Introducing the STARGOLD SG-17K Satellite LNB, designed to deliver high performance and optimal signal quality for your satellite television setup. This Anti Wimax C-BAND LNB provides superior image rejection and is compatible with various satellite dishes, ensuring reliable reception and clear signals.
Key Features:
- High-Performance Anti Wimax C-BAND LNB: The SG-17K is engineered to resist interference, offering exceptional signal quality and stability.
- Wide Compatibility: Suitable for 13, 15, 21, 25, and 54 degrees auto-selection, allowing for flexible use with a range of satellite dishes.
- Input Frequency: Operates in the 3.7∼4.2 GHz range, covering a wide frequency spectrum to capture satellite signals effectively.
- Output Frequency: Converts signals to the 950∼1450 MHz/1550-2050MHz range, ensuring compatibility with most satellite receivers.
- L.O. Frequency and Stability: With a local oscillator frequency of 5.15 GHz ± 1 MHz, the SG-17K maintains high stability, with a tolerance of ±2.0 MHz in extreme temperature conditions (-40 ℃ ~ +70 ℃).
- Conversion Gain: Offers a minimum gain of 65 dB, ensuring strong signal reception even in challenging environments.
- Image Rejection: Provides an impressive image rejection rate of 45 dB, minimizing unwanted signal interference.
- Output Connector: Features a standard "F" type female connector with a 75-ohm impedance for easy installation and secure connections.
Specifications:
- Brand: STARGOLD
- SKU: SG-17K
- Input Frequency: 3.7∼4.2 GHz
- Output Frequency: 950∼1450 MHz/1550-2050MHz
- L.O. Frequency: 5.15 GHz ± 1 MHz
- Stability: ±2.0 MHz
- Conversion Gain: 65 dB (MIN)
- Gain Flatness: ±0.5 dB/36 MHz
- Image Rejection: 45 dB
- Output Connector: "F" TYPE FEMALE 75 Ω
The STARGOLD SG-17K Satellite LNB is designed for robust and reliable performance, ensuring high-quality satellite signals with minimal interference. Its anti-Wimax technology and wide frequency range make it a versatile choice for both home and commercial satellite systems, providing consistent performance under varying conditions.