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    <title><![CDATA[StreamingMeme — CDN77 coverage]]></title>
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    <description><![CDATA[Articles mentioning CDN77.]]></description>
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      <title><![CDATA[StreamingMeme — CDN77 coverage]]></title>
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    <item>
      <title><![CDATA[IO River Top-Ranks vCDN Market Report Amid Strategic Multi-Edge Shift]]></title>
      <link><![CDATA[https://itwire.com/guest-articles/guest-opinion/6-top-virtual-cdn-vcdn-providers-for-2026]]></link>
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      <pubDate>Fri, 10 Jul 2026 00:00:00 GMT</pubDate>
      <category><![CDATA[VIDEO_DELIVERY_AND_CDN]]></category>
      <description><![CDATA[This industry analysis explores the rise of virtual CDN (vCDN) providers in 2026, highlighting software-defined delivery models and multi-CDN orchestration. The article profiles six providers—IO River, Gcore, CDN77, Medianova, Bunny.net, and CacheFly—based on their ability to improve traffic routing, failover, and observability for streaming and media teams.]]></description>
      <content:encoded><![CDATA[This industry analysis explores the rise of virtual CDN (vCDN) providers in 2026, highlighting software-defined delivery models and multi-CDN orchestration. The article profiles six providers—IO River, Gcore, CDN77, Medianova, Bunny.net, and CacheFly—based on their ability to improve traffic routing, failover, and observability for streaming and media teams.]]></content:encoded>
      <dc:creator><![CDATA[iTWire]]></dc:creator>
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      <title><![CDATA[CDN77 details ZooKeeper performance hit caused by stale data parts]]></title>
      <link><![CDATA[https://www.cdn77.com/blog/the-mysterious-zookeeper-wait]]></link>
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      <pubDate>Tue, 30 Jun 2026 08:31:38 GMT</pubDate>
      <category><![CDATA[VIDEO_DELIVERY_AND_CDN]]></category>
      <description><![CDATA[CDN77 engineering details an incident involving a performance degradation in their ClickHouse data pipeline caused by unexpected ZooKeeper load. The issue was triggered by a specific combination of stale client machines sending unmerged data, which led to excessive partitioning and heavy coordination traffic.]]></description>
      <content:encoded><![CDATA[CDN77 engineering details an incident involving a performance degradation in their ClickHouse data pipeline caused by unexpected ZooKeeper load. The issue was triggered by a specific combination of stale client machines sending unmerged data, which led to excessive partitioning and heavy coordination traffic.]]></content:encoded>
      <dc:creator><![CDATA[CDN77]]></dc:creator>
      <author><![CDATA[CDN77]]></author>
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      <title><![CDATA[Low-latency HTTP streaming protocols enable sub-second video delivery at scale]]></title>
      <link><![CDATA[https://www.cdn77.com/blog/low-latency-http-live-streaming]]></link>
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      <pubDate>Mon, 22 Jun 2026 08:46:54 GMT</pubDate>
      <category><![CDATA[VIDEO_DELIVERY_AND_CDN]]></category>
      <description><![CDATA[This technical explainer by CDN77 details the configuration and protocol optimizations required to achieve sub-5-second or sub-1-second latency using HLS and MPEG-DASH. It highlights key trade-offs in segment duration, transfer encoding, manifest index fetching, and playback buffers.]]></description>
      <content:encoded><![CDATA[This technical explainer by CDN77 details the configuration and protocol optimizations required to achieve sub-5-second or sub-1-second latency using HLS and MPEG-DASH. It highlights key trade-offs in segment duration, transfer encoding, manifest index fetching, and playback buffers.]]></content:encoded>
      <dc:creator><![CDATA[CDN77]]></dc:creator>
      <author><![CDATA[CDN77]]></author>
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      <title><![CDATA[CDN77 caps overage fees at base unit rates to improve predictability]]></title>
      <link><![CDATA[https://www.cdn77.com/blog/high-overage-fees-rigid-commitments-are-passe-at-cdn77]]></link>
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      <pubDate>Mon, 22 Jun 2026 08:34:43 GMT</pubDate>
      <category><![CDATA[VIDEO_DELIVERY_AND_CDN]]></category>
      <description><![CDATA[CDN77 has restructured its delivery pricing model by capping traffic overage fees at the baseline unit rate of a client's plan and allowing monthly plan modifications. This policy has been expanded across all monthly, custom, and high-volume billing tiers to offer streaming providers more predictable content delivery costs.]]></description>
      <content:encoded><![CDATA[CDN77 has restructured its delivery pricing model by capping traffic overage fees at the baseline unit rate of a client's plan and allowing monthly plan modifications. This policy has been expanded across all monthly, custom, and high-volume billing tiers to offer streaming providers more predictable content delivery costs.]]></content:encoded>
      <dc:creator><![CDATA[CDN77]]></dc:creator>
      <author><![CDATA[CDN77]]></author>
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      <title><![CDATA[CDN77 adds gQUIC support to reduce streaming latency and buffering]]></title>
      <link><![CDATA[https://www.cdn77.com/blog/gquic-support-road-to-http3]]></link>
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      <pubDate>Mon, 22 Jun 2026 08:32:44 GMT</pubDate>
      <category><![CDATA[VIDEO_DELIVERY_AND_CDN]]></category>
      <description><![CDATA[Content delivery network provider CDN77 has enabled support for Google's gQUIC protocol in its customer control panel. The update serves as an interim step toward full integration of the upcoming, standardized IETF QUIC and HTTP/3 protocols designed to reduce streaming latency and head-of-line blocking.]]></description>
      <content:encoded><![CDATA[Content delivery network provider CDN77 has enabled support for Google's gQUIC protocol in its customer control panel. The update serves as an interim step toward full integration of the upcoming, standardized IETF QUIC and HTTP/3 protocols designed to reduce streaming latency and head-of-line blocking.]]></content:encoded>
      <dc:creator><![CDATA[cdn77]]></dc:creator>
      <author><![CDATA[cdn77]]></author>
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      <title><![CDATA[CDN77 launches WebAssembly-powered Edge Computing for request-level customization]]></title>
      <link><![CDATA[https://www.cdn77.com/blog/empowering-control-with-edge-computing]]></link>
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      <pubDate>Mon, 22 Jun 2026 08:30:45 GMT</pubDate>
      <category><![CDATA[VIDEO_DELIVERY_AND_CDN]]></category>
      <description><![CDATA[CDN77 has launched its Edge Computing platform in beta, allowing clients to run custom WebAssembly code and handle HTTP request transformations directly on edge servers. The system integrates Wasmtime into their existing Nginx and OpenResty architecture to execute code with minimal latency overhead.]]></description>
      <content:encoded><![CDATA[CDN77 has launched its Edge Computing platform in beta, allowing clients to run custom WebAssembly code and handle HTTP request transformations directly on edge servers. The system integrates Wasmtime into their existing Nginx and OpenResty architecture to execute code with minimal latency overhead.]]></content:encoded>
      <dc:creator><![CDATA[CDN77]]></dc:creator>
      <author><![CDATA[CDN77]]></author>
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    <item>
      <title><![CDATA[CMAF benchmarks reveal major VOD storage savings and caching gains]]></title>
      <link><![CDATA[https://www.cdn77.com/blog/cmaf-vod-workflow]]></link>
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      <pubDate>Mon, 22 Jun 2026 08:24:54 GMT</pubDate>
      <category><![CDATA[VIDEO_DELIVERY_AND_CDN]]></category>
      <description><![CDATA[CDN77 outlines the technical and financial advantages of integrating the Common Media Application Format (CMAF) into VOD workflows, highlighting storage savings and enhanced CDN caching. The analysis also explores remaining roadblocks to wider adoption, specifically the device compatibility issues surrounding unified multi-DRM deployment via AES-128 CBC encryption.]]></description>
      <content:encoded><![CDATA[CDN77 outlines the technical and financial advantages of integrating the Common Media Application Format (CMAF) into VOD workflows, highlighting storage savings and enhanced CDN caching. The analysis also explores remaining roadblocks to wider adoption, specifically the device compatibility issues surrounding unified multi-DRM deployment via AES-128 CBC encryption.]]></content:encoded>
      <dc:creator><![CDATA[CDN77]]></dc:creator>
      <author><![CDATA[CDN77]]></author>
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      <title><![CDATA[CDN77 hits 50 Tbps capacity milestone and outlines 400G Ethernet transition]]></title>
      <link><![CDATA[https://www.cdn77.com/blog/cdn77-reaches-50tbps-network-capacity]]></link>
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      <pubDate>Mon, 22 Jun 2026 08:22:54 GMT</pubDate>
      <category><![CDATA[VIDEO_DELIVERY_AND_CDN]]></category>
      <description><![CDATA[CDN77 has announced that its global network capacity has crossed the 50 Tbps threshold, handling daily traffic peaks of up to 25 Tbps. To optimize costs and scale performance further, the CDN provider plans to transition its core points of presence (PoPs) to 400G Ethernet.]]></description>
      <content:encoded><![CDATA[CDN77 has announced that its global network capacity has crossed the 50 Tbps threshold, handling daily traffic peaks of up to 25 Tbps. To optimize costs and scale performance further, the CDN provider plans to transition its core points of presence (PoPs) to 400G Ethernet.]]></content:encoded>
      <dc:creator><![CDATA[CDN77]]></dc:creator>
      <author><![CDATA[CDN77]]></author>
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      <title><![CDATA[BBRv1 outperforms BBRv2 in CDN77's global QUIC delivery benchmarks]]></title>
      <link><![CDATA[https://www.cdn77.com/blog/analyzing-quic-traffic-for-dynamic-content-deliver]]></link>
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      <pubDate>Mon, 22 Jun 2026 08:18:53 GMT</pubDate>
      <category><![CDATA[VIDEO_DELIVERY_AND_CDN]]></category>
      <description><![CDATA[CDN77 conducted live experiments to optimize dynamic content delivery using the QUIC protocol, comparing the performance of Cubic, BBRv1, and BBRv2 congestion control algorithms across global Points of Presence. The study revealed that BBRv1 achieved a larger congestion window size (CWND) and outperformed BBRv2 in Europe, North America, and the Middle East, while BBRv2 performed better in Asia by maintaining a more stable connection window.]]></description>
      <content:encoded><![CDATA[CDN77 conducted live experiments to optimize dynamic content delivery using the QUIC protocol, comparing the performance of Cubic, BBRv1, and BBRv2 congestion control algorithms across global Points of Presence. The study revealed that BBRv1 achieved a larger congestion window size (CWND) and outperformed BBRv2 in Europe, North America, and the Middle East, while BBRv2 performed better in Asia by maintaining a more stable connection window.]]></content:encoded>
      <dc:creator><![CDATA[CDN77]]></dc:creator>
      <author><![CDATA[CDN77]]></author>
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      <title><![CDATA[OpenMOQ Software Consortium | Advancing MOQ Protocol]]></title>
      <link><![CDATA[https://openmoq.org/]]></link>
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      <pubDate>Thu, 14 May 2026 06:05:14 GMT</pubDate>
      <category><![CDATA[REGULATORY_AND_POLICY]]></category>
      <description><![CDATA[The OpenMOQ Software Consortium has formed to advance the Media Over QUIC (MOQ) protocol, an open-source publish-subscribe protocol designed for tunable latency streaming. Charter members include Akamai, CDN77, Cisco, Red5, Synamedia, and YouTube, alongside other standard and academic members, collaborating on implementations based on IETF QUIC and WebTransport standards.]]></description>
      <content:encoded><![CDATA[The OpenMOQ Software Consortium has formed to advance the Media Over QUIC (MOQ) protocol, an open-source publish-subscribe protocol designed for tunable latency streaming. Charter members include Akamai, CDN77, Cisco, Red5, Synamedia, and YouTube, alongside other standard and academic members, collaborating on implementations based on IETF QUIC and WebTransport standards.]]></content:encoded>
      <dc:creator><![CDATA[Openmoq]]></dc:creator>
      <author><![CDATA[Openmoq]]></author>
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