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1N5645A
TVS Diode, Unidirectional, 28.2 V, 45.7 V, DO-202AA, 2 Pins
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- Manufacturer: SOLID STATE
- Product type: TVS Diodes
- Product Range:-; TVS Polarity:Unidirectional; Reverse Stand-Off Voltage Vrwm:28.2V; Clamping Voltage Vc Max:45.7V; Diode Case Style:DO-202AA; No. o; Available until stocks are exhausted
- SVHC: No SVHC (27-Jun-2024)
- No. of Pins: 2Pins
- TVS Polarity: Unidirectional
- Product Range: -
- Qualification: -
- Diode Mounting: Through Hole
- Diode Case Style: DO-202AA
- Clamping Voltage Max: 45.7V
- Reverse Standoff Voltage: 28.2V
- Maximum Breakdown Voltage: 34.7V
- Minimum Breakdown Voltage: 31.4V
- Operating Temperature Max: 175°C
- Peak Pulse Power Dissipation: 1.5kW
| Delivery and price | |
|---|---|
| Units per pack | 5 |
| Price | 8.27 € |
| Current stock | 10+ |
| Lead time | 30 days |
1N5629 thru 1N5665 ## SOLID STATE ## INC. ## 46 FARRAND STREET BLOOMFIELD, NEW JERSEY 07003 www.solidstateinc.com ## FEATURES © PROTECTS CIRCUITS FROM HARMFUL TRANSIENTS - © CLAMPS TRANSIENT IN 1 PICO SEC - © 1 WATT CONTINUOUS POWER DISSIPATION **==> picture [155 x 73] intentionally omitted <==** **----- Start of picture text -----**<br> TRANSIENT —<br>7 CESQharON a<br>i<br>—<br>**----- End of picture text -----**<br> MAXIMUM RATINGS See1500rating watts forcurves 1 msFigs. at lead11500rating watts forcurves 1 msFigs. at lead1rating watts forcurves 1 msFigs. at lead1 watts forcurves 1 msFigs. at lead1 forcurves 1 msFigs. at lead1curves 1 msFigs. at lead1 1 msFigs. at lead1 msFigs. at lead1Figs. at lead1 at lead1 lead11 thru temp4 temp44 (Ta) 25°C 25°C Operating and and storage temp -65° temp -65° -65° to 175°C DC power dissipation 1 watt at Ta = 25°C, 3/8” from body. Derate at 6.67 mW/°C Forward surge current 200 amps for 8.3 ms ms at Ta Ta = 25°C ELECTRICAL CHARACTERISTICS CHARACTERISTICS See following table No suffix 10% tolerance suffix 10% tolerance 10% tolerance tolerance Suffix A 5% tolerance A 5% tolerance 5% tolerance tolerance **==> picture [523 x 457] intentionally omitted <==** **----- Start of picture text -----**<br> MAXIMUM RATINGS ee<br>See1500rating watts forcurves 1 msFigs. at lead11500rating watts forcurves 1 msFigs. at lead1rating watts forcurves 1 msFigs. at lead1 watts forcurves 1 msFigs. at lead1 forcurves 1 msFigs. at lead1curves 1 msFigs. at lead1 1 msFigs. at lead1 msFigs. at lead1Figs. at lead1 at lead1 lead11 thru temp4 temp44 (Ta) 25°C 25°C cs2©).: —235.SLE ae wax,<br>Operating and and storage temp -65° temp -65° -65° to 175°C Te |<br>power dissipation 1 watt at Ta = 25°C, 3/8” from body. oe Ve ee<br>Derate at 6.67 mW/°C Co el<br>Forward surge current 200 amps for 8.3 ms ms at Ta Ta = 25°C 7 fee a<br>ELECTRICAL CHARACTERISTICS CHARACTERISTICS a ae | os<br>following table :a GRauEe 0.090 max.<br>No suffix 10% tolerance suffix 10% tolerance 10% tolerance tolerance : fe i 2,286 DIA.<br>Suffix A 5% tolerance A 5% tolerance 5% tolerance tolerance - ._ Sooye800 Ix oe :<br>_ 0,686/0,762 ie ee<br>PSN EE (7 eee haat a<br>PoPCSS RSRCTT Reponentiyre tial waverformSom tCTT TT) alt dimensionsINCH in :<br>G10 RRS et )63—si<asSCHARRATERISTICS<br>a at Se SAE _. 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Pul f f .<br>1N5631 7.38] 9.021 10 6.63 200 12.5 120 065 2 . 2, Pulse wave form for exponential surge<br>INS631A 2.79 86! 10 7-02 200 12.3 124 .065, 8<br>INBe32A | B65| oss} | i 3 20 38 193 -068 Ce 2<br>rs . 78 50 3.4 2 -068 ee<br>1N5633 9.00} 11.0 1 8.10 10 15.0 100 .073 N Eee HEH<br>1N5634INS634A1N5633A | 999.52 || 12.10.51 11 8.928.55 103 16.214.5 10393 .073075 s=° ipoanLePP yeri. rr 7<br>1N5635 | 10.5 | 11.6] 1 9.40 5 15.6 96 .075 § TCO RE CE eee<br>1N5635A 10.8 13.2 1 9.72 5 17.3 87 .078 3 RH<br>1N56361N56364/ || 11.711.4 | 12.614.3 11 10.510.2 55 19.016.7 9079 .078.081 =.: HAEPETTING TTTEErr<br>1N5637_ 12.4 | 13:7] 1 | Iii 5 18.2 82 081 8 7aOe<br>1N5637A | 13.5 | 16.5 1 12.1 5 22.0 68 (084 5 pf UN SERRE REEReeeeee<br> | 14.3 | 15.8 l 12.8 5 21.2 71 084 2 RHA EE<br>Inccasatiso1N5638A lies} ff ise 2 33:3 e “O86 2 PReceeeeee4<br>IN5639 | 15.2 | 16.8 1 13.6 5 22.5 67 .086 S PEE CEE ENCE EH<br>1N5639A | 16.2 | 19.8 i 14.5 5 26.5 56.5 .088 5 50 CECE oI<br>1N5640 | 17.1 | 18.9 1 15.3 5 25.2 59.5 :088 Fs EEECCCCERKEEE EE<br>1N5640A 18.0 22.0 1 16.2 5 29.1 51.5 .090 ro) COE EF<br>1N5641 | 19.0 21.0 1 17.1 5 27.7 54 .090 wt SER eee 2<br>IN5641A 19.8 | 24.2 1 17.8 5 31.9 47 092 = 45 EEEEEEEE EEEEPH<br>1N5642 | 20.9 | 23.1 1 18.8 5 30.6 49 .092 3 PP eT TT TTT TTT Ty AP Ty ry yyy<br>1N5642A 21.6 | 26.4 ] 19.4 5 34.7 43 .094 3 COC<br>1N5643 | 22.8 | 25.2 1 20.5 5 33.2 45 .094 a Rt PT TIN TT Tr<br>1N5643A 24.3 | 29.7 1 21.8 5 39.1 38.5 .096 3 PT TT PT :<br>1N5644 | 25.7 | 28.4 1 23.1 5 37.5 40 .096 2 LT UT TET err eye rrr yr ArT TTT yy<br>1N5644A | 27.0 | 33.0 1 24.3 5 43.5 34.5 .097 e 0 50 100 150 175<br>_ | 28.5 | 31.5 1 25.6 5 41.4 36 097 g T. Ambient T ° ;<br>|1N5645 39.7 36.3 1 26.8 5 47.7 315 .098 a a Ambient Temperature “C<br>1N5645A | 31. 34.7 1 28.2 5 5.7 .098 FIG. 3. Derating curve<br>1N5646 32.4 | 39.6 1 29.1 5 52.0 29 .099 G. 3. ing e<br>1N5646A | 34.2 | 37.8 1 30.8 5 49.9 30 .099 z<br>1N5647 35.1 | 42.9 1 31.6 5 56.4 26.5 100 5<br>1N5647A | 37.1 | 41.0 | 1 33.3 5 53.9 28 100 3<br>1N5648 | 38.7 | 47.3 1 34.8 5 61.9 24 101 < 1.0<br>1N5648A | 40.9 | 45.2 1 36.8 5 59.3 25.3 101 8 NX<br>1N5649 42.3 | 51.7 1 38.1 5 67.8 22.2 101 &<br>1N5649A | 44.7 | 49.4 1 40.2 5 64.8 23.2 101 3 we<br>1N5650 45.9 | 56.1 1 41.3 ° 5 73.5 20.4 102 3<br>1N5650A | 48.5 | 53.6 1 43.6 5 70.1 21.4 102 5 m™<br>1N5651 | 50.4) 61.6 1 45.4 5 80.5 18.6 .103 3 0.50<br>IN5651A | 53.2] 588] 1 47.8 5 77.0 19.5 103 8 NY<br>1N5652 55.8 | 68.2 1 50.2 5 89.0 16.9 104 2 mm<br>1N5652A | 58.9 | 65.1 1 53.0 5 85.0 17.7 104 2 we<br>iIN56531N5653A || 64.661.2| | 71.4748 | 11 | 58.1551 55 92.098.0 16.315.3 "104104 8g£ INSNI<br>1N5654 67.5 | 82.5 1 60.7 5 108 13.9 : 105 é 2550 700 7<br>1N5654A | 71.3] 78.8 1 64.1 5 103 14.6 105 5 5<br>1N5655 73.8 | 90.2 1 66.4 5 118 127 105 TL Lead Temperature °C<br>INS655A | 77.9 | 86.1 ! 70.1 S 113 : “105 FIG. 4, Steady-state power derating curve<br>1N5656 81.9 | 100.0 1 73.7 5 131 11.4 106 y P 9 cu<br>1N5656A | 86.5 | 95.5 1 77.8 5 125 12.0 .106<br>1N5657 90 J110 1 81.0 5 144 10.4 106<br>N5658 9, . .<br>1N5659 2 1 . . :<br>1N5659A [114 126 ] 102 5 165 9.1 107 Vwm Stand Off Voltage: Ap- nation of voltage vise due to<br>1N5660 117 143 1 105 5 187 8.0 .107 plied Reverse Voltage to assure both the series resistance and<br>IN5660A ]124 1137 1 ine 5 179 8.4 107 a. nonconductive condition. thermal rise. c ;<br>INSeELA 143 183 i 158 3 503 7.75 108 ViBR) This .is the Breakdown 1 Figureea! *. Pululse -.,‘ent— “<br>1N2e8s 133 tee | 13e 2 339 23 198 andoltageis usede todevice assurewill that exhibi' con- 1 —reReverse Leakage.u wer.<br>1N5663 153 187 1 138 3 244 6.2. .-108 ductionthis voltagedoeslevelnot occurat 25°C.prior to Ip—Currenteasured at. that Vgr)en is<br>IN5663A]162 [179 | -1 4145 5 234 6.4 108 “V. Maximam, Clamping Vol ne .<br>1IN5664 |162 |198 1 146 5 258 5.8 .108 Ce emping Volt Note 1<br>IN5664Ainsegs,C, , 171|180 [220189 | 11 154[162 55 | 246287 6.15.2 108198 age.sareeaegaeronssheZenerThe maximum pea ‘vo t- AacsordingTAZ istothenormallyrated selected“Stand<br>IN5665A | 190 210 1 171 5 274 5.5 . pulse current in a one milli- be equal to or greater than the<br>second time interval. The peak DC or continuous peak operat-<br>pulse voltages are the combi- ing voltage level.<br>*V(BR) is measured after I7 has been applied for <300 mS<br>Forward voltage Vf, at |- = 1 AMP, 1.2V max.<br>Forward current IF shall be applied for 30 secs. before Ve is measured.<br>**----- End of picture text -----**<br>
Updated at April 23, 2026
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