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Número de pieza | MGA-30989 | |
Descripción | High Linearity Gain Block | |
Fabricantes | AVAGO | |
Logotipo | ||
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No Preview Available ! MGA-30989
2 - 6GHz, High Linearity Gain Block
Data Sheet
Description
Avago Technologies’ MGA-30989 is a broadband, high
linearity gain block MMIC amplifier achieved through
the use of Avago Technologies’ proprietary 0.25um GaAs
Enhancement-mode pHEMT process.
The device required simple dc biasing components to
achieve wide bandwidth performance. The temperature
compensated internal bias circuit provides stable current
over temperature and process threshold voltage variation.
The MGA-30989 is housed inside a low cost RoHS
compliant SOT89 industry standard SMT package (4.5 x
4.1 x 1.5 mm).
Component Image
9GX
#1 #2
#3
RFin GND RFout
Top View
#3 #2
#1
RFout GND RFin
Bottom View
Notes:
Package marking provides orientation and identification
“9G”= Device Code
“X” = Month of Manufacture
Attention: Observe precautions for
handling electrostatic sensitive devices.
ESD Machine Model = 50 V
ESD Human Body Model = 1000 V
Refer to Avago Application Note A004R:
Electrostatic Discharge, Damage and Control.
Features
x High linearity
x Built in temperature compensated internal bias circuitry
x No RF matching components required
x GaAs E-pHEMT Technology[1]
x Standard SOT89 package
x Single, Fixed 5V supply
x Excellent uniformity in product specifications
x MSL-1 and Lead-free halogen free
x High MTTF for base station application
Specifications
3.5GHz, 5V, 51mA (typical)
x 12 dB Gain
x 36.8 dBm Output IP3
x 2 dB Noise Figure
x 23.6 dBm Output Power at 1dB gain compression
5GHz, 5V, 51mA (typical)
x 9.6 dB Gain
x 38.4 dBm Output IP3
x 1.65 dB Noise Figure
x 23.8 dBm Output Power at 1dB gain compression
Applications
x IF amplifier, RF driver amplifier
x General purpose gain block
Note:
1. Enhancement mode technology employs positive gate voltage,
thereby eliminating the need of negative gate voltage associated
with conventional depletion mode devices.
1 page Typical Performance (2GHz - 4GHz)
TA = 25°C, Vdd = 5V, Input Signal = CW. Application Test Circuit is shown in Figure 22 and Table 1.
-16 5.0
-18 4.5
4.0
-20 3.5
-22 3.0
2.5
-24 2.0
-26 1.5
85°C 1.0
-28
25°C
-40°C
0.5
-30 0.0
Frequency (GHz)
Figure 12. S12 over Frequency and Temperature
Frequency (GHz)
Figure 13. Noise Figure over Frequency and Temperature
85°C
25°C
-40°C
Typical Performance (3GHz - 6GHz)
TA = 25°C, Vdd = 5V, Input Signal = CW. Application Test Circuit is shown in Figure 22 and Table 2.
80 16
15
70 14
13
60 12
11
50 10
9
40 8
7
30 6
Temperature (°C)
Figure 14. Ids over Temperature
Frequency (GHz)
Figure 15. Gain over Frequency and Temperature
85°C
25°C
-40°C
46
44
42
40
38
36
34
32
30
28
26
Frequency (GHz)
Figure 16. OIP3 over Frequency and Temperature
5
27
26
25
24
23
22
21
20
85°C 19
25°C
-40°C
18
17
Frequency (GHz)
Figure 17. P1dB over Frequency and Temperature
85°C
25°C
-40°C
5 Page Device Orientation
REEL
CARRIER
TAPE
9GX 9GX 9GX 9GX
USER FEED
DIRECTION
COVER TAPE
Tape Dimensions
Ø1.50±0.10
(0.059±0.004)
8.00±0.10
(0.315±0.004)
4.00±0.10
(0.157±0.004)
2.00±0.05
(0.069±0.004)
12.0±0.30–0.10
(0.472+0.012–0.004)
++
Ø1.50±0.25
(0.059±0.010)
0.292±0.02
(0.0115±0.0008)
0.180±0.10
8° (0.0709±0.004)
4.80±0.10
(0.180±0.004)
Dimensions in mm (inches)
6° MAX
4.40±0.10
(0.1732±0.004)
1.75±0.10
(0.069±0.004)
5.50±0.05
(0.217±0.002)
11
11 Page |
Páginas | Total 12 Páginas | |
PDF Descargar | [ Datasheet MGA-30989.PDF ] |
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