Network Setup

PLAYBACK INTERFACE through Remote Viewer

Function of each button in Search window.

1.Exit : Exit to live window.

2.Full screen: Select a certain camera to view in full screen.

3.Quad: To view quad mode (4 channels at the same time)

4.Time: The recording time & date information of the pictures which is being played.

5.Channel selection: Select each camera.

6.Time selection: Select a time from which user want to see. The playback will be started from this point.(drag the point using mouse)

7.Start and end time: Indicate record starting time and end time of images on HDD

8.Other operating button: Refer to the next page description.

9.Command Button

a)SAVE: After pressing the Stop button, click SAVE button to save the currently viewed image in jpg format.

b)PRINT: After pressing the Stop button, click PRINT button to print the currently viewed image.

c)EVENT: To be available later

d)RECORD: Press this button to download playback images transmitted from DVR unit into your PC. Images downloaded is saved in the folder set in Remote Viewer Setup. Press the RECORD button again to stop downloading. User can see saved images using Media Player.

10.Calendar: Use this to select the date you wish to search. The filled in square outlines the date that is at the beginning of the hard drives. The outlined square indicates the data at the end of the hard drives. Select the date you wish to view. Verify a filled in square for that particular date. If an invalid date is selected it will default to the beginning of the hard drive(s).

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Stinger JPEG 2000 Playback Interface through Remote Viewer, Function of each button in Search window, Command Button

JPEG 2000 specifications

Stinger JPEG 2000 is a powerful image compression technology that offers advanced solutions for high-quality image storage and transmission. Utilizing the principles of wavelet transformation, JPEG 2000 provides significant benefits over the traditional JPEG format, particularly in terms of image quality, compression efficiency, and flexibility.

One of the main features of Stinger JPEG 2000 is its support for lossless and lossy compression modes. This versatility allows users to select the appropriate mode based on their image quality requirements and storage capacities. Lossless compression ensures that no image data is lost during the compression process, making it ideal for applications that require exact reproductions, such as medical imaging and archiving. On the other hand, lossy compression significantly reduces file sizes while maintaining a perceptible level of quality, making it suitable for web images and streaming.

Another notable characteristic of Stinger JPEG 2000 is its ability to handle high-resolution images efficiently. The wavelet-based encoding method enables the preservation of fine details, ensuring that even images with intricate designs remain sharp and clear after compression. This is particularly important in fields like digital cinema, where the highest quality is paramount.

Stinger JPEG 2000 also supports progressive decoding, meaning images can be transmitted and rendered in layers. This feature allows users to view a low-resolution version of an image quickly while the higher-resolution data is still being received. This is especially beneficial for web applications where loading times are critical.

Additionally, Stinger JPEG 2000 includes robust error resilience capabilities. The technology can recover more gracefully from data corruption, making it an excellent choice for streaming applications where data loss can occur. The format's capability to store additional metadata also enhances its functionality, enabling the inclusion of information such as color profiles, image creation data, and other pertinent details that help manage and organize image files.

In summary, Stinger JPEG 2000 revolutionizes the way images are compressed, offering advanced features such as lossless and lossy options, efficient handling of high-resolution images, progressive decoding, and enhanced error resilience. These characteristics make it a preferred choice for professional applications where image quality and reliability are critical, paving the way for a broader adoption in various industries, including media, healthcare, and digital archiving.