Technical documents
Specifications
Brand
STMicroelectronicsChannel Type
N
Maximum Continuous Drain Current
11 A
Maximum Drain Source Voltage
710 V
Series
MDmesh M5
Package Type
TO-220FP
Mounting Type
Through Hole
Pin Count
3
Maximum Drain Source Resistance
340 mΩ
Channel Mode
Enhancement
Maximum Gate Threshold Voltage
5V
Minimum Gate Threshold Voltage
3V
Maximum Power Dissipation
25 W
Transistor Configuration
Single
Maximum Gate Source Voltage
-25 V, +25 V
Number of Elements per Chip
1
Width
4.6mm
Length
10.4mm
Typical Gate Charge @ Vgs
22 nC @ 10 V
Transistor Material
Si
Maximum Operating Temperature
+150 °C
Height
16.4mm
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
€ 93.22
€ 1.864 Each (In a Tube of 50) (ex VAT)
50
€ 93.22
€ 1.864 Each (In a Tube of 50) (ex VAT)
50
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Technical documents
Specifications
Brand
STMicroelectronicsChannel Type
N
Maximum Continuous Drain Current
11 A
Maximum Drain Source Voltage
710 V
Series
MDmesh M5
Package Type
TO-220FP
Mounting Type
Through Hole
Pin Count
3
Maximum Drain Source Resistance
340 mΩ
Channel Mode
Enhancement
Maximum Gate Threshold Voltage
5V
Minimum Gate Threshold Voltage
3V
Maximum Power Dissipation
25 W
Transistor Configuration
Single
Maximum Gate Source Voltage
-25 V, +25 V
Number of Elements per Chip
1
Width
4.6mm
Length
10.4mm
Typical Gate Charge @ Vgs
22 nC @ 10 V
Transistor Material
Si
Maximum Operating Temperature
+150 °C
Height
16.4mm
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.