NEC upa873td_cp_m16 Datasets

Page 1
DATA SHEET
NPN SILICON RF TWIN TRANSISTOR
NPN SILICON RF TRANSISTOR (WITH 2 ELEMENTS)
IN A 6-PIN LEAD-LESS MINIMOLD
FEATURES
• Built-in low phase distortion transistor suited for OSC applications fT = 4.5 GHz TYP., S
• Built-in 2 transistors (2 × 2SC5800)
• 6-pin lead-less minimold package
BUILT-IN TRANSISTORS
2
21e
= 4.0 dB TYP. @ VCE = 1 V, IC = 5 mA, f = 2 GHz
Q1, Q2
µµµµ
3-pin thin-type ultra super mini mold part No. 2SC5800
ORDERING INFORMATION
Part Number Quantity Supplying Form
µ
PA873TD 50 pcs (Non reel) • 8 mm wide embossed taping
µ
PA873TD-T3 10 kpcs/reel • Pin 1 (Q1 Collector), Pin 6 (Q1 Base) face the perforation side of the tape
Remark
To order evaluation samples, contact your nearby sales office. The unit sample quantity is 50 pcs.
Because this product uses high-frequency technology, avoid excessive static electricity, etc.
The information in this document is subject to change without notice. Before using this document, please confirm that this is the latest version.
Not all devices/types available in every country. Please check with local NEC Compound Semiconductor Devices representative for availability and additional information.
Document No. PU10151EJ01V0DS (1st edition) Date Published April 2002 CP(K) Printed in Japan
NEC Compound Semiconductor Devices 2002

Page 2
µµµµ
PA873TD
ABSOLUTE MAXIMUM RATINGS (TA = +25
Parameter Symbol Ratings Unit Collector to Base Voltage V Collector to Emitter Voltage V Emitter to Base Voltage V Collector Current I Total Power Dissipation
CBO
CEO
EBO
C
Note
tot
P
210 in 2 elements Junction Temperature T Storage Temperature T
2
Mounted on 1.08 cm
Note
× 1.0 mm (t) glass epoxy PCB
j
stg
ELECTRICAL CHARACTERISTICS (TA = +25
Parameter Symbol Test Conditions MIN. TYP. MAX. Unit Collector Cut-off Current I Emitter Cut-off Current I DC Current Gain Gain Bandwidth Product (1) f Gain Bandwidth Product (2) f Insertion Power Gain (1) Insertion Power Gain (2) Noise Figure NF
Reverse Transfer Capacitance
CBO
VCB = 5 V, IE = 0 mA
EBO
VEB = 1 V, IC = 0 mA
Note 1
FE
h
S
S
C
VCE = 1 V, IC = 5 mA 100 120 145
T
VCE = 1 V, IC = 5 mA, f = 2 GHz 3.0 4.5
T
VCE = 1 V, IC = 15 mA, f = 2 GHz 5.0 6.5
2
21e
VCE = 1 V, IC = 5 mA, f = 2 GHz 3.0 4.0
2
21e
VCE = 1 V, IC = 15 mA, f = 2 GHz 4.5 5.5
CE
= 1 V, IC = 10 mA, f = 2 GHz,
V
S
Z
= Z
Note 2
re
VCB = 0.5 V, IE = 0 mA, f = 1 MHz
C)
°°°°
9V
5.5 V
1.5 V
100 mA
190 in 1 element m W
65 to +150
−
C)
°°°°
opt
150
C
°
C
°
−−
−−
−
−
1.9 2.5 dB
0.6 0.8 pF
600 nA 600 nA
−
−
−
−
GHz GHz
dB dB
−
Notes 1.
Pulse measurement: PW ≤ 350 Collector to base capacitance when the emitter grounded
2.
hFE CLASSIFICATION
Rank FB
Marking cP
hFE Value 100 to 145
2
s, Duty Cycle ≤ 2%
µ
Data Sheet PU10151EJ01V0DS
Page 3
µµµµ
PA873TD
TYPICAL CHARACTERISTICS (Unless otherwise specified, TA = +25
TOTAL POWER DISSIPATION vs. AMBIENT TEMPERATURE
300
250
(mW)
tot
210
200
190
150
100
50
Total Power Dissipation P
Per Element
0 25 50 75 100 125 150
Mounted on Glass Epoxy PCB (1.08 cm
2 Elements in total
Ambient Temperature TA (˚C)
2
× 1.0 mm (t) )
COLLECTOR CURRENT vs.
BASE TO EMITTER VOLTAGE
100
CE
= 1 V
V
10
REVERSE TRANSFER CAPACITANCE
vs. COLLECTOR TO BASE VOLTAGE
1.0
(pF)
re
0.8
0.6
0.4
0.2
Reverse Transfer Capacitance C
0246810
COLLECTOR CURRENT vs. BASE TO EMITTER VOLTAGE
100
VCE = 2 V
10
C)
°°°°
f = 1 MHz
Collector to Base Voltage VCB (V)
(mA)
C
1
0.1
0.01
Collector Current I
0.001
0.0001
Base to Emitter Voltage VBE (V)
0.70.5 0.60.4 0.8 0.9 1.0
COLLECTOR CURRENT vs. COLLECTOR TO EMITTER VOLTAGE
60
50
(mA)
C
40
30
20
Collector Current I
10
400 A
µ
360 A
µ
320 A
µ
µ
280 A
240 A
200 A 160 A 120 A
µ
µ µ µ
80 A
µ
(mA)
C
1
0.1
0.01
Collector Current I
0.001
0.0001
Base to Emitter Voltage VBE (V)
0.70.5 0.60.4 0.8 0.9 1.0
µ
IB = 40 A
01234567
Collector to Emitter Voltage VCE (V)
Data Sheet PU10151EJ01V0DS
3
Page 4
µµµµ
PA873TD
DC CURRENT GAIN vs. COLLECTOR CURRENT
1 000
FE
100
DC Current Gain h
10
VCE = 1 V
10.1 10 100
Collector Current IC (mA)
DC CURRENT GAIN vs. COLLECTOR CURRENT
1 000
FE
100
DC Current Gain h
10
VCE = 2 V
10.1 10 100
Collector Current IC (mA)
4
Data Sheet PU10151EJ01V0DS
Page 5
µµµµ
PA873TD
GAIN BANDWIDTH PRODUCT vs. COLLECTOR CURRENT
10
VCE = 1 V f = 2 GHz
8
(GHz)
T
6
4
2
Gain Bandwidth Product f
0
1 10 100
INSERTION POWER GAIN, MAG, MSG vs. FREQUENCY
35
30 25
(dB)
2
|
21e
20
Collector Current IC (mA)
MSG
MAG
VCE = 1 V I
C
= 5 mA
GAIN BANDWIDTH PRODUCT
vs. COLLECTOR CURRENT
10
VCE = 2 V f = 2 GHz
8
(GHz)
T
6
4
2
Gain Bandwidth Product f
0
1 10 100
INSERTION POWER GAIN, MAG, MSG vs. FREQUENCY
35
30 25
(dB)
2
|
21e
20
Collector Current IC (mA)
MSG
MAG
VCE = 2 V I
C
= 5 mA
15
10
5
|S
Insertion Power Gain |S
0.1 1 10
0
Maximum Available Power Gain MAG (dB)
Maximum Stable Power Gain MSG (dB)
Frequency f (GHz)
INSERTION POWER GAIN, MAG, MSG vs. FREQUENCY
35
30 25
(dB)
2
|
21e
20
15
10
5 0
Maximum Available Power Gain MAG (dB)
Maximum Stable Power Gain MSG (dB)
Insertion Power Gain |S
0.1 1 10
MSG
|S
Frequency f (GHz)
21e
MAG
21e
15
10
2
|
Insertion Power Gain |S
5 0
Maximum Available Power Gain MAG (dB)
Maximum Stable Power Gain MSG (dB)
0.1 1 10
2
|S
21e
|
Frequency f (GHz)
INSERTION POWER GAIN, MAG, MSG vs. FREQUENCY
(dB)
2
|
21e
35
30 25
20
MSG
MAG
VCE = 1 V I
C
= 15 mA
15
10
2
|
Insertion Power Gain |S
5 0
Maximum Available Power Gain MAG (dB)
Maximum Stable Power Gain MSG (dB)
0.1 1 10
|S
21e
Frequency f (GHz)
CE
= 2 V
V
C
= 15 mA
I
2
|
Data Sheet PU10151EJ01V0DS
5
Page 6
µµµµ
PA873TD
INSERTION POWER GAIN, MAG, MSG
vs. COLLECTOR CURRENT
20
VCE = 1 V f = 1 GHz
15
(dB)
2
|
21e
10
|S
5
Insertion Power Gain |S
1 10 100
0
Maximum Available Power Gain MAG (dB)
Maximum Stable Power Gain MSG (dB)
Collector Current IC (mA)
INSERTION POWER GAIN, MAG
vs. COLLECTOR CURRENT
15
VCE = 1 V f = 2 GHz
MAG
|S
(dB)
2
|
21e
10
5
INSERTION POWER GAIN, MAG, MSG
vs. COLLECTOR CURRENT
20
V
CE
MAGMSG
= 2 V
f = 1 GHz
MAGMSG
15
(dB)
2
21e
|
2
|
21e
10
2
|S
21e
|
5
Insertion Power Gain |S
1 10 100
0
Maximum Available Power Gain MAG (dB)
Maximum Stable Power Gain MSG (dB)
Collector Current IC (mA)
INSERTION POWER GAIN, MAG
vs. COLLECTOR CURRENT
15
VCE = 2 V f = 2 GHz
MAG
10
(dB)
2
|
21e
2
|
21e
5
2
|S
21e
|
0
–5
Maximum Available Power Gain MAG (dB)
Insertion Power Gain |S
1 10 100
Collector Current IC (mA)
INSERTION POWER GAIN, MAG, MSG
vs. COLLECTOR CURRENT
15
CE
= 1 V
V f = 4 GHz
10
(dB)
2
|
21e
Insertion Power Gain |S
5
0
|S
–5
–10
Maximum Available Power Gain MAG (dB)
Maximum Stable Power Gain MSG (dB)
1 10 100
Collector Current I
21e
MSG
2
|
C
(mA)
MAG
0
–5
Maximum Available Power Gain MAG (dB)
Insertion Power Gain |S
1 10 100
Collector Current IC (mA)
INSERTION POWER GAIN, MAG, MSG
vs. COLLECTOR CURRENT
10
VCE = 2 V f = 4 GHz
(dB)
2
|
21e
Insertion Power Gain |S
5
0
|S
–5
–10
Maximum Available Power Gain MAG (dB)
Maximum Stable Power Gain MSG (dB)
1 10 100
Collector Current IC (mA)
21e
MSG
2
|
MAG
6
Data Sheet PU10151EJ01V0DS
Page 7
µµµµ
PA873TD
NOISE FIGURE, ASSOCIATED GAIN
vs. COLLECTOR CURRENT
6
VCE = 1 V
5
f = 1 GHz
G
a
4
3
2
Noise Figure NF (dB)
1
0
1 10 100
Collector Current I
NF
C
(mA)
NOISE FIGURE, ASSOCIATED GAIN
vs. COLLECTOR CURRENT
6
VCE = 1 V f = 1.5 GHz
5
G
4
a
18
15
(dB)
a
12
9
6
Associated Gain G
3
0
18
15
(dB)
a
12
NOISE FIGURE, ASSOCIATED GAIN
vs. COLLECTOR CURRENT
6
VCE = 2 V
5
f = 1 GHz
G
a
4
3
2
Noise Figure NF (dB)
1
0
1 10 100
Collector Current I
NF
C
(mA)
NOISE FIGURE, ASSOCIATED GAIN
vs. COLLECTOR CURRENT
6
VCE = 2 V f = 1.5 GHz
5
G
4
a
18
15
(dB)
a
12
9
6
Associated Gain G
3
0
18
15
(dB)
a
12
3
2
Noise Figure NF (dB)
1
0
1 10 100
Collector Current I
NF
C
(mA)
NOISE FIGURE, ASSOCIATED GAIN
vs. COLLECTOR CURRENT
6
VCE = 1 V f = 2 GHz
5
4
G
a
3
2
Noise Figure NF (dB)
1
0
1 10 100
Collector Current I
NF
C
(mA)
9
6
Associated Gain G
3
0
18
15
(dB)
a
12
9
6
Associated Gain G
3
0
3
2
Noise Figure NF (dB)
1
0
1 10 100
Collector Current I
NF
C
(mA)
NOISE FIGURE, ASSOCIATED GAIN vs. COLLECTOR CURRENT
6
VCE = 2 V f = 2 GHz
5
4
3
2
Noise Figure NF (dB)
1
0
1 10 100
Collector Current I
G
NF
a
C
(mA)
9
6
Associated Gain G
3
0
18
15
(dB)
a
12
9
6
Associated Gain G
3
0
Remark
The graphs indicate nominal characteristics.
Data Sheet PU10151EJ01V0DS
7
Page 8
S-PARAMETERS
VCE = 1 V, IC = 1 mA, ZO = 50
Frequency S
(GHz) MAG. ANG.
0.1
0.2
0.3
0.4
0.5
0.6
0.7
0.8
0.9
1.0
1.1
1.2
1.3
1.4
1.5
1.6
1.7
1.8
1.9
2.0
2.1
2.2
2.3
2.4
2.5
2.6
2.7
2.8
2.9
3.0
4.0
5.0
0.965
0.935
0.904
0.876
0.848
0.826
0.812
0.801
0.793
0.789
0.786
0.780
0.784
0.784
0.791
0.792
0.795
0.795
0.798
0.802
0.805
0.810
0.809
0.810
0.810
0.810
0.813
0.817
0.811
0.812
0.816
0.808
VCE = 1 V, IC = 3 mA, ZO = 50
Frequency S
(GHz) MAG. ANG.
0.1
0.2
0.3
0.4
0.5
0.6
0.7
0.8
0.9
1.0
1.1
1.2
1.3
1.4
1.5
1.6
1.7
1.8
1.9
2.0
2.1
2.2
2.3
2.4
2.5
2.6
2.7
2.8
2.9
3.0
4.0
5.0
0.885
0.835
0.786
0.753
0.722
0.706
0.698
0.693
0.692
0.688
0.689
0.688
0.694
0.694
0.703
0.705
0.708
0.710
0.713
0.717
0.723
0.725
0.725
0.729
0.731
0.733
0.736
0.741
0.737
0.738
0.769
0.796
11
11
Ω
(deg.)
24.1
−
46.4
−
66.0
−
83.9
−
99.0
−
111.8
−
122.4
−
131.7
−
139.5
−
146.6
−
152.5
−
157.9
−
162.3
−
166.8
−
170.3
−
173.4
−
176.4
−
179.4
−
178.0
175.4
173.3
171.1
169.0
167.0
164.8
162.9
160.6
158.7
157.0
154.7
133.9
121.8
Ω
(deg.)
35.2
−
65.4
−
88.2
−
107.2
−
121.5
−
133.1
−
142.0
−
149.6
−
155.9
−
161.5
−
165.9
−
170.1
−
173.5
−
177.0
−
179.4
−
178.2
176.0
173.8
171.8
169.9
168.4
166.8
165.0
163.4
161.7
160.2
158.4
156.9
155.5
153.3
135.3
123.5
S
MAG. ANG.
3.654
3.467
3.152
2.849
2.549
2.286
2.062
1.875
1.703
1.561
1.434
1.323
1.227
1.147
1.077
1.006
0.951
0.895
0.850
0.809
0.768
0.735
0.708
0.677
0.650
0.630
0.607
0.583
0.558
0.536
0.435
0.434
MAG. ANG.
9.632
8.466
7.146
6.038
5.142
4.463
3.918
3.488
3.124
2.836
2.585
2.374
2.197
2.044
1.912
1.794
1.692
1.597
1.515
1.441
1.375
1.318
1.274
1.219
1.175
1.136
1.100
1.057
1.020
0.975
0.730
0.577
21
(deg.)
164.3
149.7
137.5
125.4
115.8
107.5
100.2
93.3
87.5
82.0
77.0
72.2
68.4
64.2
60.7
57.4
54.2
51.1
48.8
45.9
43.8
41.2
39.7
38.1
36.5
35.5
34.2
33.0
32.5
31.5
25.9
22.1
S
21
(deg.)
157.9
139.8
126.3
114.9
106.5
99.6
93.8
88.4
84.1
79.7
76.0
72.2
69.1
66.0
63.0
60.0
57.3
54.6
52.3
49.8
47.6
45.0
43.2
41.5
39.4
37.8
36.0
34.3
32.9
31.0
15.3
7.2
S
MAG. ANG.
0.035
0.068
0.091
0.109
0.120
0.126
0.128
0.128
0.126
0.123
0.117
0.112
0.105
0.099
0.092
0.085
0.079
0.072
0.067
0.065
0.063
0.065
0.070
0.077
0.086
0.096
0.108
0.120
0.134
0.148
0.294
0.396
MAG. ANG.
0.035
0.060
0.075
0.083
0.088
0.090
0.091
0.091
0.090
0.090
0.088
0.087
0.086
0.085
0.086
0.086
0.087
0.089
0.091
0.095
0.099
0.105
0.110
0.118
0.125
0.133
0.142
0.151
0.161
0.172
0.286
0.381
12
(deg.)
77.0
63.9
52.8
43.5
35.6
29.4
24.0
19.7
16.0
13.1
10.9
9.3
8.3
8.1
9.0
10.6
13.6
18.2
24.7
32.5
41.4
50.5
58.7
65.6
71.0
74.9
77.3
78.7
79.1
79.1
67.7
42.5
S
12
(deg.)
72.0
56.9
45.9
38.6
33.6
30.4
28.3
27.3
26.7
27.1
28.1
29.5
31.3
33.7
36.8
39.6
43.0
46.6
50.1
53.4
56.6
59.3
61.8
63.8
65.6
67.1
68.0
68.6
68.6
68.7
62.1
41.4
µµµµ
PA873TD
S
MAG. ANG.
0.985
0.947
0.901
0.850
0.807
0.768
0.740
0.715
0.696
0.679
0.669
0.662
0.656
0.650
0.649
0.646
0.648
0.647
0.647
0.648
0.648
0.649
0.648
0.648
0.651
0.654
0.654
0.660
0.661
0.655
0.679
0.634
MAG. ANG.
0.949
0.843
0.738
0.649
0.584
0.535
0.499
0.470
0.449
0.432
0.421
0.413
0.408
0.404
0.403
0.402
0.403
0.403
0.404
0.405
0.407
0.409
0.412
0.414
0.418
0.421
0.427
0.433
0.438
0.440
0.509
0.526
22
(deg.)
−
13.4
−
18.9
−
23.4
−
27.0
−
30.3
−
33.3
−
36.3
−
39.3
−
42.7
−
45.9
−
49.2
−
52.7
−
56.2
−
59.8
−
63.3
−
66.9
−
70.5
−
74.0
−
77.6
−
81.2
−
84.9
−
88.6
−
92.5
−
96.5
−
100.6
−
104.5
−
108.2
−
111.8
−
115.8
−
153.2
−
166.5
S
22
(deg.)
13.6
−
24.6
−
31.8
−
36.5
−
39.5
−
41.9
−
44.1
−
46.3
−
48.6
−
51.3
−
54.1
−
56.8
−
59.9
−
63.0
−
66.2
−
69.4
−
72.6
−
75.8
−
78.9
−
82.3
−
85.7
−
89.1
−
92.5
−
96.1
−
99.8
−
103.6
−
107.4
−
110.9
−
114.5
−
118.2
−
153.5
−
167.1
6.8
8
Data Sheet PU10151EJ01V0DS
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