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FJP13009H2TU
+BOMTRANS NPN 400V 12A TO220-3
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Manufactureronsemi
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Mfr. Part #FJP13009H2TU
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Datasheet FJP13009H2TU DataSheet
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Package TO-220-3
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In Stock7258
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Specifications
| Attribute | Value |
| Package / Case | Tube |
| Part Status | Active |
| Transistor Type | NPN |
| Current - Collector(Ic)(Max) | 12 A |
| Voltage - Collector Emitter Breakdown(Max) | 400 V |
| Vce Saturation(Max) @ Ib Ic | 3V @ 3A, 12A |
| DC Current Gain(h FE)(Min) @ Ic Vce | 15 @ 5A, 5V |
| Power - Max | 100 W |
| Frequency - Transition | 4MHz |
| Operating Temperature | 150°C (TJ) |
| Mounting Type | Through Hole |
Overview
Description
Equivalent
1. TIP3055
2. MJE13009
3. 2N3055
4. FJP13009
These transistors are suitable for similar applications, like power supplies and switching operations. Always verify the specifications and pin configurations before substitution to ensure compatibility with your application.
Features
1. High Voltage Capability: It can handle a collector-emitter voltage (Vce) of up to 400V, making it suitable for high-voltage applications.
2. High Current Capacity: The transistor supports a collector current (Ic) of up to 12A, which is ideal for driving high-power loads.
3. Fast Switching: It offers quick switching times, making it efficient for use in power supply and converter applications.
4. Power Dissipation: The device can dissipate power up to 80W, which is useful in managing heat during operation.
5. TO-220 Package: This standard package provides efficient heat dissipation and ease of installation on circuit boards.
6. Applications: Commonly used in power converters, inverters, and as a switch in various electronic circuits.
These features make the FJP13009H2TU a reliable choice for various high-voltage and high-current applications. Always refer to the datasheet for detailed specifications and operational guidelines.
Pinout
1. Pin Count: 3 pins
2. Pin Functions:
- Pin 1: Base (B) - This pin is used to control the transistor's operation. A small current applied to the base allows a larger current to flow from the collector to the emitter.
- Pin 2: Collector (C) - This is the pin through which the main current flows when the transistor is in the 'on' state. It is usually connected to the load.
- Pin 3: Emitter (E) - This pin is generally connected to the ground or a power supply return path. It is the terminal through which the current leaves the transistor.
These transistors are designed for high-speed switching and high-voltage operations, making them suitable for use in various electronic power circuits.