QPL9057EVB-01 [QORVO]
Ultra-Low Noise Flat Gain Amplifier;型号: | QPL9057EVB-01 |
厂家: | Qorvo |
描述: | Ultra-Low Noise Flat Gain Amplifier |
文件: | 总12页 (文件大小:1160K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
QPL9057
Ultra-Low Noise Flat Gain Amplifier
®
General Description
The QPL9057 is a flat-gain, high-linearity, ultra-low noise
amplifier in a small 2 x 2 mm surface-mount package. The
LNA provides a gain flatness of 2.4 dB (peak-to-peak) over
a wide bandwidth from 1.5 to 3.8GHz. At 3.5 GHz, the
amplifier typically provides 22.8 dB gain, +32 dBm OIP3 at
a 50 mA bias setting, and 0.54 dB noise figure. The LNA
can be biased from a single positive supply ranging from
3.3 to 5 volts. The device is housed in a green/RoHS-
compliant industry-standard 2x2 mm package.
8 Pin 2X2 mm DFN Package
Product Features
• 0.6-4.2 GHz Operational Bandwidth
• Ultra-low noise figure, 0.54 dB NF @ 3.5 GHz
• >20 dB gain across 1.5 to 3.8 GHz
• Flat 2.4 dB gain variation across 1.7 to 3.8GHz
• Bias adjustable for linearity optimization
• 32 dBm OIP3 at 50mA IDD
• Shut-down mode pin with 1.8V logic
• Unconditionally stable
• Integrated shutdown control pin
The QPL9057 is internally matched using a high-
performance E-pHEMT process and only requires five
external components for operation from a single positive
supply: an external RF choke and blocking/bypass
capacitors and a bias resistor going to pin 1. This LNA
integrates a shut-down biasing capability to allow for
operation in TDD applications.
The QPL9057 is optimized for linear performance across
the 1.5 to 4.2 GHz frequency band but can operate down to
600 MHz.
• Maintains OFF state with high Pin over drive
• +3.3V to +5.25V single supply; does not require -VGG
Functional Block Diagram
Applications
• Repeaters / DAS
Pin 1 Reference Mark
• Mobile Infrastructure
• LTE / WCDMA / CDMA / GSM
• General Purpose Wireless
• TDD or FDD systems
1
2
3
4
8
7
6
5
Vbias
RF In
NC
NC
RF Out
Shut Down
NC
NC
Backside Paddle - RF/DC GND
Top View
Ordering Information
Part No.
QPL9057TR7
Description
2500 pieces on a 7” Reel
QPL9057EVB-01
0.6-4.2 GHz Evaluation Board
Datasheet, Rev. F, Sept 20, 2020 | Subject to change without notice
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QPL9057
®
Ultra-Low Noise Flat Gain Amplifier
Absolute Maximum Ratings
Recommended Operating Conditions
Parameter
Storage Temperature
Rating
−65 to 150°C
+7 V
Parameter
Supply Voltage (VDD)
Min Typ Max Units
3.3
5.0
5.25
+105
+190
V
Supply Voltage (VDD)
TCASE
−40
°C
°C
RF Input Power, CW, 50Ω, T=105°C
RF Input Power, CW, OFF State
+27 dBm
+27 dBm
Tj for >106 hours MTTF
Electrical specifications are measured at specified test conditions.
Specifications are not guaranteed over all recommended operating
conditions.
Operation of this device outside the parameter ranges
given above may cause permanent damage.
Electrical Specifications
Test conditions unless otherwise noted: VDD =+5V, Temp=+25°C, 50 Ω system.
Parameter
Conditions
Min
600
Typ
Max
4200
Units
MHz
MHz
dB
Operational Frequency Range
Test Frequency
Gain
3500
22.8
2.4
13
21.5
25.0
1700-3800MHz
Gain Flatness
dB
Input Return Loss
Output Return Loss
Noise Figure (1)
Output P1dB
dB
12
dB
0.54
17
0.90
dB
14.5
29
dBm
dBm
V
Output IP3
Pout=+5 dBm/tone, Δf=1 MHz
On state
32
0
0.63
VDD
70
Shutdown Control Levels, VSD
LNA Current, IDD
Off state (Power down)
On state
1.17
V
50
3
mA
mA
µA
Off state (Power down)
VSD ≥ 1.17 V, Off state (Power down)
50% VPD to 10% RF output
50% VPD to 90% RF output
channel to case
6
Shutdown Control Current, ISD
LNA Switch OFF Time
LNA Switch ON Time
1
48
91
ns
ns
Thermal Resistance, θjc
40.6
°C/W
Note:
1) Noise figure data has input trace loss de-embedded.
Datasheet, Rev. F, Sept 20, 2020 | Subject to change without notice
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QPL9057
®
Ultra-Low Noise Flat Gain Amplifier
S-Parameters
Test Conditions: VDD=+5 V, IDD=50 mA (typ.), T=+25°C, Reference planes at device pins
Freq (GHz)
S11 (mag)
S11 (ang)
S21 (mag)
S21 (ang)
S12 (mag)
S12 (ang)
S22 (mag)
S22 (ang)
1.0
1.1
1.2
1.3
1.4
1.5
1.6
1.7
1.8
1.9
2.0
2.1
2.2
2.3
2.4
2.5
2.6
2.7
2.8
2.9
3.0
3.1
3.2
3.3
3.4
3.5
3.6
3.7
3.8
3.9
4.0
4.1
4.2
4.3
4.4
4.5
4.6
4.7
4.8
4.9
5.0
5.1
5.2
5.3
5.4
5.5
5.6
5.7
5.8
5.9
6.0
0.363
0.349
0.338
0.333
0.331
0.330
0.332
0.337
0.345
0.354
0.365
0.376
0.390
0.403
0.420
0.434
0.449
0.463
0.473
0.480
0.481
0.478
0.467
0.450
0.428
0.404
0.381
0.357
0.332
0.314
0.296
0.282
0.267
0.252
0.238
0.227
0.216
0.203
0.190
0.178
0.169
0.156
0.141
0.132
0.122
0.112
0.102
0.093
0.090
0.089
0.091
-62.40
-64.72
-66.97
-69.47
-72.56
-75.77
-79.54
-83.50
-88.04
-92.89
-98.45
-104.44
-110.49
-117.36
-124.54
-132.38
-140.69
-149.41
-158.73
-168.68
-179.03
170.34
159.39
148.27
137.38
127.03
116.60
106.24
96.18
83.15
74.96
66.96
58.82
51.86
45.26
39.31
32.68
26.93
20.82
15.55
10.06
4.12
-1.67
-7.43
12.256
11.937
11.726
11.590
11.536
11.540
11.620
11.751
11.924
12.173
12.460
12.798
13.197
13.609
14.058
14.508
14.994
15.403
15.747
15.976
16.074
15.996
15.696
15.228
14.633
13.903
13.101
12.271
11.474
10.730
9.999
9.308
8.687
8.143
7.647
7.182
6.770
6.392
6.056
5.740
5.448
5.181
4.943
4.722
4.515
4.315
4.133
40.27
31.80
23.70
15.99
8.54
0.021
0.021
0.021
0.021
0.021
0.021
0.020
0.020
0.020
0.019
0.019
0.019
0.018
0.018
0.017
0.017
0.016
0.016
0.015
0.014
0.014
0.014
0.013
0.013
0.013
0.013
0.013
0.013
0.013
0.013
0.014
0.014
0.014
0.015
0.015
0.016
0.016
0.017
0.018
0.018
0.019
0.020
0.020
0.021
0.022
0.023
0.024
0.025
0.025
0.026
0.027
-7.21
-11.15
-15.27
-19.39
-23.49
-27.66
-31.88
-36.27
-40.95
-45.86
-51.11
-56.72
-62.58
-68.97
-76.11
-83.90
-92.51
-101.95
-112.06
-123.37
-135.08
-147.69
-160.17
-172.30
175.93
165.17
155.28
146.87
139.24
132.16
127.06
122.02
118.13
114.50
110.83
107.90
105.34
102.88
100.30
97.92
0.079
0.057
0.037
0.022
0.011
0.016
0.025
0.034
0.042
0.050
0.054
0.058
0.065
0.070
0.077
0.090
0.107
0.126
0.150
0.177
0.210
0.242
0.270
0.300
0.327
0.347
0.364
0.378
0.386
0.386
0.392
0.396
0.400
0.403
0.401
0.401
0.402
0.400
0.398
0.397
0.396
0.394
0.394
0.391
0.388
0.388
0.388
0.385
0.389
0.389
0.387
-111.83
-122.11
-134.96
-155.81
153.14
86.83
61.12
47.76
34.14
24.15
1.25
-5.84
-12.88
-19.83
-26.82
-33.85
-41.05
-48.32
-55.92
-63.77
-71.91
-80.39
-89.27
-98.57
-108.18
-118.07
-128.17
-138.34
-148.37
-158.07
-167.45
-176.23
175.47
167.75
160.14
153.51
147.28
141.49
136.02
130.75
125.74
120.86
116.21
111.63
107.27
103.06
98.77
12.78
-1.99
-16.74
-31.21
-47.98
-65.73
-82.09
-97.44
-112.41
-126.71
-139.42
-151.03
-162.97
-174.34
176.01
166.69
157.49
149.10
141.83
134.10
128.18
122.56
117.01
112.77
108.89
104.56
100.53
96.95
93.19
89.45
86.01
82.07
78.96
75.43
71.86
68.09
65.06
61.53
57.47
54.11
95.81
93.45
91.54
89.25
87.22
84.51
82.03
79.79
94.71
90.73
86.71
82.73
78.92
75.14
71.35
67.57
-14.31
-22.69
-32.31
-41.13
-51.19
-63.48
-76.48
3.971
3.818
3.666
3.537
77.65
75.64
73.59
63.84
50.63
Datasheet, Rev. F, Sept 20, 2020 | Subject to change without notice
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QPL9057
®
Ultra-Low Noise Flat Gain Amplifier
Noise Parameters
Test conditions: VDD=+5 V, IDD=50 mA (typ.), T=+25°C, Reference planes at device pins
Freq (GHz)
NFmin (dB)
Gamma Opt (mag)
Gamma Opt (deg)
Rn (Ω)
2.0
0.246
0.283
47.66
0.076
2.2
2.4
2.6
2.8
3.0
3.2
3.4
3.5
3.6
4.0
4.2
4.4
4.6
4.8
5.0
5.2
5.4
5.6
5.8
0.261
0.279
0.315
0.334
0.408
0.413
0.450
0.491
0.531
0.599
0.634
0.686
0.681
0.775
0.817
0.863
0.957
1.051
1.184
0.231
0.213
0.198
0.191
0.146
0.189
0.162
0.131
0.157
0.099
0.142
0.142
0.149
0.102
0.138
0.149
0.134
0.185
0.178
68.48
81.15
0.061
0.054
0.050
0.046
0.053
0.044
0.045
0.048
0.043
0.050
0.051
0.051
0.057
0.069
0.076
0.079
0.092
0.107
0.109
92.03
103.07
110.96
117.92
131.84
143.21
152.91
172.03
-176.97
-160.26
-153.24
-141.49
-132.51
-131.67
-130.72
-114.16
-113.36
Datasheet, Rev. F, Sept 20, 2020 | Subject to change without notice
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QPL9057
®
Ultra-Low Noise Flat Gain Amplifier
QPL9057EVB-01 Evaluation Board
J4 GND
C4
C7
J3 VDD
1 uF
C3
100 pF
100 pF
R4
L1
18 nH
(0603)
C1
C2
1
2
J1
J2
7
Q1
6
RF
Input
RF
Output
100 pF
100 pF
3,4,5,8
R2
0
J5 PD
R1
20K
See notes 4 & 5.
Notes:
1. See Evaluation Board PCB Information section for material and stack-up.
2. R3 (0 Ω jumper) is not shown on the schematic and may be replaced with copper trace in the target application layout.
3. All components are of 0402 size unless stated on the schematic.
4. For TDD Applications: R1 = 20K & R2 = 0Ω
5. For FDD Applications: R1 = 20K ‘OR’ Pin 6 tied to ground. R2 = DNP/Omitted
6. A through line is included on the evaluation board to de-embed the board losses.
7. R4 sets the current draw. Can be changed for the desired bias point.
Bill of Material – QPL9057EVB-01
Reference Des.
PCB
Value Description
Manuf. Part Number
--
Printed Circuit Board
Qorvo
290375
U1
--
Amplifier, Ultra-Low Noise, Flat Gain
Resistor, 0402, 5%, 1/16W
Qorvo
QPL9057
R4
5.1 K
20 K
0 Ω
various
various
various
Coilcraft
various
various
R1
Resistor, 0402, 5%, 1/16W
R2, R3
Resistor, 0402, 5%, 1/16W
0402CS-18NXG
L1
18 nH
1.0 μF
100 pF
Inductor, 0402, 2%,
C4
Capacitor, 0402, 10%, 10V, X5R
Capacitor, 0402, 5%, 50V, NPO/COG
C1, C2, C3, C5, C6
Datasheet, Rev. F, Sept 20, 2020 | Subject to change without notice
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QPL9057
®
Ultra-Low Noise Flat Gain Amplifier
Typical Performance – QPL9057EVB-01
Test conditions unless otherwise noted: VDD=+5 V, IDD=50 mA (typ.), Temp=+25°C
Typical Values
Units
MHz
dB
Parameter
Frequency
Conditions
1800
21.0
7.8
2600
22.7
8.0
3500
22.8
13.0
12.0
17.0
32.0
0.54
Gain
Input Return Loss
Output Return Loss
Output P1dB
OIP3
dB
31.9
17.1
33.8
0.50
15.6
17.1
37.8
0.47
dB
dBm
dBm
dB
Pout=+5 dBm/tone, ∆f=1 MHz
EVB input trace loss de-embedded
Noise figure
Performance Plots – QPL9057EVB-01
Test conditions unless otherwise noted: VDD=+5 V, IDD = 50mA, Temp=+25°C. Noise figure data has input trace loss de-embedded.
Datasheet, Rev. F, Sept 20, 2020 | Subject to change without notice
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QPL9057
®
Ultra-Low Noise Flat Gain Amplifier
Typical Performance – VDD +3.3 V, R4 2.49 KΩ
Test conditions unless otherwise noted: VDD=+3.3 V, IDD=50 mA (typ.), Temp=+25°C
Typical Values
Units
MHz
dB
Parameter
Frequency
Conditions
1800
20.6
8.0
2600
22.1
8.4
3500
22.7
12.5
12.8
157
Gain
Input Return Loss
Output Return Loss
Output P1dB
OIP3
dB
29.4
17.7
32.4
0.48
16.1
16.2
37.0
0.50
dB
dBm
dBm
dB
Pout=+5 dBm/tone, ∆f=1 MHz
32.5
0.60
EVB input trace loss de-embedded
Noise figure
Performance Plots – VDD +3.3 V, R4 2.49KΩ
Test conditions unless otherwise noted: VDD +3.3 V, IDD 50mA, Temp +25°C. Noise figure data has input trace loss de-embedded.
Datasheet, Rev. F, Sept 20, 2020 | Subject to change without notice
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QPL9057
®
Ultra-Low Noise Flat Gain Amplifier
Pin Configuration and Description
Pin 1 Reference Mark
1
8
Vbias
NC
2
7
RF In
RF Out
3
6
5
NC
Shut Down
NC
4
NC
Backside Paddle - RF/DC GND
Pin No.
1
Label
Vbias
RF In
Description
Sets the IDQ bias point for the device.
2
RF Input pin. A DC Block is required.
VSD ≥ 1.17V turns off the device. If the pin is pulled to ground or driven with a
voltage ≤ 0.63V, then the device will operate under LNA ON state.
RF Output pin. DC bias will also need to be injected through a RF bias
choke/inductor for operation.
6
Shut Down
7
RF Out / DC Bias
NC
3, 4, 5, 8
No electrical connection. Provide grounded land pads for PCB mounting integrity.
Backside
Paddle
RF/DC ground. Use recommended via hole pattern to minimize inductance and
thermal resistance; see PCB Mounting Pattern for suggested footprint.
RF/DC GND
Evaluation Board PCB Information
Qorvo PCB 290375 Material and Stack-up
1 oz. Cu top layer
Rogers 4350B
0.010"
εr=3.7 typ.
1 oz. Cu inner layer
0.062" ± 0.006"
Finished Board
Thickness
Rogers 4450F
Rogers 4350B
1 oz. Cu inner layer
1 oz. Cu bottom layer
0.010"
50 ohm line dimensions: width = 0.020”, spacing = 0.032”
Datasheet, Rev. F, Sept 20, 2020 | Subject to change without notice
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QPL9057
®
Ultra-Low Noise Flat Gain Amplifier
Mechanical Information
Package Marking and Dimensions
Marking: Part number – 9057
Trace code – XXXX
9057
Notes:
1. All dimensions are in millimeters. Angles are in degrees.
2. Except where noted, this part outline conforms to JEDEC standard MO-220, Issue E (Variation VGGC) for thermally enhanced
plastic very thin fine pitch dual flat no lead package (DFN).
3. Dimension and tolerance formats conform to ASME Y14.4M-1994.
4. The terminal #1 identifier and terminal numbering conform to JESD 95-1 SPP-012.
PCB Mounting 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, Rev. F, Sept 20, 2020 | Subject to change without notice
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QPL9057
®
Ultra-Low Noise Flat Gain Amplifier
Tape and Reel Information – Carrier and Cover Tape Dimensions
Feature
Measure
Symbol
Size (in)
0.091
0.091
0.039
0.157
0.079
0.138
0.213
0.315
Size (mm)
2.30
Length
A0
B0
K0
P1
P2
F
Width
2.30
Cavity
Depth
1.30
Pitch
4.00
Cavity to Perforation - Length Direction
2.00
Centerline Distance
Cavity to Perforation - Width Direction
3.50
Cover Tape
Carrier Tape
Width
Width
C
5.40
W
8.00
Datasheet, Rev. F, Sept 20, 2020 | Subject to change without notice
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QPL9057
®
Ultra-Low Noise Flat Gain 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
0.559
0.346
2.283
0.512
0.079
0.787
Size (mm)
177.00
14.20
Diameter
A
W2
W1
N
Flange
Thickness
Space Between Flange
Outer Diameter
Arbor Hole Diameter
Key Slit Width
Key Slit Diameter
8.80
58.00
C
13.00
Hub
B
2.00
D
20.00
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, Rev. F, Sept 20, 2020 | Subject to change without notice
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QPL9057
®
Ultra-Low Noise Flat Gain Amplifier
Handling Precautions
Parameter
Rating
Standard
ESDꢀ–ꢀHuman Body Model (HBM)
Class 1B
ESDAꢁ/ꢁJEDEC JS-001-2014
ESDA / JEDEC JS-002-2014
IPC/JEDEC J-STD-020
Caution!
ESD-Sensitive Device
ESDꢀ–ꢀCharged Device Model (CDM) Class C3
MSLꢀ–ꢀMoisture Sensitivity Level
Level 1
Solderability
Compatible with lead-free (260°C max. reflow temp.) soldering process.
Solder profiles available upon request.
Contact plating - NiPdAu (Thickness: Ni 0.508 ~1.524 μm; Pd 0.023 ~ 0.1016 μm; Au 0.00254 ~ 0.01016 μm)
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
• 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
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 2020 © Qorvo, Inc. | Qorvo is a registered trademark of Qorvo, Inc.
Datasheet, Rev. F, Sept 20, 2020 | Subject to change without notice
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