Technical Document
Specifications
Brand
STMicroelectronicsChannel Type
N
Maximum Continuous Drain Current
42 A
Maximum Drain Source Voltage
710 V
Series
MDmesh M5
Package Type
D2PAK (TO-263)
Mounting Type
Surface Mount
Pin Count
3
Maximum Drain Source Resistance
63 mΩ
Channel Mode
Enhancement
Maximum Gate Threshold Voltage
5V
Minimum Gate Threshold Voltage
3V
Maximum Power Dissipation
250 W
Transistor Configuration
Single
Maximum Gate Source Voltage
-25 V, +25 V
Width
9.35mm
Transistor Material
Si
Number of Elements per Chip
1
Length
10.4mm
Typical Gate Charge @ Vgs
98 nC @ 10 V
Maximum Operating Temperature
+150 °C
Height
4.6mm
Country of Origin
China
Product details
N-channel MDmesh™ M5 Series, STMicroelectronics
The MDmesh M5 power MOSFETs are optimised for high-power PFC and PWM topologies. Main features include a low on-state losses per silicon area combined with low gate charge. They are designed for energy-conscious, compact and reliable hard switching applications, such as solar power converters, power supplies for consumer products and electronic lighting controls.
MOSFET Transistors, STMicroelectronics
EGP 884.29
EGP 884.29 Each (ex VAT)
Standard
1
EGP 884.29
EGP 884.29 Each (ex VAT)
Standard
1
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Technical Document
Specifications
Brand
STMicroelectronicsChannel Type
N
Maximum Continuous Drain Current
42 A
Maximum Drain Source Voltage
710 V
Series
MDmesh M5
Package Type
D2PAK (TO-263)
Mounting Type
Surface Mount
Pin Count
3
Maximum Drain Source Resistance
63 mΩ
Channel Mode
Enhancement
Maximum Gate Threshold Voltage
5V
Minimum Gate Threshold Voltage
3V
Maximum Power Dissipation
250 W
Transistor Configuration
Single
Maximum Gate Source Voltage
-25 V, +25 V
Width
9.35mm
Transistor Material
Si
Number of Elements per Chip
1
Length
10.4mm
Typical Gate Charge @ Vgs
98 nC @ 10 V
Maximum Operating Temperature
+150 °C
Height
4.6mm
Country of Origin
China
Product details
N-channel MDmesh™ M5 Series, STMicroelectronics
The MDmesh M5 power MOSFETs are optimised for high-power PFC and PWM topologies. Main features include a low on-state losses per silicon area combined with low gate charge. They are designed for energy-conscious, compact and reliable hard switching applications, such as solar power converters, power supplies for consumer products and electronic lighting controls.