MSA-0611-TR2G [AVAGO]
0MHz - 700MHz RF/MICROWAVE WIDE BAND LOW POWER AMPLIFIER, LEAD FREE, PLASTIC, SOT-143, 4 PIN;![MSA-0611-TR2G](http://pdffile.icpdf.com/pdf2/p00239/img/icpdf/MSA-0611-TR2_1445275_icpdf.jpg)
型号: | MSA-0611-TR2G |
厂家: | ![]() |
描述: | 0MHz - 700MHz RF/MICROWAVE WIDE BAND LOW POWER AMPLIFIER, LEAD FREE, PLASTIC, SOT-143, 4 PIN 放大器 射频 微波 功率放大器 |
文件: | 总4页 (文件大小:140K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
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MSA-0611
Cascadable Silicon Bipolar MMIC Amplifier
Data Sheet
Description
Features
• Cascadable 50Ω Gain Block
The MSA-0611 is a low cost silicon bipolar Monolithic Mi-
crowave Integrated Circuit (MMIC) housed in the surface
mount plastic SOT-143 package. This MMIC is designed
for use as a general purpose 50Ω gain block. Typical ap-
plications include narrow and broad band IF and RF am-
plifiers in commercial and industrial applications.
• 3 dB Bandwidth: DC to 0.7 GHz
• High Gain: 18.0 dB Typical at 0.5 GHz
• Low Noise Figure: 3.0 dB Typical at 0.5 GHz
• Low Cost Surface Mount Plastic Package
• Tape-and-Reel Packaging Option Available
• Lead-free Option Available
The MSA-series is fabricated using Avago’s 10 GHz
f , 25 GHz f
T
, silicon bipolar MMIC process which
MAX
uses nitride self-alignment, ion implantation, and
gold metallization to achieve excellent performance,
uniformity and reliability. The use of an external bias re-
sistor for temperature and current stability also allows
bias flexibility.
SOT-143 Package
Typical Biasing Configuration
R
bias
VCC > 5 V
RFC (Optional)
C
C
block
block
Pin Connections and Package Marking
IN
MSA
OUT
V
= 3.3 V
d
A06x
Notes:
Top View. Package Marking provides orientation and identification.
"x" is the date code.
MSA-0611 Absolute Maximum Ratings
Parameter
[2]
[1]
Thermal Resistance :
= 505°C/W
Absolute Maximum
40 mA
θ
jc
Device Current
[2,3]
Notes:
Power Dissipation
125 mW
1. Permanent damage may occur if any
of these limits are exceeded.
2. TCASE = 25°C.
RF Input Power
+13 dBm
150°C
Junction Temperature
Storage Temperature
3. Derate at 2.0 mW/°C for TC > 87°C.
–65 to 150°C
[1]
Electrical Specifications , T = 25°C
A
Symbol
Parameters and Test Conditions: Id = 16 mA, ZO = 50 Ω
Units
Min.
Typ.
Max.
GP
Power Gain (|S21|2)
f = 0.1 GHz
f = 0.5 GHz
dB
19.5
18.0
16.0
∆GP
Gain Flatness
f = 0.1 to 0.5 GHz
dB
0.8
0.7
f3 dB
3 dB Bandwidth
GHz
Input VSWR
f = 0.1 to 1.5 GHz
f = 0.1 to 1.5 GHz
f = 0.5 GHz
1.6:1
1.5:1
3.0
VSWR
Output VSWR
NF
50 Ω Noise Figure
dB
dBm
dBm
psec
V
P1 dB
IP3
Output Power at 1 dB Gain Compression
Third Order Intercept Point
Group Delay
f = 0.5 GHz
2.0
f = 0.5 GHz
14.0
225
3.3
tD
f = 0.5 GHz
Vd
Device Voltage
TC = 25°C
2.6
4.0
dV/dT
Device Voltage Temperature Coefficient
mV/°C
–8.0
Note:
1. The recommended operating current range for this device is 12 to 20 mA. Typical gain performance as a function of current is on the follow-
ing page.
Ordering Information
Part Numbers
No. of Devices
100
Comments
Bulk
MSA-0611-BLK
MSA-0611-BLKG
MSA-0611-TR1
MSA-0611-TR1G
MSA-0611-TR2
MSA-0611-TR2G
100
Bulk
3000
7" Reel
7" Reel
13" Reel
13" Reel
3000
10000
10000
Note:
Order part number with a “G”suffix if lead-free option
is desired.
2
MSA-0611 Typical Scattering Parameters (Z = 50 Ω, T = 25°C, I = 16 mA)
O
A
d
S11
S21
S12
S22
Freq.
GHz
Mag
Ang
dB
Mag
Ang
dB
Mag
Ang
Mag
Ang
k
0.1
0.2
0.3
0.4
0.5
0.6
0.8
1.0
1.5
2.0
2.5
3.0
3.5
4.0
.04
.03
.03
.04
.05
.07
.10
.13
.22
.31
.39
.45
.50
.52
–176
–163
–149
–132
–127
–123
–129
–139
–164
171
19.6
19.3
18.9
18.5
18.0
17.3
16.2
15.0
12.5
10.1
8.1
9.53 170
9.25 160
8.79 150
8.38 141
7.96 133
7.33 125
6.46 111
–23.0
–22.7
–22.8
–21.9
–21.6
–21.2
–19.7
–19.0
–17.1
–16.1
–15.4
–15.0
–14.6
–14.1
.071
.073
.072
.080
.083
.087
.103
.112
.139
.157
.169
.178
.185
.197
6
10
14
17
21
23
25
28
25
21
22
18
15
11
.04
.07
.09
.11
.13
.15
.17
.18
.19
.19
.20
.19
.16
.14
–57
–82
1.07
1.07
1.10
1.07
1.07
1.07
1.04
1.06
1.07
1.13
1.19
1.26
1.33
1.37
–97
–111
–122
–131
–147
–160
175
5.64
4.22
3.20
2.55
2.07
1.72
1.48
98
73
53
42
28
16
4
160
158
153
144
6.3
150
132
4.7
3.4
152
121
166
Typical Performance, T = 25°C
A
(unless otherwise noted)
4
3
21
25
18
0.1 GHz
0.5 GHz
20
15
10
5
Gain Flat to DC
15
12
1.0 GHz
2.0 GHz
2
1
9
6
3
0
0
0
0.1
0.3 0.5
1.0
3.0 6.0
10
15
20
25
30
0.1
0.2 0.3
0.5
1.0
2.0
FREQUENCY (GHz)
FREQUENCY (GHz)
I
(mA)
d
Figure 1. Power Gain vs. Frequency, TA = 25 C,
Id = 16 mA.
Figure 2. Power Gain vs. Current.
Figure 3. Output Power @ 1 dB Gain
Compression vs. Frequency,
Id = 16 mA.
4.0
3.5
3.0
2.5
0.1
0.2 0.3
0.5
1.0
2.0
FREQUENCY (GHz)
Figure 4. Noise Figure vs. Frequency,
Id = 16 mA.
3
SOT-143 Package Dimensions
e2
e1
RF OUTPUT AND BIAS
GROUND
B1
E
E1
XXX
L
GROUND
B
RF INPUT
C
e
DIMENSIONS (mm)
D
SYMBOL
MIN.
0.79
0.013
0.36
0.76
0.086
2.80
1.20
0.89
1.78
0.45
2.10
0.45
MAX.
1.097
0.10
0.54
0.92
0.152
3.06
1.40
1.02
2.04
0.60
2.65
0.69
A
A1
B
A
B1
C
A1
D
E1
e
e1
e2
E
Notes:
XXX-package marking
Drawings are not to scale
L
For product information and a complete list of distributors, please go to our web site: www.avagotech.com
Avago, Avago Technologies, and the A logo are trademarks of Avago Technologies, Limited in the United States and other countries.
Data subject to change. Copyright © 2006 Avago Technologies, Limited. All rights reserved. Obsoletes 5989-4453EN
AV02-0789EN - October 31, 2007
4
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