SMBJ11C中文资料
SMBJ18CA中文规格书
SMBJ5.0(C)A – SMBJ200ADocument number: DS19002 Rev. 20 - 2 1 of 6 May 2017© Diodes Incorporated Features∙600W Peak Pulse Power Dissipation ∙5.0V to 200V Standoff Voltages ∙Glass Passivated Die Construction ∙Uni- and Bi-Directional Versions Available ∙Excellent Clamping Capability ∙Lead-Free Finish; RoHS Compliant (Notes 1 & 2) ∙Halogen and Antimony Free. “Green” Device (Note 3)Mechanical Data ∙Case: SMB ∙Case Material: Molded Plastic.UL Flammability Classification Rating 94V-0∙Moisture Sensitivity: Level 1 per J-STD-020∙Terminals: Lead Free Plating (Matte Tin Finish).Solderable per MIL-STD-202, Method 208∙Weight: 0.1 grams (Approximate)Ordering Information (Note 4)*x = Device Voltage, e.g., SMBJ170A-13-F.Notes: 1.EU Directive 2002/95/EC (RoHS) & 2011/65/EU (RoHS 2) compliant. All applicable RoHS exemptions applied.2.See http:///quality/lead_free.html for more information about Diodes Incorporated’s definitions of Hal ogen- and Antimony-free, "Green" and Lead-free.3.Halogen- and Antimony-free "Green” products are defined as those which contain <900ppm bromine, <900ppm chlorine (<1500ppm total Br + Cl) and <1000ppm antimony compounds.4.For packaging details, go to our website at /design/support/packaging/diodes-packaging/. Marking InformationBi-Directional Device Cathode Band for Uni-Directional DeviceTop View Bottom Viewxx = Product Type Marking Code (See Page 3) = Manufacturers’ Code MarkingYWW = Date Code MarkingY = Last Digit of Year (ex: 7 for 2017)WW = Week Code (01 to 53)YWWxx 找电子元器件上宇航军工SMBJ5.0(C)A – SMBJ200A Document number: DS19002 Rev. 20 - 22 of 6 May 2017© Diodes IncorporatedThermal CharacteristicsNotes: 5. Valid provided that terminals are kept at ambient temperature.6. Measured with 8.3ms single half sine-wave. Duty cycle = 4 pulses per minute maximum.7. Unidirectional units only.SMBJ5.0(C)A – SMBJ200A Document number: DS19002 Rev. 20 - 2 6 of 6 May 2017© Diodes IncorporatedSuggested Pad LayoutPlease see http:///package-outlines.html for the latest version.SMB。
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
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。
SMBJ11CA中文资料
SMBJ5.0(C)A - SMBJ170(C)A
600W SURFACE MOUNT TRANSIENT VOLTAGE SUPPRESSOR Features
· · · · · · · 600W Peak Pulse Power Dissipation 5.0V - 170V Standoff Voltages Glass Passivated Die Construction Uni- and Bi-Directional Versions Available Excellent Clamping Capability Fast Response Time Plastic Material - UL Flammability Classification Rating 94V-0 Case: SMB, Transfer Molded Epoxy Terminals: Solderable per MIL-STD-202, Method 208 Polarity Indicator: Cathode Band (Note: Bi-directional devices have no polarity indicator.) Marking: Date Code and Marking Code See Page 3 Weight: 0.1 grams (approx.) Ordering Info: See Page 3
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
SMBJ50CA中文资料
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:
SMBJ51CA中文资料
B
Dim A
SMB Min 3.30 4.06 1.91 0.15 5.00 0.10 0.76 2.00 Max 3.94 4.70 2.21 0.31 5.59 0.20 1.52 2.62
Pd, PEAK PULSE POWER (kW)
Tj = 25°C
Non Repetitive Pulse Waveform Shown in Fig. 4
100
tr = 10ms Peak Value Ipp
10
Half Value Ipp/2
50
1.0
tp
100
10
Tj = 25°C f = 1.0 MHz Vsig = 50 mV p-p
1
10
STANDOFF VOLTAGE (V) Fig. 2 Typical Junction Capacitance
IP, PEAK PULSE CURRENT (%Ipp)
元器件交易网
SMBJ5.0(C)A - SMBJ170(C)A
600W SURFACE MOUNT TRANSIENT VOLTAGE SUPPRESSOR Features
· · · · · · · 600W Peak Pulse Power Dissipation 5.0V - 170V Standoff Voltages Glass Passivated Die Construction Uni- and Bi-Directional Versions Available Excellent Clamping Capability Fast Response Time Plastic Material - UL Flammability Classification Rating 94V-0 Case: SMB, Transfer Molded Epoxy Terminals: Solderable per MIL-STD-202, Method 208 Polarity Indicator: Cathode Band (Note: Bi-directional devices have no polarity indicator.) Marking: Date Code and Marking Code See Page 3 Weight: 0.1 grams (approx.) Ordering Info: See Page 3
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。
11C90中文资料
VIL
Input LOW Voltage
0C mV
a 25 C a 75 C a 25 C a 25 C a 25 C a 25 C
IIH
Input HIGH Current CP Input (Note 1) MS Input M1 and M2 Input Input LOW Current Power Supply Current Operating Supply Voltage Range Reference Voltage 05
b 1060 b 1025 b 980 b 1820 b 1135 b 1095 b 1035 b 1870 b 1850 b 1830
Typ
b 995 b 960 b 910 b 1705
Max
b 905 b 880 b 805 b 1620 b 840 b 810 b 720 b 1500 b 1485 b 1460
b 110 b 119 b5 7 b 1550 b 75 b5 2
400 400 250
mA mA mA
IIL IEE VEE VREF
VIN e VILB Pins 6 7 13 not connected
Units mV
TA 0C
a 25 C a 75 C
Conditions Load e 50X to b2V
VOL VIH
mV
0 C to
a 75 C
0C mV
a 25 C a 75 C
Guaranteed Input HIGH Signal (Note 6) Guaranteed Input LOW Signal VIN e VIHA
元器件交易网
11C90 11C91 650 MHz Prescalers
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)
SMBJ6V5CA中文资料
SMBJ5V0(C)A - SMBJ170(C)ADISCLAIMERFAIRCHILD SEMICONDUCTOR RESERVES THE RIGHT TO MAKE CHANGES WITHOUT FURTHER NOTICE TO ANY PRODUCTS HEREIN TO IMPROVE RELIABILITY , FUNCTION OR DESIGN. FAIRCHILD DOES NOT ASSUME ANY LIABILITY ARISING OUT OF THE APPLICATION OR USE OF ANY PRODUCT OR CIRCUIT DESCRIBED HEREIN; NEITHER DOES IT CONVEY ANY LICENSE UNDER ITS PATENT RIGHTS, NOR THE RIGHTS OF OTHERS.TRADEMARKSThe following are registered and unregistered trademarks Fairchild Semiconductor owns or is authorized to use and is not intended to be an exhaustive list of all such trademarks.LIFE SUPPORT POLICYFAIRCHILD S PRODUCTS ARE NOT AUTHORIZED FOR USE AS CRITICAL COMPONENTS IN LIFE SUPPORTDEVICES OR SYSTEMS WITHOUT THE EXPRESS WRITTEN APPROVAL OF FAIRCHILD SEMICONDUCTOR CORPORATION.As used herein:1. Life support devices or systems are devices orsystems which, (a) are intended for surgical implant intothe body, or (b) support or sustain life, or (c) whosefailure to perform when properly used in accordancewith instructions for use provided in the labeling, can be reasonably expected to result in significant injury to the user.2. A critical component is any component of a life support device or system whose failure to perform can be reasonably expected to cause the failure of the life support device or system, or to affect its safety or effectiveness.PRODUCT STATUS DEFINITIONS Definition of Terms Datasheet Identification Product Status DefinitionAdvance InformationPreliminaryNo Identification Needed Obsolete This datasheet contains the design specifications for product development. Specifications may change in any manner without notice.This datasheet contains preliminary data, andsupplementary data will be published at a later date.Fairchild Semiconductor reserves the right to make changes at any time without notice in order to improve design.This datasheet contains final specifications. Fairchild Semiconductor reserves the right to make changes at any time without notice in order to improve design.This datasheet contains specifications on a product that has been discontinued by Fairchild semiconductor.The datasheet is printed for reference information only.Formative or In Design First ProductionFull ProductionNot In ProductionImpliedDisconnect ISOPLANARLittleFETMicroFETMicroPakMICROWIREMSXMSXProOCXOCXProOPTOLOGIC âOPTOPLANARFACT FACT Quiet Series FAST âFASTr FRFET GlobalOptoisolator GTO HiSeCI 2CRev. I2ACEx ActiveArray Bottomless CoolFET CROSSVOLT DOME EcoSPARK E 2CMOS TM EnSigna TMPACMANPOP Power247 PowerTrench âQFET QS QT Optoelectronics Quiet Series RapidConfigure RapidConnect SILENT SWITCHER âSMART START SPMStealthSuperSOT -3SuperSOT -6SuperSOT -8SyncFET TinyLogic âTruTranslation UHC UltraFET âVCXAcross the board. Around the world. The Power FranchiseProgrammable Active Droop。
SMBJ15CA中文资料
SMBJ5.0(C)A-SMBJ440(C)A600WSurfaceMountTransientVoltageSuppressorFeatures600WPeakPulsePowerDissipation5.0V-440VStandoffVoltagesGlassPassivatedDieConstructionUni-andBi-DirectionalVersionsAvailableExcellentClampingCapabilityFastResponseTimePlasticMaterial-ULFlammabilityClassificationRating94V-0 MechanicalDataCase:SMB,TransferMoldedEpoxyTerminals:SolderableperMIL-STD-202,Method208PolarityIndicator:CathodeBand(Note:Bi-directionaldeviceshavenopolarityindicator.)Marking:DateCodeandMarkingCodeSeePage2Weight:0.1grams(approx.) MAXIMUMRATINGSRatingatTa=25?Cambienttemperatureunlessotherwisespecified.DO-214AA(SMB)0.083(2.11) 0.155(3.94) 0.075(1.91) 0.130(3.30)0.185(4.70)0.160(4.06)0.012(0.31)0.006(0.15) 0.096(2.44)0.083(2.13)0.050(1.27) 0.008(0.203)0.030(0.76) MAX.0.220(5.59)0.200(5.08)Dimensionsininchesand(millimeters)Rating Symbol Value UnitsPeakPulsePowerDissipationon10/1000μs(1)waveform(Notes1,2,Fig.3) P PPM Minimum600 Watts PeakPulseCurrenton10/1000μswaveform(Note1,Fig.5) I PPM SeeTable Amps PeakforwardSurgeCurrent8.3mssinglehalfsine-wavesuperimposedonratedload(JEDECMethod)(Notes2,3)MaximumInstantaneousForwardVoltageat50A V FM SeeNote3,4 VoltsOperatingJunctionandStorageTemperatureRange T J,T STG -65to+150 ?C Note:(1)Non-repetitiveCurrentpulse,perFig.5andderatedaboveTa=25?CperFig.1(2)Mountedon5.0mm2(0.013mmthick)landareas.(3)Measuredon8.3ms.Singlehalfsine-waveorequivalentsquarewave,dutycycle=4pulsesperminutesmaximum.SMBJ15CATYPE MarkingReverse Breakdown Stand-Off Voltage Voltage Min.@I T BreakdownVoltage TestMax.@I T CurrentMaximumClampingVoltage@I PPPeak ReversePulse LeakageCurrent @V RMW(Uni) (BI) (Uni) (Bi) V(V) V(V) V(V) I T(mA) V(V) I PP(A) I R(uA) SMBJ5.0 SMBJ5.0C KD AD 5.0 6.40 7.55 10 9.6 62.5 800.0 SMBJ5.0A SMBJ5.0CA KE AE 5.0 6.40 7.25 10 9.2 65.2 800.0 SMBJ6.0 SMBJ6.0C KF AF 6.0 6.67 8.45 10 11.4 52.6 800.0 SMBJ6.0A SMBJ6.0CA KG AG 6.0 6.67 7.67 10 10.3 58.3 800.0 SMBJ6.5 SMBJ6.5C KH AH 6.5 7.22 9.14 10 12.3 48.8 500.0 SMBJ6.5A SMBJ6.5CA KK AK 6.5 7.22 8.30 10 11.2 53.6 500.0 SMBJ7.0 SMBJ7.0C KL AL 7.0 7.78 9.86 10 13.3 45.1 200.0 SMBJ7.0A SMBJ7.0CA KM AM 7.0 7.78 8.95 10 12.0 50.0 200.0 SMBJ7.5 SMBJ7.5C KN AN 7.5 8.33 10.67 1.0 14.3 42.0 100.0 SMBJ7.5A SMBJ7.5CA KP AP 7.5 8.33 9.58 1.0 12.9 46.5 100.0 SMBJ8.0 SMBJ8.0C KQ AQ 8.0 8.89 11.3 1.0 15.0 40.0 50.0 SMBJ8.0A SMBJ8.0CA KR AR 8.0 8.89 10.23 1.0 13.6 44.1 50.0 SMBJ8.5 SMBJ8.5C KS AS 8.5 9.44 11.92 1.0 15.9 37.7 20.0 SMBJ8.5A SMBJ8.5CA KT AT 8.5 9.44 10.82 1.0 14.4 41.7 20.0 SMBJ9.0 SMBJ9.0C KU AU 9.0 10.0 12.6 1.0 16.9 35.5 10.0 SMBJ9.0A SMBJ9.0CA KV AV 9.0 10.0 11.5 1.0 15.4 39.0 10.0 SMBJ10 SMBJ10C KW AW 10 11.1 14.1 1.0 18.8 31.9 5.0 SMBJ10A SMBJ10CA KX AX 10 11.1 12.8 1.0 17.0 35.3 5.0 SMBJ11 SMBJ11C KY AY 11 12.2 15.4 1.0 20.1 29.9 5.0 SMBJ11A SMBJ11CA KZ AZ 11 12.2 14.0 1.0 18.2 33.0 5.0 SMBJ12 SMBJ12C LD BD 12 13.3 16.9 1.0 22.0 27.3 5.0 SMBJ12A SMBJ12CA LE BE 12 13.3 15.3 1.0 19.9 30.2 5.0 SMBJ13 SMBJ13C LF BF 13 14.4 18.2 1.0 23.8 25.2 5.0 SMBJ13A SMBJ13CA LG BG 13 14.4 16.5 1.0 21.5 27.9 5.0 SMBJ14 SMBJ14C LH BH 14 15.6 19.8 1.0 25.8 23.3 5.0 SMBJ14A SMBJ14CA LK BK 14 15.6 17.9 1.0 23.2 25.9 5.0 SMBJ15 SMBJ15C LL BL 15 16.7 21.1 1.0 26.9 22.3 5.0 SMBJ15A SMBJ15CA LM BM 15 16.7 19.2 1.0 24.4 24.6 5.0 SMBJ16 SMBJ16C LN BN 16 17.8 22.6 1.0 28.8 20.8 5.0 SMBJ16A SMBJ16CA LP BP 16 17.8 20.5 1.0 26.0 23.1 5.0 SMBJ17 SMBJ17C LQ BQ 17 18.9 23.9 1.0 30.5 19.7 5.0 SMBJ17A SMBJ17CA LR BR 17 18.9 21.7 1.0 27.6 21.7 5.0 SMBJ18 SMBJ18C LS BS 18 20.0 25.3 1.0 32.2 18.6 5.0 SMBJ18A SMBJ18CA LT BT 18 20.0 23.3 1.0 29.2 20.5 5.0 SMBJ20 SMBJ20C LU BU 20 22.2 28.1 1.0 35.8 16.8 5.0 SMBJ20A SMBJ20CA LV BV 20 22.2 25.5 1.0 32.4 18.5 5.0 SMBJ22 SMBJ22C LW BW 22 24.4 30.9 1.0 39.4 15.2 5.0 SMBJ22A SMBJ22CA LX BX 22 24.4 28.0 1.0 35.5 16.9 5.0 SMBJ24 SMBJ24C LY BY 24 26.7 33.8 1.0 43.0 14.0 5.0 SMBJ24A SMBJ24CA LZ BZ 24 26.7 30.7 1.0 38.9 15.4 5.0 SMBJ26 SMBJ26C MD CD 26 28.9 36.6 1.0 46.6 12.9 5.0 SMBJ26A SMBJ26CA ME CE 26 28.9 33.2 1.0 42.1 14.3 5.0 SMBJ28 SMBJ28C MF CF 28 31.1 39.4 1.0 50.0 12.0 5.0 SMBJ28A SMBJ28CA MG CG 28 31.1 35.8 1.0 45.4 13.2 5.0 Note:(1)VmeasuredafterIappliedfor300 s.,I=squarewavepulseorequivalent.(2)SurgeCurrentWaveformperFigure5andDerateperFigure1(3)ATransientsuppressorisnormallyselectedaccordingtothereverse"Stand-offVoltage"(V)whichshouldbeequaltoorgreaterthentheD.C.orcontinuouspeakoperatingvoltagelevel.SMBJ15CAReverse Breakdown Breakdown Maximum Peak Reverse TYPE Marking Stand-Off Voltage Voltage Test Clamping Pulse LeakageVoltage Min.@I T Max.@I T Current Voltage@I Current @V RMW (Uni) (BI) (Uni) (Bi) V(V) V(V) V(V) I T(mA) V(V) I PP(A) I R(uA) SMBJ30 SMBJ30C MH CH 30 33.3 42.2 1.0 53.5 11.2 5.0 SMBJ30A SMBJ30CA MK CK 30 33.3 38.3 1.0 48.4 12.4 5.0 SMBJ33 SMBJ33C ML CL 33 36.7 46.5 1.0 59.0 10.2 5.0 SMBJ33A SMBJ33CA MM CM 33 36.7 42.2 1.0 53.3 11.3 5.0 SMBJ36 SMBJ36C MN CN 36 40.0 50.7 1.0 64.3 9.3 5.0 SMBJ36A SMBJ36CA MP CP 36 40.0 46.0 1.0 58.1 10.3 5.0 SMBJ40 SMBJ40C MQ CQ 40 44.4 56.3 1.0 71.4 8.4 5.0 SMBJ40A SMBJ40CA MR CR 40 44.4 51.1 1.0 64.5 9.3 5.0 SMBJ43A SMBJ43CA MT CT 43 47.8 54.9 1.0 69.4 8.6 5.0 SMBJ45 SMBJ45C MU CU 45 50.0 63.3 1.0 80.3 7.5 5.0 SMBJ45A SMBJ45CA MV CV 45 50.0 57.5 1.0 72.7 8.3 5.0 SMBJ48 SMBJ48C MW CW 48 53.3 67.5 1.0 85.5 7.0 5.0 SMBJ48A SMBJ48CA MX CX 48 53.3 61.3 1.0 77.4 7.8 5.0 SMBJ51 SMBJ51C MY CY 51 56.7 71.8 1.0 91.1 6.6 5.0 SMBJ51A SMBJ51CA MZ CZ 51 56.7 65.2 1.0 82.4 7.3 5.0 SMBJ54 SMBJ54C ND DD 54 60.0 76.0 1.0 96.3 6.2 5.0 SMBJ54A SMBJ54CA NE DE 54 60.0 69.0 1.0 87.1 6.9 5.0 SMBJ58 SMBJ58C NF DF 58 64.4 81.6 1.0 103 5.8 5.0 SMBJ58A SMBJ58CA NG DG 58 64.4 74.1 1.0 93.6 6.4 5.0 SMBJ60 SMBJ60C NH DH 60 66.7 84.5 1.0 107 5.6 5.0 SMBJ60A SMBJ60CA NK DK 60 66.7 76.7 1.0 96.8 6.2 5.0 SMBJ64 SMBJ64C NL DL 64 71.1 90.1 1.0 114 5.3 5.0 SMBJ64A SMBJ64CA NM DM 64 71.1 81.8 1.0 103 5.8 5.0 SMBJ70 SMBJ70C NN DN 70 77.8 98.6 1.0 125 4.8 5.0 SMBJ70A SMBJ70CA NP DP 70 77.8 89.5 1.0 113 5.3 5.0 SMBJ75 SMBJ75C NQ DQ 75 83.0 105.7 1.0 134 4.5 5.0 SMBJ75A SMBJ75CA NR DR 75 83.0 95.8 1.0 121 5.0 5.0 SMBJ90 SMBJ90C NW DW 90 100 126.5 1.0 160 3.8 5.0 SMBJ90A SMBJ90CA NX DX 90 100 115.5 1.0 146 4.1 5.0 SMBJ100 SMBJ100C NY DY 100 111 141.0 1.0 179 3.4 5.0 SMBJ100A SMBJ100CA NZ DZ 100 111 128.0 1.0 162 3.7 5.0 SMBJ110 SMBJ110C PD ED 110 122 154.5 1.0 196 3.1 5.0 SMBJ110A SMBJ110CA PE EE 100 122 140.5 1.0 177 3.4 5.0 SMBJ120 SMBJ120C PF EF 120 133 169.0 1.0 214 2.8 5.0 SMBJ120A SMBJ120CA PG EG 120 133 153.0 1.0 193 3.1 5.0 SMBJ130 SMBJ130C PH EH 130 144 182.5 1.0 231 2.6 5.0 SMBJ130A SMBJ130CA PK EK 130 144 165.5 1.0 209 2.9 5.0 SMBJ150 SMBJ150C PL EL 150 167 211.5 1.0 268 2.2 5.0 SMBJ150A SMBJ150CA PM EM 150 167 192.5 1.0 243 2.5 5.0 SMBJ160 SMBJ160C PN EN 160 178 226.0 1.0 287 2.1 5.0 SMBJ160A SMBJ160CA PP EP 160 178 205.0 1.0 259 2.3 5.0 Note:(1)VmeasuredafterIappliedfor300 s.,I=squarewavepulseorequivalent.(2)SurgeCurrentWaveformperFigure5andDerateperFigure1(3)ATransientsuppressorisnormallyselectedaccordingtothereverse"Stand-offVoltage"(V)whichshouldbeequaltoorgreaterthentheD.C.orcontinuouspeakoperatingvoltagelevel.SMBJ15CATYPE MarkingReverse Breakdown Stand-Off Voltage Voltage Min.@I T BreakdownVoltage TestMax.@I T CurrentMaximumClampingVoltage@I PPPeak ReversePulse LeakageCurrent @V RMW(Uni) (BI) (Uni) (Bi) V(V) V(V) V(V) I T(mA) V(V) I PP(A) I R(uA) SMBJ170 SMBJ170C PQ EQ 170 189 239.5 1.0 304 2.0 5.0 SMBJ170A SMBJ170CA PR ER 170 189 217.5 1.0 275 2.2 5.0 SMBJ180 SMBJ180C PS ES 180 200 253.8 1.0 321 1.9 5.0 SMBJ180A SMBJ180CA PT ET 180 200 230.4 1.0 290 2.1 5.0 SMBJ190 SMBJ190C PU EU 190 211 267.9 1.0 339 1.8 5.0 SMBJ190A SMBJ190CA PV EV 190 211 243.2 1.0 306 2.0 5.0 SMBJ200 SMBJ200C PW EW 200 222 282.0 1.0 356 1.7 5.0 SMBJ200A SMBJ200CA PX EX 200 222 256.0 1.0 322 1.9 5.0 SMBJ210 SMBJ210C PY EY 210 233 296.1 1.0 375 1.6 5.0 SMBJ210A SMBJ210CA PZ EZ 210 233 268.8 1.0 339 1.8 5.0 SMBJ220 SMBJ220C QD FD 220 244 310.2 1.0 392 1.5 5.0 SMBJ220A SMBJ220CA QE FE 220 244 281.6 1.0 355 1.7 5.0 SMBJ250 SMBJ250C QF FF 250 278 342.5 1.0 447 1.3 5.0 SMBJ250A SMBJ250CA QG FG 250 278 309.0 1.0 403 1.5 5.0 SMBJ300 SMBJ300C QH FH 300 333 411.0 1.0 535 1.1 5.0 SMBJ300A SMBJ300CA QK FK 300 333 371.0 1.0 484 1.2 5.0 SMBJ350 SMBJ350C QL FL 350 389 479.5 1.0 624 1.0 5.0 SMBJ350A SMBJ350CA QM FM 350 389 432.0 1.0 565 1.1 5.0 SMBJ400 SMBJ400C QN FN 400 444 548.0 1.0 687 0.9 5.0 SMBJ400A SMBJ400CA QP FP 400 444 494.0 1.0 645 0.9 5.0 SMBJ440 SMBJ440C QQ FQ 440 489 602.8 1.0 786 0.8 5.0 SMBJ440A SMBJ440CA QR FR 440 489 543.0 1.0 710 0.8 5.0SMBJ15CARatingsandCharacteristicCurvesT A=25癈unlessotherwisenotedSMBJ15CA。
SMBJ12A中文资料
SMBJ5.0(C)A - SMBJ440(C)A600W Surface Mount Transient Voltage SuppressorFeatures600W Peak Pulse Power Dissipation5.0V - 440V Standoff VoltagesGlass Passivated Die ConstructionUni- and Bi-Directional Versions AvailableExcellent Clamping CapabilityFast Response TimePlastic Material - UL FlammabilityClassification Rating 94V-0Mechanical DataCase: SMB, Transfer Molded EpoxyTerminals: Solderable per MIL-STD-202,Method 208Polarity Indicator: Cathode Band(Note: Bi-directional devices have no polarityindicator.)Marking: Date Code and Marking CodeSee Page 2Weight: 0.1 grams (approx.)MAXIMUM RATINGSRating at T a = 25 C ambient temperature unless otherwise specified.DO-214AA (SMB)0.083(2.11) 0.155(3.94) 0.075(1.91) 0.130(3.30)0.185(4.70)0.160(4.06)0.012(0.31)0.006(0.15) 0.096(2.44)0.083(2.13)0.050(1.27) 0.008(0.203)0.030(0.76) MAX.0.220(5.59)0.200(5.08)Dimensions in inches and (millimeters)Rating Symbol Value Units Peak Pulse Power Dissipation on 10/1000μs (1)waveform (Notes 1, 2, Fig. 3) P PPM Minimum 600 Watts Peak Pulse Current on 10/1000μswaveform (Note 1, Fig. 5) I PPM See T able Amps Peak forward Surge Current8.3 ms single half sine-wave superimposed onrated load ( JEDEC Method )(Notes 2, 3)Maximum Instantaneous Forward Voltage at 50A V FM See Note 3, 4 Volts Operating Junction and Storage T emperature Range T J, T STG - 65 to + 150 CNote :(1) Non-repetitive Current pulse, per Fig. 5 and derated above Ta = 25 C per Fig. 1(2) Mounted on 5.0mm2 (0.013mm thick) land areas.(3) Measured on 8.3ms. Single half sine-wave or equivalent square wave, duty cycle = 4 pulses per minutes maximum.SMBJ12ATYPE MarkingReverse BreakdownStand-Off VoltageVoltage Min. @I TBreakdownVoltage TestMax. @ I T CurrentMaximumClampingVoltage@I PPPeak ReversePulse LeakageCurrent @V RMW(Uni) (BI) (Uni) (Bi) V RMW (V) V BR MIN(V) V BR MAX(V) I T (mA) V C(V) I PP(A) I R(uA) SMBJ5.0 SMBJ5.0C KD AD 5.0 6.40 7.55 10 9.6 62.5 800.0 SMBJ5.0A SMBJ5.0CA KE AE 5.0 6.40 7.25 10 9.2 65.2 800.0 SMBJ6.0 SMBJ6.0C KF AF 6.0 6.67 8.45 10 11.4 52.6 800.0 SMBJ6.0A SMBJ6.0CA KG AG 6.0 6.67 7.67 10 10.3 58.3 800.0 SMBJ6.5 SMBJ6.5C KH AH 6.5 7.22 9.14 10 12.3 48.8 500.0 SMBJ6.5A SMBJ6.5CA KK AK 6.5 7.22 8.30 10 11.2 53.6 500.0 SMBJ7.0 SMBJ7.0C KL AL 7.0 7.78 9.86 10 13.3 45.1 200.0 SMBJ7.0A SMBJ7.0CA KM AM 7.0 7.78 8.95 10 12.0 50.0 200.0 SMBJ7.5 SMBJ7.5C KN AN 7.5 8.33 10.67 1.0 14.3 42.0 100.0 SMBJ7.5A SMBJ7.5CA KP AP 7.5 8.33 9.58 1.0 12.9 46.5 100.0 SMBJ8.0 SMBJ8.0C KQ AQ 8.0 8.89 11.3 1.0 15.0 40.0 50.0 SMBJ8.0A SMBJ8.0CA KR AR 8.0 8.89 10.23 1.0 13.6 44.1 50.0 SMBJ8.5 SMBJ8.5C KS AS 8.5 9.44 11.92 1.0 15.9 37.7 20.0 SMBJ8.5A SMBJ8.5CA KT AT 8.5 9.44 10.82 1.0 14.4 41.7 20.0 SMBJ9.0 SMBJ9.0C KU AU 9.0 10.0 12.6 1.0 16.9 35.5 10.0 SMBJ9.0A SMBJ9.0CA KV AV 9.0 10.0 11.5 1.0 15.4 39.0 10.0 SMBJ10 SMBJ10C KW AW 10 11.1 14.1 1.0 18.8 31.9 5.0 SMBJ10A SMBJ10CA KX AX 10 11.1 12.8 1.0 17.0 35.3 5.0 SMBJ11 SMBJ11C KY AY 11 12.2 15.4 1.0 20.1 29.9 5.0 SMBJ11A SMBJ11CA KZ AZ 11 12.2 14.0 1.0 18.2 33.0 5.0 SMBJ12 SMBJ12C LD BD 12 13.3 16.9 1.0 22.0 27.3 5.0 SMBJ12A SMBJ12CA LE BE 12 13.3 15.3 1.0 19.9 30.2 5.0 SMBJ13 SMBJ13C LF BF 13 14.4 18.2 1.0 23.8 25.2 5.0 SMBJ13A SMBJ13CA LG BG 13 14.4 16.5 1.0 21.5 27.9 5.0 SMBJ14 SMBJ14C LH BH 14 15.6 19.8 1.0 25.8 23.3 5.0 SMBJ14A SMBJ14CA LK BK 14 15.6 17.9 1.0 23.2 25.9 5.0 SMBJ15 SMBJ15C LL BL 15 16.7 21.1 1.0 26.9 22.3 5.0 SMBJ15A SMBJ15CA LM BM 15 16.7 19.2 1.0 24.4 24.6 5.0 SMBJ16 SMBJ16C LN BN 16 17.8 22.6 1.0 28.8 20.8 5.0 SMBJ16A SMBJ16CA LP BP 16 17.8 20.5 1.0 26.0 23.1 5.0 SMBJ17 SMBJ17C LQ BQ 17 18.9 23.9 1.0 30.5 19.7 5.0 SMBJ17A SMBJ17CA LR BR 17 18.9 21.7 1.0 27.6 21.7 5.0 SMBJ18 SMBJ18C LS BS 18 20.0 25.3 1.0 32.2 18.6 5.0 SMBJ18A SMBJ18CA LT BT 18 20.0 23.3 1.0 29.2 20.5 5.0 SMBJ20 SMBJ20C LU BU 20 22.2 28.1 1.0 35.8 16.8 5.0 SMBJ20A SMBJ20CA LV BV 20 22.2 25.5 1.0 32.4 18.5 5.0 SMBJ22 SMBJ22C LW BW 22 24.4 30.9 1.0 39.4 15.2 5.0 SMBJ22A SMBJ22CA LX BX 22 24.4 28.0 1.0 35.5 16.9 5.0 SMBJ24 SMBJ24C LY BY 24 26.7 33.8 1.0 43.0 14.0 5.0 SMBJ24A SMBJ24CA LZ BZ 24 26.7 30.7 1.0 38.9 15.4 5.0 SMBJ26 SMBJ26C MD CD 26 28.9 36.6 1.0 46.6 12.9 5.0 SMBJ26A SMBJ26CA ME CE 26 28.9 33.2 1.0 42.1 14.3 5.0 SMBJ28 SMBJ28C MF CF 28 31.1 39.4 1.0 50.0 12.0 5.0 SMBJ28A SMBJ28CA MG CG 28 31.1 35.8 1.0 45.4 13.2 5.0 Note:( 1 ) V BR measured after I T applied for 300 s., I T = square wave pulse or equivalent. ( 2 )Surge Current Waveform per Figure 5 and Derate per Figure 1( 3 ) A Transient suppressor is normally selected according to the reverse " Stand-off Voltage " (V WM) which should beequal to or greater then the D.C. or continuous peak operating voltage level.SMBJ12AReverse Breakdown Breakdown Maximum Peak Reverse TYPE Marking Stand-Off Voltage Voltage Test Clamping Pulse LeakageVoltage Min. @I T Max. @ I T Current Voltage @I PP Current @V RMW (Uni) (BI) (Uni) (Bi) V RMW (V) V BR MIN(V) V BR MAX(V) I T (mA) V C(V) I PP(A) I R(uA) SMBJ30 SMBJ30C MH CH 30 33.3 42.2 1.0 53.5 11.2 5.0 SMBJ30A SMBJ30CA MK CK 30 33.3 38.3 1.0 48.4 12.4 5.0 SMBJ33 SMBJ33C ML CL 33 36.7 46.5 1.0 59.0 10.2 5.0 SMBJ33A SMBJ33CA MM CM 33 36.7 42.2 1.0 53.3 11.3 5.0 SMBJ36 SMBJ36C MN CN 36 40.0 50.7 1.0 64.3 9.3 5.0 SMBJ36A SMBJ36CA MP CP 36 40.0 46.0 1.0 58.1 10.3 5.0 SMBJ40 SMBJ40C MQ CQ 40 44.4 56.3 1.0 71.4 8.4 5.0 SMBJ40A SMBJ40CA MR CR 40 44.4 51.1 1.0 64.5 9.3 5.0 SMBJ43A SMBJ43CA MT CT 43 47.8 54.9 1.0 69.4 8.6 5.0 SMBJ45 SMBJ45C MU CU 45 50.0 63.3 1.0 80.3 7.5 5.0 SMBJ45A SMBJ45CA MV CV 45 50.0 57.5 1.0 72.7 8.3 5.0 SMBJ48 SMBJ48C MW CW 48 53.3 67.5 1.0 85.5 7.0 5.0 SMBJ48A SMBJ48CA MX CX 48 53.3 61.3 1.0 77.4 7.8 5.0 SMBJ51 SMBJ51C MY CY 51 56.7 71.8 1.0 91.1 6.6 5.0 SMBJ51A SMBJ51CA MZ CZ 51 56.7 65.2 1.0 82.4 7.3 5.0 SMBJ54 SMBJ54C ND DD 54 60.0 76.0 1.0 96.3 6.2 5.0 SMBJ54A SMBJ54CA NE DE 54 60.0 69.0 1.0 87.1 6.9 5.0 SMBJ58 SMBJ58C NF DF 58 64.4 81.6 1.0 103 5.8 5.0 SMBJ58A SMBJ58CA NG DG 58 64.4 74.1 1.0 93.6 6.4 5.0 SMBJ60 SMBJ60C NH DH 60 66.7 84.5 1.0 107 5.6 5.0 SMBJ60A SMBJ60CA NK DK 60 66.7 76.7 1.0 96.8 6.2 5.0 SMBJ64 SMBJ64C NL DL 64 71.1 90.1 1.0 114 5.3 5.0 SMBJ64A SMBJ64CA NM DM 64 71.1 81.8 1.0 103 5.8 5.0 SMBJ70 SMBJ70C NN DN 70 77.8 98.6 1.0 125 4.8 5.0 SMBJ70A SMBJ70CA NP DP 70 77.8 89.5 1.0 113 5.3 5.0 SMBJ75 SMBJ75C NQ DQ 75 83.0 105.7 1.0 134 4.5 5.0 SMBJ75A SMBJ75CA NR DR 75 83.0 95.8 1.0 121 5.0 5.0 SMBJ90 SMBJ90C NW DW 90 100 126.5 1.0 160 3.8 5.0 SMBJ90A SMBJ90CA NX DX 90 100 115.5 1.0 146 4.1 5.0 SMBJ100 SMBJ100C NY DY 100 111 141.0 1.0 179 3.4 5.0 SMBJ100A SMBJ100CA NZ DZ 100 111 128.0 1.0 162 3.7 5.0 SMBJ110 SMBJ110C PD ED 110 122 154.5 1.0 196 3.1 5.0 SMBJ110A SMBJ110CA PE EE 100 122 140.5 1.0 177 3.4 5.0 SMBJ120 SMBJ120C PF EF 120 133 169.0 1.0 214 2.8 5.0 SMBJ120A SMBJ120CA PG EG 120 133 153.0 1.0 193 3.1 5.0 SMBJ130 SMBJ130C PH EH 130 144 182.5 1.0 231 2.6 5.0 SMBJ130A SMBJ130CA PK EK 130 144 165.5 1.0 209 2.9 5.0 SMBJ150 SMBJ150C PL EL 150 167 211.5 1.0 268 2.2 5.0 SMBJ150A SMBJ150CA PM EM 150 167 192.5 1.0 243 2.5 5.0 SMBJ160 SMBJ160C PN EN 160 178 226.0 1.0 287 2.1 5.0 SMBJ160A SMBJ160CA PP EP 160 178 205.0 1.0 259 2.3 5.0 Note:( 1 ) V BR measured after I T applied for 300 s., I T = square wave pulse or equivalent. ( 2 )Surge Current Waveform per Figure 5 and Derate per Figure 1( 3 ) A Transient suppressor is normally selected according to the reverse " Stand-off Voltage " (V WM) which should beequal to or greater then the D.C. or continuous peak operating voltage level.SMBJ12ATYPE MarkingReverse BreakdownStand-Off VoltageVoltage Min. @I TBreakdownVoltage TestMax. @ I T CurrentMaximumClampingVoltage@I PPPeak ReversePulse LeakageCurrent @V RMW(Uni) (BI) (Uni) (Bi) V RMW (V) V BR MIN(V) V BR MAX(V) I T (mA) V C(V) I PP(A) I R(uA) SMBJ170 SMBJ170C PQ EQ 170 189 239.5 1.0 304 2.0 5.0 SMBJ170A SMBJ170CA PR ER 170 189 217.5 1.0 275 2.2 5.0 SMBJ180 SMBJ180C PS ES 180 200 253.8 1.0 321 1.9 5.0 SMBJ180A SMBJ180CA PT ET 180 200 230.4 1.0 290 2.1 5.0 SMBJ190 SMBJ190C PU EU 190 211 267.9 1.0 339 1.8 5.0 SMBJ190A SMBJ190CA PV EV 190 211 243.2 1.0 306 2.0 5.0 SMBJ200 SMBJ200C PW EW 200 222 282.0 1.0 356 1.7 5.0 SMBJ200A SMBJ200CA PX EX 200 222 256.0 1.0 322 1.9 5.0 SMBJ210 SMBJ210C PY EY 210 233 296.1 1.0 375 1.6 5.0 SMBJ210A SMBJ210CA PZ EZ 210 233 268.8 1.0 339 1.8 5.0 SMBJ220 SMBJ220C QD FD 220 244 310.2 1.0 392 1.5 5.0 SMBJ220A SMBJ220CA QE FE 220 244 281.6 1.0 355 1.7 5.0 SMBJ250 SMBJ250C QF FF 250 278 342.5 1.0 447 1.3 5.0 SMBJ250A SMBJ250CA QG FG 250 278 309.0 1.0 403 1.5 5.0 SMBJ300 SMBJ300C QH FH 300 333 411.0 1.0 535 1.1 5.0 SMBJ300A SMBJ300CA QK FK 300 333 371.0 1.0 484 1.2 5.0 SMBJ350 SMBJ350C QL FL 350 389 479.5 1.0 624 1.0 5.0 SMBJ350A SMBJ350CA QM FM 350 389 432.0 1.0 565 1.1 5.0 SMBJ400 SMBJ400C QN FN 400 444 548.0 1.0 687 0.9 5.0 SMBJ400A SMBJ400CA QP FP 400 444 494.0 1.0 645 0.9 5.0 SMBJ440 SMBJ440C QQ FQ 440 489 602.8 1.0 786 0.8 5.0 SMBJ440A SMBJ440CA QR FR 440 489 543.0 1.0 710 0.8 5.0SMBJ12ARatings and Characteristic Curves T A =25癈 unless otherwise notedSMBJ12A。
SMBJ5.0A SMBJ5.0CA 中文资料
VOLTAGE RANGE: 5.0 VPOWER: 600Wa t Maximum Ratings@ T A = 25°C unless otherwise specifiedPeak Pulse Power Dissipation(Non repetitive current pulse derated above T A =25°C)(Note 1)P PK 600W Peak Forward Surge Current, 8.3ms Single Half Sine Wave Superimposed on Rated Load(JEDEC Method)(Notes1,2,&3)I FSM 100A Instantaneous Forward Voltage @I PP = 35A V BR <100V (Notes 1, 2, & 3) V BR ³100V V F 3.55.0V V Operating and Storage Temperature RangeT j ,T STG-55 to +150°CNotes:1. Valid provided that terminals are kept at ambient temperature.2. Measured with 8.3ms single half sine-wave. Duty cycle = 4 pulses per minute maximum.3. Unidirectional units only.SURFACE MOUNT TRANSIENT VOLTAGE SUPPESSOR DIODEGlass Passivated Die Construction Uni- and Bi-Directional Versions Available Excellent Clamping Capability Fast Response TimePlastic Material: UL FlammabilityClassification Rating 94V-0Features!!!!!CharacteristicSymbol Value Unit !!Terminals: Solder Plated, Solderable per MIL-STD-750, Method 2026! Polarity: Cathode Band or Cathode Notch ! Marking: Type Number!Mechanical DataCase: SMB/DO-214AA, Molded Plastic Weight: 0.093 grams (approx.)SMB(DO-214AA)Dim Min Max AB C 1.91 2.21D0.150.31E 5.00 5.59G 0.100.20H 0.76 1.52J2.002.62All Dimensions in mm3.30 3.944.06 4.70SMBJ5.0A (CA)Type Number Marking Reverse Stand-Off Voltage Breakdown Voltage Min. @I T Breakdown Voltage Max. @ I T Test Current MaximumClampingVoltage@I PPPeakPulseCurrentReverse Leakage @V RMW (Uni)(Bi)(Uni)(Bi) V RMW (V)V BR MIN (V)V BR MAX (V)I T (mA)V C (V)I PP (A)I R (uA)SMBJ5.0 SMBJ5.0C KD AD 5.0 6.40 7.55 10 9.6 62.5 800.0 SMBJ5.0A SMBJ5.0CA KEAE5.06.407.25 10 9.2 65.2 800.0※ For Bi-directional type having VRWM of 10 Volts and less, the IR limit is doubleRatings and Characteristic Curves T A=25°C unless otherwise noted。
P6SMBJ200C中文资料
V C @ IPP V A
PAC K AGE
600W Transient Voltage S uppressor
P 6S MB J5.0(C ) P 6S MB J5.0(C )A P 6S MB J6.0(C ) P 6S MB J6.0(C )A P 6S MB J6.5(C ) P 6S MB J6.5(C )A P 6S MB J7.0(C ) P 6S MB J7.0(C )A P 6S MB J7.5(C ) P 6S MB J7.5(C )A P 6S MB J8.0(C ) P 6S MB J8.0(C )A P 6S MB J8.5(C ) P 6S MB J8.5(C )A P 6S MB J9.0(C ) P 6S MB J9.0(C )A P 6S MB J10(C ) P 6S MB J10(C )A P 6S MB J11(C ) P 6S MB J11(C )A P 6S MB J12(C ) P 6S MB J12(C )A P 6S MB J13(C ) P 6S MB J13(C )A P 6S MB J14(C ) P 6S MB J14(C )A P 6S MB J15(C ) P 6S MB J15(C )A P 6S MB J16(C ) P 6S MB J16(C )A P 6S MB J17(C ) P 6S MB J17(C )A P 6S MB J18(C ) P 6S MB J18(C )A P 6S MB J20(C ) P 6S MB J20(C )A P 6S MB J22(C ) P 6S MB J22(C )A P 6S MB J24(C ) P 6S MB J24(C )A P 6S MB J26(C ) P 6S MB J26(C )A P 6S MB J28(C ) P 6S MB J28(C )A P 6S MB J30(C ) P 6S MB J30(C )A P 6S MB J33(C ) P 6S MB J33(C )A P 6S MB J36(C ) P 6S MB J36(C )A P 6S MB J40(C ) P 6S MB J40(C )A KD KE KF KG KH KK KL KM KN KP KQ KR KS KT KU KV KW KX KY KZ LD LE LF LG LH LK LL LM LN LP LQ LR LS LT LU LV LW LX LZ LY MD ME MF MG MH MK ML MM MN MP MQ MR AD AE AF AG AH AK AL AM AN AP AQ AR AS AT AU AV AW AX AY AZ BD BE BF BG BH BK BL BM BN BP BQ BR BS BT BU BV BW BX BZ BY CD CE CF CG CH CK CL CM CN CP CQ CR 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 33 33 36 36 40 40 6.40 6.40 6.67 6.67 7.22 7.22 7.78 7.78 8.33 8.33 8.89 8.89 9.44 9.44 10.0 10.0 11.1 11.1 12.2 12.2 13.3 13.3 14.4 14.4 15.6 15.6 16.7 16.7 17.8 17.8 18.9 18.9 20.0 20.0 22.2 22.2 24.4 24.4 26.7 26.7 28.9 28.9 31.1 31.1 33.3 33.3 36.7 36.7 40.0 40.0 44.4 44.4 7.55 7.25 8.45 7.67 9.14 8.30 9.86 8.95 10.67 9.58 11.30 10.23 11.92 10.82 12.6 11.5 14.1 12.8 15.4 14.0 16.9 15.3 18.2 16.5 19.8 17.9 21.1 19.2 22.6 20.5 23.9 21.7 25.3 23.3 28.1 25.5 30.9 28.0 33.8 30.7 36.6 33.2 39.4 35.8 42.2 38.3 46.5 42.2 50.7 46.0 56.3 51.1 10 10 10 10 10 10 10 10 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 1.0 800 800 800 800 500 500 200 200 100 100 50 50 10 10 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 1600 1600 1600 1600 1000 1000 400 400 200 200 100 100 20 20 10 10 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 9.6 9.2 11.4 10.3 12.3 11.2 13.3 12.0 14.3 12.9 15.0 13.6 15.9 14.4 16.9 15.4 18.8 17.0 20.1 18.2 22.0 19.9 23.8 21.5 25.8 23.2 26.9 24.4 28.8 26.0 30.5 27.6 32.2 29.2 35.8 32.4 39.4 35.5 43.0 38.9 46.6 42.1 50.0 45.4 53.5 48.4 59.0 53.3 64.3 58.1 71.4 64.5 62.5 65.2 52.6 58.3 48.7 53.6 45.1 50.0 42.0 46.5 40.0 44.1 37.7 41.7 35.5 39.0 31.9 35.3 29.9 33.0 27.3 30.2 25.2 27.9 23.3 25.8 22.3 24.0 20.8 23.1 19.7 21.7 18.6 20.5 16.7 18.5 15.2 16.9 14.0 15.4 12.4 14.2 12.0 13.2 11.2 12.4 10.2 11.3 9.3 10.3 8.4 9.3 S MB /D O-214A A S MB /D O-214A A S MB /D O-214A A S MB /D O-214A A S MB /D O-214A A S MB /D O-214A A S MB /D O-214A A S MB /D O-214A A S MB /D O-214A A S MB /D O-214A A S MB /D O-214A A S MB /D O-214A A S MB /D O-214A A S MB /D O-214A A S MB /D O-214A A S MB /D O-214A A S MB /D O-214A A S MB /D O-214A A S MB /D O-214A A S MB /D O-214A A S MB /D O-214A A S MB /D O-214A A S MB /D O-214A A S MB /D O-214A A S MB /D O-214A A S MB /D O-214A A S MB /D O-214A A S MB /D O-214A A S MB /D O-214A A S MB /D O-214A A S MB /D O-214A A S MB /D O-214A A S MB /D O-214A A S MB /D O-214A A S MB /D O-214A A S MB /D O-214A A S MB /D O-214A A S MB /D O-214A A S MB /D O-214A A S MB /D O-214A A S MB /D O-214A A S MB /D O-214A A S MB /D O-214A A S MB /D O-214A A S MB /D O-214A A S MB /D O-214A A S MB /D O-214A A S MB /D O-214A A S MB /D O-214A A S MB /D O-214A A S MB /D O-214A A S MB /D O-214A A
cc1120中文资料
Digital Input/Output
General purpose IO
Power
3 V VDD to internal digital regulator
Power
Digital regulator output to external C
Digital Input
Serial data in
• 增强型无线电唤醒功能,用于自动低功耗接收轮询 • 独立 128 字节 RX 和 TX FIFO • 包括天线多样性功能 • 支持再传输 • 支持自动应答接收包 • TCXO 支持和控制,在功率模式也是如此 • 说前先听 (LBT) 系统的自动广播声道评估 (CCA) • 内置编码增益支持扩展范围和耐用性 • 数字 RSSI 测量 • 支持与 CC1190 无缝集成以实现范围扩展,使敏感
• 适合面向ETSI 1 类符合169 MHz 和 433 MHz 频带 的系统
• 高频谱效率 (12.5 kHz时 9.6 kbps 通道与窄带命令 兼容
• 电源 – 宽电源电压范围 (2 V – 3.6 V) – 低电流消耗: – RX: 3.7 mA 在 RX 嗅探模式 – RX: 17 mA 峰值电流在低功率模式 – RX: 22 mA 峰值电流在高性能模式 – TX:45 mA +14 dBm – 断电:< 0.3 µA – 步长为 0.4 dB、最高 16 dBm 的可编程输出功 率 – 自动输出功率递增 – 可配置数据速率:0 至 200 kbps – 支持的调制格式:2-FSK, 2- GFSK, 4-FSK, 4-GFSK, MSK, OOK – 高级数字信号处理以提升同步检测性能 – 符合 RoHS 的 5 x 5 mm QFN 32 封装
SMBJ13A中文资料
SMBJ5.0(C)A - SMBJ440(C)A600W Surface Mount Transient Voltage SuppressorFeatures600W Peak Pulse Power Dissipation5.0V - 440V Standoff VoltagesGlass Passivated Die ConstructionUni- and Bi-Directional Versions AvailableExcellent Clamping CapabilityFast Response TimePlastic Material - UL FlammabilityClassification Rating 94V-0Mechanical DataCase: SMB, Transfer Molded EpoxyTerminals: Solderable per MIL-STD-202,Method 208Polarity Indicator: Cathode Band(Note: Bi-directional devices have no polarityindicator.)Marking: Date Code and Marking CodeSee Page 2Weight: 0.1 grams (approx.)MAXIMUM RATINGSRating at T a = 25 C ambient temperature unless otherwise specified.DO-214AA (SMB)0.083(2.11) 0.155(3.94) 0.075(1.91) 0.130(3.30)0.185(4.70)0.160(4.06)0.012(0.31)0.006(0.15) 0.096(2.44)0.083(2.13)0.050(1.27) 0.008(0.203)0.030(0.76) MAX.0.220(5.59)0.200(5.08)Dimensions in inches and (millimeters)Rating Symbol Value Units Peak Pulse Power Dissipation on 10/1000μs (1)waveform (Notes 1, 2, Fig. 3) P PPM Minimum 600 Watts Peak Pulse Current on 10/1000μswaveform (Note 1, Fig. 5) I PPM See T able Amps Peak forward Surge Current8.3 ms single half sine-wave superimposed onrated load ( JEDEC Method )(Notes 2, 3)Maximum Instantaneous Forward Voltage at 50A V FM See Note 3, 4 Volts Operating Junction and Storage T emperature Range T J, T STG - 65 to + 150 CNote :(1) Non-repetitive Current pulse, per Fig. 5 and derated above Ta = 25 C per Fig. 1(2) Mounted on 5.0mm2 (0.013mm thick) land areas.(3) Measured on 8.3ms. Single half sine-wave or equivalent square wave, duty cycle = 4 pulses per minutes maximum.SMBJ13ATYPE MarkingReverse BreakdownStand-Off VoltageVoltage Min. @I TBreakdownVoltage TestMax. @ I T CurrentMaximumClampingVoltage@I PPPeak ReversePulse LeakageCurrent @V RMW(Uni) (BI) (Uni) (Bi) V RMW (V) V BR MIN(V) V BR MAX(V) I T (mA) V C(V) I PP(A) I R(uA) SMBJ5.0 SMBJ5.0C KD AD 5.0 6.40 7.55 10 9.6 62.5 800.0 SMBJ5.0A SMBJ5.0CA KE AE 5.0 6.40 7.25 10 9.2 65.2 800.0 SMBJ6.0 SMBJ6.0C KF AF 6.0 6.67 8.45 10 11.4 52.6 800.0 SMBJ6.0A SMBJ6.0CA KG AG 6.0 6.67 7.67 10 10.3 58.3 800.0 SMBJ6.5 SMBJ6.5C KH AH 6.5 7.22 9.14 10 12.3 48.8 500.0 SMBJ6.5A SMBJ6.5CA KK AK 6.5 7.22 8.30 10 11.2 53.6 500.0 SMBJ7.0 SMBJ7.0C KL AL 7.0 7.78 9.86 10 13.3 45.1 200.0 SMBJ7.0A SMBJ7.0CA KM AM 7.0 7.78 8.95 10 12.0 50.0 200.0 SMBJ7.5 SMBJ7.5C KN AN 7.5 8.33 10.67 1.0 14.3 42.0 100.0 SMBJ7.5A SMBJ7.5CA KP AP 7.5 8.33 9.58 1.0 12.9 46.5 100.0 SMBJ8.0 SMBJ8.0C KQ AQ 8.0 8.89 11.3 1.0 15.0 40.0 50.0 SMBJ8.0A SMBJ8.0CA KR AR 8.0 8.89 10.23 1.0 13.6 44.1 50.0 SMBJ8.5 SMBJ8.5C KS AS 8.5 9.44 11.92 1.0 15.9 37.7 20.0 SMBJ8.5A SMBJ8.5CA KT AT 8.5 9.44 10.82 1.0 14.4 41.7 20.0 SMBJ9.0 SMBJ9.0C KU AU 9.0 10.0 12.6 1.0 16.9 35.5 10.0 SMBJ9.0A SMBJ9.0CA KV AV 9.0 10.0 11.5 1.0 15.4 39.0 10.0 SMBJ10 SMBJ10C KW AW 10 11.1 14.1 1.0 18.8 31.9 5.0 SMBJ10A SMBJ10CA KX AX 10 11.1 12.8 1.0 17.0 35.3 5.0 SMBJ11 SMBJ11C KY AY 11 12.2 15.4 1.0 20.1 29.9 5.0 SMBJ11A SMBJ11CA KZ AZ 11 12.2 14.0 1.0 18.2 33.0 5.0 SMBJ12 SMBJ12C LD BD 12 13.3 16.9 1.0 22.0 27.3 5.0 SMBJ12A SMBJ12CA LE BE 12 13.3 15.3 1.0 19.9 30.2 5.0 SMBJ13 SMBJ13C LF BF 13 14.4 18.2 1.0 23.8 25.2 5.0 SMBJ13A SMBJ13CA LG BG 13 14.4 16.5 1.0 21.5 27.9 5.0 SMBJ14 SMBJ14C LH BH 14 15.6 19.8 1.0 25.8 23.3 5.0 SMBJ14A SMBJ14CA LK BK 14 15.6 17.9 1.0 23.2 25.9 5.0 SMBJ15 SMBJ15C LL BL 15 16.7 21.1 1.0 26.9 22.3 5.0 SMBJ15A SMBJ15CA LM BM 15 16.7 19.2 1.0 24.4 24.6 5.0 SMBJ16 SMBJ16C LN BN 16 17.8 22.6 1.0 28.8 20.8 5.0 SMBJ16A SMBJ16CA LP BP 16 17.8 20.5 1.0 26.0 23.1 5.0 SMBJ17 SMBJ17C LQ BQ 17 18.9 23.9 1.0 30.5 19.7 5.0 SMBJ17A SMBJ17CA LR BR 17 18.9 21.7 1.0 27.6 21.7 5.0 SMBJ18 SMBJ18C LS BS 18 20.0 25.3 1.0 32.2 18.6 5.0 SMBJ18A SMBJ18CA LT BT 18 20.0 23.3 1.0 29.2 20.5 5.0 SMBJ20 SMBJ20C LU BU 20 22.2 28.1 1.0 35.8 16.8 5.0 SMBJ20A SMBJ20CA LV BV 20 22.2 25.5 1.0 32.4 18.5 5.0 SMBJ22 SMBJ22C LW BW 22 24.4 30.9 1.0 39.4 15.2 5.0 SMBJ22A SMBJ22CA LX BX 22 24.4 28.0 1.0 35.5 16.9 5.0 SMBJ24 SMBJ24C LY BY 24 26.7 33.8 1.0 43.0 14.0 5.0 SMBJ24A SMBJ24CA LZ BZ 24 26.7 30.7 1.0 38.9 15.4 5.0 SMBJ26 SMBJ26C MD CD 26 28.9 36.6 1.0 46.6 12.9 5.0 SMBJ26A SMBJ26CA ME CE 26 28.9 33.2 1.0 42.1 14.3 5.0 SMBJ28 SMBJ28C MF CF 28 31.1 39.4 1.0 50.0 12.0 5.0 SMBJ28A SMBJ28CA MG CG 28 31.1 35.8 1.0 45.4 13.2 5.0 Note:( 1 ) V BR measured after I T applied for 300 s., I T = square wave pulse or equivalent. ( 2 )Surge Current Waveform per Figure 5 and Derate per Figure 1( 3 ) A Transient suppressor is normally selected according to the reverse " Stand-off Voltage " (V WM) which should beequal to or greater then the D.C. or continuous peak operating voltage level.SMBJ13AReverse Breakdown Breakdown Maximum Peak Reverse TYPE Marking Stand-Off Voltage Voltage Test Clamping Pulse LeakageVoltage Min. @I T Max. @ I T Current Voltage @I PP Current @V RMW (Uni) (BI) (Uni) (Bi) V RMW (V) V BR MIN(V) V BR MAX(V) I T (mA) V C(V) I PP(A) I R(uA) SMBJ30 SMBJ30C MH CH 30 33.3 42.2 1.0 53.5 11.2 5.0 SMBJ30A SMBJ30CA MK CK 30 33.3 38.3 1.0 48.4 12.4 5.0 SMBJ33 SMBJ33C ML CL 33 36.7 46.5 1.0 59.0 10.2 5.0 SMBJ33A SMBJ33CA MM CM 33 36.7 42.2 1.0 53.3 11.3 5.0 SMBJ36 SMBJ36C MN CN 36 40.0 50.7 1.0 64.3 9.3 5.0 SMBJ36A SMBJ36CA MP CP 36 40.0 46.0 1.0 58.1 10.3 5.0 SMBJ40 SMBJ40C MQ CQ 40 44.4 56.3 1.0 71.4 8.4 5.0 SMBJ40A SMBJ40CA MR CR 40 44.4 51.1 1.0 64.5 9.3 5.0 SMBJ43A SMBJ43CA MT CT 43 47.8 54.9 1.0 69.4 8.6 5.0 SMBJ45 SMBJ45C MU CU 45 50.0 63.3 1.0 80.3 7.5 5.0 SMBJ45A SMBJ45CA MV CV 45 50.0 57.5 1.0 72.7 8.3 5.0 SMBJ48 SMBJ48C MW CW 48 53.3 67.5 1.0 85.5 7.0 5.0 SMBJ48A SMBJ48CA MX CX 48 53.3 61.3 1.0 77.4 7.8 5.0 SMBJ51 SMBJ51C MY CY 51 56.7 71.8 1.0 91.1 6.6 5.0 SMBJ51A SMBJ51CA MZ CZ 51 56.7 65.2 1.0 82.4 7.3 5.0 SMBJ54 SMBJ54C ND DD 54 60.0 76.0 1.0 96.3 6.2 5.0 SMBJ54A SMBJ54CA NE DE 54 60.0 69.0 1.0 87.1 6.9 5.0 SMBJ58 SMBJ58C NF DF 58 64.4 81.6 1.0 103 5.8 5.0 SMBJ58A SMBJ58CA NG DG 58 64.4 74.1 1.0 93.6 6.4 5.0 SMBJ60 SMBJ60C NH DH 60 66.7 84.5 1.0 107 5.6 5.0 SMBJ60A SMBJ60CA NK DK 60 66.7 76.7 1.0 96.8 6.2 5.0 SMBJ64 SMBJ64C NL DL 64 71.1 90.1 1.0 114 5.3 5.0 SMBJ64A SMBJ64CA NM DM 64 71.1 81.8 1.0 103 5.8 5.0 SMBJ70 SMBJ70C NN DN 70 77.8 98.6 1.0 125 4.8 5.0 SMBJ70A SMBJ70CA NP DP 70 77.8 89.5 1.0 113 5.3 5.0 SMBJ75 SMBJ75C NQ DQ 75 83.0 105.7 1.0 134 4.5 5.0 SMBJ75A SMBJ75CA NR DR 75 83.0 95.8 1.0 121 5.0 5.0 SMBJ90 SMBJ90C NW DW 90 100 126.5 1.0 160 3.8 5.0 SMBJ90A SMBJ90CA NX DX 90 100 115.5 1.0 146 4.1 5.0 SMBJ100 SMBJ100C NY DY 100 111 141.0 1.0 179 3.4 5.0 SMBJ100A SMBJ100CA NZ DZ 100 111 128.0 1.0 162 3.7 5.0 SMBJ110 SMBJ110C PD ED 110 122 154.5 1.0 196 3.1 5.0 SMBJ110A SMBJ110CA PE EE 100 122 140.5 1.0 177 3.4 5.0 SMBJ120 SMBJ120C PF EF 120 133 169.0 1.0 214 2.8 5.0 SMBJ120A SMBJ120CA PG EG 120 133 153.0 1.0 193 3.1 5.0 SMBJ130 SMBJ130C PH EH 130 144 182.5 1.0 231 2.6 5.0 SMBJ130A SMBJ130CA PK EK 130 144 165.5 1.0 209 2.9 5.0 SMBJ150 SMBJ150C PL EL 150 167 211.5 1.0 268 2.2 5.0 SMBJ150A SMBJ150CA PM EM 150 167 192.5 1.0 243 2.5 5.0 SMBJ160 SMBJ160C PN EN 160 178 226.0 1.0 287 2.1 5.0 SMBJ160A SMBJ160CA PP EP 160 178 205.0 1.0 259 2.3 5.0 Note:( 1 ) V BR measured after I T applied for 300 s., I T = square wave pulse or equivalent. ( 2 )Surge Current Waveform per Figure 5 and Derate per Figure 1( 3 ) A Transient suppressor is normally selected according to the reverse " Stand-off Voltage " (V WM) which should beequal to or greater then the D.C. or continuous peak operating voltage level.SMBJ13ATYPE MarkingReverse BreakdownStand-Off VoltageVoltage Min. @I TBreakdownVoltage TestMax. @ I T CurrentMaximumClampingVoltage@I PPPeak ReversePulse LeakageCurrent @V RMW(Uni) (BI) (Uni) (Bi) V RMW (V) V BR MIN(V) V BR MAX(V) I T (mA) V C(V) I PP(A) I R(uA) SMBJ170 SMBJ170C PQ EQ 170 189 239.5 1.0 304 2.0 5.0 SMBJ170A SMBJ170CA PR ER 170 189 217.5 1.0 275 2.2 5.0 SMBJ180 SMBJ180C PS ES 180 200 253.8 1.0 321 1.9 5.0 SMBJ180A SMBJ180CA PT ET 180 200 230.4 1.0 290 2.1 5.0 SMBJ190 SMBJ190C PU EU 190 211 267.9 1.0 339 1.8 5.0 SMBJ190A SMBJ190CA PV EV 190 211 243.2 1.0 306 2.0 5.0 SMBJ200 SMBJ200C PW EW 200 222 282.0 1.0 356 1.7 5.0 SMBJ200A SMBJ200CA PX EX 200 222 256.0 1.0 322 1.9 5.0 SMBJ210 SMBJ210C PY EY 210 233 296.1 1.0 375 1.6 5.0 SMBJ210A SMBJ210CA PZ EZ 210 233 268.8 1.0 339 1.8 5.0 SMBJ220 SMBJ220C QD FD 220 244 310.2 1.0 392 1.5 5.0 SMBJ220A SMBJ220CA QE FE 220 244 281.6 1.0 355 1.7 5.0 SMBJ250 SMBJ250C QF FF 250 278 342.5 1.0 447 1.3 5.0 SMBJ250A SMBJ250CA QG FG 250 278 309.0 1.0 403 1.5 5.0 SMBJ300 SMBJ300C QH FH 300 333 411.0 1.0 535 1.1 5.0 SMBJ300A SMBJ300CA QK FK 300 333 371.0 1.0 484 1.2 5.0 SMBJ350 SMBJ350C QL FL 350 389 479.5 1.0 624 1.0 5.0 SMBJ350A SMBJ350CA QM FM 350 389 432.0 1.0 565 1.1 5.0 SMBJ400 SMBJ400C QN FN 400 444 548.0 1.0 687 0.9 5.0 SMBJ400A SMBJ400CA QP FP 400 444 494.0 1.0 645 0.9 5.0 SMBJ440 SMBJ440C QQ FQ 440 489 602.8 1.0 786 0.8 5.0 SMBJ440A SMBJ440CA QR FR 440 489 543.0 1.0 710 0.8 5.0SMBJ13ARatings and Characteristic Curves T A =25癈 unless otherwise notedSMBJ13A。
SMBJ58CA中文资料
B
Dim A
SMB Min 3.30 4.06 1.91 0.15 5.00 0.10 0.76 2.00 Max 3.94 4.70 2.21 0.31 5.59 0.20 1.52 2.62
1. Valid provided that terminals are kept at ambient temperature. 2. Measured with 8.3ms single half sine-wave. Duty cycle = 4 pulses per minute maximum. 3. Unidirectional units only.
DS19002 Rev. 11 - 2
1 of 3
SMBJ5.0(C)A - SMBJ170(C)A
元器件交易网
Part Number Add C For Bi-Directional (Note 4) SMBJ5.0(C)A SMBJ6.0(C)A SMBJ6.5(C)A SMBJ7.0(C)A SMBJ7.5(C)A SMBJ8.0(C)A SMBJ8.5(C)A SMBJ9.0(C)A SMBJ10(C)A SMBJ11(C)A SMBJ12(C)A SMBJ13(C)A SMBJ14(C)A SMBJ15(C)A SMBJ16(C)A SMBJ17(C)A SMBJ18(C)A SMBJ20(C)A SMBJ22(C)A SMBJ24(C)A SMBJ26(C)A SMBJ28(C)A SMBJ30(C)A SMBJ33(C)A SMBJ36(C)A SMBJ40(C)A SMBJ43(C)A SMBJ45(C)A SMBJ48(C)A SMBJ51(C)A SMBJ54(C)A SMBJ58(C)A SMBJ60(C)A SMBJ64(C)A SMBJ70(C)A SMBJ75(C)A SMBJ78(C)A SMBJ85(C)A SMBJ90(C)A SMBJ100(C)A SMBJ110(C)A SMBJ120(C)A SMBJ130(C)A SMBJ150(C)A SMBJ160(C)A SMBJ170(C)A Reverse Standoff Voltage VRWM (V) 5.0 6.0 6.5 7.0 7.5 8.0 8.5 9.0 10.0 11.0 12.0 13.0 14.0 15.0 16.0 17.0 18.0 20.0 22.0 24.0 26.0 28.0 30.0 33.0 36.0 40.0 43.0 45.0 48.0 51.0 54.0 58.0 60.0 64.0 70.0 75.0 78.0 85.0 90.0 100.0 110.0 120.0 130.0 150.0 160.0 170.0 Breakdown Voltage VBR @ IT (Note 5) Min (V) 6.40 6.67 7.22 7.78 8.33 8.89 9.44 10.00 11.10 12.20 13.30 14.40 15.60 16.70 17.80 18.90 20.00 22.20 24.40 26.70 28.90 31.10 33.30 36.70 40.00 44.40 47.80 50.00 53.30 56.70 60.00 64.40 66.70 71.10 77.80 83.30 86.70 94.40 100.0 111.0 122.0 133.0 144.0 167.0 178.0 189.0 Max (V) 7.23 7.67 8.30 8.95 9.58 10.23 10.82 11.50 12.80 14.40 15.30 16.50 17.90 19.20 20.50 21.70 23.30 25.50 28.00 30.70 33.20 35.80 38.30 42.20 46.00 51.10 54.90 57.50 61.30 65.20 69.00 74.60 76.70 81.80 89.50 95.80 99.70 108.20 115.50 128.00 140.00 153.00 165.50 192.50 205.00 217.50 Test Current IT(mA) 10 10 10 10 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 Max. Reverse Leakage @ VRWM(Note 6) IR (mA) 800 800 500 200 100 50 10 5.0 5.0 5.0 5.0 5.0 5.0 5.0 5.0 5.0 5.0 5.0 5.0 5.0 5.0 5.0 5.0 5.0 5.0 5.0 5.0 5.0 5.0 5.0 5.0 5.0 5.0 5.0 5.0 5.0 5.0 5.0 5.0 5.0 5.0 5.0 5.0 5.0 5.0 5.0 Max. Clamping Max. Peak Pulse Current Voltage @ Ipp Ipp VC (V) 9.2 10.3 11.2 12.0 12.9 13.6 14.4 15.4 17.0 18.2 19.9 21.5 23.2 24.4 26.0 27.6 29.2 32.4 35.5 38.9 42.1 45.4 48.4 53.3 58.1 64.5 69.4 72.7 77.4 82.4 87.1 93.6 96.8 103.0 113.0 121.0 126.0 137.0 146.0 162.0 177.0 193.0 209.0 243.0 259.0 275.0 (A) 65.2 58.3 53.6 50.0 46.5 44.1 41.7 39.0 35.3 33.0 30.2 27.9 25.8 24.0 23.1 21.7 20.5 18.5 16.9 15.4 14.2 13.2 12.4 11.3 10.3 9.3 8.6 8.3 7.7 7.3 6.9 6.4 6.2 5.8 5.3 4.9 4.7 4.4 4.1 3.7 3.4 3.1 2.9 2.5 2.3 2.2 Marking Code BIAE AG AK AM AP AR AT AV AX AZ BE BG BK BM BP BR BT BV BX BZ CE CG CK CM CP CR CT CV CX CZ DE DG DK DM DP DR DT DV DX DZ EE EG EK EM EP ER UNIKE KG KK KM KP KR KT KV KX KZ LE LG LK LM LP LR LT LV LX LZ ME MG MK MM MP MR MT MV MX MZ NE NG NK NM NP NR NT NV NX NZ PE PG PK PM PP PR
SMBJ58A中文资料
SMBJ5V0(C)A - SMBJ170(C)ADISCLAIMERFAIRCHILD SEMICONDUCTOR RESERVES THE RIGHT TO MAKE CHANGES WITHOUT FURTHER NOTICE TO ANY PRODUCTS HEREIN TO IMPROVE RELIABILITY , FUNCTION OR DESIGN. FAIRCHILD DOES NOT ASSUME ANY LIABILITY ARISING OUT OF THE APPLICATION OR USE OF ANY PRODUCT OR CIRCUIT DESCRIBED HEREIN; NEITHER DOES IT CONVEY ANY LICENSE UNDER ITS PATENT RIGHTS, NOR THE RIGHTS OF OTHERS.TRADEMARKSThe following are registered and unregistered trademarks Fairchild Semiconductor owns or is authorized to use and is not intended to be an exhaustive list of all such trademarks.LIFE SUPPORT POLICYFAIRCHILD S PRODUCTS ARE NOT AUTHORIZED FOR USE AS CRITICAL COMPONENTS IN LIFE SUPPORTDEVICES OR SYSTEMS WITHOUT THE EXPRESS WRITTEN APPROVAL OF FAIRCHILD SEMICONDUCTOR CORPORATION.As used herein:1. Life support devices or systems are devices orsystems which, (a) are intended for surgical implant intothe body, or (b) support or sustain life, or (c) whosefailure to perform when properly used in accordancewith instructions for use provided in the labeling, can be reasonably expected to result in significant injury to the user.2. A critical component is any component of a life support device or system whose failure to perform can be reasonably expected to cause the failure of the life support device or system, or to affect its safety or effectiveness.PRODUCT STATUS DEFINITIONS Definition of Terms Datasheet Identification Product Status DefinitionAdvance InformationPreliminaryNo Identification Needed Obsolete This datasheet contains the design specifications for product development. Specifications may change in any manner without notice.This datasheet contains preliminary data, andsupplementary data will be published at a later date.Fairchild Semiconductor reserves the right to make changes at any time without notice in order to improve design.This datasheet contains final specifications. Fairchild Semiconductor reserves the right to make changes at any time without notice in order to improve design.This datasheet contains specifications on a product that has been discontinued by Fairchild semiconductor.The datasheet is printed for reference information only.Formative or In Design First ProductionFull ProductionNot In ProductionImpliedDisconnect ISOPLANARLittleFETMicroFETMicroPakMICROWIREMSXMSXProOCXOCXProOPTOLOGIC âOPTOPLANARFACT FACT Quiet Series FAST âFASTr FRFET GlobalOptoisolator GTO HiSeCI 2CRev. I2ACEx ActiveArray Bottomless CoolFET CROSSVOLT DOME EcoSPARK E 2CMOS TM EnSigna TMPACMANPOP Power247 PowerTrench âQFET QS QT Optoelectronics Quiet Series RapidConfigure RapidConnect SILENT SWITCHER âSMART START SPMStealthSuperSOT -3SuperSOT -6SuperSOT -8SyncFET TinyLogic âTruTranslation UHC UltraFET âVCXAcross the board. Around the world. The Power FranchiseProgrammable Active Droop。
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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。