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STTH15R06D产品简介:
ICGOO电子元器件商城为您提供STTH15R06D由STMicroelectronics设计生产,在icgoo商城现货销售,并且可以通过原厂、代理商等渠道进行代购。 STTH15R06D价格参考。STMicroelectronicsSTTH15R06D封装/规格:二极管 - 整流器 - 单, 标准 通孔 二极管 600V 15A TO-220AC。您可以下载STTH15R06D参考资料、Datasheet数据手册功能说明书,资料中有STTH15R06D 详细功能的应用电路图电压和使用方法及教程。
参数 | 数值 |
产品目录 | |
描述 | DIODE ULT FAST 600V 15A TO220AC整流器 15 Amp 600 Volt |
产品分类 | 单二极管/整流器分离式半导体 |
品牌 | STMicroelectronics |
产品手册 | |
产品图片 | |
rohs | 符合RoHS无铅 / 符合限制有害物质指令(RoHS)规范要求 |
产品系列 | 二极管与整流器,整流器,STMicroelectronics STTH15R06D- |
数据手册 | |
产品型号 | STTH15R06D |
不同If时的电压-正向(Vf) | 2.9V @ 15A |
不同 Vr、F时的电容 | - |
不同 Vr时的电流-反向漏电流 | 60µA @ 600V |
二极管类型 | 标准 |
产品 | Ultra Fast Recovery Rectifiers |
产品目录页面 | |
产品种类 | 整流器 |
供应商器件封装 | TO-220AC |
其它名称 | 497-5408-5 |
其它有关文件 | http://www.st.com/web/catalog/sense_power/FM64/CL830/SC12/SS1651/PF64976?referrer=70071840 |
包装 | 管件 |
反向恢复时间(trr) | 50ns |
反向电压 | 600 V |
反向电流IR | 60 uA |
商标 | STMicroelectronics |
安装类型 | 通孔 |
安装风格 | Through Hole |
封装 | Tube |
封装/外壳 | TO-220-2 |
封装/箱体 | TO-220-2 |
工作温度-结 | 175°C (最大) |
工厂包装数量 | 50 |
恢复时间 | 50 ns |
最大工作温度 | + 175 C |
最大浪涌电流 | 120 A |
最小工作温度 | - 65 C |
标准包装 | 50 |
正向电压下降 | 2.9 V |
正向连续电流 | 15 A |
热阻 | 1.2°C/W Jc |
电压-DC反向(Vr)(最大值) | 600V |
电流-平均整流(Io) | 15A |
系列 | STTH15R06 |
速度 | 快速恢复 =< 500 ns,> 200mA(Io) |
配置 | Single |
STTH15R06 Turbo 2 ultrafast high voltage rectifier Features ■ Ultrafast switching K ■ Low reverse recovery current ■ Reduces switching losses ■ Low thermal resistance A A K K Description TO-220AC TO-220FPAC STTH15R06D STTH15R06FP The STTH15R06D/FP, which is using ST Turbo 2 600 V technology, is specially suited as boost T able 1. Device summary diode in continuous mode power factor corrections and hard switching conditions. Symbol Value The device is also intended for use as a free I 15 A F(AV) wheeling diode in power supplies and other power V 600 V switching applications. RRM I (typ) 8 A RM T (max) 175 °C j V (max) 1.8 V F t (max) 50 ns rr July 2011 Doc ID 7974 Rev 2 1/9 www.st.com 9
Characteristics STTH15R06 1 Characteristics T able 2. Absolute ratings (limiting values) Symbol Parameter Value Unit V Repetitive peak reverse voltage 600 V RRM I Forward rms current 30 A F(RMS) I Average forward current 15 A F(AV) I Surge non repetitive forward current T = 10 ms sinusoidal 150 A FSM p T Storage temperature range -65 to + 175 °C stg T Maximum operating junction temperature 175 °C j T able 3. Thermal parameter Symbol Parameter Maximum Unit TO-220AC 1.5 R Junction to case °C/W th(j-c) TO-220FPAC 4.0 T able 4. Static electrical characteristics Symbol Parameter Test conditions Min. Typ. Max. Unit Reverse leakage Tj = 25 °C 60 I V = 600 V µA R current T= 125 °C R 70 800 j T = 25 °C 2.9 j V Forward voltage drop I = 15 A V F F T = 125 °C 1.4 1.8 j To evaluate the maximum conduction losses use the following equation: P = 1.16 x I + 0.043 I 2 F(AV) F (RMS) 2/9 Doc ID 7974 Rev 2
STTH15R06 Characteristics T able 5. Dynamic electrical characteristics Symbol Parameter Test conditions Min. Typ. Max. Unit I = 0.5 A, F 30 I = 0.25 A, I = 1 A rr R Reverse trr recovery time Tj = 25 °C IF = 1 A, ns dI /dt = - 50 A/µs, 50 F V = 30 V R I 7.5 9.0 A RM I = 15 A, F S T = 125 °C dI /dt = - 200 A/µs, 0.15 - factor j F V = 400 V Q R 220 nC rr Forward tfr recovery time IF = 15 A, 200 ns T = 25 °C dI /dt = 120 A/µs j F VFP Freocrowvaerrdy voltage VFR = 1.1 x VFmax 6 V Doc ID 7974 Rev 2 3/9
Characteristics STTH15R06 Figure 1. Conduction losses versus average Figure 2. Forward voltage drop versus current forward current P(W) IFM(A) 40 120 35 δ= 0.05 δ= 0.1 δ= 0.2 δ= 0.5 110100 ((MMaaxxTTiimmjj==uu11mm2255 vv°°aaCClluueess)) 30 δ= 1 90 80 25 70 ((TTyyppTTiijjcc==aa11ll22vv55aa°°llCCuueess)) 20 60 Tj=25°C 50 (Maximum values) 15 40 10 T 30 20 5 IF(av)(A) δ=tp/T tp 10 VFM(V) 0 0 0 2 4 6 8 10 12 14 16 18 20 0 1 2 3 4 5 6 Figure 3. Relative variation of thermal Figure 4. Relative variation of thermal impedance junction to case versus impedance junction to case versus pulse duration (TO-220AC) pulse duration (TO-220FPAC) Zth(j-c)/Rth(j-c) Zth(j-c)/Rth(j-c) 1.0 1.0 0.9 0.9 0.8 0.8 0.7 0.7 0.6 δ= 0.5 0.6 δ= 0.5 0.5 0.5 0.4 δ= 0.2 0.4 0.3 δ= 0.1 0.3 δ= 0.2 0.2 T 0.2 δ= 0.1 T Single pulse 0.1 tp(s) δ=tp/T tp 0.1 Single pulse tp(s) δ=tp/T tp 0.0 0.0 1.E-03 1.E-02 1.E-01 1.E+00 1.E-03 1.E-02 1.E-01 1.E+00 1.E+01 F igure 5. Peak reverse recovery current Figure 6. Reverse recovery time versus dI /dt F versus dI /dt (90% confidence) (90% confidence) F IRM(A) trr(ns) 30 100 VTjR==142050°CV IIFF==22 xx IIFF((aavv)) 90 VTjR==142050°CV 25 80 IIFF==IIFF((aavv)) 20 70 IIFF==00..55 xx IIFF((aavv)) IIFF==00..55 xx IIFF((aavv)) 60 IIFF==IIFF((aavv)) IIFF==22 xx IIFF((aavv)) 15 50 IIFF==00..2255 xx IIFF((aavv)) 40 10 30 20 5 dIF/dt(A/µs) 10 dIF/dt(A/µs) 0 0 0 200 400 600 800 1000 0 200 400 600 800 1000 4/9 Doc ID 7974 Rev 2
STTH15R06 Characteristics Figure 7. Reverse recovery charges versus Figure 8. Softness factor versus dI /dt F dI /dt (90% confidence) (typical values) F Qrr(nC) S factor 800 0.35 VR=400V IF=IF(av) 700 Tj=125°C VTjR==142050°CV IF=2 x IF(av) 0.30 600 500 0.25 IF=IF(av) 400 IF=0.5 x IF(av) 300 0.20 200 0.15 100 dIF/dt(A/µs) dIF/dt(A/µs) 0 0.10 0 200 400 600 800 1000 0 200 400 600 800 1000 Figure 9. Relative variation of dynamic Figure 10. Transient peak forward voltage parameters versus junction versus dI /dt (90% confidence) F temperature VFP(V) 2.50 12 2.25 VIFR==IF4(0a0vV) 11 IF=IF(av) Sfactor Tj=125°C Tj=125°C 2.00 10 1.75 9 8 1.50 7 1.25 6 1.00 5 0.75 4 IRM 0.50 3 2 0.25 Qrr Tj(°C) Reference:Tj=125°C 1 dIF/dt(A/µs) 0.00 0 25 50 75 100 125 0 100 200 300 400 500 F igure 11. Forward recovery time versus dI /dt Figure 12. Junction capacitance versus F (90% confidence) reverse voltage applied (typical values) tfr(ns) C(pF) 260 1000 240 IF=IF(av) F=1MHz VFR=1.1 xVF max. Vosc=30mV 220 Tj=125°C Tj=25°C 200 180 160 140 100 120 100 80 60 40 20 dIF/dt(A/µs) VR(V) 0 10 0 100 200 300 400 500 1 10 100 1000 Doc ID 7974 Rev 2 5/9
Package information STTH15R06 2 Package information ● Epoxy meets UL94, V0 ● Cooling method: by conduction (C) ● Recommended torque value: 0.4 to 0.6 N·m In order to meet environmental requirements, ST offers these devices in different grades of ECOPACK® packages, depending on their level of environmental compliance. ECOPACK® specifications, grade definitions and product status are available at: www.st.com. ECOPACK® is an ST trademark. T able 6. TO-220AC dimensions Dimensions Ref. Millimeters Inches Min. Max. Min. Max. A 4.40 4.60 0.173 0.181 H2 A C 1.23 1.32 0.048 0.051 Ø I C D 2.40 2.72 0.094 0.107 L5 L7 E 0.49 0.70 0.019 0.027 F 0.61 0.88 0.024 0.034 L6 F1 1.14 1.70 0.044 0.066 L2 G 4.95 5.15 0.194 0.202 F1 L9 D H2 10.00 10.40 0.393 0.409 L2 16.40 typ. 0.645 typ. L4 F L4 13.00 14.00 0.511 0.551 M L5 2.65 2.95 0.104 0.116 E L6 15.25 15.75 0.600 0.620 G L7 6.20 6.60 0.244 0.259 L9 3.50 3.93 0.137 0.154 M 2.6 typ. 0.102 typ. Diam. I 3.75 3.85 0.147 0.151 6/9 Doc ID 7974 Rev 2
STTH15R06 Package information T able 7. TO-220FPAC dimensions Dimensions Ref. Millimeters Inches Min. Max. Min. Max. A 4.4 4.6 0.173 0.181 A B 2.5 2.7 0.098 0.106 H B D 2.5 2.75 0.098 0.108 E 0.45 0.70 0.018 0.027 Dia F 0.75 1 0.030 0.039 L6 F1 1.15 1.70 0.045 0.067 L2 L7 G 4.95 5.20 0.195 0.205 L3 G1 2.4 2.7 0.094 0.106 L5 D H 10 10.4 0.393 0.409 F1 L4 L2 16 Typ. 0.63 Typ. L3 28.6 30.6 1.126 1.205 F E L4 9.8 10.6 0.386 0.417 G1 L5 2.9 3.6 0.114 0.142 G L6 15.9 16.4 0.626 0.646 L7 9.00 9.30 0.354 0.366 Dia. 3.00 3.20 0.118 0.126 Doc ID 7974 Rev 2 7/9
Ordering information STTH15R06 3 Ordering information T able 8. Ordering information Order code Marking Package Weight Base qty Delivery mode STTH15R06D STTH15R06D TO-220AC 1.9 g 50 Tube STTH15R06FP STTH15R06FP TO-220FPAC 1.7 g 50 Tube 4 Revision history T able 9. Document revision history Date Revision Changes Jan-2002 1B Last issue. 18-Jul-2011 2 Updated I from 120 A to 150 A. FSM 8/9 Doc ID 7974 Rev 2
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