OPR-NH1600N 16 Channels H.264 HDMI Encoder


OPR-NH1600N 3RU H.264 HDMI IP Streaming Encoder - with 1-16 Channels / Pcs HDMI Encoder Cards, it is a HD audio & video encoding device with powerful functionality, which supports input HDMI max resolution at 1920x1080@60fps, and output stream resolution to 1080P@60fps, etc. This Encoder works with HTTP / HLS / FLV / RTSP / RTMP(S) / UDP/RTP (Unicast/Multicast) Stream Protocols and ONVIF. It also works with online live broadcast platform, such as YouTube, Facebook, Ustream, Twitter, etc.


Product features

1. Support 1-16 HDMI input and encoding simultaneously. 

2. Adopts professional encoding chip, embedded HiLinux System, high stability and efficiency.

3. Friendly Web Control UI, default IP is 192.168.1.168.

4. Support HTTP / HLS / FLV / RTSP / RTMP(S) / UDP/RTP (Unicast/Multicast) Stream Protocols and ONVIF.

5. Support output Multi RTMP(S) (Main stream & Sub stream) to different Media Streaming Server.

6. Provide custom resolutions, Main Stream Preset Resolutions - 1920x1080, 1680x1200, 1600x900, 1440x1050, 1440x900, 1360x768, 1280x720, 1280x800, 1280x768, 1024x768, 1024x576, 960x540, 850x480, 800x600, 720x576, 720x540, 720x480, 720x404, 704x576, 640x480, 640x360, 480x270, etc.

7. Support Text and image insert as Stream Logo for Main stream & Sub stream.

8. Automatic detect the input video signals, output stream will show no signals when input signals interrupted.

9. Output Stream bitrate adjustable.

10. Support Audio digital gain.

11. Support remote control via router port forward. 

12. 1U chassis available, max supports 4Pcs Encoder card installed.


Comments

  1. This article introduces the OPR-NH1600N H.264 HDMI IP Streaming Encoder and explains how modern streaming devices efficiently encode, process, and transmit high-definition audio and video over IP networks. The support for multiple HDMI channels, H.264 encoding, RTMP, RTSP, HLS, UDP/RTP protocols, and live streaming platforms such as YouTube and Facebook demonstrates how video streaming technologies enable scalable and real-time multimedia communication across different applications.

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  2. Understanding codecs, audio compression, signal processing, and multimedia transmission is an important aspect of Audio Processing Projects. Practical exposure to these concepts helps students develop intelligent audio analysis systems, speech enhancement solutions, and real-time multimedia applications used in modern communication and entertainment technologies.

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  3. The article also highlights how efficient video encoding and streaming technologies are essential for delivering high-quality visual content across digital platforms. Exploring Video Processing Projects can help students gain hands-on experience in video compression, streaming architectures, video enhancement, and advanced multimedia processing techniques used in next-generation media applications.

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