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2N5060RLRAG
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2N5060RLRAG Description
2N5060RLRAG Description
The 2N5060RLRAG is a sensitive gate silicon-controlled rectifier (SCR) manufactured by onsemi, designed for low-power switching applications. This obsolete through-hole component features a 30V off-state voltage and an 800mA RMS on-state current, making it suitable for moderate current control. With a gate trigger current (Igt) of just 200 µA and a gate trigger voltage (Vgt) of 800mV, it offers high sensitivity, reducing drive circuit complexity. Packaged in TO-92-3 and supplied in Tape & Reel (TR), it is optimized for automated assembly. Its low holding current (Ih) of 5mA ensures reliable latching in low-power circuits.
2N5060RLRAG Features
- Sensitive Gate SCR: Minimal gate drive requirements (200 µA Igt, 800mV Vgt) simplify control circuitry.
- Robust Surge Handling: Supports 10A non-repetitive surge current (Itsm) at 60Hz, ideal for transient protection.
- Low On-State Voltage Drop (Vtm): 1.7V max reduces power dissipation.
- Low Leakage Current: 10 µA max off-state current enhances efficiency.
- Wide Operating Range: Suitable for 510mA average current (It(AV)) and 800mA RMS current (It(RMS)).
- Reliable Packaging: TO-92-3 with MSL 1 (Unlimited) moisture sensitivity, ensuring long-term storage stability.
2N5060RLRAG Applications
- Low-Power Switching: Ideal for relay drivers, small motor controls, and light dimmers due to its sensitive gate and moderate current rating.
- Surge Protection: Used in crowbar circuits and overvoltage protection thanks to its high surge current capability.
- Consumer Electronics: Common in appliance controls, timers, and power tools where low gate drive is critical.
- Industrial Controls: Suitable for solenoid actuators and AC/DC switching in automation systems.
Conclusion of 2N5060RLRAG
The 2N5060RLRAG excels in low-power, high-sensitivity SCR applications, offering a balance of ease of triggering, surge resilience, and compact packaging. While obsolete, its low Vgt/Igt and robust surge performance make it a preferred choice for legacy designs requiring reliable thyristor action. Engineers value it for cost-sensitive, space-constrained projects where minimal gate drive and efficient switching are paramount.



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