Datasheet 2SC5015-T1, 2SC5015-T2 Datasheet (NEC)

Page 1
©
1993
DATA SHEET
SILICON TRANSISTOR
Document No. P10394EJ2V0DS00 (2nd edition) (Previous No. TD-7938) Date Published August 1995 P Printed in Japan
FEATURES
• Small Package
• High Gain Bandwidth Product (fT = 12 GHz TYP.)
• Low Noise, High Gain
• Low Voltage Operation
ORDERING INFORMATION
PART
QUANTITY PACKING STYLE
NUMBER
2SC5015-T1 3 Kpcs/Reel. Embossed tape 8 mm wide.
Pin3 (Base), Pin4 (Emitter) faceto perforation side of the tape.
2SC5015-T2 3 Kpcs/Reel. Embossed tape 8 mm wide.
Pin1 (Collector), Pin2 (Emitter) faceto perforation side of the tape.
* Please contact with responsible NEC person, if you require evaluation
sample.Unit sample quantity shall be 50 pcs. (Part No.: 2SC5014)
ABSOLUTE MAXIMUM RATINGS (TA = 25 ˚C)
Collector to Base Voltage VCBO 9V Collector to Emitter Voltage VCEO 6V Emitter to Base Voltage V
EBO 2V
Collector Current IC 30 mA Total Power Dissipation PT 150 mW Junction Temperature T
i 150 ˚ C
Storage Temperature Tstg –65 to + 150 ˚ C
HIGH FREQUENCY LOW NOISE AMPLIFIER
NPN SILICON EPITAXIAL TRANSISTOR
4 PINS SUPER MINI MOLD
Caution: Electrostatic Sensitive Device
PACKAGE DIMENSIONS
in millimeters
T83
2.1 ± 0.2
1.25 ± 0.1
0.3 (LEADS 2, 3, 4)
+0.1 –0.05
0.3
+0.1
–0.05
(1.3)
(1.25)
2.0 ± 0.2
0.650.60
23
1
4
0.3
+0.1
–0.05
0.4
+0.1 –0.05
0.9 ± 0.1
0.3
0 to 0.1 0.15
+0.1 –0.05
PIN CONNECTIONS
1. Collector
2. Emitter
3. Base
4. Emitter
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2SC5015
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ELECTRICAL CHARACTERISTICS (TA = 25 ˚C)
CHARACTERISTIC SYMBOL MIN. TYP. MAX. UNIT TEST CONDITION
Collector Cutoff Current ICBO 0.1
µ
AVCB = 5 V, IE = 0
Emitter Cutoff Current IEBO 0.1
µ
AVEB = 1 V, IC = 0
DC Current Gain hFE 75 150 VCE = 3 V, IC = 10 mA
*1
Gain Bandwidth Product fT 12 GHz VCE = 3 V, IC = 10 mA Feed-back Capacitance Cre 0.3 0.5 pF VCB = 3 V, IE = 0, f = 1 MHz
*2
Insertion Power Gain |S21e|
2
911 dBVCE = 3 V, IC = 10 mA,
f = 2.0 GHz
Noise Figure NF 1.5 2.5 dB VCE = 3 V, IC = 3 mA,
f = 2.0 GHz
*1 Pulse Measurement; PW 350 µs, Duty Cycle 2 % Pulsed. *2 Measured with 3 terminals bridge, Emitter and Case should be grounded.
h
FE Classification
Rank KB
Marking T83
hFE 75 to 150
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2SC5015
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TYPICAL CHARACTERISTICS (TA = 25 ˚C)
200
100
0 50 100 150
T
A
- Ambinet Temperatute - ˚C
P
T
- Total Power Dissipation - mW
TOTAL POWER DISSIPATION vs. AMBIENT TEMPERATURE
40
0 0.5 1.0
V
BE
- Base to Emitter Voltafe - V
I
C
- Collector Current - mA
COLLECTOR CURRENT vs.  BASE TO EMITTER VOLTAGE
50
30
20
10
V
CE
= 3 V
30
024 8
V
CE
- Collector to Emitter Voltage - V
I
C
- Collector Current - mA
COLLECTOR CURRENT vs. COLLECTOR TO EMITTER VOLTAGE
12 50
I
C
- Collector Current - mA
h
FE
- DC Current Gain
DC CURRENT GAIN vs. COLLECTOR CURRENT
500
V
CE
= 3 V
22050
I
C
- Collector Current - mA
f
T
- Gain Bandwidth Product - GHz
GAIN BANDWIDTH PRODUCT vs. COLLECTOR CURRENT
20
10
6
IB = 200 A
180 A 160 A 140 A 120 A 100 A
80 A 60 A 40 A 20 A
µ µ µ µ µ µ µ µ µ µ
VCE = 3 V f = 2 GHz
IC - Collector Current - mA
| S
21a
|
2
- Insertion Power Gain - dB
INSERTION POWER GAIN vs. COLLECTOR CURRENT
VCE = 3 V f = 2 GHz
200
100
50
20
10
51020
14 12 10
8 6 4 2 0
1 5 10 2 20 50
12
0
1510
10
8
6
4
2
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2SC5015
4
40
0.1 0.5 1.0 5.0 f - Frequency - GHz
MAG - Maximum Available Gain - dB
| S
21e
|
2
- Insertion Power Gain - dB
MAXIMUM AVAILABLE GAIN/INSERTION POWER GAIN vs. FREQUENCY
VCE = 3 V IC = 10 mA
50
30
20
10
0.2 2.0
0
4
1 5 10 50
I
C
- Collector Current - mA
NF - Noise Figure - dB
NOISE FIGURE vs. COLLECTOR CURRENT
VCE = 3 V f = 2 GHz
5
3
2
1
220
0
1520
V
CB
- Collector to Base Voltage - V
C
re
- Feed-back Capacitance - pF
FEED-BACK CAPACITANCE vs.  COLLECTOR TO BASE VOLTAGE
f = 1 MHz
210
0.1
0.2
0.5
1.0
2.0
| S
21e
|
2
MAG
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2SC5015
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S-PARAMETER
VCE = 3 V, IC = 10 mA
FREQUENCY S11 S21 S12 S22
f (MHz) MAG ANG MAG ANG MAG ANG MAG ANG
100.00 .727 –22.0 22.084 159.4 .011 87.5 .934 –13.1
200.00 .640 –42.3 19.220 142.1 .029 70.7 .832 –24.3
300.00 .537 –57.8 16.333 129.2 .041 69.4 .735 –31.7
400.00 .452 –70.0 13.716 119.6 .046 60.9 .642 –35.6
500.00 .374 –82.3 11.834 111.2 .051 59.6 .562 –39.2
600.00 .332 –91.0 10.355 105.6 .060 61.7 .520 –40.7
700.00 .293 –101.5 9.190 100.2 .066 61.0 .479 –42.0
800.00 .255 –109.0 8.182 95.6 .072 61.3 .443 –44.4
900.00 .231 –119.1 7.376 91.9 .076 60.5 .413 –44.0
1000.00 .211 –128.8 6.751 87.9 .086 61.2 .394 –43.9
1100.00 .200 –136.1 6.171 84.9 .095 62.6 .376 –45.7
1200.00 .184 –143.4 5.658 81.7 .099 58.8 .363 –47.1
1300.00 .184 –154.3 5.286 79.0 .103 60.1 .342 –48.3
1400.00 .180 –162.4 4.932 76.2 .111 54.6 .332 –48.3
1500.00 .174 –171.5 4.630 73.3 .115 56.8 .310 –51.6
1600.00 .180 –178.4 4.347 70.9 .123 58.2 .303 –53.2
1700.00 .192 176.8 4.128 68.7 .131 54.1 .292 –51.8
1800.00 .193 169.1 3.914 66.0 .132 55.6 .292 –54.2
1900.00 .191 165.2 3.734 64.0 .139 51.7 .285 –55.3
2000.00 .209 161.0 3.561 61.1 .151 53.8 .281 –60.1
2100.00 .212 154.0 3.386 59.3 .154 51.9 .268 –61.0
2200.00 .219 148.1 3.242 56.7 .165 50.8 .267 –64.1
2300.00 .230 147.0 3.117 54.9 .169 49.2 .259 –63.5
2400.00 .230 141.3 2.986 53.0 .172 51.0 .240 –66.9
2500.00 .243 140.6 2.891 50.2 .186 48.5 .239 –68.9
2600.00 .254 135.8 2.790 48.6 .188 47.7 .249 –67.8
2700.00 .247 135.4 2.703 47.4 .193 47.9 .242 –73.3
2800.00 .251 132.3 2.610 44.0 .203 45.5 .237 –75.5
2900.00 .254 131.9 2.525 42.6 .207 44.0 .232 –77.9
3000.00 .269 123.9 2.435 40.5 .213 42.1 .236 –82.2
VCE = 3 V, IC = 5 mA
FREQUENCY S11 S21 S12 S22
f (MHz) MAG ANG MAG ANG MAG ANG MAG ANG
100.00 .854 –15.0 13.962 166.0 .014 83.0 .966 –9.2
200.00 .795 –29.7 13.063 152.7 .033 76.1 .917 –17.9
300.00 .724 –41.9 11.975 141.5 .046 71.1 .856 –25.0
400.00 .648 –53.1 10.690 132.1 .054 65.0 .785 –30.0
500.00 .569 –63.9 9.702 123.1 .063 62.7 .711 –34.8
600.00 .516 –72.9 8.789 116.6 .070 58.8 .656 –38.4
700.00 .457 –81.9 8.009 110.2 .078 55.8 .611 –40.8
800.00 .411 –88.9 7.240 104.7 .085 54.3 .562 –44.1
900.00 .374 –96.5 6.634 100.2 .094 55.3 .525 –45.7
1000.00 .331 –105.0 6.145 95.6 .095 52.9 .500 –46.6
1100.00 .310 –111.5 5.664 91.9 .102 53.3 .468 –48.0
1200.00 .277 –118.1 5.207 88.1 .108 50.6 .453 –50.0
1300.00 .260 –126.8 4.898 84.8 .112 51.5 .425 –51.2
1400.00 .249 –134.2 4.595 81.6 .119 52.3 .411 –52.6
1500.00 .232 –143.5 4.329 78.3 .121 50.2 .386 –54.8
1600.00 .232 –150.4 4.085 75.4 .133 48.7 .378 –55.2
1700.00 .234 –158.5 3.892 72.7 .134 46.4 .360 –57.5
1800.00 .216 –164.6 3.678 69.8 .140 47.9 .359 –58.6
1900.00 .211 –171.3 3.514 67.6 .145 45.5 .343 –60.4
2000.00 .230 –176.6 3.368 64.5 .151 46.0 .336 –63.1
2100.00 .224 174.1 3.207 62.2 .161 46.4 .319 –64.7
2200.00 .227 168.9 3.064 59.2 .166 45.9 .317 –66.7
2300.00 .229 165.3 2.942 57.3 .168 44.3 .314 –67.4
2400.00 .230 158.8 2.838 55.3 .174 44.3 .291 –68.4
2500.00 .253 156.1 2.742 52.5 .181 42.8 .290 –71.4
2600.00 .250 150.1 2.656 50.7 .184 44.0 .289 –69.8
2700.00 .248 149.2 2.558 49.0 .189 43.8 .281 –74.2
2800.00 .254 145.7 2.484 45.9 .195 40.9 .283 –77.3
2900.00 .262 143.7 2.405 44.2 .203 39.8 .276 –77.7
3000.00 .264 135.7 2.317 41.7 .208 39.4 .294 –83.9
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2SC5015
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S-PARAMETER
VCE = 3 V, IC = 3 mA
FREQUENCY S11 S21 S12 S22
f (MHz) MAG ANG MAG ANG MAG ANG MAG ANG
100.00 .908 –11.7 9.519 169.3 .020 77.7 .984 –7.3
200.00 .872 –22.9 9.147 158.9 .036 74.3 .951 –13.7
300.00 .825 –33.1 8.721 149.4 .050 68.7 .920 –19.7
400.00 .767 –42.7 8.085 141.0 .061 66.4 .866 –24.9
500.00 .701 –52.2 7.623 132.2 .073 61.0 .813 –30.0
600.00 .656 –61.0 7.104 125.7 .082 57.4 .764 –33.9
700.00 .598 –69.4 6.670 119.0 .088 54.9 .721 –37.3
800.00 .551 –76.2 6.145 113.1 .097 52.4 .671 –41.2
900.00 .494 –84.0 5.719 108.0 .101 51.7 .631 –42.9
1000.00 .458 –90.7 5.371 102.9 .111 49.3 .602 –45.0
1100.00 .422 –97.4 5.005 98.6 .117 47.6 .570 –47.0
1200.00 .388 –104.1 4.642 94.3 .118 46.3 .538 –49.4
1300.00 .356 –110.7 4.396 90.5 .124 45.3 .512 –51.3
1400.00 .341 –117.6 4.148 86.8 .129 42.6 .491 –52.7
1500.00 .318 –124.9 3.933 83.0 .135 44.0 .463 –55.2
1600.00 .305 –132.3 3.713 79.8 .140 43.7 .445 –56.4
1700.00 .291 –140.3 3.563 77.0 .141 42.0 .430 –57.1
1800.00 .282 –145.0 3.382 73.6 .149 42.2 .424 –59.1
1900.00 .269 –151.9 3.234 71.2 .149 41.8 .413 –60.7
2000.00 .277 –160.1 3.108 67.7 .155 41.4 .401 –64.2
2100.00 .262 –167.5 2.956 65.1 .162 40.4 .386 –65.3
2200.00 .255 –172.8 2.838 61.9 .169 38.9 .377 –66.8
2300.00 .260 –177.4 2.722 60.0 .169 38.1 .373 –68.2
2400.00 .249 175.5 2.635 57.5 .173 37.9 .352 –68.1
2500.00 .266 171.8 2.553 54.5 .182 38.2 .351 –71.9
2600.00 .263 164.2 2.459 52.0 .183 36.7 .347 –70.9
2700.00 .270 164.0 2.383 50.6 .192 36.7 .341 –75.1
2800.00 .272 159.9 2.323 47.5 .195 36.4 .337 –79.8
2900.00 .278 155.5 2.241 45.6 .193 34.5 .316 –78.4
3000.00 .272 150.5 2.147 42.7 .200 35.0 .324 –82.3
VCE = 3 V, IC = 1 mA
FREQUENCY S11 S21 S12 S22
f (MHz) MAG ANG MAG ANG MAG ANG MAG ANG
100.00 .973 –6.3 3.521 173.9 .015 82.1 .991 –3.5
200.00 .959 –13.5 3.484 167.3 .033 83.0 .985 –7.6
300.00 .947 –19.7 3.458 161.2 .055 79.6 .981 –11.3
400.00 .922 –26.2 3.360 155.2 .065 72.2 .962 –14.8
500.00 .898 –32.8 3.348 148.3 .084 69.4 .946 –18.9
600.00 .878 –39.1 3.287 143.3 .100 63.5 .925 –22.5
700.00 .848 –45.9 3.248 137.3 .109 60.2 .909 –25.5
800.00 .822 –51.7 3.136 131.4 .126 56.6 .875 –29.5
900.00 .772 –58.0 3.040 126.1 .134 55.0 .847 –32.4
1000.00 .752 –64.0 2.980 120.9 .150 50.0 .830 –34.6
1100.00 .708 –70.1 2.879 116.1 .158 46.1 .801 –38.1
1200.00 .676 –76.4 2.749 110.5 .163 43.5 .776 –40.7
1300.00 .644 –82.4 2.690 106.0 .172 44.1 .745 –43.5
1400.00 .617 –88.2 2.588 101.4 .176 38.2 .724 –46.8
1500.00 .579 –94.1 2.514 96.8 .181 36.3 .696 –49.2
1600.00 .559 –100.2 2.407 92.4 .186 33.2 .680 –50.2
1700.00 .536 –106.6 2.369 89.1 .188 31.7 .651 –52.6
1800.00 .509 –111.4 2.278 84.9 .191 30.5 .642 –54.9
1900.00 .490 –117.1 2.201 81.5 .192 28.4 .624 –57.0
2000.00 .478 –124.8 2.151 77.0 .195 27.2 .611 –59.7
2100.00 .442 –129.6 2.071 73.5 .198 25.4 .593 –62.2
2200.00 .423 –136.7 2.001 69.4 .201 25.8 .575 –63.7
2300.00 .429 –140.8 1.938 67.1 .203 23.5 .565 –65.5
2400.00 .401 –145.8 1.873 63.8 .202 21.3 .536 –66.3
2500.00 .406 –152.3 1.839 60.3 .204 20.3 .540 –69.0
2600.00 .388 –158.3 1.776 57.3 .201 20.6 .528 –68.7
2700.00 .400 –161.7 1.733 55.3 .204 20.6 .521 –72.7
2800.00 .385 –166.9 1.688 51.3 .203 19.0 .512 –75.5
2900.00 .389 –171.6 1.644 49.3 .201 17.8 .498 –75.6
3000.00 .368 –177.7 1.590 46.0 .209 17.2 .495 –80.4
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2SC5015
7
[MEMO]
Page 8
2
2SC5015
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, customer 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 in “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 NEC Sales Representative in advance. Anti-radioactive design is not implemented in this product.
M4 94.11
[MEMO]
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