WMSIC Electronic Components

AOS AOK40B65H2AL

ModelAOK40B65H2AL
PackageTO-247
BrandAOS
Price Price on request Electronic component prices change quickly with market supply and demand. Please refer to the latest WMSIC quotation for current pricing.
Configuration
1 options
Configuration 21+

Available for RFQ

Technical data

Product details

19 specifications

Core information

Product name
AOS AOK40B65H2AL
Type
AOS
Minimum package
240 管

Technical parameters

Electronic Component
Electronic Component
Electronic Component
AOS
Electronic Component
AOK40B65H2AL
Electronic Component
1
Package
TO-247
Electronic Component
IGBT / Module
Electronic Component
0.73g
Electronic Component
1
Electronic Component
BM69418713
Power Dissipation(Pd)
260W
(Eon)
1.17mJ
(Eoff)
540uJ
Electronic Component
Electronic Component
Electronic Component
240
Capacitor(Cies)
1.23nF@25V
Output Capacitor(Coes)
115pF

For datasheets, package documents, compatible-part guidance, or other technical resources, contact WMSIC customer service. Availability is confirmed case by case.

产品概述:AOK40B65H2AL IGBT管/模块

一、简介

AOK40B65H2AL是一款高效率的绝缘栅双极晶体管(IGBT),其设计意在满足高电压、大电流应用场景下的需求。该器件具有高达650V的耐压能力、40A的持续电流承载能力,以及高达260W的功率处理能力,适用于要求严格的电力电子设备,如逆变器、电动机驱动和电源转换器等。

二、主要特性

  1. 电气性能:

    • Vce(max): 650V,适合高压电源应用。
    • Ic(max): 40A,能够承受较大的负载电流,适合功率较大的设备。
    • Pd(max): 260W,允许的最大功耗,确保设备在高负载下能够稳定运行。
    • Vge(th): 2.6V @ 15V,能够在较低的门极电压下实现良好的开关性能,提高了控制电路的灵活性。
  2. 封装与散热:

    • 封装类型: TO-247,具有较好的散热性能和较大的功率密度,使得器件适合高功率应用。
    • 热管理: 其设计考虑到良好的热导性,适合高频和高功率的运行环境。
  3. 开关特性:

    • 该IGBT具有快速的开关特性,适合高频操作,能够有效降低开关损耗,提高整体系统效率。
    • 开启和关断时间短,加快了功率转换的速率,提升了整体设备的响应速度。
  4. 温度范围:

    • 该器件的工作温度范围广泛,能在苛刻的环境条件下正常工作,适合多种工业应用。

三、应用领域

AOK40B65H2AL广泛应用于以下领域:

  1. 逆变器: 常用于光伏逆变器以及风能逆变器中,将直流电转换为交流电,从而满足电网或负载的需求。
  2. 电动机驱动: 适合在电动机控制和驱动应用中,以实现对电动机的高效控制与调速。
  3. 电源模块: 在开关电源和电源转换器中,作为高效的开关元件,用于实现电能的高效转换。
  4. 工业自动化: 在各种工业控制系统中,作为关键的开关元件,提升系统的响应速度和效率。

四、总结

AOK40B65H2AL IGBT管/模块凭借其高电压、高电流和高功率处理能力,成为现代电力电子设备中不可或缺的核心元器件。无论是在可再生能源领域的逆变器,还是在工业自动化中的电动机驱动应用中,该IGBT都能够有效提升系统性能,优化电能转换过程的效率。在设计时选用AOK40B65H2AL,不仅能够简化后端电路设计,也能够提供更可靠的运行保障。

五、建议

使用该IGBT时,需要确保合理的散热设计,以及适当的门极驱动电路,以发挥出其最佳性能。在高频、高功率的实际应用环境中,结合合理的布局和有效的电磁兼容设计,能够获得更好的系统整体表现。通过对AOK40B65H2AL的有效应用,有望在节能、降耗的同时提升系统的效率和可靠性。

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