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KA-Band Single LNB with 19.7-20.2GHz Frequency Range, 1.2dB Noise Figure, and Linear & Circular Polarization for Satellite Links

KA-Band Single LNB with 19.7-20.2GHz Frequency Range, 1.2dB Noise Figure, and Linear & Circular Polarization for Satellite Links

สถานที่กำเนิด:

จีน

ชื่อแบรนด์:

SETON

ได้รับการรับรอง:

CE, ISO, RoHS

หมายเลขรุ่น:

KA-แบนด์ LNB เดี่ยว

พูดคุยกันตอนนี้
ขอคําอ้างอิง
รายละเอียดสินค้า
ช่วงความถี่อินพุต:
19.7GHz ~ 20.2GHz
ช่วงความถี่เอาท์พุต:
950เมกะเฮิร์ตซ์~ 1450เมกะเฮิร์ตซ์
ความถี่ต่ำ:
21.15GHz
รูปเสียงรบกวน:
1.2dB (typ.)/ 1.8dB (สูงสุด)
กำไรการแปลง:
55dB ~ 65dB/ 60dB (พิมพ์)
เงื่อนไขการชําระเงินและการจัดส่ง
จำนวนสั่งซื้อขั้นต่ำ
1,000 ชิ้น
รายละเอียดการบรรจุ
กล่องกระดาษ
เวลาการส่งมอบ
30-35 วัน
เงื่อนไขการชำระเงิน
ที/ที, เวสเทิร์นยูเนี่ยน
สามารถในการผลิต
15 ล้านชิ้น
คําอธิบายสินค้า
KA-Band Single LNBF
Precision Downconversion for High-Throughput Satellite Links

Your Gateway to Reliable KA-Band Reception
Customizable frequency plans | Dual polarization ready | Engineered for stability from -30°C to +60°C

KA-Band Single LNB with 19.7-20.2GHz Frequency Range, 1.2dB Noise Figure, and Linear & Circular Polarization for Satellite Links 0

01 Product Overview 

As satellite communication migrates to higher frequencies, KA-band (19.7–20.2 GHz) offers wider bandwidth and higher throughput — but demands tighter performance. This KA-Band Single LNBF downconverts the incoming KA-band signal to a usable L-band output (950–1450 MHz) with excellent phase noise stability, low noise figure, and flexible polarization support. It is an ideal building block for broadband VSAT, airborne connectivity, and high‑reliability trunking links.

KA‑band performance you can count on — in the field, on the move, or in extreme weather.

KA-Band Single LNB with 19.7-20.2GHz Frequency Range, 1.2dB Noise Figure, and Linear & Circular Polarization for Satellite Links 1

02 Key Features at a Glance

KA-Band Single LNB with 19.7-20.2GHz Frequency Range, 1.2dB Noise Figure, and Linear & Circular Polarization for Satellite Links 2KA-Band Single LNB with 19.7-20.2GHz Frequency Range, 1.2dB Noise Figure, and Linear & Circular Polarization for Satellite Links 3


03 Technical Specifications
Parameter Specification
Input Frequency Range 19.7GHz ~ 20.2GHz
Output Frequency Range 950MHz ~ 1450MHz
LO frequency 21.15GHz
Noise Figure 1.2dB (Typ.)/ 1.8dB (Max.)
LO Initial Accuracy 0.5MHz
LO Temperature Drift (-30~+60℃) 0.75MHz
LO phase noise @ 1 KHz -60dBc/Hz
LO phase noise @ 10 KHz -80dBc/Hz
LO phase noise @ 100 KHz -90dBc/Hz
Conversion Gain 55dB~65dB/ 60dB (Typ.)
Gain Flatness 2.5dB (Max.)
Gain Variation 0.5dB/26 MHz
O/P 1dB Compression Point (P1 dB) 3.0dBm (Min.)
Image-Rejection -40dBc (Min.)
Crosstalk Isolation 20dB (Min.) 22dB (Typ.)
O/P VSWR 2.5:1
Control Signals Ca L 10.0V~14.0V
Control Signals Cb R 16.0V~20.0V
DC-Power 10~20V/150Vdc*mA (Max.)
Output Impedance 75Ω (F-Type)
Working Temperature

-30℃~+60℃


04 Solving Real-World KA-Band Challenges
Challenge How This LNBF Solves It
High noise figure degrades link margin 1.2 dB typ. NF keeps your C/N high — even with small antennas or long distances.
Frequency drift over temperature ±0.75 MHz drift (-30 to +60°C) ensures reliable lock, from desert heat to freezing winters.
Poor phase noise affects high‑order modulation -90 dBc/Hz @ 100 kHz phase noise supports 16APSK, 32APSK, and above.
Cross‑polarization interference ≥20 dB isolation (22 dB typ.) keeps V/H or LHCP/RHCP signals clean.
Weak output compression point ≥ +3.0 dBm P1dB gives you headroom before distortion.
Different regional frequency plans Customizable input frequency range — tailored to your specific KA‑band allocation.


05 Why Choose This KA-Band Single LNBF?
  • KA‑Band Optimized – Built specifically for 19.7–20.2 GHz and adjacent bands (customizable).

  • Stable Under Temperature Extremes – Specified from -30°C to +60°C with tight LO drift.

  • Clean LO & Low NF – Preserves high‑order modulations and link budget.

  • Ready for Dual Polarization – Supports V/H or LHCP/RHCP via standard 13/18V switching.

  • Plug‑and‑Play Integration – Standard 75Ω F‑type output, single cable, no external bias tee needed.



06 Typical Applications
  • KA-Band Single LNB with 19.7-20.2GHz Frequency Range, 1.2dB Noise Figure, and Linear & Circular Polarization for Satellite Links 4
  •   KA‑Band VSAT Terminals – Broadband internet, maritime, and enterprise VSAT
  • KA-Band Single LNB with 19.7-20.2GHz Frequency Range, 1.2dB Noise Figure, and Linear & Circular Polarization for Satellite Links 5
  •    Airborne Connectivity – Cabin internet and real‑time data links
  • KA-Band Single LNB with 19.7-20.2GHz Frequency Range, 1.2dB Noise Figure, and Linear & Circular Polarization for Satellite Links 6
  •    Land Mobile / SOTM – Satellite‑on‑the‑move for vehicles and remote sites
  • KA-Band Single LNB with 19.7-20.2GHz Frequency Range, 1.2dB Noise Figure, and Linear & Circular Polarization for Satellite Links 7
  •    High‑Throughput Satellite (HTS) Links – Trunking, backhaul, and content distribution
  • KA-Band Single LNB with 19.7-20.2GHz Frequency Range, 1.2dB Noise Figure, and Linear & Circular Polarization for Satellite Links 8
  •    Critical Infrastructure – Oil & gas, utility, and government comms requiring reliable KA‑band reception



Frequently Asked Questions

Q: Can the input frequency be changed for my region?

Yes. While the standard version covers 19.7–20.2 GHz, we offer customizable frequency plans to match different KA‑band allocations worldwide.

Q: Does this LNBF support both linear and circular polarization?

Yes. It is available in two versions: V/H (linear) or LHCP/RHCP (circular) . Control is via standard DC voltage switching (10–14V / 16–20V).

Q: What is the real‑world advantage of the ±0.75 MHz temperature drift spec?

It means the LO stays stable across -30°C to +60°C, so your demodulator doesn't lose lock when the weather changes — critical for unattended or outdoor installations.

Q: Why is phase noise important for KA‑band?

KA‑band links often use high‑order modulations (16APSK, 32APSK) to maximize throughput. Low phase noise (-90 dBc/Hz @ 100 kHz) minimizes EVM degradation and allows higher data rates.

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