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  ? 1994 data sheet silicon transistor 2sc5180 features low current consumption and high gain ? s 21e 2 = 12 db typ. @ v ce = 2 v, i c = 7 ma, f = 2 ghz ? s 21e 2 = 11 db typ. @ v ce = 1 v, i c = 5 ma, f = 2 ghz supper mini-mold package ordering information part quantity arrangement number embossed tape, 8 mm wide, pins no. 3 2sc5180Ct1 (base) and no. 4 (emitter) facing the 3 000 units/reel perforations embossed tape, 8 mm wide, pins no. 1 2sc5180Ct2 (collector) and no. 2 (emitter) facing the perforations * contact your nec sales representatives to order samples for evaluation (available in batches of 50). absolute maximum ratings (t a = 25 c) collector to base voltage v cbo 5v collector to emitter voltage v ceo 3v emitter to base voltage v ebo 2v collector current i c 10 ma total power dissipation p t 30 mw junction temperature t j 150 c storage temperature t stg C65 to +150 c 2.0 ?0.2 1.25 ?0.1 2 1 3 4 (1.25) 0.65 0.60 0.3 +0.1 ?.05 0.4 +0.1 ?.05 0.3 +0.1 ?.05 0.3 +0.1 ?.05 (1.3) 0.9 ?0.1 0.3 0.15 +0.1 ?.05 0 to 0.1 2.1 ?0.2 t84 package dimensions (units : mm) 1.collector 2.emitter 3.base 4. emitter pin connections npn epitaxial silicon transistor in super mini-mold package for low-noise microwave amplification caution; this transistor uses high-frequency technology. be careful not to allow excessive current to flow through the transistor, including static electricity. document no. p12104ej2v0ds00 (2nd edition) (previous no. tc-2477) date published december 1996 n printed in japan
2 2sc5180 electrical characteristics (t a = 25 c) parameter symbol min. typ. max. unit conditions collector cutoff current i cbo 100 na v cb = 5 v, i e = 0 emitter cutoff current i ebo 100 na v eb = 1 v, i c = 0 dc current gain h fe 70 140 v ce = 2 v, i c = 7 ma * 1 insertion power gain (1) ? s 21e 2 10 12 db v ce = 2 v, i c = 7 ma, f = 2 ghz insertion power gain (2) ? s 21e 2 8.5 11 db v ce = 1 v, i c = 5 ma, f = 2 ghz noise figure (1) nf 1.5 2.0 db v ce = 2 v, i c = 3 ma, f = 2 ghz noise figure (2) nf 1.5 2.0 db v ce = 1 v, i c = 3 ma, f = 2 ghz gain bandwidth product (1) f t 12 15.5 ghz v ce = 2 v, i c = 7 ma, f = 2 ghz gain bandwidth product (2) f t 10 13 ghz v ce = 1 v, i c = 5 ma, f = 2 ghz feedback capacitance c re 0.3 0.5 pf v cb = 2 v, i e = 0 ma, f = 1 mhz * 2 *1 : measured with pulses : pulse width = < 350 m s, duty cycle = < 2 %, pulsed *2 : measured with a three-terminal bridge. the emitter and case terminal are connected to the guard terminal of the bridge. h fe class class fb marking t84 h fe 70 to 140
3 2sc5180 characteristics curves (t a = 25 c) 25 0 20 15 10 5 1.0 2.0 3.0 collector current vs. collector to emitter voltage i c ?collector current ?ma v ce ?collector to emitter voltage ?v total power dissipation vs. ambient temperature collector current vs. base to emitter voltage 0 50 200 100 0 50 100 150 40 30 20 10 0.5 1.0 t a ?ambient temperature ?? v be ?base to emitter voltage ?v p t ?total power dissipation ?mw i c ?collector current ?ma v ce = 2 v 30 mw i b = 20 a m 40 a m 60 a m 80 a m 100 a m 120 a m 140 a m 160 a m 180 a m 200 a m passive air cooling gain band width product vs. collector current insertion power gain vs. collector current 1 14 18 1 2 5 10 12 10 8 6 2 10 i c ?collector current ?ma i c ?collector current ?ma f t ?gain bandwidth product ?ghz 16 14 12 10 8 6 4 f = 2 ghz 4 5 s 21e 2 ?insertion power gain ?db v ce = 2 v v ce = 1 v f = 2 ghz 2 v v ce = 1 v i c ?collector current ?ma h fe ?dc current gain dc current gain vs. collector current 500 200 100 10 20 50 1 2 5 10 20 50 100 v ce = 1 v v ce = 2 v
4 2sc5180 0 4 3 2 1 10 20 100 0.1 0.3 0.4 0.5 1.0 2.0 3.0 4.0 feed-back capacitance vs. collector to base voltage noise figure vs. collector current nf ?noise figure db i c ?collector current ?ma c re ?feedback capacitance ?pf v cb ?collector to base voltage ?v 5.0 0.2 12 5 v ce = 1 v v ce = 2 v f = 2 ghz f = 1 mhz 0
5 2sc5180 separameter v ce = 1 v, i c = 1 ma, z o = 50 w frequency s11 s21 s12 s22 mhz mag ang mag ang mag ang mag ang 600.00 0.916 C28.0 3.247 147.1 0.074 65.6 0.960 C21.2 800.00 0.816 C36.9 3.092 136.2 0.111 58.6 0.887 C26.2 1000.00 0.741 C47.1 2.929 125.5 0.140 54.4 0.810 C32.8 1200.00 0.691 C55.8 2.864 116.5 0.158 52.2 0.788 C39.3 1400.00 0.628 C63.3 2.762 109.6 0.179 48.2 0.744 C44.5 1600.00 0.558 C72.3 2.590 100.9 0.195 44.8 0.692 C49.2 1800.00 0.508 C80.9 2.505 93.4 0.199 43.7 0.647 C54.7 2000.00 0.444 C87.8 2.293 88.1 0.196 39.5 0.602 C58.2 2200.00 0.386 C94.3 2.111 81.8 0.201 35.8 0.575 C61.2 v ce = 1 v, i c = 3 ma, z o = 50 w frequency s11 s21 s12 s22 mhz mag ang mag ang mag ang mag ang 600.00 0.694 C43.6 6.614 129.7 0.063 57.9 0.819 C30.4 800.00 0.557 C54.5 5.730 117.1 0.090 54.4 0.707 C35.6 1000.00 0.463 C63.1 5.054 106.4 0.113 52.6 0.609 C41.1 1200.00 0.394 C70.7 4.628 99.0 0.125 54.2 0.575 C45.5 1400.00 0.325 C78.9 4.123 92.2 0.143 52.5 0.526 C48.8 1600.00 0.269 C88.2 3.744 84.3 0.157 51.5 0.478 C52.5 1800.00 0.226 C96.9 3.488 79.4 0.160 52.5 0.441 C57.0 2000.00 0.181 C103.5 3.085 75.5 0.166 50.8 0.412 C57.9 2200.00 0.146 C111.9 2.776 70.5 0.174 48.1 0.401 C60.0 v ce = 1 v, i c = 5 ma, z o = 50 w frequency s11 s21 s12 s22 mhz mag ang mag ang mag ang mag ang 600.00 0.556 C51.5 7.925 120.8 0.055 57.5 0.729 C33.5 800.00 0.430 C61.6 6.573 108.7 0.083 55.0 0.614 C37.4 1000.00 0.338 C68.2 5.644 98.8 0.102 54.0 0.527 C41.0 1200.00 0.271 C75.3 5.047 92.4 0.117 57.7 0.498 C44.6 1400.00 0.217 C84.1 4.409 86.0 0.133 56.5 0.451 C47.5 1600.00 0.171 C94.6 3.985 78.8 0.148 55.9 0.414 C50.0 1800.00 0.137 C104.4 3.674 74.9 0.155 57.4 0.382 C53.9 2000.00 0.100 C114.7 3.229 71.4 0.162 55.7 0.361 C55.0 2200.00 0.079 C125.3 2.897 66.9 0.173 53.0 0.357 C57.2 v ce = 1 v, i c = 7 ma, z o = 50 w frequency s11 s21 s12 s22 mhz mag ang mag ang mag ang mag ang 600.00 0.455 C57.2 8.518 114.4 0.051 56.0 0.657 C34.1 800.00 0.335 C67.4 6.873 103.1 0.075 55.1 0.557 C36.6 1000.00 0.252 C73.2 5.825 93.9 0.095 56.7 0.480 C39.2 1200.00 0.194 C80.5 5.131 88.3 0.113 59.7 0.453 C41.8 1400.00 0.148 C91.1 4.447 82.0 0.129 58.7 0.417 C44.6 1600.00 0.114 C105.9 4.018 75.3 0.145 58.7 0.385 C46.8 1800.00 0.087 C119.5 3.682 71.9 0.152 60.6 0.357 C50.6 2000.00 0.062 C140.8 3.230 68.6 0.161 58.1 0.341 C51.5 2200.00 0.051 C160.7 2.893 64.4 0.170 55.7 0.342 C54.0
6 2sc5180 v ce = 1 v, i c = 10 ma, z o = 50 w frequency s11 s21 s12 s22 mhz mag ang mag ang mag ang mag ang 600.00 0.359 C65.9 8.500 108.9 0.048 54.8 0.603 C33.1 800.00 0.255 C78.2 6.731 98.1 0.071 56.3 0.516 C34.4 1000.00 0.177 C83.8 5.648 89.6 0.090 56.8 0.449 C35.9 1200.00 0.127 C96.6 4.927 84.4 0.109 61.7 0.431 C38.2 1400.00 0.098 C115.6 4.251 78.2 0.125 61.4 0.400 C40.5 1600.00 0.081 C141.9 3.839 71.9 0.143 61.2 0.377 C42.8 1800.00 0.072 C162.7 3.504 68.8 0.150 62.1 0.351 C46.1 2000.00 0.070 170.9 3.072 65.8 0.157 60.3 0.338 C47.5 2200.00 0.074 157.1 2.748 61.5 0.167 57.2 0.342 C50.4 v ce = 2 v, i c = 1 ma, z o = 50 w frequency s11 s21 s12 s22 mhz mag ang mag ang mag ang mag ang 600.00 0.927 C26.3 3.263 148.6 0.065 64.5 0.968 C19.5 800.00 0.827 C34.2 3.122 138.1 0.101 59.7 0.903 C24.1 1000.00 0.758 C43.7 2.962 127.7 0.129 54.9 0.828 C30.3 1200.00 0.712 C52.2 2.910 118.9 0.146 54.2 0.808 C36.5 1400.00 0.653 C59.1 2.825 112.3 0.165 50.6 0.769 C41.3 1600.00 0.581 C67.5 2.657 103.8 0.181 47.3 0.723 C46.0 1800.00 0.530 C75.7 2.578 96.3 0.185 46.0 0.673 C51.3 2000.00 0.469 C82.1 2.368 91.0 0.184 41.5 0.630 C54.7 2200.00 0.410 C87.5 2.184 84.7 0.188 38.2 0.607 C57.4 v ce = 2 v, i c = 3 ma, z o = 50 w frequency s11 s21 s12 s22 mhz mag ang mag ang mag ang mag ang 600.00 0.727 C39.7 6.761 131.7 0.057 58.1 0.841 C27.8 800.00 0.587 C49.7 5.910 119.4 0.084 55.8 0.737 C32.4 1000.00 0.490 C57.4 5.229 108.8 0.104 54.2 0.645 C37.5 1200.00 0.425 C64.5 4.812 101.3 0.120 55.7 0.608 C41.8 1400.00 0.354 C70.8 4.314 94.8 0.135 55.3 0.562 C45.1 1600.00 0.295 C78.5 3.919 86.9 0.148 54.1 0.517 C48.3 1800.00 0.251 C85.1 3.662 81.8 0.151 54.8 0.478 C52.4 2000.00 0.203 C89.4 3.243 77.9 0.156 52.9 0.449 C53.6 2200.00 0.167 C93.9 2.924 73.0 0.164 50.9 0.441 C55.6 v ce = 2 v, i c = 5 ma, z o = 50 w frequency s11 s21 s12 s22 mhz mag ang mag ang mag ang mag ang 600.00 0.592 C46.3 8.189 122.9 0.052 59.4 0.763 C30.6 800.00 0.457 C55.1 6.849 110.9 0.074 56.6 0.655 C33.8 1000.00 0.369 C60.0 5.900 101.1 0.096 54.1 0.564 C37.6 1200.00 0.305 C66.2 5.303 94.7 0.111 58.0 0.533 C40.7 1400.00 0.249 C72.3 4.651 88.4 0.126 58.2 0.495 C43.3 1600.00 0.198 C79.2 4.202 81.2 0.139 58.2 0.460 C45.6 1800.00 0.160 C85.2 3.888 77.2 0.146 59.2 0.425 C59.3 2000.00 0.121 C89.1 3.419 73.8 0.151 57.5 0.404 C50.4 2200.00 0.096 C92.3 3.069 69.3 0.161 54.4 0.403 C52.2
7 2sc5180 v ce = 2 v, i c = 7 ma, z o = 50 w frequency s11 s21 s12 s22 mhz mag ang mag ang mag ang mag ang 600.00 0.489 C50.8 8.917 116.7 0.045 58.5 0.701 C31.1 800.00 0.371 C58.8 7.266 105.4 0.070 57.0 0.601 C33.3 1000.00 0.287 C62.3 6.166 96.2 0.090 57.4 0.523 C35.7 1200.00 0.233 C67.2 5.456 90.6 0.106 61.2 0.501 C38.3 1400.00 0.181 C72.6 4.743 84.5 0.122 62.0 0.465 C40.4 1600.00 0.138 C80.1 4.283 77.7 0.137 61.2 0.436 C42.7 1800.00 0.105 C86.5 3.937 74.2 0.143 62.8 0.404 C45.9 2000.00 0.072 C91.2 3.456 71.1 0.149 60.2 0.389 C47.1 2200.00 0.052 C93.0 3.097 66.9 0.159 57.3 0.391 C49.2 v ce = 2 v, i c = 10 ma, z o = 50 w frequency s11 s21 s12 s22 mhz mag ang mag ang mag ang mag ang 600.00 0.404 C55.4 9.236 111.8 0.039 55.3 0.660 C30.2 800.00 0.298 C62.9 7.374 101.0 0.064 57.2 0.569 C31.4 1000.00 0.221 C65.2 6.206 92.5 0.087 60.1 0.501 C33.0 1200.00 0.169 C69.5 5.441 87.4 0.102 63.5 0.483 C35.3 1400.00 0.128 C76.3 4.701 81.4 0.119 63.3 0.456 C37.4 1600.00 0.089 C86.1 4.244 75.0 0.134 63.5 0.430 C39.5 1800.00 0.062 C96.1 3.888 71.9 0.140 64.0 0.400 C42.5 2000.00 0.035 C112.1 3.408 68.9 0.147 62.4 0.388 C43.8 2200.00 0.021 C121.3 3.050 64.8 0.156 59.6 0.393 C46.2
2 2sc5180 no part of this document may be copied or reproduced in any form or by any means without the prior written consent of nec corporation. nec corporation assumes no responsibility for any errors which may appear in this document. nec corporation does not assume any liability for infringement of patents, copyrights or other intellectual property rights of third parties by or arising from use of a device described herein or any other liability arising from use of such device. no license, either express, implied or otherwise, is granted under any patents, copyrights or other intellectual property rights of nec corporation or others. while nec corporation has been making continuous effort to enhance the reliability of its semiconductor devices, the possibility of defects cannot be eliminated entirely. to minimize risks of damage or injury to persons or property arising from a defect in an nec semiconductor device, customers must incorporate sufficient safety measures in its design, such as redundancy, fire-containment, and anti-failure features. nec devices are classified into the following three quality grades: "standard", "special", and "specific". the specific quality grade applies only to devices developed based on a customer designated "quality assurance program" for a specific application. the recommended applications of a device depend on its quality grade, as indicated below. customers must check the quality grade of each device before using it in a particular application. standard: computers, office equipment, communications equipment, test and measurement equipment, audio and visual equipment, home electronic appliances, machine tools, personal electronic equipment and industrial robots special: transportation equipment (automobiles, trains, ships, etc.), traffic control systems, anti-disaster systems, anti-crime systems, safety equipment and medical equipment (not specifically designed for life support) specific: aircrafts, aerospace equipment, submersible repeaters, nuclear reactor control systems, life support systems or medical equipment for life support, etc. the quality grade of nec devices is "standard" unless otherwise specified in nec's data sheets or data books. if customers intend to use nec devices for applications other than those specified for standard quality grade, they should contact an nec sales representative in advance. anti-radioactive design is not implemented in this product. m4 96.5


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