メインへ

KJCLUB 日韓文化交流へようこそ。

倭国が誇る Cell processor

閲覧数 : 305
KO 0 Member_63938 1,978,130 / 2,811,753

In mid-2000, Sony Computer Entertainment, Toshiba Corporation, and IBM formed an alliance known as STI to design and manufacture the processor.[7]

The STI Design Center opened in March 2001.[8] The Cell was designed over a period of four years, using enhanced versions of the design tools for the POWER4 processor. Over 400 engineers from the three companies worked together in Austin, with critical support from eleven of IBM¥"s design centers.[8]

During this period, IBM filed many patents pertaining to the Cell architecture, manufacturing process, and software environment. An early patent version of the Broadband Engine was shown to be a chip package comprising four Processing Elements, which was the patent¥"s description for what is now known as the Power Processing Element. Each Processing Element contained 8 APUs, which are now referred to as SPEs on the current Broadband Engine chip. Said chip package was widely regarded to run at a clock speed of 4 GHz and with 32 APUs providing 32 GFLOPS each, the Broadband Engine was shown to have 1 teraflop of raw computing power. This design was fabricated using a 90 nm SOI process.[9]

In March 2007 IBM announced that the 65 nm version of Cell BE is in production at its plant in East Fishkill, New York.[9][10]

In February 2008, IBM announced that it will begin to fabricate Cell processors with the 45 nm process.[11]

In May 2008, IBM introduced the high-performance double-precision floating-point version of the Cell processor, the PowerXCell 8i,[12] at the 65 nm feature size.

In May 2008, an Opteron- and PowerXCell 8i-based supercomputer, the IBM Roadrunner system, became the world¥"s first system to achieve one petaFLOPS, and was the fastest computer in the world until third quarter 2009. The world¥"s three most energy efficient supercomputers, as represented by the Green500 list, are similarly based on the PowerXCell 8i.

The 45 nm Cell processor was introduced in concert with Sony¥"s PlayStation 3 Slim in August 2009.[13]

In November 2009, an IBM representative said that it has discontinued the development of a Cell processor with 32 SPUs[14][15] but they have not halted development of other future products in the Cell family

src=http://upload.wikimedia.org/wikipedia/commons/thumb/d/d1/Peter_Hofstee.jpg/220px-Peter_Hofstee.jpg

src=http://bits.wikimedia.org/skins-1.18/common/images/magnify-clip.pngPeter Hofstee, one of the chief architects of the Cell microprocessor

-------------------------------------------------

すみませんが, Cell は確かに Sonyの物であるが, 開発者は日本人ではなくアメリカ人です.

アメリカ人の DNAは立派ですね. 日本は白人にまともに支払っている?

原文を見る

왜국이 자랑하는 Cell processor

In mid-2000, Sony Computer Entertainment, Toshiba Corporation, and IBM formed an alliance known as "STI" to design and manufacture the processor.[7]

The STI Design Center opened in March 2001.[8] The Cell was designed over a period of four years, using enhanced versions of the design tools for the POWER4 processor. Over 400 engineers from the three companies worked together in Austin, with critical support from eleven of IBM"s design centers.[8]

During this period, IBM filed many patents pertaining to the Cell architecture, manufacturing process, and software environment. An early patent version of the Broadband Engine was shown to be a chip package comprising four "Processing Elements", which was the patent"s description for what is now known as the Power Processing Element. Each Processing Element contained 8 APUs, which are now referred to as SPEs on the current Broadband Engine chip. Said chip package was widely regarded to run at a clock speed of 4 GHz and with 32 APUs providing 32 GFLOPS each, the Broadband Engine was shown to have 1 teraflop of raw computing power. This design was fabricated using a 90 nm SOI process.[9]

In March 2007 IBM announced that the 65 nm version of Cell BE is in production at its plant in East Fishkill, New York.[9][10]

In February 2008, IBM announced that it will begin to fabricate Cell processors with the 45 nm process.[11]

In May 2008, IBM introduced the high-performance double-precision floating-point version of the Cell processor, the PowerXCell 8i,[12] at the 65 nm feature size.

In May 2008, an Opteron- and PowerXCell 8i-based supercomputer, the IBM Roadrunner system, became the world"s first system to achieve one petaFLOPS, and was the fastest computer in the world until third quarter 2009. The world"s three most energy efficient supercomputers, as represented by the Green500 list, are similarly based on the PowerXCell 8i.

The 45 nm Cell processor was introduced in concert with Sony"s PlayStation 3 Slim in August 2009.[13]

In November 2009, an IBM representative said that it has discontinued the development of a Cell processor with 32 SPUs[14][15] but they have not halted development of other future products in the Cell family

Peter Hofstee, one of the chief architects of the Cell microprocessor

-------------------------------------------------

미안하지만, Cell 은 확실히 Sony의 것 이지만, 개발자는 일본인이 아니라 미국인 입니다.

미국인의 DNA는 훌륭하네요. 일본은 백인에게 제대로 지불하고 있어?

いいね・コメントにはログインが必要です。

コメント ( 9 )

投稿一覧

1,978,130 / 2,811,753

  1. 閲覧数 : 226
    JA 255 ねふ子
  2. JA 255 Member_67279
  3. KO 255 toto3579
  4. JA 255 jap_av
  5. KO 255 sbtm
  6. KO 255 dogsawai
  7. JA 0 KimuraYoona
  8. 閲覧数 : 122
    JA 0 コスタ
  9. 閲覧数 : 305
    KO 0 Member_63938
  10. KO 255 sbtm
  11. JA 0 コスタ
  12. 閲覧数 : 52
    KO 0 Member_96860
  13. JA 0 greatjp22
  14. KO 255 Member_52438
  15. KO 255 toto3579
  16. JA 0 KimuraYoona
  17. KO 255 rainyseason69
  18. JA 255 TVXQ♪
  19. JA 255 jap_av