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Showing posts with label technology. Show all posts
Showing posts with label technology. Show all posts

Wednesday, 24 January 2018

Instagram is testing Direct, a messaging app that replaces the current inbox

Instagram is testing a standalone app for private messages called Direct, a first step toward possibly toward removing messaging features from the core app. Direct, which opens to the camera in the same way Snapchat does, will become available on Android and iOS today in six countries: Chile, Israel, Italy, Portugal, Turkey, and Uruguay. If you install Direct, the inbox disappears from the Instagram app and can only be accessed in the messaging app. If Instagram introduces Direct globally — it currently has no timeline for doing so — the move could give parent company Facebook a third popular messaging tool alongside Messenger and WhatsApp.
                                                         CLICK TO DOWNLOAD  


Although it is officially only a test, Instagram’s rationale for building Direct app is that private messaging can never be a best-in-class experience when it lives inside an app meant for broadcasting publicly. “We want Instagram to be a place for all of your moments, and private sharing with close friends is an important part of that,” Hemal Shah, an Instagram product manager, told me. “Direct has grown within Instagram over the past four years, but we can make it even better if it stands on its own. We can push the boundaries to create the fastest and most creative space for private sharing when Direct is a camera-first, standalone app.”
If that sounds familiar, it’s because Facebook has undertake a transition like this before. In 2014, the company shut off messaging inside the flagship app, forcing users to download Messenger. “On mobile, each app can only focus on doing one thing well,” CEO Mark Zuckerberg said at the time. “Asking folks to install another app is a short term painful thing, but if we wanted to focus on serving this [use case] well, we had to build a dedicated and focused experience.”
Direct was built according to similar logic. While direct messaging was originally an afterthought in Instagram, after multiple redesigns it had accumulated 375 million monthly users by April of this year, the company says. Its rise has coincided with the growth of Instagram stories, which encourage users to fire back quick replies to friends’ messages by adding a “send message” box underneath each one.
Now Instagram will see whether its tools for private messages can thrive on their own. There is reason to believe that they will: messaging apps have more aggregate users than social networks do, and some have speculated that growing cultural tensions are pushing more conversations from public forums to private groups. If messaging becomes a large, pseudo-independent pillar of Instagram, it could further entrench the app in the lives of its users while opening up significant new business opportunities.
Source:- The Verge 

Sunday, 23 July 2017

Smart Protektor A charging cable


We have come across cheap and low quality charging cables.These cables are damaging to your devices and are quite unreliable.constant charging can shorten your device's battery life as well.This is where Smart Protektor comes in. Smart Protektor is an all-in-one charging and data transfer cable.
it's also got an LED display.That's right, there is an LED display on this cable.with this Smart Protektor you can fast charge, sync data,test capacity and protect your device from power irregularities.It comes with micro USB and lighting options and a soft,flat,tangle free cable.The LED display on the cable lets you monitor and chose between different options. With the press of button you can test the current or voltage.It alerts you when there are power irregularities and automatically stops when the device is fully charged.

Tuesday, 18 April 2017

Amazing unknown facts of Android most users don't know

Android operating system a most leading and widely used smartphone operating system and growing day by day with highly enhanced user interface and lavishly used mobile applications.some are using its as platform to develop applications while others use it as one of source to connect with their friends and family.
so it said that android is dominating the mobile market 
But there are some unknown facts about Google's android which users should know..!

Is Android Found by google ?
  Android operating system was founded by Andy Rubin, Chris White, Nick Sears and Rich Miner under the umbrella Android Inc. It was established in October 2003.And later it was acquired by google with $50 million in August 2015.
Android operating system only for cameras..!
 After acquisition of android OS by Google. Google officially launched operating system in
November 2007. It was initially developed for cameras but google step into the future usage of OS on smartphones and worked on it a lot.
HTC Dream Android's first smartphone
  The HTC Dream was first released in October 2008.  The device used the Linux-based Android operating system by Google. It used Android version 1.0 and was upgradable till 1.6. The Android operating system on the device was criticized for lack of functionality and software in comparison to certain established platforms like Nokia’s proprietary Symbian OS but was still considered to be innovative.
Google has 1.4 billion active users right now..!
 Google’s Vice President for Android, Sundar Pichai, announced that the Android operating system has powered hundreds of millions of mobile devices in more than 190 countries around the world. It’s the largest installed base of any mobile platform and growing fast—every day another million user’s power up their Android devices for the first time and start looking for apps, games, and other digital content.
Android Versions and their evolution
 Apart from Android 1.0 and 1.1, all other Android versions have been named after sweet treats or desserts. These code names are chosen alphabetically, and have thus far all been dessert items.The naming typically appears to correspond to changes in the developer API levels, but this is not always true (example: 3.0 and 3.1 are both “Honeycomb” but they have different API levels).
  1. A for Astro (1.0)
  2. B for Bender (1.1)
  3. C for Cupcake (1.5)
  4. D for Donut (1.6)
  5. E for Eclair (2.0)
  6. F for Froyo (2.2.x)
  7. G for Gingerbread (2.3.x)
  8. H for Honeycomb (3.x)
  9. I for Ice Cream Sandwich (4.0.x)
  10. J for Jelly Bean (4.3)
  11. K for KitKat (4.4)
  12. L for Lollipop (5.0)
  13. M for Marshmallow (6.0)
  14. N for Nougat(7.0) (latest) 
  15. O for Oreo(8.0) (name not conformed yet to release)

Friday, 31 March 2017

UptoDown An app store for Android

Uptodown is the world's second most popular software catalog used to download Android apps, only behind Google Play. Founded in 2003, it currently processes 70 million downloads per month and has experienced +500% annual traffic growth since 2014, 80% of which comes from mobile devices. Uptodown has become a global curator of information related to software applications, hosting 45,000 editorial reviews and 300,000 files ready to download in a way that is both fast and easy for its end users. With over 3 million apps published in marketplaces like Google Play for Android and App Store for Apple, Uptodown emerges as an independent marketplace and curator. With headquarters in Malaga, Spain, Uptodown will open an office in Boston, MA in January 2015.

     Through UptoDown app we can download applications which are not on google's play store. For example OGYou tube is an application which is not on google play store. In OGyou tube we can see download option below every video so, it is very easy to download any video from OGyoutube.And many android applications like this....!
HOW TO INSTALL UPTODOWN ON ANDROID 
To install uptodown app on your android mobile click on the download button provided above after downloading it open your downloads and tap on the dowloaded apk file and follow the steps. PLEASE TURN ON UNKNOWN SOURCE IN SETTINGS > SECURITY > UNKNOWN SOURCE.

Thursday, 30 March 2017

Mobdro A secreat app not on playstore

Mobdro app:

Mobdro is an app to stream movies, TV shows, documentaries, sports, and other content on your Android. However, it works differently from most similar apps. The reason is that with Mobdro, you don't choose what movie or episode you want to watch; instead, you choose a channel. 

In a lot of apps for watching movies and series online, you can choose the exact episode or movie you want to watch at any time. With Mobdro, it's not like that. Instead, you have an enormous list of channels that show nonstop episodes or movies. 

In addition to the TV show and movie channels, Mobdro also offers streaming of traditional TV channels as well as sporting events. You can even access some rather strange streams, like live videos of animals or people playing video games. 

Mobdro is an interesting alternative to the huge number of apps available for watching content online, mainly because of the margin of surprise it entails. In the mood for a scary movie? All right, but you don't know which one until you start watching it. It's almost like flipping though the channels on a normal TV!
Mobdro is a very solid live tv android app that has been around for quite some time. It has some of the best channels, and also includes a 24/7 movies section.

Thursday, 8 December 2016

10 technological innovations by Nasa is being used for everyday purposes on Earth

Nasa showcases how its technologies are beneficial for Earth based uses in an annual volume called Spinoff. Nasa has released the Spinoff 2017 book, which is a catalogue of technologies that use Nasa research for Earthly purposes. The books have been being released since 1996. There are self driving tractors that use advance GPS trackers to harvest food, CMOS sensors used in action cameras, and cooling pipes for use in brain surgery.
Stephen Jurczyk, associate administrator of the agency’s Space Technology Mission Directorate in Washington, says “The stories published in Spinoff represent the end of a technology transfer pipeline that begins when researchers and engineers at Nasa develop innovations to meet mission needs. This year’s spinoffs includes products and services at work in every sector of the economy. They are innovations that make people more productive, protect the environment, and much more.”
Here are ten exciting uses of Nasa technologies on Earth. If you ever wondered how the space race helps the human race directly, then this is your answer.
10. Self Driving TractorsA partnership between John Deere and Nasa’s Jet Propulsion Laboratory has resulted in significant savings for farmers who use automated tractors for agriculture. On the road, we are yet to see fully automated vehicles, but agricultural fields, where regulations are laxer, there have been automated vehicles for over ten years. Over this period, the accuracy of GPS was improved from 30 feet to an inch. The tractors are used for planting feeds, distributing fertiliser, spraying pesticides and harvesting the crop.
The increasing accuracy meant that there was less overlap in the areas automatically covered, resulting in significant savings to the farmers. The automated tractors can take into account inputs from local moisture sensors on the field, and combine it with the GPS data for a process known as Yield Mapping, which informs the farmers how much of their harvests come from which part of the field. John Deere has weaned itself off Nasa to guide its tractors, and uses their own systems now.
09. Laser based ArcheologyNasa scientists have been using Light Detection and Ranging, (LIDAR) tech since the Apollo 15 Moon mission in 1971. A Canadian company called Teledyne Optech has designed small, lightweight lidar devices for use by Nasa. These devices were used to detect snow in the atmosphere of Mars, and a small bread box sized lidar is on board the OSIRIS-REx, which is on its way to Asteroid Bennu to explore the origins of life. Archaeologists on Earth are using the small, portable lidar devices to peer into the past of the planet.The research teams flew over suspected sites of bison hunting, and scanned the ground with lidar devices. The devices were able to identify features on the ground, and peer through layers of thick vegetation. Archaeologists would then go to the corresponding features on ground, and look for signs of pre-historic activity. Once promising signs were found, the scientists moved in to dig the site, and find remains of bison bones and pre-historic artifacts associated with bison hunting and cooking. The legendary lost settlement of  Ciudad Blanca in Honduras was pinpointed using lidar.
08. Heat pipes for brain surgeryNasa has been using heat pipes to dissipate heat from the earliest spacecraft. A non-rotating satellite, constantly facing the sun, is susceptible to damage of its electric components because of the build up of heat. Copper tubes funnel away the heat from the exposed part of the satellite to the back, protecting the delicate equipment from damage. More recently, Nasa has been using heat pipes to passively cool fuel cells, which generate heat. Technology developed by Nasa partners Thermacore, is used by surgeons in open brain surgery.The process requires the use of electronic bipolar forceps, that produce heat. The heat is used to cauterise unhealthy brain tissue. However, the excess heat can damage perfectly healthy tissue, with parts of the brain sticking to the forceps at times. Miniature heat pipes on the forceps increase the surgical precision of the instruments, leading to better results for the patients. Another important medical application for heat pipes is blood warmers. Pipes can be used to evenly warm blood, instead of creating local hotspots. As the technology improves and develops, medical practitioners are finding increasing applications.
07. Blankets to warm babies
Technology originally developed for use in space suits are being used to prevent deaths of newborns in India. Astronauts use some of the most advanced materials in the world to insulate their bodies against extreme temperatures. Phase-change materials (PCMs) were originally researched to manage heat inside a spacesuit. PCMs absorb heat when it is warm, as they shift from solid to liquid, and release heat in cold temperatures as they refreeze. PCMs did not catch on for use in spacesuits, but the technology was licensed for commercial applications, and came to the attention of a Stanford university student assigned to try and create a cheap incubator for babies.Jane Chen developed a prototype incubator that cost a fraction of traditional incubators. A nonprofit organisation called Embrace was formed, and moved to Bangalore as India has the highest rate of infant mortality. PCM came to the rescue of vulnerable premature babies, and after a round of funding from a Kickstarter campaign, Embrace now makes a range of products including swaddles, sleeping bags and blankets. The PCM in these products absorb heat when babies are too warm, and release heat when they get too cold. The products are available on the web site, and an infant in the developing world gets one for free every time a product is purchased.
06. Radios to track flights from orbitNasa hesitated to use reconfigurable radios on its satellites because of the thorough testing done on the radios to ensure that they work in challenging situations. It is much more difficult to test radios for use case scenarios that you are not even aware of. However, Nasa has now embraced reconfigurable radios as the future of space based communication, because of the flexibility it offers, as well as the capability to boost science returns because of higher data rates. The reconfigurable radios can be used for another purpose though – worldwide tracking of aeroplanes.Iridium has operated a constellation of low orbit satellites that provide communication and data services to the remotest regions of the earth. The constellation of Iridium NEXT satellites that are scheduled for launch are all going to be equipped with Harris AppSTAR reconfigurable radios that are programmed to receive signals from a new generation of aeroplane transceivers called ADS-B. This means that no other aircraft in the future will disappear mysteriously, similar to the Malaysia Air Flight 370 incident.
05. High Speed Cameras
For the Orion landing test, Nasa required a camera that had not existed on Earth at all. The camera was to be hosed in a rugged self contained casing that could endure the vacuum of space, a fall through the atmosphere, and immersion in water. The camera would require to catch high speed video in a high resolution, so that the scientists could find out what went wrong and where, if the mission were to fail. Nasa approached Integrated Design Tools for the project, which made cameras for industrial and scientific research applications.The technology developed for the Nasa mission is now used by IDT cameras, which are seeing an increase in sales. One of the key benefits is the creation of a high bandwidth pathway, that allowed the high speed cameras to write data on to hard disks. Previously, high resolution cameras would save data in volatile memory, where the data could get lost in case there was a disruption in the power supply to the camera. Nasa could not take this risk, and so IDT developed a camera that was able to transfer 10 to 12 gigabits per second to a hard drive.
04. Rail monitoring sensorsNASA’s Subsonic Rotary Wing Project is an initiative to ensure the competitiveness of the US Helicopter Industry. Nasa contractors developed a sensor that could RotoSense, a rotational vibration sensor meant to predict failures in helicopter transmission. Wireless accelerometers constantly monitor the circular movement of the rotors and analyses the health and condition in realtime. There are three accelerometres measuring g-forces in three directions. The same sensor could be used in a fast moving part of another vehicle – wheels of trains.Monitoring vibrations in the axle of the train can be used to detect flaws in the rails over which the train is moving. A company called Ridgetop retooled the RotoSense sensor meant for helicopters, into a device called RailSafe. The eventual aim of the device is to identify problems and predict failures before the happen, with long term monitoring of vibrations. Apart from preventing catastrophe, the sensors can also be used to prevent unnecessary maintenance, and cut costs. Such a device is one of the ways technology can be used to prevent incidents such as the derailment of the Patna-Indore express.
03. Nanofibre water purifiers
Water scarcity is a worldwide problem, where over a billion people do not have easy access to clean drinking water. Even in developed countries, water sources can get contaminated, or cut off during natural disasters. Nasa creates some of the best water filteration systems in the world, for use in another environment where water is scarce – space. Astronauts on the International Space Station consume water that is collected from every available source, including sweat and urine.
Nasa has collaborated with a number of companies to fund or transfer the technologies needed for creating cheap, portable water purifiers. These have resulted in solar powered devices, hand cranked devices, filters for use under the sink, and filters for use in remote locations. The problem with traditional filters for removal of virus and bacteria was that water had to be pushed through tiny holes, which was a slow process. Nanofibre attracts the bacteria and the viruses, allowing for more than 10 litres of water to be filtered in under a minute.
02. Ski GogglesA researcher in Nasa’s Ames Research Center was exploring ways to counter the effects of a phenomenon known as center-loading sensitivity. Human eyes are more sensitive to the colours in the middle range of the visible spectrum, such as blues and greens, and less sensitive to the colours in the extremes, such as red. Len Haslim developed a simple, low cost optical filter, that would allow colours such as red to stand out in a field of green to detect foreign objects in a camouflaged environment, such as forests. The lenses were developed to help in spotting targets and judging distances, presumably by military forces, but had another interesting application. The lenses could detect distress in plants, allowing them to be saved before their conditions deteriorated. Robert Brock, an optical scientist, recognized the value of using these lenses for other applications, and founded a company now known as NASTEK.Blue light can be a hindrance to skiers, when it comes to clearly perceiving terrain, so ski goggles filter out blue light. While other ski goggles in the market can filter between 79 to 80 percent of the blue light, NASTEK lenses were first used in goggles by Optik Nerve in 2015. The Goggles use technology developed by Nasa to achieve a filtration rate of 95 percent. Ski goggles are designed for different light conditions, some are meant for low light, and some are meant for intense and direct light. The NASTEK goggles handle both conditions equally well, and are cheaper than competition as well.
01. CMOS SensorsEugene Lally conceptualised Digital Photography at the jet Propulsion Laboratory way back in 1960. In 1990, JPL hired Charged Coupled Device (CCD) expert Eric Fossum to work on digital cameras. Fossum believed that he could improve the complementary metal oxide semiconductor (CMOS) technology, into a commercially viable technology. CMOS sensors suffered from various issues, including noise. Fossum used a CCD technique of measuring the voltage of a pixel before and after an exposure to reduce the noise. This allowed for a range of commercial applications, including consumer cameras with low power requirements, low noise and capable of being housed in tiny casings.The CMOS sensors invented at NASA’s JPL are perhaps the most commonly used technologies to be spun off from NASA. These sensors are in action cameras, mobile phones, and dedicated cameras as well. Image sensors for automotive, surveillance and industrial applications also use CMOS sensors. The devices are small, light, and have a reduced energy footprint compared to other technologies. Cell phone cameras are the most commonly used cameras now, and these would not have been possible without CMOS sensors.
The Spinoff 2017 book by Nasa lists out many more such innovative space technologies that made it to practical applications on Earth. Users can download the book in .pdf format for free, view it in an html version, or even request a free physical copy from Nasa. There is a dedicated app for the iPad, with shortened versions of the text, but image galleries and associated video content.

Monday, 5 December 2016

How Demonetization Policy is Affecting Smartphones, Carriers and Mobile Payments

For Android fans, 2016 has been rather uneventful. Sure, we’ve seen the end of the Google Nexus line, the release of Android Nougat, and the rise and fall of the Samsung Galaxy Note 7. The two Google Pixel phones, besides the price hike, are not that different than the Nexus phones of old. Android Nougat, while finally implementing multi-window, hasn’t really revolutionized the Android software landscape. And as for Samsung’s disastrous Galaxy Note 7 – eh, they’ll survive. But outside of the Android tech sphere bubble, events in 2016 have led to a huge shake up in the way the world does business. Sometimes, these major geopolitical events trickle down into the lives of your everyday Android fan.
We’ve talked before about how Brexit has temporarily affected the prices of certain smartphones, and how an Android enthusiast gets by in a ‘third-world’ country, but today we’re going to discuss something that is highly relevant to a dedicated portion of our readers – India’s recent demonetization of its highest currency denominations. While the whole issue is largely political in nature (and we do not hold an opinion on the motives or effectiveness), we are here to analyze how this move is likely going to affect the massive potential of the smartphone market in this developing country. Furthermore, we will touch upon how the Indian smartphone scene has been shaken up and changed by this move.

Demonetization – A Primer

If you’ve been keeping up with the latest in global news, you may have heard of India’s recent demonetization move. For a short summary, the Government of India decided to withdraw the legal tender status of ₹500 and ₹1000 currency notes (valued at ~$7.5 and ~$15 respectively), both of which are (or were) the highest denominations of currency available in the country, with the next highest being ₹100 only (~$1.5) from the old currency; new currency notes of ₹2000 ( ~$30) and ₹500 also were to be put into circulation. The move was announced on 8th November 2016, and was put into effect in a very short time period of less than four hours, effective from 9th November 2016.
For some perspective, refer to the figures quoted in Reserve Bank of India’s (the Central monetary authority in the country) Annual Report: the older currency denominations accounted for 86.4% of the country’s cash circulation in value (not volume), all of which are now deemed worthless for barter exchange in their old state. Citizens had to deposit their older notes with banks to achieve any more use out of them, and strict withdrawal limits have been imposed (and slightly relaxed since) to make sure that tight control is maintained.
In essence, the largest cash denominations were essentially wiped out overnight, and the sheer value loss caused by the move saw a severe cash crunch in the country. To understand how the recent events would affect the Indian smartphone industry, it is important to look at the scenario before the event and the predictions that were made alongside.

Smartphone Sales

Recent reports from Morgan Stanley, released a few months prior to the surprise move, stated that India was in the running to overtake the United States as the second-largest smartphone market by 2017, riding on top of robust annual growth in the smartphone market. The country would have grown at a compounded annual growth rate (CAGR) of 23% through 2018 (compared to 5% estimation for China for the same period), and would account for 30% of the global growth during the period.
As growth in China had decelerated and was expected to stagnate, the moment was ripe for India to become the next point-of-interest for smartphone OEMs and their product strategies. Morgan Stanley’s report from April of 2016 puts the number of smartphone users in India at 225 million. That figure – which is already impressive – actually only accounts for 18% of the total population of the country; 82% of the population of India does not have a smartphone, so the potential was (and is) absolutely massive. We saw plenty of OEMs shift their focus in smartphone production and marketing towards India precisely because of the huge potential for growth, and India has also been one of the engines driving smartphone prices down.
With Reliance Jio, a major LTE mobile network operator, expected to launch in 2016, Internet penetration in India was also bound to increase by a very good margin in a short time. All in all, the bigger picture was definitely rosy, a fact that was not lost on international OEMs that looked forward to a piece of the pie.
And then, demonetization happened.
The effects of demonetization were immediately felt in the form of a liquidity crunch in the market. Mind you, there was no lack of funds as people had plenty in the form of assets and bank balances (and old notes). What was missing was the ability to spend these balances. Electronic means of payment (RTGS, NEFT, Debit and Credit Cards) are still mediums largely restricted to urban and semi-urban areas, and even then, these do not enjoy the universal acceptability and preference that physical cash did before. To get a better idea on the cash dependence, India’s Cash-to-GDP ratio is reportedly at 10.86% of its GDP (which itself is growing), while countries like UK and USA have low cash dependence at 3.72% and 7.9% respectively. Further, for a population of 1.2 Billion, the country only has 22 Million credit cards and 636 Million debit cards (not taking into account the fact that people can hold multiple cards) as of March 2016.
Now, couple these with the fact that smartphones in India are still largely considered as a luxury rather than a necessity and you’ll understand how this demonetization move disproportionately affects the market segment that depends largely on cash – which happens to be the group that largely do not already own a smartphone. Further, sales of smartphones in rural and semi-urban areas continue to rely on physical brick and mortar stores rather than online marketplaces – places where the consumers and the sellers jointly prefer the convenience of cash. The direct consequence of all of these factors combined will give us a sharp decline in smartphone sales in these areas. Sales in urban metropolitan regions are affected as well, but the quantum of drop (and lost potential) is less pronounced here.
Of course, you do not need to take my word for it. On November 26th the Indian Cellular Association (ICA), which is the apex body of mobile industry in India comprising of the various stakeholders in the industry, put forth a formal request to the Government of India to allow the usage of the older and now invalid currency notes specifically for buying mobile phones. ICA claims that sales of mobile phones (smartphones and feature phones combined) have fallen by 50% due to the domino effect that demonetization is having on the Indian economy.
“The mobile handset sales have crashed and the sales are down in the brick and mortar channel, which is more than 80 percent of our turnover… the daily collection of our trade and industry, which should be around Rs 350-400 crore [~ $51 Million – $59 Million] is down by 50 per cent.”



Indian Cellular Association
Market research firm IDC forecasts that feature phone shipments (not actual sales, but a hard-cap on potential sales) will fall by 24.6% while smartphone shipments will fall 17.5% this quarter compared to the previous quarter.

Telephony Services

The importance of mobile services was not entirely lost on the government. Seeing how a very large part of the low and medium income groups prefer using prepaid SIM connections over postpaid billing connections for their telephony needs, the government did allow the use of older ₹500 notes for topping up prepaid connections up to December 15th. There are restrictions in place, such as a maximum ceiling for a prepaid recharge with the old note being fixed at ₹500 (the value of the old note) per prepaid connection (effectively allowing you the use of only one of your older currency notes). But, looking on the bright side, some respite is better than nothing. The government did recognize telephony as an essential service, but consumers are holding back unneeded expenditure in this sector as uncertainty on the liquidity crisis continues.
One telecom service operator is standing above the pack, being on the positive end of the demonetization move: Reliance Jio.
Jio launched commercially to the public in early September 2016, becoming India’s first and only 100% VoLTE operator in the country with a full 4G LTE network (no provision of 3G/2G service, which is a very big step forward for India). When Jio launched commercially, it actually launched completely free for the end user — no contract, no security deposit, no monthly fee, no prepaid expense, no money to be paid even for the SIM card — no strings attached at all. The free service provided users with unlimited 4G data, free VoLTE calls and texts across all networks, along with access to Jio’s multimedia app suite. The only catch here was that data was soft-capped at 4GB daily per user, after which the user was throttled down considerably. But seeing how this limit was generous and the service was entirely free, there is not much to complain here. The free period was to end by 31st December 2016, beyond which the still-affordable rates of the telecom operator would apply. Consumers still retain the choice of going ahead with the rates, as one could simply cancel the SIM and dispose it off after enjoying the freebies.
While other telecom operators in the country are losing out on income as families look to cut down petty expenditure, Jio is gaining more and more subscribers. People who had held out on Jio are joining over if only to cut down on cash expenses. Jio sensed an opportunity with the demonetization policy, and thus the company recently announced that they will extend its free service offer until March 31, 2017. For consumers who are strapped for cash, a telecom service which does not want any of your money is an obvious winner. Other operators are most definitively feeling the heat, as many are now offering much more attractive deals to entice their customers to remain loyal to their services.


Digital Wallets

In the past few years, a strong emphasis was put on mobile payment solutions in order to transform the Indian economy from cash-heavy to cashless (or close). Banks and bank accounts are the center point in this equation, but more and more means are being adopted to add on factors of convenience. Not all merchants or consumers could practically afford Electronic Data Capture (EDC) machines, commonly known as card swipe machines, for all of their financial transaction needs. This is where digital wallets factor in.
The concept of a digital wallet in the current Indian context is very much alike Android Pay and other mobile payment solutions in functionality, but differs in its implementation. Android Pay stores information regarding your debit and credit cards and is used to facilitate transactions at merchant counters, but popular digital wallets in India like Paytm, MobiKwik, Oxigen, FreeCharge, Airtel Money, Jio Money (and many more offerings by banks too) try and act as a wallet to actually store currency value within digital accounts rather than just act as information gateways for your bank account. In this regard, these digital wallet solutions are much closer to the likes of PayPal than they are to Android Pay or Samsung Pay. 
Paytm is the current leader in the Indian market thanks to its early entry as well as consistent marketing efforts. The demonetization move strongly bolstered its usefulness as the service even facilitates exchange transactions which do not necessarily have a financial/for-profit nature (like splitting a bill with friends). Paytm rightfully saw immense opportunity by the government move, and immediately reacted with advertisements across television, newspapers, and social media pages as well as aggressive on-the-ground marketing targeting local shopkeepers and first-time users alike. Within a period of days, the app registered a 700% increase in overall traffic, a 1000% growth in amount of money added to Paytm accounts, 300% increase in app downloads, and a 500% increase in user transactions per week. As of a few days ago, the platform claims to have 150 Million users with 5 Million transactions per day, and is on its way to processing ₹24,000 Crore (~$352 Million) in transaction value by the end of the fiscal year. Just for reference, Paytm started off humbly in 2010, and it was only in 2014 when Paytm’s wallet solutions were launched.
Paytm’s runaway success highlights one very important point: Google missed the mobile payment train in India. With the current turn of events heavily in favor of mobile wallets, Paytm’s familiarity and ease-of-use appealed to the Indian demographics and provided relief in desperate times. By doing so, the company/app has gained trust and widespread acceptability (ranging from the small time newspaper vendors and local grocery stalls all the way to supermarkets and malls), something which currently-non-existent competitors like Android Pay will find extremely hard to compete with. Trust is of utmost importance wherever money is concerned, and Paytm has reached that critical mass where its familiarity will only accelerate its popularity.

Demonetization of the highest denominations is, no doubt, one of the biggest changes that the economy of India has seen in recent times. While not being directly related to the smartphone sector, it has still resulted in widespread ramifications less than a month out from the policy’s implementation. The totality of the effects is very difficult to ascertain even in the long term. India was on track to become an even bigger market for smartphones and related services, and this move may have drastically altered the course of India’s burgeoning smartphone market, influencing everything from smartphone sales and shipments to mobile carriers and digital wallet solutions. It even extends onto other scenarios, like spending on apps and effects on smartphone prices, but it’s harder to draw conclusions on these aspects at the moment. All we can do right now, is wait, watch, and go with the flow.