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TQP3M9035_15 Datasheet, PDF (1/11 Pages) TriQuint Semiconductor – High-Linearity LNA Gain Block | |||
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Applications
ï· Repeaters
ï· Mobile Infrastructure
ï· LTE / WCDMA / CDMA / GSM
ï· General Purpose Wireless
ï· TDD or FDD systems
Product Features
ï· 50â6000 MHz Operating Range
ï· 0.65 dB Noise Figure @ 1900 MHz
ï· 16.5 dB Gain @ 1900 MHz
ï· +37 dBm Output IP3
ï· +22.5 dBm P1dB
ï· Shut-down capability
ï· Unconditionally stable
ï· 50 Ohm Cascadable Gain Block
ï· +5V Single Supply, 115 mA Current
ï· 2x2 mm 8 Pin DFN plastic package
TQP3M9035
High-Linearity LNA Gain Block
2x2 mm 8 Pin DFN Package
Functional Block Diagram
General Description
The TQP3M9035 is a high-linearity, low noise gain block
amplifier in a low-cost surface-mount package. At 1900
MHz, the amplifier typically provides 16.5 dB gain, +37
dBm OIP3, and 0.65 dB Noise Figure. The LNA is also
designed to be broadband without the requirement for
external matching. The device is housed in a lead-
free/green/RoHS-compliant industry-standard 2x2 mm
package.
The TQP3M9035 has the benefit of having high linearity
while also providing very low noise across a broad range
of frequencies. This allows the device to be used in both
receive and transmit 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 low noise
amplifier integrates a shut-down biasing capability to
allow for operation for TDD applications.
The TQP3M9035 covers the 50â6000 MHz frequency
band and is targeted for wireless infrastructure or other
applications requiring high linearity and/or low noise
figure.
Pin Configuration
Pin #
1, 3, 4, 5, 8
2
6
7
Backside Paddle
Label
No Connect or GND
RF In
Shut Down
RF Out
RF/DC GND
Ordering Information
Part No.
Description
TQP3M9035
High Linearity LNA Gain Block
TQP3M9035-PCB
500â6000 MHz Eval. Board
Standard T/R size = 2500 pieces on a 7â reel.
Datasheet: Rev I 12-05-14
© 2014 TriQuint
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Disclaimer: Subject to change without notice
www.triquint.com
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