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2.92mm Female RF Coaxial Connector, Flange Mount

2.92mm Female RF Coaxial Connector, Flange Mount
2.92mm Female RF Coaxial Connector, Flange Mount
2.92mm Female RF Coaxial Connector, Flange Mount
2.92mm Female RF Coaxial Connector, Flange Mount
2.92mm Female RF Coaxial Connector, Flange Mount
from
$63.59
Ex Tax: $63.59
  • Stock: In Stock
  • Model: RDDLZ-FFCC-292
  • Weight: 1.00
  • SKU: RDDLZ-FFCC-292

Available Options

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2.92mm female (jack) RF coax connector plays a pivotal role in connecting the antenna to devices in TV aerial setups. The Type K connector offers a flange mount configuration, ensuring adaptability to different installation requirements.

Specification

  • Model: RDDLZ-29FM0503F01-M
  • Frequency Range: DC~40GHz
  • Standing Wave Ratio (VSWR): 1.15:1 (Max.)
  • Impedance: 50 Ohm
  • Insertion Loss: 0.25dB (Max.)
  • Dielectric Withstand Voltage: 1000V
  • Insulation Resistance: ≥5000 Ohm
  • Connector Type A: Metal Through Wall
  • Connector Type B: 2.92mm-Female
  • Working Temperature: -55℃~+165℃
  • Inner Conductor Material: Bronze Plated Gold Plated
  • Outer Conductor Material: Stainless Steel Passivated
  • Insulator: PTFE
  • Service Life: ≥500

Dimension (Unit: mm)

  • φD1: 4.0mm/0.158"
  • φD2: 0.3mm/0.012"
  • L1: 3.0mm/0.118"
  • L2: 1.5mm/0.059"

Tips: Are there specific considerations for RF connectors in microwave applications?

In microwave applications, selecting RF connectors involves critical considerations to ensure optimal performance. The connectors must exhibit low insertion loss, minimizing signal degradation at high frequencies. Impedance matching is crucial to prevent signal reflections, and connectors often adhere to standard impedance values like 50 or 75 ohms. The choice between coaxial and waveguide connectors depends on the application's specific requirements, with coaxial connectors being common in many microwave systems due to their versatility.

Moreover, connectors must possess low VSWR (Voltage Standing Wave Ratio) to maintain signal integrity. Precision and durability are paramount, as microwave environments may subject connectors to harsh conditions. Materials with low signal loss and high thermal stability are preferred. Additionally, considerations for size, weight, and ease of installation play a role, especially in space-constrained or mobile microwave setups. Ultimately, meticulous attention to these factors ensures reliable and efficient RF connections in demanding microwave applications.

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