Dialogic® DSI SPCI Network Interface Boards Programmer's Manual Issue 5

6.3.8Fixed Data Output Request

Synopsis:

Message sent to the DSI SPCI Board in order to generate a fixed pattern on a specific T1/E1 Line Interface Unit timeslot.

Message Format:

 

 

MESSAGE HEADER

 

 

Field Name

 

Meaning

 

 

 

type

 

MVD_MSG_SC_FIXDATA (0x7e15)

 

 

 

id

 

0

 

 

 

src

 

Sending Module ID

 

 

 

dst

 

MVD_TASK_ID (0x10)

 

 

 

rsp_req

 

Used to request a confirmation

 

 

 

hclass

 

0

 

 

 

status

 

Status Response (if confirmation requested)

 

 

 

err_info

 

0

 

 

 

len

 

6

 

 

 

 

 

PARAMETER AREA

Offset

Size

Name

 

 

 

0

2

liu_id

 

 

 

2

2

timeslot

 

 

 

4

2

pattern

 

 

 

Description:

This message is sent to the DSI SPCI Board in order to generate a fixed pattern on a specific timeslot of an T1/E1 Line Interface Unit. It is typically issued at initialization and whenever a call terminates to generate an IDLE pattern towards the network.

Parameter Description:

liu_id

The identifier of the T1/E1 Line Interface Unit in the range 0 to one less than the number of LIUs fitted.

Note: For the SPCI2S, valid values for the LIU identifiers are 2 and 3.

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Dialogic DSI SPCI Network Interface Boards manual Fixed Data Output Request, Offset Size Name Liuid Timeslot Pattern

DSI SPCI Network Interface Boards specifications

Dialogic DSI SPCI Network Interface Boards are highly advanced and versatile communication solutions tailored for the demands of modern telephony and multimedia applications. These boards are designed to efficiently process voice, data, and signaling, making them an essential component for businesses looking to enhance their communication capabilities.

One of the standout features of the Dialogic DSI SPCI boards is their ability to handle multiple telephony protocols. This flexibility allows users to connect to various network types, whether PSTN, VoIP, or legacy systems, ensuring seamless interoperability. The boards support industry-standard protocols such as ISDN, SS7, and SIP, enabling integrated communication across diverse platforms.

The technology behind the Dialogic DSI SPCI boards incorporates state-of-the-art digital signal processing (DSP). This powerful DSP architecture provides efficient encoding and decoding of voice and video signals, leading to enhanced call quality and reduced latency. Moreover, the DSP technology supports advanced codecs, ensuring that voice communication is clear and intelligible, even over bandwidth-limited connections.

Another significant characteristic of these boards is their scalability. Organizations can start with a single board and expand their telecommunication capabilities as their needs grow. This scalability makes them suitable for a wide range of applications, from small businesses to large enterprises, allowing for easy integration into existing infrastructures.

In addition to their powerful processing capabilities, Dialogic DSI SPCI boards also prioritize reliability and robustness. They are designed with a focus on fault tolerance, ensuring that telephony services remain uninterrupted even in the event of hardware failure. This resilience is critical for mission-critical applications where downtime can lead to significant revenue loss.

Furthermore, the boards feature extensive application development support. Developers can leverage the Dialogic API and various development kits to create custom telephony applications that meet specific business requirements. This programmability opens the door to innovative solutions, such as interactive voice response (IVR) systems, automated call distribution (ACD), and customer relationship management (CRM) integration.

In summary, Dialogic DSI SPCI Network Interface Boards are a cornerstone for organizations looking to innovate their telecommunication systems. With their support for multiple protocols, advanced DSP technology, scalability, reliability, and development support, these boards empower businesses to optimize their communication strategies and adapt to the evolving landscape of digital interaction.