ASB ASL33C Low current, low noise amplifier mmic over dc Datasheet

ASL33C
ASL33C Data Sheet
Low Current, Low Noise Amplifier MMIC over DC~3000 MHz
1. Product Overview
1.1
General Description
ASL33C is a one-stage LNA for DVB, CMMB, CATV, FTTH receiver and antenna. It has a low noise,
high gain, and high linearity over a wide range of frequency up to 3 GHz. it is also suitable for use in the
low noise amplifier block of mobile wireless systems. The amplifier is available in a SOT363 package
and passes the stringent DC, RF, and reliability test.
1.2
Features
 19.9 dB Gain at 470 MHz
 11.0 dBm P1dB at 470 MHz
 24.0 dBm Output IP3 at 470 MHz
 1.1 dB NF at 470 MHz
 MTTF > 100 Years
 Minimum External Matching Components
 Single Supply
1.3
Applications
 DVB, CMMB antenna
 Telecommunication System
 Wide Band
 CATV, FTTH
1.4
Package Profile & RoHS Compliance
SOT363, 2.1x2.0 mm2, surface mount
1/15
ASB Inc.

[email protected]
RoHS-compliant
April 2017
ASL33C
2. Summary on Product Performances
2.1
Typical Performance
Supply voltage = +5 V, TA = +25 C, ZO = 50 
Parameter
Typical
Unit
Frequency
30
470
860
1950
MHz
Gain
21.0
19.7
17.7
13.3
dB
S11
-8
-10
-12
-18
dB
S22
-14
-13
-11
-10
dB
Noise Figure
1.2
1.1
1.0
1.0
dB
IP31)
22
24
22
30
dBm
Output P1dB
10
11
9
16
dBm
Current
20
35
mA
Device Voltage
+3.7
4.15
V
Output
1) OIP3 is measured with two tones at the output power of -5 dBm/tone separated by 1 MHz.
2.2
Product Specification
Supply voltage = +5 V, TA = +25 C, ZO = 50 
Parameter
Min
Typ
Max
Unit
Frequency
470
MHz
Gain
19.7
dB
S11
-10
dB
S22
-13
dB
Noise Figure
1.1
Output IP3
24
Output P1dB
11
Current
20
Device Voltage
+3.7
2.3
dB
SUBCKT
dBm
ID=S1 dBm
mA
NET="ASL13C_5V_4
V
Pin Configuration
Pin
Description
Simplified Outline
1
RF_IN
1
6
2, 3, 5, 6
Ground
2
5
4
RF_OUT & Bias
3
4
2
1
2/15
ASB Inc.

[email protected]
April 2017
ASL33C
2.4
Absolute Maximum Ratings
Parameters
Max. Ratings
Operation Case Temperature
-40 to 85 C
Storage Temperature
-40 to 150 C
Device Voltage
+5.5 V
Operation Junction Temperature
+150 C
Input RF Power (CW, 50  matched as 2000 MHz
application circuit)
+20 dBm
2.5
Thermal Resistance
Symbol
Description
Typ
Unit
Rth
Thermal resistance from junction to lead
210
C/W
2.6
ESD Classification & Moisture Sensitivity Level
ESD Classification
HBM
Class 1A
MM
Class A
CAUTION: Gallium Arsenide Integrated Circuits are sensitive to electrostatic discharge (ESD) and can
be damaged by static electricity. Proper ESD control techniques should be used when
handling these devices.
Moisture Sensitivity Level
MSL 3 at 260 C reflow
(Intentionally Blanked)
3/15
ASB Inc.

[email protected]
April 2017
ASL33C
3. Application: 30 ~ 860 MHz (DVB, CMMB, Vsupply = +5 V)
3.1
Application Circuit & Evaluation Board
Vsupply = +5 V
R2
C5
C4
L1
C1
RF IN
C2
RF OUT
ASL33C
R1
C3
PCB Information
Material
FR4
Thickness (mm)
0.8
Size (mm)
40x40
EB No.
EB-363-A7
Bill of Material
4/15
Symbol
Value
Size
Description
Manufacturer
ASL33C
-
-
MMIC Amplifier
ASB
C1, C2
1 F
0603
DC blocking capacitor
Murata
C3
1 F
0603
Feedback capacitor
Murata
C4
100 pF
0603
Decoupling capacitor
Murata
C5
1 F
0603
Decoupling capacitor
Murata
L1
4.7 H
0603
RF choke inductor
Murata
R1
1.1 k
0603
Feedback resistor
Samsung
R2
62 
0603
Voltage drop resistor
Samsung
ASB Inc.

[email protected]
April 2017
ASL33C
3.2
Performance Table
Supply voltage = +5 V, TA = +25 C, ZO = 50 
Parameter
Typical
Unit
Frequency
30
470
860
MHz
Gain
21.0
19.7
17.7
dB
S11
-8
-10
-12
dB
S22
-14
-13
-11
dB
Noise Figure
1.2
1.1
1.0
dB
Output IP31)
22
24
22
dBm
Output P1dB
10
11
9
dBm
Current
20
mA
Device Voltage
+3.7
V
1) OIP3 is measured with two tones at the output power of -5 dBm/tone separated by 1 MHz.
40
30
20
10
0
-10
-20
-30
-40
-50
-60
S21
S11
S22
S12
K
0
5/15
200
ASB Inc.

400
600
Frequency (MHz)
[email protected]
800
10
9
8
7
6
5
4
3
2
1
0
1000
Stability Factor, K
Plot of S-parameter & Stability Factor
S-parameters (dB)
3.3
April 2017
ASL33C
3.4
Plots of Noise Figure and Performances with Temperature
5
25
-40 °C
+25 °C
4
20
Gain (dB)
NF (dB)
+85 °C
3
2
15
10
-40 °C
+25 °C
1
5
+85 °C
0
0
200
400
600
Frequency (MHz)
800
1000
0
0
0
-10
-10
S22 (dB)
S11 (dB)
0
-40 °C
-20
200
400
600
Frequency (MHz)
800
1000
-40 °C
-20
+25 °C
+25 °C
+85 °C
+85 °C
-30
-30
0
200
400
600
Frequency (MHz)
800
0
1000
30
200
400
600
Frequency (MHz)
800
1000
24
Frequency = 470 MHz
22
Gain (dB)
Current (mA)
25
20
15
18
16
10
14
-60
6/15
20
-40
-20
0
20
40
Temperature (°C)
60
80
100
ASB Inc.
-60

[email protected]
-40
-20
0
20
40
Temperature (°C)
60
80
100
April 2017
ASL33C
2
28
Frequency = 470 MHz
Frequency = 470 MHz
Output IP3 (dBm)
NF (dB)
1.5
1
0.5
26
24
22
20
0
18
-60
-40
-20
0
20
40
Temperature (°C)
60
80
100
-60
35
-40
-20
60
80
100
16
Frequency = 470 MHz
Frequency = 470 MHz
30
14
P1dB (dBm)
Output IP3 (dBm)
0
20
40
Temperature (°C)
25
20
-40 °C
+25 °C
15
12
10
8
+85 °C
10
6
-10
-8
-6
-4
-2
0
2
4
Output tone power (dBm)
6
8
-60
-40
-20
0
20
40
Temperature (°C)
60
80
100
(Intentionally Blanked)
7/15
ASB Inc.

[email protected]
April 2017
ASL33C
4. Application: 800 ~ 2700 MHz (Wide Band, Vsupply = +5 V)
4.1
Application Circuit & Evaluation Board
Vsupply = +5 V
R2
C5
C4
L1
C1
RF IN
C2
L2
RF OUT
ASL33C
R1
C3
PCB Information
Material
FR4
Thickness (mm)
0.8
Size (mm)
40x40
EB No.
EB-363-A7
Bill of Material
8/15
Symbol
Value
Size
Description
Manufacturer
ASL33C
-
-
MMIC Amplifier
ASB
C1, C2
82 pF
0603
DC blocking capacitor
Murata
C3
100 pF
0603
Feedback capacitor
Murata
C4
100 pF
0603
Decoupling capacitor
Murata
C5
1 F
0603
Decoupling capacitor
Murata
L1
56 nH
0603
RF choke inductor
Murata
L2
27 nH
0603
Matching inductor
Murata
R1
1.1 k
0603
Feedback resistor
Samsung
R2
24 
0603
Voltage drop resistor
Samsung
ASB Inc.

[email protected]
April 2017
ASL33C
4.2
Performance Table
Supply voltage = +5 V, TA = +25 C, ZO = 50 
Parameter
Typical
Unit
Frequency
800
1950
2400
2700
MHz
Gain
19.3
13.3
11.3
10.0
dB
S11
-18
-18
-22
-22
dB
S22
-18
-10
-8
-7
dB
Noise Figure
0.90
1.00
1.05
1.15
dB
Output IP31)
30
30
29
28
dBm
Output P1dB
17.0
16.0
14.5
14.5
dBm
Current
35
mA
Device Voltage
+4.15
V
1) OIP3 is measured with two tones at the output power of -5 dBm/tone separated by 1 MHz.
40
30
20
10
0
-10
-20
-30
-40
-50
-60
500
9/15
1000
ASB Inc.

1500
2000
Frequency (MHz)
[email protected]
2500
10
9
8
S21
7
S22 6
5
S12 4
3
S11
2
K 1
0
3000
Stability Factor, K
Plot of S-parameter & Stability Factor
S-parameters (dB)
4.3
April 2017
ASL33C
5. Application: 1575 MHz (GPS, Vsupply = +5 V)
5.1
Application Circuit & Evaluation Board
Vsupply = +5 V
R2
C5
C4
L1
C1
RF IN
C2
L2
RF OUT
ASL33C
R1
C3
PCB Information
Material
FR4
Thickness (mm)
0.8
Size (mm)
40x40
EB No.
EB-363-A7
Bill of Material
10/15
Symbol
Value
Size
Description
Manufacturer
ASL33C
-
-
MMIC Amplifier
ASB
C1, C2
82 pF
0603
DC blocking capacitor
Murata
C3
100 pF
0603
Feedback capacitor
Murata
C4
100 pF
0603
Decoupling capacitor
Murata
C5
1 F
0603
Decoupling capacitor
Murata
L1
15 nH
0603
RF choke inductor
Murata
L2
27 nH
0603
Matching inductor
Murata
R1
1.1 k
0603
Feedback resistor
Samsung
R2
75 
0603
Voltage drop resistor
Samsung
ASB Inc.

[email protected]
April 2017
ASL33C
5.2
Performance Table
Supply voltage = +5 V, TA = +25 C, ZO = 50 
Parameter
Typical
Unit
Frequency
1575
MHz
Gain
15
dB
S11
-11
dB
S22
-13
dB
Noise Figure
0.9
dB
Output IP31)
25
dBm
Output P1dB
10
dBm
Current
16
mA
Device Voltage
+3.8
V
1) OIP3 is measured with two tones at the output power of -5 dBm/tone separated by 1 MHz.
11/15
Plot of S-parameter & Stability Factor
40
30
20
10
0
-10
-20
-30
-40
-50
-60
1000
S21
S11
S12
K
1200
ASB Inc.
1400
1600
Frequency (MHz)

[email protected]
1800
10
9
8
7
6
S22
5
4
3
2
1
0
2000
Stability Factor, K
S-parameters (dB)
5.3
April 2017
ASL33C
6. Application: 50 ~ 1000 MHz (CATV, FTTH, 75 ohm, Vsupply = +3 V)
6.1
Application Circuit & Evaluation Board
Vdevice = +3 V
C5
C4
R3
L1
L2
C1
RF IN
C2
L3
RF OUT
ASL33C
R1
R2
L4
C3
PCB Information
Material
FR4
Thickness (mm)
0.8
Size (mm)
40x40
EB No.
EB-363-B4
Bill of Material
Symbol
Value
Size
Description
Manufacturer
ASL33C
-
-
MMIC Amplifier
ASB
C1, C2
10 nF
0603
DC blocking capacitor
Murata
C3
1 F
0603
Feedback capacitor
Murata
C4
100 pF
0603
Decoupling capacitor
Murata
C5
10 F
0805
Decoupling capacitor
Murata
L1
820 nH
0603
RF choke inductor
Murata
L2
8.2 nH
0603
Matching inductor
Murata
L3
6.8 nH
0603
Matching inductor
Murata
L4
39 nH
0603
Feedback inductor
Murata
R1
820 
0603
Feedback resistor
Samsung
R2
360 
0603
Feedback resistor
Samsung
47 k
0603
Current adjust resistor
Samsung
R3
12/15
ASB Inc.

[email protected]
April 2017
ASL33C
6.2
Performance Table
Supply voltage = +3 V, TA = +25 C, ZO = 75 
Parameter
Typical
Frequency
50
500
1000
MHz
Gain
23.0
23.2
22.1
dB
S11
-19
-19
-17
dB
S22
-10
-14
-16
dB
Noise Figure
0.85
0.95
0.95
dB
Output IP31)
32.0
32.0
31.5
dBm
42.0
42.0
46.5
dBm
Output P1dB
17.0
17.0
16.5
dBm
Current
45
mA
Device Voltage
+3
V
Output
IP21), 2)
Unit
1) OIP3 and OIP2 are measured with two tones at the output power of +0 dBm/tone separated by 6 MHz.
2) OIP2 is measured at F1 + F2 Frequency.
40
30
20
10
0
-10
-20
-30
-40
-50
-60
S21
S22
S11
S12
K
0
13/15
200
ASB Inc.

400
600
Frequency (MHz)
[email protected]
800
10
9
8
7
6
5
4
3
2
1
0
1000
Stability Factor, K
Plot of S-parameter & Stability Factor
S-parameters (dB)
6.3
April 2017
ASL33C
7. Package Outline (SOT363, 2.1x2.0x1.0 mm)
Symbols
33C
A
A1
A2
b
C
D
F
E1
e
e1
L
Dimensions (In mm)
MIN
NOM
0.900
1.000
0.025
0.062
0.875
0.937
0.200
0.300
0.100
0.125
1.900
2.000
1.150
1.250
2.000
2.100
0.65BSC
1.30BSC
0.425REF
MAX
1.10
0.10
1.00
0.40
0.15
2.10
1.35
2.20
8. Surface Mount Recommendation (In mm)
1.48
NOTE
0.25
0.30
1. The number and size of ground via holes in a
circuit board are critical for thermal and RF
grounding considerations.
0.30
1.23
14/15
1.33
0.50
0.40
1.75
0.42
ASB Inc.

2. Recommend is that the ground via holes be
placed on the bottom of the ground lead pin 2 for
better RF and thermal performance, as shown in
the drawing at the left side
[email protected]
April 2017
ASL33C
9. Recommended Soldering Reflow Profile
260 C
20~40 sec
Ramp-up
(3 C/sec)
Ramp-down
(6 C/sec)
200 C
150 C
60~180 sec
(End of Datasheet)
Copyright 2012-2017 ASB Inc. All rights reserved. Datasheet subject to change without notice. ASB
assumes no responsibility for any errors which may appear in this datasheet. No part of the datasheet
may be copied or reproduced in any form or by any means without the prior written consent of ASB.
15/15
ASB Inc.

[email protected]
April 2017
Similar pages