Showing posts with label Qualcomm. Show all posts
Showing posts with label Qualcomm. Show all posts

Wednesday, April 5, 2017

Apple to focus on chip design in-house to reduce costs; to stop sourcing chips from Imagination

Apple to focus on chip design in-house to reduce costs; to stop sourcing chips from Imagination

Image: Reuters
Apple Inc’s decision to stop licensing graphics chips from Imagination Technologies Group Plc is the clearest example yet of the iPhone maker’s determination to take greater control of the core technologies in its products – both to guard its hefty margins and to position it for future innovations, especially in so-called augmented reality.
The strategy, analysts say, has already reduced Apple’s dependence on critical outside suppliers like ARM Holdings Plc, now owned by SoftBank Group Corp.
Apple once relied heavily on ARM to design the main processor for the iPhone, but it now licenses only the basic ARM architecture and designs most of the chip itself.
More recently, when Apple bought the headphone company Beats Electronics, part of a $3 billion deal in 2014, it ripped out the existing, off-the-shelf communications chips and replaced them with its own custom-designed W1 Bluetooth chip.
“Apple clearly got rid of all the conventional suppliers and replaced about five chips with one,” said Jim Morrison, vice president of TechInsights, a firm that examines the chips inside electronics devices.
“Today we do much more in-house development of fundamental technologies than we used to,” Apple Chief Financial Officer Luca Maestri said at a February conference. “Think of the work we do on processors or sensors. We can push the envelope on innovation. We have better control over timing, over cost and over quality.”
Most vendors of consumer electronics products rely on outside suppliers for chip design and development, primarily because it is extremely expensive. That has created huge opportunities for companies like ARM, Qualcomm Inc and Nvidia Corp, which have developed core technologies for processing, communications and graphics that are used by scores of vendors.
Now, though, Apple is so big that it can economically create its own designs, or license small pieces of others’ work and build on it. As with ARM and Qualcomm, the actual manufacturing of the chips is still contracted out to a semiconductor foundry, such as those run by Samsung Electronics and Taiwan Semiconductor Manufacturing Co Ltd.
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Bringing more of the design work in-house cuts complexity, people familiar with the processes say. Instead of managing one or more design teams and then a fabricator, Apple has only to manage the fabricator.
It may also help the company move faster – and save money – as it focuses on new technologies such as virtual and augmented reality. Apple CEO Tim Cook has indicated that Apple plans to integrate augmented reality into its products, which makes 3-D sensors and graphics chips like Imagination’s especially important.
Even before formally cutting off Imagination, Apple had given hints that it was preparing to design its own graphics processors. Specifically, it introduced a piece of its own code called Metal for app developers. App developers use Metal to make their apps talk to the graphics chip on the iPhone.
By putting a piece of Apple-designed code between app developers and the phone’s chip, Apple has made it possible to swap out the chip without interrupting how the developers work. That could also make it easier to bridge the gap for developers between the graphics chips on Apple’s phones and its desktop computers, which currently require some separate coding.
“By promoting Metal instead of relying on other existing standards, Apple is not only able to control what graphics chip functionality is exposed at its own pace, but also blur the line for developers between coding for desktop and mobile GPUs,” said Pius Uzamere, the founder of a virtual reality startup called Ether.
Taking control of the iPhone’s chips can also help Apple keep costs down, which is especially important as it gears up for a feature-laden new iPhone this fall. Timothy Arcuri of Cowen & Co said in a research note that he thinks the curved screens expected on the new phone could add as much as $50 in cost, for example.
Shebly Seyrafi, an analyst at FBN Securities, estimates that the average price of an iPhone increased only 1 percent to $695 last quarter, while costs increased 8 percent to $420, resulting in an iPhone gross margin of 39.6 percent. That is down from the 44 percent average gross margin for iPhones in 2015, according to Seyrafi’s estimates.
Apple spends only $75 million a year on licensing fees for Imagination’s chips. But licensing fees to chip designers, taken together, are a significant cost for the iPhone. Apple recently sued Qualcomm for $1 billion over licensing terms for its communications chips – which Apple would have trouble designing in-house because of patent issues.
Reuters
Publish date: April 5, 2017 11:21 am| Modified date: April 5, 2017 11:30 am

Friday, March 24, 2017

The first Qualcomm Snapdragon 835 benchmarks are out and the results are a mixed bag

The first Qualcomm Snapdragon 835 benchmarks are out and the results are a mixed bag

Image: Qualcomm
Pick up any Android smartphone in the market today and chances are high that it’ll be powered by a Qualcomm Snapdragon chip. Yesterday, the company revealed performance benchmarks for its latest and greatest SoC, the Snapdragon 835.
Some smartphone makers have taken to designing their own chips, Notably Samsung, Huawei and Xiaomi, but Qualcomm’s flagship Snapdragon processors have always set the tone in the market. The 800-series Snapdragon chips are the cream of the crop.
An SoC (System-on-Chip) is an all-in-one chip that houses all the electronics your phone needs to function. This includes the modems for wireless connectivity, the processor for logical calculations, the storage unit, RAM, image-processing unit and so on.
Qualcomm, like other chipmakers, usually license processor core designs from ARM, a chip designer, and then integrates it into the SoC. Qualcomm’s expertise lies in designing a cohesive SoC, and they’re very good at it.
The Snapdragon 835 is the latest iteration of the SoC and as with the Snapdragon 820 before it, is expected to make its presence felt in every flagship device in the market this year.
Production issues have limited the availability of the new chip and Samsung, which is making the chips for Qualcomm, is also hogging the first production run for its own phones. Because of this, we haven’t yet seen any new smartphone with an SD 835 SoC, and don’t expect to see one until the Galaxy S8 arrives later this month.
Qualcomm unveiled the technical specifications of the new chip and some performance benchmarks to AnandTech at the company’s San Diego headquarters.
First, here’s how it stacks up against the Snapdragon 820:
SoCSnapdragon 835Snapdragon 820
CPU4xKryo 280 at 2.45GHz, 4xKryo 280 at 1.9GHz2x Kryo at 2.15GHz, 2x Kryo at 1.59GHz
GPUAdreno 540 at 710MHzAdreno 530 at 624MHz
RAMLPDDR4x at 1866MHzLPDDR4x at 1866MHz
Camera support1x 32MP or 2x 16MP1x 25MP or 2x 13MP
ModemSnapdragon X16 LTESnapdragon X12 LTE
Mfc. Process10nm LPE14nm LPP
As you can see, Qualcomm has now moved to an 8-core chip and a 10nm process. The clock speeds of the CPU and GPU are also faster, which should directly translate to improved performance. The new Snapdragon X16 modem now means that the platform supports download speeds up to 1000Mbps, not that any ISP actually offers those speeds.
The Kryo 280 CPU cores are not a direct upgrade to the 820’s Kryo cores however. Qualcomm designed the first Kryo cores in-house, and they were very good, offering a major performance bump over the ARM-designed Cortex cores that Qualcomm used in the Snapdragon 808 and 810.
The Kryo 280, however, is again an ARM-designed Cortex core, but with some modifications. As part of a new licensing regime, chip makers can now ask ARM to make some modifications to ARM’s Cortex cores. The rights to these modifications are owned by ARM, but will not be available to any other manufacturer. It’s not clear why Qualcomm choose to go this route rather than build their own cores, as they did previously.
Anandtech speculates that Qualcomm is using modified ARM Cortex A73 cores. The new Adreno 540 GPU is a Qualcomm design however.
So how does it fare? Anandtech ran a number of standardised benchmarks to determine the performance of the platform. It must be noted that the tests were conducted on Qualcomm-designed reference devices rather than commercially available device. These results may not indicate real world performance in phones like the Galaxy S8, especially as device manufacturers tend to introduce their own refinements to the design.
Image: Qualcomm
Image: Qualcomm
CPU-only tests reveal that the SD835 performs around 10-22 percent better than the SD820 and that it beats competitors by a slim margin. This is in integer tests, which is more relevant for web browsing and other day-to-day activities performed on your smartphone.
The platform does appear to falter in floating point operation tests, where it’s around 23 percent slower than SD821. This may not affect real world performance much.
Overall the SoC is better than most current SoCs on the market and even beats the iPhone 7 in some tests. The iPhone 7 still finds a way to sneak ahead in some tests though, particularly in JavaScript performance.
GPU tests are where the new chipset really shines. The Adreno 540 is already clocked around 14 percent higher than on its predecessor. Overall, performance appears to be over 25 percent better than before, concludes Anandtech. It also handily beats the iPhone 7 in these tests.
All things considered, it seems that the Snapdragon 835 is indeed faster than the generation it replaces. However, its performance is apparently very comparable to Huawei Mate 9’s Kirin 960 SoC.
Power consumption could not be tested.
Publish date: March 23, 2017 2:01 pm| Modified date: March 23, 2017 2:01 pm

Wednesday, December 14, 2016

Qualcomm follows many others in pointing out vulnerabilities of electronic financial transactions in India

Qualcomm follows many others in pointing out vulnerabilities of electronic financial transactions in India

How an ATM attack works. Infographic from Symantec's blog.
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Qualcomm has pointed out that most banking apps and mobile digital wallets in India do not use hardware-level security measures to ensure that the financial transactions are not compromised. Qualcomm is in the process of approaching the makers of such apps to integrate hardware level security features of Qualcomm chipsets into the applications. The sandboxing approach prevents any malware from affecting financial transactions.
There has been an increased focus on the security of electronic financial transactions, ever since a malware got into the systems of Hitachi Payment Services, which provides back end services to ATM machines and Point of Sale nodes across India. 32 lakh debit cards were compromised including those issued by SBI, HDFC, YES, AXIS, BOB and ICICI.
Security experts and consultants have pointed out various holes in the electronic transaction systems in place in India. ATMs need to implement state of the art encryption. The magnetic stripe cards need to be replaced with newer EMV chip cards, a global standard created by Europay, MasterCard, and Visa. ATM transactions are vulnerable to skimming and cloning attacks because of the continued use of the magnetic stripe cards. The databases of the banks themselves have to be adequately secured.
Intel has also warned that ATM machines in India are vulnerable to malicious attacks. Intel points out that countries in the Asia Pacific region are developing and are particularly vulnerable because of old systems and machines being used. The ATM machines tend to use outdated operating systems such as Windows XP, which makes them a easier target to execute malicious attacks against. Intel has also called for securing ATM machines with multiple levels of authentication and industry standard encryption.
The humans are the weakest link in the security chain, and there is a need for banks to educate users about phishing web sites, frauds, and scam emails. This is particularly important to users who are only starting to use digital wallets and banking apps after the demonetisation. The critical login credentials of users can be compromised by someone merely glancing at the screen and the app being used in a public place, a method of low-tech hacking known as shoulder surfing.
Antivirus solutions installed by users on their devices to protect financial transactions, actually end up making online banking less secure, according to researchers from the  Concordia University in Montreal, Canada. The anti virus software intervene in the regular operations of the browser and operating system, and can be used to fool the system with fake credentials. Commonly used security services were tested, and the researchers found that they lowered the levels of security normally provided by the browsers.
The hacking collective known as Legion has warned of weaknesses in the Indian Banking System. The group has said that it has the capability of hacking into financial systems, but has chosen not to do so. Legion has also said that there have been significant breaches in the past, but Banks have not alerted their consumers about it. There is no requirement by law to disclose data breaches to customers, the onus is on the Banks to do so.
However, it is not just amateur hackers who are a threat. There are serious cybercriminals and even the largest financial networks are susceptible to attacks. Swift has confirmed that hackers trying to get into the system have succeeded multiple times, and are continuously using newer and more sophisticated techniques. Swift has warned of consistent efforts by the group that pulled of the Banladesh Bank Heist to compromise the systems.
The laws in place are outdated, and need to be tweaked taking into accounts new developments. Digital wallets in India currently have no prescribed security standards, and are free to implement their own measures. There are no laws to hold the digital wallets responsible if something goes wrong during financial transactions.
Qualcomm senior director product management Sy Choudhury lauded the efforts by Aadhaar. The India Stack, which is a collection of APIs, which are ready to be integrated with applications and services. One of the aims of the India Stack is to ensure smooth and secure financial transactions. Unified Payment Interface (UPI), Aadhaar linked biometric identification, Unique Identification Authority of India (UIDAI), e-KYC, Aadhaar Enabled Payments System (AEPS) are all elements of the stack, that can improve security of transactions.

Thursday, December 8, 2016

Huawei launches Enjoy 6S with Snapdragon 435 and 3GB RAM for $232

Huawei launches Enjoy 6S with Snapdragon 435 and 3GB RAM for $232

Image Credit: GSMArena
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Huawei has launched the Enjoy 6S, successor to the recently launched Enjoy 6 in China today. The new smartphone continues to target mid-budget or low-budget consumers who don’t want to spend more money on they smartphone purchases.
The new smartphone is developed in partnership with China Mobile, and not much has changed regarding design except minor changes like the position of LED flash and overall 0.3mm slimmer housing than Enjoy 6.
According to the Huawei, Enjoy 6S packs an Octa-core Qualcomm Snapdragon 435 chipset clocked at 1.4GHz along with 3GB RAM. 6S comes with 5-inch HD IPS LCD screen powered by a 3,020mAh battery. The smartphone packs a 13MP camera module with a f/2.2 aperture on the back and a 5MP camera module on the front.
Huawei has doubled the internal storage from 16GB in Enjoy 6 to 32GB in Enjoy 6S along with the similar connectivity features. The connectivity features include LTE-enabled Dual SIM slot, Bluetooth v4.0, GPS, FM Radio, microUSB v2.0, Wi-fi 802.11 b/g/n, Wi-Fi Direct, Hotspot and 3.5mm headphone jack.
The smartphone packs fingerprint, accelerometer, proximity sensor and compass as reported by GSMArena. Enjoy 6S will be available in white, gold and silver variants for approximately $232. There is no information on the availability of the device outside Chinese market.

Saturday, November 26, 2016

Xiaomi Mi 6 expected to come in March with Snapdragon 835 chipset

Xiaomi Mi 6 expected to come in March with Snapdragon 835 chipset

Image: Reuters
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Qualcomm had announced earlier this month that it would be partnering with Samsung for its latest 10nm chipset – the Snapdragon 835 – which will be the next generation flagship Snapdragon processor. While the chipset is still under production, we have already started hearing about phones that are slated to come with it.
After hearing about Samsung Galaxy S8 coming with this chipset, the latest buzz on the grapevine is that Xiaomi’s Mi 6 which is expected to arrive in March next year, will also be housing Snapdragon 835.
According to GSMArena, an iSuppli analyst has said that Xiaomi Mi 6 will be the first Chinese smartphone to be sporting the Qualcomm Snapdragon 835 chipset. It is also expected to be coming our around the same time as Samsung’s Galaxy S8’s international launch.
Nothing is confirmed yet, as Xiaomi hasn’t officially stated anything around this news. The information was posted on the analyst’s personal Weibo account, so it is not even an official confirmation from iSuppli itself.
Having said that, the Mi 5 was announced at MWC 2016 towards the end of February and started selling in many markets by April. Going by that release cycle analogy, the logical release for the Mi 6 should be around end of February or start of March.

Thursday, November 10, 2016

ZTE BV0800 phone running Android 7.0 Nougat spotted online

ZTE BV0800 phone running Android 7.0 Nougat spotted online

The ZTE company logo: Reuters
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Chinese smartphone maker ZTE seems to be working on an Android 7.0 Nougat powered smartphone. In a GFXBench listing spotted online, a ZTE handset with the codename BV0800 has been spotted with Android 7.0 Nougat as the operating system.
The ZTE BV0800 handset is expected to come with a 5.2-inch FullHD display and will run on a Qualcomm chipset which has an octa-core Cortex A53 processor running at 1.4GHz, most likely the Snapdragon 430, paired with Adreno 505 GPU.
The phone is expected to have 3GB RAM and 32GB of internal storage. On the camera front, you would most likely get a 12MP front-facing as well as rear camera. Both the front and rear cameras are capable of shooting in full HD resolution according to the listing. The phone would not have NFC.
There are on details as to when the device is expected to hit the markets. But expect a China launch soon. Going by the specs leaked, it would be safe to assume that this will be a budget Android 7.0 Nougat device.
ZTE has been launching its phones in India as well. Recently we had reviewed the ZTE Nubia Z11 mini.

Wednesday, November 9, 2016

OnePlus 3T confirmed to launch with Snapdragon 821 on 15 November

OnePlus 3T confirmed to launch with Snapdragon 821 on 15 November

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OnePlus has confirmed it will launch Qualcomm Snapdragon 821 powered smartphone on 15 November. The company posted a tweet on its official Twitter handle with an official countdown format of “T-7” implying seven days to the launch. The company pointed out that the processor will be clocked at 2.35GHz, up from the factory default 2.15GHz. In contrast, Google Pixel XL comes with Snapdragon 821 clocked at 2.15GHz. It’s likely that the company will post one key component of specs every day heading to the launch to build up the excitement.
The 15-minute video clip posted on Twitter shows a stylised “T”, which could signify the alphabet from “OnePlus 3T”. The announcement will take place on 15 November 2016 at 1 PM EST which translates to 11:30 PM on Wednesday night. The event will be broadcasted live on the official Facebook page of OnePlus.
This comes right after Qualcomm announced that OnePlus is working on a device powered by Snapdragon 821 on its official Twitter handle. According to previous leaks, OnePlus 3T will come with an improved camera module with Sony IMX398, increased battery of 3300mAh and Android Nougat 7.0 out of the box. Also, the smartphone is expected to cost $80 morethan OnePlus 3 and offer a new 128GB storage option along with a black variant. The new smartphone makes sense for the company if it wants to compete with the upcoming smartphones with Snapdragon 821 instead of the ‘old’ and ‘outdated’ Snapdragon 820.

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