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UPA808T-T1

UPA808T-T1

  • 厂商:

    NEC(日电电子)

  • 封装:

  • 描述:

    UPA808T-T1 - MICROWAVE LOW NOISE AMPLIFIER NPN SILICON EPITAXIAL TRANSISTOR WITH BUILT-IN 2 ELEMENTS...

  • 数据手册
  • 价格&库存
UPA808T-T1 数据手册
DATA SHEET SILICON TRANSISTOR µPA808T MICROWAVE LOW NOISE AMPLIFIER NPN SILICON EPITAXIAL TRANSISTOR (WITH BUILT-IN 2 ELEMENTS) SUPER MINI MOLD FEATURES • Low Noise NF = 1.3 dB TYP. @VCE = 2 V, IC = 3 mA, f = 2 GHz NF = 1.3 dB TYP. @VCE = 1 V, IC = 3 mA, f = 2 GHz • A Super Mini Mold Package Adopted • Built-in 2 Transistors (2 × 2SC5184) 2.0±0.2 PACKAGE DRAWINGS (Unit: mm) 2.1±0.1 1.25±0.1 1.3 ORDERING INFORMATION PART NUMBER QUANTITY Loose products (50 PCS) Taping products (3 KPCS/Reel) PACKING STYLE Embossed tape 8 mm wide. Pin 6 (Q1 Base), Pin 5 (Q2 Base), Pin 4 (Q2 Emitter) face to perforation side of the tape. 0.65 2 µPA808T µPA808T-T1 0.65 3 0.9±0.1 pcs.) ABSOLUTE MAXIMUM RATINGS (TA = 25 °C) PARAMETER Collector to Base Voltage Collector to Emitter Voltage Emitter to Base Voltage Collector Current Total Power Dissipation SYMBOL VCBO VCEO VEBO IC PT RATING 5 3 2 30 90 in 1 element 180 in 2 elementsNote 150 –65 to +150 UNIT V V V mA mW PIN CONFIGURATION (Top View) 6 Q1 0 to 0.1 NEC Sales Representative. (Unit sample quantity is 50 5 4 Q2 1 2 3 Junction Temperature Storage Temperature Tj Tstg °C °C PIN CONNECTIONS 1. Collector (Q1) 4. Emitter (Q2) 2. Emitter (Q1) 5. Base (Q2) 3. Collector (Q2) 6. Base (Q1) Note 110 mW must not be exceeded in 1 element. This device uses radio frequency technology. Take due precautions to protect it from excessive input levels such as static electricity. Document No. P12154EJ2V0DS00 (2nd edition) (Previous No. ID-3642) Date Published November 1996 N Printed in Japan © © 0.15 +0.1 –0 Remark If you require an evaluation sample, please contact an 0.7 4 5 0.2 +0.1 –0 1 6 XY 1995 1994 µPA808T ELECTRICAL CHARACTERISTICS (TA = 25 °C) PARAMETER Collector Cutoff Current Emitter Cutoff Current DC Current Gain Gain Bandwidth Product (1) Gain Bandwidth Product (2) Feed-back Capacitance Insertion Power Gain (1) Insertion Power Gain (2) Noise Figure (1) Noise Figure (2) hFE Ratio SYMBOL ICBO IEBO hFE fT fT Cre |S21e|2 |S21e|2 NF NF hFE1/hFE2 CONDITION VCB = 5 V, IE = 0 VEB = 1 V, IC = 0 VCE = 2 V, IC = 20 mANote 1 70 9 7 11 9 0.4 7 6 8.5 7.5 1.3 1.3 0.85 2 2 0.8 MIN. TYP. MAX. 0.1 0.1 140 GHz GHz pF dB dB dB dB UNIT µA µA VCE = 2 V, IC = 20 mA, f = 2 GHz VCE = 1 V, IC = 10 mA, f = 2 GHz VCB = 2 V, IE = 0, f = 1 MHzNote 2 VCE = 2 V, IC = 20 mA, f = 2 GHz VCE = 1 V, IC = 10 mA, f = 2 GHz VCE = 2 V, IC = 3 mA, f = 2 GHz VCE = 1 V, IC = 3 mA, f = 2 GHz VCE = 2 V, IC = 20 mA A smaller value among hFE of hFE1 = Q1, Q2 A larger value among hFE of hFE2 = Q1, Q2 Notes 1. Pulse Measurement: Pw ≤ 350 µs, Duty cycle ≤ 2 % 2. Measured with 3-pin bridge, emitter and case should be connected to guard pin of bridge. hFE CLASSIFICATION Rank Marking hFE Value KB T86 70 to 140 TYPICAL CHARACTERISTICS (TA = 25 °C) TOTAL POWER DISSIPATION vs. AMBIENT TEMPERATURE 50 Total Power Dissipation PT (mW) COLLECTOR CURRENT vs. BASE TO EMITTER VOLTAGE VCE = 2 V 2 Elements in Total 180 mW Collector Current IC (mA) 200 40 30 100 Per Element 90 mW 20 10 0 50 100 150 0 0.5 Base to Emitter Voltage VBE (V) DC CURRENT GAIN vs. COLLECTOR CURRENT 1.0 Ambient Temperature TA (°C) COLLECTOR CURRENT vs. COLLECTOR TO EMITTER VOLTAGE 25 Collector Current IC (mA) 500 20 15 10 5 200 µA 180 µA 160 µA 140 µA 120 µA 100 µA 80 µA 60 µA 40 µA IB = 20 µA 1.0 2.0 3.0 DC Current Gain hFE 200 VCE = 2 V 100 50 VCE = 1 V 20 10 0 1 2 5 10 20 50 100 Collector to Emitter Voltage VCE (V) Collector Current IC (mA) 2 µPA808T GAIN BANDWIDTH PRODUCT vs. COLLECTOR CURRENT 15 f = 2 GHz Gain Bandwidth Product f T (GHz) Insertion Power Gain |S21e|2 (dB) 10 INSERTION GAIN vs. COLLECTOR CURRENT f = 2 GHz VCE = 2 V VCE = 2 V 10 VCE = 1 V VCE = 1 V 5 5 0 1 2 3 5 7 10 1 2 3 5 7 10 Collector Current IC (mA) NOISE FIGURE vs. COLLECTOR CURRENT 3 f = 2 GHz Feed-back Capacitance Cre (pF) f = 1 MHz 0.6 Noise Figure NF (dB) 0.8 Collector Current IC (mA) FEED-BACK CAPACITANCE vs. COLLECTOR TO BASE VOLTAGE 2 VCE = 2 V 0.4 VCE = 1 V 1 0.2 1 2 3 5 7 10 0 2.0 4.0 6.0 8.0 10.0 Collector Current IC (mA) Collector to Base Voltage VCB (V) 3 µPA808T S-PARAMETERS V CE = 1 V , IC = 1 m A, Z O = 5 0 Ω FREQUENCY MHz 100.0000 200.0000 300.0000 400.0000 500.0000 600.0000 700.0000 800.0000 900.0000 1000.0000 1100.0000 1200.0000 1300.0000 1400.0000 1500.0000 1600.0000 1700.0000 1800.0000 1900.0000 2000.0000 MAG 0.974 0.971 0.956 0.926 0.902 0.861 0.829 0.793 0.753 0.723 0.691 0.652 0.628 0.587 0.565 0.535 0.508 0.489 0.471 0.449 S11 ANG –6.9 –14.0 –20.5 –28.4 –34.5 –42.2 –49.5 –55.6 –63.1 –68.8 –76.3 –82.9 –88.7 –95.8 –101.4 –107.4 –113.5 –118.6 –124.6 –130.5 MAG 2.031 1.953 1.928 2.021 1.911 1.941 1.930 1.864 1.917 1.839 1.838 1.833 1.742 1.756 1.686 1.654 1.624 1.565 1.530 1.509 S21 ANG 170.7 162.5 154.8 147.6 141.1 135.2 129.2 123.6 118.6 114.1 109.3 104.4 100.1 95.7 92.0 88.1 84.7 81.2 78.4 75.2 MAG 0.029 0.057 0.083 0.105 0.126 0.144 0.158 0.172 0.182 0.191 0.200 0.204 0.209 0.213 0.215 0.217 0.218 0.220 0.221 0.222 S12 ANG 84.1 78.0 72.3 67.5 62.9 58.6 54.4 51.1 48.2 45.7 43.4 41.6 39.4 38.4 37.0 36.0 35.3 35.0 34.5 34.6 MAG 0.993 0.982 0.960 0.925 0.902 0.861 0.826 0.791 0.758 0.731 0.703 0.675 0.652 0.629 0.610 0.591 0.574 0.559 0.545 0.532 S22 ANG –5.5 –10.9 –15.5 –20.7 –24.9 –28.6 –32.6 –35.6 –38.5 –41.3 –43.4 –45.6 –47.9 –49.5 –51.6 –53.0 –54.6 –56.0 –57.4 –59.0 V CE = 1 V , IC = 3 m A, Z O = 5 0 Ω FREQUENCY MHz 100.0000 200.0000 300.0000 400.0000 500.0000 600.0000 700.0000 800.0000 900.0000 1000.0000 1100.0000 1200.0000 1300.0000 1400.0000 1500.0000 1600.0000 1700.0000 1800.0000 1900.0000 2000.0000 MAG 0.917 0.879 0.830 0.755 0.703 0.625 0.560 0.506 0.456 0.411 0.384 0.346 0.327 0.303 0.289 0.273 0.261 0.252 0.247 0.242 S11 ANG –11.2 –22.2 –31.8 –44.2 –52.5 –63.5 –73.9 –81.8 –90.8 –98.6 –105.7 –113.0 –119.7 –126.4 –132.4 –138.2 –144.4 –150.1 –156.0 –161.8 MAG 5.682 5.447 5.165 5.205 4.838 4.684 4.522 4.219 4.031 3.796 3.574 3.377 3.166 3.011 2.850 2.707 2.588 2.468 2.364 2.274 S21 ANG 164.5 154.3 144.7 136.0 129.3 122.1 115.3 109.8 104.7 100.0 95.9 91.7 88.4 85.2 82.4 79.6 77.1 74.4 72.2 69.8 MAG 0.027 0.052 0.072 0.087 0.101 0.111 0.121 0.129 0.137 0.143 0.152 0.158 0.165 0.171 0.179 0.185 0.193 0.200 0.207 0.214 S12 ANG 81.0 72.7 66.6 61.7 58.1 55.8 54.2 53.3 52.9 52.3 51.9 51.7 51.6 51.8 51.9 51.9 51.9 52.1 52.4 52.4 MAG 0.966 0.914 0.845 0.764 0.705 0.639 0.587 0.543 0.508 0.478 0.451 0.428 0.408 0.390 0.375 0.361 0.348 0.338 0.329 0.319 S22 ANG –10.7 –20.4 –28.1 –34.6 –39.7 –43.1 –46.8 –49.0 –51.3 –52.9 –54.4 –55.6 –57.2 –58.2 –59.6 –60.2 –61.3 –62.4 –63.4 –64.8 4 µPA808T V CE = 1 V , IC = 7 m A, Z O = 5 0 Ω FREQUENCY MHz 100.0000 200.0000 300.0000 400.0000 500.0000 600.0000 700.0000 800.0000 900.0000 1000.0000 1100.0000 1200.0000 1300.0000 1400.0000 1500.0000 1600.0000 1700.0000 1800.0000 1900.0000 2000.0000 MAG 0.784 0.700 0.606 0.490 0.412 0.343 0.299 0.265 0.243 0.222 0.213 0.198 0.193 0.184 0.183 0.178 0.177 0.176 0.180 0.182 S11 ANG –18.0 –36.7 –51.4 –68.6 –80.3 –92.6 –103.1 –111.9 –120.0 –127.7 –135.2 –142.5 –149.8 –156.2 –162.3 –168.3 –173.9 –179.6 175.3 170.6 MAG 11.844 10.881 9.746 9.052 8.022 7.101 6.348 5.687 5.170 4.735 4.360 4.033 3.756 3.508 3.310 3.127 2.963 2.814 2.686 2.573 S21 ANG 157.9 143.4 131.7 121.0 113.0 106.5 101.0 96.8 93.2 89.7 86.9 83.9 81.5 79.0 76.8 74.6 72.7 70.6 68.6 66.9 MAG 0.026 0.045 0.060 0.070 0.081 0.091 0.100 0.110 0.119 0.130 0.140 0.150 0.159 0.169 0.179 0.189 0.199 0.208 0.217 0.228 S12 ANG 77.0 68.8 64.3 62.4 61.4 61.2 62.0 62.1 62.3 62.2 62.3 62.7 62.2 61.9 61.8 61.4 61.0 60.9 60.3 60.0 MAG 0.906 0.784 0.664 0.563 0.496 0.436 0.393 0.359 0.336 0.317 0.298 0.283 0.268 0.257 0.248 0.239 0.231 0.224 0.218 0.211 S22 ANG –18.0 –32.0 –40.8 –46.7 –50.2 –52.6 –54.8 –55.8 –57.4 –58.1 –59.3 –59.8 –61.4 –62.2 –63.3 –63.8 –65.1 –66.2 –67.3 –68.8 V CE = 1 V , IC = 1 0 mA, Z O = 5 0 Ω FREQUENCY MHz 100.0000 200.0000 300.0000 400.0000 500.0000 600.0000 700.0000 800.0000 900.0000 1000.0000 1100.0000 1200.0000 1300.0000 1400.0000 1500.0000 1600.0000 1700.0000 1800.0000 1900.0000 2000.0000 MAG 0.689 0.583 0.476 0.372 0.306 0.259 0.232 0.211 0.198 0.184 0.180 0.172 0.172 0.169 0.169 0.168 0.168 0.170 0.175 0.179 S11 ANG –24.5 –47.9 –65.2 –82.3 –94.2 –106.7 –117.0 –126.3 –134.5 –142.3 –149.3 –156.7 –163.4 –169.2 –175.2 179.9 174.6 169.3 165.1 161.1 MAG 14.893 13.678 11.837 10.296 8.800 7.604 6.695 5.965 5.386 4.901 4.500 4.155 3.851 3.602 3.400 3.189 3.032 2.880 2.748 2.629 S21 ANG 153.4 137.1 124.5 114.1 106.9 101.4 96.9 93.1 90.1 87.1 84.5 82.0 79.5 77.3 75.4 73.1 71.4 69.4 67.6 66.0 MAG 0.024 0.041 0.054 0.065 0.076 0.087 0.098 0.108 0.118 0.128 0.140 0.151 0.161 0.170 0.183 0.193 0.203 0.213 0.224 0.234 S12 ANG 76.0 68.5 65.2 63.8 65.2 65.2 65.5 65.5 65.6 66.0 65.8 65.5 65.1 64.6 64.2 63.8 63.2 62.6 62.0 61.4 MAG 0.865 0.710 0.579 0.483 0.421 0.367 0.331 0.301 0.282 0.265 0.251 0.239 0.226 0.218 0.210 0.203 0.195 0.188 0.184 0.179 S22 ANG –22.1 –37.1 –45.5 –50.8 –53.5 –55.4 –57.2 –58.0 –59.2 –59.5 –60.8 –61.5 –63.1 –63.8 –65.4 –66.0 –67.1 –68.3 –69.4 –71.4 5 µPA808T V CE = 1 V , IC = 2 0 mA, Z O = 5 0 Ω FREQUENCY MHz 100.0000 200.0000 300.0000 400.0000 500.0000 600.0000 700.0000 800.0000 900.0000 1000.0000 1100.0000 1200.0000 1300.0000 1400.0000 1500.0000 1600.0000 1700.0000 1800.0000 1900.0000 2000.0000 MAG 0.441 0.358 0.290 0.242 0.208 0.196 0.190 0.185 0.184 0.182 0.183 0.183 0.187 0.187 0.193 0.193 0.196 0.199 0.205 0.211 S11 ANG –76.4 –97.6 –111.1 –120.8 –129.8 –142.5 –150.3 –158.8 –164.7 –171.1 –176.2 178.4 173.6 169.5 165.5 161.7 158.0 153.9 151.4 148.9 MAG 18.515 15.403 12.655 10.657 9.000 7.688 6.712 5.955 5.338 4.863 4.468 4.106 3.806 3.540 3.337 3.154 2.980 2.843 2.699 2.579 S21 ANG 138.3 121.3 110.9 104.2 99.0 94.9 91.3 88.1 85.6 82.9 80.7 78.5 76.3 74.3 72.1 70.4 68.7 67.0 65.2 63.6 MAG 0.021 0.037 0.049 0.061 0.073 0.084 0.096 0.108 0.120 0.132 0.144 0.156 0.168 0.179 0.190 0.202 0.214 0.224 0.235 0.247 S12 ANG 73.8 69.2 69.0 69.6 70.4 70.5 70.5 70.5 69.9 69.7 69.3 68.5 68.2 67.5 66.9 65.8 65.3 64.3 63.7 62.9 MAG 0.753 0.556 0.429 0.349 0.301 0.259 0.234 0.212 0.200 0.189 0.179 0.169 0.160 0.154 0.149 0.144 0.138 0.134 0.130 0.127 S22 ANG –30.4 –46.5 –53.6 –58.2 –59.6 –61.2 –62.7 –63.2 –64.9 –65.0 –67.1 –68.2 –69.9 –71.5 –73.3 –74.4 –76.3 –78.3 –79.8 –82.4 V CE = 2 V , IC = 1 m A, Z O = 5 0 Ω FREQUENCY MHz 100.0000 200.0000 300.0000 400.0000 500.0000 600.0000 700.0000 800.0000 900.0000 1000.0000 1100.0000 1200.0000 1300.0000 1400.0000 1500.0000 1600.0000 1700.0000 1800.0000 1900.0000 2000.0000 MAG 0.978 0.975 0.964 0.932 0.915 0.876 0.846 0.812 0.776 0.746 0.717 0.676 0.652 0.610 0.586 0.554 0.526 0.503 0.482 0.457 S11 ANG –6.8 –13.1 –19.1 –26.5 –32.1 –39.3 –46.0 –51.8 –58.9 –64.1 –71.2 –77.5 –83.0 –89.8 –95.2 –101.0 –106.7 –111.9 –117.8 –123.4 MAG 2.018 1.958 1.937 2.026 1.917 1.959 1.945 1.888 1.940 1.862 1.875 1.874 1.785 1.802 1.731 1.709 1.681 1.624 1.594 1.572 S21 ANG 171.8 163.5 156.3 149.7 143.3 137.6 132.0 126.6 121.9 117.6 112.8 108.0 103.9 99.6 96.0 92.0 88.6 85.1 82.1 79.0 MAG 0.025 0.049 0.071 0.091 0.110 0.127 0.140 0.152 0.162 0.170 0.177 0.184 0.189 0.192 0.195 0.197 0.198 0.200 0.201 0.202 S12 ANG 83.3 78.9 74.1 68.8 64.8 60.6 57.0 53.7 50.9 48.7 46.4 44.3 42.2 41.0 39.6 39.0 38.3 37.8 37.5 37.6 MAG 0.995 0.987 0.970 0.938 0.920 0.884 0.852 0.822 0.791 0.766 0.740 0.714 0.693 0.669 0.653 0.634 0.616 0.602 0.591 0.575 S22 ANG –4.9 –9.7 –13.9 –18.4 –22.1 –25.5 –29.1 –31.8 –34.6 –37.1 –39.1 –41.1 –43.1 –44.7 –46.7 –47.8 –49.4 –50.7 –52.0 –53.3 6 µPA808T V CE = 2 V , IC = 3 m A, Z O = 5 0 Ω FREQUENCY MHz 100.0000 200.0000 300.0000 400.0000 500.0000 600.0000 700.0000 800.0000 900.0000 1000.0000 1100.0000 1200.0000 1300.0000 1400.0000 1500.0000 1600.0000 1700.0000 1800.0000 1900.0000 2000.0000 MAG 0.916 0.893 0.850 0.777 0.731 0.656 0.592 0.536 0.481 0.435 0.400 0.357 0.333 0.302 0.284 0.264 0.247 0.233 0.225 0.215 S11 ANG –10.2 –20.0 –28.6 –39.7 –47.1 –57.0 –66.2 –73.3 –81.4 –88.0 –95.1 –101.3 –107.4 –113.4 –119.4 –124.8 –130.7 –136.2 –142.5 –148.4 MAG 5.805 5.495 5.238 5.292 4.938 4.818 4.673 4.389 4.223 3.993 3.781 3.589 3.374 3.210 3.047 2.896 2.766 2.641 2.528 2.436 S21 ANG 166.0 155.8 146.7 138.5 131.9 125.0 118.4 113.0 107.8 103.3 99.0 94.9 91.5 88.0 85.2 82.3 79.9 77.2 75.0 72.9 MAG 0.023 0.045 0.062 0.077 0.090 0.101 0.109 0.117 0.123 0.131 0.137 0.144 0.151 0.157 0.164 0.170 0.177 0.183 0.191 0.198 S12 ANG 82.8 74.6 68.0 64.1 60.3 58.5 56.7 55.5 55.0 54.5 54.5 54.2 54.0 54.1 54.4 54.4 54.7 54.7 55.1 54.9 MAG 0.973 0.931 0.870 0.798 0.745 0.684 0.633 0.591 0.557 0.528 0.504 0.479 0.459 0.441 0.427 0.414 0.401 0.392 0.383 0.373 S22 ANG –9.3 –17.8 –24.4 –30.4 –34.8 –37.8 –41.0 –42.9 –44.8 –46.2 –47.6 –48.5 –49.8 –50.5 –51.7 –52.3 –53.2 –54.0 –54.8 –55.8 V CE = 2 V , IC = 5 m A, Z O = 5 0 Ω FREQUENCY MHz 100.0000 200.0000 300.0000 400.0000 500.0000 600.0000 700.0000 800.0000 900.0000 1000.0000 1100.0000 1200.0000 1300.0000 1400.0000 1500.0000 1600.0000 1700.0000 1800.0000 1900.0000 2000.0000 MAG 0.857 0.811 0.743 0.642 0.571 0.483 0.415 0.363 0.321 0.284 0.260 0.231 0.215 0.196 1.185 0.172 0.163 0.155 0.152 0.149 S11 ANG –13.2 –25.8 –36.6 –50.1 –59.3 –69.9 –79.3 –86.7 –93.7 –100.3 –106.6 –112.8 –119.2 –125.0 –131.8 –137.4 –144.2 –150.5 –157.2 –164.1 MAG 9.113 8.527 7.907 7.737 7.109 6.609 6.140 5.613 5.182 4.803 4.448 4.149 3.875 3.635 3.428 3.244 3.090 2.938 2.810 2.692 S21 ANG 162.6 150.3 139.9 130.5 123.0 115.5 109.1 104.2 99.9 95.9 92.6 89.2 86.4 83.8 81.3 78.9 76.6 74.6 72.6 70.7 MAG 0.023 0.041 0.057 0.069 0.079 0.088 0.096 0.105 0.113 0.121 0.130 0.137 0.146 0.155 0.163 0.171 0.180 0.188 0.196 0.205 S12 ANG 78.8 72.1 66.2 63.9 61.7 61.2 60.5 60.2 60.2 60.5 60.6 60.4 60.7 60.7 60.7 60.7 60.5 60.3 60.3 60.0 MAG 0.948 0.870 0.781 0.690 0.627 0.564 0.517 0.479 0.451 0.427 0.406 0.388 0.372 0.359 0.348 0.337 0.327 0.319 0.313 0.305 S22 ANG –12.7 –23.3 –30.9 –36.6 –40.3 –42.6 –44.8 –45.9 –47.4 –47.9 –48.9 –49.5 –50.4 –51.0 –52.1 –52.3 –53.0 –53.7 –54.5 –55.4 7 µPA808T V CE = 2 V , IC = 7 m A, Z O = 5 0 Ω FREQUENCY MHz 100.0000 200.0000 300.0000 400.0000 500.0000 600.0000 700.0000 800.0000 900.0000 1000.0000 1100.0000 1200.0000 1300.0000 1400.0000 1500.0000 1600.0000 1700.0000 1800.0000 1900.0000 2000.0000 MAG 0.805 0.733 0.645 0.531 0.445 0.366 0.311 0.269 0.240 0.212 0.194 0.174 0.161 0.148 0.141 0.132 0.127 0.122 0.123 0.123 S11 ANG –16.8 –31.1 –43.8 –58.4 –68.3 –78.6 –87.2 –94.4 –101.0 –107.4 –113.9 –120.4 –127.7 –134.2 –141.3 –147.6 –154.8 –161.7 –169.0 –175.7 MAG 12.051 11.136 10.084 9.504 8.484 7.598 6.839 6.153 5.628 5.139 4.750 4.399 4.097 3.836 3.613 3.403 3.231 3.069 2.919 2.802 S21 ANG 160.5 145.9 134.6 124.1 116.3 109.4 103.8 99.5 95.7 92.4 89.4 86.5 84.0 81.6 79.2 77.2 75.1 73.1 71.1 69.5 MAG 0.021 0.039 0.052 0.063 0.073 0.083 0.092 0.100 0.110 0.119 0.128 0.137 0.146 0.155 0.164 0.174 0.182 0.192 0.201 0.210 S12 ANG 76.4 71.1 66.7 64.9 64.6 64.2 63.5 63.8 63.6 64.0 63.9 64.1 63.5 64.4 64.2 63.5 63.3 63.0 62.6 62.2 MAG 0.923 0.818 0.711 0.615 0.550 0.492 0.451 0.416 0.393 0.374 0.355 0.341 0.326 0.316 0.307 0.298 0.290 0.283 0.277 0.271 S22 ANG –15.4 –27.3 –34.9 –39.8 –42.8 –44.5 –46.1 –46.7 –47.7 –48.1 –48.9 –49.3 –50.1 –50.6 –51.6 –51.8 –52.4 –53.1 –54.1 –55.0 V CE = 2 V , IC = 1 0 mA, Z O = 5 0 Ω FREQUENCY MHz 100.0000 200.0000 300.0000 400.0000 500.0000 600.0000 700.0000 800.0000 900.0000 1000.0000 1100.0000 1200.0000 1300.0000 1400.0000 1500.0000 1600.0000 1700.0000 1800.0000 1900.0000 2000.0000 MAG 0.723 0.629 0.520 0.403 0.327 0.266 0.228 0.196 0.175 0.155 0.143 0.129 0.121 0.114 0.109 0.105 0.102 0.101 0.105 0.108 S11 ANG –20.3 –38.3 –53.2 –67.5 –76.9 –86.7 –95.0 –102.2 –109.0 –116.2 –123.2 –130.1 –138.7 –145.5 –153.5 –160.3 –168.2 –176.1 177.1 171.3 MAG 15.896 14.304 12.506 11.061 9.540 8.285 7.319 6.522 5.905 5.381 4.958 4.574 4.251 3.961 3.732 3.520 3.341 3.172 3.013 2.886 S21 ANG 156.6 140.5 128.1 117.4 110.0 104.2 99.5 95.8 92.5 89.5 86.8 84.3 81.9 79.8 77.7 75.7 74.0 72.0 70.3 68.6 MAG 0.021 0.036 0.048 0.059 0.069 0.079 0.088 0.098 0.107 0.117 0.128 0.137 0.147 0.157 0.166 0.176 0.186 0.196 0.205 0.215 S12 ANG 78.2 71.0 67.3 67.5 66.7 67.1 67.3 67.3 67.2 67.0 67.2 67.2 66.8 66.7 66.5 65.7 65.3 64.8 64.3 64.0 MAG 0.890 0.755 0.633 0.541 0.480 0.427 0.393 0.363 0.343 0.329 0.313 0.301 0.289 0.281 0.273 0.266 0.259 0.253 0.248 0.242 S22 ANG –18.6 –31.2 –38.5 –42.4 –44.5 –45.6 –46.6 –46.7 –47.5 –47.6 –48.2 –48.6 –49.3 –49.7 –50.7 –51.0 –51.7 –52.8 –53.5 –54.2 8 µPA808T V CE = 2 V , IC = 2 0 mA, Z O = 5 0 Ω FREQUENCY MHz 100.0000 200.0000 300.0000 400.0000 500.0000 600.0000 700.0000 800.0000 900.0000 1000.0000 1100.0000 1200.0000 1300.0000 1400.0000 1500.0000 1600.0000 1700.0000 1800.0000 1900.0000 2000.0000 MAG 0.474 0.354 0.270 0.213 0.173 0.146 0.129 0.116 0.104 0.097 0.093 0.091 0.090 0.089 0.091 0.094 0.095 0.100 0.106 0.106 S11 ANG –33.9 57.5 –73.3 –85.2 –94.8 –105.1 –115.0 –124.7 –133.8 –143.0 –151.3 –159.0 –169.5 –176.4 177.3 170.6 165.4 160.1 156.6 150.5 MAG 27.070 20.499 15.719 12.575 10.387 8.873 7.714 6.794 6.117 5.522 5.083 4.649 4.346 4.044 3.797 3.565 3.378 3.222 3.080 2.922 S21 ANG 147.2 127.1 115.1 107.5 101.9 97.6 93.9 91.0 88.4 85.2 83.4 81.0 79.0 77.1 75.6 73.8 71.8 70.2 68.4 67.1 MAG 0.018 0.031 0.043 0.054 0.064 0.074 0.084 0.095 0.106 0.116 0.128 0.137 0.148 0.159 0.169 0.179 0.190 0.200 0.210 0.219 S12 ANG 76.5 74.3 72.8 71.2 72.6 73.1 72.7 72.0 72.5 72.4 71.7 71.1 70.9 70.5 69.5 68.9 68.2 67.6 66.9 66.3 MAG 0.805 0.624 0.501 0.424 0.376 0.337 0.312 0.294 0.279 0.266 0.257 0.250 0.241 0.234 0.229 0.224 0.218 0.216 0.210 0.204 S22 ANG –24.1 –36.4 –42.1 –44.2 –44.6 –44.9 –45.2 –44.9 –45.8 –44.9 –45.7 –46.1 –46.9 –47.2 –48.7 –49.5 –50.2 –50.7 –52.1 –52.9 9 µPA808T [MEMO] 10 µPA808T [MEMO] 11 µPA808T 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 10
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