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Training For Technology Jobs - IT Training

Posted by Iwan Tanjung at Rabu, 06 Agustus 2008
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By E.S. Cromwell

Unless you're extremely well-versed or have many years of experience working a specific Information Technology job then it's likely you will be required to gain certification before any professional IT track is officially started. Without certification these days you can, no doubt, get a job in the IT world, but it'll be just that - a job. If you want more such as an IT position with attached professionalism that can lead you toward a career you must possess some type of certification (even multiple ones).





By E.S. Cromwell

Unless you're extremely well-versed or have many years of experience working a specific Information Technology job then it's likely you will be required to gain certification before any professional IT track is officially started. Without certification these days you can, no doubt, get a job in the IT world, but it'll be just that - a job. If you want more such as an IT position with attached professionalism that can lead you toward a career you must possess some type of certification (even multiple ones).

Yet, even before being able to gain an IT certification something else must be sought on your end. 'What might that be,' you inquisitively ask? It's merely a preparatory action, specifically that of seeking IT training.

Successfully Taken Tests Lead to Acquiring Certifications

Just like any form of academic or professional betterment, there are steps involved to reach your desired success. In the IT professional sphere, this is no different. What you need to do to gain certification in an IT field is take a particular and required test, one in which you must pass and score noticeably well on to gain certification. This passing requirement in mind, wouldn't it make sense to take some preparative actions as to fully ready and inform yourself of the knowledge that will placed in front of you in test format?

It most certainly would. And one sure fire method to ready yourself for the prospective exams is through seeking the many available options of IT training.

IT Training To Ensure Successful Exam Taking

No matter what IT sector you're interested in or are considering, know that there are a plethora of training options for you to sort through and choose from. If you're looking into MCSE training options, Comp TIA training choices, CISCO training selections or any of the many other training selections, they're all clearly there and ready for the training, rather, taking.

So, if you have a specific certification in mind what you need to do is look into what you exactly must become knowledgeable of. From this point, it's simply a matter of taking that information and going through the specific training process diligently and with successful intent. If this is carried out, it's almost certain that you will pass any IT exam with flying colors and be on your way to having and working under a respectable IT certification.

Keeping With IT Trends

To keep up with IT trends involves staying on top of certifications and knowing when their expansions, improvements and upgrades are introduced and publicly provided. You will need to gain these advances to push you ahead. And you guessed it - to keep progressing you will no doubt need the required training, resulting test taking and - hopefully - successful certification attainment.

Now, keep in mind that the IT world is ever-changing, as are the jobs and positions within it. Training is constantly required and sought after by all IT individuals, even those who have been in the industry 10 plus years. So, the importance of going through any sort of IT training is not only based on preparedness, but also on maintaining and supplementing one's professionalism.

Make yourself a success in the IT working sphere by taking a relevant IT training course or two - seek in class or (more conveniently) online training options based on your lifestyle and schedule.

Article Source: http://EzineArticles.com/?expert=E.S._Cromwell




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Online Data Backup - Essential For Your Business

Posted by Iwan Tanjung at
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By James Redder

Online data back up is a necessity for your business. Business continuity and disaster recovery depends on a reliable data backup and restoration process. The backups should include the capability of backing up related computer drive data and associated database data. Statistics would demonstrate that having both of these types of data backups will usually provide the best overall data coverage. An online back up service provider is a viable solution and finding the right one can be a challenge. Through this article we assist you making this all-important choice of identifying the right online data backup vendor for your business.

Use A Two-pronged Method
First, you should know the minimum short and long-term standards of online backup service you are looking for. Now, identify a short list of appropriate online backup service providers based on that criteria.





By James Redder

Online data back up is a necessity for your business. Business continuity and disaster recovery depends on a reliable data backup and restoration process. The backups should include the capability of backing up related computer drive data and associated database data. Statistics would demonstrate that having both of these types of data backups will usually provide the best overall data coverage. An online back up service provider is a viable solution and finding the right one can be a challenge. Through this article we assist you making this all-important choice of identifying the right online data backup vendor for your business.

Use A Two-pronged Method
First, you should know the minimum short and long-term standards of online backup service you are looking for. Now, identify a short list of appropriate online backup service providers based on that criteria.

Secondly, we will assess the assembled list of online data backup service providers against the complete set of requirements. The key requirements for assessing the short list of online data backup candidates is as follows:

Experienced Vendors
If a candidate has been in business for 5 or more years, he is more likely to be of long-term assistance. Statistics would demonstrate that many new services start with vigor but end up busted in a short span of time.

Sizable Business Clientèle
To gauge a company's satisfaction percentage, it is always advisable to check if they have had a large database of business clients that have been with them for long durations. If possible find out the specific online data backup solution that the clients used.

Security
Candidates who have world-class data storage centers as a rule provide protection against unauthorized access and should be the first on your list. They are also protected against natural disasters and fire, hence assuring you of good physical security for your data.

Expandable plans
As your business grows, you will require additional storage. Besides fulfilling your `immediate needs, the candidate must have expandable data back up plans on offer for your long term needs.

Affordability
The vendor must provide backup services according to your budgeted plans. However enticing 'free for life' storage plans sound, these companies are hard pressed in the long term for their own survival and must be excluded from the short list of candidates.

Using the above criteria, you will have the list of short listed candidates who offer the minimum level of services to support your online data back up requirements

James Redder is an expert on data backup solutions and writes for an informative Online Data Backup website. For a limited time only free report related to Online Data Backup visit remotedatabackupservice.netfactsnow.com

Article Source: http://EzineArticles.com/?expert=James_Redder




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Notebook / Laptop Memory (RAM) Upgrade In 5 Minutes Or Less

Posted by Iwan Tanjung at Jumat, 18 April 2008
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This article is set up in two parts, one part about RAM overview and a second part about RAM upgrade. If you are curious on how the RAM works, you will find a detail summary that should give you all the information that you need to know about RAM, organization and speed. If you just want to read the how to upgrade section, move on directly to part two Upgrade your laptop ram in 5 minutes or less.

1 – RAM Overview

There are two big categories of random access memories:

* Dynamic memories (DRAM, Dynamic Random Access Module), not very costly. They are in most cases used for the central memory of the computer

* Static memories (SRAM, Static Random Access Module), quick and expensive. SRAM is notably used for cache memories of the processor

Functioning of the random access memory

The random access memory is constituted of hundred of thousand small condensers storing charges. When it is loaded, the logical state of the condenser is equal to 1, otherwise it belongs to 0, what means that every condenser represents one bit of memory.

Given that condensers off-load, it is always necessary to recharge them in a space of regular time called cycle of refreshment. Memory DRAM requires cycles of refreshment for instance (Ns) is about 15 nanoseconds.

Every condenser is coupled with a transistor allowing to "recover « or to change the state of the condenser. These transistors are lined up in form of matrix, that is they achieve a hut memory (so called memory) by a line and a column.

So, for a memory of type DRAM, the time of access is of 60 nanoseconds (35ns of delay of cycle and 25 ns of time of latency). On a computer, the time of cycle corresponds contrary to the frequency of the clock, for instance for a computer pulsated in 200 MHz, the time of cycle is 5 ns (1 / (200*106)).

As a result a computer having a frequency well brought up and using memories the time of access of which is much longer than the time of cycle of the processor must perform cycles of wait to access to the memory. In the case of a computer pulsated in 200 MHz using memories of types DRAM (which the time of access is of 60ns), there are 11 cycles of wait as a cycle of transfer. The performances of the computer are of as much diminished as there are cycles

Formats of Random Access Memory (RAM)

There are numerous types of random access memories. These all come in the form of barrettes of memory attachable on the motherboard.

* SIMM (Single Inline Memory Module): it is about printed circuits among which one of the faces has fleas of memory. There are two types of barrettes SIMM, according to the number of connector cables (30 or 72)

* DIMM (Dual Inline Memory Modulates) are from memories 64 bits, what explains why it is not necessary to match them. Barrettes DIMM have fleas of memory on both sides of printed circuit and have also 84 connector cables on each side, what endows them with a total of 168 brooches. They have bigger dimensions than barrettes SIMM (130x25mm).

* RIMM (Rambus Inline Memory Module, conscripts also RD-RAM or DRD-RAM) are from memories 64 bits developed by the society Rambus. They have 184 brooches. These barrettes have two notches of location (détrompeurs), avoiding very risk of confusion with the previous modules. Considering their well brought up speed of transfer, barrettes RIMM have a thermal film made responsible for ameliorating the clearing up of warmth. As in the case of DIMM, there are modules of smaller size, called SO RIMM (Small Outline RIMM), intended for laptop computers. Barrettes SO RIMM include only 160 brooches.

* DRAM (Dynamic RAM, dynamic RAM) is the type of memo most spread at the beginning of the millennium. It is about a memory from which transistors are lined up in a matrix according to lines and of columns. A transistor, coupled with a condenser gives the information of a bit. 1 byte consisting of 8 bits, a barrette of memory 256 Mb DRAM will contain 256 therefore * 2^10 * 2^10 = 256 * on 1024 * on 1024 = 268 435 456 bytes = 268 435 456 * 8 = 2 147 483 648 bits = 2 147 483 648 transistors. A 256 Mb barrette has so in reality a capacity of 268 435 456 bytes, that is 268 Mb! These are memories from which the time of access is 60 ns. On the other hand, accesses memory are made in general on data lined up consecutively in memory. So the mode of access in gust (burst mode) allows to achieve the three successive data in the first one without time of additional latency.

* DRAM FPM to speed up accesses to DRAM, there is a technology, called pagination consisting in achieving data located on the same column by changing the address of the line only, what allows to avoid the repetition of the number of column between the reading of each of the lines. They speak then about DRAM FPM (Fast Page Mode). FPM allows to acquire time of access in the order of 70 - 80 nanoseconds for a frequency of functioning that can go from 25 to 33 Mhz.

* DRAM EDO (Extended Data Out, Goes out of data ameliorated sometimes also called "hyper-page") appears in 1995. The technology used with this type of memory consists in addressing the following column during the reading of the data of a column. It creates an overlapping of accesses allowing to save time on every cycle. The time of access to memory EDO is therefore about 50 - 60 nanoseconds for a frequency of functioning going 33 - 66 Mhz. So, RAM EDO, when it is used in mode gust allows to acquire cycles of form 5-2-2-2, that is a benefit of 4 cycles on the access to 4 data. As much as memory EDO did not accept the upper frequencies in 66 Mhz, it disappeared in aid of SDRAM.

* SDRAM (Synchronous DRAM, translate synchronous RAM), appeared in 1997, allows a reading of data synchronized with the bus of the card-mother, contrary to memories EDO and FPM (qualified as asynchronous) having their own clock. SDRAM allows therefore to free itself from time of wait owed to synchronization with the card-mother. This one allows to acquire a cycle in mode gust of form 5-1-1-1, that is to say benefit of 3 cycles in comparison with RAM EDO. In that way SDRAM is able of working with a cadenza going until 150 Mhz, allowing him to acquire from time of access about 10 ns.

* DR-SDRAM (Direct Rambus DRAM or else RDRAM) is a type of memory allowing to transfer data on a bus of 16 wide bits to a cadenza of 800Mhz, what confers on him a band passer-by of 1,6 Go / s. As SDRAM, this type of memory is synchronized with the clock of the bus to ameliorate exchanges of data.

* DDR-SDRAM (Double Dated Miss SDRAM) is a memory based on technology SDRAM, allowing to double the rate of transfer of SDRAM with equal frequency. Reading or writing of data in memory am accomplished on the basis of a clock. Standard memory DRAM uses a method conscript SDR (Single Data Fails) consisting in reading or writing data in every forehead going up. DDR allows to double the frequency of reading / writings, with a clock pulsated in the same frequency, by sending data in every forehead going up, as well as in every downward forehead. Memory DDR has in general a commercial appellation of type PCXXXX where "XXXX " represent the debit side in Mb / s.

* DDR2 (or DDR-II) allows to attain twice as well brought up debit sides as DDR with equal external frequency. They speak about QDR (Quadruple Dated Fail or quad-pumped) to indicate the method of reading and used writing. Memory DDR2 uses in effect two channels separated for reading and for writing, so it is able of sending or of accepting twice more data than DDR.

2 - Upgrading Your Laptop RAM

upgrading a notebook memory is a specific simple process pending that you have the right RAM and are somewhat delicate.

There are different types of RAM, and you must choose the one that is compatible with your notebook computer. Memory is also a fragile, so you need to be very cautious when installing it. You should ensure that the laptop is turned off and disconnected from any exterior power supply. No lights should be visible.

It is a lot easier to install RAM on a laptop versus a desktop PC. Access to the memory slots is via a panel generally located in the bottom of the laptop. Once you have opened this panel with a small screwdriver you can see the existing memory. you can check the exact type of memory that your Notebook currently uses, because it is usually shown on the front of the memory strips and will be evident when you open up the memory panel.

The memory strips are generally locked in with small clips on the ends of the strips. To take out existing memory, simply flip the clips and then remove the memory strips gently from their holding place. If you are simply adding memory, and there is space available, just add the new memory, gently pushing it in to ensure it is fully seated in the slots, and then push the clips to hold the new memory in place.

Once you have replaced or added your Notebook computer memory, replace the access panel, and then screw the panel back in place. Lastly, power up the notebook, When the PC starts up, it will count the memory and tell you how much RAM is loaded on your laptop.

As long as you have right memory, the whole operation should take less than 5 minutes, you can then enjoy your faster, less crash prone laptop.


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Statistical Process Control (SPC) Software: The Past, Present and Future

Posted by Iwan Tanjung at
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Remember the first time in school you used a calculator instead of paper and pencil to add, subtract, multiply or divide? It made the job so easy, it almost felt like cheating. The technology freed you to focus on the problem rather than the mechanics of arithmetic.

Statistical process control (SPC) methods have been applied in manufacturing process control since the early 1930s. Over the decades, countless hours were expended plotting charts with pencils on graph paper. Then computers arrived and, like the calculator did for the schoolboy, freed the engineer to spend time analyzing the process instead of focusing on the formulae.

Over the years SPC software has matured in functionality, making statistical analysis quicker, more powerful and more flexible. The driving force has made the software easier for the practitioner to use. SPC software will continue to develop in ways that eliminate unnecessary steps, freeing quality practitioners from rote tasks and enabling them to focus efforts on improving the manufacturing process.

The Past

SPC software can show real-time control status of all data collection stations plant wide. As access to computers in the manufacturing environment grew, along came the first wave of products that automated the tasks associated with statistical analysis. Although they provided the tools for engineers to analyze the manufacturing process, these systems were difficult for many practitioners to use. They required tedious data entry and a Ph.D. statistician's knowledge to configure the software and analyze the data--a combination of tasks and abilities not easily married. Furthermore, obtaining interpretable results was a process completed long after the production run being analyzed had finished. This delay complicated the task of addressing process problems that continued to change--and probably resulted in additional process variation--in the interim.

The Present

Many timesaving features have since been added to advance SPC software usability. These software systems leverage other technologies such as automation standards and Internet access to simplify and integrate tasks--making administration, data collection, statistical analysis and reporting easier for today's practitioners.

Administration

Today's SPC software is designed to make the setup of parts and processes easy to accomplish. Common graphical user interface features such as tree views with drag-and-drop functionality dominate the market. These features reduce the repetitive tasks of separately creating items with only minor differences and instead allow for copying and duplicating similar components and then assigning unique parameters.

The introduction of communication standards across various platforms takes this ease-of-administration approach even further. Now SPC software can be configured to automatically obtain and update parts, processes, specifications, nominals and other pertinent information from values stored in other enterprise software systems such as manufacturing resource planning, manufacturing execution systems and human machine interface. Not only does this eliminate the effort spent re-entering and updating configuration information in multiple packages, it saves the effort expended tracking down entry errors that occur when the process is done manually.

Data Collection

Today's SPC software can automatically collect data from other enterprise software systems. As with the time-saving benefit for administrative tasks, this capability reduces the need to configure and maintain separate data collection interfaces and eliminates re-entry errors.

Current SPC software also has used communication standards to simplify the time-consuming job of connecting the system to data collection devices. Advances in software masking functionality permit out-of-the-box connection to a wide range of digital devices. And with dynamic masking capabilities, SPC software can automatically react to changes in device output and adjust to collect the specified data. This flexibility frees the practitioner from the tedious chore of administering SPC software every time there is a change to a device's output.

Real-Time SPC Analysis

Today's SPC software products are designed to collect data, produce charts and alarm in real time. This enables shop-floor operators to receive statistical feedback as close as possible to the point of production. Alarming capabilities include notification of supervisors, managers and other personnel responsible for maintaining and improving the production process. Immediate feedback and alarming enable all parties to begin problem solving and root causes analysis immediately. Eliminating the delay between a special cause and detection can reduce the investigation and corrective action effort by empowering quality practitioners with useful production feedback at the moment of a problem's inception.

Current development in SPC software includes the ability to provide supervisors with dashboard-style status indicators of all collection operations in the plant. Snapshot views of production status on a single screen allow busy supervisors to manage by exception instead of manage by walking around. Such SPC software systems aggregate and prioritize production information for the supervisor, reducing data-gathering demands.

Reporting

One of the most time-consuming tasks in applying statistical methods to a manufacturing process is developing relevant and understandable reports to form the basis for decision making. Modern SPC software makes the job easier by providing built-in report templates that can organize and deliver reports focused on the key characteristics of a process. Moreover, reports that are needed on a regular basis can be scheduled and automatically generated based on then-current production information. This is a time saver for those responsible for communication among quality team members.

Finally, the effort previously expended producing and distributing charts to various users and locations is reduced by leveraging the Internet. A Web-based SPC report with hyperlinks to various types of analyses can easily be distributed to multiple persons, teams or facilities.

The Future

Future SPC software development will follow the trend to eliminate cumbersome, low-value tasks and generally make SPC systems easier to administer and use. Describing the particular form such future development will take is speculative, but the combined capabilities of intelligent and expert systems is one possible way SPC software could evolve to address new challenges.

Intelligent systems emulate the human ability to learn from past experience and to make reasoned decisions and take action based on those experiences. Expert systems rely on a knowledge base to build models to diagnose, advise and act on real-world problems. Intelligent and expert systems are already deployed in control technology for manufacturing processes. It is not a great leap to believe that these technologies will profoundly change the nature of SPC software.

There are many ways in which intelligent and expert SPC systems would enhance the effectiveness and simplify the work of quality practitioners. On the most superficial level, these systems would learn from previous SPC configuration to logically reorder the system to make future administration easier. For instance, such systems could recognize which devices are being deployed and suggest effective collection methods and preferred connection approaches based on past experience.

But the administrative assistance offered by intelligent and expert SPC systems would run much deeper than that. Such systems could save countless hours helping determine how to monitor the process. Building on the history of previous production successes and failures, SPC software could select key parameters to track when to set up new parts or processes, and determine the most effective way to chart and report on those parameters. The software itself could anticipate problems and alter monitoring methodologies to adapt to changes in the manufacturing process.

The impact of intelligent and expert systems would perhaps be greatest when it comes to interpreting process statistics and acting on that analysis. There is not enough time in the day for the quality practitioner to thoroughly analyze the mountain of information generated from each production run. SPC software with learning and knowledge-based capabilities, coupled with computational power, will provide insights into the process beyond what the practitioner alone could achieve. With the advent of intelligent and expert SPC systems, the computer can transcend the earlier comparison made to a calculator. Such systems could not only assume or simplify menial tasks currently performed by the quality practitioner, but will also become a readily available and trusted source of expert guidance and advice.

Of course, the future developments suggested here may never come to pass. Nonetheless, it is almost a foregone conclusion that the SPC software of tomorrow will be more intelligent and capable of simplifying many jobs that burden today's quality practitioner. The future of SPC software is what frees those practitioners from time-consuming, low-value tasks and enables them to more easily obtain the analytical results that inform business decisions.


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