wholesale metaphysical jewelry supplies How to use grouping with advanced network services (ANS)?

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  1. wholesale chain for jewelry The download center contains the driver download for Intel 0.3 Ethernet adapter (including high -end network services (ANS) packet software). Please select your product at the download center and download the Windows version that supports your Windows version. There is no need to download the packet software separately, nor does it provide separate downloads. Install ANS packet softwarenBy default, high -level network services (ANS) are installed together with the Intel 0.3 Proset of Windows* device manager. See the screenshot below.nWhen you install the CD with the software or the downloaded software, you can choose to install ANS by installing the option. Because ANS is in the selected state by default, no special operation is required during installation. If the "Advanced Network Service" is canceled during installation, you need to modify the installation and select "Advanced Network Service" as the installation option. If your adapter supports a group, the "group" tab will appear in the Windows* device manager after installing the software. Use the "New Group" option to create a new group according to the guide.nIntel 0.3 PRO/100, Pro/1000, Pro/10GBE, Gigabit and Magazine adapters, and Intel 0.3 Gigabit CT desktop adapter supporting the group options. If you install at least one server adapter, the Intel desktop is suitable for the group option. The LAN adapter that has been selected as the most of the selected manufacturer has been connected to the LAN (LOM) connection on the motherboard. Note that in Microsoft Windows 7* and Windows Serve R2008 R2*, adapters that insert PCI* or PCI-X* slots do not support high-level network services (ANS) groups. If a group is created by supporting the group card, these adapters can be added to the group. Note that any ornament of Intel 0.3 PROSET packet wizard may be included in a group containing non -British adapters. Note that the Intel Pro/10GBE server adapter supports automatic load balancing (ALB), adapter fault tolerance (AFT), and switching fault tolerance (SFT). They may not be integrated with the Intel Pro/100 adapter. Note that the Intel 10D server adapter based on PCI-EXPRESS* supports the static link aggregation (SLA) group. These adapters in the group cannot be mixed with the Intel Pro/10GBE server adapter. Note that some advanced functions (including hardware unloading) will automatically disable to ensure the use of common function when non -British adapter becomes a member of the group. Note that the device that enables TOE (TCP uninstallation engine) cannot be added to the group and will not appear in a list of adapter. Note that on the switch port connected to the packet adapter, the generating tree protocol (STP) should be disabled to prevent data loss when the main adapter returns the service (failure recovery). In addition, the activation delay can be configured on the adapter to prevent data loss when using generating trees. Set "activation delay" on the "Advanced" tab of the group attribute. Note that not all group types are available on all operating systems. Note that the hot insertion operation of the non -British adapter in the group will cause system instability. We recommend that you restart the system or reload the group after performing hot insertion operations containing a group with non -British adapters. The packet function packet function includes fault transfer protection, increased bandwidth throughput aggregation, and traffic balance between members of the group. The group mode is AFT, SFT, ALB, receiving load balance (RLB), SLA and IEEE 802.3ad dynamic link aggregation.nThe functions of using Intel Advanced Network Connection Software (ANS) include: If the first adapter, its cable or link partner fails, use one or more adapter to take over the main adapter. This ensures that the server is reliably connected to the network.nThe link aggregation integrates multiple adapters to a channel to increase the bandwidth. Increased bandwidth can only be used when connected to multiple destination addresses. Only when the RLB, SLA and IEEE 802.3AD dynamic link aggregation mode provides two -way aggregation mode, the ALB mode provides transmission polymerization. The link aggregation mode requires the switch to support, and the ALB and RLB modes can be used for any switch.nLoad balance allocates transmission and receiving loads between the aggregate network adapter. The intelligent adaptation agent in the ANS driver continuously analyzes the server traffic and distributes the data packet according to the destination address. (In the IEEE 802.3AD mode, the switch provides the load balancing of the inlet data packet.)nNote: The load balance in the ALB mode occurs only in the third layer routing protocol (IP and NCP IPX). The load balance in the RLB mode only occurs in TCP/IP. Multi -point transmission, broadcasting, and non -routing protocols are transmitted only through the main adapter. The packet mode adapter fault tolerance (AFT) As long as there is at least one Intel 0.3 Pro server adapter in the group, the hybrid mode and the hybrid connection speed are allowed. The main adapter of the fault will pass its MAC and the third layer of address to the fault transfer (secondary) adapter. Scope of implementation: Microsoft Windows*, Network* 4.111 and above versions, unixware* 7.x and Linux* (32 -bit) with DDI8. All the adapters in the group should be connected to the same episode device or switch, and the SPANNNING TREE (STP) should be set to "Guan".nSwitch fault tolerance (SFT) uses two (total) adapter connected to the two switches, which can provide fault -tolerant network connections when the first adapter, cable or switch fails. This depends on the link failure. Do not place the client on a link partner switch because they will not pass to the partner switch when they fail. The generating tree (STP) must be set to "open".nNote: Only 802.3ad Dynamic mode allows fault transfer between groups.nAutomatic load balancing (ALB) transmits data to multiple destination addresses on multiple destinations on 2 to 8 ports, thereby increasing network bandwidth and at the same time, and at the same time, it has the fault tolerance function of the adapter. Only the main adapter receives the traffic flow, and only the main adapter transmits broadcast/multi -point transmission information and non -routing protocols. ANS software load transmits data based on the destination address, which can be used for any switch. Only when multiple addresses exist can transmission be performed at the same time. Scope of implementation: Microsoft Windows* 2000, Windows Server* 2003 and Windows NT 4; Netware 4.111 and above; Unixware 7.x and Linux with DDI8. This mode can be connected to any switch.nReceive load balance (RLB) allows to receive data from multiple addresses from 2 to 8 end ports, thereby increasing network bandwidth. It can only be used with ALB. By default, RLB will be enabled when configuring the RLB group. Only adapters connected at the fastest speed can be used for load balance entry TCP/IP traffic. Regardless of speed, the main adapter will receive all other RX traffic. Can be used for any switch. Any fault transfer will increase the network execution time until the ARP is reset. Only when receiving data from multiple clients will it occur at the same time. Suitable for Microsoft Windows. If you use netware*1 load balance, you can use ALB and RLB cannot be used. The virtual machine load balance (VMLB) provides transmission and receiving communication volume load balance to the virtual machine bound to the group interface, and provides fault tolerance when the switch port, cable or adapter fails. This group type is suitable for any switch. This driver analyzes the transmission and receiving load of each member adapter, and balances communication between members adapter. In the VMLB group, each virtual machine is the communication volume of its TX and RX, which is associated with a group member. If only one virtual network card is bound to the group, or if the Hyper-V is removed, the VMLB group will play the role of the AFT group.nNote that VMLB will not carry a load balance on the non -routing protocol (such as NetBeui and some IPX* traffic). Note that VMLB supports 2 to 8 ports per group. Note that you can use a hybrid speed adapter to create a VMLB group. Balance the load according to the minimum common standards of the adapter function and channel bandwidth. Intel link aggregation (LA), CISCO* Fast 6.4 (FEC) and GIG 6.4 (GEC) replaced it with a static link aggregation mode. IEEE 802.3AD implements this standard: SLA): The link aggregation of/Intel must be used for switches with 802.3AD, Fec/GEC/or Intel chain aggregation function. Dynamic mode requires switches with 802.3ad dynamic functions. The activity polymer in the software determines the members of the switch and ANS software (or switch). Each server has a maximum of 2 polymers, and you must choose the maximum bandwidth or the most adapter. Both 802.3AD modes include the fault tolerance and load balancing function of the adapter. But in the Dynamic mode, the load balance can only be in one group at a time. IEEE 802.3AD link aggregation (LAG): What functions it has and does not have any functions* provides more information below the available function and mode.nFunction mode dynamic 802.3ad fault tolerance XXXXX link aggregation XXXX load balancing TXTX/RXTX/RXTX/RX third layer address polymerization x is limited to ipxx second layer of the second layer of aggregation XX hybrid adaptation*xxx you can mix different adapters in any mode in any mode Type, but in the link aggregation mode, you must run all the adapter in the group at the same speed. The hybrid speed connection can be used for AFT, ALB, RLB and SFT mode. In Microsoft Windows, multi -supplier groups (MVT) are suitable for all modes. Setting (character) for AFT, SFT, ALB, and RLB mode, you can choose the main and secondary role for the selected adapter. The main adapter transmission is the largest. For AFT and SFT, it will be the only accessories used before the link failure. For any other protocols other than the ALB and non -routing protocols (IP or Novell IPX), it will be the only adapter to use. It is also the only appropriate accessory for broadcasting and multi -point transmission flow. For RLB, all other traffic except IP traffic, no matter what speed, is transmitted on the main adapter. If the main adapter is set by the user rather than the software, the faulty is allowed to return to the selected main adapter (if this priority adapter acts when the failure).nNote that if the main adapter is deleted from the group, the adapter should not be added before the server that deletes the adapter from it, because its MAC address has been assigned to the group. When the main adapter (or its cable or link partner) fails, the secondary adapter will become the main adapter (if possible). Test switch configuration: provides a utility in the "Advanced Settings Group" page (inside Intel Proset, which is located in the Windows device manager), ANS software can use this utility program to query the configuration settings to the switch partner. If the switch is different from the necessary settings of the group mode selected in the Intel Proset for Windows device manager, it will display the fault exclusion page in the Intel Proset for Windows device manager, listing possible correction measures. When running this test, the group will temporarily disconnect the network connection. See Intel Proset for Windows device manager to help to understand the relevant restrictions. Implementation precautions: The group is displayed as "virtual adapter". For Microsoft Windows, please use Intel Proset for Windows device manager to disable or delete virtual adapters. The use of "device manager" or "network and dial -up connection" may lead to serious consequences. To avoid unnecessary fault transfer, for all other modes except SFT, please disable the generating tree protocol (STP). Some operating systems are required to restart when they change any system configuration. Configure the group members to the same, otherwise it may affect the fault transfer and the function of the group, and cause serious consequences. The virtual adapter requires memory resources outside the actual physical adapter. In addition, when setting to the group, the physical adapter buffer or descriptor needs to be added. If RX or TX has a large traffic in the system, consider modifying the setting of basic adapter and virtual adapter. In one group, you can have up to 8 ports, although environmental factors (operating systems, CPUs, RAMs, bus, switch capabilities, etc.) may limit the advantages brought by additional adapter and determine the total throughput capacity. SFT can only use 2 adapters. For link aggregation/Fec/GEC/3ad, it must have a corresponding switch function to aggregate. 802.3Ad Dynamic mode can only be used for switches with activity aggregation functions. For the AFT and SFT mode, only one adapter at a time is in a state of activity. For ALB, only one adapter will receive IP or Netware1 IPX packets, and all adapters will transmit IP or Netware1 IPX packets (but will never be transmitted to the same destination address at the same time). No matter how many adapters are, the throughput of multiple addresses is always greater than the throughput of a single address. In a suitable operating system, the server adapter can be used in any group type. (For the list of operating systems, see the above group mode.) In most operating systems, the currently produced Intel 0.3 Pro/100 and PRO/1000 desktop adapters can be added to the group. (Please refer to the user guide).nIntel Pro/100 smart server adapters can only be divided into one group with other smart server adapters. Please use only the software (version 3.x) specified for the adapter. In Windows NT 4.0, each adapter has a timer to prevent the adapter that does not work in the group that cannot be guided to desktop machines. If you use a mixed speed adapter (PRO/100 and Pro/1000) and use a group and a large number of VLAN, you may encounter a situation where the loading time is longer than the timer limit.

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