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Wangling's F4BM265 High-Frequency PCB: Unleashing Enhanced Performance
The F4BM265 laminates from Wangling are meticulously formulated by combining fiberglass cloth, polytetrafluoroethylene (PTFE) resin, and PTFE film. These laminates offer improved electrical performance when compared to F4B265, making them a preferred choice for high-frequency applications. In this blog post, we will delve into the features, construction details, and typical applications of Wangling's F4BM265 high-frequency PCB.
Features of F4BM265:
PCB Stackup and Construction Details:
The F4BM265 PCB is a 2-layer rigid board with a copper thickness of 70 μm on both sides. The core consists of F4BM265 with a thickness of 3.00 mm. The finished board thickness is 3.1mm. The board dimensions are 45.33mm x 50.2mm, with a minimum trace/space of 5/5 mils and a minimum hole size of 0.5mm. The board does not incorporate blind vias. The surface finish employed is HASL Lead free, accompanied by a top silkscreen in white and black solder mask.
PCB Statistics:
The F4BM265 PCB features a total of 37 pads, including 21 through-hole pads and 16 top surface-mount technology (SMT) pads. No bottom SMT pads are present. The board encompasses 25 vias and 2 nets. To ensure quality, each PCB undergoes a 100% electrical test prior to shipment.
Typical Applications:
Wangling's F4BM265 high-frequency PCB caters to a wide range of industries, encompassing:
-Microwave, RF, and radar systems
-Phase shifters
-Power dividers, couplers, and combiners
-Feed networks
-Phase-sensitive antennas and phased array antennas
-Satellite communications
-Base station antennas
In conclusion, the F4BM265 high-frequency PCB from Wangling exhibits superior electrical performance, dimensional stability, and reliability, making it an optimal choice for demanding applications. With its low dielectric loss, excellent insulation resistance, and improved stability, it serves as an ideal substitute for comparable foreign products. Elevate your high-frequency PCB requirements by selecting Wangling's F4BM265 and experience enhanced performance in your applications.