onsemi NVHL080N120SC1

NVHL080N120SC1 onsemi
NVHL080N120SC1
onsemi

Product Information

Maximum Continuous Drain Current:
44 A
Transistor Material:
SiC
Width:
4.82mm
Automotive Standard:
AEC-Q101
Transistor Configuration:
Single
Maximum Drain Source Voltage:
1200 V
Maximum Gate Threshold Voltage:
4.3V
Package Type:
TO-247
Number of Elements per Chip:
1
Minimum Gate Threshold Voltage:
1.8V
Maximum Operating Temperature:
+175 °C
Typical Gate Charge @ Vgs:
56 nC @ 20 V
Channel Type:
N
Length:
15.87mm
Pin Count:
3
Channel Mode:
Enhancement
Mounting Type:
Through Hole
Maximum Power Dissipation:
348 W
Maximum Gate Source Voltage:
-15 V, +25 V
Height:
20.82mm
Minimum Operating Temperature:
-55 °C
Forward Diode Voltage:
4V
Maximum Drain Source Resistance:
162 mΩ
FET Feature:
-
HTSUS:
8541.29.0095
RoHS Status:
ROHS3 Compliant
Operating Temperature:
-55°C ~ 175°C (TJ)
Package / Case:
TO-247-3
Rds On (Max) @ Id, Vgs:
110mOhm @ 20A, 20V
Gate Charge (Qg) (Max) @ Vgs:
56 nC @ 20 V
Vgs(th) (Max) @ Id:
4.3V @ 5mA
REACH Status:
REACH Unaffected
edacadModel:
NVHL080N120SC1 Models
FET Type:
N-Channel
Drive Voltage (Max Rds On, Min Rds On):
20V
edacadModelUrl:
/en/models/9951920
Package:
Tube
Drain to Source Voltage (Vdss):
1200 V
Vgs (Max):
+25V, -15V
Moisture Sensitivity Level (MSL):
Not Applicable
Power Dissipation (Max):
348W (Tc)
Input Capacitance (Ciss) (Max) @ Vds:
1670 pF @ 800 V
Qualification:
AEC-Q101
Mounting Type:
Through Hole
Grade:
Automotive
Series:
-
Supplier Device Package:
TO-247-3
Current - Continuous Drain (Id) @ 25°C:
44A (Tc)
Technology:
SiCFET (Silicon Carbide)
Base Product Number:
NVHL080
ECCN:
EAR99
RoHs Compliant
Checking for live stock

This is manufactured by onsemi. The manufacturer part number is NVHL080N120SC1. While 44 a of maximum continuous drain current. The transistor is manufactured from highly durable sic material. Furthermore, the product is 4.82mm wide. The product complies with automotive standard - aec-q101. The product offers single transistor configuration. It has a maximum of 1200 v drain source voltage. The product carries 4.3v of maximum gate threshold voltage. The package is a sort of to-247. It consists of 1 elements per chip. Whereas its minimum gate threshold voltage includes 1.8v. It has a maximum operating temperature of +175 °c. With a typical gate charge at Vgs includes 56 nc @ 20 v. The product is available in [Cannel Type] channel. Its accurate length is 15.87mm. It contains 3 pins. The product carries enhancement channel mode. The product is available in through hole configuration. Provides up to 348 w maximum power dissipation. It features a maximum gate source voltage of -15 v, +25 v. In addition, the height is 20.82mm. Whereas, the minimum operating temperature of the product is -55 °c. Its forward diode voltage is 4v . It provides up to 162 mω maximum drain source resistance. It is assigned with possible HTSUS value of 8541.29.0095. The product is rohs3 compliant. The product has -55°c ~ 175°c (tj) operating temperature range. Moreover, the product comes in to-247-3. It has a maximum Rds On and voltage of 110mohm @ 20a, 20v. The maximum gate charge and given voltages include 56 nc @ 20 v. The typical Vgs (th) (max) of the product is 4.3v @ 5ma. In addition, it is reach unaffected. It carries FET type n-channel. The drive voltage (maximum and minimum Rds On) of the product includes 20v. It is shipped in tube package . The product has a 1200 v drain to source voltage. The maximum Vgs rate is +25v, -15v. Its typical moisture sensitivity level is not applicable. The product carries maximum power dissipation 348w (tc). The product's input capacitance at maximum includes 1670 pf @ 800 v. The product is automotive, a grade of class. to-247-3 is the supplier device package value. The continuous current drain at 25°C is 44a (tc). This product use sicfet (silicon carbide) technology. Moreover, it corresponds to nvhl080, a base product number of the product. The product is designated with the ear99 code number.

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Datasheet NVHL080N120SC1(Technical Reference)
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onsemi RoHS(Environmental Information)
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Mold Compound Change 24/Sep/2019(PCN Assembly/Origin)
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NVHL080N120SC1 18/Jan/2023(PCN Design/Specification)
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NVHL080N120SC1 11/Jan/2023(PCN Design/Specification)
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NVHL080N120SC1(Datasheets)
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Packing quantity increase 25/Jun/2021(PCN Packaging)

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