SCT-3FN3F-UB ERAVANT | Alldatasheet
Document overview
- Manufacturer or author: Provided By alldatasheet.com(free datasheet download site)
- PDF pages: 3
Technical content
www.eravant.com | 424-757-0168 | support@eravant.com Copyright © 2023 by Eravant Rev 1.0 3.5 mm NMD (F) to 3.5 mm (F) Coaxial Adapter SCT-3FN3F-UB is a 3.5 mm NMD female to 3.5 mm female coaxial adapter that covers the frequency range of DC to 26.5 GHz. This coaxial adapter offers efficient transitioning between the coaxial connectors with a high return loss and typical insertion loss of 0.30 dB. The impedance of the adapter is 50 Ohms. Other configurations are available under different model numbers. Electrical Specifications: Mechanical Specifications: Parameter Minimum Typical Maximum Frequency Range DC 26.5 GHz Insertion Loss 0.30 dB Return Loss 25 dB Impedance 50 Specification Temperature +25 °C Operating Temperature -40 °C +85 °C Item Specification Connector 1 Type 3.5 mm NMD Female Connector 2 Type 3.5 mm Female Body Material Stainless Steel Body Finish Passivated Contact Material Beryllium Copper Insulator Material PEI Length 1.60” Outline CT-3FN3F-LN1 ECCN EAR99
FEATURES
- Instrumentation Grade
- High Return Loss
- Low Insertion Loss
APPLICATIONS
- Test Lab
- Sub-assemblies SUPPLEMENTAL DETAILS
www.eravant.com | 424-757-0168 | support@eravant.com Copyright © 2023 by Eravant Rev 1.0 Mechanical Outline: (Unless otherwise specified, all dimensions are in inches [millimeters]) -60 -55 -50 -45 -40 -35 -30 -25 -20 -15 -10 -60 -55 -50 -45 -40 -35 -30 -25 -20 -15 -10 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 Return Loss (dB) Insertion Loss (dB) Frequency (GHz) Typical Performance vs. Frequency Insertion Loss Return Loss
www.eravant.com | 424-757-0168 | support@eravant.com Copyright © 2023 by Eravant Rev 1.0 NOTE:
- All data presented is collected from a sample lot. Actual data may vary slightly from unit to unit.
- All testing is performed under +25 °C case temperature.
- Eravant reserves the right to change the information presented without notice. CAUTION:
- Exceeding absolute maximum ratings shown will damage the device. recommended.