Tampilkan postingan dengan label PC Troubleshooting. Tampilkan semua postingan
Tampilkan postingan dengan label PC Troubleshooting. Tampilkan semua postingan

Rabu, 27 Juli 2011

What is a Motherboard and Why is it Imprtant?



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A motherboard is the most important component that is in your PC, think of it as the engine and transmission that drives it. This vital piece of hardware provides your computer with a place for everything to plug into so that it can perform the tasks necessary to making your life easier, including your audio/video and the hard drive where all your information is stored at.

When you open up the case of your computer (do not do this if your computer is under warranty, as it may void it.) the main board or motherboard is usually mounted on the side of the PC's tower and stand in a vertical position.

If you want to take a look be sure to first unplug your PC and then press the power button to discharge the power so that you do not damage your system. On the motherboard you may have several different slots for other components to plug in, for example you may have a slot that is about 4 1/2 inches long that you may be able to plug in a extra video card if you do not already have one, very quickly boosting your gaming performance.



However if you do not have enough RAM, this is the skinny sticks with chips on the side, the computer will not be able to hold all the temporary information for your gaming needs. There should also be a place where you will have the socket for the CPU, the CPU on the motherboard is the brain behind the power, and is what regulates how fast that your PC can move data around on your hard drive as well as how fast it computes necessary information so that you can run complicated programs.
Source: yahoo.com

How to Reflow a Laptop Motherboard

What is a Reflow?
The term ‘reflow’ describes a process of briefly melting (reflowing) the solder on an electrical circuit board.

Why would you perform a Reflow on a laptop?
The solder used in laptop motherboards tends to degrade over time, becoming brittle and weak. It can change from being a solid block of solder into more of a honeycomb structure. This weaker solder joint can fracture causing tiny broken connections in the circuit, invisible to the naked eye. The idea behind performing a reflow is that it melts the solder, allowing it to form a solid block again and joining up the electrical circuit.



When would you perform a Reflow?
There are a number of scenarios where performing a reflow can be successful. A typical example is a laptop motherboard which is receiving power, lights come on to confirm this, but it just won’t power up. It is possible that a crucial connection has been broken by weakened solder.
Another common example is a laptop that will appear to power up, but there is no graphics output to the LCD panel or to an external screen. In this case, it is likely that there is a broken solder joint around the graphics chip (GPU).


A reflow is a method of last resort. In other words, you would only ever try this on a motherboard that was so completely faulty that it would otherwise need to be replaced. If performed incorrectly, a reflow can damage your motherboard even further. But on the other hand, if the motherboard is broken anyway, and would otherwise be replaced, then performing a reflow won’t make the problem any worse.

Certain makes and models of laptops seem to be more prone to these GPU problems than others.  It seems to be particularly common in the NVIDIA chips used in some HP laptops, especially the following models; Pavillion dv2000, dv6000, dv9000, dv9500, dv9600, dv9700 and Compaq Presario V3000, V6000.
How do you perform a Reflow?
There are expensive infra-red reflow stations which can be purchased which will do this job for you. However, if you are on a budget, the easiest method of performing a reflow is to bake the laptop motherboard in a household oven.


This might sound a bit crazy, baking your laptop in an oven, but if performed correctly, it can achieve the same end result, remaking the solder connections which may have been broken.
It is very important that the motherboard is completely stripped down before attempting this procedure.

Remove the CPU, heatsink & fan, RAM, BIOS battery, wires, speakers, stickers, plastic sticky guards, foam spacers, absolutely everything that can be removed from the motherboard.
Then preheat your household oven to approximately 200°C or 385°F. If your oven does not have a digital temperature display, perhaps use an internal oven thermometer to make sure the oven is in the right temperature range.

Roll up some kitchen foil into balls, between half an inch and an inch wide, and place them on a baking tray. Place your motherboard, with CPU socket and GPU facing upwards, on top of the foil balls. It is a good idea to wrap additional foil around the more sensitive parts of the motherboard, like areas where there are capacitors and the CPU socket. If the reflow is being performed because of a faulty graphics chip (GPU) then perhaps wrap the rest of the motherboard in foil to protect it, leaving just the GPU exposed on both the top and bottom of the motherboard.

Then place the baking tray with the motherboard on it into the preheated oven. Every few minutes, have a look through the oven door (without opening it) making sure there is no smoke or flames visible. This is unlikely to occur, but can happen if stickers were left on the motherboard.
After 8 minutes, turn the oven off and open the oven door. Do not remove the motherboard from the oven at this stage, it could be very hot and it is a better idea to allow it to cool down gradually. Make sure your kitchen is well ventilated at this stage, turn on the extractor fan to full power and/or open an outside door. This will take away any fumes. I recommend that you leave the kitchen while any fumes are still present.


After 20 minutes to half an hour, remove the cool motherboard from the oven and begin rebuilding your laptop. If all has gone well, it will boot up and the problem will be fixed. If the problem remains, you could try the procedure again, leaving it in the oven for a couple of minutes longer.
After performing a reflow in an oven, I recommend cleaning the oven thoroughly, then turn it on and allow any fumes that may have built up to be completely removed, especially before cooking food in the oven again.

How long will a Reflowed motherboard last?
It is impossible to say for certain how long a repaired motherboard will last. It may be a few weeks or a year, there is no way to know for certain. The problem with the solder fracturing does tend to come back again eventually though. However this technique might at least get your laptop running again for a while, long enough perhaps to save up for a new laptop.

Video of a Motherboard Reflow
Here is a quick YouTube video I came across of someone performing a motherboard reflow in a household oven. It doesn’t cover all the points I describe here but it shows the basic principle.

Disclaimer:
Putting your laptop in a household oven is dangerous and is a method of last resort when fixing a fault. This method of performing a reflow is well documented across various sites on the internet, and although many people have had success with it, it may not work in every case. We will not be held liable for any damage, either direct or consequential, that you cause to your motherboard, to your oven or to any person or property as a result of attempting this procedure.


Special Thanks to: http://www.computerrepairtips.net

Fix Laptop Overheating Shutdown Problem


Overheating and related shutdown problems are very common in laptops, especially in home use.  Common symptoms include some or all from this list;
- Laptop is extremely hot to the touch, especially around the fan area
- Fan seems to be running constantly, and at high speed
- Laptop shuts off by itself when doing nothing
- Laptop shuts off when playing games
- These heating or shutdown problems become worse over time, rather than getting better.
In around 1 in 10 cases, there is a fault with the cooling hardware.

By this I mean either a mechanical failure with the fan where it can no longer spin, or spins slowly, or a motherboard electrical fault which exhibits itself by not telling the fan to spin fast enough to cool the laptop.
However 9 out of 10 cases of overheating are caused by an airflow blockage.

In these cases, the fan is spinning as fast as it can, but if the hot air is obstructed from reaching the outside world, a heat build-up occurs and the laptop takes the safety precaution of turning itself off, rather than allowing permenant damage to occur.
I will, very quickly, explain how a laptop cools itself. Heat from the CPU, and sometimes the graphics chip, is conducted away from the processors via strips of copper metal. At the far end of this copper heatsink, the heat is fed into a series of side-by-side metal fins. This grill provides a very large surface area for the heat to be spread over. A fan then draws air from the outside world and blows across the hot grill, back towards the outside. As it does so, the air picks up heat from the hot metal fins and takes it away from the laptop.

Picture of a dust obstructed laptop heatsink finsIn an airflow obstruction scenario, the most likely culprit is a build-up of material in front of the metal heatsink grill. The fan will be drawing in cool air through vents from the outside world and occasionally there might be a tiny piece of fluff, hair or dust sucked into the laptop.


When this air is being blown across the metal grill, the airborne material gets stuck on the front of the fins. If this keeps happening over time, gradually more and more material will build up on the front of the grill, creating an obstruction.
A common example of this buildup of material is shown in the image to the left.  All of the grey material is a combination of dust, lint, hair or fluff, compacted on to the front of the heatsink grill.

The effect of this is to block some of the airflow over the heatsink grill. With less physical space for the air to get through, the air is not picking up heat from the whole set of fins. So a smaller amount of heat is transferred to the air in it’s journey to the outside world. With less heat being removed, the heat starts to build up inside the laptop.

Temperature sensors detect this and will react by making the fan spin faster and faster. The point of spinning the fan faster is to force more air through the available gaps, and past the hot metal fins to pick up more heat.

This compensation of spinning the fan faster can work to an extent, but eventually a limit will be reached. If the heatsink grill is sufficiently blocked, the fan will be spinning at maximum speed and it will no longer be possible to reduce, or even stabilse, the internal temperature of the laptop. Temperature sensors will realise this and as a final failsafe protection measure the laptop will power itself off.

The hope behind this is that if the CPU is no longer producing more and more heat, the existing internal heat will gradually dissipate of it’s own accord and the laptop will, hopefully, avoid serious damage.

Laptop Fan with Screws CircledDell Vostro 3700 Heatsink Fan AssemblyTo fix this problem, you need to strip the laptop down to allow access to the heatsink and fan(s).  I’m not going to explain how to strip down a laptop, step by step, as there are guides elsewhere for this, and some manufacturers, for example Dell, even provide Service Manuals on the support pages of their website.
In most cases, to disassemble a laptop, all you will need are one or two small screwdrivers.  Some laptops require special torx screwdriver heads to remove some of the internal screws, so you will need to investigate this in relation to your particular laptop make and model.

The pictures I have taken for this post were from an overheating Dell Vostro 3700 laptop.  It would shut itself off after about 15 minutes of average use.  It was extremely hot to the touch around the fan area, and the overheating problem had gotten progressively worse over time.  The Dell Service Manuals explained how to remove the heatsink / fan assembly.

In this laptop, the fan was mounted on to a plate so I removed the screws holding the fan.  I’ve circled the tiny screws for easy identification.

The top image in this post shows the build-up of dust on the front of the heatsink fins.  In fact, it also goes to show that you don’t need a massive wad of dust to cause overheating and shutdowns.  In this case there was approximately 90% of the fins obstructed by a thin layer of material, but you can also see that there are still a few small gaps where a little air will have been able to pass through.

Each make and model of laptop will have it’s own threshold as to how much obstruction there can be before it causes a problem.  I’ve seen cases where there is a large solid strip of dust and fluff, several millimeters thick, that peeled away in one large piece.
After brushing away most of the dust build-up, I gave the heatsink fins and the fan a good blast with compressed air.  This blew away the last remnants of dust, and left a nice clean shiny heatsink grill and fan.
All that remained was to reassemble the laptop using the same steps as before, except in reverse.


The laptop is now working well and no longer overheats or shuts off by itself.  A side-benefit of this fix is that the laptop now runs a lot quieter.  Because the fan can now remove the excess heat in the laptop while running at a slower speed, it reduces the fan noise.  The laptop is also now a lot cooler to the touch. Good Luck


Source:

Senin, 25 Juli 2011

How to connect your home computer from Remote location?

Using the Remote Desktop feature, you can connect your home computer (host) from any other remote computer (client) and can access all computer resources (installed programs, data and any network resources). You can run any computer application on the remote computer as you were running actually sitting in front of home computer. 

To perform this task, first make sure your both computers are connected to the internet. 
First you have to configure the host computer that allows the users to connect it remotely. On the host computer, right click on "My computer" and click on Properties option.
Under the Remote tab, select the option "Allow users to connect remotely to this computer" and click Ok button.
Now get the IP address of host computer (type the "ipconfig /all" on the command prompt of host computer to find IP address). 
Now make a connection on remote or client computer, click on Start button, go to All Programs> Accessories, and Communications, then click on Remote Desktop Connection, option. A Remote Desktop Connection, dialog box will appear.
Click on Options button for detail configuration, under the General tab, type the IP address of host computer in the Computer box and also type username and password of host computer then click on Connect button to make a connection to remote computer.
If your username and password is correct then a remote desktop windows will appear. 
 Source

SizeGenetics

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