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Silicon NPN Planar RF Transistor
Applications
Low noise small signal amplifiers up to 2 GHz. This transistor has superior noise figure and associated gain performance at UHF, VHF and microwave frequencies.
Features
D
Small feedback capacitance
D
Low noise figure
D
High transition frequency
BFP67/BFP67R/BFP67W
Vishay Telefunken
Electrostatic sensitive device.
Observe precautions for handling.
21
94 9279
13 579
43
BFP67 Marking: 67
Plastic case (SOT 143)
1 = Collector, 2 = Emitter, 3 = Base, 4 = Emitter
1
2
13 653
3
4
BFP67W Marking: W67
Plastic case (SOT 343)
1 = Collector, 2 = Emitter, 3 = Base, 4 = Emitter
13 566
21
94 9278
95 10831
43
BFP67R Marking: 67R
Plastic case (SOT 143R)
1 = Collector, 2 = Emitter, 3 = Base, 4 = Emitter
Document Number 85017
Rev. 3, 20-Jan-99
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BFP67/BFP67R/BFP67W
Vishay Telefunken
Absolute Maximum Ratings
T
= 25_C, unless otherwise specified
amb
Parameter Test Conditions Symbol Value Unit
Collector-base voltage V
Collector-emitter voltage V
Emitter-base voltage V
Collector current I
Total power dissipation T
≤ 60 °C P
amb
Junction temperature T
Storage temperature range T
CBO
CEO
EBO
C
tot
j
stg
Maximum Thermal Resistance
T
= 25_C, unless otherwise specified
amb
Parameter T est Conditions Symbol Value Unit
Junction ambient on glass fibre printed board (25 x 20 x 1.5) mm
plated with 35mm Cu
3
R
thJA
20 V
10 V
2.5 V
50 mA
200 mW
150
–65 to +150
450 K/W
°
C
°
C
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Document Number 85017
Rev. 3, 20-Jan-99
BFP67/BFP67R/BFP67W
Electrical DC Characteristics
T
= 25_C, unless otherwise specified
amb
Parameter Test Conditions Symbol Min Typ Max Unit
Collector cut-off current VCE = 20 V, VBE = 0 I
Collector-base cut-off current VCB = 15 V, IE = 0 I
Emitter-base cut-off current VEB = 1 V, IC = 0 I
Collector-emitter breakdown voltage IC = 1 mA, IB = 0 V
Collector-emitter saturation voltage IC = 50 mA, IB = 5 mA V
DC forward current transfer ratio VCE = 5 V, IC = 15 mA h
Electrical AC Characteristics
T
= 25_C, unless otherwise specified
amb
Parameter Test Conditions Symbol Min Typ Max Unit
Transition frequency VCE = 8 V, IC = 15 mA, f = 500 MHz f
Collector-base capacitance VCB = 10 V, f = 1 MHz C
Collector-emitter capacitance VCE = 8 V, f = 1 MHz C
Emitter-base capacitance VEB = 0.5 V, f = 1 MHz C
Noise figure VCE = 8 V, ZS = Z
IC = 5 mA
VCE = 8 V, ZS = Z
IC = 15 mA
VCE = 8 V, ZS = 50 W, f = 2 GHz,
I
= 5 mA
C
VCE = 8 V, ZS = 50 W, f = 2 GHz,
IC = 15 mA
Power gain VCE = 8 V, ZS = 50 W, ZL = Z
IC = 15 mA, f = 800 MHz
VCE = 8 V, ZS = 50 W, ZL = Z
I
= 15 mA, f = 2 GHz
C
Linear output voltage – two
tone intermodulation test
VCE = 8 V, IC = 15 mA, dIM = 60 dB,
f1 = 806 MHz, f2 = 810 MHz,
Z
= ZL = 50
S
W
Third order intercept point VCE = 8 V, IC = 15 mA, f = 800 MHz IP
, f = 800 MHz,
Sopt
, f = 800 MHz,
Sopt
Lopt
Lopt
F 0.8 dB
F 1.5 dB
F 2.5 dB
F 3.0 dB
,
,
G
G
V1 = V
Vishay Telefunken
CES
CBO
EBO
(BR)CEO
CEsat
FE
T
cb
ce
eb
pe
pe
2
3
10 V
0.1 0.4 V
65 100 150
7.5 GHz
0.35 pF
0.25 pF
0.85 pF
18 dB
10 dB
160 mV
26 dBm
100mA
100 nA
1
m
A
Document Number 85017
Rev. 3, 20-Jan-99
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BFP67/BFP67R/BFP67W
Vishay Telefunken
Common Emitter S–Parameters
Z0 = 50 W,T
VCE/V IC/mA f/MHz
5 5 1500 0.482 176.1 3.32 68.1 0.090 38.6 0.405 –44.7
= 25_C, unless otherwise specified
amb
S11 S21 S12 S22
LIN
MAG
100 0.923 –18.5 6.55 165.3 0.023 77.7 0.971 –7.9
300 0.828 –52.3 5.71 141.2 0.060 58.8 0.877 –19.9
500 0.721 –79.4 4.77 122.9 0.082 45.9 0.772 –27.2
800 0.622 –110.7 3.72 103.5 0.099 34.2 0.670 –33.4
1000 0.582 –127.9 3.19 93.5 0.105 29.5 0.629 –36.4
1200 0.558 –142.8 2.81 84.7 0.108 25.8 0.598 –39.3
2 1500 0.546 –163.0 2.38 72.7 0.110 21.9 0.569 –44.0
1800 0.554 179.4 2.07 61.9 0.109 20.0 0.549 –48.7
2000 0.566 169.1 1.90 55.4 0.108 19.7 0.539 –52.1
2200 0.609 159.1 1.78 48.8 0.107 20.4 0.537 –56.0
2500 0.634 147.9 1.60 40.2 0.111 20.4 0.530 –61.9
2800 0.677 138.5 1.47 32.1 0.109 21.8 0.547 –69.2
3000 0.707 133.4 1.36 24.9 0.109 22.0 0.530 –75.0
100 0.824 –28.9 14.21 158.8 0.021 73.5 0.931 –13.8
300 0.672 –77.3 10.83 128.8 0.048 52.5 0.727 –30.1
500 0.564 –109.0 8.05 110.6 0.060 43.8 0.580 –35.7
800 0.496 –139.6 5.66 93.7 0.071 39.7 0.478 –37.8
1000 0.477 –155.2 4.68 85.4 0.077 38.9 0.446 –39.2
1200 0.471 –167.9 4.03 78.2 0.082 38.7 0.425 –40.9
1800 0.502 162.1 2.83 59.0 0.098 38.8 0.391 –49.1
2000 0.526 154.2 2.59 53.3 0.103 38.7 0.386 –52.7
2200 0.565 146.0 2.41 47.5 0.109 38.8 0.383 –56.7
2500 0.596 137.7 2.14 39.9 0.118 36.7 0.374 –63.2
2800 0.642 130.3 1.96 32.5 0.125 36.2 0.385 –70.9
3000 0.669 126.2 1.81 26.3 0.128 34.8 0.369 –77.1
100 0.689 –43.7 23.32 151.2 0.019 68.4 0.872 –20.7
300 0.544 –103.8 14.92 118.0 0.037 50.7 0.575 –38.0
500 0.481 –135.0 10.12 102.0 0.047 47.7 0.432 –39.6
800 0.450 –161.2 6.77 87.8 0.058 48.9 0.357 –38.1
1000 0.446 –173.3 5.51 80.6 0.066 50.2 0.338 –38.2
1200 0.447 176.2 4.69 74.4 0.074 50.4 0.325 –39.6
10 1500 0.461 163.5 3.83 65.5 0.087 50.1 0.314 –43.5
1800 0.490 152.5 3.24 57.3 0.098 49.2 0.304 –48.4
2000 0.511 145.7 2.95 52.0 0.107 48.2 0.301 –52.4
2200 0.552 138.7 2.74 46.6 0.115 47.0 0.298 –57.2
2500 0.588 132.2 2.44 39.6 0.126 43.4 0.288 –64.4
2800 0.626 126.1 2.23 32.6 0.135 41.8 0.299 –72.9
3000 0.659 122.6 2.04 27.1 0.138 39.8 0.282 –79.8
ANG
deg deg deg deg
LIN
MAG
ANG
LIN
MAG
ANG
LIN
MAG
ANG
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Document Number 85017
Rev. 3, 20-Jan-99