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  2. IPv6 deployment - Wikipedia

    en.wikipedia.org/wiki/IPv6_deployment

    Microsoft Windows XP (2001) supports IPv6 for developmental purposes. In Windows XP SP1 (2002) and Windows Server 2003, IPv6 is included as a core networking technology, suitable for commercial deployment. [24] IBM z/OS supports IPv6 since version 1.4 (general availability in September 2002). [25] 2003

  3. Comparison of IPv6 support in operating systems - Wikipedia

    en.wikipedia.org/wiki/Comparison_of_IPv6_support...

    Windows XP users can use Dibbler, an open source DHCPv6 implementation. --update: Windows XP fully supports IPv6- but NOT IPv6 DNS queries (nslookup) [30] 6.x (Vista, 7, 8, 8.1), 10 RTM-Anniversary Update: Yes [31] Yes Yes [9] No rdnssd-win32 provides an open source implementation of ND RDNSS [32] 10 Creators Update and later Yes [31] Yes Yes ...

  4. Comparison of IPv6 support in common applications - Wikipedia

    en.wikipedia.org/wiki/Comparison_of_IPv6_support...

    Windows 11 Yes Supports IPv6 addresses under Windows using brackets as [IPv6]:port Windows File Explorer: Windows Tested with Windows 7–10, maybe XP: Yes Supports IPv6 addresses in the address field, using \\fe80--abcd-eff0.ipv6-literal.net using dashes instead of colons. Microsoft Exchange Server [1] Windows 2013+ Yes Internet Explorer [1 ...

  5. IPv6 rapid deployment - Wikipedia

    en.wikipedia.org/wiki/IPv6_rapid_deployment

    6rd is a mechanism to facilitate IPv6 rapid deployment across IPv4 infrastructures of Internet service providers (ISPs).. The protocol is derived from 6to4, a preexisting mechanism to transfer IPv6 packets over the IPv4 network, with the significant change that it operates entirely within the end-user's ISP network, thus avoiding the major architectural problems inherent in the design of 6to4.

  6. 6to4 - Wikipedia

    en.wikipedia.org/wiki/6to4

    6to4 is especially relevant during the initial phases of deployment to full, native IPv6 connectivity, since IPv6 is not required on nodes between the host and the destination. However, it is intended only as a transition mechanism and is not meant to be used permanently.

  7. Microsoft Deployment Toolkit - Wikipedia

    en.wikipedia.org/wiki/Microsoft_Deployment_Toolkit

    Microsoft Deployment Toolkit (MDT; originally released as Business Desktop Deployment in August 2003 [2] [3]) is a free software package from Microsoft for automating the deployment of Windows 10, Server 2019 and older Windows Server and desktop operating systems.

  8. IPv6 transition mechanism - Wikipedia

    en.wikipedia.org/wiki/IPv6_transition_mechanism

    NAT64 is a mechanism to allow IPv6 hosts to communicate with IPv4 servers. The NAT64 server is the endpoint for at least one IPv4 address and an IPv6 network segment of 32-bits, e.g., 64:ff9b:: / 96. [3] The IPv6 client embeds the IPv4 address with which it wishes to communicate using these bits, and sends its packets to the resulting address.

  9. Teredo tunneling - Wikipedia

    en.wikipedia.org/wiki/Teredo_tunneling

    Windows 10 version 1803 and later disable Teredo by default. If needed, this transitional technology can be enabled via a CLI command or Group Policy. [11] Miredo is a client, relay, and server for Linux, *BSD, and Mac OS X, ng_teredo is a relay and server based on netgraph for FreeBSD from the LIP6 University and 6WIND. [13] [citation needed]