New Hot Selling Modern Elevator Parts Elevator Control Inverter Board Elevator KP-LS2K-V2.2

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August 20, 2025
Category Connection: Elevator PCB Board
Brief: Discover the SULAB Elevator Control Inverter Board KP-LS2K-V2.2, a modern and hot-selling elevator part designed for superior performance. This advanced control board supports high-resolution HDMI video input, multiple audio formats, and versatile interface configurations. Ideal for elevator systems, it features a decentralized Linux architecture, ensuring reliability and scalability. Learn more about its cutting-edge features and applications in this video.
Related Product Features:
  • Supports HDMI video input with a maximum resolution of 3840x2160@30Hz and adaptive input signal resolution.
  • Compatible with AAC, G711a, G711U audio formats and offers CBR/VBR with adjustable frame rates (1-60fps).
  • Features multiple control interfaces including RS232, RS485, three IR channels, and one IO channel.
  • Equipped with standard RJ45 and SPF fiber optic ports, supporting 1000Mbps full-duplex network speed.
  • Utilizes a Linux distributed architecture for decentralized, scalable, and independent node operation.
  • Supports OSD overlays for device name, time, and station logo, with automatic EDID recognition and HDCP.
  • Includes USB port for remote file transfer, audio input, and file copying via USB flash drive.
  • Offers programmable storage capabilities for automatic recovery to pre-power-off state after outages.
Faqs:
  • What video resolutions does the KP-LS2K-V2.2 support?
    The KP-LS2K-V2.2 supports HDMI video input with a maximum resolution of 3840x2160@30Hz and is backward compatible with adaptive input signal resolution.
  • What audio formats are compatible with this elevator control board?
    This board supports AAC, G711a, G711U audio formats, along with CBR/VBR and adjustable frame rates from 1-60fps.
  • How does the decentralized Linux architecture benefit the system?
    The Linux distributed architecture allows for scalable, independent node operation without a central server, reducing system risks and maintenance costs while supporting expansion to any number of nodes.