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Everything you need to know about Google’s Pixel 6

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Google is officially producing its first flagship phone, and they’re competing with the best of the best. The tech giant put the word out on its next generation of premium smartphones on Monday, departing away from its usual mid-range phones.  

The Verge sat down with Google’s Rick Osterloh, senior vice president of devices and services, admitted that the search giant did not have what it takes to be in the ultra-high end. However, things are different now as Osterloh noted that “this is the first time where we feel like we really have it.” 

The tech giant did not release all the details on its new flagship. However, Google emphasized on the five years of R&D that were utilized into producing its newest premium products.  

From an in-house chip, improved cameras, to colorful designs. Here’s everything you need to know about Google’s two different flavors of the Pixel phones: the Pixel 6 and the Pixel 6 Pro, as well as the Google-designed chipset that’s powering it. 

The Design 

Closely resembling Samsung’s Galaxy S Phones, both smartphones boast an almost borderless screen with the camera positioned in the center of the display. A barely raised metal rail is also located to protect the camera glass from potential harm. 

The phones are built from glass and metal, ensuring a more premium touch than last year’s Pixel 5.  

“We’re transforming the inside, we wanted to transform the outside at the same time,” Osterloh highlighted. 

Each smartphone will come in three colors. The Pro model will be available in gold, silver, and black, while the Pixel 6 will come in coral, green, and black color options. 

Credits: Google 

Jumping into the nitty gritty details, it’s important to note that the Pixel 6’s display amounts to 6.4 inches with a 90Hz refresh rate and FHD+ resolution, while the Pixel 6 Pro has a 6.7-inch 120Hz QHD+ screen.  

Utilizing OLED panels, both devises will provide higher contrast and deeper black levels in comparison to LCD screens. 

Google’s new Tensor chipset 

After four years of research, the devices are the first in line to utilize a Google-designed processor under the name of “Google Tensor.”  

Rather than seeking the support of off-the-shelf processors from a different company, Google is designing its own system-on-a-chip (SoC) to offer the highest quality of machine performance as well as artificial intelligence (AI). 

“It’s definitely very different than just another co-processor,” Osterloh told The Verge. “Like with any SoC, we license a lot of technology into it, but this is our design, and it was designed specifically with the purpose of driving our ML and AI forward.” 

The new in-house chip’s capabilities affect almost every function the smartphones encompass. One impressive feature is the ability to live translate. During Google’s demo, a video of a French speaker giving a presentation was played. The head of Google’s development of gadgets was not only able to turn on live caption, but also enable live translation from French to English.  

“You can almost envision Tensor as being built to perform computational photography for video,” Osterloh noted. “To be able to process machine learning in real-time on our videos as they’re going is a big change from where we’re at.” 

Google’s Live Caption and Interpreter Mode options can also be found on previous devices. Yet, using both features simultaneously was never an option, simply because other chips do not have the ability to deliver the kind of AI and machine learning performance that Google’s Tensor provides. 

Camera 

Camera upgrades aren’t excluded from the picture, as both camera’s main wide-angle sensor takes in 150 percent lighter. 

If you’re a photography enthusiast interested in purchasing the Pixel 6, you might want to think again as only the Pro model will have a third telephoto lens with a 4x optical zoom.  

Credits: Google 

Unfortunately, Google isn’t sharing specs on the camera anytime soon, but the company has confidently stated that the Tensor chip will tremendously improve the photography and videography quality for both devices. 

For example, Osterloh displayed an extremely crisp and sharp picture of a child playing excessively during the shoot.   

The reason behind the great camera quality is the fusion of images from the main camera sensor and the ultra-wide camera sensor, which activated several machine learning functions such as face detection and motion recognition algorithms.  

Price 

Given that Google’s Pixel 6 and the Pixel 6 Pro are considered high-end smartphones, their pricing is expected to be at a premium standard. Osterloh, however, did not specify the exact pricing list, but it is certain that Google’s smartphone carrying its own exclusive chip will not be less than $1,000. 

Release Date 

Based on reviewing Google’s history, the multinational tech company has unveiled a new Pixel phone in October every year since 2016, except for the Pixel 5, which was announced in September of last year. Be that as it may, it’s important to acknowledge that 2020 witnessed unprecedented obstacles, which shuffled several phone releases schedules.  

Google’s Pixel release dates continue to follow a specific pattern, as the company usually put its products for sale within a week or two of being announced. Hence, it’s expected that both devices will be released within the month of October. 

Rim is an experienced content writer with a demonstrated history of working in various niche industries.

Technology

What are the Ethical Issues in Biometrics?

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Ethical Issues in Biometrics

What is biometric identification? It is the process through which unique biological characteristics are used in biometric identification to recognize and validate a person. These characteristics can be found in facial traits, eye structures, DNA, fingerprint patterns, and even handwriting. All this data that can be gathered on an individual inevitably brings up the ethical issues in biometrics that need to be addressed.

Facial recognition and fingerprint scans were previously the domain of security, and they were utilized for identification and law enforcement. However, increasingly more business and civil applications are using biometrics authentication. Due to this increased use, it is crucial to address the moral and ethical issues in biometrics when used in the creation of new application and technology.

Applied biometrics and corporate ethics have received little empirical study despite the widespread use of biometric technologies. As a result, there is plenty of room for future study to help us better comprehend the moral consequences of adopting this technology.

This article examines the ethical concerns associated with the use of biometric technology on the use of biometrics for non-security applications as well as the moral ramifications for business.

Ethical Issues in Biometrics and Privacy

Biometric data takes privacy concerns to a whole new level that typical data gathering only touches on. Digital identities can be forged, and anonymity on the web can be maintained to a degree if you know how. Also, digital data can be deleted – if we forget that Meta (Facebook) has been revealed to store deleted data, which is an ethical concern in itself.

The problem with biometric data is that it is unforgeable, unconcealable, and permanent, You can’t change your eye structure, your fingerprint, or your facial features. Big tech companies already have your face, fingerprints, and your voice recorded and stored via current biometric authentication systems – mainly used for unlocking your phone. That data will be there forever, and there is little that people can do about it besides avoid it In the first place.

While many companies still give users the option of using a good old fashion passcode to unlock their phones, as technology as a whole tends to do, the biometric alternative is slowly gaining more traction, and will one day become the norm, as it is hard to argue its convenience and security. You can’t accidentally leave your eyeball at home or forget your fingerprint. But in the same sense, you can’t change it. If your childish curiosity while browsing the web put a black spot on your record, there’s no changing that.

Therein lies the question of who if anyone should have access to such data. Today’s tech giants have all our data in their hands, that won’t change with the spread of biometric verification methods. Indeed, it will only increase targeting capabilities.

While the collection of biometric data on its own does not necessarily mean it will be shared, monetized, or abused in any way, it never the less requires clear and strict guidelines and regulations to be implemented around it. There are too many things that can be abused by the wrong party when the ethical issues in biometrics are not taken seriously, and if such limitations are not applied stringently.


Inside Telecom provides you with an extensive list of content covering all aspects of the tech industry. Keep an eye on our Technology space to stay informed and up-to-date with our daily articles.

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Oppo Reno 8 and Reno 8 Pro: Specs and Comparison   

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Oppo Reno 8

The Reno line of smartphones has always had a fantastic camera and an attractive design. The Reno 8 and 8 Pro include a 120Hz AMOLED display, the newest Dimensity chipsets, 80W fast charging, a 32-megapixel front camera, and triple 50-megapixel back cameras, among other notable features that make the Oppo Reno 8 and Reno 8 Pro high-quality yet affordable option for anyone. 

Here we compare the two latest Oppo phone series iterations and see what to expect from the flagship Oppo smartphone, and how the Oppo Reno 8 and the Oppo Reno Pro stack up against each other. 

Oppo Reno 8 Specifications 

The Oppo Reno 8 has a smaller 6.43-inch full-HD+ AMOLED display with a resolution of 1,080 by 2,400 pixels, a 90Hz refresh rate, and Corning Gorilla Glass 5 protection. It also runs Android 12 with ColorOS 12.1 on top. Additionally, the display has an 800 nits maximum brightness and a 20:09 aspect ratio. An octa-core MediaTek Dimensity 1300 SoC, up to 8GB of LPDDR4x RAM, and up to 256GB of UFS 3.1 storage are all found within the Oppo smartphone. 

The Reno 8 has a triple back camera configuration for pictures and movies, with a 50-megapixel main sensor and an f/1.8 lens as its focal point. Additionally, there is a 2-megapixel macro camera with a 112-degree field of view and an 8-megapixel sensor coupled with an f/2.2 ultra-wide angle lens. 

The Reno 8 offers 5G, 4G LTE, Wi-Fi 6, Bluetooth v5.3, GPS/A-GPS, NFC, and a USB Type-C connector as connection options. An accelerometer, light, gyroscope, magnetometer, and a proximity sensor are among the sensors on board. For biometric verification, the phone also has a fingerprint sensor hidden behind the display. A 4,500mAh battery inside the Oppo Reno 8 supports 80W Super Flash Charge quick charging. The phone weighs 179 grams and has dimensions of 160 x 73.4 x 7.67mm. 

Oppo Reno 8 Pro Specifications 

A 6.7-inch full-HD+ (1,080×2,412) AMOLED display with up to 120Hz refresh rate and Corning Gorilla Glass 5 protection is included with the Oppo Reno 8 Pro. Running on top of Android 12 is ColorOS 12.1. Additionally, the display supports HDR10+ and is certified by Netflix HD, Amazon HDR, SGS Low Motion Blur, and SGS Low Blue Light. The MediaTek Dimensity 8100-Max SoC, which has eight cores, and up to 12GB of LPDDR5 RAM power the smartphone. Storage on the Oppo Reno 8 Pro is UFS 3.1 capable of up to 256GB. 

The Oppo Reno 8 Pro boasts a triple rear camera arrangement with a 50-megapixel Sony IMX766 main sensor and an f/1.8 lens, an 8-megapixel sensor and an ultra-wide lens with an f/2.2 aperture and a 112-degree field of view, and a 2-megapixel macro camera with an f/2.4 aperture. Along with the MariSilicon X NPU, the phone’s camera will offer generally better performance in both bright and dim light. It has a 32-megapixel front-facing camera sensor with an f/2.4 lens for taking selfies and making video calls. 

The phone has 5G, 4G LTE, Wi-Fi 6, Bluetooth v5.3, GPS/A-GPS, NFC, and a USB Type-C connector as connectivity options. An accelerometer, a light meter, a gyroscope, a magnetometer, and a proximity sensor are among the sensors built into the phone. For biometric authentication, the phone also contains a fingerprint sensor underneath the touchscreen. The smartphone has a 4,500mAh battery that supports rapid charging at 80W Super Flash Charge. The phone weighs 183 grams and has dimensions of 161 x 74.2 x 7.34mm. 

Both the Oppo Reno 8 and Reno 8 Pro are prime smartphones that can fit any user’s preferences and can be considered premium smartphones on the cheaper side. If you like photography, you will be satisfied with the level of quality overall, but keep in mind that neither phone is particularly water resistant, so be careful where you take it.  


Inside Telecom provides you with an extensive list of content covering all aspects of the tech industry. Keep an eye on our Technology sections to stay informed and up-to-date with our daily articles. 

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Electric Cars vs Gas Cars: How do They Compare Today

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Electric Cars vs Gas Cars

Many prefer the rumbling ‘vroom’ of a gasoline car to the soft hum of an electric vehicle, while others would rather just be satisfied in the knowledge that they are lessening their carbon footprint. Let’s look at the cold hard facts however, and compare electric cars vs gas cars

Electric Cars vs Gas Cars: Components

The amount of moving components is an important distinction between electric and gasoline-powered automobiles. While a gasoline-powered car contains hundreds of moving components, an electric vehicle just has one, the motor. Another significant distinction is that the electric car has fewer moving components. The electric car is more dependable and needs less routine maintenance. The maintenance needed for a gasoline-powered car ranges from routine oil changes, filter replacements, tune-ups, and exhaust system repairs to less frequent component replacements including water and fuel pumps, alternators, and so on.

Electric Cars vs Gas Cars: Maintenance

The expenses associated with maintaining an electric car are reduced since there are less maintenance requirements. The shaft, the only moving component of the electric motor, is extremely dependable and needs little to no maintenance. The controller and charger are electrical devices that require minimal to no maintenance because they have no moving components. Modern sealed lead acid batteries are maintenance free and utilized in electric cars nowadays. However, these batteries have a finite lifespan and will eventually need to be replaced. New batteries are being developed to increase the range of electric cars as well as the battery pack’s lifespan, perhaps eliminating the need to replace the battery pack throughout the course of the vehicle’s lifespan.

Electric Cars vs Gas Cars: Efficiency

In addition to being simpler and less expensive to repair than gasoline-powered vehicles, electric vehicles are also more cost-effective to run. The electric car will drive roughly 43 miles for $1 based on the efficiency of 3 miles/kwhr and the cost of power at 7 cents per kwhr. The gasoline-powered car will go roughly 18 miles based on the average gas mileage of 22 miles per gallon and the price of gasoline at $1.25 per gallon. As a result, an electric car may drive more than twice as far on a dollar’s worth of petrol.

Where Electric Falls Behind

There are still a number of difficulties for the owner of an electric car despite the fact that it will be less expensive to operate and maintain.

The primary issue is the restricted range offered by existing battery technology. The amount of driving distance possible utilizing the current batteries is between 50 and 150 miles. These ranges are being extended by new battery technologies, and prototypes of these batteries have shown ranges of up to 200 miles between recharging. Solar powered charging stations are being implemented in numerous places to decrease range anxiety towards electric vehicles

The lack of qualified service professionals to repair and maintain electric cars is another issue that faces their owners. A two-year associate degree program has been developed to train high school graduates to become proficient electric vehicle technicians, and training programs are being developed and made available to upgrade the conventional automotive technician with the skills needed to maintain an electric vehicle.

Infrastructure to recharge the batteries is also required. The most important component of the infrastructure for recharging already exists: electric power is accessible practically everywhere. To support the electric car, it is still necessary to guarantee that charging stations with the right sorts of service (i.e., maximum voltage and current) are placed in important areas. Plans must also be made.


Inside Telecom provides you with an extensive list of content covering all aspects of the tech industry. Keep an eye on our Technology sections to stay informed and up-to-date with our daily articles.

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