Download T3050H Datasheet PDF
STMicroelectronics
T3050H
T3050H is Triacs manufactured by STMicroelectronics.
- Part of the T3035H comparator family.
Features - High current Triac - High immunity level - Low thermal resistance with clip bonding - Very high 3 quadrant mutations at 150 °C capabilities - Packages are Ro HS (2002/95/EC) pliant - UL certified (ref. file E81734) Application Thanks to its high electrical noise immunity level and its strong current robustness, the T3035H, T3050H series is designed for the control of AC actuators in appliances and industrial systems. Description Specifically designed to operate at 150 °C, the 30 A triacs T3050H provide very high dynamic and enhanced performance in terms of power loss and thermal dissipation. This allows the heatsink size optimization, leading to space and cost effectiveness when pared to electro-mechanical solutions. Based on ST Snubberless technology, they offer a specified minimal mutation and high noise immunity levels valid up to the Tj max. These devices safely optimize the control of universal motors and inductive loads found in power tools and major appliances. By using an internal ceramic pad, they provide voltage insulation (rated at 2500 VRMS). DS6689 - Rev 8 - April 2022 For further information contact your local STMicroelectronics sales office. .st. T3035H, T3050H Characteristics Characteristics Table 1. Absolute maximum ratings (limiting values) Symbol Parameter IT(RMS) RMS on-state current (full sine wave) ITSM I2t dl/dt VDSM/ VRSM IGM PG(AV) Tstg Tj Non repetitive surge peak on-state current (full cycle, Tj initial = 25 °C) I2t value for fusing Critical rate of rise of on-state current, IG = 2 x IGT, tr ≤ 100 ns, f = 100 Hz Non Repetitive peak off-state voltage Peak gate current Average gate power dissipation Storage temperature range Operating junction temperature range D2PAK, TO-220AB TO-220AB Ins. f = 50 Hz f = 60 Hz Tc = 121 °C Tc = 92 °C t = 20 ms t = 16.7 ms tp = 10 ms f = 120 Hz Tj =150 °C tp = 10 ms tp = 20 µs Tj = 25 °C Tj = 150 °C Tj = 150 °C Value 270 284...