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ASL210_13 Datasheet, PDF (1/9 Pages) Advanced Semiconductor Business Inc. – 5 ~ 3000 MHz High Linearity LNA MMIC
ASL210
5 ~ 3000 MHz High Linearity LNA MMIC
Features
Description
·18.5 dB Gain at 900 MHz
·20 dBm P1dB at 900 MHz
·36 dBm Output IP3 at 900 MHz
·0.8 dB NF at 900 MHz
·MTTF > 100 Years
·Single Supply
The ASL210, a wideband linear low noise amplifier
MMIC, has a low noise and high linearity at low bias
current, being suitable for use in both receiver and
transmitter of telecommunication systems up to 3 GHz.
The amplifier is available in a SOT89 package and
passes through the stringent DC, RF, and reliability
tests.
Typical Performance
(Supply Voltage = Device Voltage, TA = +25 C, Z0 = 50 )
Parameters
Units
Typical
Frequency
MHz
50
450
900
Gain
dB
24.5 22.5 18.5
S11
dB
-12
-15
-20
S22
Output IP3
dB
dBm
-18
-15
-18
351)
352)
363)
Noise Figure
dB
2.5
0.8
0.8
Output P1dB
dBm
18.5 20.0 20.0
Current
mA
80
67
67
Device Voltage
V
+3.0 +3.3 +3.3
1) OIP3 is measured with two tones at an output power of +7 dBm/tone separated by 1 MHz.
2) OIP3 is measured with two tones at an output power of +10 dBm/tone separated by 1 MHz.
3) OIP3 is measured with two tones at an output power of +12 dBm/tone separated by 1 MHz.
4) OIP3 is measured with two tones at an output power of +11 dBm/tone separated by 1 MHz.
2000
12.0
-18
-12
374)
0.9
20.5
67
+3.3
2700
10.0
-14
-10
384)
1.2
20.5
67
+3.3
ASL210
Package Style: SOT89
Application Circuit
·IF (50 ~ 200 MHz)
·IF (470 ~ 510 MHz)
·CDMA
·GSM
·PCS & DCS
·WCDMA
·2300 ~ 2700 MHz
Product Specifications
Parameters
Units
Testing Frequency
Gain
S11
S22
Output IP3
Noise Figure
Output P1dB
Current
Device Voltage
MHz
dB
dB
dB
dBm
dB
dBm
mA
V
Min
Typ
Max
900
18.5
-20
-18
36
0.8
20
67
+3.3
Pin Configuration
Absolute Maximum Ratings
Parameters
Operating Case Temperature
Storage Temperature
Device Voltage
Operating Junction Temperature
Input RF Power (CW, 50  matched)*
Rating
-40 to 85 C
-40 to 150 C
+5 V
+150 C
22 dBm
* Please find the max. input power data from http://www.asb.co.kr/pdf/Maximum_Input_Power_Analysis.pdf
1/9
ASB Inc.  sales@asb.co.kr  Tel: +82-42-528-7225
Pin No.
1
2
3
Function
RF IN
GND
RF OUT & Bias
April 2013