V3 Single

Universal Linear Single Ku-band LNB

Complete the form below to receive a response within 24 hours.

Description

The Universal Linear Single Ku-band LNB is engineered for high-performance satellite reception with compliance to DVB-S2 standards, supporting both HD and UHD content. Designed with advanced features such as a low noise figure and low power consumption, this LNB ensures excellent signal quality and efficiency. Its high cross-polarization isolation and frequency stability make it ideal for diverse environmental conditions, while the UV-resistant weather protection housing, complete with a custom-fit cap, offers exceptional durability against extreme temperatures and UV exposure.

This LNB is perfect for satellite television enthusiasts looking for reliable, high-quality performance that adapts seamlessly to various installations and climate conditions.

Specifications

Item Specification Item Specification
Input Frequency Range Low Band:10.70~11.70GHz Gain Flatness ±0.5dB/27MHz
High Band:11.70~12.75GHz Cross POL. Isolation 20dB(Min.)
Output Frequency Range Low Band:950~1950MHz Image Rejection 40dB(Min.)
High Band:1100~2150MHz Output VSWR 2.0:1(Typ.)
L.O. Frequency Low Band:9.75GHz P1dB 0dBm (Min.)
High Band:10.60GHz DC Current Consumption 100mA(Typ.)
L.O. Frequency Stability ±1.0MHz (Max.)@+25℃ Low/High Band Switching Low Band:0Hz
±2.0 MHz (Max.)@-30~+70℃ High Band:22KHz±4KHz
L.O. Phase Noise -75dBc/Hz@1KHz POL. Switching Voltage 10.5~14.0V @Vertical
-80dBc/Hz@10KHz 16.0~20.0V @Horizontal
-90dBc/Hz@100KHz Relative Humidity 0%~95%
Conversion Gain 60dB(Typ.) Operating Temperature -30~+70℃
Noise Figure 0.3dB(Typ.) Connector Type 75Ω Female Connector

Additional Information

  • Extremely heat and cold resistant
  • High-frequency stability
  • UV-resistant weather protection housing

Product Inquiry Form

Share your requirements and our team will connect you with the supplier. Submit your request and we'll follow up within one business day.

Follow-up preferences
Thanks, your message was submitted successfully.