SMBJ5267中文资料

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SMBJ15C中文资料

SMBJ15C中文资料

SMBJ SERIESSURFACE MOUNT TRANSIENT VOLTAGE SUPPRESSORSPART NUMBER REVERSE BREAKDOWN BREAKDOWN TEST MAXIMUM PEAK REVERSE MARKING ADD C FOR BI- STAND-OFF VOLTAGE VOLTAGE CURRENT CLAMPING PULSE LEAKAGE CODE DIRECTIONAL VOLTAGE VBR (V) VBR (V) IT VOLTAGE CURRENT @ VRWMSee Note 1 VRWM (V) MIN. @IT MAX. @IT (mA) @Ipp Vc (V) Ipp (A) IR(A) UNI BI µSMBJ5.0(C) 5.0 6.40 7.55 10 9.6 62.5 800 KD AD SMBJ54(C) 54 60.0 76.00 1 96.3 6.2 5 ND DD SMBJ48(C) 48 53.3 67.50 1 85.5 7.0 5 MW CWSMBJ43(C) 43 47.8 60.50 1 76.7 7.8 5 MS CS SMBJ36(C) 36 40.0 50.70 1 64.3 9.3 5 MN CN SMBJ30(C) 30 33.3 42.20 1 53.5 11.2 5 MH CH SMBJ26(C) 26 28.9 36.60 1 46.6 12.4 5 MD CD SMBJ22(C) 22 24.4 30.90 1 39.4 15.2 5 LW BWSMBJ18(C) 18 20.0 25.30 1 32.2 18.6 5 LS BS SMBJ16(C) 16 17.8 22.60 1 28.8 20.8 5 LN BN SMBJ14(C) 14 15.6 19.80 1 25.8 23.3 5 LH BH SMBJ12(C) 12 13.3 16.90 1 22.0 27.3 5 LD BD SMBJ10(C) 10 11.1 14.10 1 18.8 31.9 5 KW AW SMBJ8.5(C) 8.5 9.44 11.92 1 15.9 37.7 10 KS AS SMBJ7.5(C) 7.5 8.33 10.67 1 14.3 42.0 100 KN ANSMBJ6.5(C) 6.5 7.22 9.14 10 12.3 48.7 500 KH AH SMBJ5.0(C)A 5.0 6.40 7.25 10 9.2 65.2 800 KE AE SMBJ54(C)A 54 60.0 69.00 1 87.1 6.9 5 NE DE SMBJ48(C)A 48 53.3 61.30 1 77.4 7.7 5 MX CX SMBJ43(C)A 43 47.8 54.90 1 69.4 8.6 5 MT CT SMBJ36(C)A 36 40.0 46.00 1 58.1 10.3 5 MP CP SMBJ30(C)A 30 33.3 38.30 1 48.4 12.4 5 MK CK SMBJ26(C)A 26 28.9 33.20 1 42.1 14.2 5 ME CE SMBJ22(C)A 22 24.4 28.00 1 35.5 16.9 5 LX BX SMBJ18(C)A 18 20.0 23.30 1 29.2 20.5 5 LT BT SMBJ16(C)A 16 17.8 20.50 1 26.0 23.1 5 LP BP SMBJ14(C)A 14 15.6 17.90 1 23.2 25.8 5 LK BK SMBJ12(C)A 12 13.3 15.30 1 19.9 30.2 5 LE BE SMBJ10(C)A 10 11.1 12.80 1 17.0 35.3 5 KX AX SMBJ8.5(C)A 8.5 9.44 10.82 1 14.4 41.7 10 KT AT SMBJ5.0(C)A 7.5 8.33 9.58 1 12.9 46.5 100 KP AP SMBJ6.5(C)A 6.5 7.22 8.30 10 11.2 53.6 500 KK AK SMBJ6.0(C)A 6.0 6.67 7.67 10 10.3 58.3 800 KG AD SMBJ58(C)A 58 64.4 74.10 1 93.6 6.4 5 NG DGSMBJ51(C)A 51 56.7 65.20 1 82.4 7.3 5 MZ CZ SMBJ45(C)A 45 50.0 57.50 1 72.7 8.3 5 MV CV SMBJ40(C)A 40 44.4 51.10 1 64.5 9.3 5 MR CR SMBJ33(C)A 33 36.7 42.20 1 53.3 11.3 5 MM CM SMBJ28(C)A 28 31.1 35.80 1 45.4 13.2 5 MG CG SMBJ24(C)A 24 26.7 30.70 1 38.9 15.4 5 LZ BZ SMBJ20(C)A 20 22.2 25.50 1 32.4 18.5 5 LV BV SMBJ17(C)A 17 18.9 21.70 1 27.6 21.7 5 LR BR SMBJ15(C)A 15 16.7 19.20 1 24.4 24.0 5 LM BM SMBJ13(C)A 13 14.4 16.50 1 21.5 27.9 5 LG BG SMBJ11(C)A 11 12.2 14.00 1 18.2 33.0 5 KZ AZ SMBJ9.0(C)A 9.0 10.0 11.50 1 15.4 39.0 5 KV AV SMBJ8.0(C)A 8.0 8.89 10.23 1 13.6 44.1 50 KR AR SMBJ7.0(C)A 7.0 7.78 8.95 10 12.0 50.0 200 KM AM SMBJ6.0(C) 6.0 6.67 8.45 10 11.4 52.6 800 KF AF SMBJ58(C) 58 64.4 81.60 1 103 5.8 5 NF DF SMBJ51(C) 51 56.7 71.80 1 91.1 6.6 5 MY CY SMBJ45(C) 45 50.0 63.30 1 80.3 7.5 5 MU CU SMBJ40(C) 40 44.4 56.30 1 71.4 8.4 5 MQ CQ SMBJ33(C) 33 36.7 46.50 1 59.0 10.2 5 ML CL SMBJ28(C) 28 31.1 39.40 1 50.0 12.0 5 MF CF SMBJ24(C) 24 26.7 33.80 1 43.0 14.0 5 LY BY SMBJ20(C) 20 22.2 28.10 1 35.8 16.7 5 LU BU SMBJ17(C) 17 18.9 23.90 1 30.5 19.7 5 LQ BQ SMBJ15(C) 15 16.7 21.10 1 26.9 22.3 5 LL BL SMBJ13(C) 13 14.4 18.20 1 23.8 25.2 5 LF BF SMBJ11(C) 11 12.2 15.40 1 20.1 29.9 5 KY AY SMBJ9.0(C) 9.0 10.0 12.60 1 16.9 35.5 5 KU AU SMBJ8.0(C) 8.0 8.89 11.30 1 15.0 40.0 50 KQ AQ SMBJ7.0(C) 7.0 7.78 9.86 10 13.3 45.1 200 KL ALPART NUMBER REVERSE BREAKDOWN BREAKDOWN TEST MAXIMUM PEAK REVERSE MARKING ADD C FOR BI- STAND-OFF VOLTAGE VOLTAGE CURRENT CLAMPING PULSE LEAKAGE CODE DIRECTIONAL VOLTAGE VBR (V) VBR (V) IT VOLTAGE CURRENT @ VRWMSee Note 1 VRWM (V) MIN. @IT MAX. @IT (mA) @Ipp Vc (V) Ipp (A) IR(A) UNI BI µSMBJ60(C) 60 66.7 84.5 1 107 5.6 5 NH DH SMBJ160(C) 160 178 226.0 1 287 2.1 5 PN EN SMBJ130(C) 130 144 182.5 1 231 2.6 5 PH EHSMBJ110(C) 110 154.5 1 196 3.0 5 PD ED 122 SMBJ90(C) 90 100 126.5 1 160 3.8 5 NW DW SMBJ78(C) 78 86.7 109.8 1 139 4.3 5 NS DSSMBJ70(C) 70 77.8 98.6 1 125 4.8 5 NN DN SMBJ60(C)A 60 66.7 76.7 1 96.8 6.2 5 NK DK SMBJ160(C)A 160 178 205.0 1 259 2.3 5 PP EP SMBJ130(C)A 130 144 165.5 1 209 2.9 5 PK EK SMBJ110(C)A 110 122 140.5 1 177 3.4 5 PE EE SMBJ90(C)A 90 100 115.5 1 146 4.1 5 NX DX SMBJ78(C)A 78 86.7 99.7 1 126 4.7 5 NT DT SMBJ70(C)A 70 77.8 89.5 1 113 5.3 5 NP DP SMBJ64(C)A 64 71.1 81.8 1 103 5.8 5 NM DM SMBJ170(C)A 170 189 217.5 1 275 2.2 5 PR ERSMBJ150(C)A 150 167 192.5 1 243 2.5 5 PM EM SMBJ120(C)A 120 133 153.0 1 193 3.1 5 PG EG SMBJ100(C)A 100 111 128.0 1 162 3.7 5 NZ DZ SMBJ85(C)A 85 94.4 108.2 1 137 4.4 5 NV DV SMBJ75(C)A 75 83.3 95.8 1 121 4.9 5 NR DR SMBJ64(C) 64 71.1 90.1 1 114 5.3 5 NL DL SMBJ170(C) 160 189 239.5 1 304 2.0 5 PQ EQSMBJ150(C) 150 167 211.5 1 268 2.2 5 PL ELSMBJ120(C) 120 169.0 1 214 2.8 5 PF EF 133 SMBJ100(C) 100 111 141.0 1 179 3.4 5 NY DY SMBJ85(C) 85 94.4 119.2 1 151 3.9 5 NU DU SMBJ75(C) 75 83.3 105.7 1 134 4.5 5 NQ DQ。

SMBJ7.0A中文资料

SMBJ7.0A中文资料

2/1/99ELECTRICAL CHARACTERISTICS (T A=25°C unless otherwise noted) TABLE 1ELECTRICAL CHARACTERISTICS (T A = 25°C unless otherwise noted) TABLE 1 (Cont’d)Breakdown Maximum Maximum Device Voltage Reverse Peak Pulse Maximum Device Type Device Type Marking V(BR) (Volts)Test Stand-off Leakage I D Surge Clamping Gull Wing Modified Code (NOTE 1)Current Voltage at V WM Current I PPM Voltage at I PPMLead “J” Bend LeadUNI BI (Min /Max)at I T (mA)V WM (Volts)(µA)(NOTE 3)(NOTE 2)(Amps)V C (Volts)SMBG54SMBJ54ND 60.0 / 73.3 1.054 5.0 6.296.3SMBG54A SMBJ54A NE 60.0 / 66.3 1.054 5.0 6.987.1SMBG58SMBJ58NF 64.4 / 78.7 1.058 5.0 5.8103SMBG58A SMBJ58A NG 64.4 / 71.2 1.058 5.0 6.493.6SMBG60SMBJ60NH 66.7 / 81.5 1.060 5.0 5.6107SMBG60A SMBJ60A NK 66.7 / 73.7 1.060 5.0 6.296.8SMBG64SMBJ64NL 71.1 / 86.9 1.064 5.0 5.3114SMBG64A SMBJ64A NM 71.1 / 78.6 1.064 5.0 5.8103SMBG70SMBJ70NN 77.8 / 95.1 1.070 5.0 4.8125SMBG70A SMBJ70A NP 77.8 / 86.0 1.070 5.0 5.3113SMBG75SMBJ75NQ 83.3 / 102 1.075 5.0 4.5134SMBG75A SMBJ75A NR 83.3 / 92.1 1.075 5.0 5.0121SMBG78SMBJ78NS 86.7 / 106 1.078 5.0 4.3139SMBG78A SMBJ78A NT 86.7 / 95.8 1.078 5.0 4.8126SMBG85SMBJ85NU 94.4 / 115 1.085 5.0 4.0151SMBG85A SMBJ85A NV 94.4 / 104 1.085 5.0 4.4137SMBG90SMBJ90NW 100 / 122 1.090 5.0 3.8160SMBG90A SMBJ90A NX 100 / 111 1.090 6.0 4.1146SMBG100SMBJ100NY 111 / 136 1.0100 5.0 3.4179SMBG100A SMBJ100A NZ 111 / 123 1.0100 5.0 3.7162SMBG110SMBJ110PD 122 / 149 1.0110 5.0 3.1196SMBG110A SMBJ110A PE 122 / 135 1.0110 5.0 3.4177SMBG120SMBJ120PF 133 / 163 1.0120 5.0 2.8214SMBG120A SMBJ120A PG 133 / 147 1.0120 5.0 3.1193SMBG130SMBJ130PH 144 / 176 1.0130 5.0 2.6231SMBG130A SMBJ130A PK 144 / 159 1.0130 5.0 2.9209SMBG150SMBJ150PL 167 / 204 1.0150 5.0 2.2268SMBG150A SMBJ150A PM 167 / 185 1.0150 5.0 2.5243SMBG160SMBJ160PN 178 / 218 1.0160 5.0 2.1287SMBG160A SMBJ160A PP 178 / 197 1.0160 5.0 2.3259SMBG170SMBJ170PQ 189 / 231 1.0170 5.0 2.0304SMBG170ASMBJ170APR189 / 2091.01705.02.2275NOTES:(1) V (BR) measured after I T applied for 300µs square wave pulse or equivalent (2) Surge current waveform per Fig. 3 and derate per Fig. 2(3) For bi-directional types having V WM of 10 Volts and less, the I D limit is doubled (4) For the bi-directional SMBG/SMBJ5.0CA, the maximum V (BR)is 7.25 Volts (5) All terms and symbols are consistent with ANSI/IEEE C62.35APPLICATION N0TESThese surface mountable packages are designed specifically for transient voltage suppression. The wide leads assure a large sur-face contact for good heat dissipation, and a low resistance path for surge current flow to ground. These high speed transient voltage suppressors can be used to effectively protect sensitive components such as integrated circuits and MOS devices.A 600W (SMB) device is normally selected when the threat of transients is from lightening-induced transients conducted via external leads or 1/0 lines. It is also used to protect against switching transients induced by large coils or industrial motors.System impedance at component level in a system is usually high enough to limit the current to within the peak pulse current (I PP ) rating of this series.RECOMMENDED PAD SIZESThe pad dimensions should be 0.010” (0.25mm) longer than the contact size, in the lead axis. This allows a solder fillet to form, see Fig. below. Contact factory for soldering methods.GULL- WINGMODIFIED J-BENDND NE NF NG NH NK NL NM NN NP NQ NR NS NT NU NV NW NX NY NZ PD PE PF PG PH PK PL PM PN PP PQ PR。

中文版 ISO 527-4-1997

中文版 ISO 527-4-1997

ISO 527-4:1997塑料——拉伸性能测试第4部分:各向同性和正交各向异性纤维增强复合材料的试验条件前言国际标准ISO 527-4由ISO/TC61技术委员会,塑料,SC2子委员会,机械性能部制定。

连同第5部分,这部分ISO 527取代ISO 3268的第一版(ISO 3268:1978)。

使用通用标题“塑料——拉伸性能测试”,ISO 527包括以下部分:第一部分:通用原则第二部分:注塑和挤出塑料测试条件第三部分:薄板与薄膜测试条件第四部分:各向同性与正交纤维增强塑料复合物测试条件第五部分:单向纤维增强塑料复合物测试条件附件A为本部分ISO 527的必需部分,附件B只作为参考。

1.适用范围1.1 基于在第一部分中给出的通用原则,ISO 527的这部分中阐述了对各向同性与正交纤维增强塑料复合物拉伸性能的测试条件。

对单向增强材料测试实验的规定在第5部分。

1.2 见ISO 527-1,1.2单元。

1.3 本实验方法适用于以下材料的测试:1.纤维增强热塑性与热固性塑料复合物,使用纤维为非单向增强材料如毡片、机织物、编织粗纱、短切原丝,以及这些增强材料的混合物,还有无捻粗纱、短切或磨碎的纤维或者预浸渍材料(对于直接注塑试样,见ISO 527-2:1993的样本1A)等;2.带有单向增强材料的上述材料复合制品和用单向层压片材构成的多向增强材料,制成的叠层材料是匀称的(对于完全或主要由单向增强物制成的材料,见ISO 527-5);3.这些材料制成的成品。

增强纤维包括玻璃纤维、碳纤维、纺轮纤维和其他相似纤维。

1.4 本方法使用的试样由按ISO 1268或其他等同方法制作的试板,或者由具有合适表面的成品或半成品制成。

1.5 见ISO 527-1,1.5部分。

2.引用文献本文中引用了以下标准中的部分内容。

出版时,标示出的版本有效。

所有的标准都可能被修订,鼓励赞同ISO 527本部分内容的部门探索使用以下参考标准最新版的可能性。

GB5267

GB5267

GB/T5267-2002 [紧固件表面处理]标准介绍紧固件一般都需要经过表面处理,紧固件表面处理的种类很多,一般常用的有电镀、氧化、磷化、非电解锌片涂层处理等。

但是,电镀紧固件在紧固件的实际使用中占有很大的比例。

尤其在汽车、拖拉机、家电、仪器仪表、航天航空、通讯等行业和领域中使用更为广泛。

然而,对于螺纹紧固件来说,使用中不仅要求具有一定的防腐能力,而且,还必须保证螺纹的互换性,在这里也可称之为旋合性,。

为了同时满足螺纹紧固件在使用中要求的“防腐”和“互换”双重使用性能,制定专门的电镀层标准是非常必要的。

GB/T5267.1-2002[螺纹紧固件电镀层]标准是国家标准“紧固件表面处理”系列标准之一,该标准包括:GB/T5267.1-2002 [紧固件电镀层];GB/T5267.2-2002 [紧固件非电解锌片涂层] 两标准。

本标准等同采用国际标准ISO4042;1999 [螺纹紧固件电镀层]。

本标准代替GB/T5267-1985 [螺纹紧固件电镀层]标准。

一、GB/T5267.1-2002 [紧固件电镀层]标准介绍本标准规定了钢和钢合金电镀紧固件的尺寸要求、镀层厚度,并给出了高抗拉强度或硬化或表面淬硬紧固件消除氢脆的建议。

本标准适用于螺纹紧固件或其他紧固件电镀层,对于自攻螺钉、木螺钉、自钻自攻螺钉和自挤螺钉等可切削或碾压出与其相配的内螺纹的紧固件也是基本适用的。

本标准的规定也适用于非螺纹紧固件,如:垫圈和销等。

本标准与GB/T5267-1985相比主要变化如下:-调整了术语和定义内容;-取消了电镀层的使用条件;-增加了螺距P=0.2~0.3mm的镀层厚度上偏差值的规定,并调整部分其他螺距的镀层上偏差值的规定;-取消了旧标准有关镀层厚度验收检查的规定,采用GB/T90.1的规定;-调整并补充有关去除氢脆的资料;-取消局部厚度的测量方法;-增加螺纹零件电镀层的代码标记制度;-调整对“可容纳的金属镀层厚度的指导程序;-增加镀层标记示例。

SMBJ50CA中文资料

SMBJ50CA中文资料
100
10
Tj = 25°C f = 1.0 MHz Vsig = 50 mV p-p
1
10
100
1000
VRWM, REVERSE STANDOFF VOLTAGE (V) Fig. 2 Typical Junction Capacitance
IP, PEAK PULSE CURRENT (%Ipp)
Cj, CAPACITANCE (pF)
75
1000
Uni-directional
50
100
Bi-directional
25
10 X 1000 Waveform as defined by REA
0 0 25 50 75 100 125 150 175 200 TA, AMBIENT TEMPERATURE (°C) Fig. 1 Pulse Derating Curve
A
C
B C D
Mechanical Data
· · · · · ·
D
J
E G H J
H
G E
All Dimensions in mm
Maximum Ratings
Characteristic Peak Pulse Power Dissipation (Non repetitive current pulse derated above T = 25°C) A (Note 1) Peak Forward Surge Current, 8.3ms Single Half Sine Wave Superimposed on Rated Load (JEDEC Method) (Notes 1, 2, & 3) Instantaneous Forward Voltage @ IPP = 35A VBR<100V (Notes 1, 2, & 3) V ³100V BR Operating and Storage Temperature Range Notes:

SMBJ26C中文资料

SMBJ26C中文资料

SMBJ SERIESSURFACE MOUNT TRANSIENT VOLTAGE SUPPRESSORSPART NUMBER REVERSE BREAKDOWN BREAKDOWN TEST MAXIMUM PEAK REVERSE MARKING ADD C FOR BI- STAND-OFF VOLTAGE VOLTAGE CURRENT CLAMPING PULSE LEAKAGE CODE DIRECTIONAL VOLTAGE VBR (V) VBR (V) IT VOLTAGE CURRENT @ VRWMSee Note 1 VRWM (V) MIN. @IT MAX. @IT (mA) @Ipp Vc (V) Ipp (A) IR(A) UNI BI µSMBJ5.0(C) 5.0 6.40 7.55 10 9.6 62.5 800 KD AD SMBJ54(C) 54 60.0 76.00 1 96.3 6.2 5 ND DD SMBJ48(C) 48 53.3 67.50 1 85.5 7.0 5 MW CWSMBJ43(C) 43 47.8 60.50 1 76.7 7.8 5 MS CS SMBJ36(C) 36 40.0 50.70 1 64.3 9.3 5 MN CN SMBJ30(C) 30 33.3 42.20 1 53.5 11.2 5 MH CH SMBJ26(C) 26 28.9 36.60 1 46.6 12.4 5 MD CD SMBJ22(C) 22 24.4 30.90 1 39.4 15.2 5 LW BWSMBJ18(C) 18 20.0 25.30 1 32.2 18.6 5 LS BS SMBJ16(C) 16 17.8 22.60 1 28.8 20.8 5 LN BN SMBJ14(C) 14 15.6 19.80 1 25.8 23.3 5 LH BH SMBJ12(C) 12 13.3 16.90 1 22.0 27.3 5 LD BD SMBJ10(C) 10 11.1 14.10 1 18.8 31.9 5 KW AW SMBJ8.5(C) 8.5 9.44 11.92 1 15.9 37.7 10 KS AS SMBJ7.5(C) 7.5 8.33 10.67 1 14.3 42.0 100 KN ANSMBJ6.5(C) 6.5 7.22 9.14 10 12.3 48.7 500 KH AH SMBJ5.0(C)A 5.0 6.40 7.25 10 9.2 65.2 800 KE AE SMBJ54(C)A 54 60.0 69.00 1 87.1 6.9 5 NE DE SMBJ48(C)A 48 53.3 61.30 1 77.4 7.7 5 MX CX SMBJ43(C)A 43 47.8 54.90 1 69.4 8.6 5 MT CT SMBJ36(C)A 36 40.0 46.00 1 58.1 10.3 5 MP CP SMBJ30(C)A 30 33.3 38.30 1 48.4 12.4 5 MK CK SMBJ26(C)A 26 28.9 33.20 1 42.1 14.2 5 ME CE SMBJ22(C)A 22 24.4 28.00 1 35.5 16.9 5 LX BX SMBJ18(C)A 18 20.0 23.30 1 29.2 20.5 5 LT BT SMBJ16(C)A 16 17.8 20.50 1 26.0 23.1 5 LP BP SMBJ14(C)A 14 15.6 17.90 1 23.2 25.8 5 LK BK SMBJ12(C)A 12 13.3 15.30 1 19.9 30.2 5 LE BE SMBJ10(C)A 10 11.1 12.80 1 17.0 35.3 5 KX AX SMBJ8.5(C)A 8.5 9.44 10.82 1 14.4 41.7 10 KT AT SMBJ5.0(C)A 7.5 8.33 9.58 1 12.9 46.5 100 KP AP SMBJ6.5(C)A 6.5 7.22 8.30 10 11.2 53.6 500 KK AK SMBJ6.0(C)A 6.0 6.67 7.67 10 10.3 58.3 800 KG AD SMBJ58(C)A 58 64.4 74.10 1 93.6 6.4 5 NG DGSMBJ51(C)A 51 56.7 65.20 1 82.4 7.3 5 MZ CZ SMBJ45(C)A 45 50.0 57.50 1 72.7 8.3 5 MV CV SMBJ40(C)A 40 44.4 51.10 1 64.5 9.3 5 MR CR SMBJ33(C)A 33 36.7 42.20 1 53.3 11.3 5 MM CM SMBJ28(C)A 28 31.1 35.80 1 45.4 13.2 5 MG CG SMBJ24(C)A 24 26.7 30.70 1 38.9 15.4 5 LZ BZ SMBJ20(C)A 20 22.2 25.50 1 32.4 18.5 5 LV BV SMBJ17(C)A 17 18.9 21.70 1 27.6 21.7 5 LR BR SMBJ15(C)A 15 16.7 19.20 1 24.4 24.0 5 LM BM SMBJ13(C)A 13 14.4 16.50 1 21.5 27.9 5 LG BG SMBJ11(C)A 11 12.2 14.00 1 18.2 33.0 5 KZ AZ SMBJ9.0(C)A 9.0 10.0 11.50 1 15.4 39.0 5 KV AV SMBJ8.0(C)A 8.0 8.89 10.23 1 13.6 44.1 50 KR AR SMBJ7.0(C)A 7.0 7.78 8.95 10 12.0 50.0 200 KM AM SMBJ6.0(C) 6.0 6.67 8.45 10 11.4 52.6 800 KF AF SMBJ58(C) 58 64.4 81.60 1 103 5.8 5 NF DF SMBJ51(C) 51 56.7 71.80 1 91.1 6.6 5 MY CY SMBJ45(C) 45 50.0 63.30 1 80.3 7.5 5 MU CU SMBJ40(C) 40 44.4 56.30 1 71.4 8.4 5 MQ CQ SMBJ33(C) 33 36.7 46.50 1 59.0 10.2 5 ML CL SMBJ28(C) 28 31.1 39.40 1 50.0 12.0 5 MF CF SMBJ24(C) 24 26.7 33.80 1 43.0 14.0 5 LY BY SMBJ20(C) 20 22.2 28.10 1 35.8 16.7 5 LU BU SMBJ17(C) 17 18.9 23.90 1 30.5 19.7 5 LQ BQ SMBJ15(C) 15 16.7 21.10 1 26.9 22.3 5 LL BL SMBJ13(C) 13 14.4 18.20 1 23.8 25.2 5 LF BF SMBJ11(C) 11 12.2 15.40 1 20.1 29.9 5 KY AY SMBJ9.0(C) 9.0 10.0 12.60 1 16.9 35.5 5 KU AU SMBJ8.0(C) 8.0 8.89 11.30 1 15.0 40.0 50 KQ AQ SMBJ7.0(C) 7.0 7.78 9.86 10 13.3 45.1 200 KL ALPART NUMBER REVERSE BREAKDOWN BREAKDOWN TEST MAXIMUM PEAK REVERSE MARKING ADD C FOR BI- STAND-OFF VOLTAGE VOLTAGE CURRENT CLAMPING PULSE LEAKAGE CODE DIRECTIONAL VOLTAGE VBR (V) VBR (V) IT VOLTAGE CURRENT @ VRWMSee Note 1 VRWM (V) MIN. @IT MAX. @IT (mA) @Ipp Vc (V) Ipp (A) IR(A) UNI BI µSMBJ60(C) 60 66.7 84.5 1 107 5.6 5 NH DH SMBJ160(C) 160 178 226.0 1 287 2.1 5 PN EN SMBJ130(C) 130 144 182.5 1 231 2.6 5 PH EHSMBJ110(C) 110 154.5 1 196 3.0 5 PD ED 122 SMBJ90(C) 90 100 126.5 1 160 3.8 5 NW DW SMBJ78(C) 78 86.7 109.8 1 139 4.3 5 NS DSSMBJ70(C) 70 77.8 98.6 1 125 4.8 5 NN DN SMBJ60(C)A 60 66.7 76.7 1 96.8 6.2 5 NK DK SMBJ160(C)A 160 178 205.0 1 259 2.3 5 PP EP SMBJ130(C)A 130 144 165.5 1 209 2.9 5 PK EK SMBJ110(C)A 110 122 140.5 1 177 3.4 5 PE EE SMBJ90(C)A 90 100 115.5 1 146 4.1 5 NX DX SMBJ78(C)A 78 86.7 99.7 1 126 4.7 5 NT DT SMBJ70(C)A 70 77.8 89.5 1 113 5.3 5 NP DP SMBJ64(C)A 64 71.1 81.8 1 103 5.8 5 NM DM SMBJ170(C)A 170 189 217.5 1 275 2.2 5 PR ERSMBJ150(C)A 150 167 192.5 1 243 2.5 5 PM EM SMBJ120(C)A 120 133 153.0 1 193 3.1 5 PG EG SMBJ100(C)A 100 111 128.0 1 162 3.7 5 NZ DZ SMBJ85(C)A 85 94.4 108.2 1 137 4.4 5 NV DV SMBJ75(C)A 75 83.3 95.8 1 121 4.9 5 NR DR SMBJ64(C) 64 71.1 90.1 1 114 5.3 5 NL DL SMBJ170(C) 160 189 239.5 1 304 2.0 5 PQ EQSMBJ150(C) 150 167 211.5 1 268 2.2 5 PL ELSMBJ120(C) 120 169.0 1 214 2.8 5 PF EF 133 SMBJ100(C) 100 111 141.0 1 179 3.4 5 NY DY SMBJ85(C) 85 94.4 119.2 1 151 3.9 5 NU DU SMBJ75(C) 75 83.3 105.7 1 134 4.5 5 NQ DQ。

SMBJ13CA中文资料

SMBJ13CA中文资料

DS19002 Rev. 11 - 2
2 of 3
SMBJ5.0(C)A - SMBJ170(C)A
元器件交易网
100
10,000
Measured at zero bias
PEAK PULSE DERATING IN % OF PEAK POWER OR CURRENT
100
10
Tj = 25°C f = 1.0 MHz Vsig = 50 mV p-p
1
10
100
1000
VRWM, REVERSE STANDOFF VOLTAGE (V) Fig. 2 Typical Junction Capacitance
IP, PEAK PULSE CURRENT (%Ipp)
Cj, CAPACITANCE (pF)
75
1000
Uni-directional
50
100
Bi-directional
25
10 X 1000 Waveform as defined by REA
0 0 25 50 75 100 125 150 175 200 TA, AMBIENT TEMPERATURE (°C) Fig. 1 Pulse Derating Curve
Notes:
4. Suffix C denotes Bi-directional device. 5. VBR measured with IT current pulse = 300ms 6. For Bi-Directional devices havingVRWM of 10V and under, the IR is doubled.
Pd, PEAK PULSE POWER (kW)

SMBJ85A中文资料

SMBJ85A中文资料

Dimensions in inches and (millimeters)
DEVICES FOR BIPOLAR APPLICATIONS
For Bidirectional use C or CA suffix (e.g. SMBJ5.0C, SMBJ170CA) Electrical characteristics apply in both directions
o
VALUE Minimum 600 5.0 100 -55 to + 150
UNITS Watts Watts Amps
0பைடு நூலகம்
P PPM PM(AV) I FSM T J , T STG
C
NOTES : 1. Non-repetitive current pulse, per Fig.3 and derated above TA = 25 C per Fig.2. 2. Mounted on 0.2 X 0.2" ( 5.0 X 5.0mm ) copper pad to each terminal. 3. 8.3ms single half sine-wave or equivalent square wave, duty cycle = 4 pulses per minute maximum.
352
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EXIT EXI BACK BACK EXIT BACK
元器件交易网
RATING AND CHARACTERISTIC CURVES ( SMBJ5.0 THRU SMBJ170CA )
DC COMPONENTS CO., LTD.
R
353
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MSC1346.PDFISO 9001 CERTIFIED8700 E. Thomas Road Scottsdale, AZ 85251Tel: (480) 941-6300Fax (480) 947-1503FEATURES:• Popular SMBJ Package - Small and Rugged Surface Mount • Constructed with an Oxide Passivated Die • Voltage Range 2.4 to 200 Volts • Tight Tolerance AvailableMAXIMUM RATINGS:• Operating & Storage Temperature: -55°C to +150°C • DC Power Dissipation: 1 Watt• Power Derating: 20 mW/°C above 100°C • Forward voltage @ 200mA: 1.1VMECHANICAL CHARACTERISTICS:CASE : DO-214AA Molded Surface Mountable with flame retardant epoxymeeting UL94V-0Terminals: C-bend (modified J-bend) leads, tin lead plated.Polarity: Cathode indicated by band.Packaging: Standard 12mm tape (see EIA Std. RS-481).THERMAL RESISTANCE: 50°C/ Watt (typical) junction to lead (tab) atmounting plane.MAXIMUM TEMPERATURE FOR SOLDERING: 260°C for 10 seconds.10000800+ 251200600400200+ 50+ 75+ 100+ 125+ 150+ 175+ 200P d R A T E D P O W E R D I S S I P A T I O N (m W )T L LEAD TEMPERATURE AT MOUNTING PLANEPOWER DERATING CURVEMSC1346.PDFISO 9001 CERTIFIEDELECTRICAL CHARACTERISTICS @ 25°CMax Reverse Leakage Current A, B, C & D Suffix Only Non-Suffix Max Zener Impedance A & B Suffix OnlyNote 2@V RVoltsJEDEC Type No.Note 1Nominal Zener Voltage V Z @ I ZT VoltsTest Current I ZTmAZ ZT @ I ZT OhmsZ ZK @ I ZK = 0.25 mAOhmsI R µAAB, C & DI R @ V R Used For Suffix AµAMax Zener Volatage Temp.Coeff.(A & B Suffix Only)αVZ (% / °C)SMBJ5221 2.4203012001000.95 1.0200-0.085SMBJ5222 2.5203012501000.95 1.0200-0.085SMBJ5223 2.720301300750.95 1.0150-0.080SMBJ5224 2.820301400750.95 1.0150-0.080SMBJ5225 3.020*********.95 1.0100-0.075SMBJ5226 3.320281600250.95 1.0100-0.070SMBJ5227 3.620241700150.95 1.0100-0.065SMBJ5228 3.920231900100.95 1.075-0.060SMBJ5229 4.320222000 5.00.95 1.050±0.055SMBJ5230 4.720191900 5.0 1.9 2.050±0.030SMBJ5231 5.120171600 5.0 1.9 2.050±0.030SMBJ5232 5.620111600 5.0 2.9 3.050+0.038SMBJ5233 6.0207.01600 5.0 3.3 3.550+0.038SMBJ5234 6.2207.01000 5.0 3.8 4.050+0.045SMBJ5235 6.820 5.0750 3.0 4.8 5.030+0.050SMBJ52367.520 6.0500 3.0 5.7 6.030+0.058SMBJ52378.2208.0500 3.0 6.2 6.530+0.062SMBJ52388.7208.0600 3.0 6.2 6.530+0.065SMBJ52399.12010600 3.0 6.77.030+0.068SMBJ5240102017600 3.07.68.030+0.075SMBJ5241112022600 2.08.08.430+0.076SMBJ5242122030600 1.08.79.110+0.077SMBJ5243139.5136000.59.49.910+0.079SMBJ5244149.0156000.19.51010+0.082SMBJ5245158.5166000.110.51110+0.082SMBJ5246167.8176000.111.41210+0.083SMBJ5247177.4196000.112.41310+0.084SMBJ5248187.0216000.113.31410+0.085SMBJ524919 6.6236000.113.31410+0.086SMBJ525020 6.2256000.114.31510+0.086SMBJ525122 5.6296000.116.21710+0.087SMBJ525224 5.2336000.117.11810+0.088SMBJ525325 5.0356000.118.11910+0.089SMBJ525427 4.6416000.1202110+0.090SMBJ525528 4.5446000.1202110+0.091SMBJ525630 4.2496000.1222310+0.091SMBJ525733 3.8587000.1242510+0.092SMBJ525836 3.4707000.1262710+0.093SMBJ525939 3.2808000.1293010+0.094SMBJ526043 3.0939000.1313310+0.095SMBJ526147 2.710510000.1343610+0.095SMBJ526251 2.512511000.1373910+0.096SMBJ526356 2.215013000.1414310+0.096SMBJ526460 2.117014000.1444610+0.097SMBJ526562 2.018514000.1454710+0.097SMBJ526668 1.823016000.1495210+0.097SMBJ526775 1.727017000.1535610+0.098SMBJ526882 1.533020000.1596210+0.098SMBJ526987 1.437022000.1656810+0.099SMBJ527091 1.440023000.1666910+0.099SMBJ5271100 1.350026000.1727610+0.110SMBJ5272110 1.175030000.1808410+0.110SMBJ5273120 1.090040000.1869110+0.110SMBJ52741300.95110045000.1949910+0.110SMBJ52751400.90130045000.110110610+0.110SMBJ52761500.85150050000.110811410+0.110SMBJ52771600.80170055000.111612210+0.110SMBJ52781700.74190055000.112312910+0.110SMBJ52791800.68220060000.113013710+0.110SMBJ52801900.66240065000.113714410+0.110SMBJ52812000.65250070000.114415210+0.110Note 1.No suffix indicates a ± 20% tolerance on nominal V Z . Suffix A denotes a ± 10% tolerance, B denotes a ± 5% tolerance, C denotes a ± 2%tolerance, and D denotes a ± 1% tolerance. The electrical characteristics are measured after allowing the device to stabilize for 20 seconds when mounted on a heat sink.Note 2.The zener impedance is derived from the 60 Hz ac voltage, which results when an ac current having an r.m.s. valued equal to 10% of the dc zener current (I ZT or I ZK ) is superimposed on I ZT or I ZK. Zener impedance is measured at two points to insure a sharp knee on the breakdown curve, thereby eliminating unstable units.。

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