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《电力电子技术》课程实验指导(参考资料)MAC97A6datasheet

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《电力电子技术》课程实验指导(参考资料)MAC97A6datasheet
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UIC UNISONIG TECHNOLOGIES CO.LTD MAC97A6/8 TRIACS LOGIC LEVEL TRIAC ■ DESCRIPTION Logic level sensitive gate triac intended to be interfaced directly S0T-223 to microcontrollers.logic integrated circuits and other low power gate trigger circuits. ■FEATURES *Blocking voltage to 600 V(MAC97A8) *RMS on-state current to 0.6 A *Sensitive gate in all four quadrants T0-92 ■ APPLICATIONS *General purpose bidirectional switching *Pb-free plating product number: *Phase control applications MAC97A6L/MAC97A8L *Solid state relays. ■ SYMBOL MT ORDERING INFORMATION Order Number Package Pin Assignment Packing Normal Lead Free Plating 1 23 MAC97A6-AA3-R MAC97A6L-AA3-R S0T-223 MT1 MT2 Gate Tape Box MAC97A6-T92-B MAC97A6L-T92-B T0-92 MT1 Gate MT2 Tape Box MAC97A6-T92-K MAC97A6L-T92-K T0-92 MT1 Gate MT2 Bulk MAC97A6-T92-R MAC97A6L-T92-R T0-92 MT1 Gate MT2 Tape Reel MAC97A8-AA3-R MAC97A8L-AA3-R S0T-223 MT1 MT2 Gate Tape Box MAC97A8-T92-B MAC97A8L-T92-B T0-92 MT1 Gate MT2 Tape Box MAC97A8-T92-K MAC97A8L-T92-K T0-92 MT1 Gate MT2 Bulk MAC97A8-T92-R MAC97A8L-T92-R T0-92 MT1 Gate MT2 Tape Reel MAC97A6L-AA3-R (1)Packing Type (1)B:Tape Box,K:Bulk,R:Tape Reel (2)Package Type (2)AA3:S0T-223,T92:T0-92 (3)Lead Plating (3)L:Lead Free Plating Blank:Pb/Sn www.unisonic.com.tw 1 of5 Copyright 2005 Unisonic Technologies Co.,Ltd QW-R401-023.C

UNISONIC TECHNOLOGIES CO., LTD MAC97A6/8 TRIACS www.unisonic.com.tw 1 of 5 Copyright © 2005 Unisonic Technologies Co., Ltd QW-R401-023.C LOGIC LEVEL TRIAC . „ DESCRIPTION Logic level sensitive gate triac intended to be interfaced directly to microcontrollers, logic integrated circuits and other low power gate trigger circuits. „ FEATURES *Blocking voltage to 600 V (MAC97A8) *RMS on-state current to 0.6 A *Sensitive gate in all four quadrants „ APPLICATIONS *General purpose bidirectional switching *Phase control applications *Solid state relays. „ SYMBOL MT2 MT1 G TO-92 1 SOT-223 1 *Pb-free plating product number: MAC97A6L/MAC97A8L „ ORDERING INFORMATION Order Number Pin Assignment Normal Lead Free Plating Package 1 2 3 Packing MAC97A6-AA3-R MAC97A6L-AA3-R SOT-223 MT1 MT2 Gate Tape Box MAC97A6-T92-B MAC97A6L-T92-B TO-92 MT1 Gate MT2 Tape Box MAC97A6-T92-K MAC97A6L-T92-K TO-92 MT1 Gate MT2 Bulk MAC97A6-T92-R MAC97A6L-T92-R TO-92 MT1 Gate MT2 Tape Reel MAC97A8-AA3-R MAC97A8L-AA3-R SOT-223 MT1 MT2 Gate Tape Box MAC97A8-T92-B MAC97A8L-T92-B TO-92 MT1 Gate MT2 Tape Box MAC97A8-T92-K MAC97A8L-T92-K TO-92 MT1 Gate MT2 Bulk MAC97A8-T92-R MAC97A8L-T92-R TO-92 MT1 Gate MT2 Tape Reel MAC97A6L-AA3-R (1)Packing Type (2)Package Type (3)Lead Plating (1) B: Tape Box, K: Bulk, R: Tape Reel (2) AA3: SOT-223, T92: TO-92 (3) L: Lead Free Plating, Blank: Pb/Sn

MAC97A6/8 TRIACS ■ ABSOLUTE MAXIMUM RATINGS CHARACTERISTIC SYMBOL RATINGS UNIT MAC97A6 400 Repetitive Peak off-State Voltage (TJ=25~125C) VDRM V MAC97A8 600 RMS on-State Current(Full Sine Wave,TLEAD<50C) IT(RMS) 0.6 A Non-Repetitive Peak on-State Current t=20ms 8.0 A (Full Sine Wave,TJ=25C Prior to Surge) t=16.7ms ITSM 8.8 A I't for Fusing (t=10ms) 0.32 A's T2+G+ 50 A/us Repetitive Rate of Rise of on-State Current After T2+G- 50 A/us Triggering(ITM=1.0A.IG=0.2A,dle/dt=0.2A/us) T2.G- dlr/dt 50 Aus T2-G+ 10 A/us Peak Gate Voltage [t=2us(max)] VGM 5 V Peak Gate Current [t=2us(max)] IGM 1 A Peak Gate Power [t=2us(max)] PGM 5 W Average Gate Power[Tcase=80℃,t=2us(max)] PG(AM 0.1 W Operating Junction Temperature T -40~+125 ℃ Storage Temperature TsTG 40-+150 ℃ Note:Absolute maximum ratings are those values beyond which the device could be permanently damaged. Absolute maximum ratings are stress ratings only and functional device operation is not implied. THERMAL DATA PARAMETER SYMBOL RATINGS UNIT T0-92 150 ℃W Thermal Resistance Junction to Ambient S0T-223 BJA 165 ℃W STATIC CHARACTERISTICS(TJ=25C,unless otherwise specified) PARAMETER SYMBOL TEST CONDITIONS MIN TYP MAX UNITS T2+G+ mA T2+G- 2 5 mA Gate Trigger Current lGT VD=12V,r=0.1A T2-G- 2 5 mA T2-G+ 4 7 mA T2+G+ 1 10 mA Latching Current T2+G- Vo=12V,l6T=0.1A 心 10 mA T2-G- 1 10 mA T2-G+ 2 10 mA Holding Current IH VD=12V.IGT=0.1A 1 10 mA On-State Voltage VT 1r=0.85A 1.4 1.9 V Gate Trigger Voltage VGT Vo=12V,r=0.1A 0.9 2 V VD=VDRM,IT=0.1A,TJ=110C 0.1 0.7 V Off-State Leakage Current VD=VDRMOMAX).TJ=110C 3 100 A DYNAMIC CHARACTERISTICS(TJ=25C,unless otherwise specified) PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS Critical Rate of Rise of Off-State VD=67%of VDRM(max). dVp/dt Tcase=110℃,Exponential 30 Voltage 6 V/us Waveform,Gate Open Circuit Critical Rate of Rise of Commutation Vo=Rated VDRM,Tcase=50℃, Voltage dVcom/dt TM=0.84A,commutating 5 VIus dl/dt=0.3A/ms Gate Controlled Turn-On Time tgt TM=1.OA,VD-VDRM(max). IG=25mA.dlG/dt=5A/us μs UIC UNISONIC TECHNOLOGIES CO.,LTD 2 of 5 www.unisonic.com.tw QW-R401-023,C

MAC97A6/8 TRIACS UNISONIC TECHNOLOGIES CO., LTD 2 of 5 www.unisonic.com.tw QW-R401-023,C „ ABSOLUTE MAXIMUM RATINGS CHARACTERISTIC SYMBOL RATINGS UNIT MAC97A6 400 V Repetitive Peak off-State Voltage (TJ=25 ~125 ) ℃ MAC97A8 VDRM 600 V RMS on-State Current (Full Sine Wave, TLEAD≤50 ) ℃ IT(RMS) 0.6 A Non-Repetitive Peak on-State Current t=20ms 8.0 A (Full Sine Wave, TJ=25℃ Prior to Surge) t=16.7ms ITSM 8.8 A I 2 t for Fusing (t=10ms) I2 t 0.32 A2 s T2+G+ 50 A/µs T2+G- 50 A/µs T2-G- 50 A/µs Repetitive Rate of Rise of on-State Current After Triggering(ITM=1.0A, IG=0.2A, dIG/dt=0.2A/µs) T2-G+ dIT/dt 10 A/µs Peak Gate Voltage [ t=2µs (max) ] VGM 5 V Peak Gate Current [ t=2µs (max) ] IGM 1 A Peak Gate Power [ t=2µs (max) ] PGM 5 W Average Gate Power [ Tcase=80℃, t=2us (max) ] PG(AV) 0.1 W Operating Junction Temperature TJ -40~+125 ℃ Storage Temperature TSTG -40~+150 ℃ Note: Absolute maximum ratings are those values beyond which the device could be permanently damaged. Absolute maximum ratings are stress ratings only and functional device operation is not implied. „ THERMAL DATA PARAMETER SYMBOL RATINGS UNIT TO-92 150 ℃/W Thermal Resistance Junction to Ambient SOT-223 θJA 165 ℃/W „ STATIC CHARACTERISTICS (TJ=25℃, unless otherwise specified) „ DYNAMIC CHARACTERISTICS(TJ=25℃, unless otherwise specified) PARAMETER SYMBOL TEST CONDITIONS MIN TYP MAX UNITS T2+G+ 1 5 mA T2+G- 2 5 mA T2-G- 2 5 mA Gate Trigger Current IGT VD=12V, IT=0.1A T2-G+ 4 7 mA T2+G+ 1 10 mA T2+G- 5 10 mA T2-G- 1 10 mA Latching Current IL VD=12V, IGT=0.1A T2-G+ 2 10 mA Holding Current IH VD=12V, IGT=0.1A 1 10 mA On-State Voltage VT IT=0.85A 1.4 1.9 V VD=12V,IT=0.1A 0.9 2 V Gate Trigger Voltage VGT VD=VDRM, IT=0.1A, TJ=110℃ 0.1 0.7 V Off-State Leakage Current ID VD=VDRM(MAX), TJ=110℃ 3 100 µA PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS Critical Rate of Rise of Off-State Voltage dVD/dt VD=67% of VDRM(max), Tcase=110 , ℃ Exponential Waveform, Gate Open Circuit 30 45 V/µs Critical Rate of Rise of Commutation Voltage dVcom/dt VD=Rated VDRM, Tcase=50 , ℃ lTM=0.84A, commutating dl/dt=0.3A/ms 5 V/µs Gate Controlled Turn-On Time tgt ITM=1.0A,VD=VDRM(max), IG=25mA,dIG/dt=5A/µs 2 µs

MAC97A6/8 TRIACS ■ TYPICAL CHARACTERISTICS Transient Thermal Impedance From Junction to Maximum On-State Dissipation as a Function of Ambient as a Function of Pulse Duration. RMS On-State Current Typical Values. a=Conduction Angle. 10 12 1 =180 0.8 a=120 M/(e-Duz x=90 0.6 a=60 =30 0.4 02 10 104 103 102 10 1 0 0.2 0.4 0.6 0.8 Tp(s) IT(RMSIA Maximum Permissible Non-Repetitive Peak on Maximum Permissible Non-Repetitive Peak State Current as a Function of Pulse Width for On-State Current as a Function of Numbe of Cycles for Sinusoidal Currents:Typical Sinusoidal Currents;Tyical Values.tps 20ms Values. n=Number of Cycles at F50Hz. 1000 ITSM ITSM time 100 Tin25max Ti作g25 105 0 10 10 101 10 a 10 Tp/s Maximum Permissible Repetitive RMS On Maximum Permissible RMS Current as a State Current as a Function of Surge Function of Lead Temperature Typical Duration for Sinusoidal Currents Typical Values. Values.f=50Hz;TLEAD 50C. 3 0.8 2.5 3 0.6 1.5 0.4 OZ 0.5 0020 0 406080100120140 0 102 TLEAD (C) Tsurge(s) UIC UNISONIC TECHNOLOGIES CO.,LTD 3 of 5 www.unisonic.com.tw QW-R401-023,C

MAC97A6/8 TRIACS UNISONIC TECHNOLOGIES CO., LTD 3 of 5 www.unisonic.com.tw QW-R401-023,C „ TYPICAL CHARACTERISTICS 10 10 10 1 10 10 10 Transient Thermal Impedance From Junction to Ambient as a Function of Pulse Duration. 10 10 1 10 3 2 -5 -4 -3 -2 -1 Zth(j-a)/kW p tP t Tp(s) Maximum On-State Dissipation as a Function of RMS On-State Current; Typical Values. α=Conduction Angle. 0 0.6 0 PD(W) IT(RMS)/A 0.2 0.4 0.8 1.2 0.6 0.4 0.2 α=180 α=120 α= 90 α= 60 α= 30 1 α 0.8 α 10 10 10 1000 10 100 10 Tp/s 10 1 Maximum Permissible Non-Repetitive Peak on￾State Current as a Function of Pulse Width for Sinusoidal Currents;Tyical Values. tp≦ 20ms. ITSM(A) -5 -4 -1 -3 -2 IT time ITSM Tj initial=25 ℃ max T ITSM(A) Maximum Permissible Non-Repetitive Peak On-State Current as a Function of Number of Cycles for Sinusoidal Currents; Typical Values . n=Number of Cycles at f=50Hz. 8 4 0 10 102 1 10 6 2 103 IT time ITSM Tj initial=25 ℃ max T 0 40 20 80 100 1 0.6 TLEAD (℃) 0 0.8 IT(RMS)(A) Maximum Permissible RMS Current as a Function of Lead Temperature; Typical Values. 0.4 0.2 60 120 140 3 1.5 2 2.5 1 0 IT(RMS)(A) 10-3 10-2 1 10 Maximum Permissible Repetitive RMS On - State Current as a Function of Surge Duration for Sinusoidal Currents; Typical Values. f=50Hz; TLEAD≦ 50℃. 0.5 Tsurge(s)

MAC97A6/8 TRIACS ■ TYPICAL CHARACTERISTICS(Cont.) Normalized Gate Trigger Voltage as a Normalized Gate Trigger Current as a Function of Function Junction Temperature Typical Values. of Junction Temperature Typical Values. 1.6 2.5 T2+6+ 1.4 G- 2 12 1 1.5 (rDIOA 8 0.6 04 0.5 0.2 0 0 60 -10 40 90 140 -60 -20 20 60 100 140 TJ(C) T(℃) Normalized Latching Current as a Function of Normalized Holding Current as a Function of Junction Temperature;Typical Values Junction Temperature;Typical Values. 2.5 2.5 2 2 1.5 1.5 0.5 0.5 0 -60 -20 2060 100 140 0 0 -20 T(℃) 2060100140 TJ(C) Critical Rate of Rise of Off-State Voltage as a On-State Current as a Function of On-State Voltage;Typical and Maximum Values Function of Junction Temperature Typical Values. 2.0 1000 T=125℃ TJ=25℃ 1.6 100 2 (sn//p/aAp 04 0.5 1.5 20 02040 6080100120140 Vi(V) TJ(C) UIC UNISONIC TECHNOLOGIES CO.,LTD 4 of 5 www.unisonic.com.tw QW-R401-023,C

MAC97A6/8 TRIACS UNISONIC TECHNOLOGIES CO., LTD 4 of 5 www.unisonic.com.tw QW-R401-023,C „ TYPICAL CHARACTERISTICS(Cont.) -60 1.6 0.8 TJ(℃) 1.2 1.4 1 0.6 0.4 Normalized Gate Trigger Voltage as a of Function Junction Temperature; Typical Values. -10 40 90 0.2 0 140 VGT(25 ℃ ) -60 20 -20 60 100 1 TJ(℃) 2 2.5 1.5 0.5 0 Normalized Gate Trigger Current as a Function of Junction Temperature; Typical Values. 140 IGT(25 ℃) T2+G+ T2-G+ T2-G￾T2+G- 1 2 2.5 1.5 0.5 0 -60 20 -20 140 60 100 IL(25 ℃ ) 1 2 2.5 1.5 0.5 0 -60 20 -20 140 60 100 IH(25 ℃) 0.5 1 1.5 2.0 1.6 1. 2 0.8 0. 4 0 2.0 max typ max VGT(TJ) Normalized Latching Current as a Function of Junction Temperature; Typical Values. Normalized Holding Current as a Function of Junction Temperature; Typical Values. IH(TJ) TJ(℃) TJ(℃) On-State Current as a Function of On-State Voltage; Typical and Maximum Values. IT(A) TJ=125 ℃ TJ=25 ℃ VT(V) IGT(TJ) IL(TJ) 0 40 120 140 1000 10 dVD/dt(V/us) 1 100 20 60 80 100 Critical Rate of Rise of Off-State Voltage as a Function of Junction Temperature; Typical Values. TJ(℃)

MAC97A6/8 TRIACS UTC assumes no responsibility for equipment failures that result from using products at values that exceed,even momentarily,rated values (such as maximum ratings,operating condition ranges,or other parameters)listed in products specifications of any and all UTC products described or contained herein.UTC products are not designed for use in life support appliances,devices or systems where malfunction of these products can be reasonably expected to result in personal injury.Reproduction in whole or in part is prohibited without the prior written consent of the copyright owner.The information presented in this document does not form part of any quotation or contract,is believed to be accurate and reliable and may be changed without notice. UNISONIC TECHNOLOGIES CO.,LTD 5 of 5 www.unisonic.com.tw QW-R401-023,C

MAC97A6/8 TRIACS UNISONIC TECHNOLOGIES CO., LTD 5 of 5 www.unisonic.com.tw QW-R401-023,C UTC assumes no responsibility for equipment failures that result from using products at values that exceed, even momentarily, rated values (such as maximum ratings, operating condition ranges, or other parameters) listed in products specifications of any and all UTC products described or contained herein. UTC products are not designed for use in life support appliances, devices or systems where malfunction of these products can be reasonably expected to result in personal injury. Reproduction in whole or in part is prohibited without the prior written consent of the copyright owner. The information presented in this document does not form part of any quotation or contract, is believed to be accurate and reliable and may be changed without notice

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