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TV Pass Card Menu

The DSR-6000 does not initially require a TV Pass Card, but if one is required, the program provider typically supplies one. The program provider uses the TV Pass Card address and decoder address to identify a specific DSR-6000 for authorization messages.

Press the 56 buttons until the TV Pass Card menu appears.

TV PASS CARD

Status

E

Not Inserted

The display enables the user to view the TV Pass Card address from the front panel of the DSR-6000. There are three Status field options:

Not Inserted

xxx-xxxxx-xxxxx-xxx (a unique TV Pass Card address, range: 000-00000- 00000-000 to 999-99999-99999-999)

xxx-xxxxx-xxxxx-xxx Needs Mating.

Audio Test Signal Menu Default: Off

Use this menu to validate audio connection by transmitting internally-generated audible tones to the audio output ports.

AUDIO TST

L1/R1

L2/R2

L3/R3

E

Off

Off

Off

L1/R1, L2/R2, and L3/R3 Field

Use the appropriate field (either L1/R1, L2/R2, or L3/R3) to choose one of the following test tones: 1000, 3960, or 4040.

At the completion of the test, press the ENTER button to disable the test, exit the field, and return the field to the default setting (Off).

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Motorola DSR-6000 manual TV Pass Card Menu, Audio Test Signal Menu Default Off

DSR-6000 specifications

The Motorola DSR-6000 represents a significant advancement in the realm of digital video and data satellite communication technology. Launched as part of Motorola's DSR series, this system integrates state-of-the-art technologies to facilitate superior signal processing and distribution, catering to a variety of broadcast and network requirements.

One of the standout features of the DSR-6000 is its ability to decode multiple video formats, including MPEG-2 and MPEG-4. This versatility allows broadcasters and service providers to deliver high-quality content efficiently, whether the format is standard definition or high definition. The system supports multiple audio formats as well, enhancing the overall viewer experience by providing options for Dolby Digital, MPEG audio, and others.

In addition to its robust decoding capabilities, the DSR-6000 boasts exceptional signal processing technologies. It is designed to handle both satellite and terrestrial inputs, making it a flexible option for operators who need to integrate various feeds into their service offerings. The device is equipped with advanced Error Correction technologies, ensuring minimal signal degradation, even in challenging reception conditions.

The DSR-6000 integrates a user-friendly interface that simplifies operational tasks. Configuration, monitoring, and control are straightforward, allowing technicians to efficiently manage the system without extensive training. The system also supports remote management capabilities, enabling operators to monitor and configure the unit from a distance, which significantly reduces service downtime.

Built with scalability in mind, the DSR-6000 can adapt to the evolving demands of digital broadcasting and data services. It allows for future upgrades, ensuring that users can implement new technologies as they emerge without replacing the entire system.

Another significant characteristic of the DSR-6000 is its compatibility with various network protocols, including ASI, IP, and DVB. This compatibility enhances the system’s interoperability with existing infrastructure, making it an optimal choice for diverse network environments.

Moreover, the DSR-6000 is designed with energy efficiency in mind, featuring low power consumption without compromising performance. This makes it an environmentally friendly option for broadcasters looking to reduce their carbon footprint while still delivering high-quality services.

In summary, the Motorola DSR-6000 is a technologically advanced satellite receiver that highlights the company's commitment to excellence in digital broadcasting. With its multiple format support, robust signal processing, user-friendly interface, and energy-efficient design, it stands out as a reliable and versatile solution for modern broadcasting challenges.