High Isolation HL-CWDM Mux Demux Module Multiplexer With 8 Channel

فيديوهات أخرى
December 06, 2021
قصيرة: Discover the 1470 - 1530 nm LGX Box CWDM Mux Demux Module, a 4-channel solution with LC/APC connectors. Ideal for CWDM systems, PON networks, and CATV links, this module offers low insertion loss, high isolation, and compact design. Perfect for high-reliability applications.
خصائص المنتج ذات الصلة:
  • Low Insertion Loss ensures minimal signal degradation.
  • High Isolation reduces crosstalk between channels.
  • Compact Design saves space in network setups.
  • Wide Operating Wavelength from 1260nm to 1620nm.
  • High Reliability and Stability for long-term performance.
  • Good channel-to-channel uniformity for consistent signal quality.
  • Wide Operating Temperature range from -40°C to 85°C.
  • LC/APC Connectors provide secure and low-loss connections.
الأسئلة:
  • What is the operating wavelength range of this CWDM Mux Demux Module?
    The module operates within a wide wavelength range from 1260nm to 1620nm, making it versatile for various applications.
  • What types of connectors are available for this module?
    This module comes with LC/APC connectors, but other connector types like SC/APC or FC/PC can also be specified based on requirements.
  • What is the maximum power handling capacity of the module?
    The module can handle up to 300mW of power, ensuring robust performance in high-power applications.
فيديوهات ذات صلة

HL-QSFP200G-SR4 200G QSFP56 SR4 Optical Transceiver

وحدة جهاز الإرسال والاستقبال البصري
November 20, 2025

800G OSFP112 DR8 transceiver, dual MPO-12 APC interface, 1310nm, up to 500m

وحدة جهاز الإرسال والاستقبال البصري
November 20, 2025

10G SFP+ to SFP+ Passive Direct Attach DAC Fiber Optic Cable 1M 10G DAC Cable

توصيل مباشر للكابلات النحاسية
November 20, 2025

2m SFP-H10GB-CU2M 10G SFP + كابل مباشر سلبي نحاسي Twinax DAC

توصيل مباشر للكابلات النحاسية
April 27, 2025

100G QSFP28 SR BiDi OM4 MMF 100m LC جهاز الاستقبال البصري

وحدة جهاز الإرسال والاستقبال البصري
September 15, 2025