Showing posts with label battery. Show all posts
Showing posts with label battery. Show all posts

Thursday, February 04, 2010

Finger powers mobile phone battery

Finger powers mobile phone battery
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At trewmte.blogspot I have endeavoured over the years to ensure part of the content identifies innovations in the marketplace:
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IPhone unlocker
http://trewmte.blogspot.com/2008/11/sim-dialer-iphone-unlocke.html

Telepathic Chat via Cellphone
http://trewmte.blogspot.com/2008/03/worlds-first-cellphone-telepathic-chat.html
Membrane technology
http://trewmte.blogspot.com/2008/12/another-ultra-thin-membrane-device.html
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I also reported (back in 2008) how researched had been conducted into using sound waves to charge mobile phone batteries: http://trewmte.blogspot.com/2008/12/sound-waves-could-power-cell-phone.html . This year, 2010, a new invention has been developed that requires twirling a mobile phone battery (with the use of one finger) 130-revolutions generating 25-minutes standby time and 2-minutes talk time. The idea for this invention comes from Designers: Song Teaho & Hyejin Lee at http://www.yankodesign.com/2010/01/04/cheers-to-finger-power/. The invention is promoted using the following photoimages.
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This invention is unliklely to replace the battery charger (PSU) but as a 'Green' (environmental) back-up power charging alternative, the idea may find merit with the mobile phone handset manufacturers. No doubt there will be those who may criticise the invention based upon 130-revolutions generating only 2-mins of talktime. However, 260-revolutions generating 4-minutes of power need not be spent '
yakking' away on the mobile phone, but perhaps sending text messages. Or it might be useful where a user's standard battery has discharged but may need to make an emergency call (999 etc); perhaps this design may have synergy with that old adage "necessity is the mother of invention".

Friday, December 05, 2008

Sound Waves Could Power Cell Phone?

Sound Waves Could Power Cell Phone?
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Cell phones are only useful so long as they have charge left in the battery, may not be an obvious comment to make when looking at the future as to how cell phones may be powered. Pioneering work, by Professor Tahir Cagin at the Artie McFerrin Department of Chemical Engineering at Texas A&M University, in the area of 'sounds waves' to help cell phones generate self-power could revolutionise, and have profound impact on, 'power harvesting' in the future, and not just for cell phones either, but other lower powered devices, such as radios, laptops, pagers, PMR etc.
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The way it works, sound waves produced by the user of a cell phone can generate the energy the cell phone needs to operate. The science behind this is generated from materials know as "piezoelectrics". Professor Cagin's research focused on nanotechnology and made the significant discovery in the area of 'power harvesting', "found that a certain type of piezoelectric material can convert energy at a 100 percent increase when manufactured at a very small size – in this case, around 21 nanometers in thickness." To comprehend the minute level at which this work is carried out, nanometers are a microscopic unit of measurement representing one-billionth of a meter. Atoms and molecules are measured in nanometers, and a human hair is about 100,000 nanometers wide.

Polarizable Charge Equilibration Interaction
Potentials are essential in describing piezo-
and ferro-electricity in ABO3 ceramics for sensors,
actuators and energy harvesting applications.
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Chambers Science and Technology Dictionary identifies the term 'piezo' is derived from the Greek word 'piezein', a verb meaning 'to press'. In 1880, French scientists P.& J. Curie discovered "Those crystals having one or more axes whose ends are unlike, that is to say hemihedral crystals with oblique faces, have the special physical property of giving rise to two electrical poles of opposite signs at the extremities of these axes when they are subjected to a change in temperature: this is the phenomenon known under the name of pyroelectricity." They went on to state, "We have found a new method for the development of polar electricity in these same crystals, consisting in subjecting them to variations in pressure along their hemihedral axes." [Curie, P. and J. Curie, Development by pressure of polar electricity in hemihedral crystals with inclined faces. Bull. soc. min. de France, 1880. 3: p. 90-93.].
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From the research I conducted into 'piezoelectrics' it suggests that it is not a new science, per se. Thus, has this science been used for any other technologies that took advantage of the ability of certain crystalline or ceramic materials to develop an electric charge proportionally generated from some form of stress presented to them? Examples that I was able to find on the Internet: the spark that ignites the fuel in a lighter occurs due to pressure of the lighter button impacting on a piezoelectric crystal; night clubs that use piezoelectrics built into the floors that absorb the energy of dancers foot-movements to provide energy to power the lights; the same principle applied to using gymnasium equipment to provide energy is yet another example. Indeed, walking can help produce the same energy to generate back up power supplies. Professor Cagin's further discovery of researching the basic laws of physics that relates to human speech (pressure) and from that to 'power harvest' from speech waves to generate energy can only add to the incredible scientific phenomenon that piezoelectrics has become.
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Extrapolating what might be possible should such a science be implemented into mobile telephones, certainly users would like it as they may never again need to obtain another battery when the life-span of a battery has been reached, no recharging at the electric socket, or have a flat battery preventing mobile calls until the battery is recharged back at home or the office. I should imagine mobile network operators would love this technology, too, as it implies more people will have an excuse to spend even more time yakking on the mobile, thus call traffic revenues could increase. From a climate greenhouse emissions standpoint it should be an exciting draw, particularly for Government, because piezoelectrics allows for renewable energies with minimal carbon-footprint, apparently.
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Some downsides: how will battery manufacturers see their future?; train and bus passenger complaints will probably increase about other passengers using their mobile phones in carriages etc, not convinced by the mobile phone user-offenders claiming they are only recharging their phones; for mobile phone examiners, though, this could be problematical for mobile phones exhibits with no-charge in them to operate and conduct data acquisition. How to energise the phone will be one question needing to be answered? Evidentially, having to admit the mobile phone examiner had been chatting on the phone to power it raises all sorts of issues, and what about when the examiner has 20 phones to be turned around quickly?
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Source of scientific development and photo: Texas A&M University

Thursday, February 22, 2007

Is your cell phone bugged

Is your cell phone bugged

Vortex (a US company) has produced an online Video, which they say is "to explain this issue in a more demonstrative and somewhat less technical manner..."

http://video.google.com/videoplay?docid=-3437321657032158285&hl=en

It raises some quizzical issues. This is not my attempt to be dismissive of what they are saying, but I could not help but think it does rely upon the subjectivity of each mobile phone user to perhaps determine if their battery runs down too quickly or the handset gets hot when not in use that information is being extracted from it.

The video authors do stress that any such use of monitoring mobile phones is not targetted at the general public, but those under surveillance. But that in itself may not stop the general public thinking something maybe up if they find the events occurring that have been suggested .

Whilst videos like this can be informative, they can introduce feelings of worry or paranoia to those who maybe vulnerable to such feelings. Perhaps it might assist, if a mobile phone user thinks this is happening to first rule out common events that the mobile phone may be exposed to:

The mobile
A) had been left in direct sunlight
B) left close to a radiator or devices that emit heat generally in areas (kettles, photocopiers, computers/laptops etc)
C) that the user hasn't just taken the mobile phone out of the coat pocket (obvious I know, but worth saying anyway)
D) reduction in battery power occurs because of resource greedy applications running on the mobile phone
E) does update to the network and in areas were poor radio coverage pockets occur or where the mobile is located at the radio boundary of a Mast's coverage, updating to the network does increase energy consumption (drawn from the battery)
F) where a mobile phone is swtiched OFF and battery still runs low, it could be a fault of a bleed from the battery or that the mobile's firmware is faulty regarding e.g. the clock and draws more power from the battery at a higher rate
G) using broadband might require the ISP or application service to 'ping' the mobile to ensure the account is still connected, which might be a separate event from updating to the network regarding the subscriber IMSI-attach status for example

These are just some observations that might help, but if a mobile user is still concerned, the video does demonstrate a detection method using speakers. But even that may produce a false-positive result. There is of course another method that may eliminate this matter which the video suggests is to remove the mobile phone's battery. OK, but that doesn't take account of when the mobile is switched ON and in the idle mode. If the mobile user still feels uncomfortable, then change to a different or new mobile phone.