MK903V Android uses Rockchip RK3288 processor

If you have an Android on the market and it is able to run Android 3.4.2 on top of the Linux kernel 3.10, you may be interested in this new MK903V program, announced this week. The MK903V Android is powered by Rockchip RK3288 quad-core CortexA17 1.8GHz processor, supports 2GB of DDR3 memory as well as the Mali T764 GPU. The Mali T764 graphics processing unit provides 8GB of NAND flash storage for systems that support OpenGL ES 1.1/2.0/3.0 and OpenCL 1.1, combined with a microSD card slot, allowing you to expand to 32GB of storage using an extra card. Connected on Android is a dual band wireless 802.11 B/G/N (2.4GHz/5GHz) external wireless network antenna and Bluetooth 4.0. Other connections include an HDMI 2.0 port, a USB 2.0 host port, and 2 micro USB ports.
For more information on the new MK903V's Android, visit the CNX software website for more information. He explained: This is to sell an infrared remote control, 5V/2A power adapter, HDMI cable, USB cable, a wireless network antenna and a user manual. You can find 122 US dollars, including the global AliExpress freight, but before you rush to buy equipment, understand that Rockchip RK3288's equipment has not been really ready, more like test equipment, which is expected HDMI sticks have to have their own The printed circuit board, re-layout to solve some hardware, and even Android TV box errors and firmware needs more work, according to various reports.

Iron Based Alloy Powder

Iron-based alloy powder is commonly used in plasma transfer arc welding (PTAW) due to its excellent mechanical properties and high resistance to corrosion and heat. This type of powder is typically composed of iron as the base metal, along with various alloying elements such as nickel, chromium, molybdenum, and tungsten.

The specific composition of the iron-based alloy powder may vary depending on the desired properties and application requirements. For example, adding nickel can increase the strength and toughness of the weld, while chromium enhances the corrosion resistance. Molybdenum and tungsten are often added to improve the high-temperature strength and creep resistance of the weld.

Iron-based alloy powders for PTAW are available in various particle sizes, typically ranging from a few micrometers to several hundred micrometers. The powder is usually fed into the plasma arc through a powder feeder, which ensures a controlled and consistent supply of powder during the welding process.

During PTAW, the powder is melted and deposited onto the workpiece, forming a weld bead. The high energy plasma arc provides the heat necessary to melt the powder and the base metal, creating a strong and durable weld joint.

Overall, iron-based alloy powder for plasma transfer arc welding offers excellent weldability, high mechanical properties, and resistance to corrosion and heat, making it suitable for a wide range of applications in industries such as aerospace, automotive, and power generation.

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