QPA9120TR7 [QORVO]

High Gain High Linearity Driver Amplifier;
QPA9120TR7
型号: QPA9120TR7
厂家: Qorvo    Qorvo
描述:

High Gain High Linearity Driver Amplifier

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QPA9120  
High Gain High Linearity Driver Amplifier  
®
Product Overview  
The QPA9120 is a wideband, high gain, and high linearity  
driver amplifier in a low-cost, RoHS compliant 3x3 mm QFN  
package. With Qorvo’s E-pHEMT process, this amplifier  
delivers exceptional performance with 36ꢁdBm output 3rd  
order intercept (OIP3) power and 22ꢁdBm output 1dB  
compression (OP1dB) power while consuming less than  
100ꢁmA DC current with single 5V supply.  
16 Pad 3x3mm QFN Package  
The QPA9120 incorporates on-chip features with fast DC  
power shutdown, externally configurable device DC  
operation current, and is internally matched.  
Key Features  
1.8ꢁ–ꢁ5.0 GHz Operational  
50Matched RF Input and Output  
1 dB Gain Flatness over 1 GHz Bandwidth  
+22 dBm P1dB  
The QPA9120 is targeted for use as a pre-driver amplifier  
for wireless infrastructure where high linearity, medium RF  
power with efficient DC power operation are required. The  
device is an excellent choice for 5G dense-array m-MIMO  
radio applications.  
+35dBm Output IP3  
29dB Gain  
+5ꢁV Single Supply, IDD 96mA  
DC Power Shutdown Feature  
Small 3ꢁxꢁ3ꢁmm QFN Package  
Functional Block Diagram  
Applications  
5G m-MIMO  
Mobile Infrastructure  
Repeater / DAS  
General Purpose Wireless  
TDD / FDD System  
Ordering Information  
Part No.  
Description  
QPA9120TR7  
QPA9120ꢁEVB-01  
2,500 pieces on a 7” reel (standard)  
Evaluation Board  
Top View  
Datasheet, March 29, 2019 | Subject to change without notice  
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QPA9120  
®
High Gain High Linearity Driver Amplifier  
Absolute Maximum Ratings  
Recommended Operating Conditions  
Parameter  
Rating  
−65 to +150ꢁ°C  
22 dBm  
Parameter  
Min  
+3.3  
−40  
Typ  
Max Units  
Storage Temperature  
RF Input Power, CW, 50ꢁΩ, T=25ꢁ°C  
Device Voltage (VDD1, VDD2  
)
+5.0  
+5.25  
+105  
+190  
V
TCASE  
°C  
°C  
Device Voltage (VDD1, VDD2  
)
+6 V  
Tj for >106 hours MTTF  
Exceeding any one or a combination of the Absolute Maximum Rating  
conditions may cause permanent damage to the device. Extended  
application of Absolute Maximum Rating conditions to the device may  
reduce device reliability.  
Electrical specifications are measured at specified test conditions.  
Specifications are not guaranteed over all recommended operating  
conditions.  
Electrical Specifications  
Parameter  
Conditions(1)  
Min  
1800  
27  
Typ  
Max  
5000  
33  
Units  
MHz  
dB  
Operational Frequency Range  
Gain  
At 3.5 GHz  
At 4.8 GHz  
29  
28  
10  
12  
22  
21  
35  
34  
1.5  
96  
2
26  
32.5  
dB  
Input Return Loss  
Output Return Loss  
Output P1dB  
dB  
dB  
At 3.5 GHz  
20  
19  
32  
30  
dBm  
dBm  
dBm  
dBm  
dB  
At 4.8 GHz  
Output IP3  
Pout=+2ꢁdBm/tone, ∆fꢁ=1MHz, 3.5 GHz  
Pout=+2ꢁdBm/tone, ∆fꢁ=1MHz, 4.8 GHz  
At 3.5 GHz or 4.8 GHz  
VDD1 and VDD2  
Noise Figure  
Device Current, ON  
Device Current, OFF  
VPD, Logic Low  
70  
130  
mA  
mA  
V
VPD = 0 V  
0
0.63  
VDD  
VPD, Logic High  
1.17  
V
Device ON or OFF Timing  
Thermal Resistance, θjc  
Notes:  
10%-90% Rising or 90%-10% Falling  
Junction to case  
0.2  
µS  
50.1  
°C/W  
1. Test conditions unless otherwise noted: VDD1and VDDon EVB = +5.0ꢁV, VPD = +1.8ꢁV, Tempꢁ=ꢁ+25ꢁ°C, 50ꢁΩ system.  
Logic Table  
Parameter, VPD  
High  
Low  
Device State  
ON  
OFF  
Datasheet, March 29, 2019 | Subject to change without notice  
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QPA9120  
®
High Gain High Linearity Driver Amplifier  
3300to 5000MHz Evaluation Board - QPA9120EVB01  
Notes:  
1. See Evaluation Board PCB Information for material and stack up  
2. Total operation current can be adjusted by changing the values of R4 and/or R5  
Bill of Material  
Ref. Des.  
n/a  
Value  
Description  
Printed Circuit Board  
Manuf.  
Qorvo  
Part Number  
-
U1  
-
High Gain High Linearity Amplifier  
Res, 1.6 KΩ, 0402, 1%, 1/16W  
Qorvo  
QPA9120  
R4  
1.6 KΩ  
various  
R5  
5.62 KΩ Res, 5.62 KΩ, 0603, 1%, 1/16W  
various  
R6  
0 Ω  
100 KΩ  
18 pF  
100 pF  
1.0 μF  
2.2 nH  
-
Res, 0 Ω, 0402, 1/10W  
various  
R7  
Res, 100 KΩ, 0402, 5%, 1/16W  
Cap, 18 pF, 0402, 5%, 50V NPO/C0G  
Cap, 100 pF, 0402, 5%, 50V NPO/C0G  
Cap, 1.0 μF, 0402, 10%, 10V, X5R  
Inductor, 2.2 nH, 0402, ±0.1nH  
Conn, SMA F STRT .062”  
various  
C9, C10  
C11, C13, C17, C22  
C12, C14  
L9, L10 (1)  
J1, J2  
various  
various  
various  
muRata  
Cinch Connectivity  
LQP15MN2N2B02D  
142-0701-851  
Notes:  
1. L10 value needs to be 18 nH for operation frequency < 3 GHz  
Typical Performance on EVB  
Parameter  
Frequency  
Conditions  
Typical Value  
Units  
MHz  
dB  
1800  
32.2  
6
2600  
30.5  
10  
3500  
28.3  
13  
4800  
27.6  
11  
Gain  
Input Return Loss  
Output Return Loss  
Output P1dB  
Output IP3  
dB  
24  
14  
15  
12  
dB  
21.5  
31.9  
22.0  
33.1  
21.9  
35.4  
21.3  
34.4  
dBm  
dBm  
mA  
Pout = +2 dBm/tone, f = 1 MHz  
VDD and VDD1  
Device Current  
96  
Notes:  
1. Test Conditions unless otherwise noted: VDD1and VDDon EVB = +5.0ꢁV, VPD = +1.8 V, Temp.=+25ꢀ°C, L10 = 18 nH on EVB for Freq. < 3 GHz  
Datasheet, March 29, 2019 | Subject to change without notice  
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QPA9120  
®
High Gain High Linearity Driver Amplifier  
Performance Plots QPA9120EVB01  
Test conditions unless otherwise noted: VDD1and VDDon EVB = +5.0ꢁV, IDD = 96 mA, VPD = +1.8 V, Temp.=+25ꢀ°C  
Datasheet, March 29, 2019 | Subject to change without notice  
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QPA9120  
®
High Gain High Linearity Driver Amplifier  
Performance Plots QPA9120EVB01 (Continue)  
Test conditions unless otherwise noted: VDD1and VDD= +5.0ꢁV, IDD = 96 mA, VPD = +1.8 V, Temp.=+25ꢀ°C  
Datasheet, March 29, 2019 | Subject to change without notice  
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QPA9120  
®
High Gain High Linearity Driver Amplifier  
Performance Plots 1800 MHz to 2700MHz  
Test conditions unless otherwise noted: VDD1 and VDD on EVB = +5ꢁV, IDD = 96 mA, VPD = +1.8 V, Temp.=+25ꢀ°C, L10 = 18 nH on QPA9120EVB01  
Datasheet, March 29, 2019 | Subject to change without notice  
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QPA9120  
®
High Gain High Linearity Driver Amplifier  
Evaluation Board PCB Information  
PC Board Layout  
PCB Material Stackup  
50 ohm line dimensions: width = 0.017”, spacing = 0.017”  
Datasheet, March 29, 2019 | Subject to change without notice  
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QPA9120  
®
High Gain High Linearity Driver Amplifier  
Pad Configuration and Description  
Top View  
Pad No.  
Label  
GND  
Description  
1
2
Ground connection  
RF IN  
RF input. External DC Block required  
3, 5, 6, 7, 8, 9,  
12, 15  
No electrical connection internally. It may be left floating or connected to ground. Land pads should  
be provided for PCB mounting integrity.  
NC  
4
VDD1  
The first stage DC supply. External choke required  
10, 11  
13  
RF OUTꢁ/ꢁVDD2 RF output and the second stage DC supply. External chock and DC Block capacitor required.  
VB2  
VB1  
VPD  
Sets the bias current for the second stage of the amplifier  
Sets the bias current for the first stage of the amplifier  
Amplifier ON/OFF logic control  
14  
16  
RF/DC ground. Use recommended via pattern to minimize inductance and thermal resistance. See  
PCB Mounting Pattern for suggested footprint.  
Backside Paddle GND  
Datasheet, March 29, 2019 | Subject to change without notice  
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QPA9120  
®
High Gain High Linearity Driver Amplifier  
Package Marking and Dimensions  
Marking: Pin 1 marker Dot and Logo Q  
Part Number 9120  
Trace Code ꢁ–ꢁXXXX up to 4 Characters assigned by sub-contractor  
Notes:  
1. All dimensions are in millimeters. Angles are in degrees.  
2. The terminal #1 identifier and terminal numbering conform to JESD 95-1 SPP-012.  
3. Contact plating: NiPdAu  
Recommended PCB Layout Pattern  
Notes:  
1. All dimensions are in millimeters. Angles are in degrees.  
2. Use 1 oz. copper minimum for top and bottom layer metal.  
3. Via holes are required under the backside paddle of this device for proper RF/DC grounding and thermal dissipation. We recommend a 0.35mm  
(#80/.0135") diameter bit for drilling via holes and a final plated thru diameter of 0.25 mm (0.01”).  
4. Ensure good package backside paddle solder attach for reliable operation and best electrical performance.  
Datasheet, March 29, 2019 | Subject to change without notice  
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QPA9120  
®
High Gain High Linearity Driver Amplifier  
Tape and Reel Information Carrier and Cover Tape Dimensions  
Feature  
Measure  
Symbol  
Size (in)  
0.126  
0.126  
0.039  
0.157  
0.079  
0.217  
0.362  
0.472  
Size (mm)  
3.20  
Length  
A0  
B0  
K0  
P1  
P2  
F
Width  
3.20  
Cavity  
Depth  
1.00  
Pitch  
4.00  
Cavity to Perforation - Length Direction  
2.00  
Centerline Distance  
Cavity to Perforation - Width Direction  
5.50  
Cover Tape  
Carrier Tape  
Width  
Width  
C
9.20  
W
12.00  
Datasheet, March 29, 2019 | Subject to change without notice  
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QPA9120  
®
High Gain High Linearity Driver Amplifier  
Tape and Reel Information Reel Dimensions  
Standard T/R size = 2,500 pieces on a 7” reel.  
Feature  
Measure  
Symbol  
Size (in)  
6.969  
0.717  
0.504  
2.283  
0.512  
0.079  
0.787  
Size (mm)  
177.0  
18.2  
Diameter  
A
W2  
W1  
N
Flange  
Thickness  
Space Between Flange  
Outer Diameter  
Arbor Hole Diameter  
Key Slit Width  
Key Slit Diameter  
12.8  
58.0  
C
13.0  
Hub  
B
2.0  
D
20.0  
Tape and Reel Information Tape Length and Label Placement  
Notes:  
1. Empty part cavities at the trailing and leading ends are sealed with cover tape. See EIA 481-1-A.  
2. Labels are placed on the flange opposite the sprockets in the carrier tape.  
Datasheet, March 29, 2019 | Subject to change without notice  
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QPA9120  
®
High Gain High Linearity Driver Amplifier  
Handling Precautions  
Parameter  
Rating  
Standard  
ESDꢁ–ꢁHuman Body Model (HBM)  
ESDꢁ–ꢁCharged Device Model (CDM)  
MSLꢁ–ꢁMoisture Sensitivity Level  
Class 1A ESDAꢀ/ꢀJEDEC JS-001-2012  
Caution!  
ESD-Sensitive Device  
Class C3 JEDEC JESD22-C101F  
Level 1  
IPC/JEDEC J-STD-020  
Solderability  
Compatible with both lead-free (260°C max. reflow temperature) and tin/lead (245°C max. reflow temperature) soldering processes.  
Solder profiles available upon request.  
Contact plating: NiPdAu  
RoHS Compliance  
This part is compliant with 2011/65/EU RoHS directive (Restrictions on the Use of Certain Hazardous Substances in Electrical and  
Electronic Equipment) as amended by Directive 2015/863/EU.  
This product also has the following attributes:  
Lead Free  
Halogen Free (Chlorine, Bromine)  
Antimony Free  
TBBP-A (C15H12Br402) Free  
PFOS Free  
SVHC Free  
Pb  
Contact Information  
For the latest specifications, additional product information, worldwide sales and distribution locations:  
Web: www.qorvo.com  
Tel: 1-844-890-8163  
Email: customer.support@qorvo.com  
For technical questions and application information  
Email: appsupport@qorvo.com  
Important Notice  
The information contained herein is believed to be reliable; however, Qorvo makes no warranties regarding the information contained  
herein and assumes no responsibility or liability whatsoever for the use of the information contained herein. All information contained  
herein is subject to change without notice. Customers should obtain and verify the latest relevant information before placing orders for  
Qorvo products. The information contained herein or any use of such information does not grant, explicitly or implicitly, to any party any  
patent rights, licenses, or any other intellectual property rights, whether with regard to such information itself or anything described by  
such information. THIS INFORMATION DOES NOT CONSTITUTE A WARRANTY WITH RESPECT TO THE PRODUCTS DESCRIBED  
HEREIN, AND QORVO HEREBY DISCLAIMS ANY AND ALL WARRANTIES WITH RESPECT TO SUCH PRODUCTS WHETHER  
EXPRESS OR IMPLIED BY LAW, COURSE OF DEALING, COURSE OF PERFORMANCE, USAGE OF TRADE OR OTHERWISE,  
INCLUDING THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE.  
Without limiting the generality of the foregoing, Qorvo products are not warranted or authorized for use as critical components in medical,  
life-saving, or life-sustaining applications, or other applications where a failure would reasonably be expected to cause severe personal  
injury or death.  
Copyright 2019 © Qorvo, Inc. | Qorvo is a registered trademark of Qorvo, Inc.  
Datasheet, March 29, 2019 | Subject to change without notice  
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