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AMAT Applied Materials 0090-02287电气组件

发布时间:2025-10-09人气:
  • AMAT Applied Materials 0090-02287电气组件
  • AMAT Applied Materials 0090-02287电气组件
  • AMAT Applied Materials 0090-02287电气组件

AMAT Applied Materials  0090-02287电气组件

1.产 品 资 料 介 绍:

一、高效电气连接:保障半导体设备电力与信号精准传输
作为半导体设备的 “电气枢纽”,0090-02287 电气组件以稳定、高效的连接能力为核心,实现设备内部电力分配与信号交互的双重功能:
  1. 多类型接口集成适配:集成电力接口(如端子式电源接口、插头式高压接口)与信号接口(如针式信号接口、RJ45 数据接口),可同时对接设备电源模块、控制单元(如 PLC)、传感器与执行机构(如伺服电机),无需额外转接组件,简化设备内部布线,减少连接节点,降低信号衰减与电力损耗风险,确保电力传输效率≥95%,信号传输误差≤0.1%。
  1. 低阻抗电力传输设计:采用高纯度电解铜导电材质(电阻率≤1.72×10⁻⁸Ω・m),导电端子厚度≥0.5mm,接触面经镀锡处理(锡层厚度≥5μm),降低接触电阻(接触电阻≤10mΩ),减少电流传输过程中的热量产生;同时根据设备功率需求优化导线截面积(电力线路截面积≥1.5mm²,信号线路截面积≥0.5mm²),可承载最大 30A 工作电流,满足半导体设备高功率模块(如加热腔、射频电源)的电力供应需求。
  1. 信号与电力隔离布局:采用分层隔离设计,将电力线路与信号线路分区域布置,区域间设置金属屏蔽隔板(屏蔽效能≥40dB),防止电力线路产生的电磁干扰影响信号传输;同时信号线路采用双绞线或屏蔽线缆,进一步增强抗干扰能力,确保传感器采集的微弱信号(如 mV 级温度信号)在复杂电磁环境下仍能稳定传输,避免因信号干扰导致的设备控制偏差。
二、全方位安全防护:守护半导体设备电气安全
针对半导体设备高电压、高功率的运行特性,该电气组件构建了多重安全防护体系,降低电气故障风险:
  1. 电气安全保护功能:集成过电流保护(采用自恢复保险丝,额定电流根据线路需求配置,过载时 1 秒内切断电路)、过电压保护(TVS 二极管,击穿电压≥1.2 倍额定电压,响应时间≤10ns)与短路保护(快速熔断保险丝,分断能力≥10kA),当电路出现过流、过压或短路时,可迅速切断故障线路,保护下游设备模块(如控制芯片、传感器),避免因电气故障导致的设备损坏与晶圆报废。

AMAT Applied Materials  0090-02287电气组件 英文资料:

1、 Efficient electrical connection: ensuring precise transmission of power and signals in semiconductor equipment

As the "electrical hub" of semiconductor equipment, 0090-02287 electrical components have stable and efficient connection capabilities as their core, achieving dual functions of internal power distribution and signal interaction:

Multi type interface integration and adaptation: Integrating power interfaces (such as terminal power interfaces, plug type high-voltage interfaces) and signal interfaces (such as pin type signal interfaces, RJ45 data interfaces), it can simultaneously interface with equipment power modules, control units (such as PLCs), sensors, and actuators (such as servo motors) without the need for additional adapter components, simplifying internal wiring of equipment, reducing connection nodes, reducing signal attenuation and power loss risks, ensuring power transmission efficiency ≥ 95% and signal transmission error ≤ 0.1%.

Low impedance power transmission design: using high-purity electrolytic copper conductive material (resistivity ≤ 1.72 × 10 ⁻⁸Ω· m), conductive terminal thickness ≥ 0.5mm, contact surface treated with tin plating (tin layer thickness ≥ 5 μ m), reducing contact resistance (contact resistance ≤ 10m Ω), and minimizing heat generation during current transmission; At the same time, the cross-sectional area of the wires is optimized according to the power requirements of the equipment (power line cross-sectional area ≥ 1.5mm ², signal line cross-sectional area ≥ 0.5mm ²), which can carry a maximum working current of 30A and meet the power supply needs of high-power modules of semiconductor equipment (such as heating chambers and RF power supplies).

Signal and power isolation layout: Adopting a layered isolation design, power lines and signal lines are arranged in different areas, and metal shielding partitions (shielding effectiveness ≥ 40dB) are set up between areas to prevent electromagnetic interference generated by power lines from affecting signal transmission; At the same time, the signal line adopts twisted pair or shielded cables to further enhance anti-interference ability, ensuring that weak signals collected by sensors (such as mV level temperature signals) can still be stably transmitted in complex electromagnetic environments, avoiding equipment control deviations caused by signal interference.

2、 Comprehensive safety protection: safeguarding the electrical safety of semiconductor equipment

In response to the high voltage and high power operating characteristics of semiconductor equipment, this electrical component has constructed multiple safety protection systems to reduce the risk of electrical failures:

Electrical safety protection function: Integrated overcurrent protection (using self recovering fuses, rated current configured according to line requirements, circuit can be cut off within 1 second in case of overload), overvoltage protection (TVS diode, breakdown voltage ≥ 1.2 times rated voltage, response time ≤ 10ns) and short-circuit protection (quick melting fuse, breaking capacity ≥ 10kA). When overcurrent, overvoltage or short circuit occurs in the circuit, the faulty line can be quickly cut off to protect downstream equipment modules (such as control chips and sensors), avoiding equipment damage and wafer scrap caused by electrical faults.

AMAT Applied Materials  0090-02287电气组件 产品展示      

0090-02287_electrical_assy_lamp_fail_pcb_w_cdn180_applied_materials_amat_2.jpg

 产品视频

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

Contact: +86 15270269218 

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