Ericsson RX8310 manual Hardware Options, Software Options

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HARDWARE OPTIONS

IP Transport Stream Output (RX83XX/HWO/IP/OUT, FAZ 101 0108/22)

Encapsulation of transport stream output into IP multicast

MPTS or single SPTS output stream

2x Gigabit Ethernet RJ-45 interfaces

SOFTWARE OPTIONS

Input Options

The RX8310 comes with DVB-S, QPSK support as standard. The unit can optionally be licensed to support the new highly efficient DVB-S2 satellite transmission standard.

DVB-S2 QPSK License (RX83XX/SWO/DVBS2/QPSK, FAZ 101 0108/6)

Adds DVB-S2 QPSK capability to DVB-S2 input option card

DVB-S2 8PSK License (RX83XX/SWO/DVBS2/8PSK, FAZ 101 0108/4)

Adds DVB-S2 QPSK, 8PSK capability to DVB-S2 input option card

DVB-S2 16APSK License (RX83XX/SWO/DVBS2/16APSK)*

Adds DVB-S2 QPSK, 8PSK and 16APSK capability to DVB-S2 input option card

DVB-S2 Low Symbol Rate License (RX83XX/SWO/DVBS2/LSYM, FAZ 101 0108/5)

Enables DVB-S2 symbol rate of 1 Msym/s to 5 Msym/s

Null Packet Detection Redundancy Switching (RX83XX/SWO/NULL, FAZ 101 0108/17)

Redundancy switching from primary to secondary input triggered by presence of null packets in the incoming stream

User definable percentage of null packets to trigger redundancy switch

Decoding Options

The RX8310 is designed to support a range of video decoding standards

MPEG-2 SD Decoding (RX83XX/SWO/MPEG2/SD, FAZ 101 0108/10)

Enables MPEG-2 SD 4:2:0 decoding

MPEG-2 HD Down-conversion (RX83XX/SWO/MPEG2/HD, FAZ 101 0108/9)

Enables MPEG-2 SD and HD 4:2:0 decoding

HD video is down-converted and presented as SD on CVBS output

MPEG-4 AVC SD Decoding (RX83XX/SWO/MP2/MP4/SD, FAZ 101 0108/12)

Enables MPEG-2 and MPEG-4 AVC SD 4:2:0 video decoding

MPEG-4 AVC HD Down-conversion (RX83XX/SWO/MP2/MP4/SD/HD, FAZ 101 0108/11)

Enables MPEG-2 SD and HD, MPEG-4 AVC SD and HD 4:2:0 decoding

HD video is down-converted and presented as SD on CVBS output

Ericsson RX8310 Distribution Receiver

Screw Terminal Audio Break-Out Cable (RX8XXX/CABLE/SCRTRM, FAZ 101 0108/23)

Provides screw terminal connections for analog audio output

1x stereo pair per breakout cable

XLR Terminal Audio Break-Out Cable (RX8XXX/CABLE/XLR, FAZ 101 0108/24)

Provides XLR terminal connections for analog audio output

1x stereo pair per breakout cable via 2x XLR connectors

Audio Options

Dolby® Digital Decode (RX83XX/SWO/AC3, FAZ 101 0108/28)

Enables decoding of Dolby® Digital Audio

2x 2.0 (stereo) decoding

2x 5.1 down-mix to 2.0 (stereo)

AAC Decode (RX83XX/SWO/AAC, FAZ 101 0108/2)

Enables decoding of AAC-LC and HE-AAC

2x 2.0 (stereo) decoding

2x 5.1 down-mix to 2.0 (stereo)

Conditional Access Options

Director by Ericsson Multi-service Decryption (RX83XX/SWO/DIR5/MSD, FAZ 101 0108/3)

Director multi-service decryption

Director over-air control

Director over-air software downloads

Stream Processing Options

Single Service Filtering (RX83XX/SWO/SING/SERVFILT, FAZ 101 0108/15)

Filter multiple services to output a single service

Re-map PIDs for the outgoing service

Multi-Service Filtering (RX83XX/SWO/MULT/SERVFILT, FAZ 101 0108/14)

Filter N multiple incoming services to M outgoing services

Re-map PIDs for a single service

CBR MPTS transport stream output

Service splitting for multiple IP SPTS output

Data Options

High Speed Data Output (RX83XX/SWO/IP/DATA, FAZ 101 0108/7)

MPE based data de-encapsulation of IP data

Requires IP TS output option

Other Software Options

Password Protection of Web Browser (RX83XX/SWO/PW, FAZ 101 0108/29)

Enables password protection feature on Web browser control interface to protect from malicious or accidental changes

08-2011-v4

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Contents Base Unit Features Product OverviewHardware Options Software OptionsSample Configuration Specifications

RX8310 specifications

The Ericsson RX8310 is a cutting-edge radio system that represents a significant advancement in mobile communication technology. Designed to meet the demands of modern networks, it boasts a compact and versatile configuration suitable for a variety of deployment scenarios. This innovative product addresses the needs of both urban and rural environments, making it an essential component of next-generation mobile networks.

One of the standout features of the RX8310 is its support for multiple frequency bands, enabling operators to manage a wide spectrum of mobile communication demands. The device offers advanced capabilities in terms of both coverage and capacity, ensuring that users receive high-quality connectivity regardless of their location. The RX8310 is particularly beneficial in areas with dense populations where network congestion often occurs, as it effectively enhances throughput and connection reliability.

The RX8310 integrates multiple technologies, including massive MIMO (Multiple Input Multiple Output) and beamforming. These technologies significantly improve signal quality and enable more efficient use of available spectrum resources. By utilizing massive MIMO, the RX8310 can handle multiple data streams simultaneously, thus increasing user capacity and improving overall network efficiency.

Another important characteristic of the RX8310 is its energy efficiency. As the telecommunications industry continues to focus on sustainability, the RX8310 contributes to reduced operational costs through lower energy consumption. This energy-efficient design not only helps operators save on electricity bills but also supports environmental goals by lowering the carbon footprint of network operations.

The modular architecture of the RX8310 allows for easy upgrades and scalability, adapting to the evolving demands of 5G and beyond. It is fully compatible with both 4G and 5G technologies, ensuring a seamless upgrade path as operators transition to faster, more advanced networks.

In addition, the RX8310 is equipped with advanced software that supports artificial intelligence and machine learning capabilities. This offers network operators the ability to optimize performance in real time, dynamically adjusting settings based on user demand and network conditions. Overall, the Ericsson RX8310 is a robust solution poised to enhance mobile communication infrastructure, embracing the complexities of modern connected environments while laying the groundwork for future advancements.