Ftd02p Datasheet |top|
For more information about the FTD02P datasheet, you can refer to the following resources:
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| Parameter | Value | | :--- | :--- | | | FT02P (Gravity Series) | | Channels | 2 | | Control Signal | High Level Trigger (Active High) | | Operating Voltage | 5V (Compatible with 3.3V logic) | | Contact Capacity | 10A (250VAC / 30VDC) | | Quiescent Current | Approx. 0mA (Ultra-low power standby) | | Dimensions | 39mm x 22mm (approx) |
The is a power transistor, typically categorized as a P-channel MOSFET or IGBT, primarily used in printer motherboards (such as Epson L800, T50, and R330) to drive motors. It is almost always paired with its N-channel counterpart, the FTD01N , to form an H-bridge circuit for controlling motor speed and direction. FTD02P Technical Specifications Ftd02p Datasheet
🌡️ This is non-negotiable. If your load is inductive or you’re in linear mode, ensure your DC or pulse current stays under the line. Many engineers forget this until the magic smoke appears.
The principal use-case for the FTD02P is in an H-bridge configuration, working concurrently with its N-channel sister chip, the FTD01N. In this orientation, the FTD02P functions as the upper linear pass switch.
The FT02P features a standardized Gravity interface (PH2.0 connector) as well as standard header pins for flexibility. For more information about the FTD02P datasheet, you
Moral: Always check the "Typical Performance Curves," not just the max ratings.
The FTD02P is a versatile power MOSFET that can be used in a wide range of applications, including:
Note: For exact structural routing layout details, please verify your specific printed circuit board (PCB) schematic layout against the physical schematic diagrams inside the official Alldatasheet PDF manual. 4. Primary Applications and Use Cases H-Bridge Precision Motor Drivers It is almost always paired with its N-channel
: Never replace just the FTD02P. If one transistor in the pair fails, the other is likely stressed or damaged. Always replace both the FTD01N and FTD02P together to ensure circuit stability.
I’ve seen a few questions popping up regarding the recently. I wanted to share a direct link to the datasheet for anyone struggling to find reliable specs for their circuit designs.
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