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RF equipment PCB/PCBA design - UGPCB

ハイパワー PCB 設計/

RF equipment PCB/PCBA design

名前: RF equipment PCB/PCBA design

Designable layers: 1-32 レイヤー

最小ライン幅とライン間隔: 3ミル

最小レーザーアパーチャ: 4ミル

最小機械的開口: 8ミル

銅箔の厚さ: 18-175cm (標準: 18CM35CM70cm)

皮の強度: 1.25N/mm

最小パンチングホールの直径: 片側: 0.9mm/35mil

最小穴の直径: 0.25mm/10mil

開口耐性: ≤φ0.8mm±0.05mm

穴の耐性: ±0.05mm

  • 製品詳細

Overview of RF PCB Design

Introduction to RF PCB Design

In the wireless communication system, only a small part of the front-end circuit works in the radio frequency stage, which is commonly known as the radio frequency front-end circuit. The rest of the circuit is used for low frequency baseband analog and digital signal processing. RF front-end circuits generally include low-noise amplifiers, mixers, and power amplifiers. Although the number of components in this part of the circuit is much less than that of the baseband circuit, it is still the key to the success or failure of the entire system.

Key Metrics and Design Challenges

Similar to the octagon rule for analog IC design, RF PCB design requires analog signal processing at wide dynamic range and high frequencies. したがって, RF PCB design also has its own hexagon rule. Noise, linearity, supply voltage, gain, 動作周波数, and power are the most important metrics in an RF PCB. In practical designs, any two or more of these parameters will constrain each other, resulting in multidimensional optimization problems. Such compromises and mutual constraints bring many problems to the design of RF PCBs. Often, it takes the intuition and experience of the RF designer to arrive at a better compromise.

Application Fields of RF PCB

Various Applications of RF PCB

  • Base Station RF Circuit Board
  • Mobile Phone RF Circuit Board
  • Wireless Local Area Network (WLAN) RF PCB
  • 全地球測位システム (GPS) RF Circuit Board
  • Radio Frequency Tag (rfid) RF PCB
  • モノのインターネット (IoT) RF PCB

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