TK18A60V(V,Q)
Toshiba描述: | Trans MOSFET N-CH Si 600V 18A 3-Pin(3+Tab) TO-220SIS |
推出日期: | Jan 31, 2011 |
更新:14-NOV-2024 | |
查看更多 MOSFETs 属于 Toshiba |
在线版本:https://www.datasheets.com/zh-cn/part-details/tk18a60v-v-q--toshiba-63864183
概述
熟悉该组件的基本一般信息、属性和特征,以及其与行业标准和法规的符合情况。
生命周期高级
欧盟RoHS Yes
RoHS版本2002/95/EC
类别路径
Semiconductor > Diodes, Transistors and Thyristors > FET Transistors > MOSFETs
Semiconductor > Diodes, Transistors and Thyristors > FET Transistors > MOSFETs
技术资料
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数据表预览
(Latest 版本)制造
制造信息指定了生产和组装该组件的技术要求和规格。这些信息对于制造商来说至关重要,以保持组件的质量和可靠性,并确保其与其他设备和组件兼容。
参数
参数信息显示了该组件的重要特性和性能指标,这有助于工程师和供应链经理比较和选择最适合其应用和需求的电子组件。
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生产线
Breakdown Voltage Type
Minimum DC Current Gain
Typical Switch Charge
Typical Gate Resistance
Typical Reverse Recovery Charge
Typical Forward Transconductance
Tradename
Minimum Gate Threshold Voltage
Typical Reverse Transfer Capacitance @ Vds
Maximum Offset Voltage
Maximum Positive Gate Source Voltage
Minimum Gate Resistance
Maximum Gate Resistance
Typical Gate Threshold Voltage
Typical Diode Forward Voltage
Maximum Diode Forward Voltage
Typical Reverse Recovery Time
Maximum Pulsed Drain Current @ TC=25°C
Maximum Forward Transconductance
Minimum Forward Transconductance
Minimum IDSS
ID For GFS
VDS For GFS
Maximum Input Capacitance @ Vds
Typical IDSS
Maximum Storage Temperature
Operating Junction Temperature
Maximum Gate Source Leakage Current
Minimum Storage Temperature
Typical Gate to Drain Charge
Typical Gate to Source Charge
Maximum Junction Ambient Thermal Resistance
Maximum Junction Case Thermal Resistance
Typical Fall Time
Typical Rise Time
Typical Turn-Off Delay Time
Supplier Temperature Grade
Typical Turn-On Delay Time
Configuration
Maximum Absolute Continuous Drain Current
类别
Channel Mode
Channel Type
Number of Elements per Chip
Process Technology
Maximum Drain Source Voltage
Maximum Gate Source Voltage
Maximum Continuous Drain Current
Material
Maximum Gate Threshold Voltage
Maximum Drain Source Resistance
Maximum IDSS
Typical Gate Charge @ Vgs
Typical Gate Charge @ 10V
Typical Input Capacitance @ Vds
Maximum Power Dissipation
Minimum Operating Temperature
Maximum Operating Temperature
Typical Output Capacitance