onsemi_NTMTS0D7N06CLTXG

onsemi
NTMTS0D7N06CLTXG  
Single FETs, MOSFETs

onsemi
NTMTS0D7N06CLTXG
278-NTMTS0D7N06CLTXG
Ersa
onsemi-NTMTS0D7N06CLTXG-datasheets-10095070.pdf
MOSFET N-CH 60V 62.2A/477A 8DFNW
In Stock : 1345

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ISO9001
Quality Policy
ISO45001
ISO14001

NTMTS0D7N06CLTXG Description

Tape & Reel (TR) provides mechanical support to the IC chip to ensure proper alignment and prevent damage due to vibration or shock. The Single FETs, MOSFETs that the NTMTS0D7N06CLTXG belongs to can be classified under the Discrete Semiconductors. NTMTS0D7N06CLTXG is used in a wide range of electronic devices, including computers, smartphones, televisions, cars, medical devices, and many others. NTMTS0D7N06CLTXG provides the computational power and functionality that enable these devices to perform their intended tasks. a vital part of the supply chain ecosystem. They convert raw materials or components into finished products, ensuring their availability for consumers or other businesses. onsemi plays a crucial role in ensuring the smooth flow of goods and meeting market demand. onsemi is responsible for ensuring the quality and safety of the products they produce. They implement quality control measures to meet industry standards and regulatory requirements. By maintaining high-quality standards, onsemi builds trust with consumers and enhances the overall reputation of their products.

Tech Specifications

Configuration
Typical Turn-Off Delay Time (ns)
Maximum Gate Source Leakage Current (nA)
Input Capacitance (Ciss) (Max) @ Vds
Gate Charge (Qg) (Max) @ Vgs
Typical Rise Time (ns)
PPAP
Channel Mode
Typical Turn-On Delay Time (ns)
Product Status
Automotive
Drain to Source Voltage (Vdss)
Supplier Package
Maximum IDSS (uA)
Package / Case
Technology
REACH Status
Channel Type
EU RoHS
Maximum Continuous Drain Current (A)
Moisture Sensitivity Level (MSL)
Operating Temperature
Maximum Pulsed Drain Current @ TC=25°C (A)
Maximum Drain Source Voltage (V)
ECCN
Mounting Type
Rds On (Max) @ Id, Vgs
Standard Package Name
Vgs(th) (Max) @ Id
Typical Reverse Recovery Charge (nC)
Maximum Continuous Drain Current on PCB @ TC=25°C (A)
Pin Count
Mounting
Minimum Gate Threshold Voltage (V)
Typical Reverse Transfer Capacitance @ Vds (pF)
Current - Continuous Drain (Id) @ 25°C
Typical Gate to Drain Charge (nC)
SVHC
Drive Voltage (Max Rds On, Min Rds On)
HTSUS
Package
Maximum Drain Source Resistance (MOhm)
Typical Gate Charge @ Vgs (nC)
Typical Input Capacitance @ Vds (pF)
Maximum Power Dissipation on PCB @ TC=25°C (W)
Category
Maximum Gate Resistance (Ohm)
PCB changed
HTS
FET Type
Number of Elements per Chip
Typical Reverse Recovery Time (ns)
ECCN (US)
Maximum Power Dissipation (mW)
Supplier Device Package
Minimum Operating Temperature (°C)
Maximum Operating Temperature (°C)
Power Dissipation (Max)
Typical Fall Time (ns)
Package Height
Typical Gate to Source Charge (nC)
Maximum Positive Gate Source Voltage (V)
Mfr
Vgs (Max)
RoHS Status
FET Feature
Maximum Gate Source Voltage (V)
SVHC Exceeds Threshold
Typical Gate Plateau Voltage (V)
Package Length
Typical Gate Charge @ 10V (nC)
Maximum Diode Forward Voltage (V)
Series
Typical Diode Forward Voltage (V)
Operating Junction Temperature (°C)
Typical Output Capacitance (pF)
Part Status
Maximum Gate Threshold Voltage (V)
Package Width
Maximum Junction Ambient Thermal Resistance on PCB (°C/W)
Base Product Number
Unit Weight
Id - Continuous Drain Current
Fall Time
Qg - Gate Charge
Transistor Type
Number of Channels
Typical Turn-On Delay Time
Maximum Operating Temperature
Rds On - Drain-Source Resistance
Mounting Style
Vgs - Gate-Source Voltage
Typical Turn-Off Delay Time
Transistor Polarity
Minimum Operating Temperature
Vds - Drain-Source Breakdown Voltage
Rise Time
Forward Transconductance - Min
Vgs th - Gate-Source Threshold Voltage
Pd - Power Dissipation
USHTS

NTMTS0D7N06CLTXG Documents

Download datasheets and manufacturer documentation for NTMTS0D7N06CLTXG

Ersa Wafer Fab Change 17/Oct/2022      
Ersa NTMTS0D7N06CL      
Ersa NTMTS0D7N06CL      
Ersa onsemi RoHS       onsemi REACH      

Shopping Guide

Payment Methods
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Delivery Methods
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