VES-1616F/1624F-44 User’s Guide
Chapter 6 Basic Setting
67
The following table describes the labels in this screen.
Table 12
Switch Setup
LABEL
DESCRIPTION
VLAN Type
Choose
802.1Q
or
Port Based
. The
VLAN Setup
screen changes depending on
whether you choose
802.1Q
VLAN type or
Port Based
VLAN type in this screen.
See
MAC Address
Learning
MAC address learning reduces outgoing traffic broadcasts. For MAC address
learning to occur on a port, the port must be active.
Aging Time
Enter a time from 10 to 3000 seconds. This is how long all dynamically learned MAC
addresses remain in the MAC address table before they age out (and must be
relearned).
GARP Timer: Switches join VLANs by making a declaration. A declaration is made by issuing a
Join
message using GARP. Declarations are withdrawn by issuing a
Leave
message. A
Leave All
message
terminates all registrations. GARP timers set declaration timeout values. See the chapter on VLAN
setup for more background information.
Join Timer
Join Timer sets the duration of the Join Period timer for GVRP in milliseconds. Each
port has a
Join Period
timer. The allowed
Join Time
range is between 100 and
65535 milliseconds; the default is 200 milliseconds. See the chapter on VLAN setup
for more background information.
Leave Timer Leave Time sets the duration of the
Leave Period
timer for GVRP in milliseconds.
Each port has a single
Leave Period
timer. Leave Time must be two times larger
than
Join Timer
; the default is 600 milliseconds.
Leave All
Timer
Leave All Timer sets the duration of the Leave All Period timer for GVRP in
milliseconds. Each port has a single Leave All Period timer. Leave All Timer must be
larger than Leave Timer; the default is 1000 milliseconds.
Priority Queue Assignment
IEEE 802.1p defines up to 8 separate traffic types by inserting a tag into a MAC-layer frame that
contains bits to define class of service. Frames without an explicit priority tag are given the default
priority of the ingress port. Use the next two fields to configure the priority level-to-physical queue
mapping.
The switch has eight physical queues that you can map to the 8 priority levels. On the switch, traffic
assigned to higher index queues gets through faster while traffic in lower index queues is dropped if the
network is congested.
Priority Level (The following descriptions are based on the traffic types defined in the IEEE 802.1d
standard (which incorporates the 802.1p).
Level 7
Typically used for network control traffic such as router configuration messages.
Level 6
Typically used for voice traffic that is especially sensitive to jitter (jitter is the
variations in delay).
Level 5
Typically used for video that consumes high bandwidth and is sensitive to jitter.
Level 4
Typically used for controlled load, latency-sensitive traffic such as SNA (Systems
Network Architecture) transactions.
Level 3
Typically used for “excellent effort” or better than best effort and would include
important business traffic that can tolerate some delay.
Level 2
This is for “spare bandwidth”.
Level 1
This is typically used for non-critical “background” traffic such as bulk transfers that
are allowed but that should not affect other applications and users.
Level 0
Typically used for best-effort traffic.
Apply
Click
Apply
to save the settings.
Cancel
Click
Cancel
to reset the fields to your previous configuration.
Summary of Contents for VES-1616F-44
Page 1: ...VES 1616F 1624F 44 VDSL Switch User s Guide Version 3 50 2 2007 Edition 2...
Page 9: ...VES 1616F 1624F 44 User s Guide 8 Customer Support...
Page 23: ...VES 1616F 1624F 44 User s Guide 22 List of Figures...
Page 27: ...VES 1616F 1624F 44 User s Guide 26 List of Tables...
Page 53: ...VES 1616F 1624F 44 User s Guide 52 Chapter 4 The Web Configurator...
Page 63: ...VES 1616F 1624F 44 User s Guide 62 Chapter 5 System Status and Port Statistics...
Page 93: ...VES 1616F 1624F 44 User s Guide 92 Chapter 7 VLAN...
Page 103: ...VES 1616F 1624F 44 User s Guide 102 Chapter 10 Spanning Tree Protocol...
Page 117: ...VES 1616F 1624F 44 User s Guide 116 Chapter 15 Port Authentication...
Page 139: ...VES 1616F 1624F 44 User s Guide 138 Chapter 18 Queuing Method...
Page 145: ...VES 1616F 1624F 44 User s Guide 144 Chapter 19 Classifier...
Page 150: ...VES 1616F 1624F 44 User s Guide Chapter 20 Policy 149 Figure 73 Policy Example...
Page 151: ...VES 1616F 1624F 44 User s Guide 150 Chapter 20 Policy...
Page 157: ...VES 1616F 1624F 44 User s Guide 156 Chapter 21 VLAN Stacking...
Page 165: ...VES 1616F 1624F 44 User s Guide 164 Chapter 22 Multicast...
Page 173: ...VES 1616F 1624F 44 User s Guide 172 Chapter 23 Multicast VLAN Registration...
Page 177: ...VES 1616F 1624F 44 User s Guide 176 Chapter 24 DHCP...
Page 181: ...VES 1616F 1624F 44 User s Guide 180 Chapter 25 Differentiated Services...
Page 182: ...VES 1616F 1624F 44 User s Guide Chapter 25 Differentiated Services 181...
Page 183: ...VES 1616F 1624F 44 User s Guide 182 Chapter 25 Differentiated Services...
Page 193: ...VES 1616F 1624F 44 User s Guide 192 Chapter 27 Maintenance...
Page 195: ...VES 1616F 1624F 44 User s Guide 194 Chapter 28 Diagnostic...
Page 199: ...VES 1616F 1624F 44 User s Guide 198 Chapter 29 Syslog...
Page 259: ...VES 1616F 1624F 44 User s Guide 258 Chapter 33 Command Examples...
Page 267: ...VES 1616F 1624F 44 User s Guide 266 Chapter 34 IEEE 802 1Q Tagged VLAN Commands...
Page 277: ...VES 1616F 1624F 44 User s Guide 276 Chapter 35 Troubleshooting...
Page 281: ...VES 1616F 1624F 44 User s Guide 280 Product Specifications...