The TYN616RG from STMicroelectronics is a standard silicon-controlled rectifier designed for general-purpose power-switching and AC-control applications. It features a 600V repetitive peak off-state voltage, a 16A RMS on-state current, and a 10A average on-state current. Its clip-assembly construction provides strong non-repetitive surge-current capability.
The device has a maximum gate-trigger current of 25mA, a maximum gate-trigger voltage of 1.3V, and a maximum holding current of 40mA. Its maximum on-state voltage is 1.6V at 32A, while its minimum critical off-state voltage rise rate is 500V/μs.
TYN616RG supports a non-repetitive surge on-state current of 190A for a 10ms pulse or 200A for an 8.3ms pulse. Its junction-to-case thermal resistance is 1.1°C/W, with an operating junction-temperature range of -40°C to +125°C and a storage range of -40°C to +150°C.
The component is supplied in a three-lead TO-220AB through-hole package, with the mounting tab electrically connected to the anode. The package uses ST ECOPACK lead-free interconnect technology and is supplied in tubes with a base quantity of 50 devices.
Key Specifications:
- Manufacturer: STMicroelectronics
- Manufacturer Part Number: TYN616RG
- Component Type: Standard SCR Thyristor
- Repetitive Peak Off-State Voltage: 600V
- RMS On-State Current: 16A
- Average On-State Current: 10A
- Maximum Gate-Trigger Current: 25mA
- Maximum Gate-Trigger Voltage: 1.3V
- Maximum Holding Current: 40mA
- Maximum Latching Current: 60mA
- Non-Repetitive Surge Current: 190A at 10ms / 200A at 8.3ms
- Maximum On-State Voltage: 1.6V at 32A
- Critical On-State Current Rise Rate: 50A/μs
- Minimum Off-State Voltage Rise Rate: 500V/μs
- Junction-to-Case Thermal Resistance: 1.1°C/W
- Operating Junction Temperature: -40°C to +125°C
- Package: TO-220AB
- Mounting Type: Through-Hole
- Packaging: Tube
- Base Package Quantity: 50 Pieces
Typical Applications:
Suitable for AC power control, phase control, heater control, motor control, lighting control, power-protection circuits, and general-purpose power switching. Load characteristics, gate-drive capability, thermal management, surge conditions, and electrical isolation should be evaluated in the final design.







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