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Sunday, March 2, 2014

How We Test PSUs - 2014

After a lengthy hiatus, we're back with a new PSU and case reviewer. As we kick off our revised power supply testing and reviews, we wanted to cover the fundamentals of how we test and what to expect. Some of this is still a work in progress, as we have not gathered all of the equipment we would like to have, and as we move forward we will periodically provide updates to our PSU testing procedures. And with that out of the way, let's discuss how we're going to go about testing power supplies.
Effective testing of a power supply requires far more than just connecting it to a PC and using a $10 multimeter to check the voltage rails. At the very least, it requires specialized (and very expensive) equipment. At this point, most people that actually know a few things about PSUs would say, "Yes, OK, you need an adjustable load and an oscilloscope." While it's true you need those items, you can't simply grab any old adjustable load and oscilloscope. What you really need is very precise, programmable electronic loads with transient testing built-in and an oscilloscope that should comply with exact specifications, among other meters and equipment. Then of course you need to know what you are doing, as it's not simply a matter of connecting a PSU to the equipment and pressing a few buttons; there are exact loading and testing procedures, described in technical papers and guides, that need to be followed.
Programmable DC loads are an absolute necessity if you want to test a power supply. To that end, we acquired two high precision Maynuo M9714 1200 Watt and two Maynuo M9711 150 Watt electronic loads, which will allow us to draw up to 2400 Watts from 12 Volt lines and up to 150 Watts from each of the 3.3 Volt and 5 Volt lines. As these are quick-response programmable models, they will also allow us to perform transient tests in the future.
When testing a power supply, using even the best of multimeters are entirely useless. An oscilloscope is an absolute necessity and not just any oscilloscope. Intel's ATX design guide denotes that the oscilloscope should have a bandwidth of 20MHz; however, things are not nearly as simple as that. Even if you do want to purchase a proper oscilloscope, buying a 20MHz oscilloscope is a mistake. Digital oscilloscopes need to be capable of acquiring samples at least ten times faster than the frequency they are required to resolve. So, you need a 20MHz oscilloscope with a sampling rate of at least 200 MSa/s, and low range or USB connected devices cannot get anywhere close to that number.
There are of course many other minor details but we will not bore you with those. It should suffice to say that for the time being we are using a Rigol DS5042M oscilloscope, which has a bandwidth of 40MHz and a real time sampling rate of 500 MSa/s. Although that sounds impressive, actually even this device is not good enough if you want to perform transient tests properly and it cannot resolve noise out of the ripple of a signal; these are tests we plan to add in the future.
Compared to the above items, testing the efficiency of a PSU is relatively simple, once you know exactly how much power you are drawing from it. Our electronic loads tell us exactly how much power is being drawn at a given time; therefore, we only need a good AC power analyzer to tell us how much power the unit is drawing from the AC outlet. Note the "good" part, as you need a power analyzer capable of displaying true RMS values, as PSUs can generate a great deal of harmonics.
Our Extech 380803 power analyzer does a very good job at reporting the level of power that our PSU requires at any given time. We should note that all testing is being performed with a 230V/50Hz input, delivered by a 3000VA VARIAC for the perfect adjustment of the input voltage. Unfortunately, we cannot perform tests at 110V/60Hz at the moment, as that requires a high output, programmable AC power source. As a rough estimate, conversion efficiency drops by 1% to 1.5% when the input voltage is lowered to 110V/ 60Hz.
Thermal and noise testing are another complex procedure. Thermal testing is relatively simple; we only had to acquire two high precision UNI-T UT-325 digital thermometers. With four temperature probes, we can monitor the ambient temperature, the exhaust temperature of the PSU, as well as the temperature of its primary and secondary heatsinks. Noise testing however cannot be performed while the unit is being tested, as the very equipment that is used to test it generates a lot of noise. Everyone says that it is impossible to keep the unit loaded with the equipment far apart in order to perform noise testing and yes, that truly is impossible. So, it cannot be done, right? Wrong.
One of the basics of the scientific method is that you isolate the problem from a system and resolve it on its own. In other words, instead of trying to do the impossible and measure the noise of a power supply while we are testing it, there is nothing keeping us from using a non-intrusive laser tachometer to record the speed of the fan instead. Then, we can simply test the unit on its own, with the fan hotwired to a small fanless, adjustable DC PSU that we fabricated, taking noise readings with our Extech HD600 for the RPM range of the fan and cross-referencing the two tables. Not quite that difficult, was it? There is a catch however; as the unit will not be powered at the time of sound level testing, the meter cannot record any coil whine noise. Coil whine is clearly audible during testing though and we will make sure to report it if (when) we encounter a PSU whose coils could have used a little bit more lacquer. The background noise of our testing environment is about 30.4 dB(A), which figure resembles a quiet room at night. Equipment noise usually becomes audible when our instrumentation reads above 33.5 dB(A).
In order to facilitate testing power supplies more effectively, we created a test fixture for the connection between the PSU and the testing equipment, as well as a proprietary hot box. The hot box is not much more than a closed case with an air-heating device, which is controlled via a DAQ and our software. It is imperative to heat the air inside the box, not the box itself, in order to create good testing conditions. Admittedly, this self-made contraption is not perfect as it is small and has a very slow reaction rate, but it does work well for the means of simulating the environment inside a computer case. Therefore, testing will be performed at room temperature (maintained at 25 °C) and inside the hotbox (at 45-50 °C). Remember that efficiency certifications are performed at room temperature (25 °C) and a power supply can easily fail to meet its efficiency certification standards inside the hotbox!
As for the testing procedure, there are specific, detailed guidelines on how to perform it. All testing is done in accordance with Intel's Power Supply Design Guide for Desktop Form Factors and with the Generalized Test Protocol for Calculating the Energy Efficiency of Internal AC-DC and DC-DC Power Supplies. These two documents describe in detail how the equipment should be interconnected, how loading should be performed (yes, you do not simply load the power lines randomly), and the basic methodology for the acquisition of each data set. However, not all of our testing is covered and/or endorsed by these guidelines.
There are no guidelines on how transient tests should be performed and the momentary power-up cross load testing that Intel recommends is far too lenient. Intel recommends that the 12V line should be loaded to < 0.1A and the 3.3V/5V lines up to just 5A. We also perform two cross load tests of our own design. In test CL1, we load the 12V line up to 80% of its maximum capacity and the 3.3V/5V lines with 2A each. In test CL2, we load the 12V line with 2A and the 3.3V/5V lines up to 80% of their maximum combined capacity.
Furthermore, it has been suggested that efficiency testing needs to be performed at specific load intervals (20% - 50% - 100%), which is considered to be the normal operating range of a PSU. However, modern systems can easily have their energy demand drop dramatically while idling, which is why we will be testing power supplies starting at 5% of their rated capacity, not 20%. Note that the conversion efficiency of all switching PSUs literally takes a dive when the load is very low, so large drops of >10% are expected and natural.
Any questions or comments on our PSU testing procedures are welcome, and as noted earlier we plan to add and/or improve some of the testing over the coming months with some additional hardware. We will provide an updated article when/if such changes are required.

Western Digital Targets Surveillance Storage Market with Purple Hard Drives

Western Digital's campaign to delineate hard drive market segments and the accompanied colour-based branding has proved to be very popular. The Red drive lineup for the SMB / SOHO NAS market and the Black drives for the enthusiast segment have been greeted with good market acceptance. Today, Western Digital is expanding this initiative with the Purple branding for hard drives targeting the growing surveillance market (NVRs and NAS units dedicated to recording feeds from IP cameras).

Background

All SATA hard drives fulfill the same basic functionality of storing data on platters. Most hard drives use the same hardware circuitry (except for enterprise drives which have features such as RAFF - Rotary Accelerated Feed Forward - that require extra sensors on the drive to better handle vibrations in storage arrays). The scope for differentiation boils down to the firmware. The SATA protocol has a number of optional features intended to improve performance for specific scenarios. One example is NCQ (Native Command Queuing), which allows for reordering of commands to improve efficiency. Another example is the ATA Streaming Command Set, which targets A/V setups by providing features targeting video payloads. Drives targeting the A/V and surveillance markets can optimize the firmware around this optional specification.

History

Western Digital has been serving the DVR / STB / surveillance storage market with the WD-AV GP product line for quite some time now. Hardware-wise, these drives happen to be the same as the Green drives, but the difference happens to be in the firmware. WD's ATA Streaming Command Set implementation under theSilkStream tag supports up to 12 simultaneous HD streams.
Most NVRs are based off NAS platforms in RAIDed environments. Since the WD-AV-GP drives were not specifically geared for use in NAS devices, it makes sense for WD to develop firmware optimized for video surveillance storage using the Red drives as the hardware base. The result is the WD Purple lineup.

Features and Specifications

The Purple hard drives (WDxxPURX) are dedicated to service the surveillance market. Similar to the WD-AV GP lineup, these are also built for 24x7 operation. The SilkStream tag for the optimized firmware in the WD-AV GP lineup is replaced by AllFrame in the WD Purple. The optimizations work with the ATA Streaming Command Set to improve playback performance and reduce errors / frame loss. While SilkStream was advertised to support up to 12 simultaneous HD streams, AllFrame is designed to support up to 32 HD cameras / channels. Obviously, advantage of the AllFrame technology is possible only with the host controller support. It goes without saying that the appliance vendor must be in the compatibility list provided by WD in order to take advantage of the surveillance-specific features in the Purple drives.
Similar to the Red drives, these come with the IntelliPower feature (rotational speed of 5400 rpm) and TLER enabled. IntelliPower enables WD to provide best-in-class power consumption numbers with the Purple drives. There is no RAFF support on-board, though, as these are meant for table-top appliances with 1 to 8-bays. The drives are rated for workloads up to 60 TB/yr. For reference, recording 4 x 1080p30 streams for 365 days requires 200 TB of storage. SD streams come with lower storage cost. In any case, putting the WD Purples in RAID with multiple drives should easily keep workloads for each drive under 60 TB/yr. For SMB / SME surveillance setups requiring up to 64 cameras, WD suggests the use of Se drives, while mission-critical applications are advised to utilize the more powerful Re drives.
The 3.5" Purple drives come in 1, 2, 3 and 4 TB capacities. WD has a number of launch partners including, but not limited to, PELCO, HikVision, Synology and QNAP.
In other news, Seagate also announced the Surveillance HDD yesterday, targeting the surveillance market. Unfortunately, we weren't briefed extensively about it, but the specs seem similar to that of the Purple lineup (except for the addition of RV - rotational vibration - sensors for operating in multi-drive environments, which seems similar to RAFF technology).

For Them, Each FB 'Like' a Ring in Cash Register

When Vidya Mukundan gave up her Mumbai job for the sake of children she thought of opening a shop in Kerala to tap into her fashion designing skills.
A mother of two from Kannur, Vidya wanted to open a store in Kozhikode city, but she could not zero in on an apt spot. That’s when the young CA professional thought of opening a  virtual storefront on Facebook to sell designer sarees.
The page ‘Devu’s Boutique’, started in May last year, now brings her a revenue of Rs 35,000 per month. “I design sarees at home and put up their pictures on FB. Since I am getting a good response I have decided to start a website,” said Vidya who has now bought a domain name.
Vidya says opening a store involves several complexities including finding a prime spot which ensures visibility and heavy investment. “None of this matters when it comes to Facebook marketing,” says Vidya.
Not long ago, starting a clothing boutique or an accessory store was a risky affair for most women in Kerala. They had to think about the investment that would go into starting a shop, the marketing it would require and then wait for sales and response. They had the talent but no platform to showcase it, let alone make a fortune from it. The picture has changed drastically with women entrepreneurs like Vidya realising the potential of the social networking sites like Facebook.
Two years ago, Tenaz and Fidan, two sisters from Kozhikode decided to start an online shop called ‘Head Over Heels’ to kill boredom.
They started a Facebook page and put up pictures of trendy footwear. Soon enough they started a tiny shop in the heart of Kozhikode city.
Pictures of their aesthetically decorated shop soon caught the attention of facebookers.

Country's First Electric Bus Launched in Bangalore

The Bangalore Metropolitan Transport Corporation (BMTC) introduced the country’s first electric zero-emission bus in the city on Thursday.
Although the bus has been in Bangalore for over a month now, it was officially launched by Transport Minister Ramalinga Reddy after getting the required permissions from the Transport Department.
The bus will run on a trial basis for the next three months. During this time, it will operate along various routes, beginning with one from Majestic to Kadugodi that is likely to cost `80.
Plans are also afoot to run the bus along the airport routes. The charging point for the bus is at the Volvo depot at Majestic.
“We will study whether the bus is economical and if it can function efficiently in the city. When the battery is fully charged (six hours), the bus can run for about 250 km, which is ideal for BMTC. However, this needs to be tested. We also need to see how it fares on various roads in the city and which routes are best suited to operate the bus,” said BMTC managing director Anjum Parvez.
Transport Minister Ramalinga Reddy said that though the bus is expensive, it is likely to be a good deal as a long-term investment.
“The bus costs about `2.7 crore and this is expensive. But this is one bus in the entire country. Once the demand for the bus goes up and more people express interest in purchasing it, the rates are likely to come down. Moreover, the research and development wings of various bus manufacturers are working on this and it is some only time before the initial cost of the bus is reduced,” he said.
When asked if the state government would be willing to share the cost or offer subsidies, Reddy said, “We will consider various options if the bus is found to be suitable for the city. At present, it is on a three-month trial and following this, a decision will be taken on whether or not to purchase the bus,” he said. He added that what was important was that pollution levels would be brought down by using electric buses, hybrid or CNG-operated buses. The bus, manufactured by Build Your Dreams (BYD), was brought to India by Utopia Pvt Ltd. At least 5,000 such buses are operational in countries such as the United States, Netherlands, Switzerland and some European countries.
GOING GREEN
Zero emission
No oil required
Costs Rs 2.7 crore (Volvo Rs 88 lakh)
Fare from Majestic to Kadugodi - Rs 80
Runs for 250 km with 6 hours of charging

Bajaj unveils the SS400 and CS400 at the 2014 Auto Expo

Bajaj has pulled a massive surprise at the 2014 Auto Expo. While we expected them to show the faired version of the Bajaj Pulsar 200NS, the company has gone ahead and shown not one but two new Pulsars, both with the larger 375cc engine.
The first is the one we knew about — the faired SS400 (see below), where SS stands for Supersports. And just like we visualised,the bike sports an overtly aggressive and rather fussy design.
The front fairing is identical to what we’ve been seeing on test mules with a pair of small recessed headlamps. The fairing features many slashes and even a faux air intake ahead of the tank. The tank it self is quite large. The rear features a sport bike style split seat while the flashy tail lamp is mounted on the rear mudguard. The bike features raised clip on handle bars and doesn’t seem to have as exaggerated a riding position as the design suggests.
Chassis-wise the SS400 features a different frame to the trellis on the KTM 390 Duke this bike is based on. The engine is also based on the KTM’s but has been considerably reworked and features Bajaj’s triple spark technology. The company has remained tight lipped on any engine specs so far.

The CS400 (above) meanwhile retains the overall silhouette of the 200NS but looks considerably beefier in every aspect. The bike features a new headlamp and gets all digital gauges that sit on top of a conventional handle bar.
The bike also features a unique digital speedo and gear indicator mounted on the tank. The design is rounded off by a thick rear end with a butch looking end can mounted along the right side of the bike.
One difference between the SS and CS is that the faired bike runs Metzeler tyres like the KTM 390 Duke but the street bike runs a new version of the MRF Revz seen on the smaller 200 Duke.
In addition to the bikes Bajaj showcased the RE60 people carrier. The RE60 features a 216cc, liquid-cooled 4-valve triple spark engine. Fuelling is handled by fuel injection while it features a 5-speed manual gearbox. It will be offered in petrol, CNG or LPG options. Bajaj claims 37kmpl of fuel efficiency.
Bajaj made a third and equally big surprise with the introduction of its UCAR brand. This is essentially a personalised version of the people carrying RE60. It’s in the early concept stage now and features gull wing doors. While the RE60 is aimed at replacing the rickshaw with safer, closed transportation, the UCAR brand is essentially aimed at making affordable personal transport available to the masses.

The iPhone 5s Review

For much of the iPhone's life Apple has enjoyed a first-mover advantage. At the launch of the first iPhone, Steve Jobs expected the device and OS would give it a multi-year head start over the competition. Indeed that's how the market played out. Although Android was met with some early success, it wasn't until well after the launch of the first Android devices that we started seeing broad, mainstream acceptance of the platform. The iPhone bought Apple time, and together with the iPad it brought Apple a tremendous amount of profit over the years. The trick of course is turning a first-mover advantage into an indefinitely dominant market position, a difficult task when you're only making one device a year.
Today we find Apple in a very different position. The iPhone is still loved by a very loyal customer base, but the competition is much stronger than it was back in 2007. The modern smartphone market has also evolved. When Apple introduced the original iPhone with its 3.5" display, Steve called it "giant" on stage. Today even HTC's One mini ships with a 4.3" display.
Last year we saw Apple begin to address the changing landscape with the iPhone 5. The 5 saw Apple moving to a thinner, lighter chassis with much better internals and a significantly larger display. While there is market demand for Apple to do the same again, and move to an even larger display, there are some traditions Apple is sticking to. In this case, it's the tradition of the S-update.
The iPhone 5s continues Apple’s tradition of introducing a performance focused upgrade for the last year of any new chassis design. The first time we encountered an S-update was with the 3GS, which took the iPhone away from its sluggish ARM11 roots and into the world of the Cortex A8.
The next S-upgrade came with the iPhone 4S: Apple’s first smartphone to use a dual-core SoC. At the time I remember debate over whether or not a performance upgrade alone was enough to sell a new device, especially one that didn’t look any different. I’m pretty much never happy with the performance I have, so I eagerly welcomed the new platform. Looking back at the iPhone 4 vs. 4S today, I’d say the investment was probably worth it. In preparation for this review I threw iOS 7 on every iPhone that would support it, dating back to the iPhone 4. In my experience, the 4 is a bit too slow running iOS 7 - the 4S really should be the minimum requirement from a performance standpoint.
That brings us to the iPhone 5s, the third in a list of S-upgrades to the iPhone platform. Like the S-devices that came before it, the iPhone 5s is left in the unfortunate position of not being able to significantly differentiate itself visually from its predecessor. This time around Apple has tried to make things a bit better by offering the 5s in new finishes. While the iPhone 5 launched in silver and black options, the 5s retains silver, replaces black with a new space grey and adds a third, gold finish.

old black iPhone 5 (left) vs. new space grey iPhone 5s (right)
I was sampled a space grey iPhone 5s, which worked out well given my iPhone 5 was black. The new space grey finish is lighter in color (truly a grey rather than a black) and has more prominently colored chamfers. The move to a lighter color is likely to not only offer a little bit of visual differentiation, but also to minimize the appearance of scuffs/scratches on the device. My black iPhone 5 held up reasonably well considering I carry it without a case, but there’s no denying the fact that it looks aged. Interestingly enough, I never really got any scratches on the back of my 5 - it’s the chamfers that took the biggest beating. I have a feeling the new space grey finish will hold up a lot better in that regard as well.
The addition of a gold option is an interesting choice. Brian and I saw the gold iPhone up close at Apple’s Town Hall event and it really doesn’t look bad at all. It’s a very subtle gold finish rather than a gaudy gold brick effect. I think gold is likely the phone I’d opt for simply because it’d be very different than everything else I have, but otherwise space grey is probably the best looking of the three devices to me.
Along with the new finishes come new leather cases to protect the 5s. These cases are designed and sold by Apple, and they are backwards compatible with the iPhone 5 as well. Apple calls them leather cases but I'm not entirely sure if we're talking about real leather here or something synthetic. Either way, the new cases feel great. They've got a very smooth, soft texture to them, and are lined with a suede like material.
The new cases don't add a tremendous amount of bulk to the device either. The cases are available in 5 different colors and retail for $39:
I was sampled a beige case and have been using it non-stop for the past week. I really like the case a lot and it did a great job protecting the 5s over the past week while I was traveling. I took all of the photos of the review device after I returned home from traveling, but thanks to the case the device still looked as good as new. If you're considering one of these cases you might want to opt for a darker color as the edges of my case started to wear from constantly pulling the phone out of my pockets:
If you're fine with the distressed leather look then it's not a concern, but if you're hoping to keep your case pristine you may want to look at other cases. If you want a more affordable & more rugged option, Brian turned me on to the Magpul Field case which should work perfectly with the iPhone 5s.
Since the 5s is an S-upgrade, the chassis remains unchanged compared to the iPhone 5. The 5s’ dimensions are identical to that of the iPhone 5, down to the last millimeter of size and gram of weight. Construction, build quality and in-hand feel continue to be excellent for the iPhone 5s. Despite the diet the iPhone went on last year, the 5/5s chassis is still substantial enough to feel like a quality product. I remember criticisms of the iPhone 5 at launch, saying that it felt too light. Now going back and holding an iPhone 4S, it feels like the very opposite is true - the 4S was too heavy
The iPhone 5s design remains one of the most compact flagship smartphones available. The move to a 4-inch display last year was very necessary, but some will undoubtedly be disappointed by the lack of any further progress on the screen dimension front. A larger display obviously wasn’t in the cards this generation, but I have a strong suspicion Apple has already reconsidered its position on building an even larger iPhone. Part of the problem is the iPhone’s usable display area is very much governed by the physical home button and large earpiece/camera area at the top of the device. Building a larger iPhone that isn’t unwieldy likely requires revisiting both of these design decisions. It’s just too tall of an order for a refresh on the same chassis.
Brian often talks about smartphone size very much being a personal preference, and for many the iPhone 5 continues to be a good target. If you fall into that category, the 5s obviously won’t disappoint. Personally, I would’ve appreciated something a bit larger that made better use of the front facing real estate. The 5s’ width is almost perfect for my hands. I could deal with the device being a little larger, with the ideal size for me landing somewhere between the iPhone 5 and the Moto X.
It remains to be seen the impact display size has on iPhone sales. Anecdotally I know a number of die hard iPhone users who simply want a larger display and are willing to consider Android as a result. I still believe that users don’t really cross shop between Android and iOS, but if Apple doesn’t offer a larger display option soon then I believe it will lose some users not because of cross shopping, but out of frustration.
As a refreshed design, the iPhone 5s carries over all of the innovations we saw in the 5 last year. The iPhone 5s features the same Lightning connector that debuted on the iPhone 5, and has since been extended to the iPad lineup as well as the new iPods.
As with all other S-upgrades, the biggest changes to the iPhone 5s are beneath the aluminum and glass exterior. The 5s’ flagship feature? Apple’s new A7 SoC. The A7 is the world's first 64-bit smartphone SoC, and the first 64-bit mobile SoC shipping in a product (Intel’s Bay Trail is 64-bit but it won’t ship as such, and has yet to ship regardless). In addition to the new 64-bit SoC Apple upgraded both cameras in the iPhone 5s and added a brand new fingerprint sensor called Touch ID. Of course the iPhone 5s is one of the first new iPhones to ship with iOS 7 from the factory.
 Apple iPhone 5Apple iPhone 5cApple iPhone 5s
SoCApple A6Apple A6Apple A7
Display4-inch 1136 x 640 LCD sRGB coverage with in-cell touch
RAM1GB LPDDR21GB LPDDR3
WiFi2.4/5GHz 802.11a/b/g/n, BT 4.0
Storage16GB/32GB/64GB16GB/32GB16GB/32GB/64GB
I/OLightning connector, 3.5mm headphone
Current OSiOS 7
Battery1440 mAh, 3.8V, 5.45 Whr1507 mAh, 3.8V, 5.73 Whr1570 mAh, 3.8V, 5.96 Whr
Size / Mass123.8 x 58.6 x 7.6 mm, 112 grams124.4 x 59.2 x 8.97 mm, 132 grams123.8 x 58.6 x 7.6 mm, 112 grams
Camera8MP iSight with 1.4µm pixels Rear Facing
1.2MP with 1.75µm pixels Front Facing
8MP iSight with 1.4µm pixels Rear Facing
1.2MP with 1.9µm pixels Front Facing
8MP iSight with 1.5µm pixels Rear Facing + True Tone Flash
1.2MP with 1.9µm pixels Front Facing
Price$199 (16GB), $299 (32GB), $399 (64GB) on 2 year contract$99 (16GB), $199 (32GB) on 2 year contract$199 (16GB), $299 (32GB), $399 (64GB) on 2 year contract
The iPhone 5s also breaks with tradition in a couple of ways. The 5s is the first iPhone in recent history to not be offered up for pre-order. Apple expects demand for the iPhone 5s to severely outstrip supply, and as a result won't be accepting pre-orders on the 5s.
The other big change is what happens to the previous generation iPhone. In the past, Apple would discount the previous generation iPhone by $100 on-contract and continue to sell those devices at low capacity points. A two-generation old iPhone was often offered for free on-contract as well. This time, the iPhone 5s replaces the iPhone 5 at the high end, but the iPhone 5 ceases production. Instead, the 5 is replaced with a cost reduced version (the iPhone 5c). As the glass & aluminum iPhone 5/5s chassis likely doesn't scale well in price, coming up with a new polycarbonate design for slightly lower price points makes sense. I have written a separate piece on the iPhone 5c as I have more than enough to talk about with the iPhone 5s in this review.
I'll start with the big ticket item: Apple's 64-bit A7 SoC.

Microsoft Surface Pro 2 Firmware Update Improves Battery Life

Shortly after general availability of the Surface Pro 2, Microsoft pushed out a firmware update that allowed the Marvell WiFi solution to drive down to even lower power states. I spoke with Microsoft after the update went live and immediately re-ran both of our battery life benchmarks on the Surface Pro 2. The improvement is significant.
As a recap, both of our battery life tests are run with the displays calibrated to 200 nits and running a fixed workload. A faster system doesn't mean more repetitions of a workload, just that the system enjoys more time idle. 
The web browsing benchmark cycles through a series of desktop web pages at an aggressive interval until the battery dies. 
Web Browsing Battery Life (WiFi)
In our web browsing battery life test, Surface Pro 2 now manages better battery life than Surface 2. Microsoft told me that their internal target was over 8 hours, and this firmware update brings it up to snuff via a nearly 25% increase in battery life. 
Video playback also sees a boost since I test with WiFi enabled and connected to an active AP. Here we're playing back a rip I made of the last Harry Potter movie. It's a 720p 4Mbps high-profile H.264 video:
Video Playback Battery Life (720p, 4Mbps HP H.264)
Haswell's video playback still doesn't seem all that power efficient. I've heard a rumor that this gets fixed in Broadwell though. The improvement on the video playback side is still reasonable at 16% over the numbers I originally ran.
A software update also rolled back the Surface Pro 2's video drivers to an earlier version that seems to have fixed the display corruption on wake issue as well. If you're wondering, Surface 2 didn't receive any similar battery life changing firmware update.
I chatted with Microsoft a bit about why Surface Pro 2 can't seem to deliver the same battery life in these tests as a 2013 MacBook Air. They correctly pointed to the litany of sensors included in Surface Pro 2, as well as the higher resolution display, active digitizer and capacitive touch all of which increase power draw over the MBA. While it's still true that we run into a lot of poorly optimized Windows notebooks as far as battery life is concerned, Jarred recently reviewed the new Sony VAIO Pro 13 that is a clear exception. 
The VAIO Pro 13 is, for the first time in my memory, able to equal Apple's idle power efficiency if you normalize for battery capacity. The 2013 MBAs still managed to be more efficient under heavier workloads, but Sony at least showed it was possible to close the idle power gap.