Showing posts with label corrosion. Show all posts
Showing posts with label corrosion. Show all posts

Why does a wet phone die?

on Thursday, April 4, 2013
I wouldn't say I am an accident prone person, but statistically I have destroyed a disproportionate number of phones due to water damage. One of the things that struck me, was how sometimes, if you’re quick at getting your phone out of the water and you turn it off, then pray to the phone Gods and keep your fingers crossed, sometimes, just sometimes, it magically comes back on again the next day…(at least until a week or two later when it starts acting ‘funny’).

In order to get a better understanding of what’s going on with a wet phone, I had a chat with the team in the P2i labs.

What happens when your phone gets wet?

There is a magnitude of possible outcomes when your phone gets wet. If you think about the number of entry points for water to get in the phone, then times that by the number of possible angles of entry, force of entry, droplet size (fully submerged, spray, mist, sweat) and type of liquid, you begin to see why the answer is not so black and white!

Perhaps one of the most obvious outcomes is that your phone ‘short circuits’ and powers out. If you think of a circuit board like a series of motorways, in the same way that we drive cars according to the direction and paths provided, the circuit board controls the flow of electrons, ensuring that your device works as specified. However when you add water to the mix, it’s like driving cross country or along sand dunes where there are no roads to act as a guide. As a conductor of electricity the water allows the electrons to flow freely.

With the liquid inside the phone allowing the electricity to flow in unintended directions, the essential voltage differences across the circuit board are interrupted, causing excessive electric current, heat and power outage.

Ok, so if I’m lucky enough to have my phone turn back on, why does it start going ‘funny’ after a couple of days/weeks?   
If you have ever opened a water damaged phone or piece of electronics you may have seen what looks like rust or a perhaps a white powdery substance. In the first instance the water or liquid is interacting with the metal causing a chemical reaction, as you would see with any metals exposed to the elements, like a tin roof. Except unlike the roof, the addition of energy supplied by the phone under power, accelerates the process. This causes degradation and wearing away of the metals inhibiting them from performing effectively. This is particularly evident in devices that are used in environments such as the gym or are kept close to the skin like headphones and hearing aids, where the addition of the salts in our sweat aid in the severity of the chemical reaction.

So what is it that makes a phone die altogether? 
Well this takes us back to the highway analogy. There is a type of corrosion called ‘electrochemical migration’. This is essentially the movement of metal ions from one point on a circuit board to another. This is able to occur because the water allows the free flow of electricity; so where once there were paths for the electricity to flow, allowing controlled differences in electrical charge between different points on the circuit, now  the water allows the metal ions to migrate. Eventually the metal ions will bridge the two points through the formation of a metal dendrite, acting as if a new road was created. Now, even when the water recedes, this new road permanently disrupts the control of electricity on the circuit board and the phone is no longer able to function as intended.

Do you have any advice for people who get their phones wet?  
It’s key to stop the electrical flow as soon as possible so first thing is to take the battery out. Then dry any excess visible water – worth noting that you should avoid trying to shake the water out as you may be inadvertently forcing it further into the device. Leave the phone to dry out completely before succumbing to the urge to test it…and unless it’s a Motorola or Alcatel device already treated with P2i’s tech, than feel free to keep your fingers crossed. 

Update from NEPCON 2012

on Thursday, April 26, 2012
We are currently exhibiting at the 2012 NEPCON Expo in Shanghai where the electronics world gathers for 3 days to see new product launches and learn about industry developments and trends.

This is our first time at the Expo where we are showcasing and demostrating our Aridion technology. Here are collection of images from Shanghai:

The Shanghai skyline

Entrance to NEPCON 2012

Our booth gathers a crowd

Our booth before the expo opened
NECPON finishes tomorrow (Friday 27th) so if you are at the show come and visit us in booth 1H57. You can also find out more about how Aridion works here: https://www.youtube.com/watch?v=c83n-vkno8U



Scott Steinberg highlights Aridion as technology to look out for in 2012

on Wednesday, April 11, 2012
Scott Steinberg, technology analyst for broadcast networks including CNN, FOX, NBC and publications such as The New York Times and Wired has spoken with NewsWatch TV about some of the top technology products to look out for in 2012. And Aridion technology is one of them!

The show which was hosted by Scott, was broadcast across America on the 5th April and highlighted what technology products are worth keeping your eye out for this year. The show which is 30 minutes in length showcased our Aridion technology towards the end of the episode and you can watch our segment below:


If you would like to know more about Aridion and how it protects electronics from water and corrosion damage you can here.

We did it again!

on Wednesday, April 4, 2012
So we have returned from AudiologyNOW! 2012 and not only was it a great show but we are delighted to have won the Best of Show award for the second year running! What makes it even more exciting is that this is the first times in AudiologyNOW's history that a company has won the award twice.

P2i's CEO, Carl Francis and Natalia Delclaux accepting the award from AudiologyNOW!

The 2012 Best of Show award
Winning the award topped off what was another great show for us, where we increased awareness of Aridion™ as well as introducing the technology to new businesses and people.

We have put up a collection of images from the show which you can see on our Flickr site as well as watching a montage of what we got up to below:

Returning to AudiologyNOW!

on Wednesday, March 28, 2012
About this time last year our booth was crowned the Best of Show at AudiologyNOW! 2011 and we are back exhibiting at this year's show which takes place in Boston from the 29th-31st March 2012.

Our fingers are crossed, hoping to win the Best of Show award again but our real aim at AudiologyNOW! 2012 is to promote and demonstrate our Aridion™ technology. Since the 2011 show, Aridion™ is now applied to approximately 60% of hearing aids worldwide, protecting them against water and corrosion damage which can occur where moisture, sweat and cerumen builds up.

These types of environments can all be found within and around the ear and are a significant factor in causing hearing aids to malfuction. Aridion™ signfincantly reduces the damage caused by liquid and moisture resulting in longer lasting devices and reduced return rates.

AudiologyNOW! is the world's largest gathering of audiologists and we are looking forward to once again showcasing how Aridion™ can revolutionize the performance of hearing aids for manufacturers and consumers.

Below are some images from last years show:

CEO, Carl Francis and Natasha Verniquet with the Best of Show Award
Capture of the P2i booth from the foyer
We will be tweeting from the show and you can follow us on Twitter here.

Waterproof and water repellent electronics...

on Wednesday, March 21, 2012
On the back of the International CES and Mobile World Congress (MWC) tradeshows there has been an increased amount of discussion, and at times confusion on the difference between waterproof and water repellent electronics. In this post, we will shed more light and understanding on the subject, but before we begin, here is how each is defined:
  • Waterproof: Impervious to water
  • Water Repellent: Treated with a finish that is resistant but not impervious to penetration by water
Put simply, waterproof requires a physical barrier altering the device, water repellent does not change appearance and can be applied to any device.  

How do electronics become waterproof? 

The term waterproof is itself confusing as there are varying scales of 'waterproofness' that can be measured to determine how well electronics perform in and around water. This scale is known as the Ingress Protection Rating (IPX) and is based on a scale of 0-8 where 0 means it has no protection and 8 means it can handle continuous immersion in water. For example, an electronic device that has an IPX7 rating is protected against water submersion to a depth of 1m for no longer than 30mins. The level of water protection a device is capable of is usually highlighted by the manufacturer either on the device or in the manual.

For a smartphone to pass IPX6 and above, the devices physical appearance is normally compromized and this can be seen through the development of ruggedized handsets that feature protective rubber and plastic casings, as below:
Sonim XP3 waterproof phone
Fast forward to today and what was clear from the coverage at CES and MWC is that there is a strong desire for devices to be able to withstand water or other liquids. But unlike the above, the devices that are now appearing and claiming to be waterproof are not basic phones but instead are the latest smartphones on the market. What's more, these devices do not appear to have a protective case at all.

How are these new devices waterproof?

Well the answer is quite simple, gaskets and O-rings. Before water can reach the valuable internal components where all our data is stored there are barriers in place in the forms of gaskets and O-rings.  For quick reference a gasket is a mechanical seal which fills the space between two or more surfaces to prevent leaking while an O-ring is designed to be compressed between two parts creating a seal. While both these barriers stop water from penetrating inside the device they can still alter physical aspects of the device making them bulky as well as expensive to produce and purchase.

There is also another problem, these seals can be comprised by general use and over time the parts can move or be damaged should the device be dropped. If just one of these barriers were to break, water would then be able seep inside towards the circuit board and internal components, resulting in device failure and loss of data as the inside becomes exposed to water.

Why repellency over waterproof?

Firstly, we need to be clear what repellent means when talking about electronics and how it differs from waterproof. That is where Aridion™ comes in.

The key difference is that electronics treated with Aridion™ will still allow water to get inside. Does that mean the end of the devices life? Not necessarily, as Aridion™ molecularly bonds to both the inside and outside of the entire device ensuring that each and every exposed surface is coated. This means that any water that does come into contact will move away from the surface rather than sticking to the device and if water does get inside, the internal components are also treated, producing the same effect.

This type of protection allows the device to be created without having to compensate for a protective casing, gaskets or O-rings. What is important to remember however is that even though the water is repelled, the coating does not make the device waterproof as it is not designed to withstand submersion.

You can get a better idea of how the coating is applied and works in this video:


Aridion™ provides water protection by removing the buildup of corrosion. Corrosion occurs not just when a phone is submerged but in high humidity and moisture environments such as saunas, in the bathroom when having a shower or traveling through different temperatures. All these factors can lead to internal moisture buildup which over time can corrode the circuits. Aridion™ protects against this as it stops the water/moisture from sticking to and in between the components which would result in electrochemical migration. Electrochemical migration is the movement of metal ions between conductors and if this happens the device short circuits.

So what is the difference?

In the simplest terms, for a device to be waterproof it has to either be completely sealed and ruggedized (making them bulky) or alternatively it must have barriers in place which stops water from penetrating through. The disadvantage with that being these seals can break resulting in the device becoming susceptible to water and corrosion damage.

Water repellent does not mean waterproof but it does mean protection from splashes, spills, corrosion and water damage brought on by the scenarios mentioned earlier (humidty and moisture) as well as those 'caught out in the rain' moments we have all experianced.
If you would like to know more about Aridion™ technology and the benefits it offers you can here.

The following video which was filmed at MWC with our CTO Dr. Stephen Coulson visibly demonstrates the benefits that Aridion™ offers to electronics devices:


Aridion™ is applied during the manufacturing process and is already applied to over 9 million devices including the Motorola RAZR and XOOM 2.