HITACHI 2SC5759

2SC5759
Silicon NPN Epitaxial
UHF / VHF wide band amplifier
ADE-208-1389 (Z)
Preliminary 1st. Edition
Mar. 2001
Features
• High gain bandwidth product
fT = 10.6 GHz typ.
• High power gain and low noise figure ;
PG = 11.5B typ. , NF = 1.1 dB typ. at f = 900 MHz
• Very low distortion
Output IP3 (800 MHz) = 36 dBm typ.
Outline
CMPAK-4
2
3
1
4
1. Collector
2. Collector
3. Base
4. Emitter
Note: Marking is “WN-”.
This data sheet contains tentative specification for new product development. It may partially be subject to
change without notice.
2SC5759
Absolute Maximum Ratings (Ta = 25°C)
Item
Symbol
Ratings
Unit
Collector to base voltage
VCBO
15
V
Collector to emitter voltage
VCEO
6
V
Emitter to base voltage
VEBO
1.5
V
Collector current
IC
80
mA
Collector power dissipation
Pc
200*
mW
Junction temperature
Tj
150
°C
Storage temperature
Tstg
–55 to +150
°C
* When using aluminium ceramic board (12.5 x 20 x 0.7 mm)
Electrical Characteristics (Ta = 25°C)
Item
Symbol
Min
Typ
Max
Unit
Test Conditions
Collector to base breakdown
V(BR)CBO
15
—
—
V
I C = 10 µA, I E = 0
Collector cutoff current
I CBO
—
—
1
µA
VCB = 12 V, IE = 0
Collector cutoff current
I CEO
—
—
1
mA
VCE = 6 V, RBE = ∞
Emitter cutoff current
I EBO
—
—
10
µA
VEB = 1.5 V, IC = 0
DC current transfer ratio
hFE
80
120
160
V
VCE = 5 V, IC = 50 mA
Collector output capacitance
Cob
—
1.2
2.2
pF
VCB = 5 V, IE = 0
f = 1 MHz
Gain bandwidth product
fT
8
10.6
—
GHz
VCE = 5 V, IC = 50 mA
f = 1 GHz
Power gain
PG
7
11.5
—
dB
VCE = 5 V, IC = 50 mA
f = 900 MHz
Noise figure
NF
—
1.1
1.9
dB
VCE = 5 V, IC = 5 mA
f = 900 MHz
S21 parameter
|S21|2
—
10.3
—
dB
VCE = 5 V, IC = 50 mA
f = 1 GHz
Output IP3
OIP3
—
36
—
dBm
VCE = 5 V, IC = 50 mA
f = 800 MHz
voltage
2
2SC5759
Main Characteristics
DC Current Transfet Ratio vs.
Collector Current
200
400
DC Current Transfer Ratio
300
200
100
100
150
Ambient Temperature
(pF)
VCE = 5 V
100
3V
0
50
0
200
1
10
20
50
IC
(mA)
100
Gain Bandwidth Product vs.
Collector Current
20
IE = 0
f = 1 MHz
3.2
5
Collector Current
Ta (°C)
Collector Output Capacitance vs.
Collector to Base Voltage
4.0
2
16
Gain Bandwidth Prodfuct
Collector Output Capacitance
fT
Cob
hFE
*when using aluminum ceramic board
(12.5 x 20 x 0.7 mm)
(GHz)
Collector Power Dissipation
Pc* (mW)
Collector Power Dissipation Curve
2.4
1.6
0.8
0
0.1
0.2
0.5
1
2
Collector to Base Voltage
5
10
VCB (V)
12
VCE = 5 V
8
3V
4
0
1
2
5
10
Collector Current
20
50
IC
(mA)
100
3
2SC5759
Power Gain vs. Collector Current
Noise Figure vs. Collector Current
20
5
f = 900 MHz
f = 900 MHz
NF (dB)
(dB)
16
8
Noise Figure
PG
Power Gain
VCE = 5 V
12
3V
4
0
1
5
10
20
IC
50
100
f = 1 GHz
16
2
|S21| (dB)
VCE = 3 V
2
5V
1
12
VCE = 5 V
8
3V
4
0
1
2
5
10
Collector Current
20
IC
50
(mA)
1
2
5
10
Collector Current
(mA)
S 21 Parameter vs. Collector Current
20
S 21 Parameter
3
0
2
Collector Current
4
4
100
20
50
IC
(mA)
100
2SC5759
S21 Paramter vs. Frequency
S11 Parameter vs. Frequency
.8
1
.6
90°
1.5
Scale: 10 / div.
60°
120°
2
.4
3
30°
150°
4
5
.2
10
.2
0
.4
.6 .8 1
1.5 2
3 45
10
180°
0°
-10
-5
-4
-.2
-.4
-30°
-150°
-3
-2
-.6
-.8
-1
-60°
-120°
-1.5
-90°
Condition : VCE = 3 V, Zo = 50 Ω
100 to 2000 MHz (100 MHz Step)
:IC = 50 mA
:IC = 30 mA
:IC = 10 mA
Condition : VCE = 3 V, Zo = 50 Ω
S12 Parameter vs. Frequency
S22 Parameter vs. Frequency
90°
100 to 2000 MHz (100 MHz Step)
:IC = 50 mA
:IC = 30 mA
:IC = 10 mA
Scale: 0.08 / div.
.8
60°
120°
1
.6
1.5
2
.4
3
30°
150°
4
5
.2
10
180°
0°
.2
0
.4
.6 .8 1
1.5 2
3 45
10
-10
-5
-4
-.2
-30°
-150°
-3
-.4
-60°
-120°
-90°
Condition : VCE = 3 V, Zo = 50 Ω
100 to 2000 MHz (100 MHz Step)
:IC = 50 mA
:IC = 30 mA
:IC = 10 mA
-2
-.6
-.8
-1
-1.5
Condition : VCE = 3 V, Zo = 50 Ω
100 to 2000 MHz (100 MHz Step)
:IC = 50 mA
:IC = 30 mA
:IC = 10 mA
5
2SC5759
S21 Paramter vs. Frequency
S11 Parameter vs. Frequency
.8
1
.6
90°
1.5
Scale: 10 / div.
60°
120°
2
.4
3
30°
150°
4
5
.2
10
.2
0
.4
.6 .8 1
1.5 2
3 45
10
180°
0°
-10
-5
-4
-.2
-.4
-30°
-150°
-3
-2
-.6
-.8
-1
-90°
Condition : VCE = 5 V, Zo = 50 Ω
100 to 2000 MHz (100 MHz Step)
:IC = 50 mA
:IC = 30 mA
Condition : VCE = 5 V, Zo = 50 Ω
100 to 2000 MHz (100 MHz Step)
:IC = 50 mA
:IC = 30 mA
S12 Parameter vs. Frequency
90°
S22 Parameter vs. Frequency
Scale: 0.1 / div.
.8
60°
120°
-60°
-120°
-1.5
1
.6
1.5
2
.4
3
30°
150°
4
5
.2
10
180°
0°
.2
0
.4
.6 .8 1
1.5 2
3 45
10
-10
-5
-4
-.2
-30°
-150°
-3
-.4
-60°
-120°
-90°
Condition : VCE = 5 V, Zo = 50 Ω
100 to 2000 MHz (100 MHz Step)
:IC = 50 mA
:IC = 30 mA
6
-2
-.6
-.8
-1
-1.5
Condition : VCE = 5 V, Zo = 50 Ω
100 to 2000 MHz (100 MHz Step)
:IC = 50 mA
:IC = 30 mA
2SC5759
Sparameter ( VCE = 3V, IC = 10 mA, Zo = 50 Ω )
S11
S21
S12
S22
f (MHz) MAG
ANG
MAG
ANG
MAG
ANG
MAG
ANG
100
0.598953
-67.2683
20.92746
134.7901
0.039212
63.46611
0.719763
-43.3095
200
0.449769
-108.857
13.05294
112.4581
0.058681
58.49998
0.458795
-63.3063
300
0.388073
-132.646
8.987253
101.2855
0.075599
60.50255
0.330162
-72.4292
400
0.356355
-149.324
6.828566
94.61819
0.092309
63.10033
0.265712
-77.6853
500
0.348875
-161.568
5.498522
89.24696
0.109448
65.2607
0.228792
-81.4373
600
0.340977
-170.581
4.604677
85.10618
0.127493
66.40792
0.205705
-84.9379
700
0.342148
-177.833
3.974175
81.58567
0.145746
67.21887
0.191576
-88.067
800
0.33248
175.9498
3.500114
78.02541
0.164155
67.89103
0.182352
-91.1939
900
0.334331
169.7497
3.11258
74.99636
0.183985
67.58355
0.177252
-94.4435
1000
0.330628
165.1672
2.820245
72.26931
0.201166
67.91171
0.173922
-96.8831
1100
0.327731
159.5991
2.584965
69.77995
0.221741
67.41957
0.174419
-99.1591
1200
0.32824
156.1327
2.394378
66.9368
0.237924
67.01805
0.175074
-102.059
1300
0.323009
151.3053
2.235558
64.80204
0.260564
66.88975
0.17803
-104.603
1400
0.327822
145.9897
2.088352
62.49431
0.277632
65.52528
0.180789
-107.237
1500
0.322151
143.2707
1.9734
60.14742
0.29472
65.81161
0.183993
-109.557
1600
0.319738
137.253
1.864493
58.29125
0.316599
63.86349
0.189455
-111.969
1700
0.323893
135.0458
1.768547
56.31213
0.329909
63.77271
0.192733
-114.077
1800
0.313012
130.7687
1.692055
54.13005
0.35645
63.28138
0.198951
-116.009
1900
0.314083
127.2073
1.619106
52.49423
0.367684
61.18535
0.202498
-118.969
2000
0.30788
123.7846
1.559941
50.96312
0.393103
61.76477
0.209282
-120.291
7
2SC5759
Sparameter ( VCE = 3V, IC = 30 mA, Zo = 50 Ω )
S11
S21
S12
S22
f (MHz) MAG
ANG
MAG
ANG
MAG
ANG
MAG
ANG
100
0.359231
-108.561
28.86756
117.4007
0.027653
66.54531
0.478909
-65.4568
200
0.315388
-146.251
15.25267
100.9862
0.047239
71.05222
0.267151
-85.3741
300
0.304156
-162.6
10.08288
93.68728
0.068526
74.04803
0.191803
-95.895
400
0.300526
-174.017
7.542839
89.14133
0.08998
74.6652
0.15921
-103.256
500
0.302516
177.5775
6.023624
85.33413
0.111099
75.05667
0.142393
-109.009
600
0.301428
171.7108
5.030207
81.99574
0.132665
74.89602
0.133925
-114.062
700
0.302757
166.6837
4.312375
79.01769
0.154095
73.90613
0.129926
-118.281
800
0.298831
161.2968
3.791308
76.41924
0.17525
73.59343
0.128127
-121.621
900
0.30327
156.2363
3.3637
73.82754
0.197386
72.11131
0.128473
-124.857
1000
0.296877
152.546
3.048492
71.39383
0.216536
71.49931
0.128796
-126.942
1100
0.294338
147.6174
2.792653
69.14086
0.239869
70.35476
0.131288
-128.797
1200
0.297847
144.8029
2.58095
66.92132
0.257675
69.11534
0.135362
-130.761
1300
0.290491
141.4854
2.415847
65.03156
0.282017
68.2458
0.13954
-132.324
1400
0.285987
136.5209
2.251857
62.99602
0.298985
66.4113
0.143959
-134.445
1500
0.285668
133.2577
2.121921
61.01823
0.317593
66.06546
0.147511
-135.948
1600
0.28952
129.3946
2.00549
59.10592
0.339989
63.80411
0.15306
-137.276
1700
0.289058
126.8596
1.901102
57.2283
0.353944
63.45042
0.156247
-138.751
1800
0.276366
122.635
1.820812
55.43738
0.380628
62.56796
0.161772
-139.638
1900
0.279275
119.5554
1.738412
53.98105
0.390934
60.15776
0.165972
-141.606
2000
0.27422
116.508
1.673569
52.18349
0.416956
60.34276
0.171575
-141.755
8
2SC5759
Sparameter ( VCE = 3V, IC = 50 mA, Zo = 50 Ω )
S11
S21
S12
S22
f (MHz) MAG
ANG
MAG
ANG
MAG
ANG
MAG
ANG
100
0.30578
-130.338
30.47948
112.1628
0.024997
70.70717
0.396577
-73.9423
200
0.301596
-158.898
15.55864
98.07695
0.045769
75.63829
0.219336
-94.8247
300
0.29477
-170.772
10.21329
91.92603
0.068518
77.18159
0.162953
-106.377
400
0.295209
179.0227
7.620648
87.65349
0.090742
77.64937
0.139738
-115.16
500
0.30235
172.1684
6.085737
84.25556
0.112614
77.15289
0.128805
-121.16
600
0.299513
167.2651
5.076454
81.17507
0.13495
76.63391
0.124214
-125.862
700
0.305759
162.7894
4.356069
78.41549
0.156917
75.28605
0.12291
-129.903
800
0.301849
158.8704
3.822645
76.12218
0.178985
74.56688
0.123402
-133.043
900
0.302874
153.4117
3.400883
73.57437
0.201763
72.81619
0.125205
-135.757
1000
0.300956
150.0058
3.074232
71.05568
0.221428
72.36415
0.126461
-137.863
1100
0.296478
145.5456
2.812228
68.96803
0.244918
71.06102
0.129763
-138.837
1200
0.293811
142.9462
2.605872
66.89516
0.263254
69.8099
0.133781
-140.585
1300
0.295225
138.196
2.433414
64.91973
0.287446
68.57248
0.138231
-141.673
1400
0.291037
134.094
2.268564
62.9896
0.305017
66.55263
0.142585
-143.281
1500
0.283634
131.4221
2.141007
60.82483
0.324297
66.30193
0.146111
-144.381
1600
0.290887
126.4386
2.020216
59.00477
0.346817
63.88139
0.151454
-145.383
1700
0.288334
125.0576
1.922426
57.51582
0.360229
63.34487
0.154564
-146.733
1800
0.276435
121.8631
1.834797
55.47205
0.387345
62.37906
0.160068
-147.097
1900
0.281741
117.7072
1.761456
54.04735
0.397927
59.95753
0.163455
-148.56
2000
0.27394
114.1901
1.688011
52.38011
0.423763
60.11156
0.168173
-149.024
9
2SC5759
Sparameter ( VCE = 5V, IC = 30 mA, Zo = 50 Ω )
S11
S21
S12
S22
f (MHz) MAG
ANG
MAG
ANG
MAG
ANG
MAG
ANG
100
0.35261
-97.797
30.1558
119.4705
0.026211
67.56679
0.50466
-57.1508
200
0.284026
-137.005
16.15995
102.3153
0.044514
71.48276
0.28511
-71.5641
300
0.264329
-156.652
10.70127
94.81076
0.06455
74.27343
0.203018
-77.1744
400
0.260622
-169.949
8.026367
89.98606
0.084597
75.2212
0.165988
-80.6117
500
0.260912
-178.593
6.418046
86.21579
0.104522
75.69292
0.146109
-83.56
600
0.259799
174.4016
5.362778
82.9316
0.125266
75.53591
0.135196
-86.8135
700
0.262359
168.86
4.603929
80.06665
0.145513
74.85186
0.128938
-89.7288
800
0.260092
162.9529
4.034037
77.60057
0.165743
74.54804
0.125989
-92.6482
900
0.259462
159.6904
3.593629
74.82135
0.187002
73.30099
0.125922
-95.8456
1000
0.257411
154.0554
3.241017
72.43858
0.205252
72.93235
0.125284
-98.718
1100
0.257056
149.2637
2.964427
70.27048
0.227226
71.57358
0.128706
-100.689
1200
0.25457
145.5193
2.747441
68.27233
0.243996
70.62059
0.130872
-103.708
1300
0.253065
141.7591
2.556911
66.36358
0.267317
69.82521
0.135485
-106.051
1400
0.248145
136.0751
2.386639
64.22393
0.284728
67.97394
0.139611
-108.876
1500
0.252811
134.4743
2.256663
62.06816
0.302113
68.06532
0.143449
-111.062
1600
0.250609
129.9291
2.124319
60.37457
0.324516
65.6789
0.14922
-113.245
1700
0.24973
127.2855
2.009943
58.56598
0.337768
65.34525
0.153483
-115.438
1800
0.244338
121.6419
1.922925
56.97171
0.364939
64.61247
0.159803
-116.963
1900
0.246673
119.0956
1.835373
55.08806
0.374859
62.29382
0.163968
-119.448
2000
0.23931
115.5349
1.764527
53.69533
0.399835
62.61938
0.170396
-120.448
10
2SC5759
Sparameter ( VCE = 5V, IC = 50 mA, Zo = 50 Ω )
S11
S21
S12
S22
f (MHz) MAG
ANG
MAG
ANG
MAG
ANG
MAG
ANG
100
0.291758
-115.597
31.98084
114.5201
0.024191
70.60357
0.425493
-63.3881
200
0.262506
-150.118
16.53687
99.44897
0.04295
74.98991
0.232621
-76.9533
300
0.25264
-166.485
10.89096
92.90653
0.064176
77.17974
0.167481
-82.864
400
0.249821
-176.107
8.132018
88.5446
0.085356
77.60479
0.138502
-86.8928
500
0.254165
175.0164
6.495179
85.12476
0.10605
77.60152
0.123129
-90.3532
600
0.256297
169.3437
5.413083
82.03326
0.127348
77.04694
0.115926
-93.817
700
0.255695
164.005
4.640691
79.45089
0.147866
76.10572
0.112281
-97.5277
800
0.251251
159.448
4.077449
76.77794
0.168499
75.58247
0.111355
-100.599
900
0.251896
154.6364
3.62249
74.32644
0.190533
73.82486
0.112178
-104.146
1000
0.253678
150.7514
3.270479
72.24742
0.209036
73.43816
0.112983
-106.791
1100
0.253604
146.3047
2.986835
70.10613
0.231346
72.07415
0.116835
-108.399
1200
0.255931
143.0495
2.770664
67.9089
0.248816
70.87114
0.12054
-111.202
1300
0.249083
138.7155
2.582541
65.95254
0.272736
70.05552
0.125567
-113.093
1400
0.251106
133.7603
2.405897
64.19683
0.289699
68.14367
0.130005
-115.769
1500
0.244701
131.4558
2.264443
62.01345
0.307831
67.81096
0.13398
-117.527
1600
0.252523
126.757
2.139887
60.27316
0.329813
65.50997
0.140568
-120.082
1700
0.251786
124.3368
2.029969
58.68525
0.343309
65.15033
0.144548
-121.79
1800
0.241853
119.8372
1.940752
56.83018
0.370002
64.14401
0.150337
-123.128
1900
0.243659
116.5939
1.852048
55.27976
0.380153
61.90951
0.155224
-125.27
2000
0.240854
113.4264
1.778118
53.57773
0.40562
62.03617
0.161501
-126.3
11
2SC5759
Package Dimensions
Unit: mm
0.1
0.3 +– 0.05
0.2
0.65 0.6
1.25 ± 0.2
0.9 ± 0.1
0.1
0.4 +– 0.05
0 – 0.1
0.425
0.1
0.3 +– 0.05
+ 0.1
0.16– 0.06
2.1 ± 0.3
0.65 0.65
1.25 ± 0.1
0.1
0.3 +– 0.05
0.425
2.0 ± 0.2
1.3 ± 0.2
Hitachi Code
JEDEC
EIAJ
Mass (reference value)
12
CMPAK-4(T)
—
Conforms
0.006 g
2SC5759
Cautions
1. Hitachi neither warrants nor grants licenses of any rights of Hitachi’s or any third party’s patent,
copyright, trademark, or other intellectual property rights for information contained in this document.
Hitachi bears no responsibility for problems that may arise with third party’s rights, including
intellectual property rights, in connection with use of the information contained in this document.
2. Products and product specifications may be subject to change without notice. Confirm that you have
received the latest product standards or specifications before final design, purchase or use.
3. Hitachi makes every attempt to ensure that its products are of high quality and reliability. However,
contact Hitachi’s sales office before using the product in an application that demands especially high
quality and reliability or where its failure or malfunction may directly threaten human life or cause risk
of bodily injury, such as aerospace, aeronautics, nuclear power, combustion control, transportation,
traffic, safety equipment or medical equipment for life support.
4. Design your application so that the product is used within the ranges guaranteed by Hitachi particularly
for maximum rating, operating supply voltage range, heat radiation characteristics, installation
conditions and other characteristics. Hitachi bears no responsibility for failure or damage when used
beyond the guaranteed ranges. Even within the guaranteed ranges, consider normally foreseeable
failure rates or failure modes in semiconductor devices and employ systemic measures such as failsafes, so that the equipment incorporating Hitachi product does not cause bodily injury, fire or other
consequential damage due to operation of the Hitachi product.
5. This product is not designed to be radiation resistant.
6. No one is permitted to reproduce or duplicate, in any form, the whole or part of this document without
written approval from Hitachi.
7. Contact Hitachi’s sales office for any questions regarding this document or Hitachi semiconductor
products.
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Copyright © Hitachi, Ltd., 2001. All rights reserved. Printed in Japan.
Colophon 3.0
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