Skip to main content

New Nexus 10 2 2013 to be manufactured by Asus


New Nexus 10 2 (2013) to be manufactured by Asus

 

Asus will produce the nex Nexus 10 2 (2013 edition) according to new rumours

The new Nexus 10 (2013 edition) will be made by Asus, a new screenshot has revealed.

The pictures, revealed on Geek.com and presumably from a retailer's stock listing shows the Nexus 10 16GB with the brand listed as Asus, rather than Samsung that manufactured the original Nexus 10.

Asus was responsible for making the first and second-generation Nexus 7 tablets and it seems Google was so impressed, it chose the Taiwanese company to make the bigger tablet too. 

However, GSMArena says the source is pretty questionable because placeholder numbers are listed in the product's dimensions.

Very few specs of the Nexus 10 have leaked thus far, although it's thought the next-generation Nexus 10 will feature a higher-resolution display and will launch on Android 4.3, just like the Nexus 7 2 (2013).
There will also probably be a better, higher-powered processor - possibly the same 1.5GHz Snapdragon S4 Pro as the Nexus 7 2 (2013) edition.

It sounds as though the Nexus 10 (2013) will launch on the Google Play Store and at Best Buy in the US before Christmas, but there's been no confirmation of that from Google or Asus.

The original Nexus 10 was a bit of a flop when it first launched last year, with the 7-inch Nexus 7 easily outselling its bigger brother.

Comments

Popular posts from this blog

3 Channels Audio Splitter Amplifier Circuit Diagram using TL084

This is the schematic diagram of 3 channels audio splitter amplifier circuit which built using op-amp IC TL084. The 3 channels amplifier output distribution applies a single TL084.   3 Channels Audio Splitter Amplifier Circuit Diagram The very first step is to capacitive coupling having a p. 1.0 ~ electrolytic capacitor. The entries are railways Vee Y2 or 4.5 V. This enables working with an individual 9V power source. A voltage gain of 10 (1 M?/100 Kohm) is obtained in the first stage, as well as the other three floors are connected as a unity gain voltage followers. Every single output stage drives independently through an amplifier output 50 pF capacitor towards the resistance of 5.1 k ohm load. The response range is flat from 10 Hz to 30 kHz.

A basic Arduino Solar PV Monitor

I have just recently had solar pv installed, mainly to future proof my energy costs, I do not expect it to be like drilling for oil in my back garden, however the return looks to be encouraging. The install gives you another single unit meter, from this you will see the total amount the panels produce, but that is about it. I wanted to know how much the production was as it was happening, I discovered the light blinks on the front of the meter will flash 1000 times for each kWh of electricity which passes through. The rate of the flashing of the LED tells you how much power is currently passing through the meter. [ ]

RF amplifier protection

RF amplifier protection I have developed the protection circuit for the EB104 amplifier I am working on, after I finally had some time to design and test a few models. The main requirements have been: - protection in case of high temperature; - protection in case of high SWR; - protection in case of wrong output filter selection; - simple design (i’m a fan of the whole K.I.S.S. rule of thought), able to work in strong electromagnetic fields, reliable, inexpensive. Because i will be using the same directional coupler i have used in the SWR meter (the one made on PCB) wich is directly influenced by the signal frequency, and because i want full HF coverage, i cannot just measure the reflected signal and make a circuit cut the amplifier when it goes over a limit; on 28Mhz the coupler generates roughly 4 times more voltage that let’s say in 7Mhz. So a system that compares direct and reflected signal and triggers when the latter is percentually too high was needed, therefore an operational a...