Datasheets
NTP2955 by:
onsemi
onsemi
Rochester Electronics LLC
Not Found

2.4A, 60V, 0.196ohm, P-CHANNEL, Si, POWER, MOSFET, TO-220AB, PLASTIC, CASE 221A-09, TO-220, 3 PIN

Part Details for NTP2955 by onsemi

Results Overview of NTP2955 by onsemi

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NTP2955 Information

NTP2955 by onsemi is a Power Field-Effect Transistor.
Power Field-Effect Transistors are under the broader part category of Transistors.

A transistor is a small semiconductor device used to amplify, control, or create electrical signals. When selecting a transistor, factors such as voltage, current rating, gain, and power dissipation must be considered, with common types. Read more about Transistors on our Transistors part category page.

Part Details for NTP2955

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NTP2955 Part Data Attributes

NTP2955 onsemi
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NTP2955 onsemi 2.4A, 60V, 0.196ohm, P-CHANNEL, Si, POWER, MOSFET, TO-220AB, PLASTIC, CASE 221A-09, TO-220, 3 PIN
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Rohs Code No
Part Life Cycle Code Obsolete
Ihs Manufacturer ON SEMICONDUCTOR
Part Package Code TO-220AB
Package Description PLASTIC, CASE 221A-09, TO-220, 3 PIN
Pin Count 3
Manufacturer Package Code CASE 221A-09
Reach Compliance Code not_compliant
ECCN Code EAR99
Samacsys Manufacturer onsemi
Avalanche Energy Rating (Eas) 216 mJ
Case Connection DRAIN
Configuration SINGLE WITH BUILT-IN DIODE
DS Breakdown Voltage-Min 60 V
Drain Current-Max (ID) 2.4 A
Drain-source On Resistance-Max 0.196 Ω
FET Technology METAL-OXIDE SEMICONDUCTOR
JEDEC-95 Code TO-220AB
JESD-30 Code R-PSFM-T3
JESD-609 Code e0
Number of Elements 1
Number of Terminals 3
Operating Mode ENHANCEMENT MODE
Operating Temperature-Max 175 °C
Package Body Material PLASTIC/EPOXY
Package Shape RECTANGULAR
Package Style FLANGE MOUNT
Peak Reflow Temperature (Cel) 235
Polarity/Channel Type P-CHANNEL
Power Dissipation-Max (Abs) 62.5 W
Pulsed Drain Current-Max (IDM) 42 A
Qualification Status Not Qualified
Surface Mount NO
Terminal Finish TIN LEAD
Terminal Form THROUGH-HOLE
Terminal Position SINGLE
Transistor Application SWITCHING
Transistor Element Material SILICON

Alternate Parts for NTP2955

This table gives cross-reference parts and alternative options found for NTP2955. The Form Fit Function (FFF) tab will give you the options that are more likely to serve as direct pin-to-pin alternates or drop-in parts. The Functional Equivalents tab will give you options that are likely to match the same function of NTP2955, but it may not fit your design. Always verify details of parts you are evaluating, as these parts are offered as suggestions for what you are looking for and are not guaranteed.

Part Number Manufacturer Composite Price Description Compare
NTP2955G Rochester Electronics LLC Check for Price 2.4A, 60V, 0.196ohm, P-CHANNEL, Si, POWER, MOSFET, TO-220AB, LEAD FREE, PLASTIC, CASE 221A-09, TO-220, 3 PIN NTP2955 vs NTP2955G

NTP2955 Related Parts

NTP2955 Frequently Asked Questions (FAQ)

  • A good PCB layout for NTP2955 involves keeping the input and output traces short and separate, using a solid ground plane, and placing the device close to the power source. Additionally, it's recommended to use a shielded inductor and to keep the switching node (SW pin) away from sensitive analog circuits.

  • The inductor value for NTP2955 depends on the input voltage, output voltage, and switching frequency. A good starting point is to use the inductor value recommended in the datasheet (e.g., 1.5 μH). Then, adjust the value based on the specific design requirements and perform simulations to ensure the desired performance.

  • The maximum ambient temperature for NTP2955 is 85°C, but it's recommended to derate the device's performance at higher temperatures. The device's junction temperature (TJ) should not exceed 150°C.

  • Yes, NTP2955 is suitable for high-reliability applications. It's manufactured using a robust process and has undergone rigorous testing to ensure its reliability. However, it's essential to follow proper design and manufacturing guidelines to ensure the device's reliability in the specific application.

  • To troubleshoot NTP2955 oscillation issues, check the PCB layout, ensure proper decoupling, and verify that the input and output capacitors meet the recommended specifications. Also, check for any noise or interference on the input voltage and ensure that the device is operated within its recommended specifications.