Showing posts with label solar. Show all posts
Showing posts with label solar. Show all posts

Sunday, January 31, 2010

Honda unveils a home solar hydrogen-producing station

Honda unveils a home solar hydrogen-producing station
Despite its current impracticality, Honda keeps plugging away at its hydrogen vehicle prototype. The company just revealed a component that brings its hydrogen vehicle closer to reality — a more compact solar hydrogen-making machine that you install in your personal garage, turning water into hydrogen fuel .

The Honda Solar Hydrogen Station uses solar power to perform this alchemy, able to produce a half a kilogram of hydrogen during the day (or using cheaper electricity at night), and refueling that car when you park it in the garage that night.

The idea is to create enough hydrogen for a car to make its round-trip daily commute without using any fossil fuels. We can only hope mass production will someday bring the price of each vehicle below the hundreds of thousands of dollars it costs now.
[DVICE via Ubergizmo]

Wednesday, December 23, 2009

Sharp develops efficient solar cells for use in outer space

solar_cell_space_sharp

Earlier this year, we reported twice about Japan’s serious plans to go to outer space to generate solar energy and then beam it back to Mother Earth. And today, Sharp has shown the first solar cell that’s not only bendable (we’ve seen that before) but that also withstands conditions in space. In addition, the company says those cells boast a record-high solar efficiency of 36%.

The compound solar cells can not only be bent if needed but even folded. They are less than 20 microns thick and are made by stacking up single crystals of indium gallium, gallium arsenide and indium gallium arsenide. These single-crystal layers are grown on solid substrates before transferring them onto a flexible film base. As a result, the solar cells feature extreme flexibility material-wise.

There’s only a prototype available at this point (sorry for the small picture), but Sharp is working on getting a practical version ready in 2012. The solar cells can then be used for equipping satellites and other space applications.

[CrunchGear via Nikkei]

Friday, December 4, 2009

California Approves Orbiting Solar Panel Deal, Aims for 2016 Launch [Solar Power]


Remember Solaren, the company that's trying to launch those space-based solar panels, the one that signed a deal with California's biggest power utility company? The whole plan got even closer to reality today, after getting approval from California legislators.
And, like we said, there's no reason Californians would reject the deal between Solaren and PG&E—the utility company isn't investing or putting up any money at all, it's just saying "sure, we'll buy energy from you if and when this thing ever works." Which, you know, duh. The 15-year contract starts in 2016, by which time hopefully we won't have already devolved into a Mad Max-style post-apocalyptic desert state.
[Gizmodo via CPUC via CNET]

Monday, November 9, 2009

Solar collectors in space could finally solve Earth's energy problem

Solar collectors in space could finally solve Earth's energy problem
The Japan Space Agency, along with Mitsubishi Electric Corp. and IHI Corp., are getting even closer to next big thing: harnessing the power of the sun with a solar collector in geostationary orbit. Now there's cold hard cash involved. The plan is to drop $21 billion into a solar power generator that beams electricity to Earth via microwaves. The 1-gigawatt solar station will gather sunlight with a gigantic array of solar panels that is 4 square kilometers big.

While such an idea might be ahead of its time, Japan confidently predicts this first solar power space station will be online within three decades. Leave it to Japan to take our entire civilization ever closer to the day when we'll finally be a Type 1 civilization on the Kardashev scale. By the way, a type I civilization is able to harness all the power available on a single planet.

Actually, these Japanese innovators will be moving us closer to being a Type 2 civilization, which is able to harness all the power available in a single star. We would probably need to surround the Sun with solar panels to do such a thing, but Japan is off to a good start. Meanwhile, those innovators need to calm down the fearmongers, chattering about how those death rays of from space could kill us all.

[DVICE via Treehugger]

Wednesday, November 4, 2009

Cheap, Printed Solar-Powered LEDs Could Change 1.5 Billion Lives [Solar Power]


Photovoltaic cells printed on sheets aren't news, nor are LEDs and ultrathin lithium batteries. What's news is a combination of the three which can help give light to 1.5 billion people who live in impoverished areas without access to electricity.
Frederik Krebs came up with this combination of solar panels and LED lights which, while definitely a work-in-progress, could bring cheap light to some of the world's poorest regions. I call the lamps a work-in-progress because despite being durable enough to last several years, they run at a mere 1% efficiency. But with the expected final cost of $7 a piece, they're full of life-changing potential, despite that low efficiency.

Some prototypes of the lamps are currently being tested in Zambia. As seen in the picture, the solar panels are left laying flat during the day and then rolled up (and secured with snap-button) into a cone-shaped lamp. I'm definitely looking forward to seeing the results of the prototype tests and a final product, because no one should go without artificially lit nights.
[Gizmodo via IEEE Spectrum via Pop Sci]

Wednesday, October 14, 2009

LG's Pop touchscreen phone set to challenge the iPhone

LG's Pop touchscreen phone set to challenge the iPhone
South Korea's LG just rolled out its latest would-be iPhone killer called the LG GD510 aka the Pop. The company calls the phone 'the most compact 3-inch full touchscreen phone ever made.' In the green tech category, the unit offers an optional solar charging replacement battery cover.
The device also features a 3-megapixel camera, MP3 player, Bluetooth functionality, 8 gigabytes of memory and an FM radio. LG's Pop will go on sale in Europe later this month, with more countries added later. You can see video of the phone's feature set in action here.
[DVICE via LG]

Sunday, October 11, 2009

eBook Craze Goes Outside [Ebooks]

eBook Craze Goes Outside [Ebooks]: "

With the introduction of a solar-powered eBook from LG Display, owners will soon be able to read for hours on end, so long as they're outside and the sun is up.
This is because the new offering boasts both an eBook and a thin-film, 10cm solar cell. Surprise!
Four to five hours of sun exposure yields an additional day's worth of reading time. You can read inside too, of course, thanks to the battery, but if you do that how will you show off the fact that you're on the cutting edge and hip with your eBook?
[Gimodo via OLED Display]

Wednesday, September 23, 2009

Japanese company sells solar-powered apartments


Japan has all kinds of solar-powered stuff: cell phones, cars, ships, and even carports and satellites. And now Tokyo-based Sekisui House plans to sell apartments fitted with sophisticated solar energy generation and control systems, which will not only power rooms but also allow residents to sell surplus electricity directly to utilities.
The electricity will be generated via solar panels on the buildings’ roofs, with each apartment having a meter to measure how much energy has been used and sold. Sekisui House claims the sun will provide enough energy for the solar buildings as a whole, but utilities will deliver conventional power in case of emergencies.
One solar power generation system installed in a four-apartment building costs a whopping $60,000 (but there are generous subsidies provided by the Japanese government for solar equipment). Sekisui House expects to sell around 300 of these systems by the end of January 2010 and sees about 30% of all apartments that it builds equipped with them in the future.
[CrunchGear via Nikkei (registration required, paid subscription)]

Monday, September 21, 2009

Solar Bluetooth Headset Can Standby Forever [Bluetooth]

The tiny solar panel on this Bluetooth headset won't recharge the device as quickly as USB power, but the sun's rays can keep the headset waiting for your next call indefinitely.
While solar can't tackle most realtime energy demands, it's plenty to handle a Bluetooth headset in standby—which we must say, seems like a decent use for the tech. You'll never have to worry "is this thing that makes me look like a douchebag even working???" again.
Additionally, should you choose to purchase two headsets and actually wear them at the same time, you'll be able to appreciate A2DP (stereo Bluetooth) through multiple pairing. You know our feelings on that maneuver, so to state them yet again would be unseemly.

This solar bluetooth headset can be yours for $67 from Brando. [Brando]

Wednesday, September 2, 2009

Japan to Spend $21,000,000,000 on a Power Plant in F%#king Space [Space]


Jolly shit, Japan is getting prepped to drop $21 billion on a solar power station in space, one that will beam enough energy back to Earth to power 294,000 homes. With no cables.
The whole deal is being put together by Mitsubishi Electric Corp. and industrial design company IGI Corp. The plan involves a gigantic solar panel floating around in space, soaking up a gigawatt of energy and beaming it to Earth without the use of cables. And they hope to have it ready to rock within four years.
Pretty amazing stuff. Here's hoping it works well and doesn't end up giving the entire country of Japan cancer. Thanks for testing that whole thing out for us, guys! [Bloomberg via Inhabitat]

Tuesday, September 1, 2009

Electronic Contact Lenses Promise Future of Advanced Augmented Vision



Babak A. Parviz, an associate professor at the University of Washington whose research was seen on our pages before, wrote an article for IEEE Spectrum discussing the work of his team to develop electronic contact lenses to provide continuous monitoring of glucose, augmented vision, and potential other implications of the technology. Parviz also gives a rundown of the challenges involved in creating functional in-lens displays that users can focus on at such a short distance.

From the article:
The glucose detectors we’re evaluating now are a mere glimmer of what will be possible in the next 5 to 10 years. Contact lenses are worn daily by more than a hundred million people, and they are one of the only disposable, mass-market products that remain in contact, through fluids, with the interior of the body for an extended period of time. When you get a blood test, your doctor is probably measuring many of the same biomarkers that are found in the live cells on the surface of your eye—and in concentrations that correlate closely with the levels in your bloodstream. An appropriately configured contact lens could monitor cholesterol, sodium, and potassium levels, to name a few potential targets. Coupled with a wireless data transmitter, the lens could relay information to medics or nurses instantly, without needles or laboratory chemistry, and with a much lower chance of mix-ups.
Three fundamental challenges stand in the way of building a multipurpose contact lens. First, the processes for making many of the lens’s parts and subsystems are incompatible with one another and with the fragile polymer of the lens. To get around this problem, my colleagues and I make all our devices from scratch. To fabricate the components for silicon circuits and LEDs, we use high temperatures and corrosive chemicals, which means we can’t manufacture them directly onto a lens. That leads to the second challenge, which is that all the key components of the lens need to be miniaturized and integrated onto about 1.5 square centimeters of a flexible, transparent polymer. We haven’t fully solved that problem yet, but we have so far developed our own specialized assembly process, which enables us to integrate several different kinds of components onto a lens. Last but not least, the whole contraption needs to be completely safe for the eye. Take an LED, for example. Most red LEDs are made of aluminum gallium arsenide, which is toxic. So before an LED can go into the eye, it must be enveloped in a biocompatible substance.
Link @ IEEE Spectrum: Augmented Reality in a Contact Lens...

Sunday, July 13, 2008

חלון סולרי

מקורות החשמל שלנו מדלדלים והאנרגיה עולה יותר ויותר. אני מתחיל לחסוך. מה גם שלאחרונה שמעתי שניתן לייצר חשמל ולהחזיר אותו לחברת החשמל. הפטנט הבא הוא משהו שאתקין לי בבית ברגע שאדע שניתן להשיג את זה בארץ.

החלונות האלה מיוחדים בכך שהם מעבירים את רוב האור כרגיל, כמו כל חלון אחר, אבל מסיטים ושוברים את האור כך שיוכל להאיר את המסגרת של החלון כמו בעקרון של סיבים אופטיים. האור נשבר בתוך החלון ובורח החוצה רק בקצוות או בדפנות במקרה של חלון. יש ריכוז גבוה למדי של אור והקולטים משתמשים באורכי גל שונים כדי להגביר את התפוקה.

החוקרים מ-MIT משתמשים בחומר צבע לציפוי החלון (organic dye solar-concentrator coatings) כך שהאור הנאגר ממשטח החלון כולו נלכד בפנים ומרוכז לדפנות המסגרת שם הוא נקלט. הקולטנים גם הם יותר זולים מכיוון ששטחם הוא רק עובי החלון לכל הרוחב ולא שטח החלון כולו.

[דרך Gizmodo]