ASL13C_17 ASB | Alldatasheet

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1/13 ASB Inc.  sales@asb.co.kr  Tel: +82-42-528-7225 April 2017 ASL13C 5 ~ 3000 MHz MMIC Amplifier (Supply Voltage = +5 V, TA = +25 C, Z0 = 50 ) 1) OIP3 is measured with two tones at an output power of +10 dBm/tone separated by 1 MHz. (Supply Voltage = +5 V, TA = +25 C, Z0 = 50 ) Parameters Units Min Typ Max Testing Frequency MHz 2000 Gain dB 12 13 S11 dB -18 S22 dB -12 Output IP3 dBm 34.5 36.5 Noise Figure dB 0.75 0.95 Output P1dB dBm 20 22 Current mA 59 Device Voltage V +4.5 Please find the max. input power data from Please find The max. input power, in principle, depends upon the application frequency and the matching circuit. Parameters Units Typical Frequency MHz 824 ~ 960 1920 ~ 2170 Gain dB 18.5 13.0 S11 dB -18 -16 S22 dB -10 -10 Output IP31) dBm 34.5 36.5 Noise Figure dB 0.85 0.75 Output P1dB dBm 22 22 Current mA 59 59 Device Voltage V +4.5 +4.5 Parameters Rating Operating Case Temperature -40 to 85 C Storage Temperature -40 to 150 C Device Voltage +6 V Operating Junction Temperature +150 C Input RF Power (CW, 50  matched as in 2000 MHz application circuit)* +22 dBm Thermal Resistance 184 C/W Features Description Typical Performance Absolute Maximum Ratings  13 dB Gain at 2000 MHz  22 dBm P1dB at 2000 MHz  37 dBm OIP3 at 2000 MHz  0.75 dB NF at 2000 MHz  MTTF > 100 Years  Single Supply The ASL13C is a wideband linear low noise ampl ifi- er 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. S11 down to –20 dB is easily achieved for low noise application to provide a good productivity. The amplifier is available in a SOT363 package and passes through the stringent DC, RF, and reliability tests. Application Circuit  CDMA & GSM  WCDMA  TETRA  IF  FM, DVB, DMB  2000 MHz (3.3 V, 59 mA)  2100 ~ 2400 MHz (5 V, 59 mA)  IF (30 ~ 600 MHz) Product Specifications Pin Configuration Pin No. Function

1 RF IN

4 RF OUT & Bias

2,3,5,6 GND

2/13 ASB Inc.  sales@asb.co.kr  Tel: +82-42-528-7225 April 2017 ASL13C 5 ~ 3000 MHz MMIC Amplifier Note: 1. The number and size of ground via holes in a circuit board is critical for thermal and RF grounding consi d- erations. 2. We recommend that the ground via holes be placed on the bottom of lead pin 2 for better RF and thermal pe r- formance, as shown in the drawing at the left side. Pin NO. Function Pin NO. Function.

1 RF IN 4 RF OUT & Bias

2 GND 5 GND

3 GND 6 GND

Mounting Recommendation (In mm) Outline Drawing Symbols Dimensions (In mm) MIN NOM MAX A 0.90 1.00 1.10 A1 0.025 0.062 0.10 A2 0.875 0.937 1.00 b 0.20 0.30 0.40 C 0.10 0.125 0.15 D 1.90 2.00 2.10 F 1.15 1.25 1.35 E1 2.00 2.10 2.20 e -- 0.65BSC -- e1 -- 1.30BSC -- L -- 0.425REF -- ESD Classification HBM Class 1A Voltage Level: 400 V MM Class A Voltage Level: 50 V CAUTION: ESD-sensitive device! Moisture Sensitivity Level (MSL) Level 3 at 260 C reflow ESD Classification & Moisture Sensitivity Level 13C

3/13 ASB Inc.  sales@asb.co.kr  Tel: +82-42-528-7225 April 2017 ASL13C 5 ~ 3000 MHz MMIC Amplifier L2=100 nH C3=100 pF RF OUTASL13C C2=100 pFRF IN C4=100 pF C5=10 nF Vcc=5V L1=39 nH C1=3 pF D BR =5.6 R =8.2  R1 =1.6 k C6=100 pF L3=5.6 nH 600 700 800 900 1000 1100 1200 Gain (dB) Frequency (MHz) 600 700 800 900 1000 1100 1200 -30 -25 -20 -15 -10 S11 (dB) Frequency (MHz) 600 700 800 900 1000 1100 1200 -30 -25 -20 -15 -10 S22 (dB) Frequency (MHz) 1) OIP3 is measured with two tones at an output power of +10 dBm/tone sep- arated by 1 MHz. Board Layout (FR4, 40x40 mm2, 0.8T) Schematic S-parameters & K-factor APPLICATION CIRCUIT Frequency (MHz) 824 894 890 960 Magnitude S21 (dB) 19.0 18.5 18.5 18.0 Magnitude S11 (dB) -18 -18 -18 -18 Magnitude S22 (dB) -10 -10 -10 -10 Output P1dB (dBm) 22 22 Output IP31) (dBm) 34.5 34.5 Noise Figure (dB) 0.80 0.85 Device Voltage (V) +4.5 +4.5 Current (mA) 59 59 CDMA & GSM 824 ~ 960 MHz +5 V 0 500 1000 1500 2000 2500 3000 3500 Stability Factor Frequency (MHz) Note: A shunt R B is a bias resistor requ isite to operate ASL13C properly, while RD as a volt- age drop resistor is added to apply 4.4 V to the device. A user can easily REDUCE an operating current by choosing different R B values with minimized loss only in OIP3 and P1dB.

4/13 ASB Inc.  sales@asb.co.kr  Tel: +82-42-528-7225 April 2017 ASL13C 5 ~ 3000 MHz MMIC Amplifier L2=12 nH C3=68 pF RF OUTASL13C C2=68 pFRF IN C4=100 pF C5=10 nF Vcc=5V L1=39 nH C1=1 pF D BR =5.6 R =8.2  R1 =1.6 k C6=100 pF 1500 1750 2000 2250 2500 Gain (dB) Frequency (MHz) -40 o c o c o c 1500 1750 2000 2250 2500 -40 -35 -30 -25 -20 -15 -10 S11 (dB) Frequency (MHz) -40 o c o c o c 1500 1750 2000 2250 2500 -30 -25 -20 -15 -10 S22 (dB) Frequency (MHz) -40 o c o c o c 1) OIP3 is measured with two tones at an output power of +10 dBm/tone sep a- rated by 1 MHz. Board Layout (FR4, 40x40 mm2, 0.8T) Schematic S-parameters & K-factor APPLICATION CIRCUIT Frequency (MHz) 1920 2170 Magnitude S21 (dB) 13.5 12.5 Magnitude S11 (dB) -18 -16 Magnitude S22 (dB) -14 -10 Output P1dB (dBm) 22 22 Output IP31) (dBm) 37.0 36.5 Noise Figure (dB) 0.75 0.75 Device Voltage (V) +4.5 +4.5 Current (mA) 59 59 Note: A shunt R B is a bias resistor requ isite to operate ASL13C properly, while RD as a volt- age drop resistor is added to apply 4.4 V to the device. A user can easily REDUCE an operating current by choosing different R B values with minimized loss only in OIP3 and P1dB. 0 500 1000 1500 2000 2500 3000 3500 Stability Factor Frequency (MHz) WCDMA 1920 ~ 2170 MHz +5 V

5/13 ASB Inc.  sales@asb.co.kr  Tel: +82-42-528-7225 April 2017 ASL13C 5 ~ 3000 MHz MMIC Amplifier -60 -40 -20 0 20 40 60 80 100 Current (mA) Temperature ( o -60 -40 -20 0 20 40 60 80 100 Gain (dB) Temperature ( o Frequency = 2 GHz -60 -40 -20 0 20 40 60 80 100 P1dB (dBm) Temperature ( o Frequency = 2 GHz -60 -40 -20 0 20 40 60 80 100 Output IP3 (dBm) Temperature ( o Frequency = 2 GHz -60 -40 -20 0 20 40 60 80 100 0.0 0.2 0.4 0.6 0.8 1.0 1.2 1.4 Frequency = 2 GHz NF (dB) Temperature ( o 0.00 0.25 0.50 0.75 1.00 1.25 1.50 NF (dB) Frequency (GHz) Current vs. Temperature Gain vs. Temperature P1dB vs. Temperature Output IP3 vs. Temperature NF vs. Temperature NF vs. Frequency

6/13 ASB Inc.  sales@asb.co.kr  Tel: +82-42-528-7225 April 2017 ASL13C 5 ~ 3000 MHz MMIC Amplifier 0 2 4 6 8 10 12 14 Output Power (dBm) -70 -65 -60 -55 -50 -45 -40 ACLR (dBc)

20 MHz BW

10 MHz BW

1) Test Source : LTE_FDD_test model 3.1, BW: 10 MHz & 20 MHz, Test Frequency: 1.8 GHz 2) Test Source : LTE_FDD_test model 3.1, BW: 20 MHz, Test Frequency: 1.8 GHz LTE ACLR – 10 MHz & 20 MHz LTE ACLR – 20 MHz

7/13 ASB Inc.  sales@asb.co.kr  Tel: +82-42-528-7225 April 2017 ASL13C 5 ~ 3000 MHz MMIC Amplifier L2=100 nH C3=1 uF RF OUTASL13C C2=1 uFRF IN C4=100 pF C5=1 uF Vcc=5V L1=27 nH D BR =5.6 R =8.2  R1 =1.6 k C2=100 pF 200 300 400 500 600 Gain (dB) Frequency (MHz) 200 300 400 500 600 -40 -35 -30 -25 -20 -15 -10 S11 (dB) Frequency (MHz) 200 300 400 500 600 -30 -25 -20 -15 -10 S22 (dB) Frequency (MHz) 1) OIP3 is measured with two tones at an output power of +10 dBm/tone sep a- rated by 1 MHz. Board Layout (FR4, 40x40 mm2, 0.8T) Schematic S-parameters & K-factor APPLICATION CIRCUIT Frequency (MHz) 350 400 450 Magnitude S21 (dB) 24.0 23.5 23.0 Magnitude S11 (dB) -18 -18 -18 Magnitude S22 (dB) -10 -10 -10 Output P1dB (dBm) 22 22 22 Output IP31) (dBm) 32.5 33.0 33.5 Noise Figure (dB) 0.95 0.90 0.85 Device Voltage (V) +4.5 +4.5 +4.5 Current (mA) 59 59 59 Note: A shunt R B is a bias resistor requ isite to operate ASL13C properly, while RD as a volt- age drop resistor is added to apply 4.4 V to the device. A user can easily REDUCE an operating current by choosing different R B values with minimized loss only in OIP3 and P1dB. TETRA 350 ~ 450 MHz +5 V 0 500 1000 1500 2000 2500 3000 3500 Stability Factor Frequency (MHz)

8/13 ASB Inc.  sales@asb.co.kr  Tel: +82-42-528-7225 April 2017 ASL13C 5 ~ 3000 MHz MMIC Amplifier 1) OIP3 is measured with two tones at an output power of +10 dBm/tone sep a- rated by 1 MHz. Board Layout (FR4, 40x40 mm2, 0.8T) Schematic S-parameters & Noise Figure APPLICATION CIRCUIT Frequency (MHz) 30 150 300 450 Magnitude S21 (dB) 25.0 24.5 23.5 22.0 Magnitude S11 (dB) -15 -15 -14 -13 Magnitude S22 (dB) -12 -13 -14 -15 Output P1dB (dBm) 22 22 22 22 Output IP31) (dBm) 31 33 35 35 Noise Figure (dB) 0.85 0.75 0.75 0.70 Device Voltage (V) +4.5 +4.5 +4.5 +4.5 Current (mA) 59 59 59 59 IF 30 ~ 450 MHz +5 V Note: A shunt R B is a bias resistor requ isite to operate ASL13C properly, while RD as a volt- age drop resistor is added to apply 4.4 V to the device. A user can easily REDUCE an operating current by choosing different R B values with minimized loss only in OIP3 and P1dB. 0 100 200 300 400 500 Gain (dB) Frequency (MHz) 0 100 200 300 400 500 -25 -20 -15 -10 S11 (dB) Frequency (MHz) 0 100 200 300 400 500 -25 -20 -15 -10 S22 (dB) Frequency (MHz) 0 100 200 300 400 500 0.0 0.5 1.0 1.5 2.0 NF (dB) Frequency (MHz)

9/13 ASB Inc.  sales@asb.co.kr  Tel: +82-42-528-7225 April 2017 ASL13C 5 ~ 3000 MHz MMIC Amplifier 1) OIP3 is measured with two tones at an output power of +5 dBm/ tone sepa- rated by 1 MHz. Board Layout (FR4, 40x40 mm2, 0.8T) Schematic S-parameters & K-factor APPLICATION CIRCUIT Frequency (MHz) 70 200 400 Magnitude S21 (dB) 25.0 24.0 22.5 Magnitude S11 (dB) -9 -9 -10 Magnitude S22 (dB) -18 -20 -17 Output P1dB (dBm) 16.5 16.5 17.0 Output IP31) (dBm) 28.5 29.0 30.0 Noise Figure (dB) 0.75 0.75 0.75 Device Voltage (V) +3.5 +3.5 +3.5 Current (mA) 40 40 40 Note: A shunt R B is a bias resistor requ isite to operate ASL13C properly, while RD as a volt- age drop resistor is added to apply 3.5 V to the de vice. A user can easily REDUCE an operating current by choosing different R B values with minimized loss only in OIP3 and P1dB. Vsupply=+5 V L1=560 nH C4=100 pF C5=10 F RF IN RF OUTC2=1 F RD=39  C3=1 nFR1=1.5 k RB=6.8 k ASL13C C1=1 F 0 100 200 300 400 500 Gain (dB) Frequency (MHz) 0 100 200 300 400 500 -20 -15 -10 S11 (dB) Frequency (MHz) 0 100 200 300 400 500 -30 -25 -20 -15 -10 S22 (dB) Frequency (MHz) 0 500 1000 1500 2000 2500 3000 3500 Stability Factor Frequency [MHz] FM, DVB, DMB 70 ~ 400 MHz +5 V

10/13 ASB Inc.  sales@asb.co.kr  Tel: +82-42-528-7225 April 2017 ASL13C 5 ~ 3000 MHz MMIC Amplifier 1) OIP3 is measured with two tones at an output power of +4 dBm/tone sep a- rated by 1 MHz. Board Layout (FR4, 40x40 mm2, 0.8T) Schematic S-parameters & K-factor APPLICATION CIRCUIT Frequency (MHz) 2000 Magnitude S21 (dB) 13 Magnitude S11 (dB) -18 Magnitude S22 (dB) -13 Output P1dB (dBm) 19 Output IP31) (dBm) 35 Noise Figure (dB) 0.7 Device Voltage (V) 3.3 Current (mA) 59 Note: A shunt R B is a bias resistor requ isite to operate ASL13C properly, while RD as a volt- age drop resistor is added to apply 4.4 V to the device. A user can easily REDUCE an operating current by choosing different R B values with minimized loss only in OIP3 and P1dB.

2000 MHz

+3.3 V Vdevice=+3.3 V L2=8.2 nH C4=100 pF C5=10 nF RF IN RF OUTC2=68 pF C6=100 pFR1=1.6 k RB=8.2 k ASL13C C1=68 pF C3= 1 pF L1=39 nH 1600 1800 2000 2200 2400 Gain (dB) Frequency (MHz) 1600 1800 2000 2200 2400 -20 -15 -10 S11 (dB) Frequency (MHz) 1600 1800 2000 2200 2400 -25 -20 -15 -10 S22 (dB) Frequency (MHz) 0 500 1000 1500 2000 2500 3000 3500 Stability Factor Frequency [MHz]

11/13 ASB Inc.  sales@asb.co.kr  Tel: +82-42-528-7225 April 2017 ASL13C 5 ~ 3000 MHz MMIC Amplifier 1) OIP3 is measured with two ton es at an output power of +10 dBm/tone sep a- rated by 1 MHz. Vsupply=+5 V L2=8.2 nH C4=100 pF C5=10 nH RF IN RF OUTC2=68 pF RD=8.2  C6=100 pFR1=1.6 k RB=5.6 k ASL13C C1=68 pF C3= 0.5 pF L1=39 nH Board Layout (FR4, 40x40 mm2, 0.8T) Schematic S-parameters & K-factor APPLICATION CIRCUIT Frequency (MHz) 2100 2400 Magnitude S21 (dB) 12.4 11.3 Magnitude S11 (dB) -13 -16 Magnitude S22 (dB) -18 -12 Output P1dB (dBm) 22.5 22.5 Output IP31) (dBm) 36 36 Noise Figure (dB) 0.9 0.8 Device Voltage (V) +4.5 +4.5 Current (mA) 59 59 2100 ~ 2400 MHz +5 V Note: A shunt R B is a bias resistor requ isite to operate ASL13C properly, while RD as a volt- age drop resistor is added to apply 4.4 V to the device. A us er can easily REDUCE an operating current by choosing different R B values with minimized loss only in OIP3 and P1dB. 1800 2000 2200 2400 2600 Gain (dB) Frequency (MHz) 1800 2000 2200 2400 2600 -25 -20 -15 -10 S11 (dB) Frequency (MHz) 1800 2000 2200 2400 2600 -25 -20 -15 -10 S22 (dB) Frequency (MHz) 500 1000 1500 2000 2500 3000 3500 Stability Factor Frequency [MHz]

12/13 ASB Inc.  sales@asb.co.kr  Tel: +82-42-528-7225 April 2017 ASL13C 5 ~ 3000 MHz MMIC Amplifier 1) OIP3 is measured with two tones at an output power of +5 dBm/tone sep a- rated by 1 MHz. Board Layout (FR4, 40x40 mm2, 0.8T) Schematic S-parameters & K-factor APPLICATION CIRCUIT Frequency (MHz) 30 88 220 600 Magnitude S21 (dB) 20.5 20.5 20.0 18.0 Magnitude S11 (dB) -20 -21 -18 -14 Magnitude S22 (dB) -13 -13 -13 -15 Output P1dB (dBm) 17 18 18 18 Output IP31) (dBm) 27 29 30 30 Noise Figure (dB) 1.6 1.3 1.5 1.3 Device Voltage (V) +4.22 +4.22 +4.22 +4.22 Current (mA) 39 39 39 39 IF 30 ~ 600 MHz +5 V Note: A shunt R B is a bias resistor requ isite to operate ASL13C properly, while RD as a volt- age drop resistor is added to apply 4.4 V to the device. A user can easily REDUCE an operating current by choosing different R B values with minimized loss only in OIP3 and P1dB. Vsupply=+5 V L1=2.7 H C4=100 pF C5=10 F RF IN RF OUTC2=1 F RD=20  C3=1 nFR1=680  RB=5.1 k ASL13C C1=1 F R3=6.8  R2=5.1  0 100 200 300 400 500 600 Gain (dB) Frequency (MHz) 0 100 200 300 400 500 600 -30 -25 -20 -15 -10 S11 (dB) Frequency (MHz) 0 100 200 300 400 500 600 -20 -15 -10 S22 (dB) Frequency (MHz) 0 500 1000 1500 2000 2500 3000 3500 Stability Factor Frequency [MHz]

13/13 ASB Inc.  sales@asb.co.kr  Tel: +82-42-528-7225 April 2017 ASL13C 5 ~ 3000 MHz MMIC Amplifier Copyright 2012-2017 ASB Inc. All rights reserved. Datasheet subject to change without notice. ASB assumes no re- sponsibility 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. 20~40 sec 260 C 200 C 150 C 60~180 sec Ramp-up (3 C/sec) Ramp-down (6 C/sec) Recommended Soldering Reflow Profile