How to enable DNS-over-HTTPS – Guide

The Domain Name System (DNS) is a hierarchical, decentralized naming system used to identify computers, services, and other resources available over the Internet or other Internet Protocol (IP) networks. Resource records contained in DNS associate domain names with other types of information. They are most commonly used to map friendly domain names to numeric IP addresses, requiring computers to locate services and devices using the underlying network protocols, but also to perform many other tasks. has been extended over time. The Domain Name System has been an essential component of Internet functionality since 1985. An analogy often used to explain the domain name system is that it acts as a phone book for the internet by translating friendly computer hostnames to IP addresses. For example, the domain name www.example.com is translated to the addresses 93.184.216.34 (IPv4) and 2606:2800:220:1:248:1893:25c8:1946 (IPv6). DNS can be quickly and transparently updated, allowing the location of a service on the network to be changed without affecting end users who continue to use the same hostname. Users take advantage of this when they use meaningful Uniform Resource Locators (URLs) and email addresses without knowing how the computer actually locates services. An important and ubiquitous role of DNS is its central role in distributed Internet services such as cloud services and content delivery networks. When a user accesses a distributed Internet service using a URL, the URL’s domain name is translated to the following IP address. A server adjacent to the user. The main functionality of the DNS used here is that different users can receive different translations for the same domain name, a major departure from the traditional phone- DNS book view. This process of using DNS to assign servers close to users is key to providing faster and more reliable responses on the internet and is widely used by most major internet services. DNS refers to the administrative accountability framework on the Internet. Each subdomain is an area of ​​administrative autonomy assigned to a manager. For regions operated by the Registry, administrative information is often supplemented by the Registry’s RDAP and WHOIS services. This data can be used to obtain information and track the liability of a particular web host.

Configure Secure DNS in Google Chrome

To get started with Google Chrome, load your browser’s security page by pasting the following URL into your browser’s address bar: chrome://settings/security. If you prefer to go there manually, select Menu > Settings > Privacy & security > Security. The “Use secure DNS” preference determines whether the feature is on or off. If it is off, toggle it to on. You have two main options at this point: The first option only works if the default DNS provider supports secure DNS. Many ISPs don’t, and it’s often best to choose a specific DNS provider from Chrome’s list of supported providers, or add a custom provider. Select the “Com” option and choose one of the predefined providers, OpenDNS, CleanBrowsing, Cloudflare, Google or NextDNS, or select Custom to add a custom provider using a URL (provided by the provider).

Configure Secure DNS in Microsoft Edge

Configuring Secure DNS in Microsoft Edge uses a similar system. Load edge://settings/privacy directly into your browser’s address bar or go to Menu > Settings > Privacy, Search and Services manually. The “Use secure DNS to specify how to look up network address for websites” determines whether Secure DNS is enabled. If it is off, toggle it to on. Edge uses the current service provider, i.e. the DNS provider defined in the system, by default. Switch to “Choose a service provider” and click the field below to choose a predefined provider or add a custom provider using a specific URL.

Configure Secure DNS in Brave Browser

Brave follows the standard Chromium implementation of Secure DNS for the most part. Load brave://settings/security into your browser’s address bar to get started, or select Menu > Settings > Privacy & Security manually instead of opening the settings page. The “Use secure DNS” setting determines whether secure DNS is enabled in the browser. By default, the system service provider is used. You can switch to “Com” to select one of the predefined providers or define a custom provider. Brave supports Quad9 alongside the default selection of providers supported by Chrome.

Configure secure DNS in Opera

Opera Browser also supports secure DNS, called DNS-over-HTTPS. Load opera://settings/?search=dns directly or go to the Opera Menu > Settings > Advanced > Browser and scroll down to the System preferences group. The “Use DNS over HTTPS instead of system DNS setting” preference determines whether secure DNS is enabled. If not, toggle the preference to get a selection of providers and an option to define a custom provider. Opera lists several Cloudflare options and only Google Public DNS.

Configure secure DNS in Vivaldi

Vivaldi follows the Chromium implementation. It’s a little weird that you can’t find the option when browsing the normal settings or searching for it in Settings. You need to load chrome://settings/security in the browser to display the option. There you find the option to toggle “Use secure DNS” to enable or disable the feature, and toggle between using your system provider, a predefined provider, or a custom provider. Like Brave, Vivaldi supports Quad9 alongside all other providers.

Configure DNS over HTTPS in Firefox

Firefox also supports DNS over HTTPS. Browser users need to load about:preferences#general in address bar and enable settings-button under Network Settings on the page that opens. The “Enable DNS over HTTPS” setting determines whether the feature is enabled or not. Check the box to enable it. Firefox only includes two predefined providers, Cloudflare and NextDNS, but it also has the option to define a custom provider.

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