BT04F-600B FS | Alldatasheet

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TECH NICAL DATA BT04F-600B 2018. 12. 20 1/3Revision No : 0 BT04F-600B TRIAC MAIN FEATURES Symbol value unit IT(RMS) 4 A VDRM/VRRM 600 V ITSM 25 A GENERAL DESCRIPTION Glass passivated triacs in a plastic envelope , intended for use in applications requiring high bidirectional transient andblocking voltage capability and high thermal cycling performance. Typical applications include motor control, industrial and domestic lighting , heating and static switching. ABSOLUTE MAXIMUM RATINGS (Ta=25℃ unless otherwise noted) e u l a v r e t e m a r a p l o b m y s unit IT(RMS) RMS on-state current (full sine wave) TC=107℃ 4 A t=20ms 25 ITSM Non repetitive surge peak on-state current (full sine wave, Tj =25℃) t=16.7ms 27 A IGM Peak gate current 2 A PG(AV) Avera ge gate power dissipation Tj=125℃ 0.5 W Tstg Tj Storage junction temperature range Operating junction temperature range -40 to +150 -40 to +125 ℃ ELECTRICAL CHARACTERISTICS (Ta=25℃ unless otherwise specified) Parameter Sym bol Test c onditions Min Max Unit Rated repetitive peak off-state/reverse voltage VDRM,VRRM ID=10μA 600 V Rated repetitive peak off-state current IDRM, IRRM VD=6 V 0 2 10 μA On-state voltage V TM I T=5A 1.7 V Ⅰ T2(+), G(+) 5 Ⅱ T2(+), G(-) 5 Ⅲ T2(-), G(-) 5 Gate trigger current I GT T2(-), G(+) VD=12V RL=100Ω Gate trigger voltage V GT T2(-), G(+) VD=12V RL=100Ω 1.7 V Holding current I H I T =100mA I G=20mA 10 mA TO-220F mA mA mA mA A B C D E FG H J K L N N O Q R 1 2 3 M A B C D E F G H 1 39 MAX 1 39 MAX J K L M N O Q R DIM MILLIMETERS 10 16 0 20+_ 15 87 0 20+_ 2 54 0 20+_ 0 81 0 10+_ 3 18 0 20+_ 0 53 0 07+_ 12 98 0 20+_ 2 54 typ 4 70 0 20+_ 6 70 0 20+_ 2 70 0 20+_ 3 3 typ 15 67 0 4+_ 3 50 MAX

  1. 12. 20 2/3Revision No : 0 Performance Curves Fig 1. Gate Characteristics Fig 2. On-State Voltage Gate Current mA On- state Voltage V Fig 3. Gate Trigger Voltage vs. Junction Fig 4. On State Current vs. Maximum Temperature Power Dissipation Fig 5. On State Current vs. Allowable Case Fig 6. Surge On-State Current Rating Temperature ( Non-Repetitive ) RMS On-state Current [A] Time (Cycles) Allowable Case Temp. [℃] Surge On-state Current [A] Power Dissipation [W] On-state Current [A] On-state Voltage (V) RMS On-state current [A] Junction Temperature[℃]
  1. 12. 20 3/3Revision No : 0 Fig 7. Gate Trigger Current vs. Fig 8. T ransient Thermal Impedance Junction Temperature Fig 9. Gate Trigger Characteristics Test Circuit Transient Thermal Impedance [ /W ] Junction Temperature [℃] Test Procedure Test Procedure Test Procedure Test Procedure Time (sec)