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Huttinger C40-0864-01 D40-864-0射频单元板

发布时间:2025-09-11人气:
  • Huttinger C40-0864-01 D40-864-0射频单元板
  • Huttinger C40-0864-01 D40-864-0射频单元板
  • Huttinger C40-0864-01 D40-864-0射频单元板

 Huttinger C40-0864-01 D40-864-0射频单元板

1.产 品 资 料 介 绍:

Huttinger C40-0864-01 / D40-0864-0 射频单元板介绍
Huttinger C40-0864-01 / D40-0864-0 是一款工业级射频单元板(RF Unit Board),在射频发电机、功率放大器或等离子系统中,肩负着射频信号调节和功率控制的重要使命。它能够精确控制射频输出功率和波形,为激光或等离子工艺的稳定性与一致性提供有力保障,是高精度工业和科研应用中不可或缺的核心模块,广泛应用于半导体制造、激光加工、薄膜沉积及科研实验等领域。
该射频单元板的型号为 C40-0864-01 / D40-0864-0,类型为射频单元板(RF Unit Board),核心功能包括射频功率控制、信号调节和负载匹配,其应用场景覆盖了对射频控制精度要求极高的多个领域。
在产品特点方面,高精度射频输出是其核心优势。它可以对发电机或功率放大器输出的射频功率、电压和电流进行精密调节,这种精准的控制能力是确保工艺稳定的关键。在半导体制造的等离子刻蚀工艺中,射频功率的微小变化都可能影响刻蚀的深度和均匀性,而该射频单元板通过精确调节相关参数,确保刻蚀过程始终保持稳定,从而提升半导体器件的质量和一致性。
负载匹配优化功能使其在能量传输效率提升上表现出色。它与匹配网络协作,能够实现射频系统与负载的最佳阻抗匹配,有效降低反射功率,提高能量传输效率。在激光加工中,如激光焊接过程,减少反射功率意味着更多能量被用于焊接,不仅提升了焊接效率,还避免了因反射功率过大对设备造成的潜在损害,保障了设备的使用寿命。
工业级可靠性让该射频单元板能够适应复杂的工业环境。它支持长时间连续运行,能够满足工业生产中高强度的工作需求。同时,其强大的抗干扰能力使其在存在电磁干扰的环境中稳定工作,避免因干扰导致的信号波动或控制失误,保障工艺的连续性和稳定性,减少因设备故障导致的生产中断。
保护功能为系统安全运行提供了坚实保障。射频单元板内置过流、过压及短路保护机制,当系统出现电流过大、电压过高或电路短路等异常情况时,能够迅速响应并采取保护措施,防止模块或负载因异常情况而损坏,降低了设备故障带来的损失和工艺中断的风险,确保生产和实验的安全进行。
模块化设计使其在安装、维护和替换方面具有显著优势。这种设计不仅便于在设备安装时快速集成,当射频单元板需要维护或更换时,也能简化操作流程,减少停机时间,提高设备的可用性。同时,它可与 HUTTINGER 系列射频模块兼容,增强了其在不同系统中的适用性和协同性,方便用户根据需求进行系统配置和升级。

英文资料:

Huttinger C40-0864-01/D40-0864-0 RF Unit Board Introduction

Huttinger C40-0864-01/D40-0864-0 is an industrial grade RF Unit Board that plays an important role in RF signal conditioning and power control in RF generators, power amplifiers, or plasma systems. It can accurately control the RF output power and waveform, providing strong guarantees for the stability and consistency of laser or plasma processes. It is an indispensable core module in high-precision industrial and scientific research applications, widely used in semiconductor manufacturing, laser processing, thin film deposition, and scientific research experiments.

The model of the RF unit board is C40-0864-01/D40-0864-0, and the type is RF Unit Board. Its core functions include RF power control, signal conditioning, and load matching. Its application scenarios cover multiple fields that require extremely high RF control accuracy.

In terms of product features, high-precision RF output is its core advantage. It can precisely adjust the RF power, voltage, and current output by the generator or power amplifier, and this precise control capability is the key to ensuring process stability. In the plasma etching process of semiconductor manufacturing, even small changes in RF power can affect the depth and uniformity of etching. By precisely adjusting relevant parameters, this RF unit board ensures that the etching process remains stable, thereby improving the quality and consistency of semiconductor devices.

The load matching optimization function makes it perform well in improving energy transfer efficiency. It collaborates with a matching network to achieve optimal impedance matching between the RF system and the load, effectively reducing reflected power and improving energy transmission efficiency. In laser processing, such as laser welding, reducing reflected power means more energy is used for welding, which not only improves welding efficiency but also avoids potential damage to equipment caused by excessive reflected power, ensuring the service life of the equipment.

Industrial grade reliability enables the RF unit board to adapt to complex industrial environments. It supports long-term continuous operation and can meet the high-intensity work requirements in industrial production. At the same time, its strong anti-interference ability enables it to work stably in environments with electromagnetic interference, avoiding signal fluctuations or control errors caused by interference, ensuring the continuity and stability of the process, and reducing production interruptions caused by equipment failures.

The protection function provides a solid guarantee for the safe operation of the system. The RF unit board is equipped with overcurrent, overvoltage, and short-circuit protection mechanisms. When the system experiences abnormal situations such as excessive current, high voltage, or circuit short circuit, it can quickly respond and take protective measures to prevent module or load damage due to abnormal situations, reduce the risk of equipment failure and process interruption, and ensure the safety of production and experimentation.

 

 2.产      品      展      示      

c40-0864-01_d40-864-0_huttinger_trumpf_pcb_card_0463912v02_rf_unit_board.jpg

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The content is from Ruichang Mingsheng Automation Equipment Co., LTD

Contact: +86 15270269218

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