HITACHI 2SC5594

2SC5594
Silicon NPN Epitaxial
High Frequency Low Noise Amplifier
ADE-208-798 (Z)
1st. Edition
Nov. 2000
Features
• High gain bandwidth product
fT = 24 GHz typ.
• High power gain and low noise figure ;
PG = 18 dB typ. , NF = 1.2 dB typ. at f = 1.8 GHz
Outline
CMPAK-4
2
3
1
4
Note: Marking is “XP-”.
1. Emitter
2. Collector
3. Emitter
4. Base
2SC5594
Absolute Maximum Ratings (Ta = 25°C)
Item
Symbol
Ratings
Unit
Collector to base voltage
VCBO
12
V
Collector to emitter voltage
VCEO
4.5
V
Emitter to base voltage
VEBO
0.8
V
Collector current
IC
35
mA
Collector power dissipation
Pc
100
mW
Junction temperature
Tj
150
°C
Storage temperature
Tstg
–55 to +150
°C
Electrical Characteristics (Ta = 25°C)
Item
Symbol
Min
Typ
Max
Unit
Test Conditions
Collector to base breakdown
voltage
V(BR)CBO
12
—
—
V
I C = 10 µA , IE = 0
Collector cutoff current
I CBO
—
—
1
µA
VCB = 10 V , IE = 0
Collector cutoff current
I CEO
—
—
1
µA
VCE = 4 V , RBE = ∞
Emitter cutoff current
I EBO
—
—
12
µA
VEB = 0.8 V , IC = 0
DC current transfer ratio
hFE
60
100
140
V
VCE = 2 V , IC = 20 mA
Collector output capacitance
Cob
—
0.3
0.6
pF
VCB = 2 V , IE = 0
f = 1 MHz
Gain bandwidth product
fT
21
24
—
GHz
VCE = 2 V , IC = 30 mA
f = 2 GHz
Power gain
PG
14
18
—
dB
VCE = 2 V, IC = 30 mA
f = 1.8 GHz
Noise figure
NF
—
1.2
1.6
dB
VCE = 2 V, IC = 5 mA
f = 1.8 GHz
2
2SC5594
Main Characteristics
DC Current Transfer Ratio vs.
Collector Current
200
hFE
200
DC Current Transfer Ratio
150
100
50
0
50
0
100
150
(pF)
Ambient Temperature
200
1
IE = 0
f = 1MHz
0.8
5
10
Collector Current
Ta (°C)
Collector Output Capacitance vs.
Collector to Base Voltage
1.0
2
20
50
100
I C (mA)
Gain Bandwidth Product vs.
Collector Current
50
40
0.6
Gain Bandwidth Product
Collector Output Capacitance
fT
Cob
VCE = 3 V
2V
1V
100
(GHz)
Collector Power Dissipation
Pc (mW)
Maximum Collector Dissipation Curve
0.4
0.2
0
0.1
0.2
0.5
1
2
Collector to Base Voltage
5
VCB (V)
10
VCE = 3 V
2V
1V
30
20
10
0
1
2
5
10
Collector Current
20
50
100
IC (mA)
3
2SC5594
Power Gain vs. Collector Current
Noise Figure vs. Collector Current
20
5
VCE = 3 V
2V
VCE = 1 to 3 V
1V
12
Noise Figure
Power Gain
PG (dB)
16
NF (dB)
f = 1.8GHz
8
4
0
1
f = 1.8GHz
4
3
2
1
0
2
5
10
20
Collector Current
50
100
1
2
5
10
Collector Current
I C (mA)
20
50
IC
(mA)
100
S21 Parameter vs. Collector Current
20
16
VCE = 3 V
2V
1V
S 21 Parameter
2
|S 21| (dB)
f = 2GHz
12
8
4
0
1
2
5
10
Collector Current
20
50
100
I C (mA)
4
2SC5594
S21 Parameter 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
−3
−.4
−30°
−150°
−2
−.6
−.8
−1
−60°
−120°
−1.5
−90°
Condition ; V CE = 2 V , I C = 20 mA
Condition ; V CE = 2 V , I C = 20 mA
100 to 2000 MHz (100 MHz step)
100 to 2000 MHz (100 MHz step)
S12 Parameter vs. Frequency
S22 Parameter vs. Frequency
90°
Scale: 0.02 / 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
−120°
−60°
−90°
Condition ; V CE = 2 V , I C = 20 mA
100 to 2000 MHz (100 MHz step)
−2
−.6
−.8
−1
−1.5
Condition ; V CE = 2 V , I C = 20 mA
100 to 2000 MHz (100 MHz step)
5
2SC5594
Sparameter ( VCE = 2 V, IC = 20 mA, Zo = 50 Ω)
S11
S21
S12
S22
f (MHz) MAG
ANG
MAG
ANG
MAG
ANG
MAG
ANG
100
0.577
–24.5
40.31
164.2
0.00674
82.9
0.963
–11.5
200
0.560
–49.8
36.64
149.3
0.0130
74.5
0.897
–23.7
300
0.541
–72.2
32.05
136.3
0.0182
68.8
0.803
–34.4
400
0.504
–90.2
27.56
126.5
0.0225
63.6
0.708
–42.4
500
0.495
–104.5
23.84
118.8
0.0256
61.3
0.622
–48.4
600
0.477
–116.9
20.64
113.1
0.0285
58.9
0.548
–53.1
700
0.458
–126.4
18.11
108.4
0.0311
57.7
0.487
–56.2
800
0.456
–134.5
16.13
105.1
0.0336
57.3
0.437
–58.7
900
0.448
–142.5
14.46
101.6
0.0355
57.8
0.394
–60.4
1000
0.435
–147.9
13.15
99.2
0.0382
56.8
0.360
–61.9
1100
0.438
–153.6
12.01
96.6
0.0399
57.4
0.331
–63.0
1200
0.430
–158.5
11.06
94.4
0.0422
57.0
0.306
–63.3
1300
0.425
–162.6
10.24
93.0
0.0443
58.1
0.288
–63.5
1400
0.426
–166.9
9.56
91.1
0.0462
58.3
0.269
–64.0
1500
0.424
–171.1
8.99
89.6
0.0488
58.3
0.253
–64.1
1600
0.425
–174.1
8.45
88.0
0.0508
58.5
0.241
–64.1
1700
0.428
–177.4
7.98
86.6
0.0527
58.8
0.230
–64.0
1800
0.424
179.7
7.59
85.0
0.0556
58.8
0.220
–64.0
1900
0.426
176.6
7.19
83.8
0.0578
59.0
0.212
–63.9
2000
0.428
174.7
6.84
82.4
0.0595
58.8
0.204
–63.7
6
2SC5594
Package Dimensions
As of January, 2001
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)
CMPAK-4(T)
—
Conforms
0.006 g
7
2SC5594
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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:
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Copyright  Hitachi, Ltd., 2000. All rights reserved. Printed in Japan.
Colophon 2.0
8