QPC9314SR

QPC9314SR
Mfr. #:
QPC9314SR
Manufacturer:
Qorvo
Description:
RF Front End 2.3-2.7GHz NF 1.2dB
Lifecycle:
New from this manufacturer.
Datasheet:
QPC9314SR Datasheet
Delivery:
DHL FedEx Ups TNT EMS
Payment:
T/T Paypal Visa MoneyGram Western Union
ECAD Model:
More Information:
QPC9314SR more Information
Product Attribute
Attribute Value
Manufacturer:
Qorvo
Product Category:
RF Front End
RoHS:
Y
Type:
RF Front End
Operating Frequency:
2.3 GHz to 2.7 GHz
NF - Noise Figure:
1.2 dB, 1.5 dB
Operating Supply Voltage:
4.75 V to 5.25 V
Operating Supply Current:
240 mA
Maximum Operating Temperature:
+ 105 C
Mounting Style:
SMD/SMT
Package / Case:
SMD-16
Packaging:
Reel
Series:
QPC9314
Technology:
Silicon
Brand:
Qorvo
Gain:
24 dB, 33 dB
Development Kit:
QPC9314EVB
Minimum Operating Temperature:
- 40 C
Moisture Sensitive:
Yes
OIP3 - Third Order Intercept:
33 dBm
P1dB - Compression Point:
- 4 dBm, - 10 dBm
Product Type:
RF Front End
Factory Pack Quantity:
100
Subcategory:
Wireless & RF Integrated Circuits
Tags
QPC9, QPC
Service Guarantees

We guarantee 100% customer satisfaction.

Quality Guarantees

We provide 90-360 days warranty.

If the items you received were not in perfect quality, we would be responsible for your refund or replacement, but the items must be returned in their original condition.
Our experienced sales team and tech support team back our services to satisfy all our customers.

we buy and manage excess electronic components, including excess inventory identified for disposal.
Email us if you have excess stock to sell.

Email: info@omo-ic.com

Step1: Vacuum Packaging with PL
Step1:
Vacuum Packaging with PL
Step2: Anti-Static Bag
Step2:
Anti-Static Bag
Step3: Packaging Boxes
Step3:
Packaging Boxes
QPC9314 High Power Switch LNA Module
Qorvo QPC9314 High Power Switch LNA Module is targeted for TDD macro or picocell base stations. The QPC9314 has a 2.3-2.7GHz frequency range with an LNA switch module that integrates RF functional blocks like a pin-diode based high power switch. The switch is capable of handling up to 52W with an LTE signal (8dB PAR) along with two LNA stages. Further integration is implemented where the pin diode driver and DC-DC converter circuits enable only the need for an external 5V power supply. The control voltage for the switch and gain control mode is with 3.3V logic.
Switch LNA Modules for Sub 6GHz 5G
Qorvo Switch LNA Modules for Sub 6GHz 5G are 5G Sub 6GHz solutions covering bands, n77, n78 and n79 (i.e. 3.3GHz to 5GHz). These sub 6GHz switch LNA products integrate an LNA and high-power switch in a dual-channel configuration supporting Massive MIMO receiver systems. These switch LNA modules include a bypass mode with power down capability. They offer low insertion loss and low noise figure. Additionally, some are capable of operating in a high and low gain states.
Part # Mfg. Description Stock Price
QPC9314SR
DISTI # 772-QPC9314SR
QorvoRF Front End 2.3-2.7GHz NF 1.2dB
RoHS: Compliant
0
  • 1:$29.2200
  • 25:$22.3800
  • 100:$17.4800
QPC9314TR13
DISTI # 772-QPC9314TR13
QorvoRF Front End 2.3-2.7GHz NF 1.2dB
RoHS: Compliant
0
  • 1:$29.2200
  • 25:$22.3800
  • 100:$17.4800
  • 250:$14.4700
  • 500:$12.9900
  • 1000:$11.3900
Image Part # Description
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RF Amplifier 2.5-2.7GHz Gain 34dB PAE 14%
TQC9312

Mfr.#: TQC9312

OMO.#: OMO-TQC9312

RF Amplifier 3.3-3.8GHz Gain 40dB P1dB 27.8dBm 6 bit
QPB9324SR

Mfr.#: QPB9324SR

OMO.#: OMO-QPB9324SR

RF Front End 3.4-3.6GHz Switch LNA Module
QPA9426TR13

Mfr.#: QPA9426TR13

OMO.#: OMO-QPA9426TR13-1152

RF Amplifier 2.5-2.7GHz Gain 34dB PAE 14%
TQC9312

Mfr.#: TQC9312

OMO.#: OMO-TQC9312-279

RF Amplifier 3.3-3.8GHz Gain 40dB P1dB 27.8dBm 6 bit
Availability
Stock:
197
On Order:
2180
Enter Quantity:
Current price of QPC9314SR is for reference only, if you want to get best price, please submit a inquiry or direct email to our sales team sales@omo-ic.com
Reference price (USD)
Quantity
Unit Price
Ext. Price
1
$29.22
$29.22
25
$22.38
$559.50
Due to semiconductor in short supply from 2021,below price is the Normal price before 2021.please send inquire to confirm.
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