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  • TQP3M9037图
  • 集好芯城

     该会员已使用本站13年以上
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  • 数量26177 
  • 厂家TriQuint (Qorvo) 
  • 封装 
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  • HECC GROUP CO.,LIMITED

     该会员已使用本站17年以上
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  • 数量7040 
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  • 封装QFN 
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  • 1545
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  • 深圳市恒达亿科技有限公司

     该会员已使用本站16年以上
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  • 数量8000 
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  • 封装DFN-8 
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  • HECC GROUP CO.,LIMITED

     该会员已使用本站17年以上
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  • 数量7040 
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  • 数量10000 
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  • 深圳市华来深电子有限公司

     该会员已使用本站13年以上
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  • 数量1000 
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  • 深圳市湘达电子有限公司

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  • 数量1800 
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  • 深圳市华兴微电子有限公司

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  • 数量27000 
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  • 深圳市创德丰电子有限公司

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  • 深圳市湘达电子有限公司

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  • 数量2800 
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  • 绝对全新原装现货,欢迎来电查询
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  • 深圳市华兴微电子有限公司

     该会员已使用本站16年以上
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  • 封装N/A 
  • 批号2201+ 
  • 公司现货,实单专线请联系后面QQ或电话
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  • 深圳市拓森弘电子有限公司

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  • TQP3M9037
  • 数量5300 
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  • 深圳市得捷芯城科技有限公司

     该会员已使用本站11年以上
  • TQP3M9037
  • 数量26348 
  • 厂家QORVO 
  • 封装QFN8 
  • 批号23+ 
  • 原厂可订货,技术支持,直接渠道。可签保供合同
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  • 集好芯城

     该会员已使用本站13年以上
  • TQP3M9037
  • 数量14532 
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  • 封装DFN 
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  • 深圳市硅诺电子科技有限公司

     该会员已使用本站8年以上
  • TQP3M9037
  • 数量6215 
  • 厂家TRIQUINT 
  • 封装DFN8 
  • 批号17+ 
  • 原厂指定分销商,有意请来电或QQ洽谈
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  • 深圳市羿芯诚电子有限公司

     该会员已使用本站7年以上
  • TQP3M9037
  • 数量7430 
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  • 封装NA 
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  • 深圳市得捷芯城科技有限公司

     该会员已使用本站11年以上
  • TQP3M9037
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  • 深圳市惊羽科技有限公司

     该会员已使用本站11年以上
  • TQP3M9037
  • 数量6328 
  • 厂家QORVO 
  • 封装DFN-8.贴片 
  • 批号▉▉:2年内 
  • ▉▉¥32.7元一有问必回一有长期订货一备货HK仓库
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  • 深圳市毅创腾电子科技有限公司

     该会员已使用本站16年以上
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  • 数量116107 
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  • 深圳市羿芯诚电子有限公司

     该会员已使用本站7年以上
  • TQP3M9037
  • 数量8500 
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  • 深圳市一呈科技有限公司

     该会员已使用本站9年以上
  • TQP3M9037
  • 数量3850 
  • 厂家TriQuint (超群) 
  • 封装原装原封REEL 
  • 批号23+ 
  • ▉原装现货▉可含税可订货
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  • 深圳市英德州科技有限公司

     该会员已使用本站2年以上
  • TQP3M9037
  • 数量32500 
  • 厂家Qorvo(威讯联合) 
  • 封装 
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  • 深圳市华斯顿电子科技有限公司

     该会员已使用本站16年以上
  • TQP3M9037
  • 数量12500 
  • 厂家TRIQUIN 
  • 封装DFN8 
  • 批号2023+ 
  • 绝对原装全新正品现货/优势渠道商、原盘原包原盒
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  • 深圳市意好科技有限公司

     该会员已使用本站15年以上
  • TQP3M9037
  • 数量6800 
  • 厂家TriQuint 
  • 封装原厂 
  • 批号24+ 
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  • 深圳市创德丰电子有限公司

     该会员已使用本站15年以上
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  • 厂家TRIQUINT 
  • 封装QFN 
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  • 北京顺科电子科技有限公司

     该会员已使用本站8年以上
  • TQP3M9037
  • 数量5500 
  • 厂家Qorvo 
  • 封装SO//DIP 
  • 批号21+ 
  • 进口品牌//国产品牌代理商18911556207
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  • 深圳市华来深电子有限公司

     该会员已使用本站13年以上
  • TQP3M9037
  • 数量8600 
  • 厂家TRIQUINT 
  • 封装DFN8 
  • 批号17+ 
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  • 千层芯半导体(深圳)有限公司

     该会员已使用本站9年以上
  • TQP3M9037
  • 数量25000 
  • 厂家Qorvo 
  • 封装QFN 
  • 批号2019+ 
  • “芯达集团”专营军工、宇航级IC原装进口现货
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  • 深圳市励创源科技有限公司

     该会员已使用本站2年以上
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  • 数量35600 
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  • 万三科技(深圳)有限公司

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  • 数量660000 
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  • 深圳市羿芯诚电子有限公司

     该会员已使用本站7年以上
  • TQP3M9037
  • 数量5660 
  • 厂家Qorvo(威讯联合) 
  • 封装DFN-8 
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产品型号TQP3M9037的概述

TQP3M9037芯片概述及其应用 一、概述 TQP3M9037是一款高性能的功率放大器芯片,广泛应用于无线通信领域,特别是在微波频段的无线电频率(RF)应用中。该芯片由著名的RF和微波元件制造商设计,旨在提供高增益、宽带宽及良好的线性度,支持多种无线通信标准,包括WiFi、蓝牙和4G/LTE等。 二、详细参数 在选择和使用TQP3M9037芯片时,了解其详细参数是非常重要的。以下是该芯片的核心技术参数: - 频率范围:TQP3M9037在500MHz至6GHz的频率范围内工作,适用于各种无线通信应用。 - 增益:该芯片提供的功率增益达到22 dB,确保信号在传输过程中得以有效放大。 - 线性度:TQP3M9037具有良好的线性度,符合多种线性应用的需求,具有高达30 dBm的输出功率,能有效减少相互干扰。 - 功耗:在典型工作条件下,TQP3M9037的静态功耗为120 mA。功耗...

产品型号TQP3M9037的Datasheet PDF文件预览

TQP3M9037  
Ultra Low Noise, High Linearity LNA  
Applications  
Repeaters  
Mobile Infrastructure  
LTE / WCDMA / CDMA / GSM  
General Purpose Wireless  
TDD or FDD systems  
8 pin 2x2 mm DFN Package  
Product Features  
Functional Block Diagram  
0.7-6.0 GHz Operational Bandwidth  
Ultra low noise figure, 0.4 dB NF @ 1.95 GHz  
High gain, 20 dB Gain @ 1.95 GHz  
High linearity, +35 dBm Output IP3  
High input power ruggedness, 22 dBm CW  
Unconditionally stable  
Pin 1 Reference Mark  
1
2
3
4
8
7
6
5
NC  
RF In  
NC  
NC  
RF Out  
Shut Down  
NC  
Integrated on-chip matching, 50 ohm in/out  
Integrated active bias  
NC  
Integrated shutdown control pin  
+3V to +5V supply; does not require -Vgg  
Pin compatible with low-band TQP3M9036  
Backside Paddle - RF/DC GND  
General Description  
Pin Configuration  
The TQP3M9037 is a high-linearity, ultra-low noise gain  
block amplifier in a small 2x2 mm surface-mount  
package. At 1.95 GHz, the amplifier typically provides  
20 dB gain, +35 dBm OIP3, and 0.4 dB noise figure  
while drawing 70 mA current from a 5V supply. This  
amplifier does not require a negative supply for  
operation and 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.  
Pin No.  
1, 3, 4, 5, 8  
Label  
No Connect or GND  
2
RF In  
6
Shut Down  
RF Out  
7
Backside Paddle  
RF/DC GND  
The TQP3M9037 is internally matched using a high  
performance E-pHEMT process and only requires four  
external components for operation from a single positive  
supply: an external RF choke and blocking/bypass  
capacitors. This low noise amplifier contains an internal  
active bias to maintain high performance over  
Ordering Information  
temperature and integrates  
capability to allow for operation for TDD applications.  
a
shut-down biasing  
Part No.  
Description  
TQP3M9037  
Ultra low noise, High IP3 LNA  
The TQP3M9037 covers the 0.7-6.0 GHz frequency  
band and is targeted for wireless infrastructure. It is pin  
compatible with the low-band, 0.4-2.0 GHz TQP3M9036.  
TQP3M9037-PCB  
0.7-6.0 GHz Evaluation Board  
Standard T/R size = 2500 pieces on a 7” reel  
Disclaimer: Subject to change without notice  
Datasheet: Rev M 12-18-14  
- 1 of 14 -  
© 2014 TriQuint  
www.triquint.com  
TQP3M9037  
Ultra Low Noise, High Linearity LNA  
Absolute Maximum Ratings  
Recommended Operating Conditions  
Parameter  
Rating  
Parameter  
Min Typ Max Units  
Storage Temperature  
Supply Voltage (VDD)  
RF Input Power, CW, 50Ω, T=25°C  
65 to 150°C  
Supply Voltage (VDD)  
3.3  
5.0  
5.25  
V
+7 V  
TCASE  
40  
+85  
°C  
°C  
+22 dBm  
Tj for >106 hours MTTF  
+190  
Operation of this device outside the parameter ranges  
given above may cause permanent damage.  
Electrical specifications are measured at specified test  
conditions. Specifications are not guaranteed over all  
recommended operating conditions.  
Electrical Specifications  
Test conditions unless otherwise noted: VDD =+5V, Temp=+25°C, 50 Ω system.  
Parameter  
Conditions  
Min  
700  
Typ  
Max  
6000  
Units  
MHz  
MHz  
dB  
Operational Frequency Range  
Test Frequency  
Gain  
1950  
20.0  
10  
18.5  
21.5  
0.65  
Input Return Loss  
Output Return Loss  
Noise Figure  
dB  
11  
dB  
0.40  
+20  
+35  
dB  
Output P1dB  
dBm  
dBm  
V
Output IP3  
Pout=+5 dBm/tone, Δf=1 MHz  
On state  
+32  
0
0.4  
VDD  
90  
4
Power Shutdown Control (VPD)1  
Off state (Power down)  
On state  
2.5  
40  
3.3  
70  
V
mA  
mA  
µA  
Current, IDD  
Off state (Power down)  
VPD 2.5 V  
3
Shutdown pin current, ISD  
140  
Thermal Resistance, θjc  
channel to case  
53.4  
°C/W  
Notes:  
1. This voltage is referred to the turret labelled PD on the TriQuint EVB as shown on pg. 4.  
Datasheet: Rev M 12-18-14  
Disclaimer: Subject to change without notice  
- 2 of 14 -  
© 2014 TriQuint  
www.triquint.com  
TQP3M9037  
Ultra Low Noise, High Linearity LNA  
S-Parameters  
Test Conditions: VDD=+5 V, IDD=70 mA (typ.), T=+25°C, unmatched 50 ohm system, calibrated to device leads  
Freq (GHz) S11 (dB)  
S11 (ang)  
S21 (dB)  
S21 (ang)  
S12 (dB)  
S12 (ang)  
S22 (dB)  
S22 (ang)  
0.05  
0.10  
0.20  
0.40  
0.60  
0.80  
1.00  
1.20  
1.40  
1.60  
1.80  
2.00  
2.20  
2.40  
2.60  
2.80  
3.00  
3.20  
3.40  
3.60  
3.80  
4.00  
4.20  
4.40  
4.60  
4.80  
5.00  
-7.08  
-7.30  
-7.55  
-7.89  
-8.28  
-8.67  
-9.10  
-9.48  
-9.97  
-10.36  
-10.78  
-11.14  
-11.43  
-11.54  
-11.50  
-11.30  
-10.90  
-10.45  
-9.89  
-9.29  
-8.86  
-8.32  
-8.03  
-7.68  
-7.40  
-7.21  
-6.35  
-13.38  
-16.67  
-27.25  
-48.81  
-67.86  
-82.83  
-96.01  
-106.85  
-116.61  
-126.05  
-135.06  
-144.52  
-153.91  
-163.77  
-174.25  
175.64  
166.39  
157.46  
150.34  
144.41  
140.00  
136.87  
133.99  
136.01  
136.69  
140.78  
149.93  
28.74  
28.70  
28.51  
27.68  
26.67  
25.57  
24.54  
23.55  
22.63  
21.78  
20.99  
20.28  
19.61  
19.00  
18.41  
17.86  
17.33  
16.79  
16.29  
15.76  
15.22  
14.67  
14.10  
13.50  
12.83  
12.13  
11.26  
173.92  
169.79  
160.47  
143.44  
128.94  
116.72  
106.22  
97.05  
88.79  
81.19  
74.13  
67.42  
60.92  
54.49  
48.28  
41.94  
35.76  
29.69  
23.57  
17.56  
11.78  
6.13  
-32.91  
-32.76  
-32.60  
-32.47  
-32.31  
-31.94  
-31.49  
-30.96  
-30.34  
-29.81  
-29.42  
-28.85  
-28.45  
-27.99  
-27.67  
-27.19  
-26.85  
-26.50  
-26.19  
-25.95  
-25.75  
-25.57  
-25.50  
-25.43  
-25.38  
-25.53  
-25.78  
8.58  
4.97  
-15.03  
-14.12  
-13.67  
-13.09  
-12.61  
-12.17  
-11.87  
-11.62  
-11.45  
-11.41  
-11.43  
-11.56  
-11.79  
-12.17  
-12.63  
-13.20  
-13.86  
-14.51  
-14.74  
-14.57  
-13.78  
-12.70  
-11.25  
-10.05  
-8.64  
0.20  
2.20  
5.69  
-1.25  
8.81  
-6.33  
11.76  
14.83  
16.95  
17.84  
19.60  
19.78  
19.53  
19.14  
19.04  
17.71  
16.22  
14.85  
12.36  
10.04  
8.06  
-12.97  
-19.29  
-25.85  
-31.76  
-37.19  
-42.80  
-47.57  
-53.18  
-58.28  
-64.71  
-71.10  
-79.45  
-89.04  
-101.79  
-116.68  
-133.42  
-148.27  
-161.52  
-169.83  
-178.99  
175.79  
170.49  
163.10  
5.99  
3.39  
1.64  
0.74  
-1.15  
-2.83  
-4.24  
-5.31  
-6.38  
-4.52  
-9.19  
-13.41  
-16.91  
-7.25  
-6.41  
Noise Parameters  
Test conditions unless otherwise noted: VDD=+5 V, IDD=70 mA (typ.), Temp=+25°C, 50 Ohm system  
Freq (GHz)  
NFmin (dB)  
0.40  
0.29  
0.3  
MagOpt (mag)  
0.15  
AngOpt (deg)  
14.1  
Rn (Ω)  
0.08  
0.06  
0.06  
0.06  
0.05  
0.05  
0.05  
0.05  
0.06  
0.04  
0.05  
1.5  
1.7  
1.8  
1.9  
2
2.1  
2.2  
2.4  
2.5  
2.6  
2.7  
0.16  
0.13  
0.11  
0.11  
0.13  
0.14  
0.06  
0.02  
43.7  
55.1  
30.2  
65.3  
77.6  
89.0  
85.8  
42.1  
0.30  
0.32  
0.32  
0.35  
0.43  
0.51  
0.46  
0.46  
0.08  
0.07  
157.4  
148.6  
Datasheet: Rev M 12-18-14  
Disclaimer: Subject to change without notice  
- 3 of 14 -  
© 2014 TriQuint  
www.triquint.com  
TQP3M9037  
Ultra Low Noise, High Linearity LNA  
TQP3M9037-PCB Evaluation Board  
C4  
J3 VDD  
J5  
J4  
J3  
1 uF  
J4 GND  
C3  
3
R
C4  
C3  
100 pF  
L1  
C1  
C2  
U1  
18 nH  
(0603)  
R2  
C1  
C2  
J1  
J2  
2
7
Q1  
6
RF  
Input  
RF  
Output  
100 pF  
100 pF  
1,3,4,5,8  
R2  
33k  
J5 PD  
C5  
C6  
R1  
10k Ω  
See note 6. Resistors are  
not needed if shut-down  
functionality is not used.  
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. C1, C2, and C3 are non-critical values. The reactive impedance should be as low as possible at the frequency of operation for optimal  
performance.  
5. The L1 value is non-critical and needs to provide high reactive impedance at the frequency of operation.  
6. R1 and R2 are optional and do not need to be loaded if the shut-down functionality is not needed; i.e. FDD applications. If R1 and R2 are not  
loaded, the LNA will operate in its standard “ON” state.  
7. A through line is included on the evaluation board to de-embed the board losses.  
Bill of Material − TQP3M9037-PCB  
Reference Des.  
N/A  
U1  
R1  
R2  
R3  
L1  
C4  
Value  
N/A  
n/a  
10K Ω  
33K Ω  
0 Ω  
18 nH  
1.0 uF  
100 pF  
Description  
Printed Circuit Board  
Manuf.  
TriQuint  
TriQuint  
various  
various  
various  
various  
various  
various  
Part Number  
1084112  
TQP3M9037  
Ultra Low Noise, High Linearity LNA  
Resistor, Chip, 0402, 5%, 1/16W  
Resistor, Chip, 0402, 5%, 1/16W  
Resistor, Chip, 0402, 5%, 1/16W  
Inductor, 0603, 5%, Ceramic  
Cap., Chip, 0402, 10%, 10V, X5R  
Cap., Chip, 0402, 5%, 50V, NPO/COG  
C1, C2, C3, C5, C6  
Resistive Divider Values  
VPD Signal Level  
R1  
R2  
3.3V TTL  
10K  
2.5V TTL  
11K  
1.8V TTL  
12K  
Units  
33K  
33K  
33K  
Datasheet: Rev M 12-18-14  
Disclaimer: Subject to change without notice  
- 4 of 14 -  
© 2014 TriQuint  
www.triquint.com  
TQP3M9037  
Ultra Low Noise, High Linearity LNA  
Typical Performance − TQP3M9037-PCB VDD = 5V  
Test conditions unless otherwise noted: VDD=+5 V, IDD=70 mA (typ.), Temp=+25°C  
Typical Values  
Units  
MHz  
dB  
Parameter  
Frequency  
Conditions  
900  
25.3  
7.4  
1700  
21.4  
9.6  
1950  
20.4  
10.1  
11.0  
+20  
2300  
2600  
18.1  
10.9  
9.8  
Gain  
19.1  
10.5  
Input Return Loss  
Output Return Loss  
Output P1dB  
OIP3  
dB  
11.7  
+22  
11.6  
+20.7  
+34.9  
0.36  
10.2  
dB  
+19.8  
+35.1  
0.43  
+19.5  
+35.0  
0.53  
dBm  
dBm  
dB  
Pout=+5 dBm/tone, ∆f=1 MHz +34.4  
+35.7  
0.41  
Noise figure (1)  
0.4  
Notes:  
1. Noise figure data shown in the table above is de-embedded to the device pin pads.  
Datasheet: Rev M 12-18-14  
Disclaimer: Subject to change without notice  
- 5 of 14 -  
© 2014 TriQuint  
www.triquint.com  
TQP3M9037  
Ultra Low Noise, High Linearity LNA  
Performance Plots − TQP3M9037-PCB VDD = 5V  
Test conditions unless otherwise noted: VDD=+5 V, IDD=70 mA (typ.), Temp=+25°C  
Gain vs. Frequency  
Input Return Loss vs. Frequency  
Output Return Loss vs. Frequency  
30  
25  
20  
15  
10  
0
-5  
0
-5  
+85°C  
+25°C  
−40°C  
+85°C  
+25°C  
−40°C  
+85°C  
+25°C  
−40°C  
-10  
-15  
-20  
-10  
-15  
0
1000  
2000  
3000  
4000  
5000  
6000  
0
1000  
2000  
3000  
4000  
5000  
6000  
0
1000  
2000  
3000  
4000  
5000  
6000  
Frequency (MHz)  
Frequency (MHz)  
Frequency (MHz)  
OIP3 vs. Pout/tone at -40ºC  
OIP3 vs. Pout/tone at +25ºC  
OIP3 vs. Pout/tone at +85ºC  
40  
40  
40  
1700 MHz  
1950 MHz  
2300 MHz  
2600 MHz  
3000 MHz  
3500 MHz  
38  
36  
34  
32  
30  
38  
36  
34  
32  
30  
38  
36  
34  
32  
30  
1700 MHz  
1700 MHz  
1950 MHz  
2300 MHz  
2600 MHz  
1950 MHz  
2300 MHz  
2600 MHz  
0
1
2
3
4
5
6
7
8
9
10  
0
1
2
3
4
5
6
7
8
9
10  
0
1
2
3
4
5
6
7
8
9
10  
Pout/Tone (dBm)  
Pout/Tone (dBm)  
Pout/Tone (dBm)  
OIP3 vs Pout/tone at +25ºC  
Noise Figure vs. Frequency  
35  
33  
31  
29  
27  
25  
1.6  
1.4  
1.2  
1
+85°C  
+25°C  
−40°C  
0.8  
0.6  
0.4  
0.2  
0
3500 MHz  
4000 MHz  
4500 MHz  
5000 MHz  
5500 MHz  
6000 MHz  
-5  
-3  
-1  
1
3
5
1500 2000 2500 3000 3500 4000 4500 5000 5500 6000  
Pout/tone (dBm)  
Frequency (MHz)  
Isolation vs. Frequency  
OFF State Pin Stress Test  
Idd vs. Shutdown Voltage  
-19  
-20  
-21  
-22  
-23  
-24  
-25  
-26  
-27  
-28  
-29  
30  
20  
70  
60  
50  
40  
30  
20  
10  
0
90  
OFF Mode  
Vpd > 2.5V  
Temp.=+25°C  
75  
60  
45  
30  
15  
0
10  
0
-10  
-20  
-30  
-40  
Pout  
Current, Id  
0
1
2
3
4
5
500  
1000  
1500  
2000  
2500  
3000  
3500  
4000  
-15  
-10  
-5  
0
5
10  
Shutdown Voltage (V)  
Frequency (MHz)  
Pin (dBm)  
Datasheet: Rev M 12-18-14  
Disclaimer: Subject to change without notice  
- 6 of 14 -  
© 2014 TriQuint  
www.triquint.com  
TQP3M9037  
Ultra Low Noise, High Linearity LNA  
Typical Performance − TQP3M9037-PCB VDD = 3.3V  
Test conditions unless otherwise noted: VDD = +3.3V, IDD = 44 mA (typ.), Temp= +25°C  
Typical Values  
Units  
MHz  
dB  
Parameter  
Frequency  
Conditions  
1700  
19.9  
8.3  
1950  
19.2  
9.2  
2300  
17.7  
9.5  
2600  
17.0  
10.5  
9.5  
Gain  
Input Return Loss  
Output Return Loss  
Output P1dB  
OIP3  
dB  
11.3  
+16.2  
+30.6  
0.4  
11.3  
+16.1  
+31  
9.5  
dB  
+15.5  
+30.5  
0.44  
+15.5  
+30.7  
0.53  
dBm  
dBm  
dB  
Pout = +5 dBm/tone, ∆f=1 MHz  
Noise figure (1)  
0.38  
Notes:  
1. Noise figure data shown in the table above is de-embedded from the eval board loss.  
Performance Plots − TQP3M9037-PCB VDD = 3.3V  
Test conditions unless otherwise noted: VDD = +3.3V, IDD = 44 mA (typ.), Temp= +25°C  
Gain vs. Frequency  
Input Return Loss vs. Frequency  
Output Return Loss vs. Frequency  
25  
22  
19  
16  
13  
10  
0
-5  
0
-5  
-10  
-10  
-15  
-15  
1500  
2000  
2500  
3000  
3500  
4000  
1500  
2000  
2500  
3000  
3500  
4000  
1500  
2000  
2500  
3000  
3500  
4000  
Frequency (MHz)  
Frequency (MHz)  
Frequency (MHz)  
OIP3 vs. Pout/tone  
Noise Figure vs. Frequency  
35  
1
VDD = 3.3V  
VDD = 3.3V  
1 MHz Tone Spacing  
33  
31  
29  
27  
0.8  
0.6  
0.4  
1700 MHz  
0.2  
1950 MHz  
2300 MHz  
2600 MHz  
0
1700  
25  
0
1850  
2000  
2150  
2300  
2450  
2600  
2
4
6
8
10  
Pout/Tone (dBm)  
Frequency (MHz)  
Datasheet: Rev M 12-18-14  
Disclaimer: Subject to change without notice  
- 7 of 14 -  
© 2014 TriQuint  
www.triquint.com  
TQP3M9037  
Ultra Low Noise, High Linearity LNA  
Reference Design – Optimized Return Loss  
C4  
J5  
J4  
J3  
J3 VDD  
1 uF  
3
J4 GND  
C3  
R
C4  
C3  
100 pF  
L1  
5.6 nH  
(0603)  
C1  
C2  
U1  
C1  
C2  
J1  
J2  
2
7
R2  
Q1  
6
RF  
Input  
RF  
Output  
3.3 pF  
100 pF  
L2  
1,3,4,5,8  
3.9 nH  
R2  
Notes:  
33k  
J5 PD  
1.Distance from input pin of U1  
to right edge of C1 = 100mil.  
C5  
C6  
R1  
10k Ω  
Bill of Material  
Reference Des.  
Value Description  
Manuf. Part Number  
n/a  
n/a  
Printed Circuit Board  
TriQuint  
TriQuint  
various  
various  
various  
various  
various  
various  
various  
various  
1084112  
U1  
n/a  
Ultra Low Noise Amplifier  
TQP3M9037  
R1  
10K Ω  
33K Ω  
0 Ω  
Resistor, Chip, 0402, 5%, 1/16W  
Resistor, Chip, 0402, 5%, 1/16W  
Resistor, Chip, 0402, 5%, 1/16W  
Inductor, 0603, 5%, Ceramic  
Inductor, 0402, 5%, Ceramic  
R2  
R3  
L1  
5.6 nH  
3.9 nH  
3.3 pF  
1.0 uF  
100 pF  
L2  
C1  
Cap, Chip, 0402, ±0.25 pF, 50V, NPO/COG  
Cap, Chip, 0402, 10%, 10V, X5R  
C4  
C2, C3, C5, C6  
Cap, Chip, 0402, 5%, 50V, NPO/COG  
Performance Plots  
Test conditions unless otherwise noted: VDD = +5V, IDD = 70 mA (typ.), Temp= +25°C  
Gain vs. Frequency  
Return Loss vs. Frequency  
Noise Figure vs. Frequency  
25  
23  
21  
19  
17  
15  
0
-5  
0.8  
0.7  
0.6  
0.5  
0.4  
0.3  
Temp.=+25°C  
Temp.=+25°C  
Temp.=+25°C  
S22  
S11  
-10  
-15  
-20  
-25  
1700  
1800  
1900  
2000  
2100  
2200  
1700  
1800  
1900  
2000  
2100  
2200  
1910  
1930  
1950  
1970  
1990  
Frequency (MHz)  
Frequency (MHz)  
Frequency (MHz)  
Datasheet: Rev M 12-18-14  
Disclaimer: Subject to change without notice  
- 8 of 14 -  
© 2014 TriQuint  
www.triquint.com  
TQP3M9037  
Ultra Low Noise, High Linearity LNA  
Evaluation Board: 2300 – 2600 MHz Reference Design  
C4  
J3 VDD  
J5  
J4  
J3  
1 uF  
C3  
J4 GND  
3
R
100 pF  
C2  
C4  
C3  
L1  
5.6nH  
C1  
C2  
U1  
J1  
J2  
2
7
C5  
2.4 pF  
Q1  
R2  
6
RF  
Input  
RF  
Output  
100 pF  
L2  
1,3,4,5,8  
2.7 nH  
R2  
33k  
J5 PD  
C5  
C6  
R1  
10k Ω  
Performance Plots: 2300 – 2600 MHz Reference Design  
Noise Figure vs. Frequency  
Gain vs. Frequency  
Return Loss vs. Frequency  
22  
21  
20  
19  
18  
17  
0
1
0.8  
0.6  
0.4  
0.2  
0
-5  
-10  
-15  
-20  
-25  
Input return Loss  
Output return Loss  
2300  
2350  
2400  
2450  
2500  
2550  
2600  
2300  
2350  
2400  
2450  
2500  
2550  
2600  
2300  
2350  
2400  
2450  
2500  
2550  
2600  
Frequency (MHz)  
Frequency (MHz)  
Frequency (MHz)  
Bill of Material: 2300 – 2600 MHz Reference Design  
Reference Des.  
Value  
n/a  
Description  
Manuf.  
TriQuint  
TriQuint  
various  
various  
various  
Coilcraft  
TOKO  
Part Number  
n/a  
Printed Circuit Board  
U1  
n/a  
Ultra Low Noise Amplifier  
TQP3M9037  
R1  
10K Ω  
33K Ω  
0 Ω  
Resistor, Chip, 0402, 5%, 1/16W  
Resistor, Chip, 0402, 5%, 1/16W  
Resistor, Chip, 0402, 5%, 1/16W  
Inductor, 0603, 5%, Ceramic  
Inductor, 0402, 5%, Ceramic  
Cap, Chip, 0402, ±0.25 pF, 50V, NPO/COG  
Cap, Chip, 0402, 10%, 10V, X5R  
Cap, Chip, 0402, 5%, 50V, NPO/COG  
R2  
R3  
L1  
5.6 nH  
2.7 nH  
2.4 pF  
1.0 uF  
100 pF  
0603CS-5N6XJL  
LL1005-FHL2N7S  
04023J2R4BBSTR  
L2  
C1  
AVX  
C4  
various  
various  
C2, C3, C5, C6  
Datasheet: Rev M 12-18-14  
Disclaimer: Subject to change without notice  
- 9 of 14 -  
© 2014 TriQuint  
www.triquint.com  
TQP3M9037  
Ultra Low Noise, High Linearity LNA  
Evaluation Board: 3400 -3600 MHz Reference Design  
C4  
J3 VDD  
1 uF  
C3  
J4 GND  
100 pF  
C2  
L1  
5.6nH  
J1  
J2  
2
7
C1  
100 pF  
Q1  
6
RF  
Input  
RF  
Output  
100 pF  
1,3,4,5,8  
R2  
33k  
J5 PD  
R1  
10k Ω  
Performance Plots: 3400 -3600 MHz Reference Design  
Gain vs. Frequency  
Return Loss vs. Frequency  
Noise Figure vs. Frequency  
18  
17  
16  
15  
14  
13  
0
-5  
1
0.9  
0.8  
0.7  
0.6  
0.5  
0.4  
0.3  
0.2  
0.1  
0
-10  
-15  
-20  
Input Return Loss  
Output Return Loss  
3400  
3450  
3500  
3550  
3600  
3400  
3450  
3500  
3550  
3600  
3400  
3450  
3500  
3550  
3600  
Frequency (MHz)  
Frequency (MHz)  
Frequency (MHz)  
Bill of Material: 3400 -3600 MHz Reference Design  
Reference Des.  
Value  
n/a  
Description  
Manuf.  
Part Number  
n/a  
Printed Circuit Board  
TriQuint  
TriQuint  
various  
various  
various  
Coilcraft  
various  
various  
U1  
n/a  
Ultra Low Noise Amplifier  
TQP3M9037  
R1  
10K Ω  
33K Ω  
0 Ω  
Resistor, Chip, 0402, 5%, 1/16W  
Resistor, Chip, 0402, 5%, 1/16W  
Resistor, Chip, 0402, 5%, 1/16W  
Inductor, 0603, 5%, Ceramic  
Cap, Chip, 0402, 10%, 10V, X5R  
Cap, Chip, 0402, 5%, 50V, NPO/COG  
R2  
R3  
L1  
5.6 nH  
1.0 uF  
100 pF  
0603CS-5N6XJL  
C4  
C1, C2, C3, C5, C6  
Datasheet: Rev M 12-18-14  
Disclaimer: Subject to change without notice  
- 10 of 14 -  
© 2014 TriQuint  
www.triquint.com  
TQP3M9037  
Ultra Low Noise, High Linearity LNA  
Switching Speed  
Switching Speed Measurement based on TQS Application Board shown on pg. 4.  
VPD toggled with a 100Hz square wave(0-3V), VDD=5V  
C=10pF  
0.15  
0.23  
Parameter  
Turn-off Transition (50% TTL – 10% RF)  
Turn-on Transition (50% TTL – 90% RF)  
C1=100pF  
0.5  
Units  
µs  
1.45  
µs  
C1 = 100 pF  
Turn-Off (50% TTL – 10% RF)  
Turn-On (50% TTL – 90% RF)  
Control Signal  
RF Signal  
Control Signal  
RF Signal  
C1 = 10 pF  
Turn-Off (50% TTL – 10% RF)  
Turn-On (50% TTL – 90% RF)  
Control Signal  
RF Signal  
Control Signal  
RF Signal  
Datasheet: Rev M 12-18-14  
© 2014 TriQuint  
Disclaimer: Subject to change without notice  
- 11 of 14 -  
www.triquint.com  
TQP3M9037  
Ultra Low Noise, High Linearity LNA  
Pin Configuration and Description  
Pin 1 Reference Mark  
1
8
7
6
5
NC  
NC  
2
RF In  
RF Out  
Shut Down  
NC  
3
NC  
4
NC  
Backside Paddle - RF/DC GND  
Pin No.  
Label  
Description  
2
RF In  
RF Input pin. A DC Block is required.  
A high voltage turns off the device. If the pin is not connected or is less than  
1V, then the device will operate under its normal operating condition.  
RF Output pin. DC bias will also need to be injected through a RF bias  
choke/inductor for operation.  
No electrical connection. Provide grounded land pads for PCB mounting  
integrity.  
6
Shut Down  
RF Out / DCBias  
NC  
7
1, 3, 4, 5, 8  
Backside  
Paddle  
RF/DC ground. Use recommended via pattern to minimize inductance and  
thermal resistance; see PCB Mounting Pattern for suggested footprint.  
RF/DC GND  
Evaluation Board PCB Information  
TriQuint PCB 1084112 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  
Rogers 4450F  
Thickness  
1 oz. Cu inner layer  
Rogers 4350B  
0.010"  
1 oz. Cu bottom layer  
50 ohm line dimensions: width = 0.020”, spacing = 0.032”  
Datasheet: Rev M 12-18-14  
Disclaimer: Subject to change without notice  
- 12 of 14 -  
© 2014 TriQuint  
www.triquint.com  
TQP3M9037  
Ultra Low Noise, High Linearity LNA  
Mechanical Information  
Package Marking and Dimensions  
Marking: Part number – 9037  
Lot code – XXXX  
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 quad flat no lead package (QFN).  
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. Vias 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 (0.10”).  
4. Ensure good package backside paddle solder attach for reliable operation and best electrical performance.  
Datasheet: Rev M 12-18-14  
Disclaimer: Subject to change without notice  
- 13 of 14 -  
© 2014 TriQuint  
www.triquint.com  
TQP3M9037  
Ultra Low Noise, High Linearity LNA  
Product Compliance Information  
ESD Sensitivity Ratings  
Solderability  
Compatible with both lead-free (260 °C max. reflow  
temperature) and tin/lead (245 °C max. reflow  
temperature) soldering processes.  
Caution! ESD-Sensitive Device  
Contact plating: NiPdAu  
ESD Rating: Class 1A  
Value:  
Test:  
Standard:  
Passes 250 V to < 500 V  
Human Body Model (HBM)  
JEDEC Standard JESD22-A114  
RoHs Compliance  
This part is compliant with EU 2002/95/EC RoHS  
directive (Restrictions on the Use of Certain Hazardous  
Substances in Electrical and Electronic Equipment).  
ESD Rating: Class C2  
Value:  
Test:  
Standard:  
Passes 500 V to < 1000 V  
Charged Device Model (CDM)  
JEDEC Standard JESD22-C101  
This product also has the following attributes:  
Lead Free  
Halogen Free (Chlorine, Bromine)  
Antimony Free  
TBBP-A (C15H12Br402) Free  
PFOS Free  
SVHC Free  
MSL Rating  
MSL Rating: Level 1  
Test:  
Standard:  
260°C convection reflow  
JEDEC Standard IPC/JEDEC J-STD-020  
Contact Information  
For the latest specifications, additional product information, worldwide sales and distribution locations, and information  
about TriQuint:  
Web: www.triquint.com  
Email: info-sales@triquint.com  
Tel:  
Fax:  
+1.503.615.9000  
+1.503.615.8902  
For technical questions and application information:  
Email: sjcapplications.engineering@triquint.com  
Important Notice  
The information contained herein is believed to be reliable. TriQuint makes no warranties regarding the information  
contained herein. TriQuint assumes no responsibility or liability whatsoever for any of the information contained  
herein. TriQuint assumes no responsibility or liability whatsoever for the use of the information contained herein. The  
information contained herein is provided "AS IS, WHERE IS" and with all faults, and the entire risk associated with  
such information is entirely with the user. All information contained herein is subject to change without notice.  
Customers should obtain and verify the latest relevant information before placing orders for TriQuint 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.  
TriQuint 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.  
Datasheet: Rev M 12-18-14  
Disclaimer: Subject to change without notice  
- 14 of 14 -  
© 2014 TriQuint  
www.triquint.com  

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