6.4 Using the Gallery

The Gallery is an album application you use to store and access snapshots and video clips captured with Observer cameras. It can also manage other types of media for you such as sound bites and animations.

Note: You must first close the View Camera window before opening the Gallery.

Viewing Pictures in the Gallery

1.Click the View Gallery button. The Gallery Display Panel opens up.

2.Select a folder to view its content. The following are buttons and folders used in the Gallery Display Panel along with their description:

[Min/Max Gallery] - Toggle button used to minimize or maximize the Gallery Display Panel.

[Thumbnail Size] - To change the size of the thumbnails displayed in the gallery.

[Sort By] - Sort the thumbnails by type, time, or name. You can also use this to search for a file in the Observer Studio Gallery. When you are done searching, all the matched files will be stored in the Search Results folder.

Folders:

Animations - Contains animated character files.

Photographs - Contains still pictures.

Graphics - Contains background graphics.

Videos - Contains video files.

Music - Contains audio clips.

Projects - Contains all your previously saved projects.

To display the details of a specific file, click [Properties].

Note: To delete a file, click on the file and click

[Delete].

6.5 Movie Maker - Making or Editing a Movie

1.Click on the Movie Maker button on the Observer Studio Home Screen.

2.Choose Create A New Movie or Open An Existing Movie Or Project. If you choose to open an existing

movie, you can click on to display the following options:

Save the movie to a

specified location

Preview the movie

3.Simply drag and drop videos or pictures from the Gallery Display Panel into the Movie Maker. The following are buttons used in the Movie Maker along with their description:

[Back]

Go back to the previous screen.

[Continue]

Continue to the next screen.

[Save Finished Movie]

Save your movie at any time in the process.

[Preview Complete Movie]

Preview the movie you have created.

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Veo 802.11b manual Using the Gallery, Movie Maker Making or Editing a Movie

802.11b specifications

The Veo 802.11b is a notable wireless networking standard that emerged in the late 1990s as one of the first widely adopted protocols for local area networks (LANs). Operating in the 2.4 GHz frequency band, 802.11b provided users with the ability to connect to the internet and share resources without the constraints of wired connections.

One of the primary features of 802.11b is its maximum data transfer rate of 11 Mbps, which was impressive at the time of its release. This speed allowed for basic internet usage, file sharing, and general network connectivity. While this might seem slow by today’s standards, it laid the foundation for the rapid evolution of wireless technologies.

Veo 802.11b utilized Direct Sequence Spread Spectrum (DSSS) technology, which enhanced the reliability of the connection by spreading the signal over a wider frequency range. This technique helped to reduce interference, particularly in environments with multiple wireless devices operating on the same frequency. The standard also included mechanisms for ensuring data integrity, such as the use of cyclic redundancy check (CRC) algorithms.

In terms of range, Veo 802.11b offered coverage of approximately 100 to 300 feet indoors, and up to 1000 feet outdoors depending on environmental factors. This range made it suitable for home networks and small office environments, allowing users to access the internet from different locations within a building without the need for cumbersome cabling.

Another characteristic of the 802.11b standard was its compatibility with the earlier 802.11 standard, ensuring that devices using both protocols could operate together. This backward compatibility facilitated a smoother transition for users upgrading their systems, as they could maintain connectivity with older devices while enjoying the benefits of faster wireless networking.

Security was also an important aspect, though initially limited. The standard employed Wired Equivalent Privacy (WEP) for data encryption, which provided a basic level of security to protect wireless communications. However, as vulnerabilities were discovered in WEP, the need for stronger security protocols became evident, leading to further developments in later standards.

Ultimately, the Veo 802.11b played a pivotal role in revolutionizing wireless communications. It established the groundwork for further advancements such as 802.11g and 802.11n, which provided higher speeds and greater efficiency. While newer standards have since eclipsed its capabilities, 802.11b remains a significant milestone in the evolution of wireless networking technology. Its influence can still be seen in the pervasive use of wireless networks in homes, offices, and public spaces around the world today.