2N6394
2N6394 is Silicon Controlled Rectifiers manufactured by onsemi.
Features
- Glass Passivated Junctions with Center Gate Geometry for Greater
- -
- Parameter Uniformity and Stability Small, Rugged, Thermowatt Construction for Low Thermal Resistance, High Heat Dissipation and Durability Blocking Voltage to 800 V Pb- Free Packages are Available- http://onsemi.
SCRs 12 AMPERES RMS 50 thru 800 VOLTS
G A Unit V K
MAXIMUM RATINGS † (TJ = 25°C unless otherwise noted)
Rating Peak Repetitive Off- State Voltage (Note 1) (TJ =
- 40 to 125°C, Sine Wave, 50 to 60 Hz, Gate Open) 2N6394 2N6395 2N6397 2N6399 On-State RMS Current (180° Conduction Angles; TC = 90°C) Peak Non-Repetitive Surge Current (1/2 Cycle, Sine Wave, 60 Hz, TJ = 90°C) Circuit Fusing (t = 8.3 ms) Forward Peak Gate Power (Pulse Width ≤ 1.0 ms, TC = 90°C) Forward Average Gate Power (t = 8.3 ms, TC = 90°C) Forward Peak Gate Current (Pulse Width ≤ 1.0 ms, TC = 90°C) Operating Junction Temperature Range Storage Temperature Range Symbol VDRM, VRRM 50 100 400 800 IT(RMS) ITSM I2t PGM PG(AV) IGM TJ Tstg 12 100 40 20 0.5 2.0
- 40 to +125
- 40 to +150 A A A2s W W A °C °C 1 2 3 Value
MARKING DIAGRAM
4 TO- 220AB CASE 221A STYLE 3 2N639x G AYWW
2N639x = Device Code x = 4, 5, 7, or 9 G = Pb- Free Package A = Assembly Location Y = Year WW = Work Week
MAXIMUM RATINGS † (TJ = 25°C unless otherwise noted)
Rating Thermal Resistance, Junction- to- Case Maximum Lead Temperature for Soldering Purposes 1/8″ from Case for 10 Seconds Symbol Rq JC TL Max 2.0 260 Unit °C/W °C 1 2 3 4
PIN ASSIGNMENT
Cathode Anode Gate Anode
†Indicates JEDEC Registered Data Stresses exceeding Maximum Ratings may damage the device. Maximum Ratings are stress ratings only. Functional operation above the Remended Operating Conditions is not implied. Extended exposure to stresses above the Remended Operating Conditions may affect device reliability. 1. VDRM and VRRM for all types can be applied on a continuous basis. Ratings apply for zero or negative gate voltage; however, positive gate voltage shall not be applied concurrent...