TQP3M9028-PCB-RF TriQuint Semiconductor, TQP3M9028-PCB-RF Datasheet

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TQP3M9028-PCB-RF

Manufacturer Part Number
TQP3M9028-PCB-RF
Description
RF Development Tools RF Eval Board for TQP3M9028
Manufacturer
TriQuint Semiconductor
Type
RF Amplifiersr
Datasheet

Specifications of TQP3M9028-PCB-RF

Rohs
yes
Product
Evaluation Boards
Tool Is For Evaluation Of
TQP3M9028
Frequency
0.5 GHz to 4 GHz
Operating Supply Voltage
5 V
Part # Aliases
1076864
The TQP3M9028 is a cascadable, high linearity gain
block amplifier in a low-cost surface-mount package. At
1.9 GHz, the amplifier typically provides 14.7 dB gain,
+40 dBm OIP3, and 1.8 dB Noise Figure while only
drawing 85 mA current. The device is housed in a
leadfree/green/RoHS-compliant industry-standard SOT-
89 package.
The TQP3M9028 has the benefit of having excellent
gain flatness across a broad range of frequencies. The
low noise figure and high linearity performance allows
the device to be used in both receiver and transmitter
chains for high performance systems. The amplifier is
internally matched using a high performance E-pHEMT
process and only requires an external RF choke and
blocking/bypass capacitors for operation from a single
+5V supply. The internal active bias circuit also enables
stable operation over bias and temperature variations.
The TQP3M9028 covers the 50-4000 MHz frequency
band and is targeted for wireless infrastructure or other
applications requiring high linearity and/or low noise
figure.
Datasheet: Rev E 03-07-13
© 2013 TriQuint
Applications
Product Features
General Description
 Repeaters
 Mobile Infrastructure
 Defense / Aerospace
 LTE / WCDMA / CDMA
 General Purpose Wireless
 IF Amplifier, RF Driver Amplifier
 50-4000 MHz
 Flat gain (14.7 ± 0.3 dB) from 0.5 – 3.5 GHz
 +40 dBm Output IP3
 1.8 dB Noise Figure @ 1900 MHz
 No RF components needed; 50 Ohm Gain Block
 Unconditionally Stable
 +5V Single Supply, 85 mA Current
 SOT-89 Package
- 1 of 10 -
Functional Block Diagram
Pin Configuration
Pin No.
1
3
2, 4
Ordering Information
Part No.
TQP3M9028
TQP3M9028-PCB_IF
TQP3M9028-PCB_RF 0.5-4 GHz Evaluation Board
Standard T/R size = 1000 pieces on a 7” reel
High Linearity LNA Gain Block
RF IN
1
SOT-89 Package
Disclaimer: Subject to change without notice
Label
RF In
RF Out / DC Bias
Ground
Description
High Linearity LNA Gain Block
50-500 MHz Evaluation Board
GND
GND
4
2
TQP3M9028
RF OUT
3
www.triquint.com

Related parts for TQP3M9028-PCB-RF

TQP3M9028-PCB-RF Summary of contents

Page 1

... The device is housed in a leadfree/green/RoHS-compliant industry-standard SOT- 89 package. The TQP3M9028 has the benefit of having excellent gain flatness across a broad range of frequencies. The low noise figure and high linearity performance allows the device to be used in both receiver and transmitter chains for high performance systems ...

Page 2

... Electrical specifications are measured at specified test conditions. Specifications are not guaranteed over all recommended operating conditions. =+5V, Temp= +25°C, 50 Ω system Conditions Pout = +4 dBm/tone, ∆ MHz Junction to backside paddle - TQP3M9028 High Linearity LNA Gain Block Min Typ ) 4.75 5.0 DD −40 6 hours MTTF ...

Page 3

... TQP3M9028 S12 (ang) S22 (dB) S22 (ang) 4.3045 -19.220 -103.67 -0.3832 -19.244 -133.67 -5.7231 -19.718 -156.97 -15.433 -20.556 179.38 -24.010 -22.047 170.39 -32.722 -22 ...

Page 4

... TQP3M9028-PCB_RF Evaluation Board (500−4000 MHz Notes: 1. See PC Board Layout, page 8 for more information. 2. Components shown on the silkscreen but not on the schematic are not used Ω jumper) may be replaced with copper trace in the target application layout. 4. The recommended component values are dependent upon the frequency of operation. ...

Page 5

... Typical Performance − TQP3M9028-PCB_RF Test conditions unless otherwise noted: Parameter Frequency 500 Gain 15.2 Input Return Loss 19 Output Return Loss 17.5 Output P1dB +21.3 (1) OIP3 +40.6 (2) Noise figure 1.6 Notes: OIP3 measured with two tones at an output power of +4 dBm / tone separated by 1 MHz. 1. Noise figure data shown in the table above is de-embedded from the eval board loss. ...

Page 6

... TQP3M9028-PCB_IF Evaluation Board (50−500 MHz Notes: 1. See PC Board Layout, page 8 for more information. 2. Components shown on the silkscreen but not on the schematic are not used Ω jumper) may be replaced with copper trace in the target application layout. 4. The recommended component values are dependent upon the frequency of operation. ...

Page 7

... Typical Performance − TQP3M9028-PCB_IF Test conditions unless otherwise noted: Parameter Frequency Gain Input Return Loss Output Return Loss Output P1dB Pout = +6 dBm/tone, ∆f=1 MHz OIP3 (1) Noise figure Notes: Noise figure data shown in the table above is de-embedded from the eval board loss. ...

Page 8

... RF OUT Description Input, matched to 50 ohms. External DC Block is required. Output, matched to 50 ohms, External DC Block is required and supply voltage RF/DC Ground Connection 1 oz. Cu top layer 1 oz. Cu inner layer 1 oz. Cu inner layer 1 oz. Cu bottom layer - TQP3M9028 Disclaimer: Subject to change without notice www.triquint.com ...

Page 9

... Add as much copper as possible to inner and outer layers near the part to ensure optimal thermal performance trace width depends upon the PC board material and construction. 5. Use 1 oz. copper minimum for top and bottom layer metal. Datasheet: Rev E 03-07-13 © 2013 TriQuint XXXX - TQP3M9028 High Linearity LNA Gain Block Disclaimer: Subject to change without notice www.triquint.com ...

Page 10

... Halogen Free (Chlorine, Bromine)  Antimony Free  TBBP  PFOS Free  SVHC Free Tel: +1.503.615.9000 Fax: +1.503.615.8902 Email: sjcapplications.engineering@triquint.com All information contained herein is subject to change without notice TQP3M9028 Free Disclaimer: Subject to change without notice www.triquint.com ...

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