Infineon 700V CoolMOS P7 N-Channel MOSFET, 8.5 A, 700 V N, 3-Pin TO-220

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HK$281.20

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50 - 50HK$5.624HK$281.20
100 - 150HK$5.456HK$272.80
200 +HK$5.292HK$264.60

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RS Stock No.:
218-3011
Mfr. Part No.:
IPA70R600P7SXKSA1
Manufacturer:
Infineon
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Brand

Infineon

Product Type

MOSFET

Channel Type

N

Maximum Continuous Drain Current Id

8.5A

Maximum Drain Source Voltage Vds

700V

Package Type

TO-220

Series

700V CoolMOS P7

Mount Type

Through Hole

Pin Count

3

Maximum Drain Source Resistance Rds

600mΩ

Channel Mode

N

Forward Voltage Vf

0.9V

Maximum Gate Source Voltage Vgs

30V

Maximum Power Dissipation Pd

24.9W

Minimum Operating Temperature

-40°C

Maximum Operating Temperature

+150°C

Standards/Approvals

No

Automotive Standard

No

Infineon 700V CoolMOS P7 Series MOSFET, 700V Drain Source Voltage, 8.5A Continuous Drain Current - IPA70R600P7SXKSA1


This MOSFET is a high-voltage N-channel transistor designed for power switching in through-hole assemblies. It operates across a wide ambient range and is suited to applications requiring substantial voltage blocking and controlled gate drive while mounted in a TO-220 package.

Features and Benefits:


• 700V drain-source rating enables high-voltage switching capability
• 8.5A continuous drain current supports moderate current loads
• 600mΩ Rds(on) reduces conduction losses in switching cycles
• 0.9V forward voltage limits diode drop during commutation
• 24.9W power dissipation permits substantial thermal throughput
• 30V maximum gate-source voltage allows standard gate‑drive voltages

Applications


• Used for switching in high-voltage power supplies
• Suitable for industrial high-voltage converters and inverters
• Ideal for through‑hole prototypes requiring robust heat‑sinking
• Can be used for medium‑current telecom power stages
• Used with discrete gate‑drive circuits in lab test rigs

What operating temperatures can it withstand?


It functions across a thermal range from −40°C to +150°C.

How should it be mounted for optimal thermal performance?


The through‑hole TO-220 format is intended for bolt‑down heatsink mounting to maximise dissipation.

What gate‑drive constraints must be observed?


The gate‑source voltage must not exceed 30V to avoid gate damage.

What conduction and switching performance factors affect selection?


Conduction losses relate to the 600mΩ on‑resistance and switching behaviour is influenced by the 0.9V forward diode characteristic.

Is this device specified for automotive standard applications?


It is not designated to automotive standards and should be evaluated accordingly.

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