Engineering Guidelines
274
T.38 UDP, Low Speed Redundancy = 8, High Speed Redundancy = 3
T.38 ALARMS
T.38 LOAD ALARM
For Release MCD 5.0 SP2 a new alarm has been added called ‘T.38 Load Alarm’. The purpose
of this alarm is to indicate if there is an issue with the T.38 software/hardware/configuration
when the system starts up. For example this alarm will be set if a DSP II card is not installed
in the system or if the DSP II card is defective and the system is unable to load software onto
the DSP II card.
DSP RESOURCE EXHAUSTION ALARM
If DSP resources are not available for a T.38 call a generic DSP resource exhaustion alarm will
be raised and the call will be handled as G.711 pass through.
T.38 FREQUENTLY ASKED QUESTIONS
The following answers to frequently asked questions are provided for persons deploying T.38
in their networks.
Q:
Why is the maximum number of T.38 Fax sessions set at 64?
A:
64 is the maximum number of T.38 Fax licenses that are allowed through AMC. In practice
for a single DSP II card, the maximum number of sessions is 56 since one of the DSP devices
is needed for V.21 FAX Tone detection.
Q:
Does this mean the 3300 can only support 64 T.38 Fax machines?
A:
No, 64 is the maximum number of T.38 CODECs supported on the ICP. Since Fax machines
are typically not busy all of the time, it is possible to support more than 64 Fax machines. This
is similar to the way that subscribers and trunks are allowed to be oversubscribed based on
traffic patterns.
Q:
How can an installer see how many active T.38 sessions are in progress?
A:
The command line entry of 'e2tShow' will cause a line to be output such as:
> 7%
> 2000 ms
> 6000 ms
Red = Stop
PACKET LOSS
JITTER
END-TO-END
DELAY
< 7%
< 1000 ms
< 6000 ms
Green = Go
< 10%
< 2000 ms
Yellow = Caution
> 10%
> 2000 ms
> 6000 ms
Red = Stop
PACKET LOSS
JITTER
END-TO-END
DELAY
Содержание MiVOICE BUSINESS
Страница 1: ...Mitel MiVoice Business RELEASE 7 2 ENGINEERING GUIDELINES ...
Страница 15: ...Chapter 1 ABOUT THIS DOCUMENT ...
Страница 16: ......
Страница 22: ...Engineering Guidelines 8 ...
Страница 23: ...Chapter 2 SYSTEM OVERVIEW ...
Страница 24: ......
Страница 28: ...Engineering Guidelines 14 ...
Страница 29: ...Chapter 3 TYPICAL CONFIGURATIONS ...
Страница 30: ......
Страница 73: ...Chapter 4 PHONES AND VOICE APPLICATIONS ...
Страница 74: ......
Страница 95: ...Phones and Voice Applications 81 Figure 9 ICP Connection Paths and Limitations ...
Страница 100: ...Engineering Guidelines 86 ...
Страница 101: ...Chapter 5 POWER ...
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Страница 128: ...Engineering Guidelines 114 ...
Страница 129: ...Chapter 6 PERFORMANCE ...
Страница 130: ......
Страница 135: ...Chapter 7 APPLICATIONS ...
Страница 136: ......
Страница 142: ...Engineering Guidelines 128 ...
Страница 143: ...Chapter 8 EMERGENCY SERVICES ...
Страница 144: ......
Страница 151: ...Chapter 9 IP NETWORKING ...
Страница 152: ......
Страница 167: ...Chapter 10 LICENSING ...
Страница 168: ......
Страница 183: ...Chapter 11 BANDWIDTH CODECS AND COMPRESSION ...
Страница 184: ......
Страница 209: ...Chapter 12 NETWORK CONFIGURATION CONCEPTS ...
Страница 210: ......
Страница 244: ...Engineering Guidelines 230 ...
Страница 245: ...Chapter 13 NETWORK CONFIGURATION SPECIFICS ...
Страница 246: ......
Страница 309: ...Appendix A CAT 3 WIRING ...
Страница 310: ......
Страница 315: ...CAT 3 Wiring 301 Figure 55 CX MX MXe AX and LX Minimum Cable Standard ...
Страница 316: ...Engineering Guidelines 302 ...
Страница 317: ...Appendix B INSTALLATION EXAMPLES ...
Страница 318: ......
Страница 335: ...Appendix C LLDP AND LLDP MED CONFIGURATION EXAMPLES ...
Страница 336: ......
Страница 347: ...Appendix D VOIP AND VLANS ...
Страница 348: ......
Страница 353: ...Appendix E VOIP SECURITY ...
Страница 354: ......
Страница 381: ... ...