Please note that this is an end of life product. See newer alternative product version Please note that this is an end of life product. See newer alternative product version
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END OF LIFE
discontinued
RoHS Compliant

IPS70R600P7S

END OF LIFE
Infineon’s answer for flyback topologies up to 75W

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Product details

  • Budgetary Price €/1k
    0.24
  • ID max
    8.5 A
  • ID (@25°C) max
    8.5 A
  • IDpuls max
    20.5 A
  • Mounting
    THT
  • Operating Temperature
    -40 °C to 150 °C
  • Package
    IPAK short leads
  • Pin Count
    3 Pins
  • Polarity
    N
  • Ptot max
    43.1 W
  • Qgd
    3.7 nC
  • QG (typ @10V)
    10.5 nC
  • QG
    10.5 nC
  • RDS (on) max
    600 mΩ
  • RDS (on) (@10V) max
    600 mΩ
  • RthJA max
    62 K/W
  • RthJC max
    2.9 K/W
  • Rth
    2.9 K/W
  • Special Features
    price/performance
  • VDS max
    700 V
  • VGS(th)
    3 V
OPN
IPS70R600P7SAKMA1
Product Status discontinued
Infineon Package
Package Name IPAK short leads
Packing Size 1500
Packing Type TUBE
Moisture Level NA
Moisture Packing NON DRY
Lead-free No
Halogen Free Yes
RoHS Compliant Yes
Infineon stock last updated:

Product Status discontinued
Infineon Package
Package Name IPAK short leads
Packing Size 1500
Packing Type TUBE
Moisture Level NA
Moisture Packing NON DRY
Lead Free
Halogen Free
RoHS Compliant
Developed to serve today’s and especially tomorrow’s trends in flyback topologies – the new 700V CoolMOS™ P7 superjunction MOSFET series addresses the low power SMPS market, such as mobile phone chargers or notebook adapters by offering fundamental performance gains compared to superjunction technologies used today. By combining customers’ feedback with over 20 years of superjunction MOSFET experience, 700V CoolMOS™ P7 enables best fit for target applications in terms of:
  • Efficiency and thermals
  • Ease-of-use
  • EMI behavior

Features

  • CoolMOS™ 7 series
  • low gate charge
  • low stored energy in COSS
  • integrated gate resistor
  • Fieldproven CoolMOS™ quality
  • CoolMOS™ since 1998

Benefits

  • better control
  • high efficiency @ hard switching
  • higher power density
  • MOSFET suits hard & resonant topologies
  • short leads

Applications

Documents

Design resources

Developer community

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