Thursday, 29 September 2016

Soldering Of Electric Component(1)

Hello Guys,
Today we are gonna be talking about soldering and its equipment’s
Most people do ask what does soldering mean well soldering simply means the process in which two or more metal items are joined together by melting and then flowing a filler metal into the joint—the filler metal having a relatively low melting point. Soldering is used to form a permanent connection between electronic components.
The metal to be soldered is heated with a soldering iron and then solder is melted into the connection.
Only the solder melts, not the parts that are being soldered.
Solder is a metallic "glue" that holds the parts together and forms a connection that allows electrical current to flow.
You can use a solderless breadboard to make test circuits, but if you want your circuit to last for more than a few days, you will want to solder the components together.
                                              MATERIALS AND EQUIPMENTS
  • A soldering iron
    • A soldering iron is used to heat the connections to be soldered.
    • For electronic circuits, you should use a 25- to 40-watt (W) soldering iron.
    • Higher wattage soldering irons are not necessarily hotter; they are just able to heat larger components. A 40-W soldering iron makes joints faster than a 25-W soldering iron does.
    • A soldering iron can be purchased at hardware stores and at most large department stores.
  • Rosin core solder
    • Solder has a lower melting point than the metals that are being connected do. The solder melts when it is heated by the soldering iron, but the metals being joined will not melt.
    • The rosin core acts as a flux. It prevents oxidation of the metals that are being connected, and enhances the ability of the solder to "wet" the surfaces that are being joined.
    • Solder that is used to join copper pipes has an acid core, which is appropriate for pipes, but will corrode electronic connections. Use solder that has a rosin core.
    • For most electronics work, a solder with a diameter of 0.75 millimeters (mm) to 1.0 mm is best. Thicker solder might make soldering small joints difficult and also increases the chances of creating solder bridges between copper pads that are not meant to be connected.
    • An alloy of 60/40 (60% tin, 40% lead) is used for most electronics work, but lead-free solders are available as well.
  • Stand on which to hold the hot soldering iron
    • There are a variety of stands available. It is important to always keep the hot iron in its stand when not in use.
  • Sponge
    • The damp sponge is used to clean the tip of the iron .
 The solder in this picture is coiled inside a plastic tube; it is pulled through the top as needed. The spring on the stand holds the hot soldering iron. The damp sponge is used to clean the tip of the iron. Solder braid is used to remove solder; solder is "soaked up" into the braid when it is heated by the soldering iron. The wire strippers can be adjusted to strip the plastic covering off of various thicknesses of wire. The prototype board is used to connect electronic components in a circuit.
  • Solder braid
    • This is used to remove solder.
    • To use the braid, place it over the solder to be removed and heat it from above with the iron. The solder will flow into the braid.
    • Solder braid is used to extract an electronic component that is soldered onto a board.
    • It is also used to reduce the amount of solder on a connection.
  • Prototype board
    • A prototype board is used to assemble the circuit. The board shown is from www.protostack.com, but Jameco Electronics also supplies prototype boards.
    • Prototype boards have copper tracks or pads for connecting components.
  • Steel wool or fine sandpaper
    • This is used to clean connections prior to soldering.
    • Solder will not flow over a dirty connection.
  • Crocodile clips
    •                        
      These can be used as heat sinks, if needed.

TO BE CONTINUED...

Next we will talk about the safety precautions and tips.
Thanks for reading


Tuesday, 27 September 2016

Phone components and Tips for maintenance

Good day readers
Today we are going to discuss hardware. Many of us would ask what does hardware mean well hardware is the physical parts of a phone such as
  • A battery, providing the power source for the phone functions.
  • An input mechanism to allow the user to interact with the phone. The most common input mechanism is a keypad, but touch screensare also found in some high-end smartphones.
  • Basic mobile phone services to allow users to make calls and send text messages.
  • All GSM phones use a SIM card to allow an account to be swapped among devices. Some CDMA devices also have a similar card called a R-UIM.
  • Individual GSM, WCDMA, iDEN and some satellite phone devices are uniquely identified by an International Mobile Equipment Identity (IMEI) number.
These are few of all the many hardware components in a phone.
Now lets talk on how to maintain these components. The main enemies of our mobile phones are HEAT and MOISTURE. Excess HEAT accelerates the deterioration of the duplicate circuits in your phone, the most common causes of excess heat in the phone are dust and dirt, clean the case of the phone regularly, clean the ventilation's port and the speakers a can of compressed air will do. Also keep the phone away from moisture(anything liquid). If your phone falls into water or anyother liquid here is a quick fix for it but i cant guarantee it will always work, though it worked for me.
  The first step: Immediately cut the power by removing the battery. I know it's tempting, but resist the urge to power up your phone to see if it works--just turning it on can short out the circuits. If you have a GSM phone (the type used by AT&T and T-Mobile), you'll want to remove the SIM card as well. Even if your phone turns out to be beyond repair, the SIM should retain a lot of its onboard information, such as the contacts in your phone book.
With the battery safely set aside, you now have one goal--dry your phone, and dry it fast. If you let the moisture evaporate naturally, the chance of corrosion damaging the phone's innards increases. Instead, blow or suck the water out. But don't use a hair dryer--its heat can fry your phone's insides. Instead, opt for a can of compressed air, an air compressor set to a low psi or a vacuum cleaner (a wet/dry Shop-Vac would be perfect). The idea is to use air to push or pull moisture out through the same channels it entered.
Finally, use a desiccant to wick away any leftover moisture. The most convenient choice is uncooked rice. Just leave the phone (and its disconnected battery) submerged in a bowl of grains overnight. If you're worried about rice dust getting inside your phone, you can instead use the packets of silica gel that often come stuffed in the pockets of new clothes. But acting fast is far more important than avoiding a little dust, so don't waste time shopping if you don't already have a drawer full of silica gel.
The most important thing to remember is to avoid heat. That means no hair dryers, ovens, microwaves or extended periods in direct sunlight. While heat will certainly evaporate the moisture, it could also warp components and melt adhesives. Those fragile glues are also why you'll want to avoid dunking the phone in rubbing alcohol (an oft­prescribed tip on the Web). Alcohol is a solvent and can dissolve the internal adhesives. (If you drop your phone in the toilet, it's okay to wipe the outside with alcohol to disinfect it.)
One final, perhaps surprising, note: If your phone gets soaked in salt water, you should probably flush the whole thing in fresh water before it dries. When salt water evaporates, it leaves crystals that can damage a phone's fragile components. Just be sure to remove the battery before flooding the device.
Hope it works for you.
Thanks For Reading.