ASB ASL390 Wideband linear amplifier mmic Datasheet

ASL390
Wideband Linear Amplifier MMIC
Features
Description
·23.3 dB Gain at 500 MHz
The ASL390, a wideband linear amplifier MMIC,
has a high linearity and low noise over a wide range
of frequency 5 MHz to 1 GHz, being suitable for use
in the fiber receiver, distribution amplifiers and drop
amplifiers of CATV systems, and in the mobile wireless repeaters and BTS. The amplifier is available in
an SOT-89 package and passes through the stringent DC, RF, and reliability tests.
·22 dBm P1dB at 500 MHz
·42 dBm Output IP3 at 500 MHz
·75 Ohm Input / Output Match
·Bandwidth 5~1000 MHz
·Single Supply
ASL390
Package Style: SOT-89
Typical Performance
Parameters
Frequency
Units
Applications
Typical
MHz
5
50
500
860
Noise Figure
dB
3.1
2.3
2.3
2.5
Gain
dB
23.3
23.8
23.3
22.1
S11
dB
-15.0
-15.0
-20.0
-16.5
S22
dB
-16.0
-18.0
-18.0
-15.5
Output P1dB
dBm
18.5
22.0
22.0
19.5
Output IP31)
dBm
37.51)
392)
422)
412)
Output IP2
dBm
1),3)
CSO4)
dBc
66 / 60
CTB4)
dBc
75 / 69
Supply Current
mA
120
120
Supply Voltage
V
5
5
1),3)
52
2),3)
2),3)
49
50
·5 ~ 200 MHz (3.3 V)
·5 ~ 200 MHz
·50 ~ 1000 MHz
·50 ~ 1000 MHz
(Push-Pull / 1:1 transformer)
502),3)
1) OIP3 and OIP2 are measured with two tones at an output power of +7 dBm/tone separated by 1 MHz.
2) OIP3 and OIP2 are measured with two tones at an output power of +9 dBm/tone separated by 6 MHz.
3) OIP2 is measured at F1+F2 Frequency.
4) Pout=95 dBuV / 98 dBuV for 84 channels VHF signal..
Product Specifications
Parameters
Testing Frequency
Units
Min
Typ
MHz
500
Gain
dB
23.3
S11
dB
-20
S22
dB
-18
Output IP3
dBm
42
Noise Figure
dB
2.3
Output P1dB
dBm
22
Supply Current
mA
120
Supply Voltage
V
5
Max
Pin Configuration
Absolute Maximum Ratings
Rating
Pin No.
Function
Operating Case Temperature
Parameters
-40 to +85°C
1
RF IN
Storage Temperature
-40 to +150°C
2
GND
3
RF OUT / Bias
Device Voltage
+7V
Operating Junction Temperature
+150°C
Input RF Power (CW, 75ohm matched)*
10 dBm
* Please find the max. input power data from http://www.asb.co.kr/pdf/Maximum_Input_Power_Analysis.pdf
1/7
ASB Inc. · [email protected] · Tel: +82-42-528-7223
August 2012
ASL390
Wideband Linear Amplifier MMIC
Outline Drawing
Part No.
Lot No.
Symbols
A
L
b
b1
C
D
D1
E
E1
e1
H
S
e
ASL390
Pxxxx
Dimensions (In mm)
MIN
NOM
MAX
1.40
1.50
1.60
0.89
1.04
1.20
0.36
0.42
0.48
0.41
0.47
0.53
0.38
0.40
0.43
4.40
4.50
4.60
1.40
1.60
1.75
3.64
--4.25
2.40
2.50
2.60
2.90
3.00
3.10
0.35
0.40
0.45
0.65
0.75
0.85
1.40
1.50
1.60
Pin No.
Function
1
RF IN
2
GND
3
RF OUT / Bias
Mounting Recommendation (in mm)
Note: 1. The number and size of ground via holes in
a circuit board is critical for thermal and RF
grounding considerations.
2. We recommend that the ground via holes
be placed on the bottom of the lead pin 2
and exposed pad of the device for better RF
and thermal performance, as shown in the
drawing at the left side.
ESD Classification & Moisture Sensitivity Level
ESD Classification
HBM
Class 1B
Voltage Level: 750 V
MM
Class A
Voltage Level: 175 V
CAUTION: ESD-sensitive device!
Moisture Sensitivity Level (MSL)
Level 3 at 260°C reflow
2/7
ASB Inc. · [email protected] · Tel: +82-42-528-7223
August 2012
ASL390
Wideband Linear Amplifier MMIC
Frequency (MHz)
APPLICATION CIRCUIT
CATV
5
50
200
Noise Figure (dB)
2.4
2.4
2.0
Magnitude S21 (dB)
23.3
23.4
23.0
Magnitude S11 (dB)
-12
-16
-17
Magnitude S22 (dB)
-16
-20
-20
Output P1dB (dBm)
14
18
18
Output IP3 (dBm)
30
34
35
Output IP21),2) (dBm)
48
43
43
1)
5 ~ 200 MHz
+3.3 V
Supply Voltage (V)
3.3
Current (mA)
68
1) OIP3 and OIP2 are measured with two tones at an output power of +3 dBm/tone
separated by 1 MHz.
2) OIP2 is measured at F1+F2 Frequency.
Vs=3.3 V
Schematic
2
Board Layout (FR4, 40x40 mm , 0.8T)
C3=10 mF
L1=22 mH
(LQH32MN220J23)
C1=1 nF
RF IN
C2=1 mF
RF OUT
ASL390
L2=4.7 mH
R1=150 W
30
0
25
-5
20
-10
S11 (dB)
Gain (dB)
S-parameters
15
-15
10
-20
5
-25
0
-30
0
50
100
150
200
0
50
100
150
200
Frequency (MHz)
Frequency (MHz)
0
-5
S22 (dB)
-10
-15
-20
-25
-30
0
50
100
150
200
Frequency (MHz)
3/7
ASB Inc. · [email protected] · Tel: +82-42-528-7223
August 2012
ASL390
Wideband Linear Amplifier MMIC
Frequency (MHz)
APPLICATION CIRCUIT
CATV
5 ~ 200 MHz
5
50
200
Noise Figure (dB)
3.1
2.5
2.5
Magnitude S21 (dB)
23.3
23.8
23.3
Magnitude S11 (dB)
-15
-15
-18
Magnitude S22 (dB)
-16
-20
-20
Output P1dB (dBm)
18.5
21.5
21.5
Output IP31) (dBm)
37.5
40.0
41.5
52
50
50
Output IP21),2) (dBm)
+5 V
Supply Voltage (V)
5
Current (mA)
120
1) OIP3 and OIP2 are measured with two tones at an output power of +7 dBm/tone
separated by 1 MHz.
2) OIP2 is measured at F1+F2 Frequency.
Schematic
2
Vs=5 V
Board Layout (FR4, 40x40 mm , 0.8T)
C3=10 mF
L1=22 mH
(LQH32MN220J23)
C1=1 nF
RF IN
C2=1 mF
RF OUT
ASL390
L2=3.3 mH
R1=120 W
30
0
25
-5
20
-10
S11 (dB)
Gain (dB)
S-parameters
15
-15
10
-20
5
0
-25
0
50
100
150
200
250
300
0
50
100
150
200
250
300
Frequency (MHz)
Frequency (MHz)
0
-5
S22 (dB)
-10
-15
-20
-25
-30
0
50
100
150
200
250
300
Frequency (MHz)
4/7
ASB Inc. · [email protected] · Tel: +82-42-528-7223
August 2012
ASL390
Wideband Linear Amplifier MMIC
Frequency (MHz)
Noise Figure (dB)
APPLICATION CIRCUIT
CATV
+5 V
500
860
2.3
2.5
Magnitude S21 (dB)
23.8
23.3
22.1
Magnitude S11 (dB)
-15.0
-20.0
-16.5
Magnitude S22 (dB)
-18.0
-18.0
-15.5
Output P1dB (dBm)
22.0
22.0
19.5
Output IP3 (dBm)
39
42
41
Output IP21),2) (dBm)
49
50
50
1)
50 ~ 1000 MHz
50
2.3
3)
CSO (dBc)
66 / 60
CTB3) (dBc)
75 / 69
Supply Voltage (V)
5
Current (mA)
120
1) OIP3 and OIP2 are measured with two tones at an output power of +9 dBm/tone
separated by 6 MHz.
2) OIP2 is measured at F1+F2 Frequency.
3) Pout=95 dBuV / 98 dBuV for 84 channels VHF signal
Schematic
2
Board Layout (FR4, 40x40 mm , 0.8T)
Vs=5 V
C4=10 uF
L1=1 mH
(LQH31CN1R0M03)
L2=12 nH
C1=1 mF
RF IN
C2=1 mF
RF OUT
ASL390
C3=1 pF
S-parameters
30
0
25
-5
-10
-40oc
25oc
85oc
15
S11 (dB)
Gain (dB)
20
-15
10
-20
5
-25
0
-40oc
25oc
85oc
-30
0
100
200
300
400
500
600
700
800
900
1000
0
100
200
300
400
500
600
700
800
900
1000
Frequency (MHz)
Frequency (MHz)
0
-5
-40oc
25oc
85oc
-10
S22 (dB)
-15
-20
-25
-30
-35
-40
0
100
200
300
400
500
600
700
800
900
1000
Frequency (MHz)
5/7
ASB Inc. · [email protected] · Tel: +82-42-528-7223
August 2012
ASL390
Wideband Linear Amplifier MMIC
Gain vs. Temperature
140
25
130
24
120
23
Gain (dB)
Current (mA)
Current vs. Temperature
110
22
Frequency = 860 MHz
21
100
90
-60
-40
-20
0
20
40
60
80
100
20
-60
-40
-20
0
20
40
60
80
100
Temperature (oC)
Temperature (oC)
P1dB vs. Temperature
24
P1dB (dBm)
22
20
18
Frequency = 860 MHz
16
14
-60
-40
-20
0
20
40
60
80
100
Temperature (oC)
Output IP3 vs. Tone Power (Frequency = 860 MHz)
Output IP2 vs. Tone Power (Frequency = 860 MHz)
60
50
-40oc
25oc
85oc
40
35
30
50
45
40
35
25
20
-40oc
25oc
85oc
55
Output IP2 (dBm)
Output IP3 (dBm)
45
30
7
8
9
10
11
12
13
14
15
7
8
6/7
9
10
11
12
13
14
15
Pout per Tone (dBm)
Pout per Tone (dBm)
ASB Inc. · [email protected] · Tel: +82-42-528-7223
August 2012
ASL390
Wideband Linear Amplifier MMIC
50
500
860
Noise Figure (dB)
Frequency (MHz)
3.2
2.6
2.5
Magnitude S21 (dB)
19.2
18.6
17.8
Magnitude S11 (dB)
-17
-13
-14
CATV Push-Pull
Magnitude S22 (dB)
-17
-11
-13
1 : 1 transformer
Output P1dB (dBm)
25
26
26
Output IP31) (dBm)
39
43
42
70
63
56
APPLICATION CIRCUIT
50 ~ 1000 MHz
1)
Output IP2 (dBm)
+5 V
CSO (dBc)2)
66
CTB (dBc) 2)
63
Device Voltage (V)
5
Current (mA)
.
240
1) OIP3 and OIP2 are measured with two tones at an output power of +9 dBm/tone
separated by 6 MHz.
2) OIP2 is measured at F1+F2 Frequency.
3) Pout=102.5 dBuV for 60 channels VHF signal.
Vs=5 V
Schematic
Note: MABA-007159 1:1 impedance transformers
are used.
2
Board Layout (FR4, 40x40 mm , 0.8T)
C5=10 uF
L1=1 uH
(LQH31CN1R0M03)
C1=1 uF
C2=1 uF
ASL390
RF OUT
C4=1 uF
RF IN
1:1
transformer
C3=0.5 pF
1:1
transformer
R1=820 W
C6=1 uF
C7=1 uF
ASL390
C9=1 uF
C8=0.5 pF
L2=1 uH
(LQH31CN1R0M03)
R2=820 W
C10=10 uF
Vs=5 V
30
0
25
-5
20
-10
S11 (dB)
Gain (dB)
S-parameters
15
-15
10
-20
5
-25
0
0
100
200
300
400
500
600
700
800
900
1000
-30
0
100
200
Frequency (MHz)
300
400
500
600
700
800
900
1000
Frequency (MHz)
0
-5
S22 (dB)
-10
-15
-20
-25
-30
0
100
200
300
400
500
600
700
800
900
1000
Frequency (MHz)
7/7
ASB Inc. · [email protected] · Tel: +82-42-528-7223
August 2012
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