are the ATA-6 (which is also known as Ultra ATA 100 or Ultra DMA 100) and ATA 133. The maximum bandwidth for the former is 100MB/s, and 133 MB/s for the latter. Most of today’s optical drives utilize the IDE/PATA interface.

SATA

The newer SATA interface is also an industry standard for connecting hard drives to computer systems, and is based on serial signaling technology. The advantages over PATA include longer, thinner cables for more efficient airflow within a computer chassis, fewer pin conductors for reduced electromagnetic interference, and lower signal voltage to minimize noise margin. The bandwidth of SATA is also far improved over PATA - the SATA 1.0 can reach a maximum of 1.5Gb/s (150MB/s), while the latest SATA 2.5 standard can support up to 3Gb/s (300MB/s). The latter also sports additional features such as NCQ (Native Command Queuing), port multiplier and port selector, although certain non-SATA 2.5 devices may also provide some of these features. As a result of so many advantages, the SATA interface is gradually replacing PATA as the mainstream hard drive interface in the personal storage market.

SCSI

SCSI, or Small Computer System Interface has the outstanding ability to compartmentalize diverse operations, making SCSI very suitable for multitasking operating environments. In addition, SCSI enhances critical performance in situations where more than one hard drive is used, such as in workstation/server or RAID environments. SCSI hard drives are typically available with less seek times, lower latencies and much higher transfer rates than an equivalent-capacity ATA drive. Before serial signaling technology was applied to the SCSI field, all SCSI interface standards used parallel technology to transfer data.

SAS (Serial Attached SCSI)

Utilizing serial signaling technology, SAS is earmarked as the next-generation enterprise storage interface for its high bandwidth and high throughput performance for enterprise applications. Thanks to SAS’ compatibility with serial ATA, it may also be the interface of choice for future high performance desktop storage.

CF (Compact Flash) Compatible
Originally used as a flash storage card interface, it has been applied to the 1.0-inch hard drive to give it compatibility with consumer electronic products utilizing the CF slot. There are two types of CF card: CF Type I and CF Type II. The main difference between them is the greater thickness of the CF Type II. Microdrives typically use the CF Type II.


How do I choose the right internal hard drive?

Filter by Application and Interface
As we found out in the Applications Overview section, there are three types of internal hard drive application: Enterprise storage, Personal storage, and Consumer electronics. Based on the obvious differences between the applications, you can easily decide what type of interface you need for your internal hard drive.


If you are building a brand new system, it is recommended that you choose either SAS for Enterprise storage or SATA for Personal storage as a means of future-proofing your new system for the foreseeable future. If you are simply adding new hard drive(s) to your current system, please check the type of interface provided by your motherboard.

Moving on to Performance
Spindle speed or RPM is the main factor related to the performance of a hard drive. Though there are many speed options, there is actually some relation between RPM and the interface.


The above table lists the mainstream relationship between interface and RPM. Higher RPMs can significantly improve the performance of a hard drive and is one of the areas in which internal hard drives will develop. 10,000 RPM hard drives using the SATA interface have already begun to appear in the market for personal storage applications, but tend to cost more than their 7200RPM counterparts. Unfortunately, spindle speeds are an area of development that is quite slow.

Capacity
Although higher capacities tend to sound appealing, it can sometimes result in per unit storage cost increases instead.

Example:
1. Hard drive A is priced at $103, and offers 250GB storage. The cost per GB storage of this hard drive is $0.412/GB ($103/250GB).
2. Hard drive B is priced at $330, and offers 500GB storage. The cost per GB storage of hard drive B is $0.66/GB.

Cost per GB may be helpful if you are having problems deciding between several hard drives that differ only in terms of storage capacity. It is less useful when comparing hard drives with different interfaces, RPMs or cache sizes.

Cache Size
Like RPM, a larger cache size is better for performance. Currently, 8MB and 16MB cache is mainstream configuration for 3.5-inch and 2.5-inch internal hard drives, while 128KB is more common on 1.0-inch internal hard drives. A larger cache tends to cost more, however.

Monday, April 2, 2007

launcheHitachi announced new 160HB Travelstar 5K160 Mobile Hard Drives

Hitachi has launched a new mobile hard drives based on perpendicular recording technolog. Company has today announced its new 2.5″, 5400RPM Travelstar 5K160 series hard drives.



hitachi-5K160The drive uses perpendicular magnetic recording (PMR) tech and is aimed at the notebook market, but it will be used in next generation 1.8-inch drives, ready in the second half of this year.
Capacities of  the new Travelstar drives: 40GB, 60GB, 80GB, 120GB and 160GB. The drives feature a 11ms seek time, 8MB of cache and are available with either an IDE or SATA interface.

The perpendicular magnetic recording (PMR) term refers to the fact that the drives can store data vertically on their media rather than on a horizontal flat plane, which increases the amount of storage.


Hitachi in its press release claimed extra robustness and reliability of their new mobile Travelstar 5K160 hard drives which they claim is made with an alloy combination and layer-deposition process to resist corrosion, a new PMR write head to reduce error rates and write data bits with greater fidelity, and an iridium-manganese-chromium (IrMnCr) alloy read-head to offer twice the field reliability of competing drives.

“What we’ve achieved with the Travelstar 5K160 is a credit to our technical teams’ methodical, single-minded approach to excellence, which we adopted from the start of the PMR development process,” said Hiroaki Nakanishi, CEO, Hitachi Global Storage Technologies. “Our mission was to deliver PMR technology when it’s of the highest value to our customers, which is when the transition from longitudinal recording would be seamless in all regards, including reliability, performance, volume ramp and cost. By all measures, that time is now.”

Hitachi’s upcoming 1.8-inch drive will also spin the drive at 3,600 RPM rather than 4,200 RPM, using the improvements in performance from the areal density to offset the slower spindle speed.

The TravelStar 5K160 family will range in capacity from 40 to 160 Gbytes and it goes for sale in the U.S. this summer for $270 to OEMs and $300 to consumers with three-year warranty, which is standard of Hetachi. The company also has plans for a still slimmer hard drive measuring 1.8-inch in thickness for consumer electronics for small notebooks utilizing the same technology by latter half of 2006.

Data Recovery For Beginners

By Jeff Walters

Right now you probably concerned about to recovering your data as quickly as possible - so we’ll refrain from comments on the wisdom of regular back ups. There is no  time for preventative measures - the issue at hand is data recovery.
First - a simple tip could save you a lot of money. Take out your rolodex and get hold of your tech-savvy friends. If you’re in luck, they’ll offer to help, and if you’re really lucky, they might even have some disk recovery software. If you’re out of luck, then get out your wallet or purse out now … because this is going to cost you. Also, be prepared for a lot of time being wasted - data recovery can take a long time.
The first thing to establish is what exactly is wrong with your hard disk:
Either your computer won’t boot up, or

Your computer boots up OK but you can’t see one of your other drives.
Let’s see if we can eliminate the worst scenario. Listen closely to your hard drive - is it making any sort of weird noise, such as scratching, scraping, ticking etc?If so, then your drive is physically damaged and the only hope that you have is to take it to a data recovery service where experts might be able to get your data off for you. These services are expensive and time consuming - so you need to make a judgement call as to the value of data on the disk.
If it’s only your saved game data or downloaded music files you would like back, you’re probably better off kicking yourself for not backing up, and accepting the data loss.
If, on the other hand, it’s a book or other type of information product that you’ve been working on for years, then send it to a data recovery service for an evaluation and quote - it usually costs nothing.

If your hard disk sounds OK, then you stand a decent chance of recovering data yourself.
First you’ll need to download some software to help you out. Unfortunately, the better software utilities are not free, but the good news is that many allow you to try them out to see they can access the data. There are some freeware versions available but generally speaking these are not easy to use - no user interface / little documentation, or they are not very effective. There’s a list of recommended software on our site ‘Data Recovery Emergency Room’ - compare the different options then download a few of the trial versions.Your next steps will be based on how your hard drive/s were setup:
If you only have a single hard drive that has not been
partitioned or split into different “logical” drives, you’ll probably need to attach the hard drive to another computer that has enough space to store all your data. This can be quite technical so if you don’t have the skills please get a computer savvy friend to help out. Another option is to purchase an external USB hard drive case. You can then simply slot the hard drive into the case and plug it into another PC using a USB port.
If you have a multiple drive setup and your computer boots up fine, then it will merely be a case of getting the downloaded software to read the files and then copy them to another drive - provided you have a drive with enough space on it. If not, you’ll need to attach the hard drive to another machine with enough spare capacity.

The scenario where you have a multiple drive setup, where the problem drive is the one that contains your operating system files is more tricky. Look for a data recovery software package that has a boot disk option available. What this means is that when you start your computer with the boot disk in it, it will automatically run the data recovery program without trying to start windows. You should be able to see your files and then copy them across to another drive.

Hopefully these tips will enable you to get all your important files back. Once you’ve had some time to recover, please take a look at the various articles on our website - our goal is to make it one of the best resources on data recovery.
http://www.free-articles-zone.com

ST1.3 - One Inch Photo Seagate Hard Drives

Seagate Technology last week announced the Seagate ST1.3 Series 12GB 1-inch photo hard drive especially targeted to pocket music player and digital photo storage market segments.
With a footprint 23% smaller, 50% extra storage capacity, and 30% less power consumption than Seagate’s current 1-inch photo hard drive - the latest Seagate ST1.3 Series offers a new optional drop sensor for increased robustness, delivering the features most requested by handheld device manufacturers.


The ST1.3 Series hard drive is Seagate’s second hard drive with perpendicular recording and the company’s first drive utilizing perpendicular technology in the 1-inch category.


As part of its G-Force Protection feature set enabling skip-free, reliable media storage and playback, Seagate also includes an optional drop sensor. This will increase operational shock resistance 33% up to 2000Gs, enabling the drive to survive a 1.5-meter drop onto hard concrete or ceramic surfaces when properly mounted in a handheld device.

By offering massive 12GB of storage in such a smaller footprint, the ST1.3 Series hard drive is a powerful solution for increasingly sophisticated media devices such as digital audio players, portable media players, and mobile phones.

According to IDC, the worldwide mobile phone market is expected to grow 7% in 2006 to 857.9 million units. IDC forecasts that the worldwide converged mobile device market will reach 181 million units by the end of 20091 and worldwide portable multimedia player shipments are expected to grow at a compound annual growth rate of 95% between 2005-2009.

The ST1.3 Series hard drive also delivers 30% greater power efficiency than previous models, enabling system designers and manufacturers greater choice in power supplies and system power-on hours.

Some Tips To Solve Common Problems With Hard Disks Crash

By Pinky Mcbanon


First - there are so many reasons why your hard disk may crashed:

(1) It may be caused by mechanical or physical problem such as the spindle motor system failure. This failure is usually caused by over-heating. The activity light flashing that you see on your CPU (central processing unit) indicates that its head moves to different tracks. If this movement fails, it can no longer read or write data. Remember, a hard disk is a hardware component, not a software. It is a magnetic device use to store data, it reads and writes data as it spins.

(2) Failure of logical system (the logical partitioned drives assigned as C, D, E, F, G) may be caused by and not limited to corrupt system files, corrupt firmware, registry components and virus infection. Spywares, adwares & all other malicious files may also cause your hard disk to crash.

HINTS:

(1) If you see the activity light flashing but the computer does not boot, the case may be, your files is still intact on the hard drive but becomes inaccessible -- this may be because of logical system failure. Try booting through a floppy disk or use the start-up disk that came with the system.

(2) If you don’t see any activity light flashing on the CPU and that the system can not start up (ofcourse after checking all power cables are “on”) then it is likely of mechanical problem. And notice that if the system BIOS (Basic Input/Output System) can no longer recognize the hard drive, then it is the physical/mechanical system that failed.

The good news is, usually, in today’s technology on hard disks, if this problem occurs it normally will alarm you and warn you before it will totally fails, so you could get that chance to immediately back up your files. And there are also many data recovery tools available in the market today. But at times, it is cheaper to replace the hard drive than to fix it (unfortunately).

TIPS & TRICKS TO AVOID THIS DISASTER TO HAPPEN:

1. Keep your hard drive healthy by performing defragmentation at least once a week (others prefers once every two weeks)

2. Run your anti-virus program everyday! Run spyware/adware removal tool at least once every week (there are many available free to download). Keep updates with all these tools and programs too! Turn on your firewall & pop-up blocker, it protects you from intruders!

3. Remove all unknown emails, clear your bulk and spam emails immediately.

4. Delete all internet temporary files (including all offline files)

5. Install all necessary updates on your computer

6. Be very careful in downloading files from different sites (firmware usually fails because of this)

7. The last but not the list – take “backing-up” your hard drive on a removable disk or tape as a serious task for you to do at least everyday or once a week especially if you are using it for business purposes!

http://www.free-articles-zone.com

New Seagate 750GB Hard Drive, The Barracuda 7200.10

Desktop and workstation hard drive capacity takes another giant stride, as Seagate has announced its brand new 750 GB hard disk drive. Called the Barracuda 7200.10, with its 750 GB capacity, the sleak unit represents one of the largest disk drive capacity ever from previous record of 500 GB.
PC World took it for a spin recently and says "it leads the 7200-rpm pack in overall performance". Those of you who don’t do video or host servers, what the heck you going to load this thing up with?

Seagate's new Barracuda 7200.10 is a Serial ATA drive and comes with either 8MB or 16MB on-board cache. As is the case with all of Seagate's hard disk drives, the 7200.10 monster too comes with a 5-year limited warranty. Suggested retail price is widely believed to be US$559 and the drives are already shippping across to distributors.

Having first launched the new hard disk drive for PC market, Seagate plans to introduce a custom versions for other consumer electronics, such as digital video recorders that are growing in popularity as standalone set-top-boxes or part of cable and satellite television receivers.

The big capacity leap stems from "perpendicular recording" technology that allows drive makers like Seagate and its rivals boost the density of a disk by aligning bits of data vertically rather than conventional horizontally on a circular platter. This enables much higher transfer speeds without increasing the speed of the drive’s spindle. At the same time, fewer moving components are needed in the drives making the access much faster in addition to substantially enhancing durability.

Analysts say a 750-gigabyte drive could hold roughly 375 hours of standard-definition television programming, about 75 hours of high-definition video, or more than 10,000 music CDs converted to the MP3 digital audio format.