Showing posts with label QNX. Show all posts
Showing posts with label QNX. Show all posts

4/25/2016

Success! Solar Impulse 2 completes trans-Pacific flight

Solar-powered plane lands in Santa Clara county after nonstop, 62-hour trip

Solar Impulse flies over Golden Gate Bridge
Source: Solar Impulse
Imagine you are piloting a plane the size of a 747. But unlike a 747, this plane has an unheated, unpressurized cockpit in which temperatures fall as low as -40°. Moreover, you have to fly for over 60 hours straight, without ever getting up to stretch. And as for sleep, don’t count on getting much. You can take naps, but only about 6 a day, each lasting 20 minutes.

Sound like your kind of challenge? If so, you should sign up to join the Solar Impulse team. Because that’s exactly the kind of endurance needed to pilot Solar Impulse 2, the solar-powered plane that has just completed the latest leg of its historic round-the-world flight.

Last Thursday, Solar Impulse 2 took off from Kalaeloa, Hawaii, with pilot Bertrand Piccard at the helm. (This is the same Piccard who, in 1999, became the first person to complete a non-stop balloon circumnavigation of the earth.) Sixty-two hours later, the plane touched down on Moffett airfield, in Santa Clara county. From there, it will fly to several points across the U.S. before it takes off from New York for a non-stop flight across the Atlantic Ocean.

Solar Impulse 2 has four propellers, but doesn’t sip an ounce of fuel. Instead, it relies solely on the power of the sun. As such, it is a testament to modern technology. But as I’ve already hinted, it is also a testament to the depths of human endurance and stick-with-it-ness. If you were impressed that anyone could pilot a plane for over 60 hours straight, consider the plane’s nonstop solo flight from Japan to Hawaii, which took 120 hours from start to finish!

QNX Software Systems is proud to be the official realtime OS partner for the Solar Impulse team. The plane uses the QNX Neutrino OS for several control and data communication functions.

Read my previous posts on this groundbreaking project and check out the Solar Impulse website.

4/06/2016

Solar Impulse returns to the skies

Crew of QNX-equipped solar plane set to resume historic flight

Solar Impulse: powered only
by the sun  
Source: Solar Impulse
In case you missed it, Solar Impulse, the solar-powered airplane that is flying around the world to promote green energy, has returned to the skies.

The Solar Impulse team suffered a temporary setback last summer, when the plane’s batteries overheated during a five-day flight between Japan and Hawaii. Battery problems notwithstanding, the 120-hour trip set a world record for longest non-stop solo flight.

The team has since upgraded the plane with a newer (and cooler) battery system and has successfully completed three test flights. If all goes as planned, the plane will take off from Hawaii in mid-April for a four-day journey to the continental United States. Once the plane completes its U.S. crossing, it will fly non-stop across the Atlantic.

The plane’s round-the-world trek began on March 9, 2015, when it took off from an airport in Abu Dhabi. It then completed several hops, totaling 18000 kilometers, before landing in Kalaeloa on June 28.

Solar Impulse may be powered by the sun, but it can fly at night, using energy stored in its lithium-ion batteries — all 17250 of them. The plane is massive, with the wing span of a Boeing 747, yet weighs no more than a family car.

Solar Impulse bootup screen. Screen-grab from video.
QNX Software Systems is the official realtime OS partner for the Solar Impulse team. The plane uses the QNX Neutrino OS for several control and data communication functions.

I’ve been tracking the progress of the Solar Impulse project since 2009. Read my previous posts, which include a look at the plane’s virtual cockpit. And remember to check out the Solar Impulse website.

7/03/2015

They did it! Solar Impulse team makes non-stop flight from Japan to Hawaii

Solar-powered plane sets new endurance record while completing toughest leg of round-the-world journey.

Touching down in Kalaeloa
Source: Solar Impulse 
Now here's good news for a Friday afternoon: The Solar Impulse 2, a solar-powered plane outfitted with QNX technology, has landed safely in Kalaeloa, Hawaii, after completing the longest leg of its round-the-world mission and setting a new endurance record for solo flight.

The plane lifted off from Nagoya on June 28 and touched down in Kalaeloa almost 120 hours later, using the sun as its only power source. And did I mention? The plane had only pilot, AndrĂ© Borschberg, who was at the helm for the entire 5-day flight. Yes, he was able to take naps while the plane was on autopilot — but only 6 a day, each lasting 20 minutes. Color me impressed.

The team’s round-the-world flight, which started on March 9 in Abu Dhabi, hit a snag when the plane reached Nagoya, where weeks of bad weather threatened to cancel the project. But, finally, a five-day window of clear weather opened and the team was able to resume its historic journey, which is dedicated to the promotion of green energy.

The team’s other pilot, Bertrand Piccard, will fly the next leg, from Honolulu to Phoenix, Arizona. Piccard’s name may ring a bell, but not because of any Star Trek connection: In 1999, he became the first person to complete a non-stop balloon circumnavigation of the earth.

QNX Software Systems is the official realtime OS partner for the Solar Impulse team, and the plane uses the QNX Neutrino OS for several control and data communication functions. Read my previous posts for more information on the Solar Impulse project.



6/25/2015

The June edition of the QNX Source newsletter is now online. So what are you waiting for?

I've said it before and I'll say it again: it pays to get your information straight from the source. I am speaking, of course, of the QNX Source newsletter.

The Source is your passport to the latest QNX videos, webinars, whitepapers, articles, press releases, product updates, and board support packages. If you ask me, subscribing is the best way to go. But if you're not the subscribing kind, there is an alternative: you can bookmark your browser to the Source newsletter archive.

Here, for example, is a taste of the June 2015 edition, which is available now on the archive:



5/21/2015

QNX boards the bus: an automated fare collection system from MSI Global

You can find QNX technology in almost every form of transportation imaginable, from cars and trains to boats and planes. It’s even used in motorcyles. If you download the infographic, “35 Ways QNX Touches Our Lives,” you’ll find lots of examples, including in-car infotainment, locomotive control, and cruise-ship navigation. But here’s the thing: the infographic doesn’t say a thing about buses. Not a single mention.

Enter an announcement that fills the gap. Earlier today, QNX revealed that the QNX Neutrino OS is powering an automated fare collection system used throughout Singapore, the Philippines, and Thailand. The system comprises automatic gates, ticketing machines, and yes, onboard bus equipment, including a console for the driver and a smartcard validation system for passengers. The system was created by MSI Global, an international system integrator specializing in land-transport solutions and a subsidiary of the Land Transport Authority (LTA) of Singapore.

Silvester Prakasam, head of the fare system business unit at MSI, has good things to say about QNX. “MSI’s experience with QNX Neutrino has been very favorable and we will continue to leverage the same secure OS for our future projects. Creating a solution that could gain widespread adoption was a key consideration in our choice of OS, and with QNX Neutrino we were able to create a design that is fast and reliable, yet affordable to customers in cost-sensitive regions.”

Read the press release to learn more. Meanwhile, I thought you would enjoy some images of the fare collection system, starting with the smartcard reader:



Here's an example of the ticketing machines:


And here's an example of the automatic gates:

3/10/2015

Behind the controls of the Solar Impulse

Virtual cockpit lets you follow progress of round-the-world flight in real time.

What’s it like to get behind the controls of a solar-powered plane — a plane now in the process of circumnavigating the globe? You and I will never really know, but we can enjoy the next best thing: a virtual cockpit that provides a pilot’s eye view of the plane’s instrument panel.

Just point your browser to the Solar Impulse website whenever the plane is in the air, and you will see real-time updates to the plane’s flight instruments. For instance, in this screen capture, you can see the current position of the ailerons, airbrakes, elevators, and rudder, along with the airspeed (in knots), vertical speed (rate of climb or descent), heading, and altitude:



And in the following screen capture, you can see much of the same information, presented in a different fashion, along with the attitude indicator, which shows whether the wings are level and whether the nose is pointing above or below the horizon:



I've covered only a subset of the real-time information displayed on the Solar Impulse website. For example, you can also view a map of the plane’s progress, a video feed of the mission-control center, and the current power mode of the plane’s electrical system:



QNX Software Systems is the official realtime OS partner for the Solar Impulse team, and the plane uses the QNX Neutrino OS for several control and data communication functions.

3/09/2015

Explaining a technical product to non-technical people

When people ask what your company does, what do you say? If your company makes cars or chairs or smartphones, the answer is relatively easy. But if your company makes FPGAs, realtime operating systems, or programming tools, the answer can be too down in the weeds for most people.

Explaining a technical product to a non-technical audience is a challenge. To succeed, you have to meet people on their level, without being condescending. Most people love a good explanation, but everyone hates being talked down to.
One secret is to connect your product to things people do every day. At QNX, for example, we realized that our technology affects people whether they drive to work, flip a light switch, or use a credit card. So that’s how I often start the conversation.
Chances are, you used QNX technology today, without knowing it. I find this a good opening sentence. I follow it up with some examples that QNX recently published in the infographic, “35 Ways QNX Touches Our Lives” (see below). For example, QNX touches your life when you:
  • Flip a light switch — QNX technology controls thousands of power generation systems, from wind turbines to nuclear stations to hydroelectric plants.
  • Go online — QNX technology is at the core of massive Internet routers that handle data, voice, and video traffic for hundreds of millions of users every day.
  • Use a credit card — Banks the world over use QNX-based systems to issue payment cards and PINs, facilitating secure, reliable transactions.
  • Take a nap — QNX-based spinning and weaving systems produce high-quality fabrics for everything from bed sheets to towels, sweaters, and furniture.
  • Keep house — QNX-based robot vacuums can clean your entire home, even under beds and other furniture. So you can sit back instead of hurting your back.
Once I've provided a few of these examples, it's easier to gauge whether the listener is interested more of a deep dive — the how, rather than the what.
What about you? Have you had success explaining your technical product to non-technical audiences, be they reporters, analysts, or your great aunt Mildred? If so, what worked? What didn't?

3/05/2015

Flying in the dark on solar energy

Crew of QNX-equipped Solar Impulse plane gears up for historic flight.

The Solar Impulse 2, aka SI2
Source: Solar Impulse
The countdown has begun. On Monday, March 9, the Solar Impulse 2, a one-of-a-kind airplane that runs exclusively on solar power, will take off from an airport in Abu Dhabi. The destination? Abu Dhabi!

That’s right, this is a round trip — but not just any round trip. It is, in fact, the first attempt to fly around the world using only the power of the sun. On board will be AndrĂ© Borschberg, the former jet pilot who, together with Bertrand Piccard, cofounded the Solar Impulse project 12 years ago. (Piccard’s name may ring a bell — as well it should. In 1999, he became the first person to complete a non-stop balloon circumnavigation of the earth.)

The Solar Impulse can fly at night, using energy stored in its lithium-ion batteries. But it’s no fly-by-night operation. Borschberg and Piccard have spent the last 12 years on this project and have set 8 world records in the process, including longest uninterrupted flight (26 hours, 10 minutes) and highest altitude (9235 meters) for a solar-powered plane. That’s pretty impressive, but then, everything about this plane is remarkable, from the wingspan (72 meters) to the number of voltaic cells (17250) that power its electric motors.

Solar Impulse bootup screen. Screen-grab from video.
The human element is equally impressive. To cross the Pacific or Atlantic ocean, the plane, which has a cruise speed of 90  km/h, will need to stay airborne for about 5 days, nonstop. And that means the pilot also needs to stay airborne for 5 days, in an unheated, unpressurized cabin with temperatures ranging from -40°C to +40°C. Yes, the pilot is allowed to take naps, but only 6 a day, each lasting 20 minutes. Not surprisingly, both pilots (Borschberg and Piccard will each take turns flying the plane), have learned self-hypnosis and meditation techniques to help them enter and exit deep sleep as quickly as possible. The plane can accommodate only one pilot at a time, and the team plans a total of five stops to allow changes of pilots.

As mentioned in previous posts, QNX Software Systems is the official realtime OS partner for the Solar Impulse team, and the plane uses the QNX Neutrino OS for several control and data communication functions. So, as you can imagine, come next Monday, my browser will be tuned to the Solar Impulse website. I hope yours will, too.

Until then, here's a “making of” video of the Solar Impulse 2. Enjoy.



3/03/2015

Hypervisors, virtualization, and creating a safety-critical system that keeps up with the Joneses

A new webinar on how virtualization can help you add new technology to existing designs.

First things first: should you say “hypervisor” or “virtual machine monitor”? Both terms refer to the same thing, but is one preferable to the other?

Hypervisor certainly has the greater sex appeal, suggesting it was coined by a marketing department that saw no hope in promoting a term as coldly technical as virtual machine monitor. But, in fact, hypervisor has a long and established history, dating back almost 50 years. Moreover, it was coined not by a marketing department, but by a software developer.

“Hypervisor” is simply a variant of “supervisor,” a traditional name for the software that controls task scheduling and other fundamental operations in a computer system — software that, in most systems, is now called the OS kernel. Because a hypervisor manages the execution of multiple OSs, it is, in effect, a supervisor of supervisors. Hence hypervisor.

No matter what you call it, a hypervisor creates multiple virtual machines, each hosting a separate guest OS, and allows the OSs to share a system’s hardware resources, including CPU, memory, and I/O. As a result, system designers can consolidate previously discrete systems onto a single system-on-chip (SoC) and thereby reduce the size, weight, and power consumption of their designs — a trinity of benefits known as SWaP.

The QNX Hypervisor is an example of a 
Type 1 “bare metal” hypervisor.
That said, not all hypervisors are created equal. There are, for example, Type 1 “bare metal” hypervisors, which run directly on the host hardware, and Type 2 hypervisors, which run on top of an OS. Both types have their benefits, but Type 1 offers the better choice for any embedded system that requires fast, predictable response times — most safety-critical systems arguably fall within this category.

Moreover, some hypervisors make it easier for the guest OSs to share hardware resources. The QNX Hypervisor, for example, employs several technologies to simplify the sharing of display controllers, network connections, file systems, and I/O devices like the I2C serial bus. Developers can, as a result, avoid writing custom shared-device drivers that increase testing and certification costs and that typically exhibit lower performance than field-hardened, vendor-supplied drivers.

Adding features, without blowing the certification budget
Hypervisors, and the virtualization they provide, offer another benefit: the ability to keep OSs cleanly isolated from each other, even though they share the same hardware. This benefit is attractive to anyone trying to build a safety-critical system and reduce SWaP. Better yet, the virtualization can help device makers add new and differentiating features, such as rich user interfaces, without compromising safety-critical components.

That said, hardware and peripheral device interfaces are evolving continuously. How can you maintain compliance with safety-related standards like ISO 26262 and still take advantage of new hardware features and functionality?

Enter a new webinar hosted by my inimitable colleague Chris Ault. Chris will examine techniques that enable you to add new features to existing devices, while maintaining close control of the safety certification scope and budget. Here are some of the topics he’ll address:

  • Overview of virtualization options and their pros and cons
     
  • Comparison of how adaptive time partitioning and virtualization help achieve separation of safety-critical systems
     
  • Maintaining realtime performance of industrial automation protocols without directly affecting safety certification efforts
     
  • Using Android applications for user interfaces and connectivity

Webinar coordinates:
Exploring Virtualization Options for Adding New Technology to Safety-Critical Devices
Time: Thursday, March 5, 12:00 pm EST
Duration: 1 hour
Registration: Visit TechOnLine

A version of this post was published on the QNX Auto Blog.

4/24/2014

Flying around the world on solar power

Did you miss it? I missed it. And I really wanted to catch it. Earlier this month — while I was paying attention to gosh knows what — the Solar Impulse team unveiled the first solar-powered aircraft capable of flying around the world. It’s called Solar Impulse 2, and it will embark on its round-the-world tour in March 2015.

The Solar Impulse team thinks big, but they also think smart. For instance, they didn't try to build a globe-circling solar plane right off the bat. Instead, they took a stepwise approach and built a plane that could fly shorter hops — across a continent, for example. The lessons learned from building and flying that first plane, which successfully crossed Europe, Africa, and the US, helped the team develop Solar Impulse 2.

Not surprisingly, Solar Impulse 2 is larger than its predecessor. The wingspan has grown from about 64 meters to 72 meters, the weight from about 1600 kilos to 2300 kilos, and the number of voltaic cells from about 12000 to 17000. That’s a lot of batteries.

Mind you, the numbers tell only part of the story. The Solar Impulse 2 project also required the development of innovative materials and construction methods, including new electrolytes to boost the energy density of the voltaic cells.

This story isn’t just about technology. It’s also about human skill and endurance. For instance, to cross the Atlantic or Pacific ocean, the plane, which has a top speed of 90 km/h, will need to stay airborne for about 5 or 6 days. And that means the pilot will have to sit in an unheated, unpressurized cockpit for more than 120 hours in temperatures that could range from -40°C to +40°C. These guys aren’t just smart; they’re tough to boot.

Did I mention? QNX Software Systems is the official realtime OS partner for the Solar Impulse team, and the plane uses the QNX OS for several control and data communication functions. Which is, well, cool.

The plane is scheduled to launch in about 310 days. And this time, I’ll be paying attention. By the way, here's the part that I missed:



See previous posts on the Solar Impulse project.

3/14/2014

I so need one of these!

You can work hard. You can work smart. Here's a robot vacuum that does both. It's called the Neato BotVac, and it uses laser technology to scan and map a room before cleaning it. Now, that's pretty cool.

Did I mention? It runs on the QNX OS.



Learn more about the Neato BotVac series of robot vacuums on the Neato website.


2/25/2014

New release of QNX OS closes UX gap between smartphones and embedded systems

Okay, this one is going to be short. I'd love to have you stay, but I'd like it even more if you jumped to the QNX website. Because if you do, you'll get the full skinny on a significant new OS release that QNX Software Systems announced this morning.

But before you go, the back story. Mobile devices (think smartphones) have transformed what people expect of embedded systems (think gas pumps, vending machines, heart monitors, or just about any other device with a user interface). Every time someone uses a smartphone or tablet, they become more conditioned to the user experience it delivers. And the more conditioned they become, they more they expect a similar experience in other systems they use. It's human nature, plain and simple.

People who create embedded devices get this. They know that, to succeed, they must up their UX game. The problem is, a gap has existed between the user experiences that embedded operating systems can support and the user experiences that people want. The latest generation of the QNX Neutrino OS, version 6.6, addresses that gap. And it does so by introducing a new and potent mix of graphics, security, multimedia, security, and power management capabilities.

And just what are those capabilities? You'll have to jump to the press release to find out. :-)


The QNX SDK for Apps & Media — one of many significant new features
in the latest release of the QNX OS.


2/18/2014

QNX at Embedded World: three distinct systems, one OS platform

A whole new way to
take QNX out for a spin.
Quick: what do washing machines, bulldozers, and pipeline inspection tools have in common? Simple: they all demonstrate the remarkable flexibility of the QNX OS.

Next week, at Embedded World, QNX will showcase three systems built by three different customers, for three different markets. Each system addresses different technical challenges and targets different end-users. And yet, in each case, the development team behind the system chose the same OS — a testament to the “bend it, shape it, any way you want it” quality of QNX technology.

Of course, not everyone can attend Embedded World. So for anyone who can’t go (or for anyone who plans to go and would like a taste of what they’ll see), here’s a sneak peek of the three systems. Mind you, this isn’t everything we will demonstrate next week — but that’s the subject of another post. :-)

Washing machine touchscreen from Dalian Eastern Display
Imagine a web-connected washing machine that can play your favorite music and videos, provide tips on removing stains, and let you choose laundry settings with the tap of a touchscreen. The system from Dalian Eastern Display lets you do all this and more, and it’s one of many solutions that Dalian is creating for IoT smart appliances.

For instance, this screen lets you quickly choose your fabrics, including cotton, wool, or polyester. It also provides a mixed setting — handy for people who aren’t sure of the difference. Me, for instance.



Once you’ve chosen the right fabric, you can fine-tune the parameters of your wash cycle, including time, temperature, speed, and water level:



Meanwhile, this menu lets you configure everything from your network connection to the system’s sound settings:



Murphy PowerView 780 display for heavy machinery
If you build equipment that has an engine and demands a rugged display, chances are its owners and operators will benefit from a Murphy PowerView 780. Designed for use with electronic or mechanical engines in everything from boats to bulldozers, the PowerView 780 integrates engine, transmission, and diagnostic information into an easy-to-read user interface. The PowerView 780 is built for extreme outdoor environments and features a 7-inch bonded LCD that is readable in direct sunlight. Better yet, it’s easily configurable to application needs. Using Murphy’s PowerVision Configuration Studio™, developers can customize the user interface with their own graphics or display parameters, track maintenance schedules, log operation data and faults, and add OEM branding.



Murphy, the company behind the PowerView 780, is a global supplier of controls and instrumentation for almost any application that involves engines or engine-driven equipment. The company is celebrating 75 years of serving the oil and gas production, engine OEM, construction, irrigation, agriculture, power generation, and work and pleasure boating markets.

LineExporer pipeline inspection system from NDT Global
When it comes to oil and gas pipelines, safety is job one. But to ensure safety, you need to keep pipelines properly maintained — and to maintain them, you need accurate and reliable inline inspection tools. That's where NDT Global comes in. NDT is a leading supplier of ultrasonic pipeline inspection and pipeline integrity management services worldwide, with operations in Germany, Russia, the US, Canada, Mexico, U.A.E., Malaysia and Singapore. At Embedded World, QNX Software Systems will showcase an NDT LineExplorer inline inspection tool for 10" pipelines that can detect and measure corrosion and cracks, depending on the sensor carrier.



For more information on QNX at Embedded World, visit the QNX website.

1/08/2014

QNX takes the wraps off two new technology concept cars

You may be wondering why I've been quiet lately. Well, as turns out, I've been anything but quiet. I've just been noisy somewhere else! And that somewhere else is the QNX auto blog, where you can learn about two new technology concept cars that QNX unveiled this week at 2014 CES.

So if you haven't been to the auto blog lately, don't stop, don't hesitate, don't prevaricate; just get yourself down there. And if you still need convincing, here's a taste of what you'll see:



and another:



and yet another:



and still another:




10/08/2013

Adding sound to eliminate sound: a new solution for noisy engines

Car engines have been getting noisier.
But chances are, you haven't noticed. That's because automakers have been taking measures to mask the noise.

So where is the noise coming from? Automakers need to reduce fuel consumption. And to do that, they are employing techniques such as variable cylinder management and operating the engine at lower RPM. These techniques can result in more "boom" that permeates the car's interior.

So how are automakers masking the noise? Well, it's not by adding damping materials. In fact, many automakers are removing such materials to help make their cars lighter and more fuel efficient — a practice that can allow more engine sound to reach the driver and passengers.

The weapon of choice is, paradoxically, sound. By playing “anti-noise” (i.e. sound that is directly proportional but inverted to the offending engine tones) over the car’s speakers, automakers can, in effect, make engine noise disappear. This approach is similar to noise-cancelling headphones, but targeted specifically at engine sounds. It's also more complicated, as it must take into account the unique acoustic properties of each vehicle model — properties that change when you open and close windows, add or remove passengers, and so on.

Now here's the thing: The active noise control (ANC) systems currently used by automakers require dedicated hardware. This adds cost and complexity. So the acoustics engineers at QNX have come up with a different approach: a software-based solution that can run on existing infotainment or audio hardware. The result is significantly lower Bill of Materials costs and an ANC solution that integrates better with other audio tasks, including hands-free calling.

Mind you, there are other benefits as well. But don't take it from me. Check out this blog post from my inestimable colleague Tina Jeffrey, who provides the full skinny on the new QNX Acoustics for Active Noise Control product and why it offers a better approach to traditional solutions.

7/16/2013

Six QNX videos more people ought to see

Looking for examples of how people use QNX? You've come to the right place. From outer space to the automotive space, these six videos demonstrate the sheer flexibility and dynamic range of QNX technology. Better yet, you get to hear five users describe, in their own words, why QNX is important to what they do.

QNX in space
First up is Iain Christie of Neptec, the company responsible for creating the SVS and LCS camera systems on the NASA space shuttle. Highlight: when Ian explains the importance of QNX to the shuttle program (1:46). For more on the QNX-based LCS system, see my previous post.



QNX in the clinic
Next up is Vladimir Derenchuk of the Indiana University Health Proton Therapy Center, which uses proton beams to blast difficult-to-treat tumors. Highlight: it's all good, but listen to Vladimir explain why they chose QNX, and how it has helped with FDA approvals (1:34).



QNX in the HVAC
Next up is Hans Symanczik of Kieback & Peter, a German firm that has used QNX in building automation systems for more than 20 years. Highlight: when Hans explains the ultimate benefit of the QNX OS (2:07).



QNX on the air
Next up is Mikael Vest of NTP, a Danish company that supplies QNX-based audio routers to the global television and radio broadcasting industry. Highlight: Mikael himself, who gladly did this interview despite suffering from a flu to end all flus. A real trooper.



QNX on the road
Next up is Rick Kreifeldt of Harman International, a company known in the automotive industry for its ability to push the technology envelope. Highlight: the section where Rick's respect for the QNX team shines through (2:14).



QNX in flight
And last but not least is Thomas Allen from Mechtronix, a company that has developed an innovative, software-based approach to building flight simulators. Highlight: when Allen states that Mechtronix simulators effectively use the same software architecture as the QNX OS (0:45). Years, ago, someone explained to me how the QNX OS isn't simply a well-designed, modular OS; it also encourages well-designed, modular systems. In Mechtronix, we have an example.




7/11/2013

Putting faces to names at the UOIT Faculty Summit for Mobile Computing

Jin Xu
A guest post from my colleague Jin Xu, Global Education Program Manager, QNX Software Systems

I always enjoy the experience of putting faces to names. And that’s exactly what happened to me on May 30 at the University of Ontario Technology Institute (UOIT) in Oshawa.

As manager of the QNX in Education program, I had spoken to many of institute’s professors over email or the phone, but never had the chance to meet them in person. So I was thrilled to greet and meet so many of them during a single event.

Fifty-five university faculties from 22 universities across Canada got together on May 30 in OUIT for a two-day mobile computing summit held in partnership with the BlackBerry Academic Program. The universities attending this event included:

      Albert Campbell C.I. — Toronto, ON
      Bucks County Community College— Newton, PA, US
      Centennial College — Toronto, ON
      Conestoga College — Guelph, ON
      Dalhousie University — Halifax, NS
      Georgian College — Barrie, ON
      McMaster University — Hamilton, ON
      Queens University — Kingston, ON
      Ryerson University — Toronto, ON
      Seneca College — Toronto, ON
      Sheridan College — Oakville, ON
      Simon Fraser University — Burnaby, BC
      University of Calgary — Calgary
      University of Guelph — Guelph, ON
      University of New Brunswick — NB
      University of Ottawa — Ottawa, ON
      University of Toronto — Toronto, ON
      University of Waterloo — Waterloo,ON
      UOIT — Oshawa, ON
      Western University — London, ON
      Youth Science Canada

Long story short, the event was very successful. As one professor commented, “I found the summit to be extremely valuable… the first day’s talks were very informative, especially having some of the professors share their experiences… it provided a great opportunity to get an overview of the BlackBerry platform, and the hands-on session demonstrated how quickly we can have students create a mobile application from scratch in BlackBerry 10.”

As you know, QNX has deep experience in the embedded market. That, together with a long history of supporting academic research, makes the QNX in Education program an ideal complement to the BlackBerry Academic Program, which provides free curriculum resources and mobile hardware to qualified professors and instructors.

During the first day of the summit, QNX delivered a presentation on the history of the QNX in Education Program and on the various offerings that QNX makes available to academics, and consequently, to students. A demonstration of QNX-based reference designs was very well received. On day 2 of the event, QNX provided a hands-on training session focused on the reference designs.

Another successful cooperation between the QNX in Education and BlackBerry Academic programs since the BlackBerry student competition in China last year!

Did you know…
… that the QNX in Education program has been active since the 1980s? And that Harvard University has been a program member for 23 years? Find out how in Harvard has been using QNX technology to investigate the ozone hole.

Find out more about the QNX in Education program and BlackBerry Academic Program.

7/10/2013

What are the 5 all-time most popular QNX videos?

Geez, I thought you'd never ask. Seriously, the question came to mind earlier this week, so I decided to find out. A quick trip to the QNX YouTube channel provided the answer.

What that trip didn't tell me is why these videos are the most popular. I can think of several reasons, but the most obvious is that the videos all hint at a future in which driving is more connected, more convenient, more enjoyable — and also a little safer. But don't take my word for it. Check out the videos, if you haven't already, and judge for yourself.

Without further ado, here are the top five, along with my favorite scene from each one.

#1
First up, at more than 525,000 views, is Imagined: Your car in the not-so-distant future. Best part: the augmented reality-enhanced stop sign (1:10).



#2
Next, at more than 230,000 views, is QNX seamless connectivity. Best part: John Wall speaking on the real challenge of making a connected car (:50).



#3
Close behind #2, at more than 213,000 views, is The QNX secret to making hands-free noise-free. Best part: The marching band (1:21).



#4
Next, at more than 85,000 views, is QNX HTML5 series - Interview with Pandora's Tom Conrad. Best part: It's all good, but I love the bloopers (3:00).



#5
And last, at more than 34,000 views, is QNX technology concept car - Bentley Continental. Best part: the couches.



One that didn't make it...
And, finally, here's my current favorite. It's not one of the top five... yet. But I think it should be:



7/09/2013

What, you haven't read the latest issue of the QNX Source newsletter?

It always pays to get your information straight from the source. I'm speaking, of course, about the Source newsletter, which QNX publishes 10 times a year.

If you want to keep track of the latest QNX videos, webinars, whitepapers, press releases, product updates, and board support packages, subscribing to the Source is the way to go. But if your inbox is already crammed with too many newsletters, meeting requests, and advertisements for fake Rolexes, there is an alternative: you can bookmark your browser to the Source newsletter archive.

Here, for example, is a screen cap of part of the June edition, which is available now on the archive.



7/07/2013

Solar Impulse plane completes final leg of cross-America trek

It has the wingspan of a Boeing 777, but weighs only as much as a family car. It has four propellers, but doesn’t sip an ounce of fuel. It's called the Solar Impulse, and it is the first plane designed to fly round the clock using only solar power.

In early May, the Solar Impulse took off from Mountain View, California on the first leg of its journey across America. Last night, it completed the trek, landing at New York's JFK Airport. In between, the plane made stopovers at Phoenix, Dallas, St. Louis, and Washington DC, allowing the Solar Impulse team to meet the public, show off the plane, and promote their vision of renewal energy. (In New York next weekend? If so, you're in luck: you can see the plane in person at JFK.)

Along the way, the plane set a new distance record for solar-powered flight: 1541 kilometers. The previous record was 1116 kilometers, set by — you guessed it — the Solar Impulse team.

QNX Software Systems is the official realtime OS partner for the Solar Impulse project, which uses QNX technology for several of the plane's control and data management functions. For more on the project and the people behind it, see the Solar Impulse website.

But before you go, check out this video, which starts off with some inspiring clips of the Solar Impulse in flight — followed by a cameo appearance by Larry Page wearing Google Glass.