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Sharky Extreme :


Latest News


- Toshiba Extends Notebook Line with 5400 and 7200-RPM Drives
- Patriot Hits "Warp" Speed with New Line of Solid State Drives
- OCZ Adds the Elixir Keyboard to its Alchemy Gaming Line
- Seagate Unleashes 1.5TB of Storage with the Latest Barracuda Hard Drive
- Lancool Unveils their K1 and K1-Pro Mid-Tower Cases
News Archives

Features

- SharkyExtreme.com: Interview with Microsoft's Dan Odell
- SharkyExtreme.com: Interview with ATI's Terry Makedon
- SharkyExtreme.com: Interview with Seagate's Joni Clark
- Half-Life 2 Review
- DOOM 3 Review

Buyer's Guides

- July High-end Gaming PC Buyer's Guide
- May Value Gaming PC Buyer's Guide
- March Extreme Gaming PC Buyer's Guide

HARDWARE

  • CPUs

    - AMD Phenom X4 9950 BE & 9350e Review
    - AMD Phenom X3 8750 Review

  • Motherboards

    - Gigabyte GA-MA790FX-DS5 Motherboard Review
    - AMD 780G Chipset Review

  • Video Cards

    - PNY XLR8 GeForce 9800 GX2 1GB Review
    - Gigabyte Radeon HD 3870 512MB Review
    - ASUS EN8800GT TOP 512MB Review




  • The main strength of Matrox Graphics, Inc. in the consumer video card market has always been their 2D quality and speed. Their G400 capitalized on this strength with its dual-head feature, giving the user two monitor outputs in a one processor, one card solution. While gamers and game developers gave this feature a lukewarm reception, preferring faster 3D cards from NVIDIA and 3dfx, the G400 was accepted and welcomed by those actually working (gasp!) with their machine. Matrox has decided to capitalize on their strengths for business use with their new G450, set for release in the second half of 2000, which is best described as a massaged and tweaked G400 that capitalizes on dual head output.

    Quite possibly the most significant physical change from the G400 to the G450 is a die-shrink. The G400 is a .25micron chip. Now, with the G450, Matrox has moved to .18micron. There are several advantages to such a die-shrink. A die-shrink gives you a smaller chip. Smaller chips consume less power, produce less heat, can run at a faster clock speed and are cheaper to produce on a per-chip basis.





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