ethernet Archives - TECHBLOGBOX https://www.techblogbox.com/tag/ethernet/ TECH ENTHUSIASM Fri, 27 Jan 2023 13:29:13 +0000 en-US hourly 1 https://wordpress.org/?v=6.3.2 https://www.techblogbox.com/wp-content/uploads/2023/08/cropped-TBB-logo-1-1-32x32.png ethernet Archives - TECHBLOGBOX https://www.techblogbox.com/tag/ethernet/ 32 32 How To Setup Or Enable Wake-On-LAN In Ubuntu https://www.techblogbox.com/enable-wake-on-lan/ Fri, 27 Jan 2023 06:41:12 +0000 https://www.techblogbox.com/?p=2855 Everybody wants everything to be automated, especially our homes, automobiles, and computers. The ideal technique...

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Everybody wants everything to be automated, especially our homes, automobiles, and computers. The ideal technique to automate turning on your PC is with wake-on-LAN. While this article focuses on enable Wake-on-LAN in Ubuntu, you may use it to help the feature in other Linux distributions and Windows.

What Is Wake-on-LAN?

Wake-on-LAN, sometimes known as WOL, is a function that enables network-based PC startup from another device. It accomplishes this by transmitting a little “magic” data packet from the host computer. This information can be obtained by the receiver computer’s network driver, instructing the device to turn on.

How to Enable Wake-on-LAN

The following command will activate Wake-on-LAN:

ethtool –change <Your ethernet interface name> wol g

By doing this, the service will be allowable, enabling network devices to turn on your PC. Enter the following commands in the terminal, Windows PowerShell, or command prompt to turn on the device utilizing this capability.

wakeonlan -i <IP Address> <MAC Address>

It will be able to turn on once using a magic packet, thanks to this. However, the service is disabled after the first use and is not activated at startup. You should ideally be able to turn it on every time.

Two-step WoL Setup

Wake-on-LAN can turn on any computer that receives the mysterious Packet, regardless of the operating system that the laptop subsequently boots into (Windows, Mac, Ubuntu, or another Linux distribution). The network interface card and BIOS must be compatible with the computer hardware to enable Wake-on-LAN.

Wake-on-LAN activation involves two steps. Before the operating system boots, the first configures the motherboard by setting up Wake-on-LAN through the BIOS, and the second signs in and makes adjustments there.

For all computers, the initial step in the BIOS setup is valid. However, after completing the configuration, skip to the instructions for your operating system, whether it be for Windows, Mac, or Linux.

Step 1: BIOS Setup

To enable WoL, you first need to configure the BIOS properly so that the software can wait for incoming activation requests.

1. Enter BIOS instead of booting your operating system.

2. Look for an energy-related section, e.g., B. Power Management. This may be in an advanced section. Other manufacturers might call it Resume On LAN, like on Mac.

Most BIOS screens have a help section along the side that describes what each setting does when enabled. The name of the WoL option in your computer’s BIOS may not be unique.

3. Once you find the WoL setting, press Enter to activate it immediately, or open a menu where you can toggle it on and off or toggle it on and off.

4. Save the changes. It’s not the same on all computers, but on many, the F10 key saves and exits the BIOS. At the bottom of the BIOS screen, save and exit instructions.

Step 2: Windows WoL Setup

Windows Wake-on-LAN is usually through Device Manager. There are a few different settings that can be allowable here:

  1. Open Device Manager.
  2. Find and open Network adapters. Ignore Bluetooth connections and virtual adapters. Double-click (or double-tap) Network Adapters or select the + or > button next to it to expand this section.
  3. Right-click or long-press the adapter associated with the active Internet connection. You might see examples of the Realtek PCIe GBE family controller or the Intel network connection, but this varies by computer.
  4. Choose Properties.
  5. Open the Advanced tab.
  6. In the Property section, select Wake on Magic Packet. If you can’t find it, go to step 8; Wake-on-LAN can still work.
  7. From the Value menu on the right, select Enabled.
  8. Open the Power Management tab. Depending on the version of Windows or the network card, it may be called Power.
  9. Check “Allow this device to wake the computer” and “Allow only a magic packet to wake the computer.” These settings may be in a section called Wake-on-LAN.
  10. Choose OK to save your changes and close the window. You can also close Device Manager.

How to Use Wake-on-LAN

Now that the computer is set up to use Wake-on-LAN, it needs a program that can send the Magic Packet required to trigger the boot process. Because TeamViewer is specifically careful with remote access, its WoL feature comes in handy when you need access to your computer while you’re away but forgot to turn it on before you left.

TeamViewer can use Wake-on-LAN in two ways. One uses the network’s public IP address and the other uses another TeamViewer account on the same network (assuming the other computer is straight on). This way, you can activate the computer without configuring the router ports since the other local computer that has TeamViewer installed can send the WoL request internally.

Another great Wake-on-LAN tool is Depicus, which works from various locations. You can use their WoL functionality through their website without downloading anything, but they also have a GUI and command line tool for Windows (free) and macOS, as well as Wake-on-LAN for Android and iOS.

Other free Wakes on LAN apps include Wake On LAN for Android and RemoteBoot WOL for iOS.

Frequently Asked Questions

Can I shut down my PC with Wake-on-LAN?

You can only wake your PC from sleep or shutdown state. There are methods to do this, and they don’t use wake-on-LAN.

Is it a security risk to enable Wake-on-LAN?

Only devices on the same network can wake up your device with Wake-on-LAN. Ubuntu also asks you to authenticate after turning it on. You can safely enable Wake-On-LAN if you avoid unsecured Wi-Fi networks.

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Do Ethernet Splitter Slow Down Speed? https://www.techblogbox.com/ethernet-splitter/ Fri, 27 Jan 2023 05:44:29 +0000 https://www.techblogbox.com/?p=2853 Ethernet switches, hubs, and splitters are a few of the network devices that help extend...

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Ethernet switches, hubs, and splitters are a few of the network devices that help extend a network. Small Ethernet splitters are the simplest of these devices. Ethernet splitters are small network devices that split an Ethernet signal into two parts. They are inexpensive and, at the same time, easier to use. They are also some of the simplest networking devices, as they do not require a power source and have no dedicated buttons or status lights on their body. There are only three Ethernet ports on this little device, two on one side and one on the other. Some types include a short Ethernet cable with an RJ45 connector and two Ethernet ports on the other. In this article, we will let you know what Ethernet Splitter slow down speed?

Even though splitters have been around for a long time in the networking world, many people still don’t know how to use them effectively. Contrary to popular belief, Ethernet splitters must always become in sets of two. Plugging one end of the splitter directly into the router, then plugging two devices into the splitter’s two Ethernet ports on the other end, will not work. There is a correct technique for configuring Ethernet splitters on a network to work correctly.

How To Use An Ethernet Splitter For A Simple Setup

Ethernet splitters are convenient for connecting two devices located in different rooms from the primary signal source. In most situations, they help keep cables and outlets away from the network and provide reliable connections. Ethernet splitters are sold in pairs at wholesale, as was already stated. A splitter combines two signals from one device (usually the router) while the other splits the signals into two channels, allowing two devices to communicate.

You have a router in Room A and two computers in Room B, but each room has only one Ethernet wall jack. In this scenario, you need a splitter, two cables connected to the router, the other end of the cable connected to the splitter, and one splitter connected to the outlet in Room A. The two cable routers come from there, and the signals are combined. Then click the side with one port to the wall outlet in Room B via the other splitter. The combined signal from Room A is now split in two, giving you two Ethernet ports for the two devices in Room B.

The benefit of the splitter is that it can significantly reduce the number of wall outlets and cables you may need for your setup. It helps you avoid “cable hell” by lowering the required ports/cables by a factor of 2.

The benefits and drawbacks of Ethernet splitters

Ethernet splitters can be helpful in some situations but also have some disadvantages. First, each Ethernet port can only provide a maximum speed of 100 Mbps. Due to this limitation, resources are not correctly more excellent on a network that can deliver more than 100 Mbps. Also, since the number of devices to connect to is limited to only two, Ethernet splitters aren’t the best option if you have more than two devices connected.

Also, if your router has a spare Ethernet port, using splitters would be impractical; some sacrifices must be thru. Although they reduce the cables needed to connect two networks, the arrangement still requires two splitters.

Ethernet splitters, on the other hand, have some advantages. They are much cheaper than traditional network devices and do not require complex configuration. Unlike other network devices, they do not require any software or format. In-home networks with fewer connected devices, e.g., Ethernet splitters, are an excellent option for a maximum of two devices in a room. Ethernet splitters are the best option when you only need a 100 Mbps connection and only need to connect two devices.

Ethernet splitters have been around for a long time, but as simple as they are, not much can be complete to improve them. They are still on the outdated Fast Ethernet standard, which may or may not be as relevant to today’s demand for higher speeds. Although they have their advantages, they are not a realistic solution in most cases. With today’s advances in technology, the future of Ethernet splitters remains bright. Some genius could upgrade it to a gigabit Ethernet standard.

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