QPL9095SR

Qorvo
772-QPL9095SR
QPL9095SR

Mfr.:

Description:
RF Amplifier Bypass LNA, 0.7-1.0 GHz

ECAD Model:
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In Stock: 2.197

Stock:
2.197 Can Dispatch Immediately
Factory Lead Time:
16 Weeks Estimated factory production time for quantities greater than shown.
Minimum: 1   Multiples: 1
Unit Price:
-,-- €
Ext. Price:
-,-- €
Est. Tariff:
Packaging:
Full Reel (Order in multiples of 2500)

Pricing (EUR)

Qty. Unit Price
Ext. Price
Cut Tape / MouseReel™
9,76 € 9,76 €
7,32 € 73,20 €
6,98 € 174,50 €
6,06 € 606,00 €
5,79 € 1.447,50 €
5,34 € 2.670,00 €
Full Reel (Order in multiples of 2500)
4,54 € 11.350,00 €
† A MouseReel™ fee of 5,00 € will be added and calculated in your basket. All MouseReel™ orders are non-cancellable and non-returnable.

Product Attribute Attribute Value Select Attribute
Qorvo
Product Category: RF Amplifier
RoHS:  
500 MHz to 1 GHz
4.2 V
53 mA
22 dB
0.6 dB
Low Noise Amplifiers
SMD/SMT
DFN-8
Si
20 dBm
33 dBm
- 40 C
+ 105 C
QPL9095
Reel
Cut Tape
MouseReel
Brand: Qorvo
Country of Assembly: Not Available
Country of Diffusion: Not Available
Country of Origin: MY
Development Kit: QPL9095EVB01
Input Return Loss: 8.5 dB
Isolation dB: 18 dB
Number of Channels: 1 Channel
Product Type: RF Amplifier
Factory Pack Quantity: 2500
Subcategory: Wireless & RF Integrated Circuits
Test Frequency: 900 MHz
Part # Aliases: QPL9095 QPL9095TR7
Unit Weight: 1,029 g
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TARIC:
8542330000
CNHTS:
8542339000
CAHTS:
8542330000
USHTS:
8542330001
MXHTS:
8542330299
ECCN:
5A991.b

Low Noise Amplifiers

Qorvo Low Noise Amplifiers (LNA) are high-linearity, ultra-low noise, 2-stage gain Block Amplifier Modules. These amplifiers offer an operation bandwidth of 0.45GHz to 3.8GHz. Qorovo LNA modules include bypass mode functionality integrated into the second stage of the module. At 1.95 GHz, the LNAs typically provide 37.5dB gain with an OIP3 of +35dBm in High Gain mode. These amplifiers also provide high performance in the Low Gain mode with 17.5dB gain and an OIP3 of +34dBm.The LNA modules use a high-performance E-pHEMT process. The E-pHEMT technology enables high gain, low noise, and wide dynamic range in high-linearity LNA applications. These amplifiers also contain an internal active bias to maintain high performance over temperature. These low noise amplifiers are packaged in a compact 16-pin 3.5mm x 3.5mm leadless SMT package, which is lead-free, halogen-free, and RoHS compliant.

QPL9095 Ultra-Low-Noise Bypass Amplifiers

Qorvo QPL9095 Ultra-Low-Noise Bypass Amplifiers feature high linearity with an integrated bypass mode functionality. These low noise amplifiers (LNAs) are optimized for a 500MHz to 1000MHz frequency range and are targeted for wireless infrastructure. At 900MHz, QPL905 amplifiers provide 22dB gain, 33dBm output IP3, and 0.6dB ultra-low noise while drawing a 50mA current rating from a 4.2V supply voltage. The QPL9095 amplifiers are internally matched using a high-performance E-pHEMT process. They need four external components for operation: a single positive supply, an external RF choke, and blocking/bypass capacitors. The QPL9095 LNAs are ideally used in base-station receivers, mobile infrastructure, tower-mounted amplifiers, repeaters/Distributed Antenna Systems (DAS), and general-purpose wireless systems.

Drone Solutions

Qorvo Drone Solutions feature an extensive portfolio of RF components, power management, motor control, battery management, wireless connectivity, and force-sensor products. The advanced solutions include precise, real-time motor control to execute advanced algorithms. Sensorless control reduces the BOM and increases reliability, enabling precise, real-time motor control for higher efficiency and longer flight times. Accurate flight control prevents drone crashes by leveraging precise real-time 3D positioning and radar collision prevention. A long-range communication link between the drone and the controller, utilizing Qorvo GaAs LNAs and GaN PAs, extends the range. A small-form-factor single-chip BMSoC and intelligent PMICs for high-efficiency performance offer highly integrated power management solutions.