Part Details for FFPF20UA60DN by Fairchild Semiconductor Corporation
Results Overview of FFPF20UA60DN by Fairchild Semiconductor Corporation
- Distributor Offerings: (1 listing)
- Number of FFF Equivalents: (0 replacements)
- CAD Models: (Request Part)
- Number of Functional Equivalents: (0 options)
- Part Data Attributes: (Available)
- Reference Designs: (Not Available)
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FFPF20UA60DN Information
FFPF20UA60DN by Fairchild Semiconductor Corporation is a Rectifier Diode.
Rectifier Diodes are under the broader part category of Diodes.
A diode is a electrical part that can control the direction in which the current flows in a device. Consider factors like voltage drop, current capacity, reverse voltage, and operating frequency when selecting a diode. Read more about Diodes on our Diodes part category page.
Price & Stock for FFPF20UA60DN
Part # | Distributor | Description | Stock | Price | Buy | |
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Rochester Electronics | Rectifier Diode, 1 Phase, 2 Element, 10A, 600V, TO-220AB RoHS: Compliant Status: End of Life / Last Time Buy Min Qty: 1 | 14 |
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$0.3339 / $0.5385 | Buy Now |
Part Details for FFPF20UA60DN
FFPF20UA60DN CAD Models
FFPF20UA60DN Part Data Attributes
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FFPF20UA60DN
Fairchild Semiconductor Corporation
Buy Now
Datasheet
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FFPF20UA60DN
Fairchild Semiconductor Corporation
Rectifier Diode, 1 Phase, 2 Element, 10A, 600V V(RRM), Silicon, TO-220AB, ROHS COMPLIANT, TO-220F, 3 PIN
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Pbfree Code | Yes | |
Rohs Code | Yes | |
Part Life Cycle Code | Transferred | |
Ihs Manufacturer | FAIRCHILD SEMICONDUCTOR CORP | |
Part Package Code | TO-220F | |
Package Description | ROHS COMPLIANT, TO-220F, 3 PIN | |
Pin Count | 3 | |
Manufacturer Package Code | TO220, MOLDED, 3LD, FULL PACK, EIAJ SC91, STRAIGHT LEAD | |
Reach Compliance Code | not_compliant | |
ECCN Code | EAR99 | |
HTS Code | 8541.10.00.80 | |
Additional Feature | FREE WHEELING DIODE, HIGH RELIABILITY | |
Application | ULTRA FAST RECOVERY | |
Configuration | COMMON CATHODE, 2 ELEMENTS | |
Diode Element Material | SILICON | |
Diode Type | RECTIFIER DIODE | |
Forward Voltage-Max (VF) | 2.2 V | |
JEDEC-95 Code | TO-220AB | |
JESD-30 Code | R-PSFM-T3 | |
JESD-609 Code | e3 | |
Non-rep Pk Forward Current-Max | 50 A | |
Number of Elements | 2 | |
Number of Phases | 1 | |
Number of Terminals | 3 | |
Operating Temperature-Max | 150 °C | |
Operating Temperature-Min | -65 °C | |
Output Current-Max | 10 A | |
Package Body Material | PLASTIC/EPOXY | |
Package Shape | RECTANGULAR | |
Package Style | FLANGE MOUNT | |
Qualification Status | Not Qualified | |
Rep Pk Reverse Voltage-Max | 600 V | |
Reverse Recovery Time-Max | 0.12 µs | |
Surface Mount | NO | |
Terminal Finish | MATTE TIN | |
Terminal Form | THROUGH-HOLE | |
Terminal Position | SINGLE |
FFPF20UA60DN Frequently Asked Questions (FAQ)
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The maximum junction temperature that the FFPF20UA60DN can withstand is 150°C. However, it's recommended to operate the device at a junction temperature below 125°C for reliable operation and to ensure a long lifespan.
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To ensure proper cooling, it's essential to provide a good thermal path from the device to a heat sink or a metal plate. Apply a thin layer of thermal interface material (TIM) to the device's exposed metal surface, and then attach it to a heat sink or a metal plate using screws or a thermal adhesive. Make sure the heat sink or metal plate is large enough to dissipate the heat generated by the device.
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The recommended gate drive voltage for the FFPF20UA60DN is between 10V and 15V. However, the device can tolerate gate drive voltages up to 20V. It's essential to ensure that the gate drive voltage is within the recommended range to prevent damage to the device.
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Yes, the FFPF20UA60DN is suitable for high-frequency switching applications up to 100 kHz. However, it's essential to consider the device's switching losses, gate drive requirements, and thermal management when designing the application. Additionally, ensure that the device is operated within its recommended specifications to prevent overheating and damage.
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To protect the FFPF20UA60DN from overvoltage and overcurrent, it's recommended to use a voltage clamp or a surge protector at the input of the device. Additionally, consider using a current sense resistor and a fuse to detect and respond to overcurrent conditions. It's also essential to ensure that the device is operated within its recommended specifications and that the system is designed to prevent overvoltage and overcurrent conditions.