FS0802.D SURFACE MOUNT SCR DPAK (Plastic) On-State Current Gate Trigger Current 8 Amp < 200 µA Off-State Voltage 200 V ÷ 600 V A K A These series of Silicon Controlled R ectifier use a high performance PNPN technology. G These parts are intended for general purpose applications where high gate sensitivity is required using surface mount technology. Absolute Maximum Ratings, according to IEC publication No. 134 SYMBOL IT(RMS) IT(AV) ITSM ITSM I2t VGRM IGM PGM PG(AV) Tj Tstg Tsld SYMBOL VDRM VRRM PARAMETER On-state Current Average On-state Current Non-repetitive On-State Current Non-repetitive On-State Current Fusing Current Peak Reverse Gate Voltage Peak Gate Current Peak Gate Dissipation Gate Dissipation Operating Temperature Storage Temperature Soldering Temperature PARAMETER Repetitive Peak Off State Voltage CONDITIONS Min. 180º Conduction Angle, Tc = 110 ºC Half Cycle, Θ = 180 º, TC = 110 ºC Half Cycle, 60 Hz Half Cycle, 50 Hz tp = 10ms, Half Cycle IGR = 10 µA 20 µs max. 20 µs max. 20ms max. -40 -40 10s max. CONDITIONS RGK = 1 KΩ Max. Unit 8 5 73 70 24 8 4 5 1 +125 +150 260 A A A A A 2s V A W W ºC ºC ºC VOLTAGE B 200 D 400 Unit M 600 V Feb - 03 FS0802.D SURFACE MOUNT SCR Electrical Characteristics SYMBOL PARAMETER CONDITIONS SENSITIVITY Unit 02 Gate Trigger Current VD = 12 VDC , RL = 140Ω. Tj = 25 ºC IDRM / IRRM Off-State Leakage Current VTM VGT VGD On-state Voltage Gate Trigger Voltage Gate Non Trigger Voltage IH IL dv / dt Latching Current Critical Rate of Voltage Rise V D = VDRM , RGK = 220Ω Tj = 125 ºC VR = VRRM , Tj = 25 ºC at IT = 16 Amp, tp = 380 µs, Tj = 25 ºC VD = 12 VDC , RL = 140Ω, Tj = 25 ºC VD = VDRM , RL = 3.3KΩ, RGK = 220Ω Tj = 125 ºC IT = 50 mA, RGK = 1KΩ Tj = 25 ºC MAX IG = 1 mA, RGK = 1 KΩ MAX MIN VD = 0.67 x VDRM , RGK = 220Ω, Tj = 125 ºC di / dt Critical Rate of Current Rise IG = 2 x IGT Rth(j-c) Thermal Resistance Junction-Case for DC Thermal Resistance Junction-Amb for DC Rth(j-a) Holding Current Tr ≤ 100 ns, F = 60 Hz, Tj = 125 ºC µA MIN MAX MAX MAX MAX MAX MIN IGT 200 1 5 1.6 0.8 0.1 MIN mA µA V V V 5 mA 6 5 mA V/µs 50 A/µs 20 ºC/W 70 ºC/W Vt0 Threshold Voltage Tj = 125 ºC MAX 0.85 V Rd Dynamic resistance Tj = 125 ºC MAX 46 mΩ F S 08 02 B D 00 TR FAGOR PACKAGING FORMING SCR CURRENT CASE VOLTAGE SENSITIVITY Feb - 03 FS08...D SURFACE MOUNT SCR Fig. 1: Maximum average power dissipation versus average on-state current. Fig. 2: Average and D.C. on-state current versus case temperature. P (W) I T(av) (A) 10 10 8 8 6 6 D.C. 4 α = 180 º 4 2 360 º 2 α IT(av)(A) 0 0 1 2 3 4 5 6 7 T case (ºC) 0 0 Fig. 3: Relative variation of thermal impedance junction to case versus pulse duration. 25 50 75 100 125 Fig. 4: Relative variation of gate trigger current, holding and latching current versus junction temperature. K = [Zth(j-c) / Rth (j-c)] IGT, IH (Tj) / IGT, IH (Tj = 25 ºC) 2.0 1.0 1.8 1.6 IGT 1.4 0.5 1.2 IH & IL 1.0 0.8 0.6 0.2 0.4 0.2 0.1 1E-3 tp (s) 1E-2 1E-1 0.0 1E+0 Fig. 5: Non repetitive surge peak on-state current versus number of cycles. Tj (ºC) -40 -20 0 20 40 60 80 100 120 140 Fig. 6: Non repetitive surge peak on-state current for a sinusoidal pulse with width: tp < 10 ms, and corresponding value of I2t. ITSM(A). I2t (A2s) I TSM (A) 300 80 Tj initial = 25 ºC Tj initial = 25 ºC F = 50 Hz 70 ITSM 60 100 50 40 50 30 I2 t 20 20 10 0 1 10 100 Number of cycles 1000 tp(ms) 10 1 2 5 10 Feb - 03 FS08...D SURFACE MOUNT SCR FOOT PRINT Fig. 8: On-state characteristics (maximum values). 6.7 ITM(A) 100.0 Tj = Tj max. 6.7 10.0 Tj = 25 ºC 1.0 3 Tj max Vto = 0.85 V Rt = 46 mΩ 3 VTM(V) 0.1 0 0.5 1.0 1.5 2.0 2.5 3.0 3.5 4.0 4.5 5.0 1.6 1.6 2.3 2.3 PACKAGE MECHANICAL DATA DPAK TO 252-AA REF. 8º±2º A ø1x0.15 E1 c2 E L3 8º±2º 8º±2º D1 D H 1.6 8º±2º L4 8º±2º L e 4.57 Typ. b L2 A1 1.067±0.013 A A1 b c c1 c2 D D1 E E1 e H L L1 L2 L3 L4 Min. 2.18 0 0.64 0.46 0.46 5.97 5.21 6.35 5.20 9.40 1.40 2.55 0.46 0.89 0.64 DIMENSIONS Milimeters Nominal 2.3±0.18 0.12 0.75±0.1 0.8±0.013 6.1±0.1 6.58±0.14 5.36±0.1 2.28BSC 9.90±0.15 2.6±0.05 0.5±0.013 1.20±0.05 0.83±0.1 Max. 2.39 0.127 0.89 0.61 0.56 6.22 5.52 6.73 5.46 10.41 1.78 2.74 0.58 1.27 1.02 Marking: type number Weight: 0.2 g Feb - 03