How to Adjust Screen Brightness in Windows. Most Windows computer users need to adjust the screen brightness of their laptop or desktop computer monitor at some point.
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However, brightness settings are different, depending on what you have (desktop or laptop) and which graphic card you have (AMD, n. Vidia or something else). How to Adjust Screen Brightness on a Desktop Windows computer. Regardless of which version of Windows . To access it, right click on a desktop and pick n.
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Vidia Control Panel, AMD Control Panel (this depends on the manufacturer settings of your graphic card). The third way to change brightness on a Windows desktop PC is to install a third party program such as Power. Strip. How to Adjust Screen Brightness on a Laptop computer. On a laptop computers (in 9.
Windows version): Take a look at your laptop keyboard. Locate the “Fn” button (it is usually somewhere in the bottom left corner of the laptop keyboard); after that, locate the two little sun signs (often on function buttons on top of the keywords or the navigational cursor buttons).
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Buffer overrun detected problems may occur when software that is coded in C or C++ permits unsafe data. This problem happens with all operating systems, but it is particularly common on Windows operating systems. Buffer overrun detected?!! Hallo,bitte helft mir, bei mir erscheint derzeit dauernd ein fenster mit dem titel 'Microsoft V.
When you hit one sun button while you are holding the “Fn” button, your brightness will decrease, and when you hit the other . Repeat the steps until it gets bright enough. You can also change screen brightness on a laptop computer from within the Windows. Steps can be different, depending on which Windows version . Note that the steps bellow are for laptop computers, not for desktops.
Changing Screen Brightness on a Laptop with Windows XPStep 1 . If the computer has an ATI graphics card, click the “Color” menu tab. Step 5 . Set it up on desired value. Step 4 – Save settings and exit back to desktop. Changing Screen Brightness on a Laptop with Windows 8. Step 1 – With the mouse cursor hit the bottom left corner to open Menu.
Step 2 – Click on “Brightness” and set the slider to desired value. Step 3 – Exit back to desktop. If you have Windows 8.
Windows 2. 01. 2 Server NIC Teaming . This enables us to combine the bandwidth of every physical network card into the virtual network adapter, creating a single large network connection from the server to the network. Apart from the increased bandwidth, NIC Teaming offers additional advantages such as: Load balancing, redundant links to our network and failover capabilities. Running Windows or Linux Server under ESX or Hyper- V? Get an award- winning backup solution for Free! Download Now! Windows Hyper- V is also capable of taking advantage of NIC Teaming, which further increases the reliability of our virtualization infrastructure and the bandwidth available to our VMs. Figure 1. Network cards from the server can connect to different switches within our network.
Switch- independent teaming is preferred when bandwidth isn. When a failed network adapter returns to its normal operating mode, the standby member will return to its standby status. Switch- dependent teaming requires the switch to participate in the teaming process, during which Windows Server 2. For example, a server with four 1. Gbps network cards can be configured to create a single 4. Gbps connection to the network. Switch- dependent teaming supports two different modes: Generic or Static Teaming (IEEE 8.
Link Aggregation Control Protocol Teaming (IEEE 8. LACP). LACP is the default mode in which Windows NIC Teaming always operates. Load Balancing Mode - Load Distribution Algorithms. Load distribution algorithms are used to distribute outbound traffic amongst all available physical links, avoiding bottlenecks while at the same time utilizing all links.
When configuring NIC Teaming in Windows Server 2. Load Balancing Mode that makes use of one of the following load distribution algorithms: Hyper- V Switch Port: Used primarily when configuring NIC Teaming within a Hyper- V virtualized environment. When Virtual Machine Queues (VMQs) are used a queue can be placed on the specific network adapter where the traffic is expected to arrive thus providing greater flexibility in virtual environments. Address Hashing: This algorithm creates a hash based on one of the characteristics listed below and then assigns it to available network adapters to efficiently load balance traffic: Source and Destination TCP ports plus Source and Destination IP addresses.
Source and Destination IP addresses only. Source and Destination MAC addresses only. Distributes outgoing traffic based on a hash of the TCP Ports and IP addresses with real- time rebalancing allowing flows to move backward and forward between networks adapters that are part of the same group. Inbound traffic is distributed similar to the Hyper- V port algorithm. Dynamic: The Dynamic algorithm combines the best aspects of the two previous algorithms to create an effective load balancing mechanism. Both network adapters are connected to the same switch and configured with an IP address within the same subnet 1.
To begin, open Server Manager and locate the NIC Teaming section under Local Server: Figure 2. Locating NIC Teaming section in Server Manager Windows 2. Server. The lower right section of the NIC Teaming window displays the available network adapters that can be assigned to a new team. In our case these are two 1.
Mbps Ethernet adapters. From the TEAM area, select Tasks and then New Team from the dropdown menu to create a new NIC Team: Figure 3. Creating a new NIC Team in Windows Server 2. At the NIC Teaming window select the adapters to be part of the new NIC Team.
Ensure Teaming mode is set to the desired mode (LACP in our case) and Load balancing mode is set to Dynamic. The Standby Adapter option will be available when more than two network adapters are available for teaming. Optionally we can give the new NIC Team a unique name or leave it as is. Finally, we can select the default VLAN under the Primary Team Interface option (not shown below). When ready, click on OK to save the configuration and create the NIC Team: Figure 4. Configuring Teaming Mode, Load Balancing Mode and NIC Team members. Notice how the State of each network adapter is reported as Active .
Viewing NIC Teams, their status, speed, Teaming mode, Load balancing mode and more. As mentioned earlier, NIC Teaming creates a virtual adapter that combines the speed of all network adapters that are part of the NIC Team. As we can see below, Windows Server has created a 2. Mbps network adapter named Team- 1: Figure 6.
The newly created NIC Team Adapter in Windows 2. Server. We should note that the MAC address used by the virtual adapter will usually be the MAC address from either physical network adapters. Free Virtualization Backup with Award Winning Altaro Backup - Free Download Now! Cisco Catalyst Switch Configuration.
Depending on the type of NIC Teaming selected, the switch attached to the server might need to be configured. Cisco Catalyst switches fully support NIC Teaming and other types of link aggregation technologies through the use of Ether. Channel. Cisco Catalyst provides support of the Link Aggregation Control Protocol (LACP) which also happens to be the default aggregation protocol when configuring Ether. Channel. More Information on Cisco Switches and configuration articles can be found in our dedicated Cisco Switches section.
Create the Etherchannel interface by dedicating an equal number of switch ports to that of the physical network adapters participating in the NIC Teaming. The Port- Channel interface will be configured in Trunk mode for our example: interface Port- channel. Fast. Ethernet. 1/0/1switchport mode trunkchannel- group 1 mode activeswitchport trunk native vlan 2. Fast. Ethernet. 1/0/2switchport mode trunkchannel- group 1 mode activeswitchport trunk native vlan 2. Note: First create the Port- Channel interface and assign the physical interfaces to it using the channel- group 1 mode active command. After that, any commands entered under the Port- Channel interface will automatically be replicated to all port members (Fast.
Ethernet 1/0/1 & 1/0/2 in our example). In case VLAN Trunking support is required, do not forget to use the switchport mode trunk command to enable trunking and then switchport trunk native vlan X to configure the native VLAN for the Ether. Channel, replacing X with the necessary vlan number. Additional Information: Configure VLANs and Inter.
VLAN Routing on Cisco Catalyst switches. At this point, we are able to connect our server to the network. The show interface port- channel 1 command will provide a plethora of information about our Port- Channel, including bandwidth, interface members and other useful information: FCX- 3.
S# show interface port- channel 1. Port- channel. 1 is up, line protocol is up (connected)Hardware is Ether. Channel, address is 0. MTU 1. 50. 0 bytes, BW 2. Kbit, DLY 1. 00 usec, reliability 2. Encapsulation ARPA, loopback not set.
Keepalive set (1. Full- duplex, 2. 00. Mb/s, link type is auto, media type is unknowninput flow- control is off, output flow- control is unsupported Members in this channel: Fa.
Fa. 1/0/2 ARP type: ARPA, ARP Timeout 0. Last input never, output 0. Last clearing of . To read more on Cisco switches, make sure you visit our Cisco Technical Knowledgebase which contains technical articles on Cisco switches, routers, firewalls and IP Telephony. Back to Windows 2.