• Part: CTB16
  • Description: Triacs
  • Manufacturer: Crydom Corporation
  • Size: 96.33 KB
Download CTB16 Datasheet PDF
Crydom Corporation
CTB16
CTB16 is Triacs manufactured by Crydom Corporation.
.. POWER PONENTS Applications - Phase Control - Static Switching - Light Dimming - Motor Speed Control - Kitchen Equipment - Power Tools - Solenoid Valve Controls: - Dishwasher - Washing Machines > Suitable for General Purpose AC Switching > Alternistor/No Snubber Versions for Inductive Loads > Logic Level Available for use with Microcontrollers and Low Level Devices > IGT Range 10-50 m A (Q1) > VDRM/VRMM 400, 600, 800, 1000V CTA/CTB16 16Amp - 400/600/800/1000V - TRIAC SYMBOL IT(RMS) ITSM I2 t di/dt tp = 20 µs IGM PG(AV) Tstg Tj VISO Absolute Maximum Ratings RMS On-State Current (full sine wave) Non Repetitive Surge Peak On-State Current (Full Cycle, Tj Initial = 25˚C) I2 t Value for fusing Critical rate of rise of on-state current IG=2 x IGT, tr<100ns, Tj = 125˚C Peak Gate Current @ Tj = 125˚C Average Gate Power Dissipation @ Tj = 125˚C Tc = 100˚C Tc = 85˚C CONDITIONS TO-220AB TO-220AB Iso F =50 Hz F =60 Hz tp = 10 ms RATING 16A 160A 168A 144A2s 100A/µs 4A 1W -40 to +150˚C -40 to +125˚C 2500 VRMS A1 A2 Storage Temperature Range Operating Junction Temperature Range Isolation Voltage (CTA Series only) A2 TO-220AB Isolated (CTA16) Electrical Characteristics ALTERNISTOR/NO SNUBBER AND LOGIC LEVEL (3 Quadrants) IGT MAX @ VD =12 V, RL = 30Ω NOTE 1 QI-II-III QI-II-III Tj = 125˚C QI-II-III VGT MAX @ VD =12 V, RL = 30Ω SW 10m A 1.3V 0.2V 15m A QI-III Q-II 25m A 30m A 40V/µs 8.5A/ms 3.0A/ms 8.5A/ms C QI-II-III QIV Q-All Tj = 125˚C Q-All 25m A QI-III-IV Q-II 40m A 80m A 200V/µs 5V/µs 25m A 50m A 1.3V 0.2V 50m A 50m A 100m A 400V/µs 10V/µs B 50m A 100m A 14A/ms CW 35m A 1.3V 0.2V 35m A 50m A 60m A 500V/µs BW 50m A 1.3V 0.2V 50m A 70m A 80m A 1000V/µs A1 A2 VGD MIN @ VD =VDRM, RL = 3.3kΩ IH MAX @ IT = 500 m A NOTE 2 IL MAX @ IG = 1.2 IGT IL MAX @ IG = 1.2 IGT A2 TO-220AB Non-Isolated (CTB16) dv/dt MIN @ VD = 67%VDRM (gate open) NOTE 2 Tj = 125˚C (dv/dt)c MIN @ (dv/dt)c = 0.1 V/ms NOTE 2 Tj = 125˚C Tj = 125˚C Tj = 125˚C (dv/dt)c MIN @ (dv/dt)c = 10 V/ms NOTE 2 (di/dt)c MIN without...