ImageArmada 2

Realtime 3D, Virtual Reality, Gallery and Exhibition Software for the PC

Image Armada allows you to customize premade 3D galleries that can be explored 'virtually' on your PC. Like any real gallery, you can hang and frame your work, walk around, turn your head in any direction, view artwork details and click to zoom in.

ADVERTISING


Software Specs

Publisher:............ Tangent3D

License:............... Freeware

Price:................... 0.00

File size:.............. 19.56 MB

Downloads:.........

Release date:...... 01 Dec 2011

Last update:........ 01 Dec 2011

Language:............ English

Publisher review for ImageArmada 2:

Review by: Tangent3D
Image Armada has made it as easy as possible for you to create your own gallery environments with a minimum of fuss and effort. Having said that, the visual quality of the galleries that you can produce is first class and you'll be amazed at the results which are comparable to high-end graphics workstations. Once you have created a gallery, the first thing you'll likely want to do is to show it to someone else, or perhaps the whole idea of producing the gallery was for the sole intention of showing off your artwork. Using Image Armada, galleries can be packed up and burnt onto a CD along with a viewer that can be run on any other PC and not just your own.
Requirements:
DirectX 9c or above, 32MB 3D Graphics Card, 1000Mhz CPU, 128MB RAM, 20MB Free Space

Operating system:
Win7 x32,Win7 x64,WinVista,WinVista x64,WinXP

Whats new in version 2:
Movie maker / updating exhibitions / All drag and drop /

Download ImageArmada 2

ImageArmada screenshots:

ImageArmada 2 screenshot. Click to enlarge!

ImageArmada download tags:

3D Virtual Reality Realtime Standalone Walkthru Gallery Exhibition

Copyright information:


SPONSORED LINKS
Rate this software
ImageArmada
Rating: 1.7 out of 5
Based on 22 ratings. 22 user reviews.

  • Currently 1.73 out of 5
  • 1
  • 2
  • 3
  • 4
  • 5
ImageArmada Awards

Copyright (c) 2024 ++ win7dwnld.com - All rights reserved. - 0.0128 s