FQA36P15

FQA36P15

onsemi
Grade Your BOM

Description:

Trans MOSFET P-CH 150V 36A 3-Pin(3+Tab) TO-3P Tube

Country of Origin:

China

Introduction date:

Aug 1, 2003

Updated: 26-APR-2024


See moreMOSFETs by onsemi

Online version: https://www.datasheets.com/part-details/fqa36p15-onsemi-15956743

overviewOverview

Familiarize yourself with the fundamental general information, properties, and characteristics of the component, along with its compliance with industry standards and regulations.

LifeCycleinfo
EU RoHS
Yes with Exemption
RoHS Version
2011/65/EU, 2015/863
ECCNinfo
EAR99
Automotive
noNo
Supplier Cage Codeinfo
1MQ07
HTSUSAinfo
8541290095
Schedule Binfo
8541290080
PPAP
noNo
AEC Qualified
noNo
Category Path
Semiconductor > Diodes, Transistors and Thyristors > FET Transistors > MOSFETs

pdfDatasheet

Get a comprehensive understanding of the electronic component by downloading its datasheet. This PDF document includes all the necessary details, such as product overview, features, specifications, ratings, diagrams, applications, and more.

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packagePackage

The package information for the component gives important details about the product's size, weight, and packaging. This helps engineers determine if the product meets their requirements and expectations.

Basic Package Type
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Package Family Name
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Supplier Package
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Package Description
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Lead Shape
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Pin Count
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PCB
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Tabinfo
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Package Length (mm)info
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Package Width (mm)info
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Package Height (mm)info
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Seated Plane Height (mm)info
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Pin Pitch (mm)info
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Package Diameter (mm)
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Package Weight (g)
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Package Material
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Mounting
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Package Outline
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Package Overall Height (mm)
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Package Overall Width (mm)
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Package Overall Length (mm)
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Jedec
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manufacturingManufacturing

The manufacturing information specifies the technical requirements and specifications for producing and assembling the component. This information is crucial for manufacturers to maintain the quality and reliability of the components, and ensure they are compatible with other devices and components.

MSLinfo
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Maximum Reflow Temperature (°C)info
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Reflow Solder Time (Sec)info
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Maximum Wave Temperature (°C)info
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Wave Solder Time (Sec)info
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Wave Temp. Source
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Lead Finish(Plating)info
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Under Plating Materialinfo
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Terminal Base Materialinfo
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parametricParametric

The parametric information displays vital features and performance metrics of the component, which helps engineers and supply chain managers to compare and choose the most appropriate electronic component for their applications and needs.

Product Line
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Typical Gate to Source Charge
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Maximum Junction Ambient Thermal Resistance
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Maximum Junction Case Thermal Resistance
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Typical Turn-Off Delay Time
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Supplier Temperature Grade
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Typical Turn-On Delay Time
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Breakdown Voltage Type
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Minimum DC Current Gain
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Typical Reverse Recovery Charge
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Typical Forward Transconductance
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Typical Switch Charge
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Tradename
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Minimum Gate Threshold Voltage
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Maximum Offset Voltage
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Typical Reverse Transfer Capacitance @ Vds
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Maximum Positive Gate Source Voltage
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Minimum Gate Resistance
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Maximum Gate Resistance
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Typical Gate Threshold Voltage
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Typical Diode Forward Voltage
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Maximum Diode Forward Voltage
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Typical Reverse Recovery Time
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Maximum Pulsed Drain Current @ TC=25°C
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Maximum Forward Transconductance
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Minimum Forward Transconductance
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Minimum IDSS
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ID For GFS
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VDS For GFS
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Maximum Input Capacitance @ Vds
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Typical IDSS
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Typical Fall Time
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Typical Rise Time
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Maximum Gate Source Leakage Current
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Maximum Storage Temperature
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Operating Junction Temperature
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Typical Gate Resistance
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Typical Gate to Drain Charge
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Minimum Storage Temperature
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Configuration
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Category
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Maximum Absolute Continuous Drain Current
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Channel Mode
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Channel Type
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Number of Elements per Chip
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Process Technology
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Maximum Drain Source Voltage
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Maximum Gate Source Voltage
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Maximum Continuous Drain Current
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Material
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Maximum Gate Threshold Voltage
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Maximum Drain Source Resistance
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Maximum IDSS
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Typical Gate Charge @ Vgs
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Typical Gate Charge @ 10V
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Typical Input Capacitance @ Vds
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Maximum Power Dissipation
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Minimum Operating Temperature
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Maximum Operating Temperature
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Typical Output Capacitance
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FQA36P15

FQA36P15By onsemi