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SMCJ24A

SMCJ24A

  • 厂商:

    DAESAN(DAESAN)

  • 封装:

  • 描述:

    SMCJ24A - POWER 1500Watts VOLTAGE 5.0 to 188 Volts - Daesan Electronics Corp.

  • 详情介绍
  • 数据手册
  • 价格&库存
SMCJ24A 数据手册
SMCJ5.0 THRU SMCJ188CA Features · Underwriters Laboratory recognition under UL standard for safety 497B : Isolated loop curcuit protection · Low profile package with built-in strain relief for surface mounted applications · Glass passivated junction · Low incremental surge resistance, excellent clamping capability · 1500W peak pulse power capability with a 10/1000μS waveform, repetition rate(duty cycle) : 0.01% · Very fast response time · High temperature soldering guaranteed : 250℃/10 seconds at terminals POWER 1500Watts VOLTAGE 5.0 to 188 Volts DO-214AB (SMC) 0.124(3.15) 0.108(2.75) 0.245(6.22) 0.220(5.59) 0.280(7.11) 0.260(6.60) 0.012(0.31) 0.006(0.15) 0.103(2.62) 0.079(2.00) 0.050(1.27) 0.030(0.76) 0.008(0.203) MAX. 0.320(8.13) 0.305(7.75) Mechanical Data · Case : JEDEC DO-214AB(SMC) molded plastic over passivated chip · Terminals : Solder plated , solderable per MIL-STD-750, method 2026 · Polarity : For uni-directional types the band denotes the cathode, which is positive with respect to the anode under normal TVS operation · Mounting Position : Any · Weight : 0.007 ounce, 0.25 gram Dimensions in inches and (millimeters) Devices For Bidirectional Applications · For bi-directional devices, use suffix C or CA (e.g. SMCJ10C, SMCJ10CA). Electrical characteristics apply in both directions. Maximum Ratings And Electrical Characteristics (Ratings at 25℃ ambient temperature unless otherwise specified) Symbols Peak pulse power dissipation with a 10/1000μS waveform (Note 1,2) Peak pulse current with a waveform (Note 1) Peak forward surge current, 8.3mm single half sine-wave unidirectional only (Note 2) Typical thermal resistance, junction to ambient (Note 3) Typical thermal resistance, junction to lead Operating junction and storage temperature range PPPM IPPM IFSM Values Minimum 1500 See next table 200 75 15 -55 to +150 Units Watts Amps Amps ℃/W ℃/W ℃ RθJA RθJL TJ,TSTG Notes: (1) Non repetitive current pulse, per Fig.3 and derated above TA=25℃ per Fig.2 (2) Mounted on 0.31×0.31"(8.0×8.0mm) copper pads to each terminal (3) Mounted on minimum recommended pad layout ELECTRICAL CHARACTERISTIC Ratings at 25℃ ambient temperature unless otherwise specified. VF=3.5V at IF=100A (uni-directional only) Device Type S MC J 5.0(C ) S MC J 5.0(C )A(5) S MC J 6.0(C ) S MC J 6.0(C )A S MC J 6.5(C ) S MC J 6.5(C )A S MC J 7.0(C ) S MC J 7.0(C )A S MC J 7.5(C ) S MC J 7.5(C )A S MC J 8.0(C ) S MC J 8.0(C )A S MC J 8.5(C ) S MC J 8.5(C )A S MC J 9.0(C ) S MC J 9.0(C )A S MC J 10(C ) S MC J 10(C )A S MC J 11(C ) S MC J 11(C )A S MC J 12(C ) S MC J 12(C )A S MC J 13(C ) S MC J 13(C )A S MC J 14(C ) S MC J 14(C )A S MC J 15(C ) S MC J 15(C )A S MC J 16(C ) S MC J 16(C )A S MC J 17(C ) S MC J 17(C )A S MC J 18(C ) S MC J 18(C )A S MC J 20(C ) S MC J 20(C )A S MC J 22(C ) S MC J 22(C )A S MC J 24(C ) S MC J 24(C )A S MC J 26(C ) S MC J 26(C )A S MC J 28(C ) S MC J 28(C )A S MC J 30(C ) S MC J 30(C )A Notes : (1) (2) (3) (4) (5) Device Marking Code UNI BI G DD G DD G DE G DE G DF G DF G DG G DG G DH B DH G DK B DK G DL G DL G DM G DM G DN B DN G DP B DP G DQ B DG G DR B DR G DS B DS G DT B DT G DU B DU G DV B DV G DW B DW G DX B DX G DY G DY G DZ G DZ GE D BE D GE E BE E GE F GE F GE G GE G GE H BE H GE K BE K GE L BE L GE M BE M GE N GE N GE P GE P GE Q GE Q GE R GE R GE S BE S GE T BE T GE U BE U GE V BE V GE W BE W GE X BE X GE Y BE Y GE Z BE Z GFD BFD GFE BFE GFF BFF GFG BFG GFH BFH GFK BFK Breakdown Voltage V(BR) at I T (1) (V) Min Max 6.40 7.82 6.40 7.07 6.67 8.15 6.67 7.37 7.22 8.82 7.22 7.98 7.78 9.51 7.78 8.60 8.33 10.2 8.33 9 .21 8.89 10.9 8.89 9.83 9.44 11.5 9.44 10.4 10.0 12.2 10.0 11.1 11.1 13.6 11.1 12.3 12.2 14.9 12.2 13.5 13.3 16.3 13.3 14.7 14.4 17.6 14.4 15.9 15.6 19.1 15.6 17.2 16.7 20.4 16.7 18.5 17.8 21.8 17.8 19.7 18.9 23.1 18.9 20.9 20.0 24.4 20.0 22.1 22.2 27.1 22.2 24.5 24.4 29.8 24.4 26.9 26.7 32.6 26.7 29.5 28.9 35.3 28.9 31.9 31.1 38.0 31.1 34.4 33.3 40.7 33.3 36.8 Test Current I T (mA) 10.0 10.0 10.0 10.0 10.0 10.0 10.0 10.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 Stand-off Voltage VWM (V) 5.0 5.0 6.0 6.0 6.5 6.5 7.0 7.0 7.5 7.5 8.0 8.0 8.5 8.5 9.0 9.0 10 10 11 11 12 12 13 13 14 14 15 15 16 16 17 17 18 18 20 20 22 22 24 24 26 26 28 28 30 30 Maximum Maximum Maximum Reverse Leakage Peak Pulse Surge Clamping at V WM Current I PPM Voltage at I PPM ID ( A) (3) μ (A) (2) VC (V) 1000 156.3 9.6 1000 163.0 9.2 1000 131.6 11.4 1000 145.6 10.3 500 122.0 12.3 500 133.9 11.2 200 112.8 13.3 200 125.0 12.0 100 104.9 14.3 100 116.3 12.9 50 100.0 15.0 50 110.3 13.6 20 94.3 15.9 20 104.2 14.4 10 88.8 16.9 10 97.4 15.4 5.0 79.8 18.8 5.0 88.2 17.0 5.0 74.6 20.1 5.0 82.4 18.2 5.0 68.2 22.0 5.0 75.4 19.9 1.0 63.0 23.8 1.0 69.8 21.5 1.0 58.1 25.8 1.0 64.7 23.2 1.0 55.8 26.9 1.0 61.5 24.4 1.0 52.1 28.8 1.0 57.7 26.0 1.0 49.2 30.5 1.0 54.3 27.6 1.0 46.6 32.2 1.0 51.4 29.2 1.0 41.9 35.8 1.0 46.3 32.4 1.0 38.1 39.4 1.0 42.3 35.5 1.0 34.9 43.0 1.0 38.6 38.9 1.0 32.2 46.6 1.0 35.6 42.1 1.0 30.0 50.0 1.0 33.0 45.4 1.0 28.0 53.5 1.0 31.0 48.4 P uls e tes t: tp 5 0ms S urge current wa ve for m per F ig. 3 and derate per F ig. 2 F or bi-directional types ha ving V WM of 10 V olts and les s , the I D limit is doubled All terms and s ymbols are cons is tent with ANS I/IE E E C 62.35 F or the bi-directional S MC G /S MC J 5.0C A, the maximum V (B R ) is 7.25V ELECTRICAL CHARACTERISTIC Ratings at 25℃ ambient temperature unless otherwise specified. VF=3.5V at IF=100A (uni-directional only) Device Type S MC J 33(C ) S MC J 33(C )A S MC J 36(C ) S MC J 36(C )A S MC J 40(C ) S MC J 40(C )A S MC J 43(C ) S MC J 43(C )A S MC J 45(C ) S MC J 45(C )A S MC J 48(C ) S MC J 48(C )A S MC J 51(C ) S MC J 51(C )A S MC J 54(C ) S MC J 54(C )A S MC J 58(C ) S MC J 58(C )A S MC J 60(C ) S MC J 60(C )A S MC J 64(C ) S MC J 64(C )A S MC J 70(C ) S MC J 70(C )A S MC J 75(C ) S MC J 75(C )A S MC J 78(C ) S MC J 78(C )A S MC J 85(C ) S MC J 85(C )A S MC J 90(C ) S MC J 90(C )A S MC J 100(C ) S MC J 100(C )A S MC J 110(C ) S MC J 110(C )A S MC J 120(C ) S MC J 120(C )A S MC J 130(C ) S MC J 130(C )A S MC J 150(C ) S MC J 150(C )A S MC J 160(C ) S MC J 160(C )A S MC J 170(C ) S MC J 170(C )A S MC J 188(C ) S MC J 188(C )A N otes : (1) (2) (3) (4) Device Marking Code UNI BI GFL BFL GFM BFM GFN BFN GFP BFP GFQ BFQ GFR BFR GFS BFS GFT BFT GFU GFU GFV GFV GFW GFW GFX GFX GFY GFY GFZ GFZ GGD GGD GGE GGE GGF GGF GGG GGG GGH GGH GGK GGK GGL GGL GGM GGM GGN GGN GGP GGP GGQ GGQ GGR GGR GGS GGS GGT GGT GGU GGU GGV GGV GGW GGW GGX GGX GGY GGY GGZ GGZ G HD G HD G HE G HE G HF G HF G HG G HG G HH G HH G HK G HK G HL G HL G HM G HM G HN G HN G HP G HP G HQ G HQ G HR G HR G HT G HT G HS G HS Breakdown Voltage V(BR) at I T (1) (V) Min Max 36.7 44.9 36.7 40.6 40.0 48.9 40.0 44.2 44.4 54.3 44.4 49.1 47.8 58.4 47.8 52.8 50.0 61.1 50.0 55.3 53.3 65.1 53.3 58.9 56.7 69.3 56.7 62.7 60.0 73.3 60.0 66.3 64.4 78.7 64.4 71.2 66.7 81.5 66.7 73.7 71.1 86.9 71.1 78.6 77.8 95.1 77.8 86.0 83.3 102 83.3 92.1 86.7 106 86.7 95.8 94.4 115 94.4 104 100 122 100 111 111 136 111 123 122 149 122 135 133 163 133 147 144 176 144 159 167 204 167 185 178 218 178 197 189 231 189 2 09 209 255 209 231 Test Current I T (mA) 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 Stand-off Voltage VWM (V) 33 33 36 36 40 40 43 43 45 45 48 48 51 51 54 54 58 58 60 60 64 64 70 70 75 75 78 78 85 85 90 90 100 100 110 110 120 120 130 130 150 150 160 160 170 170 188 188 Maximum Maximum Maximum Reverse Leakage Peak Pulse Surge Clamping at VWM Current I PPM Voltage at I PPM ID ( A) (3) μ (A) (2) VC (V) 1.0 25.4 59.0 1.0 28.1 53.3 1.0 23.3 64.3 1.0 25.8 58.1 1.0 21.0 71.4 1.0 23.3 64.5 1.0 19.6 76.7 1.0 21.6 69.4 1.0 18.7 80.3 1.0 20.6 72.7 1.0 17.5 85.5 1.0 19.4 77.4 1.0 16.5 91.1 1.0 18.2 82.4 1.0 15.6 96.3 1.0 17.2 87.1 1.0 14.6 103 1.0 16.0 93 1.0 14.0 107 1.0 15.5 96 1.0 13.2 114 1.0 14.6 103 1.0 12.0 125 1.0 13.3 113 1.0 11.2 134 1.0 12.4 121 1.0 10.8 139 1.0 11.9 126 1.0 9.9 151 1.0 10.9 137 1.0 9.4 160 1.0 10.3 146 1.0 8.4 179 1.0 9.3 162 1.0 7.7 196 1.0 8.5 177 1.0 7.0 214 1.0 7.8 193 1.0 6.5 231 1.0 7.2 209 1.0 5.6 268 1.0 6.2 243 1.0 5.2 287 1.0 5.8 259 1.0 4.9 304 1.0 5.5 275 1.0 4.4 344 1.0 4.6 328 P uls e tes t: tp = 5 0ms S urge current wa ve for m per F ig. 3 and derate per F ig. 2 F or bi-directional types ha ving V WM of 10 V olts and les s , the I D limit is doubled All terms and s ymbols are cons is tent with ANS I/IE E E C 62.35 RATINGS AND CHARACTERISTIC CURVES SMCJ5.0 THRU SMCJ188CA Fig. 1ÐP eak P uls e P o wer R ating C ur ve P eak P uls e P ower (P P P ) or C urrent (I P P ) Derating in P ercentage, % 100 100 Fig. 2Ð P uls e Derating C ur ve P eak P uls e P ower (kW) 75 10 50 1 0.31 x 0.31" (8.0 x 8.0mm) C opper P ad A reas 0.1 0.1μs 1.0μs 1 0μs 100μs 1 .0ms 10ms P PPM , 25 0 0 25 50 75 100 125 150 175 200 td , P uls e Width (s ec.) TA , A mbient Temperature ( oC ) Fig. 3Ð P uls e W a veform 150 Fig. 4Ð T ypical J unction C apacitance Uni-Directional 20,000 P eak P uls e C urrent, % I R S M 100 P eak V alue IP P M J unction C apacitance (pF ) tr = 10μs T J = 25 C P uls e Width (td) is defined as the point where the peak current decays to 50% of I P P M o 10,000 Meas ured at Z ero B ias 1,000 V R , Meas ured at S tand-Off V oltage, V WM 100 Uni-Directional B i-Directional 10 T J = 25 C f = 1.0MHz V s ig = 50mV p-p 100 400 o Half V alue IP P M 50 IP P 2 10/1000μs W aveform as defined by R .E .A. td IP P M , 0 0 1.0 2.0 3.0 4.0 CJ , 1 10 t, T ime (ms ) V WM , R evers e S tand-Off V oltage (V ) F ig. 5ÐT ypic al T rans ient T hermal I mpedanc e 100 Fig. 6 - Maximum Non-R epetitive Forwar d S urg e C urrent Uni-Directional Us e Onl y 200 T rans ient T hermal Impedance ( oC /W) 10 1.0 P eak F orward S urge C urrent, A mperes 100 0.1 0.001 10 0.01 0.1 1 10 100 1000 8.3ms S ingle Half S ine-W ave (J E DE C Method) T J = T J max. 1 10 100 tp , P uls e Duration (s ec) Number of C ycles at 60Hz
SMCJ24A
物料型号: - DEC SMCJ5.0 至 SMCJ188CA

器件简介: - 这些器件是瞬态电压抑制二极管(TVS),用于保护电子设备免受电压突波的影响。它们具有以下特点: - 通过UL标准的安全认证 - 适用于表面贴装应用的低轮廓封装 - 玻璃钝化结 - 低逐次浪涌电阻,优秀的钳位能力 - 1500W的峰值脉冲功率能力 - 非常快的响应时间 - 高温焊接保证:250℃/10秒

引脚分配: - 引脚为镀锡的,符合MIL-STD-750标准方法2026 - 对于单向类型,带环的一端表示阴极,相对于阳极在正常TVS操作下为正极

参数特性: - 最大额定值和电气特性在25℃环境温度下进行,除非另有说明 - 峰值脉冲功率耗散:至少1500瓦特 - 峰值脉冲电流:见下表 - 峰值正向浪涌电流:200安培(仅限单向) - 典型热阻:结到环境75℃/瓦,结到引脚15℃/瓦 - 工作和存储结温范围:-55至+150℃

功能详解: - 单向和双向TVS的电气特性有所不同,例如在25℃环境温度下,单向TVS的正向电压VF为3.5V,电流IF为100A - 提供了详细的电气特性表,包括不同型号的击穿电压、测试电流、隔离电压、最大反向漏电流、最大峰值脉冲浪涌电流和最大钳位电压

应用信息: - 这些TVS二极管适用于需要保护电子设备免受电压突波损害的应用,如电源、信号线路等

封装信息: - 封装类型为JEDEC DO-214AB(SMC)模塑塑料覆盖钝化芯片 - 重量为0.007盎司或0.25克
SMCJ24A 价格&库存

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