APPENDIX B: S-REGISTERS

DEFINITY Communications System

 

7400B Data Module

Page B-14

User’s Guide

 

 

Register:

Description:

Range of

Values:

Storable:

Comments:

See Also:

S23

This S-register is used to store the status of bit-mapped options as follows:

bit 0 — allow remote loop request from remote system; 0 = disabled, 1 = enabled (default = 1, see &T command)

bits 1, 2, and 3 — local communications speed (see comment 1)

0 = 300 bps

1 = not used

2 = 1200 bps

3= 2400 bps (factory-set default)

4= 4800 bps

5= 9600 bps

6= 19200 bps

7= not used

bits 4 and 5 — local parity setting; 0 = even, 1 = space, 2 = odd, and 3 = mark/none (default = 0)

bit 6 and 7 — not used (see comment 2)

Value may be 00 to FF hexadecimal; factory-default settings produce a value of 07 hexadecimal (see comment 3).

yes

1.Hayes compatible modems use only bits 0, 1 and 2 for speeds up to 2400 bps. The 7400B Data Module uses bit 3 to support speeds above 2400 bps.

2 . Bits 6 and 7 are set by the appropriate command, but there will be no other effect.

3 . Refer to the explanation of hexadecimal values under the Range of Values label description at the beginning of this appendix.

Chapter 4, “Operation and Configuration”; refer to the indicated AT command in Appendix A, “AT Command Set.”

Register:

S24 — not used

 

 

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Lucent Technologies 7400B manual Register Description Range Values Storable Comments See Also, Register S24 not used

7400B specifications

The Lucent Technologies 7400B is a notable entry in the landscape of telecommunications and networking technology, showcasing an innovative blend of features and capabilities that cater to the evolving demands of modern communication systems. Released as part of the company's broader portfolio aimed at enhancing network efficiency and reliability, the 7400B addresses the needs of both voice and data transmission organized around high-performance protocols.

One of the main features of the Lucent Technologies 7400B is its advanced signal processing capabilities. The device is built to handle a significant amount of bandwidth, making it suitable for high-capacity environments where data traffic can fluctuate dynamically. With its ability to support various signaling protocols, the 7400B is adept at integrating with existing infrastructure while providing the flexibility required to adopt emerging technologies.

The 7400B employs state-of-the-art voice encoding and compression techniques that optimize the quality of voice communications. This technology ensures clarity and minimizes latency, which is crucial for enterprises relying heavily on voice-over-IP (VoIP) applications and unified communications. The system supports multiple codecs, enabling it to seamlessly manage both traditional telephony and next-generation voice services.

In terms of reliability, the Lucent 7400B features robust redundancy protocols, ensuring continuous service availability even in the face of potential hardware failures or unexpected disruptions. It also includes built-in diagnostic tools that facilitate rapid troubleshooting, allowing technicians to identify and resolve issues efficiently. This focus on reliability makes the 7400B a preferred choice for critical business applications where downtime can lead to significant productivity losses.

The integration of advanced networking technologies such as Quality of Service (QoS) further enhances the performance of the 7400B. This capability ensures that high-priority applications receive the necessary bandwidth, maintaining optimal performance levels regardless of overall network traffic loads.

Moreover, the Lucent Technologies 7400B is designed with scalability in mind. Organizations can start with a basic configuration and expand their capacity as needed, thus ensuring that their investment remains relevant as their communication demands grow. This scalability is complemented by a user-friendly management interface, allowing network administrators to configure and monitor the system with ease.

In summary, the Lucent Technologies 7400B stands out for its advanced signal processing, voice encoding capabilities, reliability features, and scalability. These characteristics make it a vital component for any organization looking to enhance their telecommunications infrastructure and meet the increasingly complex communication needs of today’s digital landscape.