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Intel EP80579, a system-on-a-chip based on the 90 nm Dothan Pentium M, aimed at embedded applications. [62] Possibly Tolapai Spring, Arizona, USA. 2007 Tonga: CPU Pentium II Mobile processor, 250 nm. Probably the island nation of Tonga. 1998 Topcliff Chipset Intel EG20T PCH, for use with Atom E600 series (Tunnel Creek) processors. Reference ...
The Killer NIC (Network Interface Card), from Killer Gaming (now a subsidiary of Intel Corporation), is designed to circumvent the Microsoft Windows TCP/IP stack, and handle processing on the card via a dedicated network processor. Most standard network cards are host based, and make use of the primary CPU.
The Etherlink III 3C509B-Combo is registered with the FCC ID DF63C509B. The main components on the card are Y1: crystal oscillator 20 MHz, U50: coaxial transceiver interface DP8392, U4: main controller 3Com 9513S (or 9545S etc.), U6: 8 kB 70 ns CMOS static RAM, U1: DIP-28 27C256 style EPROM for boot code, U3: 1024 bit 5V CMOS Serial EEPROM (configuration).
10 Gigabit Ethernet (abbreviated 10GE, 10GbE, or 10 GigE) is a group of computer networking technologies for transmitting Ethernet frames at a rate of 10 gigabits per second. It was first defined by the IEEE 802.3ae-2002 standard.
Drivers without freely (and legally) -available source code are commonly known as binary drivers. Binary drivers used in the context of operating systems that are prone to ongoing development and change (such as Linux) create problems for end users and package maintainers. These problems, which affect system stability, security and performance ...
10G-PON (also known as XG-PON or G.987) is a 2010 computer networking standard for data links, capable of delivering shared Internet access rates up to 10 Gbit/s (gigabits per second) over dark fiber.
The 10 Gigabit Ethernet Alliance (10GEA) was an independent (not directly related to Institute of Electrical and Electronics Engineers (IEEE), although working in collaboration with it) organization which aimed to further 10 Gigabit Ethernet development and market acceptance.
Ethernet over twisted-pair technologies use twisted-pair cables for the physical layer of an Ethernet computer network. They are a subset of all Ethernet physical layers.. Early Ethernet used various grades of coaxial cable, but in 1984, StarLAN showed the potential of simple unshielded twisted pair.