CSH-SGFB-CCC-UFFR LINX | Alldatasheet
Document overview
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- PDF pages: 6
Technical content
Features
- 1.32 mm double-shielded 50 Ω coaxial cable
- SMA jack (female socket) ― Gold plated ― Bulkhead mount ― Gold plated brass washer and 1/4”-36UNS hex nut provided
- U.FL -type plug (female socket) compatible with: ― MHF1 ― AMC ― UMCC Linx offers cable assemblies selected for high quality, durability and wide bandwidth operation. Connectors and coaxial cable meet RoHS lead free standards and have been tested to meet requirements for corrosion resistance, vibration, mechanical and thermal shock. The CSH-SGFB-ccc-UFFR cable assembly provides an SMA bulkhead jack (female socket) and U.FL-type plug (female socket) on 100 mm or 200 mm length of 1.32 mm coaxial cable. The SMA connector is supplied with a washer and 1/4”-36UNS hex nut for bulkhead mounting. Electrical Specifications Impedance 50 Ω VSWR ≤ 1.3 @ 6 GHz Insulation Resistance 500 MΩ min. Withstanding Voltage 200 V AC Operating Temperature Range -40 °C to +90 °C
Ordering Information
CSH-SGFB-100-UFFR SMA bulkhead jack (female socket) to U.FL -type plug (female socket) on 100 mm of 1.32 mm coaxial cable CSH-SGFB-200-UFFR SMA bulkhead jack (female socket) to U.FL -type plug (female socket) on 200 mm of 1.32 mm coaxial cable Available from Linx Technologies and select distributors and representatives.
Figure 1. Product Dimensions for the CSH-SGFB-ccc-UFFR Cable Assembly
3 Connector, SMA bulkhead jack (female socket) hex nut and washer Brass Gold
4 Heat Shrink Tubing PTFE Black
Connector Durability 500 cycles min. 500 cycles min. Figure 2. Recommended Mounting Hole Dimensions for the CSH-SGFB-ccc-UFFR Cable Assembly
Datasheet CSH-SGFB-ccc-UFFR Coaxial Cable Specifications Ø0.1 mm 0.004 in Ø0.7 mm 0.03 in Ø0.8 mm 0.03 in Ø0.8 mm 0.03 in Ø1.3 mm 0.05 in Jacket Outer-conductor 2 Outer-conductor 1 Inner-conductor Dielectric 1.32 mm Coax Material Dimensions Inner-Conductor Silver plated copper, 7 strand, 32 AWG Ø0.085 mm (0.003 in) Dielectric FEP , clear Ø0.70 mm (0.028 in) Outer-Conductor 1 Silver plated copper braid, 16/4/0.050, coverage 89.4% Ø0.75 mm (0.030 in) Outer-Conductor 2 Silver plated copper braid, 16/4/0.050, coverage 78.4% Ø0.80 mm (0.031 in) Jacket FEP , black Ø1.32 mm (0.05 in) ±0.05 mm 1.32 mm Coaxial Cable Electrical and Physical Specifications Rated Temp Voltage 105 °C 30 V Conductor Resistance 497 Ω/km 20 °C Insulation Resistance 3000 M Ω-km min. Dielectric Strength AC 500 V/Minute Spark Test 2.5 kV Insulation Unaged Tensile Strength 2500 psi min. (1.76 kg/mm2) Elongation 200% min. Aged Tensile Strength Unaged min. 75% (168 hrs x 232 °C) Elongation Unaged min. 75% (168 hrs x 232 °C) Jacket Unaged Tensile Strength 2500 psi min. (1.76 kg/mm2) Elongation 200% min. Aged Tensile Strength Unaged min. 75% (168 hrs x 232 °C) Elongation Unaged min. 75% (168 hrs x 232 °C) Nominal Impedance 50 ± 3 Ω Nominal Capacitance 96 ± 3 pF/m Nominal Velocity of Propagation 69% VSWR (0 to 6 GHz) ≤ 1.3 Flame Test V W-1 OK Attenuation (dB/1M) 2.0 GHz 2.80
2.4 GHz
3.10
2.5 GHz
3.15
5.0 GHz
4.85
6.0 GHz
5.20 Minimum Inside Bend radius 4.0 mm (0.16 in) Packaging Information The CSH-SGFB-ccc-UFFR cable assembly is packaged in a clear plastic bag, in quantities of 100. Distribution channels may offer alternative packaging options.
Datasheet CSH-SGFB-ccc-UFFR Cable Assembly Definitions and Useful Formulas VSWR - Voltage Standing Wave Ratio. VSWR is a unitless ratio that describes how efficiently power is transmitted through the cable assembly. A lower VSWR value indicates better performance at a given frequency. VSWR is easily derived from Return Loss. VSWR = 10 Return Loss 20 + 1 Return Loss 20 −1 Return Loss = −20 log10 VSWR −1 VSWR + 1 Gdb = 10 log10(G) GdBd = GdBi −2.51dB VSWR −1 VSWR + 1 TRE = η 1 − VSWR −1 VSWR + 1 □ /4 Insertion Loss - The loss of signal power (gain) resulting from the insertion of a device in a transmission line. Insertion loss can be derived from the power transmitted to the load before the insertion of the component PT and the power transmitted to the load after the insertion of the component PR . VSWR = 10 + 1 Return Loss = −20 log VSWR −1 VSWR + 1 G = 10 log (G) G = G −2.51dB VSWR −1 VSWR + 1 TRE = η∙ 1 − VSWR −1 VSWR + 1 □ /4 (dB) = 10 log
DatasheetCSH-SGFB-ccc-UFFR Doc# DS20212-94CON Website: http://linxtechnologies.com Linx Offices: 159 Ort Lane, Merlin, OR, US 97532 Phone: +1 (541) 471-6256 E-MAIL: info@linxtechnologies.com Linx Technologies reserves the right to make changes to the product(s) or information contained herein without notice. No liability is assumed as a result of their use or application. No rights under any patent accompany the sale of any such product(s) or information. Wireless Made Simple is a registered trademark of Linx Acquisitions LLC. Other product and brand names may be trademarks or registered trademarks of their respective owners. Copyright © 2020 Linx Technologies All Rights Reserved